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3D numerical simulation of transient temperature field for lens mold embedded with heaters

机译:嵌入加热器的镜片模具瞬态温度场的3D数值模拟

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摘要

In injection mold, cooling process has important effects on parts quality and production cost. Traditional cooling simulation is conducted in a decoupled way by a cycle-averaged approach plus one-dimensional transient variation for computational efficiency concern. In the present study, fully 3D simulations of mold temperature variation based on FEM and FVM implemented in parallel computation scheme were executed for lens mold embedded with heaters. With the fully 3D simulation, mold temperature and melt temperature are solved in coupled manner and obtained simultaneously. Also the time when mold temperature distribution reaches the cyclic-average steady state can be determined. The simulation results were verified with measured cavity temperatures using infrared thermal image system at interest locations. The numerical results for cyclic, transient with heat source problem show reasonable consistency with measured values. The computing time with multi-CPU and parallel scheme is much less than that of single CPU.
机译:在注塑模具中,冷却过程对零件质量和生产成本有重要影响。传统的冷却模拟是通过循环平均方法和一维瞬态变化以解耦的方式进行的,以解决计算效率问题。在本研究中,对嵌入加热器的透镜模具执行了基于FEM和FVM的基于并行计算方案的模具温度变化的全3D仿真。借助完整的3D模拟,可以以耦合方式求解模具温度和熔融温度,并同时获得。另外,可以确定模具温度分布达到循环平均稳态的时间。使用红外热成像系统在感兴趣的位置通过测量腔温度验证了仿真结果。循环瞬态热源问题的数值结果与测量值显示出合理的一致性。多CPU和并行方案的计算时间比单CPU少。

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