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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Modeling the effect of cooling system on the shrinkage and temperature of the polymer by injection molding
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Modeling the effect of cooling system on the shrinkage and temperature of the polymer by injection molding

机译:通过注塑成型冷却系统对聚合物的收缩率和温度的影响建模

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Injection molding is one of the most exploited industrial processes in the production of plastic parts. Shrinkage behavior of a molded plastic part plays an important role in determining final dimensions of the part. In this paper, the effect of the cooling system on the shrinkage rate of a polystyrene product during injection molding is carried out. A compressible fluid model for the physical system is presented. A finite volume numerical solution is used for the solution of the physical model. A validation of the numerical model in case of square cavity filled with polymer material is presented. The compressibility behavior of polymer material observed by the pressure, volume, and temperature for the state equation (P-v-T equation) is represented by Tait's equation. A Cross type rheological model depending on the temperature and pressure is assumed for the polymer material. The studied configurations consist of a mold having T-shaped plastic part and four cooling channels. Different cooling channels' positions are assumed and the effect of their positions on the cooling process is studied. The results indicate a good agreement between the numerical solution and those of the literatures. They also, show that the position of the cooling channels has a great effect on final product temperature and the shrinkage rate distribution throughout the product.
机译:注塑成型是塑料零件生产中开发最广泛的工业工艺之一。模塑塑料零件的收缩行为在确定零件的最终尺寸方面起着重要作用。在本文中,冷却系统对注塑过程中聚苯乙烯产品的收缩率产生了影响。提出了物理系统的可压缩流体模型。有限体积数值解用于物理模型的解。提出了在方形腔填充聚合物材料的情况下数值模型的验证。通过状态方程(P-v-T方程)的压力,体积和温度观察到的聚合物材料的可压缩性由泰特方程表示。假定取决于聚合物材料的温度和压力的Cross型流变模型。研究的配置包括一个具有T形塑料零件和四个冷却通道的模具。假设不同的冷却通道位置,并研究它们的位置对冷却过程的影响。结果表明,数值解与文献解具有很好的一致性。他们还表明,冷却通道的位置对最终产品的温度和整个产品的收缩率分布有很大影响。

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