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A concurrent design method for functional tolerance and structure based on the principle of decomposition and reconstitution

机译:基于分解与重构原理的功能公差与结构的并发设计方法

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To assure feasibility and economy of mechanical product design, tolerance design should be incorporated into conceptual structure design phase. The completion of the evolving procedures from functional requirement to tolerance scheme resolution in the early stage, greatly promotes selection of structure scheme and optimization of cost. The paper provides a concurrent design methodology for functional tolerance using the principle of decomposition and reconstitution using growth design based on functional surfaces. A concurrent design methodology is given, including growth design-supported structure-tolerance design process, assembly information model and TTRS-based tolerance representation model. A recursive design method for function to structure mapping is proposed, and the tolerance design in every step of the iteration is focused on. Geometric variation model is introduced to infer key parts and key features, helping forming tolerance specification while assuring rationality and sufficiency of structure decomposition. In the whole process, structure and tolerance are constrained to each other and an optimization framework is put forward.
机译:为了确保机械产品设计的可行性和经济性,应将公差设计纳入概念结构设计阶段。从功能要求完成在早期阶段的耐受性方案解析中的不断发展的程序,大大促进了结构方案的选择和成本优化。本文提供了一种使用基于功能表面的生长设计的分解原理的功能公差的并发设计方法。给出了一种并发设计方法,包括增长设计支持的结构公差设计过程,组装信息模型和基于TTR的公差表示模型。提出了一种用于结构映射的递归设计方法,并且迭代的每个步骤中的公差设计都集中在上面。引入几何变化模型以推断关键零件和关键特征,帮助形成公差规范,同时确保结构分解的合理性和充分性。在整个过程中,结构和容差彼此约束,并提出了优化框架。

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