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Influences of the mesh in the CAE simulation for plastic injection molding

机译:塑料注塑成型CAE模拟中的滤网对

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Although computer-aided engineering (CAE) software has been used for many years in the plastic industry, identifying the most appropriate mesh geometry and density remains a challenge. It can affect the accuracy of the simulation, the time and the costs. The evaluation of the most suitable mesh is not easy because the difficulties to obtain the real the values of the pressure and temperature inside the mold. The current work investigates this issue. A mold was manufactured and sensors were installed in its interior. CAE simulations using different mesh geometries and densities were evaluated against the experimental data. The results showed that the computational time was mostly influenced by the mesh geometry. The use of 2D mesh and lower density can lead to a faster and more precise simulation of pressure inside the mold and 3D mesh with lower density can provide a faster and precise simulation of the temperature.
机译:虽然计算机辅助工程(CAE)软件已在塑料行业使用多年,但识别最合适的网格几何形状和密度仍然是一个挑战。它会影响模拟的准确性,时间和成本。对最合适的网格的评估并不容易,因为获得了真正的压力和模具温度值的困难。目前的工作调查了这个问题。制造模具,传感器安装在其内部。使用不同网格几何形状和密度的CAE模拟针对实验数据。结果表明,计算时间主要受到网格几何的影响。使用2D网格和较低密度可以导致模具内部的压力更快,更精确地模拟,具有较低密度的3D网格可以提供更快,精确地模拟温度。

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