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Simulation Of Micro Injection Moulding With Emphasis On The Formulation Of Feedstock Viscosity: Use Of Non-equilibrium Molecular Dynamics For The Determination Of Viscosity Of Multi-body Fluid

机译:微注射成型的仿真重点对原料粘度的配方:使用非平衡分子动力学进行多体液粘度的测定

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The need for prediction of shear viscosity of fluid in particle charged-Micro Injection Molding at mesoscale, by modelling a whole system particle-polymer with inter-dependencies, permits to establish a more realistic feedstock viscosity formulation. The applicability of non-equilibrium molecular dynamics (NEMD) is investigated for the determination of shear viscosity of melts composed of particles/polymers in microcavities. NEMD is used to simulate planar Poiseuille flow of metallic particle-polymer melt. Simulations are carried out using molecular dynamics simulation package ESPResSo. The variation of viscosity face to temperature is in agreement with theoretical results. Simulations are compared to experiments. The equivalent viscosity formulation is tuned according to NEMD simulation results, and implemented in a MIM solver built up by the authors. MIM simulations are compared to previously implemented simulations using another equivalent viscosity formulation based on experiments for the case of mono-injection moulding.
机译:通过将整个系统颗粒聚合物与依赖性的整体颗粒聚合物建模,允许建立更现实的原料粘度配方,预测Messcale在Mescly的剪切粘度预测。研究了非平衡分子动力学(NEMD)的适用性以确定由微腔内的颗粒/聚合物组成的熔体剪切粘度。 NEMD用于模拟金属颗粒 - 聚合物熔体的平面Poiseuille流。使用分子动力学模拟包浓缩浓缩浓缩浓缩浓咖啡进行仿真。粘度面对温度的变化与理论结果一致。将模拟与实验进行比较。根据NEMD仿真结果调整等效粘度配方,并在由作者构建的MIM求解器中实施。将MIM模拟与先前使用基于单注射成型的实验的等效粘度配方的模拟进行了比较。

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