Optimization of Square-shaped Bolted Joints Based on Improved Particle Swarm Optimization Algorithm

Kui Chen, Cheng Yang, Yongsheng Zhao, Peng Niu, Nana Niu, Hongchao Wu
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引用次数: 0

Abstract

The bolted joint is widely used in heavy-duty CNC machine tools, which has huge influence on working precision and overall stiffness of CNC machine. The process parameters of group bolt assembly directly affect the stiffness of the connected parts. The dynamic model of bolted joints is established based on the fractal theory, and the overall stiffness of joint surface is calculated. In order to improve the total stiffness of bolted assembly, an improved particle swarm optimization algorithm with combination of time-varying weights and contraction factor is proposed. The input parameters are preloading of bolts, fractal dimension, roughness, and object thickness. The main goal is to maximize the global rigidity. The optimization results show that improved algorithm has better convergence, faster calculation speed, preferable results, and higher optimization performance than standard particle swarm optimization algorithm. Moreover, the global rigidity optimization is achieved.
基于改进粒子群算法的方形螺栓连接优化
螺栓连接在重型数控机床上应用广泛,对机床的工作精度和整体刚度影响巨大。组合螺栓的工艺参数直接影响被连接件的刚度。基于分形理论建立了螺栓连接的动力学模型,计算了连接面的整体刚度。为了提高螺栓总成的总刚度,提出了一种时变权值与收缩因子相结合的改进粒子群优化算法。输入参数为螺栓预紧力、分形维数、粗糙度和物体厚度。主要目标是使全局刚度最大化。优化结果表明,与标准粒子群优化算法相比,改进算法具有更好的收敛性、更快的计算速度、更好的结果和更高的优化性能。并对结构进行了整体刚度优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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