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首页> 外文期刊>Polymer engineering and science >Numerical modeling of injection/compression molding for center-gated disk. I. Injection molding with viscoelastic compressible fluid model
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Numerical modeling of injection/compression molding for center-gated disk. I. Injection molding with viscoelastic compressible fluid model

机译:中心浇口盘注射/压缩成型的数值模型。一,具有粘弹性可压缩流体模型的注塑

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摘要

The present study attempted to numerically simulate the process in detail by developing an appropriate physical modeling and the corresponding numerical analysis for injection molding and injection/compression molding processes of center-gated disks. In Part I, a physical modeling and associated numerical analysis of injection molding with a compressible viscoelastic fluid model are presented. In the distribution of birefringence, the packing procedure results in the inner peaks in addition to the outer peaks near the mold surface, and values of the inner peaks increase with the packing time. Also, values of the density in the core region increase with the packing time. From the numerical results, we also found that birefringence becomes smaller as the melt temperature gets higher and that it is indensity distribution is concerned, mold temperature affects the distribution of density especially near the wall. But it was not significantly affected by flow rate and melt temperature. Numerical results of birefringence coincided with experimental data qualitatively, but not quantitatively. (Example material: polystyrene.)
机译:本研究试图通过开发适当的物理模型和相应的数值分析,以对中心浇口盘的注射成型和注射/压缩成型工艺进行详细的数值模拟。在第一部分中,介绍了具有可压缩粘弹性流体模型的注塑成型的物理模型和相关的数值分析。在双折射的分布中,填充过程导致除模具表面附近的外峰之外还存在内峰,并且内峰的值随填充时间而增加。而且,芯区域中的密度值随填充时间而增加。从数值结果中,我们还发现,随着熔体温度的升高,双折射会变小,并且与密度分布有关,模具温度会影响密度的分布,尤其是在壁附近。但是它不受流速和熔体温度的显着影响。双折射的数值结果与实验数据在质量上吻合,但在数量上不吻合。 (示例材料:聚苯乙烯。)

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