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Application of the theory of physical similarity for the filtration of metallic melts

机译:物理相似性理论在金属熔体过滤中的应用

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The Bernoulli equation is the basis for the primary description of the flow of a real metallic melt through the pouring system for the filling of the casting mould with an inserted ceramic filter. In principle, a modified, dimensionless form of the Bernoulli equation can be used for the determination of the loss coefficient xi as a general function of the dimensionless criteria - the Reynolds, Froude and Euler numbers. It was verified by modelling the flow of the modelling liquid (in this case water) through ceramic filters. In the same interval of Reynolds numbers the loss coefficient xi was greater for foam filters than for filters with direct holes (strainers); however, the outlet coefficient mu of the foam filters was, in identical conditions, significantly lower than that of filters with direct holes.
机译:伯努利方程式是基本描述真实金属熔体通过浇注系统的流量的基础,该浇注系统用于用插入的陶瓷过滤器填充铸模。原则上,可以使用修正的无量纲形式的伯努利方程式来确定损耗系数xi,作为无量纲准则(雷诺数,弗洛德数和欧拉数)的一般函数。通过建模液体(在本例中为水)通过陶瓷过滤器的流动进行了验证。在相同的雷诺数区间内,泡沫过滤器的损耗系数xi大于带直孔(过滤器)的过滤器;然而,在相同条件下,泡沫过滤器的出口系数μ明显低于带直孔的过滤器的出口系数μ。

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