首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >A genetic algorithm-based fixture locating positions and clamping schemes optimization
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A genetic algorithm-based fixture locating positions and clamping schemes optimization

机译:基于遗传算法的工装夹具定位及装夹方案的优化

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Optimizing the locator positions and clamping schemes of a fixture was proven to improve the dimensional and form accuracy of a workpiece significantly. A number of approaches have been developed to optimize the designs of sheet-metal assembly fixtures and machining fixtures. However, in these previous works, the optimal selection of the positions of locators and clamps were based on a stationary set of locator and clamp conditions; i.e. the numbers of the locators and clamps were fixed during optimization. This paper proposes a genetic algorithm (GA)-based optimization method to select automatically the optimal numbers of locators and clamps as well as their optimal positions in sheet-metal assembly fixtures, such that the workpiece deformation due to the gravity effect and resulting variation due to part dimensional variation are simultaneously minimized. The application result of a real industrial part demonstrated that the proposed algorithm effectively achieves the objective.
机译:实践证明,优化夹具的定位器位置和夹紧方案可显着提高工件的尺寸和形状精度。已经开发出许多方法来优化钣金装配夹具和机加工夹具的设计。然而,在这些先前的工作中,定位器和夹具位置的最佳选择是基于一组固定的定位器和夹具条件。即在优化过程中定位器和夹具的数量是固定的。本文提出一种基于遗传算法(GA)的优化方法,以自动选择钣金装配夹具中的定位器和夹具的最佳数量以及它们的最佳位置,从而使工件在重力作用下变形并因此而产生偏差同时零件之间的尺寸差异最小。实际工业零件的应用结果表明,该算法有效地达到了目标。

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