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Numerical simulation of the flow behavior and breakthrough phenomenon in co-injection molding

机译:共注塑流动行为和突破现象的数值模拟

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A study of the flow behavior during sequential co-injection molding is shown using a three-dimensional finite element flow analysis code. Solutions of the non-Newtonian, non-isothermal melt flow are obtained by solving the momentum, continuity and energy equations. Two additional transport equations are solved for tracking polymer/air and skin/core polymers interfaces. The co-injection model is integrated into the NRC's 3D injection molding software. Solutions are shown for the filling of a spiral-flow mould for which experimental measurements are available. The numerical approach predicts the core advance stage during which the core flow front catches up on the skin flow front and the core expansion phase when the flow fronts of core and skin materials advance together without breakthrough. The breakthrough phenomenon is also predicted. The predicted flow front behavior is compared to the experimental observations for various skin/core melt temperature and skin/core viscosity ratio. Simulation results are in good agreement with experimental data and indicate correctly the trends in solution change when processing parameters are changing.
机译:使用三维有限元流分析码示出了顺序共注入成型期间的流动性能的研究。通过求解动量,连续性和能量方程,获得非牛顿非等温熔体流动的解决方案。解决了两种附加传输方程,用于跟踪聚合物/空气和皮肤/核心聚合物界面。共注入模型集成到NRC的3D注塑软件中。显示用于填充螺旋流动模具的溶液,用于填充实验测量的螺旋流动模具。数值方法预测核心前进阶段,当核心和皮肤材料的流动前进的情况下,芯流前面和芯膨胀阶段的核心膨胀阶段在没有突破的情况下进步。还预测了突破现象。将预测的流动前行为与各种皮肤/核心熔体温度和皮肤/核心粘度比进行比较。仿真结果与实验数据吻合良好,并在处理参数正在发生变化时正确表明解决方案变化的趋势。

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