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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimum design of cam-roller follower mechanism using a new evolutionary algorithm
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Optimum design of cam-roller follower mechanism using a new evolutionary algorithm

机译:新型进化算法的凸轮滚子从动机构的优化设计

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摘要

The optimum design of a cam mechanism is a very interesting problem in the contact mechanics today, due to the alternative industrial applications as a mechanism of precision. In this paper, a new evolutionary algorithm called modified adaptive differential evolution (MADE) is introduced for multi-objective optimization of a cam mechanism with offset translating roller follower. The optimization procedure is investigated for three objectives among them minimum congestion, maximum efficiency, and maximum strength resistance of the cam. To enhance the design quality of the mechanism in the optimization process, more geometric parameters and more design constraints are included in the problem formulation. In order to validate the developed algorithm, three engineering design problems are solved. The simulation results for the tested problems indicate the effectiveness and the robustness of the proposed algorithm compared to the various existed optimization methods. Finally, the optimal results obtained for the case study example provide very useful decisions for a cam mechanism synthesis.
机译:由于替代工业应用作为精度机制,凸轮机构的最佳设计是今天的接触力学中的一个非常有趣的问题。在本文中,引入了一种新的进化算法,用于具有胶印机转印辊从动件的凸轮机构的多目标优化来引入了一种称为改进的自适应差分演化(制造)。研究了优化程序,为凸轮的最小拥塞,最大效率和最大强度电阻的三个目标进行了三个目标。为了提高优化过程中机制的设计质量,在问题制定中包括更多几何参数和更多的设计约束。为了验证发达的算法,解决了三个工程设计问题。测试问题的仿真结果表明,与各种存在的优化方法相比,所提出的算法的有效性和鲁棒性。最后,为壳体研究示例获得的最佳结果为凸轮机构合成提供了非常有用的决定。

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