首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Using mixed goal programming to optimize performance of extrusion process for multiple responses of irrigation pipes
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Using mixed goal programming to optimize performance of extrusion process for multiple responses of irrigation pipes

机译:混合目标规划,优化灌溉管道多重反应的挤出过程的性能

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The performance of the polyethylene extrusion process used in the plastic industry was optimized using mixed goal programming. Four responses, the roll weight, production cycle time, distance between emitters, and thickness, are crucial. After a combination of initial factor settings was determined, individual and moving range control charts were established for each response. Two-phase optimization was implemented using L-18 and L-9 arrays for conducting experiments. A two-phase fuzzy goal programming model was formulated and employed to determine the combination of optimal factor settings, which was used to perform experiments. The results showed a significant reduction in the average production time from 13.0 to 11.316 min. Moreover, the average respective relative percentages of variability reduction for the roll weight, production cycle time, distance between emitters, and thickness were 48.547%, 49.048%, 47.174%, and 63.704%, respectively, and the corresponding estimated process capability indices for the combination of initial (optimal) factor settings were 0.202 (1.440), 0.330 (0.914), and 0.460 (1.456). Such improvement results in significant reduction in quality costs.
机译:使用混合目标规划优化了塑料工业中使用的聚乙烯挤出工艺的性能。四个反应,辊重重,生产周期时间,发射器之间的距离和厚度至关重要。确定初始因子设置的组合后,为每个响应建立单个和移动的范围控制图。使用L-18和L-9阵列实现两相优化以进行实验。配制并采用了两相模糊目标编程模型,以确定最佳因子设置的组合,用于执行实验。结果表明,平均生产时间从13.0至11.316分钟显着降低。此外,辊重量,产生循环时间,发射器之间的距离和厚度之间的可变性降低的平均相对百分比分别为48.547%,49.048%,47.174%和63.704%,以及相应的估计过程能力指数初始(最佳)因子设置的组合为0.202(1.440),0.330(0.914)和0.460(1.456)。这种改进导致质量成本显着降低。

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