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Orientation and Microstructure Evolution of Al-Al 2 Cu Regular Eutectic Lamellar Bifurcating in an Abruptly Changing Velocity under Directional Solidification

机译:Al-Al 2 Cu规则共晶层分叉在定向凝固下突然变化的速度分叉的定向和微观结构演化

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In an abruptly changing velocity under directional solidification, microstructures and the growth orientation of Al-Al 2 Cu eutectic lamellar were characterized. The change in solidification rate led to an interfacial instability, which results in a bifurcation of the eutectic lamella into new, refined lamellae. The growth orientation of the eutectic Al 2 Cu phase was also only in its (001) direction and more strongly oriented to the heat flow direction. The results suggest that the eutectic lamellar Al-Al 2 Cu bifurcation and the spacing adjustment may be caused by the rate determining lateral diffusion of the solutes after interfacial instability.
机译:在方向凝固下的速度突然改变,表征了Al-Al 2 Cu共晶层的微观结构和生长取向。凝固率的变化导致界面不稳定性,导致共晶薄片分叉进入新的精制薄片。共晶Al 2 Cu相的生长取向也仅在其(001)方向上并且更强烈地定向到热流动方向。结果表明,共晶层状铝Al-Al 2 Cu分叉和间隔调整可能是由界面不稳定性后溶质的横向扩散的速率引起的。

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