Interactive Forces Analysis and Haptic Modeling for Virtual Prototyping and Product Development

Yuan-Shin Lee, Shiyong Lin, R. Narayan
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引用次数: 1

Abstract

In this paper, we present a haptic modeling for interactive forces on heterogeneous deformable product design and virtual prototyping. Techniques of both geometric and physical modeling of deformable heterogeneous materials are presented for virtual prototyping and product development. Haptic interactive forces and torques are calculated based on the deformation of heterogeneous materials with different material properties. Surface frictions are considered in the force rendering modeling to simulate physical properties of deformable objects. A lab-built 5-DOF (degree of freedom) haptic force-torque feedback interface is developed to allow the user to maneuver and test the virtual product models built for product development. Examples of using the presented techniques in medical applications were also discussed. The proposed techniques can be used in design and product evaluation, virtual prototyping, and other virtual reality applications where soft materials are involved.
虚拟样机与产品开发中的交互力分析与触觉建模
本文提出了一种非均质可变形产品设计中相互作用力的触觉建模方法和虚拟样机技术。介绍了可变形非均质材料的几何和物理建模技术,用于虚拟样机和产品开发。基于不同材料性能的非均质材料的变形,计算了触觉交互力和扭矩。在力渲染建模中考虑了表面摩擦来模拟可变形物体的物理特性。开发了一个实验室构建的五自由度触觉力-扭矩反馈界面,允许用户操纵和测试为产品开发而构建的虚拟产品模型。还讨论了在医学应用中使用所提出的技术的实例。所提出的技术可用于设计和产品评估、虚拟原型和其他涉及软材料的虚拟现实应用。
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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