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Density and solidification feeding model of vacuum counter-pressure cast aluminum alloy under grade-pressuring conditions

机译:减压条件下真空反压铸造铝合金的密度和凝固补料模型

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The density of vacuum counter-pressure cast aluminum alloy samples under grade-pressuring condition was studied. The effect of grade pressure difference and time on the density of aluminum alloys was discussed, and the solidification feeding model under grade-pressuring condition was established. The results indicate the grade-pressured solidification feeding ability of vacuum counter-pressure casting mainly depends on grade pressure difference and time. With the increase of grade pressure difference, the density of all the aluminum alloy samples increases, and the trend of change in density from the pouring gate to the top location is first decreasing gradually and then increasing. In addition, in obtaining the maximum density, the optimal grade-pressuring time is different for samples with different wall thicknesses, and the solidification time when the solid volume fraction of aluminum alloy reaches about 0.65 appears to be the optimal beginning time for grade-pressuring.
机译:研究了梯度加压条件下真空反压铸造铝合金样品的密度。讨论了梯度压力差和时间对铝合金密度的影响,建立了梯度加压条件下的凝固加料模型。结果表明,真空反压铸件的级压凝固补料能力主要取决于级压差和时间。随着等级压差的增加,所有铝合金样品的密度增加,从浇口到顶部的密度变化趋势先是逐渐减小,然后增大。此外,在获得最大密度时,壁厚不同的样品的最佳梯度加压时间也不同,铝合金的固相分数达到约0.65时的凝固时间似乎是梯度加压的最佳开始时间。 。

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