有限元分析优化材料选择和3D打印下肢外骨骼

Ravichandran S, V. Jothiprakash, K. Venkatesan
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引用次数: 0

摘要

外骨骼背后的技术目的是实现人机运动功能。军事、工业和医疗领域的性能都因外骨骼而得到改善。使用医用外骨骼可以获得康复的好处。机械结构的设计和开发对代谢过程的成本、尺寸、便携性和成本都有影响。由于电子、控制、电机和驱动器等部件的小型化,外骨骼现在在不发达国家的消费者触手可及。外骨骼结构的替代材料的使用提高了它的安全性和强度,同时降低了它的总体成本。框架可以由金属、复合材料或聚合物制成。在这项研究中,使用增材制造技术来选择将用于下肢康复的外骨骼框架的组件。CATIA v5生成三维模型,Ansys进行有限元分析,估计材料的变形,确定材料是否适合不同年龄段的人使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Finite Element Analysis Optimises Material Selection and 3D Printing of Lower Limb Exoskeletons
The purpose of the technology behind exoskeletons is to achieve human-machine motor function. The performance of the military, industry, and the medical field is all improved with exoskeletons. Rehabilitative benefits can be gained from using medical exoskeletons. The design and development of mechanical structures have an impact on the cost of metabolic processes, as well as size, portability, and cost. Exoskeletons are now within reach of consumers in underdeveloped nations thanks to the miniaturisation of components including electronics, controls, motors, and drives. The use of alternative material for the exoskeleton structure improves both its safety and its strength while simultaneously reducing its overall cost. Frames can be made out of metals, composites, or polymers. In this study, the technology of additive manufacturing is used to choose the components that will go into an exoskeleton frame for lower limb rehabilitation. CATIA v5 generates a 3D model, and Ansys carries out a finite element analysis to estimate the deformation of the material and determine whether or not it is appropriate for use by various age groups.
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