首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Optimization of the welding sequence and direction for the side beam of a bogie frame based on the discrete particle swarm algorithm
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Optimization of the welding sequence and direction for the side beam of a bogie frame based on the discrete particle swarm algorithm

机译:基于离散粒子群算法的转向架帧侧梁的焊接序列和方向优化

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摘要

For any large weldment with many welding seams, the welding sequence and direction have a strong influence on the assembly and service performance, especially for the side beam of the bogie frame of a high-speed rail passenger car (CHR3; CRRC, Changchun, China). Because different combinations of the welding sequence and direction greatly increase the computational time and research costs, a three-dimensional finite element approach was developed to investigate the optimal welding sequence and direction. Then, a surrogate model was established by design of experiment and used the concepts of a pointer and stack. Finally, the welding sequence and direction were optimized by the discrete particle swarm optimization algorithm. The max residual deformation and stress of the optimal result were -3.92mm and 212.56MPa, respectively, which is approximately 22% and 38% lower than the traditional enterprise plan, respectively. Furthermore, a weighted form of the residual deformation and stress was proposed to the end of optimum comprehensive effect, and the result also had 11% and 28% reduction, respectively. The simulation result of the optimal plans well reproduced the theoretical distribution results of the residual deformation and stress. It is proven that the optimal result can improve the welding quality and process of the side beam weldment in production.
机译:对于具有许多焊缝的任何大型焊缝,焊接序列和方向对组装和服务性能具有很大的影响,特别是对于高速轨道乘用车的转向架框架的侧梁(CHR3; CRRC,CHR CRRC,CHINGUN,CHING )。由于焊接序列和方向的不同组合大大增加了计算时间和研究成本,因此开发了一种三维有限元方法来研究最佳的焊接序列和方向。然后,通过实验设计建立代理模型,并使用指针和堆叠的概念。最后,通过离散粒子群优化算法优化了焊接序列和方向。最大残余变形和最佳结果的应力分别为-3.92mm和212.56MPa,分别比传统企业计划低约22%和38%。此外,提出了一种重量形式的残余变形和应力,以最佳综合效果结束,结果也分别减少了11%和28%。最优规划的仿真结果良好地再现了残余变形和应力的理论分布结果。据证明,最佳结果可以提高生产中侧梁焊接的焊接质量和过程。

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