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Framework of an integrated tolerance synthesis model and using FE simulation as a virtual tool for tolerance allocation in assembly design

机译:集成公差综合模型的框架,并将有限元仿真用作装配设计中公差分配的虚拟工具

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摘要

Nominal dimensions may not be achievable during manufacturing processes, due to technological or financial limitations. Therefore, tolerance allocation is of significant importance for successful assembly. The information required to allocate tolerances for complex parts and assemblies is, however, generally not available at the initial design-stage. The research on tolerance synthesis has, therefore, been conducted to develop methods, algorithms and processes, with primary focus on manufacturing, assembly, cost and quality issues. In the reported research, a framework was proposed to compile available information for developing an integrated tolerance synthesis model and a step-by-step tolerance allocation process. Architecture of the model and the process would provide a foundation for the development of a tolerance synthesis software. The research has also been extended to explore the applications of FE simulation, as a virtual tool, to the prediction of the influence of geometric tolerances on the part distortions for complex part-forms and assembly design.
机译:由于技术或财务限制,在制造过程中可能无法达到标称尺寸。因此,公差分配对于成功组装至关重要。但是,在初始设计阶段通常无法获得为复杂零件和组件分配公差所需的信息。因此,已经进行了公差综合研究以开发方法,算法和工艺,主要侧重于制造,组装,成本和质量问题。在已报告的研究中,提出了一个框架来编译可用信息,以开发集成公差综合模型和逐步公差分配过程。模型和过程的架构将为公差综合软件的开发提供基础。这项研究也已扩展到探索有限元模拟作为一种虚拟工具的应用,以预测几何公差对复杂零件形状和装配设计的零件变形的影响。

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