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Multidisciplinary design optimization of a gear train transmission

机译:齿轮传动的多学科设计优化

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摘要

This article presents a method for multidisciplinary design optimization of a one-stage gear train transmission for an industrial application. The formulation and implementation that enable the integrated design of the gearbox elements (gears, shafts, and bearings) are detailed. The analytical formulation problem is based on four disciplines: product reliability, customer preference, product cost, and structure. The proposed integrated design process takes into account constraints imposed by quality standards. The optimization of the gear train transmission is performed according to a multidisciplinary feasible architecture and uses a population-based evolutionary algorithm (non-dominated sorting genetic algorithm II) to generate Pareto-optimal fronts. Finally, a detailed case study is presented to illustrate the effectiveness of the proposed approach.
机译:本文提出了一种用于工业应用的单级齿轮系变速器的多学科设计优化方法。详细介绍了实现齿轮箱元件(齿轮,轴和轴承)集成设计的方法和实现。分析配方问题基于四个原则:产品可靠性,客户喜好,产品成本和结构。拟议的集成设计过程考虑了质量标准施加的约束。齿轮系传动装置的优化是根据多学科可行架构进行的,并使用基于种群的进化算法(非主导排序遗传算法II)来生成帕累托最优前沿。最后,进行了详细的案例研究,以说明所提出方法的有效性。

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