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Flow analysis and validation of numerical modelling for a thin walled high pressure die casting using SPH

机译:使用SPH的薄壁高压压铸件的流动分析和数值模型的验证

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High pressure die casting (HPDC) is an important process for high throughput manufacturing of complex shaped metallic components. The flow involves significant fragmentation and spray formation as the high pressure liquid jets into the die from the gate system. An important class of die cast components is one with large areas of thin walls. An example of this is the chassis of the laptop computer. Computational modelling provides an opportunity to both better understand the filling process and to optimize the runner, gates, flash overs and venting systems for the die. SPH has previously been found to be very suitable for predicting HPDC for bulkier automotive components. The modelling challenges arising from the very thin sections and the many flow paths in a laptop chassis require careful validation. A water analogue experiment is used to validate the predictions of the SPH model for this representative thin walled casting. SPH predictions are used to understand and characterise the filling process. Finally, comparison of flow lines visible in an etched finished casting with the high speed flow paths in the final filled SPH model show very strong agreement. Together these demonstrate that such an SPH model is able to capture substantial detail from both the water analogue system and the actual casting process and is very suitable for simulating these types of complex thin walled castings.
机译:高压压铸(HPDC)是高产量制造复杂形状的金属部件的重要过程。当高压液体从浇口系统喷入模具时,流动涉及明显的破碎和喷雾形成。一类重要的压铸零件是具有大面积薄壁的零件。一个示例是便携式计算机的机箱。计算建模为更好地了解填充过程以及优化模具的流道,浇口,溢料和排气系统提供了机会。先前已发现SPH非常适合预测体积较大的汽车零部件的HPDC。笔记本电脑机箱中非常薄的部分和许多流动路径所带来的建模挑战需要仔细验证。水模拟实验用于验证该代表性薄壁铸件的SPH模型的预测。 SPH预测用于了解和表征填充过程。最后,将蚀刻后的铸件中可见的流线与最终填充的SPH模型中的高速流路进行比较,显示出非常强的一致性。这些共同表明,这样的SPH模型能够从水模拟系统和实际铸造过程中捕获大量细节,并且非常适合模拟这些类型的复杂薄壁铸件。

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