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Stiffness analyses of modified niagara prosthetic feet using finite element modelling

机译:使用有限元模拟改性尼亚加拉假脚的僵硬分析

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Structural stiffness of a prosthetic foot are based on its shape, type of material, and the attitude of loading. The purpose of this research is to study the effect of S-shape thickness and the type of material on the stiffness of a modified Niagara foot design on the toe and the heel modes of loading. In this study, numerical tests using finite element (FE) method were conducted on four shape models with three different materials. These models are developed by changing the thickness of the upper part of the S-shape “B”. Results indicated that the increase of “B” had increased the stiffness of the foot at the heel mode of loading. Corresponding results were also obtained at only the early stage of the toe loading. Such effect was diminished at the later stages of toe loading due to the closing of the gap between the prongs and the arch. The stiffness characteristics and the force-displacement profiles were consistent with the different design features, indicating that the FE testing protocol is able to capture the mechanical behavior of such designs and can be used to validate the preliminary designs before manufacture. The methodology appointed by this study could be used to clarify new designs of the Niagara foot.
机译:假肢脚的结构刚度基于其形状,材料类型,以及装载的态度。本研究的目的是研究S形厚度和材料类型对脚趾上改进的尼亚加拉脚设计的刚度和鞋跟的载荷模式。在该研究中,使用有限元(Fe)方法的数值测试在具有三种不同材料的四个形状模型上进行。通过改变S形“B”的上部的厚度来开发这些模型。结果表明,“B”的增加在鞋跟的装载模式下增加了脚的刚度。还在仅在饲料载荷的早期阶段获得相应的结果。由于尖头和拱之间的差距关闭,在脚趾装载的后期阶段减小了这种效果。刚度特性和力 - 位移轮廓与不同的设计特征一致,表明FE测试协议能够捕获这种设计的机械行为,并且可用于在制造之前验证初步设计。本研究指定的方法可用于阐明尼亚加拉脚的新设计。

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