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Finite Element Analysis of the Jaipur Foot: Implications for Design Improvement

机译:斋浦尔脚的有限元分析:设计改进的含义

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Introduction: The Jaipur Foot is a low-cost prosthetic limb developed by Dr. P.K. Sethi and implemented in clinics across India and the world. Although the device is well-suited for many geographic and socioeconomic areas, it suffers from an inconsistent lifespan. Methods: The purpose of this study was to use finite element analysis to parametrically simulate the Jaipur Foot to determine potential improvements to the prosthesis' design. The resulting model used varied material properties and internal boundary conditions through two stages of the gait cycle to predict the effects on the likelihood of device failure. Further analysis investigating the effect on device mechanics by the change in material properties due to vulcanization was also completed. Results: Results suggested that the interface between microcellular rubber blocks is a concern for failure, which agrees with epidemiological studies of the prosthesis. Data further indicated changes in material property to result in substantial alterations to the stresses experienced within the prosthesis. Conclusions: Future work could use this model for alternative designs of the Jaipur Foot.
机译:介绍:斋浦尔脚是P.K博士开发的低成本假肢。 Sethi并在印度和世界的诊所实施。虽然该设备非常适合许多地理和社会经济区域,但它遭受了不一致的寿命。方法:本研究的目的是使用有限元分析来参数模拟斋浦尔脚以确定对假肢设计的潜在改进。由此产生的模型通过步态周期的两个阶段使用不同的材料特性和内部边界条件来预测设备故障可能性的影响。还完成了通过硫化引起的材料特性变化研究对器件力学影响的进一步分析。结果:结果表明,微孔橡胶块之间的界面是对失败的关注,这与假体的流行病学研究同意。数据进一步指出了材料性质的变化,导致假体内经历的应力的显着改变。结论:未来的工作可以使用这种模型来允许斋浦尔脚的替代设计。

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