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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimization of mold temperature profile and process parameters for weld line reduction and short cycle time in rapid heat cycle molding
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Optimization of mold temperature profile and process parameters for weld line reduction and short cycle time in rapid heat cycle molding

机译:用于焊接线减小的模具温度曲线和工艺参数的优化和快速热循环成型中的短循环时间

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摘要

Weld line reduction is one of the major concerns in plastic injection molding (PIM) that results in high surface appearance and high strength of a plastic product. To resolve this issue, rapid heat cycle molding (RHCM) has attracted attention as an innovative PIM technology. In the RHCM, the mold temperature profile plays a crucial role in weld line reduction. On the other hand, high productivity as well as high surface appearance is also required in the PIM, and the trade-off between them will be observed. To achieve weld line reduction and high productivity simultaneously, it is important to adjust both the mold temperature profile and other process parameters in RHCM. A trial and error method is so widely used to adjust them, but it is much time-consuming task. In this paper, the mold temperature profile and several process parameters are optimized for the weld line reduction and the short cycle time. Therefore, multi-objective design optimization is performed. Numerical simulation in PIM is so intensive that a sequential approximate optimization using radial basis function is adopted to identify the Pareto frontier with a small number of simulations. The trade-off between the weld line reduction and the cycle time is clarified through the numerical result. Based on the numerical result, the experiment using a PIM machine (GL100, Sodick) is carried out. It has been confirmed through the numerical and experimental result that the proposed approach in RHCM is valid for the weld line reduction and the short cycle time.
机译:焊缝减少是塑料注塑(PIM)中的主要问题之一,导致塑料产品的高表面外观和高强度。为了解决这个问题,快速热循环成型(RHCM)引起了一种创新的PIM技术。在RHCM中,模具温度曲线在焊缝减小中起着至关重要的作用。另一方面,PIM中也需要高生产率以及高表面外观,并且将观察到它们之间的折衷。为了同时实现焊接线和高生产率,重要的是在RHCM中调整模具温度曲线和其他工艺参数。试验和错误方法如此广泛用于调整它们,但这是耗时的任务。在本文中,模具温度曲线和几个工艺参数针对焊接线减小和短循环时间进行了优化。因此,执行多目标设计优化。 PIM中的数值模拟是如此密集的是,采用径向基函数的顺序近似优化来识别具有少量模拟的帕累托前沿。通过数值结果阐明了焊缝减小和循环时间之间的折衷。基于数值结果,进行使用PIM机(GL100,SOPICK)的实验。通过数值和实验结果证实,RHCM中所提出的方法对于焊接线减小和短循环时间有效。

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