考虑形状缺陷和机械载荷的接触建模的丰富多面体仿真

IF 3 3区 计算机科学 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Carlos Andrés Restrepo García , Yann Ledoux , Nabil Anwer , Vincent Delos , Laurent Pierre , Denis Teissandier
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引用次数: 0

摘要

接触建模是几何公差管理中的一项重要工作。基于约束集的接触建模方法的研究主要集中在几何变化累积的叠加函数或图约简。即使使用皮肤模型范式来模拟配对表面上的形状偏差,忽略这些偏差的影响也没有被正式区分。本文提出了一种基于丰富多面体的机构接触建模方法。采用基于螺旋理论的无摩擦力刚体模型来模拟接触面。在这种方法中,机构上的外部载荷被转化为多面体中额外的半空间,这对多面体操作数施加了额外的限制。通过明确地包括外部机械载荷,可以精确地区分形状偏差对功能条件的影响。本文以光谱仪两个配合部件之间的滑动接触为例,进一步说明了该方法的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Enriched Polyhedral-based Simulation for the Contact Modeling with Form Defects and Mechanical Loads
Contact modeling is an important activity in the geometrical and tolerancing management. The research on contact modeling using methods based on sets of constraints has focused on the stack-up functions or graph reductions for the accumulation of geometric variations. Even when the Skin Model paradigm is used to simulate form deviations on mating surfaces, the impact of disregarding those deviations has not been formally discriminated. In this paper, an enriched polyhedral-based approach for the contact modeling of mechanisms is proposed. The contact is simulated through a rigid body model with no frictional forces based on the screw theory. In this method, the external loadings on the mechanism are translated into an additional half-space in the polyhedron that imposes an additional restriction to the polyhedron operand. By explicitly including the external mechanical loadings, the impact of the form deviations on a functional condition can be discriminated precisely. In this paper, a case study of a sliding contact between two mating parts of a spectrometer is presented to further illustrate the method advantages.
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来源期刊
Computer-Aided Design
Computer-Aided Design 工程技术-计算机:软件工程
CiteScore
5.50
自引率
4.70%
发文量
117
审稿时长
4.2 months
期刊介绍: Computer-Aided Design is a leading international journal that provides academia and industry with key papers on research and developments in the application of computers to design. Computer-Aided Design invites papers reporting new research, as well as novel or particularly significant applications, within a wide range of topics, spanning all stages of design process from concept creation to manufacture and beyond.
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