用CAD和CAE对Mg5085铝制假肢钳接头部件进行了重新设计

Fajar Yulianto Prabowo, S. Suyitno
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引用次数: 0

摘要

设计采用计算机辅助设计(CAD)对假肢腿上的夹具适配器进行了设计和分析,并采用计算机辅助工程(CAE)进行了设计。本研究的背景是由于腿部假肢部件的部分故障,而本研究的目的是能够设计出能够承受300公斤负载的腿部假肢夹具适配器。铝mg5085是制造这个夹具适配器的材料,然后进行300kg的加载试验。300公斤的体重被认为是肥胖的成年人的平均体重。结果表明:最大应力为25.41 MPa,最大位移为6.876 mm,应力为0.1345mm;该分析结果远低于屈服强度为140 MPa的铝Mg。因此,这种设计可以说是安全的,可以进一步测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Redesign of Leg Prosthetic Clamp Adapter Component Made of Aluminium Mg5085 by using CAD and CAE
Designing used CAD (Computer Aided Design) to create a design and analyzing the clamp adapter on the leg prosthetic component by using CAE (Computer Aided Engineering) had already been done. This research background is due to a failure on the part of the leg prosthetic component whereas the aim of this research is intended being able to design a leg prosthetic clamp adapter to be able to withstand 300kg load. Aluminium Mg 5085 is the material to make this clamp adapter then 300kg loading test is conducted. 300kg weight is chosen as considered having the average weight of adults who suffer obesity. The result showed that the hugest stress is 25.41 MPa, the biggest displacement 6.876 mm, and 0.1345mm stress. This analysis result is far lower from yield strength aluminium Mg which is 140 MPa. Hence, this design can be said safe and can be tested further.
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