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An Improved Geometric Model to Predict Hot Spots of Castings

机译:预测铸件热点的改进几何模型

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It is very important to predict the hot spots of castings properly, which is known as a criterion for riser design. In this paper, an improved geometric model for hot spot prediction is proposed, and subsequently, its application to hot spot analysis is presented. As we know, the heat dissipation potential of a location in a casting depends on its distance to the heat transfer surfaces. In a meshed casting, the reciprocal of distance from a certain cell to surfaces is calculated at all the six orthogonal directions, by which the heat dissipation potentials of every cell will be evaluated considering the influences of the neighboring grids. With the improved geometric model, there is no iteration during calculation, and only twice of cell traverse is required. The first traverse gets the distance reciprocal and the second focuses on the heat dissipation potential. The result of this model, which turns out similar to that of procedures based on heat transfer equations, reflects solidification sequence in a casting, hence the hot spots will be known instantaneously. Obviously this geometric model ignores many conditions during solidification process. However, messages like locations of hot spots are shown much faster and more conveniently than that of procedures based on heat transfer equations. Therefore, it is believed that it will shorten much time for casting technology design.
机译:正确预测铸件的热点非常重要,这是冒口设计的标准。提出了一种改进的热点预测几何模型,并提出了其在热点分析中的应用。众所周知,铸件中某个位置的散热潜力取决于其与传热表面的距离。在网状铸件中,在所有六个正交方向上计算从某个单元到表面的距离的倒数,通过该方向,将考虑相邻网格的影响来评估每个单元的散热潜能。使用改进的几何模型,在计算过程中没有迭代,只需要两次遍历单元格即可。第一个遍历的距离是倒数,第二个遍历的是散热潜力。该模型的结果类似于基于传热方程的过程,其结果反映了铸件中的凝固顺序,因此可以立即知道热点。显然,该几何模型在凝固过程中忽略了许多条件。但是,与基于传热方程的过程相比,诸如热点位置之类的消息显示得更快,更方便。因此,相信它将缩短铸造技术设计的时间。

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