DESIGN AND MANUFACTURE OF SOFT FINGER-GLOVES FOR REHABILITATION OF INDIVIDUALS WITH DISABILITIES

Xuan Hiep Trinh
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Abstract

This article presents the development and production process of a glove designed for rehabilitation, and enhancing object manipulation capabilities for individuals with hand mobility limitations, using soft finger design. The soft fingers are constructed from a composite structure consisting of silicone rubber material. An automated calculation program is created in Python and integrated with Abaqus/CAE software, enabling the concurrent exploration of numerous parameters governing the soft fingers to choose a rational design of glove. Experimental tests reveal that the error of the experiment and simulation results is less than 7.8%. Furthermore, these deformable soft fingers can closely mimic the contours of human fingers. Leveraging the successful construction of the soft fingers, a corresponding soft glove is manufactured. Preliminary validated experiments demonstrate the effectiveness of these soft gloves in aiding patients with diverse exercise rehabilitation. Additionally, they provide support for basic tasks such as grasping objects weighing approximately 600 grams.
设计和制造用于残疾人康复的软指套
本文介绍了一种用于康复的手套的开发和生产过程,该手套采用软手指设计,可增强手部活动受限者的物体操作能力。软手指由硅橡胶材料组成的复合结构制成。使用 Python 创建了一个自动计算程序,并与 Abaqus/CAE 软件进行了集成,从而能够同时探索支配软手指的众多参数,以选择合理的手套设计。实验测试表明,实验和模拟结果的误差小于 7.8%。此外,这些可变形软手指还能近似模拟人类手指的轮廓。利用软手指的成功构造,制造出了相应的软手套。初步验证实验表明,这些软手套在帮助病人进行各种运动康复方面非常有效。此外,它们还能为基本任务提供支持,例如抓取重约 600 克的物体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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