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Mechanical analysis of osseointegrated transfemoral implant systems.

机译:骨整合经股植入系统的力学分析。

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摘要

Osseointegrated transfemoral implants have been introduced as an alternative to conventional, socket-based prostheses for above knee amputees. This method is showing great promise; however, the frequency of device failure is of concern. As a means to understand some of these failures, this study investigates the mechanical behaviour of three osseointegrated transfemoral implant systems; an in-house prototype design and two assemblies comprised of implant-grade parts provided by Integrum AB, Sweden. A series of mechanical tests were administered to evaluate the effects of tightening specifications and connection geometry on the material response, and mechanical behaviour of the assemblies. The tests included torque-elongation measurements, torque to failure tests, and strain analyses during loading.;The results obtained confirm that the Integrum assemblies exhibit improved performance when tightened to a level beyond the current specified tightening torque of 12 Nm. Increased tightening torque provides an improved connection between components, leading to increased torque retention, decreased peak tensile strain values and a more gradual, primarily compressive distribution of strains throughout the assembly.;This research was carried out in an attempt to better understand the behaviour of components under loading, in order to optimize the assembly specifications and improve the useful life of the system.
机译:已经引入骨整合的股骨植入物,以替代膝上截肢者传统的基于窝的假体。这种方法显示出巨大的希望。但是,设备故障的频率值得关注。作为了解其中一些失败的一种手段,本研究调查了三种骨整合式经股骨植入系统的机械性能。内部原型设计和两个组件,由瑞典Integrum AB提供的植入物级零件组成。进行了一系列机械测试,以评估拧紧规格和连接几何形状对材料响应和组件机械性能的影响。这些测试包括扭矩伸长率测量,扭矩至破坏测试以及加载过程中的应变分析。所获得的结果证实,将Integrum组件拧紧至超过当前规定的12 Nm的拧紧扭矩水平时,其性能得到改善。增加的拧紧扭矩可改善组件之间的连接,从而增加扭矩保持力,降低峰值拉伸应变值以及在整个组件中实现更渐变的,主要是压缩的应变分布。组件在负载下,以优化组装规格并提高系统的使用寿命。

著录项

  • 作者

    Thompson, Melanie Louise.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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