NUMERICAL SIMULATION OF TEMPERATURE DISTRIBUTION ON METAL CASTING IN VERTICAL SOLIDIFICATION

E. Lins, G. Stieven, D. Soares, Edilma P. Oliveira
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Abstract

The metals and alloys solidification can be defined as a transient heat transfer process. A liquid/solid transformation is followed by thermal energy liberation, with a movable boundary separating two phases with different thermophysical properties. The solidification is of great interest to mechanical and chemical engineers. It is a non-linear transient phenomenon, where heat transfer between the casting and the mold plays a important role. This paper aims to propose a study of heat flow from the casting to the mold using a numerical technique to compute the temperature history of all points inside the casting. The cooling process consists of water-cooled mold with heat being extracted only from the bottom, resulting in unidirectional vertical solidification. The ANSYS software was used to obtain the temperature distribution in the casting. Good agreement was obtained when the simulation results were compared with the experimental data.
金属铸件垂直凝固温度分布的数值模拟
金属和合金的凝固可以定义为一个瞬态传热过程。液体/固体转变之后是热能释放,有一个可移动的边界将两个具有不同热物理性质的相分开。凝固是机械和化学工程师非常感兴趣的问题。这是一种非线性瞬态现象,其中铸件与模具之间的热传递起着重要的作用。本文旨在研究从铸件到模具的热流,使用数值技术来计算铸件内部所有点的温度历史。冷却过程包括水冷模,热量只从底部提取,导致单向垂直凝固。利用ANSYS软件对铸件的温度分布进行了分析。将仿真结果与实验数据进行了比较,结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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