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Flow simulation and solidification phenomena of AC4CH aluminum alloy in semi-solid forging process by explicit MPS method

机译:显式MPS法模拟半固态锻造AC4CH铝合金的流动和凝固现象

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Semi-solid forging (SSF) is a powerful manufacturing technology to fabricate near-net shaped products in automotive industries. During SSF process, the filling behavior and solidification process of AC4CH aluminum alloy is presented in this paper. The explicit MPS method program solving Navier-Stokes equation is coupled with heat transfer and solidification has been used to predict the filling pattern and temperature distribution of semi-solid material (SSM). The non-Newtonian rheological model was used as the constitutive equation of SSM. In this study, numerical analysis of SSF was carried out in box cavity with various flange thickness (4, 8, 12 and 16 mm) and corresponding experiments were undertaken for AC4CH aluminum alloy with solid fraction less than 0.5. The numerical results of SSM filling pattern and solidification phenomena in flange were validated with the experimental results. During solidification process, flow calculation was stopped and only thermal calculation was carried out. The shrinkage defect was well predicted near the lower mid area of the box cavity with flange thickness 16 mm.
机译:半固态锻造(SSF)是一种强大的制造技术,可用于制造汽车工业中的近净形产品。介绍了SSF过程中AC4CH铝合金的填充行为和凝固过程。求解Navier-Stokes方程的显式MPS方法程序与传热结合,已经使用凝固来预测半固态材料(SSM)的填充模式和温度分布。非牛顿流变模型被用作SSM的本构方程。在这项研究中,在具有不同法兰厚度(4、8、12和16 mm)的箱形腔中对SSF进行了数值分析,并对固含量小于0.5的AC4CH铝合金进行了相应的实验。实验结果验证了SSM填充方式和法兰凝固现象的数值结果。在凝固过程中,流量计算停止,仅进行热计算。在凸缘厚度为16 mm的箱形空腔的​​下部中部附近可以很好地预测到收缩缺陷。

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