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Toward Automatic Tolerancing of Mechanical Assemblies: First-Order GD&T Schema Development and Tolerance Allocation

机译:迈向机械组件的自动公差:一阶GD&T模式开发和公差分配

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Geometric and dimensional tolerances must be determined not only to ensure proper achievement of design function but also for manufactw ability and assemblability of mechanical assemblies. We are investigating the degree to which it is possible to automate tolerance assignment on mechanical assemblies received only as STEP AP 203 (nominal) geometry files. In a previous paper, we reported on the preprocessing steps required: assembly feature recognition, pattern recognition, and extraction of both constraints and directions of control (DoC) for assembly. In this paper, we discuss first-order tolerance schema development, based purely on assemblability conditions. This includes selecting features to be toleranced, tolerance types, datums, and datum reference frames (DRFs), and tolerance value allocation. The approach described here is a combination of geometric analysis and heuristics. The assumption is that this initial geometric dimensioning and tolerancing (GD&T) specification will be sent to a stack analysis module and iterated upon until satisfactory results, such as desired acceptance rates, are reached. The paper also touches upon issues related to second-order schema development, one that takes intended design function into account.
机译:必须确定几何公差和尺寸公差,不仅要确保适当地实现设计功能,而且还要确定机械组件的制造能力和可组装性。我们正在研究在仅以STEP AP 203(名义)几何文件形式接收的机械组件上实现公差分配自动化的程度。在上一篇论文中,我们报告了所需的预处理步骤:装配特征识别,模式识别以及约束和控制方向(DoC)的提取以进行装配。在本文中,我们仅基于可组装性条件讨论一阶公差方案的开发。这包括选择要公差的特征,公差类型,基准和基准参考系(DRF)以及公差值分配。此处描述的方法是几何分析和启发式方法的组合。假设此初始几何尺寸和公差(GD&T)规范将发送到堆栈分析模块并进行迭代,直到达到满意的结果(例如所需的接受率)为止。本文还涉及与二阶模式开发有关的问题,该问题考虑了预期的设计功能。

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