Research of rolling shear motion laws based on improved PSO

Yugui Li, Yanxu Wei
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引用次数: 2

Abstract

Making pure rolling shear as the target, based on the principles analysis of shear mechanism in the rolling shear, trajectories of the overlap and the horizontal displacement of the upper blade during the cutting process are directly calculated out. And then the trajectories are optimized with improved natural selection-based particle swarm optimization algorithm (selPSO) deemed lengths of the key rods as variables. On this basis, motion laws of the driving links are reversely worked out through solving position equations of the rolling shear’s mechanism, which are nonlinear equations, with selPSO. The calculated results show that the synthetic horizontal translation (mean value of all horizontal displacement relating to calculated points) of the upper blade reduced by 34.96% and the overlap becomes a constant, which can realize the pure rolling cutting very well and improve the shear quality of the steel plate; selPSO is applicable to solve nonlinear equations in the project, which can overcome the problem of high sensitivity to initial value and improve the computational efficiency
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基于改进粒子群算法的滚动剪切运动规律研究
以纯滚剪为目标,在对滚剪中的剪切机理进行原理分析的基础上,直接计算出剪切过程中上刀片的重叠轨迹和水平位移轨迹。然后以关键杆长度为变量,采用改进的基于自然选择的粒子群优化算法(selPSO)对轨迹进行优化。在此基础上,通过求解剪切机构的非线性位置方程,利用self - pso反求出驱动连杆的运动规律。计算结果表明:上刀片综合水平平移量(与计算点相关的所有水平位移的平均值)减小34.96%,重叠量趋于恒定,可以很好地实现纯轧制切割,提高钢板的剪切质量;selPSO适用于工程中求解非线性方程,克服了对初值高度敏感的问题,提高了计算效率
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