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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Modeling and simulation of weld line location and properties during injection molding based on viscoelastic constitutive equation
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Modeling and simulation of weld line location and properties during injection molding based on viscoelastic constitutive equation

机译:基于粘弹性构成方程的注塑成型期间焊缝定位与性能的建模与仿真

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Weld lines are one of the typical quality issues of injection molded parts. They are unavoidable even for moderate complex products. To explore the formation of weld lines in injection molding, a flow model based on viscoelastic constitutive equation is presented in this article to predict and evaluate of weld lines location and properties, in which Rolie-Poly constitutive equation is used to describe the viscoelastic properties of polymer melts and level set method is used to capture melt front. Furthermore, the formation and evolution processes of weld lines are investigated by co-injection molding technique in simulation, since the processes are determined by the flow front and rheological history of the melt streams. Numerical results show that weld lines can be predicted accurately, and the formation and evolution processes of weld line can be shown more clearly by co-injection molding technique. In addition, properties of polymer melt such as velocity, pressure, principal stress difference, and molecular orientation in the weld line regions are investigated and presented.
机译:焊接线是注塑部件的典型质量问题之一。它们即使对于中等复杂产品也是不可避免的。为了探讨注射成型中的焊接线的形成,本文提出了一种基于粘弹性组成方程的流量模型,以预测和评估焊接线位置和性质,其中rolie-poly组成方程用于描述粘弹性性质聚合物熔体和水平设定方法用于捕获熔体前沿。此外,通过共注塑技术在模拟中研究了焊接线的形成和演化过程,因为该过程由熔体流的流动前沿和流变史确定。数值结果表明,可以精确地预测焊接线,并且通过共注塑技术可以更清楚地示出焊接线的形成和演化过程。另外,研究并呈现了聚合物熔体的性质,例如速度,压力,主应力差和焊接线区域中的分子取向。

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