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Flow Instabilities in the Horizontal Single Belt Casting Process with an Inclined Feeding System

机译:倾斜进料系统在水平单带铸造过程中的流动不稳定性

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Both physical experiments and mathematical simulations were employed to investigate the transport phenomena involved during Horizontal Single Belt Casting (HSBC) of AA6111 aluminum alloy, using an inclined feeding system. Flow instabilities in the metal delivery system were first analyzed, and it was found that the first impingement gives rise to instabilities in the melt film falling from the slot nozzle of the head box. Meanwhile, this impingement also has the potential to result in air suction. Using the Eulerian multiphase method, the start casting stage is shown to be very short. Its predictions are similar to those from the Volume of Fluid (VOF) method, and both are confirmed by physical experiments. During steady state casting, one can classify the melt into four regions. The “wavy contour” in “Region I” is an instability largely induced by impingement on an inclined refractory piece. “Region II” demonstrates the buffer effect of the inclined refractory wall and the flow must be continuous within it. The resistance force induced by the melt that has flowed just earlier onto the belt, gives rise to “Region III”, which is a transition region. Its transient variations in width determine the quality of the strip’s edges. The thickness of “Region IV” is associated with both “Region II” and “Region III”.
机译:物理实验和数学模拟均采用倾斜进料系统研究了AA6111铝合金水平单带铸造(HSBC)所涉及的传输现象。首先分析了金属输送系统中的流动不稳定性,发现第一次撞击会引起从流浆箱狭缝喷嘴掉落的熔体膜的不稳定性。同时,这种撞击还可能导致空气吸入。使用欧拉多相法,开始铸造阶段非常短。它的预测与流体体积(VOF)方法的预测相似,两者均通过物理实验得到了证实。在稳态浇铸过程中,可以将熔体分为四个区域。 “ I区”中的“波浪形轮廓”是一种不稳定性,主要是由倾斜的耐火件上的碰撞引起的。 “区域II”展示了倾斜耐火墙的缓冲作用,并且其中的流动必须是连续的。由刚流到皮带上的熔体引起的阻力产生了“区域III”,这是一个过渡区域。其宽度的瞬时变化决定了带钢边缘的质量。 “ IV区”的厚度与“ II区”和“ III区”都相关。

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