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Finite-element analysis to determine effect of monolimb flexibility on structural strength and interaction between residual limb and prosthetic socket

机译:有限元分析,以确定单肢柔韧性对结构强度以及残肢与假牙窝之间相互作用的影响

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摘要

Monolimb refers to a kind of transtibial prostheses having the socket and shank molded into one piece of thermoplastic material. One of its characteristics is that the shank is made of a material that can deform during walking, which can simulate ankle joint motion to some extent. Changes in shank geometry can alter the stress distribution within the monolimb and at the residual limb-socket interface and, respectively, affect the deformability and structural integrity of the prosthesis and comfort perceived by amputees. This paper describes the development of a finite-element model for the study of the structural behavior of monolimbs with different shank designs and the interaction between the limb and socket during walking. The von Mises stress distributions in monolimbs with different shank designs at different walking phases are reported. With the use of distortion energy theory, possible failure was predicted. The effect of the stiffness of the monolimb shanks on the stress distribution at the limb-socket interface was studied. The results show a trend-the peak stress applied to the limb was lowered as the shank stiffness decreased. This information is useful for future monolimb optimization.
机译:单肢是指一种将胫骨窝和胫骨模制成热塑性材料的胫骨假体。它的特征之一是,小腿由在行走过程中会变形的材料制成,该材料可以在某种程度上模拟踝关节的运动。柄的几何形状的变化可以改变单肢内和残余的肢体-套接字界面处的应力分布,并分别影响假肢的变形性和结构完整性以及被截肢者感觉到的舒适度。本文介绍了一种有限元模型的开发,该模型用于研究具有不同柄设计的单肢的结构行为以及行走过程中肢体与窝之间的相互作用。据报道,在不同的行走阶段,具有不同柄设计的单肢中的冯·米塞斯应力分布。通过使用变形能量理论,可以预测可能的故障。研究了单肢小腿的刚度对肢体-窝界面应力分布的影响。结果表明,趋势是:随着小腿硬度的降低,施加在肢体上的峰值应力会降低。此信息对于将来的单边优化很有用。

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