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Effects of Temperature on the Characterisation of a New Design for a Non-Articulated Prosthetic Foot

机译:温度对非铰接假肢足部新设计表征的影响

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This paper presents a new design for a non-articulated prosthetic foot made from high density polyethylene. The mechanical and physical properties of the proposed design are then compared with a Solid Ankle Cushioned Heel (SACH) foot based in a numerical and experimental investigation. The prosthetic foot failure characteristics at room temperature and at a relatively high temperature (60 °C) were determined using a fatigue foot tester and the dorsiflexion angle was measured using inclined compression. The numerical solution can be used to find the safety factor for the new design using SolidWorks software and ANSYS. From the results in this case, the maximum dorsiflexion angle at toe off for the SACH and new prosthetic foot are 4.7° and 6.3°, respectively. Fracture of the new prosthetic foot occurs at 1,1047,321 and 1,089,463 cycles for tests performed at room temperature (23 °C) and at (60 °C) respectively.
机译:本文提出了一种新的设计,用于由高密度聚乙烯制成的非铰接性假脚。然后将所提出的设计的机械和物理性质与基于数值和实验研究的固体踝缓冲鞋跟(SACH)脚进行比较。使用疲劳足部测试仪测定室温和相对较高温度(60℃)的假体脚部失效特性,并且使用倾斜的压缩测量背积角度。数值解决方案可用于使用SolidWorks软件和ANSYS找到新设计的安全系数。从这种情况下,脚趾上的最大背裂角分别为4.7°和6.3°。新的假体脚的骨折发生在1,1047,321和1,089,463次循环中,用于在室温(23°C)和(60℃)处进行的试验。

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