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Modeling and simulation of injection molding process of polymer melt by a robust SPH method

机译:鲁棒的SPH方法对聚合物熔体注射成型过程进行建模和仿真

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In the present study, the injection molding process of polymer melt based on the generalized Newtonian fluid model is investigated by a robust smoothed particle hydrodynamics (SPH) method. The numerical method is proposed by introducing a Rusanov flux into the continuity equation to improve the prediction of the pressure distribution and employing a corrected kernel gradient to improve the computational accuracy. In addition, a robust treatment of solid boundary is presented and verified by the spin-down problem. The merits of the robust SPH method are firstly illustrated by 2D dam breaking flow. Then the numerical method is extended to deal with the flow phenomena related to injection molding process of polymer melt. A number of numerical examples including 2D injection moldings of a thin plate mold, a circular disc with core, a ring-shaped channel, and a S-shaped cavity, and 3D injection moldings of a Z-shaped cavity and a four-legged fork are conducted. The numerical results are in agreement with the experiments, which demonstrate that the SPH method proposed here is capable of handling with injection molding process of polymer melt in a robust manner. Moreover, the robust SPH method allows to recover the fluctuations-free pressure and velocity fields which in most cases cannot be easily obtained by the traditional SPH method.
机译:在本研究中,通过鲁棒的平滑粒子流体动力学(SPH)方法研究了基于广义牛顿流体模型的聚合物熔体的注射成型过程。通过将Rusanov通量引入连续性方程以改进压力分布的预测,并采用校正的核梯度来提高计算精度,提出了一种数值方法。此外,提出了一种可靠的固体边界处理方法,并通过旋转下降问题进行了验证。首先通过2D溃坝流来说明鲁棒SPH方法的优点。然后扩展了数值方法,以处理与聚合物熔体注射成型过程有关的流动现象。多个数值示例,包括薄板模具的2D注塑成型,带芯的圆盘,环形通道和S形腔以及Z形腔和四足叉的3D注塑成型进行。数值结果与实验吻合,表明本文提出的SPH方法能够以稳健的方式处理聚合物熔体的注射成型过程。此外,鲁棒的SPH方法可以恢复无波动的压力场和速度场,而在大多数情况下,传统SPH方法无法轻松获得这些波动。

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