3D Systems > 实例探究 > 数字技术彻底改变了矫形器和假肢的设计和制造

数字技术彻底改变了矫形器和假肢的设计和制造

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 Digital Transformation in Orthotic and Prosthetic Design and Manufacturing - IoT ONE Case Study
技术
  • 功能应用 - 制造执行系统 (MES)
  • 传感器 - 触觉传感器
适用行业
  • 教育
  • 设备与机械
适用功能
  • 产品研发
  • 质量保证
用例
  • 添加剂制造
  • 虚拟原型与产品测试
服务
  • 测试与认证
  • 培训
挑战

将数字技术引入矫形和假肢设计和制造,以支持使用数字工作流程和工具的手动流程。

客户
关于客户

1984 年,豪斯勒在乌尔姆大学和康复诊所 (RKU) 开设了一个临床研讨会,以加强医学与研究之间的联系。

Häussler 不仅仅是一般的医疗用品商店。 Häussler 矫形师和假肢师与乌尔姆应用科学大学密切合作,医学工程和生物机电一体化专家教授 Felix Capanni 博士在那里工作和进行研究。 Steffen Matyssek 是 Capanni 教授的前研究助理,负责管理豪斯勒的研发部门。除了指导学士和硕士论文,Matyssek 还将研究与商业实施联系起来。

解决方案

3D Systems 使用 Dynabots 自动执行步骤的 Geomagic® Freeform® 有机 3D 设计软件。

运营影响
  • The integration of digital technologies into the O&P workflow has been a team effort. The use of Geomagic Freeform with the Touch haptic device has provided the same options and tools that are available in the plaster room. The Dynabot functionality in Geomagic Freeform has allowed for the automation of recurring tasks and has provided the user with the right tool for each step of the process. This has led to standardization and has made the process faster. The use of digital technologies has not replaced the techniques used today, but has complemented them and made the work more efficient. Standardization has also helped to keep the quality of the products consistently high. 3D printing has provided new opportunities for customization.
数量效益
  • Accelerated modeling subtasks with automation.
  • Achieved reproducible results and strengthened standardization with digitization and defined workflows.
  • Improved quality and speed of orthotic and prosthetic design and manufacturing to meet patients’ individual needs.

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