首页> 外文会议>Proceedings of the ASME/AFM world conference on innovative virtual reality 2009 >MODELING DYNAMIC BEHAVIOR OF PARTS IN VIRTUAL ASSEMBLY ENVIRONMENT
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MODELING DYNAMIC BEHAVIOR OF PARTS IN VIRTUAL ASSEMBLY ENVIRONMENT

机译:虚拟装配环境中零件的动态行为建模

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Physically-based behavior of parts and subassemblies provides the user with realistic virtual assembly planning environment.rnParts' mating is an important phase of the assembly operation. It determines the feasibility of the operation and affects the assembly sequence generated from the interaction with virtual parts. Haptic sensation of forces generated by the contacts between parts, during the mating phase, is a perception cue which assists the operator in locating the parts in their final assembly positions and orientations [1]. The research work reported in this paper focuses on modeling the dynamic behavior of mechanical parts during the execution of virtual assembly operation. The concept of spring-damper model was adopted to preclude the interpenetration of parts during the mating phase. The concept of "visual dynamic behavior" representing the manipulation of real parts was developed. More investigations are required to extend this concept to include the manipulation of subassemblies.
机译:零件和子装配的基于物理的行为为用户提供了逼真的虚拟装配计划环境。零件的配合是装配操作的重要阶段。它确定了操作的可行性,并影响了与虚拟零件交互所生成的装配顺序。在配合阶段,由零件之间的接触所产生的力的触觉是一种感知提示,它有助于操作员将零件定位在其最终组装位置和方向[1]。本文报道的研究工作集中于对虚拟零件操作执行过程中机械零件的动态行为进行建模。采用了弹簧阻尼器模型的概念,以防止零件在配合阶段相互渗透。提出了代表实际部件操纵的“视觉动态行为”的概念。为了使这一概念扩展到包括子组件的操纵,还需要进行更多的研究。

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