Chang Hanjui, Zhang Guangyi, Sun Yue, Lu Shuzhou
Department of Mechanical Engineering, College of Engineering, Shantou University, Shantou 515063, China.
Intelligent Manufacturing Key Laboratory of Ministry of Education, Shantou University, Shantou 515063, China.
Polymers (Basel). 2022 Jun 25;14(13):2578. doi: 10.3390/polym14132578.
This paper uses a multi-objective optimization method to optimize the injection-molding defects of automotive pedals. Compared with the traditional automotive pedal material, aluminum alloy, the polymer pedal containing glass fibers not only reduces the aluminum pedal by at least half, but also improves the strength and hardness of the fibers by adjusting the orientation of the fibers in all directions. Injection factors include: filling time, filling pressure, melt temperature, cooling time, injection time, etc. For the optimization process influencing factors, herein, we focus on warpage analyzed via flow simulation, and setting warpage parameters and cycle time as discussed by setting different cooling distributions, pressures and temperature schemes. The multi-objective optimization design was mainly used to describe the relationship between cycle time and warpage, and the Pareto boundary was used for cycle time and warpage to identify the deviation function and radial-basis-function network. We worked with a small DOE for building the surface to run SAO programming-which improved the accuracy of the response surface by adding sampling points-terminating the time when the warpage value met the solution requirements, to find out the global optimal solution of the warpage value under different cooling times. Finally, the results highlighted four influencing parameters that match the experimental image of the actual production.
本文采用多目标优化方法对汽车踏板的注塑成型缺陷进行优化。与传统汽车踏板材料铝合金相比,含玻璃纤维的聚合物踏板不仅使铝踏板重量至少减轻一半,还通过全方位调整纤维取向提高了纤维的强度和硬度。注塑因素包括:填充时间、填充压力、熔体温度、冷却时间、注射时间等。对于优化过程中的影响因素,在此,我们重点关注通过流动模拟分析的翘曲,并通过设置不同的冷却分布、压力和温度方案来设置翘曲参数和周期时间。多目标优化设计主要用于描述周期时间与翘曲之间的关系,帕累托边界用于周期时间和翘曲,以识别偏差函数和径向基函数网络。我们使用一个小型实验设计来构建曲面以运行序列近似优化(SAO)编程——通过添加采样点提高响应曲面的精度——当翘曲值满足求解要求时终止时间,以找出不同冷却时间下翘曲值的全局最优解。最后,结果突出了四个与实际生产的实验图像相匹配的影响参数。