Jacobian-based modeling of dispersions affecting pre-defined functional requirements of mechanical assemblies

P. Lafond, L. Laperrière
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引用次数: 35

Abstract

Presents a method to mathematically model 3-D tolerance chains around a desired functional requirement of a mechanical assembly. The modeling process uses the concept of virtual joints associated with the toleranced functional elements in a tolerance chain. These virtual joints simulate small possible dispersions of the toleranced functional element in terms of three general small translations and three general small rotations assuming to result from manufacturing inaccuracies. Using standard Jacobian-based computations, it becomes possible to model the effects of such small dispersions of each element in a kinematic chain around a point of interest on an assembly, in particular around the desired functional requirement. The main focus in the paper is on the important ability of the developed tolerance model to explicitly include the effects of dispersions on two types of functional element pairs in a chain around a functional requirement, namely internal pairs (pairs on the same part) and kinematic pairs (pairs on different parts in contact).
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影响机械组件预定义功能需求的分散的基于雅可比的建模
提出了一种围绕机械装配所需功能要求建立三维公差链数学模型的方法。建模过程使用与公差链中的公差功能元件相关联的虚拟关节的概念。这些虚拟关节以三种一般的小平移和三种一般的小旋转来模拟公差功能元件的可能的小分散,假设这是由制造不精确造成的。使用标准的基于雅可比矩阵的计算,可以对运动链中每个元素在装配感兴趣点周围的小分散的影响进行建模,特别是在期望的功能要求周围。本文的主要重点是所开发的公差模型的重要能力,即明确地包括离散对链中围绕功能要求的两类功能单元对的影响,即内部对(同一零件上的对)和运动对(接触的不同零件上的对)。
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