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Visualization and simulation of filling process of simultaneous co-injection molding based on level set method

机译:基于水平集方法的同时共注射成型填充过程的可视化与仿真

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摘要

Co-injection molding (CIM) is an advanced technology which was developed to meet quality requirements and to reduce the material cost. Theoretical investigations concerning it are very limited, especially for simultaneous CIM. The interactions of air, skin and core polymer melt in the process are very complex, which makes it more challenging to simulate free surface flows in the mold. Thus, this article presents a mathematical model for it. The extended Pom-Pom (XPP) model is selected to predict the viscoelastic behavior of polymer melt. The free surface is captured by the level set method. The article vividly shows the simultaneous CIM process by means of a visual numerical simulation technique. Both two-dimensional (2D) and 3D examples are presented to validate the model and illustrate its capabilities. The 3D flow behaviors of simultaneous CIM process are hard to predict numerically. To our knowledge, this is the first attempt at simulating melt flow behaviors in 3D simultaneous CIM based on the XPP constitutive equation and visual technique. The numerical results are in good agreement with the available experiment results, which establish the capability of the multiphase flow model presented in this article to simulate the flow behaviors of polymer melt in simultaneous CIM process.
机译:共注射成型(CIM)是一项先进技术,旨在满足质量要求并降低材料成本。关于它的理论研究非常有限,尤其是对于同时CIM。空气,表皮和芯聚合物熔体在此过程中的相互作用非常复杂,这使得在模具中模拟自由表面流动更具挑战性。因此,本文为此提供了一个数学模型。选择扩展的Pom-Pom(XPP)模型来预测聚合物熔体的粘弹性行为。自由表面通过水平设置方法捕获。这篇文章通过可视数值模拟技术生动地展示了同时CIM过程。同时提供了二维(2D)和3D示例,以验证模型并说明其功能。同步CIM过程的3D流动行为很难用数字来预测。据我们所知,这是基于XPP本构方程和视觉技术在3D同时CIM中模拟熔体流动行为的首次尝试。数值结果与现有的实验结果吻合良好,实验结果证明了本文提出的多相流模型能够模拟同时CIM工艺中聚合物熔体的流动行为。

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