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Tolerance specification of the plane feature based on the axiomatic design

机译:基于公理设计的平面特征公差规范

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摘要

Tolerance specification involves selecting tolerance types for functional or assembly features to control the variation of features. General methods tend to formulate a frame to specify all the features of part, while the specification methods or reasoning rules for specific feature (point, line, plane, cylinder, etc.) are less studied. This paper focuses on the tolerance-type selection of the plane feature. The theory of axiomatic design is introduced to select the tolerance type for the plane feature, and the problem is interpreted as a redundant decoupled design. To achieve the functional requirements, design parameters and constraints of physics domain are determined. The mapping rules, which are between design parameters and functional requirements, are generated based on the independent axiom. Considering the large number of solutions of the design, the constraints such as cost and inspection methods are introduced to reduce the number of solutions. The minimum information axiom is introduced for the optimum mapping rules and the tolerance types are selected by the optimum mapping rules for the plane feature. Finally, the specification process is concluded and demonstrated by means of an example.
机译:公差规范涉及选择功能或装配特征的公差类型,以控制特征的变化。一般方法倾向于配制框架以指定部分的所有特征,而特定特征(点,线,平面,圆柱等)的规范方法或推理规则较少。本文重点介绍了平面特征的公差类型。引入了公理设计理论以选择平面特征的公差类型,并且该问题被解释为冗余分离设计。为实现功能要求,确定物理域的设计参数和约束。基于独立的Axiom生成设计参数和功能要求之间的映射规则。考虑到设计的大量解决方案,引入了诸如成本和检查方法的约束以减少解决方案的数量。引入最小信息公理,用于最佳映射规则,并且通过用于平面特征的最佳映射规则来选择公差类型。最后,通过示例结束并证明了规范过程。

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