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Concurrent design of a geometric parameter and tolerance for assembly and cost

机译:几何参数的并行设计以及组装和成本公差

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摘要

Geometric parameter and tolerance design are two important phases in product design and they will affect the assembly functionality and manufacturing cost of a product. The aim is to present a new method of parameter and tolerance design for concurrent engineering. In the nominal domain, a graphical representation of the linkage of geometric constraints is termed the nominal loop circuit, which helps to formulate the stack path of parameters into parameter equations. In the variational domain, the nominal loop circuit is extended as the variational loop circuit, which helps to established assembly stack-up functions. In the tolerance domain, tolerance types are designed and tolerance inequations formulated. Based on the empirical parameter and tolerance versus manufacturing cost data, manufacturing cost functions are established. Based on the assembly and cost functions, parameter equations and tolerances inequations, the mathematical model of parameter and tolerance design is established and a genetic algorithm is used to find multi-objective optimum solutions of parameters and tolerances. The method not only can design concurrently parameter and tolerance for assembly and cost, but also synthetically consider dimensional and geometric tolerances. Applications of the proposed method have been illustrated.
机译:几何参数和公差设计是产品设计中的两个重要阶段,它们将影响产品的组装功能和制造成本。目的是提出一种用于并行工程的参数和公差设计的新方法。在标称域中,将几何约束链接的图形表示称为标称环路,这有助于将参数的堆栈路径公式化为参数方程式。在可变域中,标称回路电路作为可变回路电路得以扩展,这有助于建立装配堆叠功能。在公差域中,设计公差类型并制定公差不等式。基于经验参数和公差与制造成本数据的比较,建立制造成本函数。基于装配和成本函数,参数方程和公差不等式,建立了参数和公差设计的数学模型,并使用遗传算法找到了参数和公差的多目标最优解。该方法不仅可以同时设计用于装配和成本的参数和公差,而且可以综合考虑尺寸和几何公差。已经说明了所提出的方法的应用。

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