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Toward Automatic Tolerancing of Mechanical Assemblies: Assembly Analyses

机译:迈向机械装配的自动公差:装配分析

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Generating geometric dimensioning and tolerancing (GD&T) specifications for mechanical assemblies is a complex and tedious task, an expertise that few mechanical engineers possess. The task is often done by trial and error. While there are commercial systems to facilitate tolerance analysis, there is little support for tolerance synthesis. This paper presents a systematic approach toward collecting part and assembly characteristics in support of automating GD&T schema development and tolerance allocation for mechanical assemblies represented as neutral B-Rep. First, assembly characteristics are determined, then a tentative schema is determined and tolerances allocated. This is followed by adaptive iterations of analyses and refinement to achieve desired goals. This paper will present the preprocessing steps for assembly analysis needed for tolerance schema generation and allocation. Assembly analysis consists of four main tasks: assembly feature recognition (AFR), pattern detection, directions of control, and loop detection. This paper starts with identifying mating features in an assembly using the computer-aided design (CAD) file. Once the features are identified, patterns are determined among those features. Next, different directions of control for each part are identified and lastly, using all this information, all the possible loops existing in an assembly are searched.
机译:生成机械装配的几何尺寸和公差(GD&T)规范是一项复杂而繁琐的任务,这是很少有机械工程师具备的专业知识。该任务通常是通过反复试验来完成的。虽然有商业系统可以帮助公差分析,但是几乎没有支持公差综合的方法。本文提出了一种收集零件和装配体特征的系统方法,以支持自动GD&T方案开发和对以中性B-Rep表示的机械装配的公差分配。首先,确定装配特征,然后确定试验方案并分配公差。接下来是分析和优化的自适应迭代,以实现所需的目标。本文将介绍公差分析生成和分配所需的装配分析预处理步骤。装配分析包括四个主要任务:装配特征识别(AFR),模式检测,控制方向和循环检测。本文首先使用计算机辅助设计(CAD)文件识别装配体中的配合特征。一旦特征被识别,就在那些特征中确定图案。接下来,确定每个零件的不同控制方向,最后,使用所有这些信息,搜索装配中存在的所有可能的回路。

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