首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Optimal tolerance design of mechanical assemblies for economical manufacturing in the presence of alternative machines - a genetic algorithm-based hybrid methodology
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Optimal tolerance design of mechanical assemblies for economical manufacturing in the presence of alternative machines - a genetic algorithm-based hybrid methodology

机译:在存在替代机器的情况下,用于经济制造的机械组件的最佳公差设计-基于遗传算法的混合方法

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摘要

Traditional practice to tolerance design has been based on a sequential approach to design and manufacturing considerations. Integrated tolerance design involving simultaneous selection of design and manufacturing tolerances was introduced in the last decade. Choice of manufacturing processes (or machines) from among the alternatives, frequently encountered in different stages of realization of individual dimensions, is an important issue in product development. The problem becomes more complicated if the available alternative manufacturing processes (or machines) have a non-overlapping precision range. The optimal tolerance design problem formulated with these issues considering both the cases of overlapping and non-overlapping precision range, based on different stack-up conditions, such as the worst case, root sum square, and Spotts' modified criteria is the focus of this study. The resulting optimization problem involving a combinatorial, non-linear, non-convex search space cannot be effectively solved for a global solution using conventional optimization techniques. Genetic algorithm, a non-traditional optimization technique, is useful to solve such a complex problem to obtain a near-global solution. This solution may further be improved by making subsequent use of conventional techniques appropriately. In this research a hybrid approach has been proposed based on this philosophy. In the first step, a near-global solution is obtained using the genetic algorithm; in the second step the optimal solution obtained in the first step is refined using the MATLAB-optimization-toolbox. The study has been planned to obtain a better insight into solution of the tolerance design problem, and has been demonstrated with the help of a numerical example. [PUBLICATION ABSTRACT]
机译:公差设计的传统做法是基于对设计和制造考虑的顺序方法。在过去的十年中,引入了同时选择设计公差和制造公差的集成公差设计。在实现个体尺寸的不同阶段中经常遇到的选择中选择制造工艺(或机器)是产品开发中的重要问题。如果可用的替代制造过程(或机器)具有不重叠的精度范围,则问题将变得更加复杂。考虑到这些重叠和不重叠精度范围的情况,基于最坏情况,均方根和Spotts修改准则等不同的叠加条件,用这些问题制定的最佳公差设计问题是本课题的重点。研究。对于使用常规优化技术的全局解决方案,不能有效地解决由此产生的涉及组合,非线性,非凸搜索空间的优化问题。遗传算法是一种非传统的优化技术,可用于解决这样一个复杂的问题以获得近乎全局的解决方案。通过随后适当地使用常规技术,可以进一步改善该解决方案。在这项研究中,已基于此原理提出了一种混合方法。第一步,使用遗传算法获得近全局解。在第二步中,使用MATLAB-optimization-toolbox优化在第一步中获得的最佳解决方案。计划进行这项研究,以便对公差设计问题的解决方案有更深入的了解,并已通过一个数值示例进行了演示。 [出版物摘要]

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