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Swept-volume computation for virtual reality application of machining simulation

机译:用于加工模拟的虚拟现实应用的扫描量计算

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Growing interest in Virtual Reality (VR) over the past few years has led to the development of VR techniques for applications such as virtual manufacturing, virtual assembly, virtual training, etc. Most of these applications involve the moving of objects and interaction of them with the environment in virtual space. One foreseeable important application of virtual manufacturing is Numerically Controlled (NC) machining path generation and verification in a VR environment. In this application the efficient computation and accurate representation of swept volumes of the machining cutters is an important issue. This paper describes a fast and accurate method for generating the swept volume of a moving object undergoing an arbitrary translational and rotational motion, with application to NC machining simulation in a VR setting. The Sweep Differential Equation (SDE) method, which we initially developed for representing and computing the swept volumes of rigid moving objects and subsequently extended to objects that may deform during the course of motion, forms the basis for the VR application of NC cutter path generation and verification. An example is provided to demonstrate the effectiveness of the SDE method for simulation of multi-axis NC machining.
机译:在过去几年中对虚拟现实(VR)的兴趣导致了虚拟制造,虚拟装配,虚拟培训等应用程序的VR技术的发展,这些应用程序涉及对物体的移动和它们的相互作用。虚拟空间中的环境。虚拟制造的可预见的重要应用是数值控制(NC)加工路径生成和VR环境中的验证。在本申请中,加工刀具的扫掠卷的有效计算和准确表示是一个重要问题。本文介绍了一种快速准确的方法,用于产生经历任意平移和旋转运动的移动物体的扫描量,应用于VR设置中的NC加工模拟。扫描微分方程(SDE)方法,我们最初开发用于代表和计算刚性移动物体的横扫体积并随后扩展到在运动过程中可能变形的对象,形成NC切割器路径生成的VR应用的基础并验证。提供了一个示例以证明SDE方法用于模拟多轴NC加工的仿真。

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