Novel Design of a 3D Printed Anthropomorphic Soft Prosthetic Hand

E. Abbot, Amanda de Oliveira Barros, Jie Yang
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Abstract

Human hands play a key role in almost all activities of daily living (ADLs) because it is an incredibly versatile tool capable of complex motion. For individuals who have had a complete loss of the hand, the ability to perform ADLs is impaired. Effective prosthetics accurately simulate the movements of a human hand by providing a high number of degrees of freedom, an efficient control system, and an anthropomorphic appearance. In this paper, the design and construction process of a highly anthropomorphic soft robotic prosthetic hand is outlined. The design specifications of the hand are based on feedback from current and former prosthetic users. The hand endoskeleton was 3D printed using fused deposition modeling techniques and was enclosed in a silicone coating modeled, after a real human hand. The hand presents anthropomorphic design in its realistic bone shapes and in its external covering that is like skin in texture and mechanical properties. The hand utilizes the flexibility of silicone instead of antagonistic tendons which would otherwise add complexity and weight to the prosthetic design. The prototype also includes adduction/abduction of the fingers, which is a common omitted movement in other prosthetics. Testing showed that the hand is capable of effective power and precision grasping.
3D打印拟人化软性假手的新设计
人的手在几乎所有的日常生活活动(ADLs)中发挥着关键作用,因为它是一个令人难以置信的多功能工具,能够进行复杂的运动。对于完全失去手的人来说,进行ADLs的能力受到损害。有效的假肢通过提供大量的自由度、有效的控制系统和拟人化的外观,准确地模拟人手的运动。本文概述了一种高度拟人化的柔性机械假手的设计与制作过程。手的设计规格是基于当前和以前的假肢用户的反馈。手内骨骼使用熔融沉积建模技术进行3D打印,并被封闭在硅胶涂层中,模仿真人的手。这只手呈现出拟人化的设计,它具有逼真的骨骼形状,它的外部覆盖层在纹理和机械性能上就像皮肤一样。手利用硅胶的柔韧性,而不是对抗肌腱,否则会增加假肢设计的复杂性和重量。该原型还包括手指内收/外展,这是其他假肢中常见的遗漏动作。实验表明,该机械手具有有效的抓握能力和抓握精度。
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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