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Heat transfer with mechanically driven thermal contact resistance at the polymer-mold interface in injection molding of polymers

机译:聚合物注塑成型过程中在聚合物-模具界面处具有机械驱动的热接触电阻的热传递

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摘要

Plastics are materials which show important volume variations when they undergo temperature changes. During the injection molding process, polymer parts may shrink and so become unstuck from the mold walls. It drives then to the apparition of air gaps which may modify both the shape of the part and its cooling time. The cooling of such a polymer part is studied, taking into account key parameters such as thermal contact resistances, residual stresses, or PvT diagram. The results of the numerical simulation, using a coupled thermomechanical approach, are compared to experiments that are led in parallel.
机译:塑料是温度变化时会显示重要体积变化的材料。在注射成型过程中,聚合物零件可能会收缩,因此会从模具壁上松开。然后它驱使气隙消失,这可能会改变零件的形状及其冷却时间。考虑到关键参数(例如热接触电阻,残余应力或PvT图),研究了这种聚合物部件的冷却。使用耦合热机械方法的数值模拟结果与并行进行的实验进行了比较。

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