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ONE FAST FIXTURE LAYOUT AND CLAMPING FORCE OPTIMIZATION METHOD BASED ON FINITE ELMENT METHOD

机译:一种基于有限元法的一种快速夹具布局和夹紧力优化方法

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Aimed to reduce the deformation of workpiece-fixture system, one fixture layout and clamping force optimal method is constructed in this paper. Firstly, system stiflhess matrix is built by Finite Element Method (FEM), and one matrix size reducing method is proposed to avoid the high computing time cost of solving FEM balance equation. Secondly, one clamping force optimization method which should be called after fixture layout is generated during every step of optimization algorithm is presented to lessen calling times of FEM solving process and save running time. And then based on these, one fixture layout and clamping force optimization algorithm is constructed using genetic algorithm (GA). At the end of this paper, numeral examples are taken to verify the validity and usability of the methods.
机译:旨在减少工件夹具系统的变形,本文构建了一种固定布局和夹紧力的最佳方法。首先,通过有限元方法(FEM)构建系统STIFLHESS矩阵,提出了一个矩阵尺寸减少方法,以避免求解有限元平衡方程的高计算时间成本。其次,在优化算法的每个步骤期间,在优化算法期间产生一个夹紧力优化方法,该夹紧力优化方法应该在优化算法中产生,以减少有关FEM求解过程的呼叫时间并节省运行时间。然后基于这些,使用遗传算法(GA)构建一个固定布局和夹紧力优化算法。在本文末尾,采用数字示例来验证方法的有效性和可用性。

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