Design of a Wearable Fingertip Haptic Device: Investigating Materials of Varying Stiffness for Mapping the Variable Compliance Platform

Samir Morad, Zainab Jaffer, S. Dogramadzi
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Abstract

Previously, a pneumatic design of a fingertip haptic device (FHD) was developed for virtual reality applications. In this paper, the feasibility of representing tissues of varying stiffness is investigated. Physical properties, stiffness and Young’s modulus of the variable compliance platform (VCP) were compared with a set of bolus materials representing soft tissues. Young’s moduli of the bolus materials were ten times higher than those from the VCP, whereas the stiffness was fairly similar. Hence, stiffness is the common parameter that could be used to map the FHD to the bolus materials.
一种可穿戴指尖触觉装置的设计:研究用于映射可变柔度平台的变刚度材料
以前,为虚拟现实应用开发了一种指尖触觉装置(FHD)的气动设计。本文研究了变刚度组织表示的可行性。将可变柔度平台(VCP)的物理性能、刚度和杨氏模量与一组代表软组织的材料进行比较。体块材料的杨氏模量比VCP材料高10倍,而刚度相当相似。因此,刚度是可用于将FHD映射到本体材料的常用参数。
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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