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Intelligent approaches to tolerance allocation and manufacturing operations selection in process planning

机译:工艺规划中公差分配和制造工序选择的智能方法

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摘要

In the modem manufacturing environment, alternative sets of manufacturing operations can normally be generated for machining one feature of a part. Each set of manufacturing operations results in a specific manufacturing cost in terms of the allocated tolerances, and requires a specific set of manufacturing resources, such as machines, fixtures/jigs and cutting tools. In this paper, the problems of allocating tolerances to the manufacturing operations and selecting exactly one representative from the alternative sets of manufacturing operations for machining one feature of the part are formulated. The purpose is to minimize, for all the features to be machined, the sum of the costs of the selected sets of manufacturing operations and the dissimilarities in their manufacturing resource requirements. The techniques of the genetic algorithm and the Hopfield neural network are adopted as possible approaches to solve these problems. The genetic algorithm is utilized to generate the optimal tolerance for each of the manufacturing operations, and the Hopfield neural network is adopted to solve the manufacturing operations selection problem. An illustrative example is given to demonstrate the efficiency of the proposed approaches. Indeed, the proposed approaches show the potential of working towards the optimal solutions to the tolerance allocation problem and the manufacturing operations selection problem in process planning.
机译:在现代制造环境中,通常可以生成一组替代的制造操作,以加工零件的一个特征。就分配的公差而言,每组制造操作都会产生特定的制造成本,并且需要特定的一组制造资源,例如机器,固定装置/夹具和切削工具。在本文中,提出了以下问题:为制造工序分配公差,并从制造工序的替代集合中准确选择一个代表,以加工零件的一个特征。目的是使所有要加工的特征的总和最小化所选制造操作组的成本之和及其制造资源要求之间的差异。解决这些问题的可能方法是采用遗传算法和Hopfield神经网络技术。利用遗传算法为每个制造工序生成最优公差,并采用Hopfield神经网络解决制造工序选择问题。给出了一个说明性示例,以证明所提出方法的效率。实际上,所提出的方法显示了在工艺计划中朝公差分配问题和制造工序选择问题寻求最佳解决方案的潜力。

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