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Monitoring and dynamic control of quality stability for injection molding process

机译:注塑成型工艺质量稳定性监测和动态控制

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摘要

Stability control of production is an important aspect of injection molding. However, challenges continue to exist with respect to improving product quality stability to achieve a faster forming speed and a higher automation for injection molding because the injection process is usually disturbed by several inevitable variations. The difficulty in overcoming the fore-mentioned inevitable disturbances and achieving dynamic control of product quality is related to establishing a quantitative relationship between product quality and process variables. In this study, a quality prediction model based on polymer melt properties is established to monitor product weight variation online. A pressure integral (P1) based on the prediction model is proposed as an effective process variable to predict product weight variation. Additionally, a dynamic control method is proposed to improve product quality stability. The experimental results indicate that PI presents advantages of consistency and stability in monitoring product weight variation when compared with models proposed by extant studies. The proposed control method results" in a decrease in product weight variation from 0.16% to 0.02% in the case of varying mold temperature and the number of cycles to return stability decreases from 11 to 5 in with respect to variations in the melt temperature.
机译:生产稳定性控制是注塑成型的重要方面。然而,在提高产品质量稳定性方面继续存在挑战,以实现更快的成型速度和更高的注塑自动化,因为注射过程通常受到几种不可避免的变化的干扰。克服前所未有的不可避免的扰动和实现产品质量的动态控制难以建立产品质量和过程变量之间的定量关系有关。在该研究中,建立了基于聚合物熔体特性的质量预测模型,以监测在线的产品重量变化。提出了一种基于预测模型的压力积分(P1)作为预测产品重量变化的有效过程变量。另外,提出了一种动态控制方法来提高产品质量稳定性。实验结果表明,与现存研究提出的模型相比,PI在监测产品重量变化时呈现稠度和稳定性。在不同模具温度的情况下,所提出的控制方法结果“在产品重量变化的情况下,在不同的模具温度的情况下,循环循环的循环次数从11至5相对于熔融温度的变化降低。

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