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邀新有礼火爆升级 最高可赢千元奖励
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处理复杂CNC零件?以下是此类零件的正确加工指南
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金属板材厚度标准与量规对照表
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CNC Machining Size Limitations: Everything You Need to Know
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SLS3D打印8大核心设计技巧
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FDM 3D 打印设计技巧: 更坚固打印件的最佳实践与技术方法
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CNC 加工与 3D 打印:为您的项目选择最佳塑料制造工艺
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注塑成型材料選擇指南
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適用於醫療行業的3D打印材料
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3D打印在汽車行業的應用
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為 CNC 加工選擇合適的表面粗糙度
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聚合物 CNC 加工對比 3D 打印:選擇合適方法的檢查清單
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按需製造是什麼以及它是如何運作的
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惠普尼龍多噴嘴熔融 (MJF) 3D 打印技術概述
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如何繪製完美的技術圖紙
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選擇 CNC 加工材料時應考量的因素
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如何降低 3D 打印成本?
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17 種金屬組件及後處理的防蝕方案選擇
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污水基礎設施密封新紀元:Xometry 擇冪科技助力研發壓力管道通用接頭
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為高級工作場所安全設備獲取組件:Genesi & Xometry 擇冪科技
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Xometry 擇冪科技協助將 AcubeSAT 從原型打造為可發射的納米衛星
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復刻 Barentsz 鐘:傳統與現代製造技術的完美融合
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增材製造在電子工業的應用
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食品級 3D 打印:設計技巧、物料與後處理
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Welcome to Xometry. We’re delighted to have you on board!
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邀新有礼火爆升级 最高赢千元奖励
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解放调查| 虹口区实到外资增速上海第一的背后
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解放调查| 虹口区实到外资增速上海第一的背后
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培育孵化16家“独角兽”企业 全球创业者峰会成为北京“金名片”
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培育孵化16家“独角兽”企业 全球创业者峰会成为北京“金名片”
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Xometry择幂科技上央视啦!
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Xometry择幂科技上央视啦!
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1.2亿营收背后!这个虹口企业将梦想“造”进现实
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1.2亿营收背后!这个虹口企业将梦想“造”进现实
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择幂科技6月复工福利来袭!回馈新老客户,最高立减188元!
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择幂科技6月复工福利来袭!回馈新老客户,最高立减188元!
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Xometry择幂科技帮助将 AcubeSAT 从原型打造为可发射的纳米卫星
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Xometry择幂科技帮助将 AcubeSAT 从原型打造为可发射的纳米卫星
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污水基础设施密封新纪元:Xometry择幂科技帮助研发压力管道通用接头
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污水基础设施密封新纪元:Xometry择幂科技帮助研发压力管道通用接头
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我的 Lotus Elan SE 之旅:通过Xometry择幂科技3D 打印复原“Lotti”
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我的 Lotus Elan SE 之旅:通过Xometry择幂科技3D 打印复原“Lotti”
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为高级工作场所安全设备获取部件:Genesi & Xometry 择幂科技
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为高级工作场所安全设备获取部件:Genesi & Xometry 择幂科技
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从设计到竞速:Vinci Eco Drive 及其电动单座赛车的研发之旅
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从设计到竞速:Vinci Eco Drive 及其电动单座赛车的研发之旅
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复刻 Barentsz 钟:传统与现代制造技术的融合
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复刻 Barentsz 钟:传统与现代制造技术的融合
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Sferasol 与 Xometry 择幂科技合作制造新型太阳能集热器
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Sferasol 与 Xometry 择幂科技合作制造新型太阳能集热器
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Sferasol Manufactures A New Form of Solar Thermal Collector With Xometry
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@你的“智”造搭子!一起来择幂科技赢取180元智造基金!
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@你的“智”造搭子!一起来择幂科技赢取180元智造基金!
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My Lotus Elan SE Journey: Restoring ‘Lotti’ with 3D Printing
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大尺寸零部件如何高质量快速交付,看择幂科技交出的答卷!
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大尺寸零部件如何高质量快速交付,看择幂科技交出的答卷!
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团长招募!看你的创意图纸如何快速变现!
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团长招募!看你的创意图纸如何快速变现!
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匠心智造,择幂华南实验室驱动质控与供应链双升级
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匠心智造,择幂华南实验室驱动质控与供应链双升级
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From Workshop to Moonshot – Xometry's Role in Intuitive Machines' Lunar Return
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Novag and Xometry Partner to Develop Advanced Equipment for Conservation Agriculture
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How Kurs Orbital Builds a Next-Generation Module for Autonomous Docking in Space
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Customized Industrial Plants: Xometry Helps Asitech to Build Machines Quicker
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Pocketable Focus: the Journey of Creating the Memo Whiteboard Wallet
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Xometry Produced Parts for Franka Robotics to Showcase Its Robots Capacities on Trade Shows
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How 3D Printing Helped Jersey Heritage Create a Dwarf Red Deer Replica
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How RC proto Developed a High-precision, Lightweight Micro-milling Machine
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How Fluid Wire Robotics Uses Fluid Transmission To Advance Robotics
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从车间到探月工程——Xometry择幂科技助力Intuitive Machines 公司的登月项目
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从车间到探月工程——Xometry择幂科技助力Intuitive Machines 公司的登月项目
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Fluid Wire Robotics公司如何在Xometry择幂科技帮助下利用流体传动推进机器人技术发展
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Fluid Wire Robotics公司如何在Xometry择幂科技帮助下利用流体传动推进机器人技术发展
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RC proto公司如何在择幂科技帮助下开发高精度、轻量化的微铣床?
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RC proto公司如何在择幂科技帮助下开发高精度、轻量化的微铣床?
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看Xometry择幂科技如何使用3D打印工艺帮助泽西岛遗产机构创造矮赤鹿复制品
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Xometry择幂科技为Franka Robotics 公司生产的零部件助力其在展会上展示机器人能力
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口袋中的焦点:Xometry择幂科技创建白板钱包的历程
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定制化工业设备: Xometry择幂科技帮助 Asitech 更快地制造机器
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Kurs Orbital公司如何建造下一代空间自主对接模块
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Novag与Xometry择幂科技合作开发先进的保护性农业设备
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Interview on Elefant Racing’s Journey in Formula Student with Xometry Partnership
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12 Advantages of Injection Molding
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Five Common Mistakes in Injection Molding Design
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Injection Molding: 4 Easy Ways to Save Money
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关于Elefant Racing在Formula Student赛事中与Xometry择幂科技合作的历程访谈
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如何绘制完美的技术图纸
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CNC加工的行业标准
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17种金属部件及后处理的防腐蚀方案选择
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聚合物CNC加工
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3D打印技术比较:SLA对比FDM
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注塑成型对比3D打印工艺:如何选择?
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Metal Parts Manufacturing - How to Make Custom Metal Parts
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如何定制金属零件?
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CNC加工:节省CNC原型成本的方法
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Ways to Save Money on CNC Prototypes
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注塑成型材料选择指南
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如何使用 Xometry择幂科技实时报价引擎
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减材制造对比增材制造
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聚合物CNC加工对比3D打印:选择合适方法的检查清单
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3D打印在汽车行业的应用
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惠普尼龙多流射熔融成型(MJF)3D 打印技术概述
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如何降低3D打印成本?
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什么是按需制造以及它是如何运作的
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改进CNC加工 CAD 设计的 10 个技巧
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10 tips to improve your CAD designs for CNC machining
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如何获得更坚固的 3D 打印部件
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How To Get Stronger 3D Printed Parts
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为CNC加工选择合适的表面粗糙度
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Selecting right surface roughness for CNC machining
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用于医疗行业的 3D 打印材料
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3D Printing Materials for Medical Industry
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选择CNC加工材料时应考虑的因素
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Factors To Consider When Choosing Materials for CNC Machining
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Industry standards in CNC machining
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Xometry择幂科技为小型交通工具的研发上市快速生产出高质量的电动滑板车原型
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Premium E-Scooter Prototype Produced in Rapid Time for Micro Mobility Launch
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Imperial College of London Rocketry builds Next-Gen NIMBUS Rocket with Precision CNC Machined Parts
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Xometry择幂科技庞大的制造网络助力KOPI Concepts扩大咖啡磨豆机生产规模
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Access to Massive Manufacturing Network Enables KOPI Concepts to Scale-up Coffee Grinder with Ease
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Xometry择幂科技生产部件,Asat 成功发射大功率火箭
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Asat Launches A High-Power Rocket With Parts Manufactured By Xometry
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随时随地报价下单,择幂科技官方小程序正式亮相啦!
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Injection Moulding vs 3D Printing: Which One To Choose?
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3D Technologies Comparison: SLA vs. FDM
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How to Use Xometry Instant Quoting Engine
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增材制造在电子领域的应用
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Develter与Xometry择幂科技合作制造具有超高灵活性的康复驾驶模拟器
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Develter Partners With Xometry to Manufacture a Driving Simulator for Rehabilitation With Unrivalled Flexibility
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DocCheck利用 Xometry择幂科技重塑并大规模生产医疗产品
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How DocCheck is reinventing and mass-producing medical products with Xometry
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太空生物医学研究:Xometry择幂科技支持 ATMOS 实现创新的返地服务
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Xometry supports ATMOS for innovative return service for biomedical research in space
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Xometry择幂科技利用定制式生产制造用于生物实验的超小型卫星
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Designing A Nanosatellite For A Biological Experiment With The Help Of Custom Manufacturing
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MDG Engineering 公司利用 Xometry择幂科技制造医疗设备并推动全球业务增长
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MDG Engineering Leverages Xometry To Build Medical Devices And Drive Global Growth
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Xometry择幂科技帮助 JTW Astronomy 公司生产高质量的专业望远镜支架
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Xometry Enables JTW Astronomy to Produce High-Quality Trident Telescope Mounts
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Mapix 利用Xometry择幂科技解决无人机光学雷达地图测绘模块的制造方案
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Mapix Leverages Xometry To Manufacture LiDAR Mapping Solutions For Drones
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通过Xometry择幂科技专业服务,生产语音故事机的硅胶外壳原型件
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Producing a Silicone Shell Prototype for an Audio Storyteller With Xometry’s Expert Guidance
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Devitech选择Xometry择幂科技为测试器械注入新活力
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Devitech Chooses Xometry to Breathe New Life Into Test Machines
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Xometry择幂科技支持 Qinu 制造工业及科研级别高科技冷却系统
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Xometry Supports Qinu in Manufacturing High-Tech Cooling Systems for Industry and Research
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NASA Partners with Xometry to Fast-track Critical Life Support Systems on the International Space Station
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BattleBots Team HyperShock Prepares to Dominate the Battle Arena With Purpose-Built Xometry Parts
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Meet the Guy Who Builds Amazing Props for Hollywood
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BMW Uses Xometry’s Range of Technologies to Make Custom Assembly Tooling
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An Innovative Bike With 3d Printed Metal Suspension From Xometry
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Xometry Built Galen Robotics’ Mechanical, Surgical Assistant
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This Classical Guitarist Uses 3D Printing to Make Her Own Guitar Picks
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These Students Invented a Way to Brew Beer on the Moon
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Asylon’s Autonomous Drones Secure the Skies with Help from Xometry
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Satellite Displays Builds On-the-go Live Captioning Badge with Xometry Injection Molding
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“Shark Tank” Winning Food Tech Company Pivots and Scales with Xometry’s Prototyping and Injection Molding Services
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An Archer Aims, Shoots, and Lands His Shot with Xometry Injection Molding
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Mezli is Ready to Turn Tables in Restaurant Robotics, Thanks to Xometry’s Full Menu of Manufacturing Options
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Delta Development Team is Helping Deliver Critical Medical Supplies With the World’s Most Compact and Affordable Blood Refrigeration Unit
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Thermaco Uses Xometry Injection Molding to Scale Global Product Line
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Introducing 3D-printed Pet Bones into Veterinary Education
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Using Injection Molding to Fight Back Against An Invasive Species
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Combating COVID-19 with a Contactless, AI-Based Thermal Imaging Device
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How a Pittsburgh machinist adapted to the changing manufacturing industry
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Why Two Entrepreneurs Quit Their Jobs and Launched Their Own Drone Imaging Company
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Pembleton: Meticulously Engineered Cycle Cars Built With On-Demand Manufacturing
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Ryvid’s Anthem EV Bike Races Through Production With Xometry’s Horizontal Supply Chain
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FIMRO harnesses the power of 3D printing with Xometry for miniature models at trade fairs
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The Overboat, A Flying Watercraft Built With Xometry
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Increase Your Reading Speed With Bookhoover, an Innovative Reading Buddy Created With 3D Printing
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The First Commercial 3D Chocolate Printer
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代尔夫特 Hyperloop与Xometry择幂科技合作,用高精尖制造革新可持续出行方式
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Delft Hyperloop and Xometry Collaborate to Revolutionise Sustainable Travel Through High-Precision Manufacturing
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FIMRO使用Xometry择幂科技3D打印工艺完成展会微型模型
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食品级 3D 打印:设计技巧、材料和后处理
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Ryvid Anthem电动自行车通过Xometry择幂科技的制造服务进行生产
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Overboat,一艘由 Xometry择幂科技帮助建造的飞行船只
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了解Xometry择幂科技如何通过CNC加工提升Pembleton汽车的制造质量与效率
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Bookhoover,一款通过 Xometry择幂科技3D打印创建的创新阅读伙伴
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乘风破浪,揭秘FRC机器人大赛小团体里的大智慧
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Xometry择幂科技帮助首台商用3D巧克力打印机诞生
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两位企业家为何辞去工作,创立了自己的无人机成像公司
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Xometry择幂科技如何帮助匹兹堡的机械师适应不断变化的制造行业?
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Xometry择幂科技帮助制造非接触式人工智能热成像设备助力新冠疫情防控
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Slow Glow利用Xometry择幂科技注塑成型工艺应对物种入侵
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Xometry择幂科技助力3D打印宠物骨骼引入兽医教育
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Thermaco使用Xometry择幂科技注塑成型工艺来扩展全球产品线
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Delta开发团队使用世界上更小巧、更经济的血液冷藏设备帮助提供关键的医疗用品
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Xometry择幂科技的多种制造工艺助力Mezli在餐厅机器人领域扭转局面
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Xometry择幂科技的注塑成型技术帮助弓箭手瞄准、射击并击中目标
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赢得“鲨鱼坦克(Shark Tank)”的食品科技公司利用Xometry择幂科技的注塑技术实现转型和规模化
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Xometry择幂科技注塑成型技术帮助Satellite Displays公司打造可穿戴式实时翻译胸章
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Asylon无人机在Xometry择幂科技帮助下保障空域安全
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通过Xometry择幂科技按需制造来打造太阳能电动汽车原型
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探索Xometry择幂科技与太空探索的结合,了解生物工程如何改变月球实验的未来
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注塑成型零件表面处理:SPI 及 VDI
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注塑成型:技术概述
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3D打印:树脂光固化成型 (SLA) 设计技巧
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CNC 加工公差
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3D 打印材料和表面处理:SLS 和 MJF
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CNC加工(减材制造)公差标准简介
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注塑成型中的公差简介
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等离子切割概述
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3D 打印:MJF 和 SLS部件的后期处理
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3D 打印:激光烧结成型 (SLS)的设计技巧
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CNC加工的尺寸限制
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CNC加工指南
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CNC加工设计中的 6 种常见错误
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钣金加工:水射流切割概述
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3D 打印材料选择指南
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钣金加工:折弯设计提示
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3D打印:可生物降解 3D 打印材料简介
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3D 打印:快速、经济高效的一步到位工艺
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适合 3D 打印的柔性材料
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3D打印:彩色打印选项概述
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影响CNC加工成本的因素
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CNC加工:铝材料及其合金的特性及应用
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CNC加工:铣削加工工艺
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钣金加工:金属板选择指南
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3D打印:何时应采用金属 3D 打印
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注塑成型设计贴士
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Bodo Pistor:专业模型制作者,使用 3D 打印来制作模型轮胎
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CNC加工材料选择指南
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9种更耐热的3D打印材料
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The Most Realistic and Lovable Robot Dog is Here
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这位古典吉他手利用Xometry择幂科技3D打印制作自己的吉他拨片
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High-end bike frames produced with the help of on-demand manufacturing
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Xometry择幂科技帮助按需制造高端自行车架
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由Xometry择幂科技按需定制的逼真可爱机器狗问世啦
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注塑成型工艺的12大优势
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注塑件设计的5个常见错误
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软硬结合,联达时代携手Xometry择幂科技提升患者用药依从性
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Xometry择幂科技帮助Galen Robotics使用原型制造医疗机器人
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悦己悦人,这款DIY超便携游戏“神器”背后的情怀
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Xometry择幂科技助力实现3D打印金属悬架创新自行车
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宝马使用Xometry择幂科技专有技术定制装配工装
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为好莱坞打造神奇道具的幕后者也在使用Xometry择幂科技服务
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HyperShock团队意欲利用Xometry择幂科技专用型部件来称霸BattleBots竞技场
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NASA联手Xometry择幂科技打造国际空间站快跟踪关键生命支持系统
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注塑成型:4种节省成本的简单方法
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激光切割简介
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Introduction to Laser Cutting
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为CNC加工而设的计算机辅助设计:概述
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钣金加工工艺简介
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3D打印技术比较:MJF对比SLS
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Additive Manufacturing in Consumer applications
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Additive Manufacturing in Consumer applications
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Stampa 3D per l’alimentare: suggerimenti per la progettazione, materiali e finiture
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Produzione additiva nelle applicazioni dei consumatori
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Una stampante 3D dalla tecnologia rivoluzionaria Hybrid PhotoSynthesis, progettata e prodotta in soli 9 mesi
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L’impression 3D de qualité alimentaire : astuces, matériaux et finitions
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La fabrication additive dans les applications grand public
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Neuer 3D-Drucker mit revolutionärer Hybrid PhotoSynthesis-Technologie, entwickelt und hergestellt in nur 9 Monaten
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Food-Safe 3D Printing: Design Tips, Materials & Finishes
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增材制造在消费品领域的应用
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Additive Manufacturing in Consumer applications
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Additive Fertigung für die Elektronikindustrie
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17 Optionen für korrosionsbeständige Teile: Metalle und Nachbearbeitungen
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17 opzioni resistenti alla corrosione per le vostre parti: metalli e post-lavorazione
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Produzione additiva nell’elettronica
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Bodo Pistor: modellismo professionale e stampa 3D per la produzione di pneumatici
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La fabrication additive dans l’industrie électronique
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Un prototype de véhicule à énergie solaire construit grâce à la fabrication à la demande
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Un VideoBook pour conserver et partager les souvenirs développé avec un service de moulage par injection sur mesure
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Die 10 hitzebeständigsten Materialien für den 3D-Druck
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Xometry Europe lancia i servizi di pressofusione
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Adesso Xometry Europa offre la consegna gratuita di parti stampate in 3D
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Come usare il Motore di Quotazione Istantanea di Xometry
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I 10 materiali di stampa 3D più resistenti al calore
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17 options de résistance à la corrosion pour vos pièces : métaux et finitions
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Additive Manufacturing in Electronics
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Xometry Europe lance un nouveau service de moulage sous pression
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Solar Electric Vehicle Prototype Built with Manufacturing On-Demand
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Die 10 widerstandsfähigsten Materialien für den 3D-Druck
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I 10 materiali più resistenti per la stampa 3D
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Bodo Pistor : un professionnel fait appel à l’impression 3D pour fabriquer des pneus pour modèles réduits
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3D-Druckverfahren im Vergleich: SLA vs. FDM
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VideoBook zum Teilen von Erinnerungen und Erlebnissen, umgesetzt mit Spritzguss-Dienstleistungen von Xometry
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使用 Xometry择幂科技的注塑成型定制服务,打造存储并分享回忆和体验的 VideoBook
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VideoBook to store and share memories & experiences developed using on-demand injection moulding services
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Una rivoluzionaria macchina perforatrice realizzata con la produzione on demand vince la “Not-a-Boring Competition”
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Confronto tra tecnologie 3D: SLA vs. FDM
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Une imprimante 3D basée sur une technologie photosynthétique hybride révolutionnaire produite en 9 mois
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17 Corrosion-Resistant Options for Your Parts: Metals & Post-Processing
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Microtomes katana : des pièces de précision pour des découpes nanométriques
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Bauteile in Druckguss jetzt bequem über Xometry Europe bestellen
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Bodo Pistor: Professioneller Modellbau und Einsatz von 3D-Druck für die Reifenherstellung
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Bodo Pistor: professional model making and 3D printing for producing tyres
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Les 10 matériaux les plus résistants à la chaleur pour l’impression 3D
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Les 10 matériaux les plus résistants pour l’impression 3D
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Innovative Tunnelbohrmaschine gewinnt “Not-a-Boring Competition”
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Xometry Europe livre gratuitement toute commande d’impression 3D
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采用革命性混合型光合成技术的 3D 打印机,短短 9 个月内实现设计和生产
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A 3D printer powered by revolutionary Hybrid PhotoSynthesis technology, designed & produced in just 9 months
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Comparatif des technologies d’impression 3D : SLA vs. FDM
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Tolleranze nella stampa 3D
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Xometry择幂科技助力针对纳米切割的精确部件Katana Microtome生产
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Katana Microtome: Precision Parts for Nanometre Cuts
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10 Most Heat Resistant 3D Printing Materials
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10种高强度3D打印材料
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10 Strongest Materials For 3D Printing
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Un tunnelier élaboré grâce à la fabrication industrielle à la demande remporte le concours Not-a-Boring Competition
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Stampa 3D SLA: Desktop vs. Industriale
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Toleranzen im 3D-Druck
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Tolérances en impression 3D
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采用Xometry择幂科技按需制造的革命性隧道挖掘机赢得隧道挖掘竞赛
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Revolutionary tunnel-boring machine made with on-demand manufacturing wins the Not-A-Boring Competition
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SLA 3D-Druck: Desktop vs. Industrielle Drucker
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Impression 3D SLA : industrielle vs. grand public
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Quotazione istantanea di Xometry da ora disponibile su Autodesk Fusion 360
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Analisi del più grande Early Adopter nel mercato del Cloud Manufacturing: Xometry
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3D打印中的公差
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Tolerances in 3D Printing
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Vos devis instantanés Xometry, maintenant disponibles sur Autodesk Fusion 360
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树脂光固化成型(SLA)3D打印:桌面型对比工业型
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SLA 3D Printing: Desktop vs. Industrial
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Analyse des größten Vorreiters auf dem Markt für Cloud Manufacturing: Xometry
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Impression 3D FDM : industrielle vs. grand public
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Stampa 3D FDM: desktop vs. industriale
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Xometry jetzt mit Sofortpreisangebot auf Autodesk Fusion 360
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Anodizzazione: un'opzione di finitura efficace per l'alluminio
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FDM 3D-Druck: Desktop vs. Industrielle Drucker
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Anodisation : finition optimale pour aluminium
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Motori ibridi per l'industria nautica prodotti più velocemente con la produzione su richiesta
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Eloxieren: Effektive Oberflächenveredelung für Aluminium
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Le tolleranze nella stampa a iniezione
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Comment utiliser la plateforme de devis instantané de Xometry
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3D 打印—FDM: 桌面级3D打印 vs. 工业级3D打印
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FDM 3D Printing: Desktop vs. Industrial
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Toleranzen beim Spritzguss
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Analyse de Xometry : le plus important primo adoptant sur le marché du Cloud Manufacturing
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阳极氧化工艺:一种高效的铝材表面处理工艺
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Anodising: An Effective Finishing Option For Aluminium
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Tolérances pour le moulage par injection
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Schnellere Produktion hybrider Schiffsmotoren Dank Manufacturing on Demand
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Comment la fabrication sur mesure a accéléré la production de moteurs hybrides destinés à l’industrie marine
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Tolerances in Injection Moulding
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Analysis of the Largest Early Adopter in the Cloud Manufacturing Market: Xometry
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Introduction au moulage par injection
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Introduzione alla stampa a iniezione
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Einführung in das Spritzgussverfahren
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Design-Tipps für den Polyjet 3D-Druck
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Tolleranze nelle lavorazioni CNC
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通过Xometry择幂科技按需定制更快地生产用于船舶业的混动引擎
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Hybrid engines for the marine industry produced faster with on-demand manufacturing
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Injection Moulding: Technology Overview
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Consigli per la progettazione della stampa 3D Polyjet
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Astuces de conception pour l’impression 3D Polyjet
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Wie man stärkere 3D-Druck Teile erhält
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Fused Deposition Modeling (FDM) 3D-Druck: Technologie-Übersicht
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PolyJet 3D-Druck: Technologie-Übersicht
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Come ottenere parti più resistenti stampate in 3D
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Stampa 3D in Polyjet: panoramica della tecnologia
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Polyjet : aperçu d’une technologie d’impression 3D
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Carbon DLS 3D-Druck: Technologie-Übersicht
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Les tolérances en usinage CNC
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Stampa 3D a Modellazione a Deposizione Fusa (FDM): panoramica della tecnologia
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MJF vs SLS: 3D-Druckverfahren im Vergleich
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Fused Deposition Modeling (FDM) : aperçu d'une technologie d’impression 3D
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Fattori da considerare durante la scelta dei materiali per la lavorazione CNC
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Stampa 3D Carbon DLS: Panoramica Della Tecnologia
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3D打印:热塑性材料熔融沉积成型(FDM)技术概览
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Fused Deposition Modeling (FDM) 3D Printing: Technology Overview
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MJF vs SLS: Tecnologie di stampa 3D a confronto
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Materiali di stampa 3D e finiture superficiali: SLS & HP MJF
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Wichtige Faktoren bei der Materialauswahl für die CNC-Bearbeitung
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Stampa 3D con sinterizzazione laser diretta del metallo (DMLS): Presentazione della tecnologia
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MJF vs. SLS : comparaison de technologies d’impression 3D
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DLS de Carbon : aperçu d'une technologie d’impression 3D
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Come preparare un disegno tecnico perfetto
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Critères de sélection des matériaux pour l’usinage CNC
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Direktes Metall-Lasersintern (DMLS) 3D-Druck: Technologie-Übersicht
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Stereolitografia (SLA) Stampa 3D: panoramica della tecnologia
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Come ridurre il costo della stampa 3D
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Wie Sie die Kosten für den 3D-Druck reduzieren können
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Comment réduire les coûts de l’impression 3D
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How to reduce the cost of 3D printing
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Direct Metal Laser Sintering (DMLS) : aperçu d'une technologie d’impression 3D
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Xometry débarque sur le marché public
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Xometry entra in borsa
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Direct Metal Laser Sintering (DMLS) 3D printing: Technology overview
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Wie man eine perfekte Technische Zeichnung erstellt
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Comment réaliser un dessin technique parfait
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Stereolithographie (SLA) 3D-Druck: Technologie-Übersicht
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Stéréolithographie (SLA) : aperçu d’une technologie d’impression 3D
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How To Prepare A Perfect Technical Drawing
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3D打印:树脂光固化成型 (SLA)3D打印技术概述
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Stereolithography (SLA) 3D printing: Technology overview
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Stampa 3D Multi Jet Fusion (MJF): panoramica della tecnologia
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Multi Jet Fusion (MJF) 3D-Druck: Technologie-Übersicht
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Multi Jet Fusion (MJF) : aperçu d’une technologie d’impression 3D
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Multi Jet Fusion (MJF) 3D Printing: Technology Overview
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Cloud Manufacturing: Passato, Presente, e Futuro – una revisione accademica
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Creazione di un supporto bici per Apple AirTag in meno di 2 settimane
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Un ingegnere realizza il suo sogno d’infanzia dopo 50 anni realizzando su lavorazione i pezzi degli scacchi
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Sinterizzazione laser selettiva (SLS) Stampa 3D: Presentazione della tecnologia
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Consigli di progettazione per la stampa ad iniezione
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Finiture superficiali per lo stampaggio ad iniezione: SPI e VDI
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Produzione su richiesta: Cos'è e come funziona
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Cloud Manufacturing: Vergangenheit, Gegenwart und Zukunft - ein Akademischer Überblick
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Einführung in das Laserschneiden
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On-Demand Fertigung: Was es ist und Wie es funktioniert
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Ein Ingenieur erfüllt sich nach 50 Jahren seinen Kindheitstraum, indem er Schachfiguren maschinell fertigen lässt
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Erstellen einer Fahrradhalterung für Apple AirTag in weniger als 2 Wochen
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Oberflächengüte bei Spritzgussteilen: SPI und VDI
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Design-Tipps für Spritzgussteile
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Selektives Lasersintern (SLS) 3D-Druck: Technologie-Übersicht
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Le Cloud Manufacturing d’un point de vue académique : passé, présent et avenir
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Créer un support dédié pour monter un AirTag d’Apple sur un vélo en moins de 2 semaines
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On-Demand Manufacturing (fabrication à la demande) : de quoi s’agit-il et comment ça marche ?
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Après 50 ans, un ingénieur réalise son rêve de jeunesse en faisant usiner des pièces d’échecs
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Moulage par injection et traitements de surface : les standards SPI et VDI
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Astuces de conception pour le moulage par injection
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Frittage sélectif par laser (SLS): aperçu d’une technologie d’impression 3D
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Xometry ist an die Börse gegangen!
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On-Demand Manufacturing: What it is and How it Works
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Injection Moulding Surface Finishes: SPI and VDI
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Design Tips for Injection Moulding
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3D打印:激光烧结成型(SLS)技术概述
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Selective laser sintering (SLS) 3D printing: Technology overview
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工程师通过Xometry择幂科技加工国际象棋棋子实现 50 年前的童年梦想
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An engineer fulfils his childhood dream after 50 years by having chess pieces machined
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不到 2 周内,Xometry择幂科技助力开发适用于苹果 AirTag 的自行车支架
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Creating a bike mount for Apple AirTag in under 2 weeks
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Die Kosten der CNC-Bearbeitung
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Il costo della lavorazione CNC
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Le coût de l’usinage CNC
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Stampa a iniezione vs stampa 3D: quale delle due scegliere?
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The Cost of CNC Machining
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Spritzguss vs. 3D-Druck: welche Variante ist die richtige?
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Moulage par injection vs impression 3D : comment choisir ?
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Biokompatibler 3D-Druck: Übersicht
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Stampa 3D biocompatibile: Presentazione
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Analyse de l’impression 3D biocompatible
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Presentazione delle opzioni di colorazione per la stampa 3D
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Übersicht der 3D-Farbdruck Optionen
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Impression 3D couleur : aperçu des options disponibles
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Flexible Kunststoffe für den 3D-Druck – eine Übersicht
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Polimeri flessibili nella stampa 3D: una panoramica
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Colour 3D Printing Options Overview
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Ein vielseitig begabter Ingenieur entwickelt ein Gerät zur Abtötung von Viren in der Luft
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CNC-Frästeile aus Kunststoff vs. 3D-Druck: eine Auswahlhilfe
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Auswahl der richtigen Oberflächenrauheit für die CNC-Bearbeitung
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Technologie-Übersicht: Wann sie wirklich Metall-3D-Druck wählen sollten
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Selezione della corretta rugosità superficiale per la lavorazione CNC
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Panoramica della tecnologia: quando dovresti davvero optare per una stampa 3D in metallo
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Un ingegnere poliedrico crea un dispositivo efficiente per distruggere i virus nell'aria
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Lavorazione CNC polimerica vs stampa 3D: lista di controllo per scegliere quella giusta
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Choisir le grain de surface adapté pour l’usinage CNC
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Revue technologique : quand vous devez vraiment opter pour l’impression 3D métal
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Un ingénieur talentueux met au point le dispositif Viralink ® permettant d’éliminer les virus présents dans l’air
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Polymères en usinage CNC ou impression 3D : tout ce qu’il faut savoir pour faire le bon choix
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Matériaux flexibles pour l’impression 3D
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Design-Tipps für den 3D-Druck mit Direktem Metall-Lasersintern
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Suggerimenti di disegno per la stampa 3D con sinterizzazione laser diretta del metallo
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Astuces de conception pour l’impression 3D métal DMLS
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The Best Flexible Materials in 3D Printing
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在Xometry择幂科技的帮助下,才华横溢的工程师创造出高效的空气消毒设备
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A multi-talented engineer creates an efficient device to destroy viruses in the air
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Technology Overview: When You Should Really Go for Metal 3D Printing
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Polymer CNC Machining vs. 3D Printing: Checklist To Choose the Right One
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Xometry择幂科技协助 Warwick Moto 生产方程式电动摩托副车架
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Xometry assiste nella produzione del telaio ausiliario Warwick Moto leader nel settore superbike
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Xometry hilft bei der Produktion des branchenführenden Superbike-Hilfsrahmens von Warwick Moto
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Xometry apporte son aide dans la fabrication du sous-châssis destiné à la moto de course avancée de Warwick Moto
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Xometry assists in the production of Warwick Moto’s industry-leading superbike subframe
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Applicazione della stampa 3D nell'industria automotive
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Anwendung des 3D-Drucks in der Automobilindustrie
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Les applications de l’imprimerie 3D dans l’industrie automobile
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Application of 3D Printing In Automotive Industry
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基于 3D 打印技术的 10 个挑战性 DIY 开源项目
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10 Challenging DIY Open-Source Projects that Use 3D Printing
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Tendenze e sviluppi del 2020 nella lavorazione CNC
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2020 : tendances et développements dans le domaine de l’usinage CNC
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2020 Trends und Entwicklungen in der CNC-Bearbeitung
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Materiali di stampa 3D per l'industria medica
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Matériaux pour l’impression 3D destinés à l’industrie médicale
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3D-Druck Materialien für die Medizinindustrie
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Come scegliere le opzioni più convenienti per il vostro progetto di stampa 3D
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Comment choisir les options les plus abordables pour votre projet en impression 3D
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Wie Sie die günstigsten Optionen für Ihr 3D-Druckprojekt auswählen können
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The Best Cheap 3D Printing Technologies
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Materiali biodegradabili per la stampa 3D
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Matériaux biodégradables pour l’impression 3D
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Biologisch abbaubare Materialien für den 3D-Druck
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Biodegradable 3D Printing Materials
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Xometry célèbre l’anniversaire de son implantation en Europe et voit sa croissance décuplée
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Xometry feiert zehnfaches Wachstum nach dem ersten Jahr in Europa
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Xometry celebra un incremento di dieci volte dopo il suo primo anno in Europa
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减少CNC加工部件成本的检查清单
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Lista di controllo per ridurre il prezzo di componenti fatti al CNC
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Nos astuces pour réduire le coût de vos pièces mécaniques usinées en CNC
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Checkliste zur Kostensenkung von CNC-gefertigten Teilen
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Checklist To Reduce Price Of CNC Machined Parts
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Guida alla scelta dei materiali per stampo ad iniezione
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Guide de sélection des matériaux pour le moulage par injection
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Leitfaden zur Materialauswahl beim Spritzguss
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Injection Moulding Materials Selection Guide
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Technischer Ingenieur-Berater (m/w/d)
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Suggerimenti di progettazione per piegatura fogli di lamiera
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Astuces de conception pour le pliage des tôles
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Design Tipps für das Biegen von Blechen
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Design Tips for Sheet Metal Bending
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Suggerimenti di progettazione per la stampa 3D Carbon DLS™
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Les applications de la technologie DLS de Carbon à l’industrie médicale
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Comment renforcer vos pièces imprimées en 3D
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Überblick der Toleranznormen für die Subtraktive Fertigung
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还能更快:SAE 方程式 (Formula SAE) 学生团队通过 Xometry择幂科技优化赛车表现
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Ancora più veloce: il team studentesco della Formula SAE migliora la propria vettura grazie al supporto di Xometry
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Encore plus rapide : des étudiants de l’équipe de formule SAE améliorent leur voiture grâce au soutien de Xometry
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Noch schneller: Studenten-Team bei Formula SAE verbessert ihr Auto mit Unterstützung von Xometry
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Even faster: student Formula SAE team improves their car with Xometry support
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Un bref aperçu des tolérances standardisées pour la fabrication soustractive
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Subtractive Manufacturing Tolerance Standards Overview
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Guide de sélection des matériaux pour pour l'impression 3D
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Anwendungen der Carbon DLS in der Medizinbranche
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Design Tips for Selective Laser Melting 3D Printing
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Leitfaden zur Materialauswahl beim 3D-Druck
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CNC-Bearbeitung von Polymeren
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Polymères et usinage CNC
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CNC Machining of Polymers
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Guida alla scelta della lamiera
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Leitfaden zur Auswahl von Blechen
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Guide de sélection des matériaux pour la tôlerie
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Sheet Metal Selection Guide
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Guida alla scelta dei materiali per la lavorazione CNC
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Leitfaden zur Materialauswahl für die CNC-Bearbeitung
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Guide de sélection des matériaux pour l’usinage CNC
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CNC Machining Materials Selection Guide
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Astuces de conception pour l’impression 3D par DLS de Carbon
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10 astuces pour améliorer vos modèles CAD en vue de l’usinage CNC
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Wie man die Xometry Instant Quoting Engine verwendet
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Guida alla scelta del materiale per la stampa 3D
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3D Printing Materials Selection Guide
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Design-Tipps für den Carbon DLS™ 3D-Druck
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Design-Tipps für HP-MJF-3D-Druck
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Astuces de conception pour l’impression 3D par HP MJF
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Leitfaden zur Auswahl des Fertigungsverfahrens
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Guida alla scelta della tecnologia di produzione
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Guide de sélection des technologies de fabrication
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Astuces de conception pour l’impression 3D par SLA
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Astuces de conception pour l’impression 3D par FDM
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Paroles de clients : Scewo AG. Et si, pour vous, monter les escaliers équivalait à escalader l’Everest ?
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Du braille embossé grâce au savoir-faire de Xometry
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Braille-Prägung dank der Technologie von Xometry
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Suggerimenti per la progettazione della stampa 3D SLA
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Design-Tipps für den SLA 3D-Druck
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Stereolithography (SLA) 3D Printing Design Tips
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3D打印:热塑性材料熔融沉积成型(FDM)的设计技巧
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FDM 3D Suggerimenti di stampa
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Design-Tipps für den FDM 3D-Druck
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Fused Deposition Modeling (FDM) 3D Printing Design Tips
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3D打印:惠普尼龙多流射熔融成型(MJF)设计技巧
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HP MJF 3D Linee guida di stampa
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HP Multi Jet Fusion(MJF) 3D Printing Design Guidelines
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Scewo AG 公司:如果爬楼梯对您就像攀登珠穆朗玛峰那样困难,该怎么办?
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Storia del cliente: Scewo AG. E se salire le scale vi sembrasse il Monte Everest?
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Customer Story: Scewo AG. What if Climbing Stairs Seemed Like Mount Everest to You?
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An Overview of Waterjet Cutting
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An Overview of Plasma Cutting
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Scewo: was wenn Treppensteigen wie Mount Everest für Sie erscheint?
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Xometry Webinar: Schnellere, einfachere und günstigere Teileproduktion durch On-Demand-Fertigung
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Wie man das beste Online CNC-Service auswählt
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Kühlschmiermittel für die CNC-Bearbeitung
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Choosing Right File Formats for Manufacturing
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Xometry择幂科技助力HARPO盲文压印
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Braille embossing grazie alla tecnologia fornita da Xometry
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Braille embossing thanks to technology provided by Xometry
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Wissenschaftsrabatt für CNC-, Blech- und 3D-Druckteile
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Introduction to Sheet Metal Fabrication
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Design-Tipps für SLS- und MJF-3D-Druck
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Services
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3D打印文件格式比较:OBJ、STL、AMF和3MF
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3D Printing File Formats Compared: OBJ, STL, AMF, and 3MF
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Post-processing for MJF and SLS 3D printed parts
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Suggerimenti di progettazione per la stampa 3D SLS
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Astuces de conception pour l’impression 3D par SLS
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Design tips for Selective Laser Sintering (SLS) 3D printing
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Matériaux pour impression 3D et texture finale : SLS & HP MJF
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3D-Druck-Materialien und deren Oberflächenqualität: SLS und HP MJF
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MJF vs SLS: 3D Printing Technologies Compared
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Die elastische Lieferkette für kundenspezifische Fertigung
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3D Printing Materials & Surface Finishes: SLS & HP MJF
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Chaîne d’approvisionnement élastique pour la fabrication sur mesure
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Elastic Supply Chain for Custom Manufacturing
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Che cos'è il taglio al plasma?
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Was versteht man unter Plasmaschneiden?
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Maximale Abmessungen für die CNC-Bearbeitung
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Les limites de taille en usinage CNC
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Size Limitations in CNC Machining
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Che cos’è il taglio laser?
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Qu’est-ce que la découpe au laser ?
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Qu’est-ce que la découpe au plasma?
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Come scegliere il miglior negozio di macchine CNC online
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Comment choisir le meilleur atelier d’usinage CNC en ligne
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Les meilleurs matériaux en CNC pour l’industrie du matériel médical
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Les meilleurs matériaux en CNC pour l’industrie du matériel médical
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Die besten CNC-Materialien für die Medizintechnikbranche
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Come scegliere il materiale CNC giusto per il vostro componente
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Comment choisir le matériau adéquat pour votre pièce à usiner ?
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Wie Sie das richtige Material für Ihr CNC-Bauteil auswählen
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5 modi per ridurre i costi di fabbricazione della lamiera
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5 Tipps zur Verringerung der Kosten in der Blechbearbeitung
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5 méthodes permettant de réduire les coûts de fabrication en tôlerie
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Europas größtes CNC-Netzwerk Shift wird von Weltmarktführer Xometry übernommen
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Subtractive Manufacturing vs. Additive Manufacturing
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钢淬火说明
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Steel Hardening Explained
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CNC Milling: All you Need to Know
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10 suggerimenti per migliorare i tuoi progetti CAD finalizzati alla lavorazione CNC
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10 Tipps zur Verbesserung Ihrer CAD-Designs für die CNC-Bearbeitung
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CNC-Bearbeitung von Aluminium
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CNC Machining of Aluminium
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Toleranzen in der CNC-Bearbeitung
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Tolerances in CNC Machining
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铝合金:命名标准交叉对照表
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Aluminiumlegierungen: Tabelle der Bezeichnungsnormen
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Aluminium Alloys: Cross-Reference Table of Designation Standards
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Stahlsorten: Tabelle der Bezeichnungsnormen
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CNC-Bearbeitung: das ultimative Handbuch
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Le guide ultime de l’usinage CNC
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The Ultimate CNC Machining Guide
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CAD Designs für CNC-Bearbeitung: Überblick
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CAD Designs for CNC machining: overview
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6 errori tipici nella progettazione CAD finalizzata alla lavorazione CNC
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6 erreurs typiques en CAO lorsque l’on conçoit pour de l’usinage CNC
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6 häufige Fehler beim CAD-Design für CNC-Bearbeitung
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6 typical mistakes in CADs for CNC machining
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Cutting fluids for CNC machining processes