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The use of the simplex method and its derivatives to the on-line optimization of the parameters of an injection moulding process

机译:使用单纯形法及其衍生物对注塑工艺参数进行在线优化

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The sequential simplex method and its derivatives, the modified and the super modified simplex methods, are used to optimize on-line the levels of the parameters of an injection moulding process (producing bottle caps) in order to minimize the process cycle time and to reduce the rejects. Nine process parameters are selected to conduct the optimization: screw rotation speed, back pressure, injection rate, injection pressure, cooling time, holding pressure, holding time, nozzle temperature and opening stroke. Optimum conditions are achieved using 17 experiments only. The obtained results clearly show that the process cycle time is very sensitive to the effect of two parameters: cooling time and holding pressure. Low levels of these two parameters are needed in order to minimize cycle time. In addition, the evaluation of rejects in the course of the simplex evolution shows that this additional response is also sensitive to the same parameters. In order to minimize rejects, these two parameters have to be set to low levels. Finally, this study allows us to conclude that the simplex method may be easily used and reused on-line to drive the process continuously towards its optimal conditions without any disruption of production or additional operating costs.
机译:顺序单纯形方法及其派生方法,改进的和超改进的单纯形方法,用于在线优化注塑工艺(生产瓶盖)的参数水平,以最大程度地缩短工艺周期并减少拒绝。选择了九个工艺参数进行优化:螺杆转速,背压,注射速率,注射压力,冷却时间,保压,保压时间,喷嘴温度和开启行程。仅使用17个实验即可达到最佳条件。获得的结果清楚地表明,过程循环时间对两个参数的影响非常敏感:冷却时间和保压。为了使循环时间最小化,需要将这两个参数的水平降低。此外,在单纯形演变过程中对次品的评估表明,这种附加响应也对相同参数敏感。为了最大程度地减少次品,必须将这两个参数设置为低电平。最后,这项研究使我们得出结论,单纯形方法可以轻松地在线使用和重用,以不断地将过程推向最佳状态,而不会中断生产或增加运营成本。

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