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Direct Observation of Filling Process and Porosity Prediction in High Pressure Die Casting

机译:直接观察高压压铸件的填充过程和孔隙率预测

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摘要

Although numerical simulation accuracy makes progress rapidly, it is in an insufficient phase because of complicated phenomena of the filling process and difficulty of experimental verification in high pressure die casting (HPDC), especially in thin-wall complex die-castings. Therefore, in this paper, a flow visualization experiment is conducted, and the porosity at different locations is predicted under three different fast shot velocities. The differences in flow pattern between the actual filling process and the numerical simulation are compared. It shows that the flow visualization experiment can directly observe the actual and real-time filling process and could be an effective experimental verification method for the accuracy of the flow simulation model in HPDC. Moreover, significant differences start to appear in the flow pattern between the actual experiment and the Anycasting solution after the fragment or atomization formation. Finally, the fast shot velocity would determine the position at which the back flow meets the incoming flow. The junction of two streams of fluid would create more porosity than the other location. There is a transition in flow patterns due to drag crisis under high fast shot velocity around two staggered cylinders, which resulted in the porosity relationship also changing from R1 < R3 < R2 (0.88 m/s) to R1 < R2 < R3 (1.59 and 2.34 m/s).
机译:尽管数值模拟的准确性迅速提高,但由于填充过程的复杂现象以及高压压铸(HPDC)尤其是薄壁复杂压铸件中的实验验证困难,因此其处于不足的阶段。因此,本文进行了流动可视化实验,并根据三种不同的快射速度预测了不同位置的孔隙度。比较了实际灌装过程和数值模拟之间的流型差异。结果表明,流动可视化实验可以直接观察实际和实时的填充过程,并且可以作为有效的实验验证方法来验证HPDC中流动模拟模型的准确性。此外,在碎片或雾化形成之后,实际实验与Anycasting溶液之间的流型开始出现明显差异。最后,快速喷射速度将确定逆流与流入流相遇的位置。两条流体流的交界处会比其他位置产生更多的孔隙度。在围绕两个交错圆柱的高射速下,由于阻力危机,流型发生了转变,这导致孔隙率关系也从R1

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