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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of the Intensity of Melt Shearing on the As Cast Structure of Direct Chill Cast 2024 Aluminum Alloy
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Effect of the Intensity of Melt Shearing on the As Cast Structure of Direct Chill Cast 2024 Aluminum Alloy

机译:熔体剪切强度对直流铸造2024铝合金铸造结构的影响

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Intensive melt shearing was achieved by a stator-rotor high-shear unit and was used in the sump during direct chill (DC) casting process to investigate the influence of the rotation speed on the as cast structure of an aluminum alloy. It has been demonstrated that intensive melt shearing has a significant effect on achieving a uniform temperature distribution and obtaining a fine and uniform as cast structure. We also found that the intensity of the melt shearing plays an important role in the effect. As the rotation speed increases, the melt around the high-shear unit transformed from a liquid to a semisolid state. At a rotation speed of 3000 rpm, intensive melt shearing can only increase the nuclei through fragmentation in the region close to the solidification front by forced convection. When the rotation speed increases to 6000 rpm, intensive melt shearing can also evidently increase the number of effective nuclei, mainly by increased fragmentation in a large volume around the high-shear unit.
机译:定子转子高剪切单元实现了强化熔体剪切,并在直接冷却(DC)浇铸过程中用于贮槽中的贮槽,以研究旋转速度对铝合金铸造结构的影响。已经证明,强化熔体剪切对实现均匀温度分布并作为铸造结构获得精细和均匀的显着影响。我们还发现熔体剪切的强度在效果中起着重要作用。随着转速增加,高剪切单元周围的熔体从液体转变为半固态状态。在3000rpm的转速,密集熔体剪切只能通过强制对流靠近凝固前方的区域的碎片增加核。当旋转速度增加到6000rpm时,密集的熔体剪切也可以显着增加有效核的数量,主要通过在高剪切单元周围的大容量中的碎裂增加。

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