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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Computer aided geometric feasible assembly sequence planning and optimizing
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Computer aided geometric feasible assembly sequence planning and optimizing

机译:计算机辅助几何可行装配顺序的规划与优化

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摘要

Assembly sequence planning (ASP) is the foundation of the assembly process planning and design for assembly (DFA). In ASP, geometric feasibility is the prerequisite in the valid assembly sequences searching. The assembly precedence relations’ (APRs) deriving and fulfilling are the essential tasks in the geometric feasible assembly sequence planning. In this paper, a systematical approach called geometric constraint analysis (GCA) is proposed and the corresponding software system is developed and integrated with CAD system. Using this system, only with a few mouse clicks on CAD draft, assembly precedence relations (APRs) can be derived correctly and completely. Then, all the geometric feasible assembly sequences can be inferred out automatically. Moreover, an optimal algorithm is designed and realized in the GCA method, by which, the most optimal assembly sequence in terms of the operation convenience can be found out from the immense geometric feasible sequences.
机译:装配顺序计划(ASP)是装配过程规划和装配设计(DFA)的基础。在ASP中,几何可行性是有效装配顺序搜索的前提。装配优先级关系(APR)的获得和实现是几何可行装配顺序规划中的基本任务。本文提出了一种称为几何约束分析(GCA)的系统方法,并开发了相应的软件系统并将其与CAD系统集成。使用此系统,只需在CAD工程图上单击几下鼠标,就可以正确,完整地得出装配优先级关系(APR)。然后,可以自动推断出所有几何可行的装配顺序。此外,通过GCA方法设计并实现了一种最优算法,可以从庞大的几何可行序列中找到在操作方便性方面最优的最佳装配顺序。

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