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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimal tolerance design of assembly for minimum quality loss and manufacturing cost using metaheuristic algorithms
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Optimal tolerance design of assembly for minimum quality loss and manufacturing cost using metaheuristic algorithms

机译:使用元启发式算法的装配最佳公差设计,以将质量损失和制造成本降至最低

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摘要

Tolerance allocation is a design tool for reducing overall cost of manufacturing while meeting target levels for quality. An important consideration in product design is the assignment of design and manufacturing tolerances to individual component dimensions so that the product can be produced economically and functions properly. The allocation of tolerances among the components of a mechanical assembly can significantly affect the resulting manufacturing costs. In this work, the tolerance allocation problem is formulated as a non-linear integer model by considering both the manufacturing cost of each component by alternate processes and the quality loss of assemblies so as to minimise the manufacturing cost. Metaheuristics techniques such as genetic algorithm and particle swarm optimisation are used to solve the model and obtain the global optimal solution for tolerance design. An example for illustrating the optimisation model and the solution procedure is provided. Results are compared with conventional technique and the performances are analysed.
机译:公差分配是一种设计工具,可在满足质量目标水平的同时降低总体制造成本。产品设计中的重要考虑因素是将设计和制造公差分配给各个组件尺寸,以便可以经济地生产产品并正常运行。在机械组件的各个零件之间分配公差会严重影响最终的制造成本。在这项工作中,考虑到每个零件的替代制造成本和组件的质量损失,从而将制造成本降至最低,从而将公差分配问题公式化为非线性整数模型。使用遗传算法和粒子群优化等元启发式技术求解模型,并获得公差设计的全局最优解。提供了用于说明优化模型和求解过程的示例。将结果与常规技术进行比较,并对性能进行分析。

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