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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Melt Temperature and Casting Speed on the Structure and Defect Formation during Direct-Chill Casting of an Al-Cu Alloy
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Effects of Melt Temperature and Casting Speed on the Structure and Defect Formation during Direct-Chill Casting of an Al-Cu Alloy

机译:熔体温度和铸造速度对直接冷铸Al-Cu合金过程中组织和缺陷形成的影响

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摘要

A thorough experimental investigation of the effects of melt temperature and casting speed on the structure and defect formation during the steady and nonsteady stages of direct-chill (DC) casting of an Al-2.8 pet Cu alloy is performed. In addition, the temperature and melt-flow distributions in the sump of billets cast at different melt temperatures are numerically simulated and used in the discussion on the experimental results. Apart from already known phenomena such as the coarsening of the structure, deepening of the sump, and increased probability of bleed-outs during DC casting with increased casting temperature, a few new observations are made. The increased melt temperature is shown to increase the severity of subsurface segregation, whereas the macrosegregation in the rest of the billet remains virtually unaffected. Hot-tearing susceptibility is strongly diminished by an increased melt superheat. The amount and distribution of "floating" grains is demonstrated to depend on both the melt temperature and the casting speed. The porosity was found to only slightly depend on the melt temperature. The amount of nonequilibrium eutectic in the center of the billet increases with increasing melt temperature. The effects of melt temperature on the dimensions of the sump, transition region, and mushy zone and on the melt-flow pattern in the sump are discussed and used in the interpretation of experimentally observed phenomena.
机译:在Al-2.8 pet Cu合金的直接冷(DC)铸造的稳定和非稳定阶段,进行了熔体温度和铸造速度对组织和缺陷形成的影响的彻底实验研究。另外,数值模拟了在不同熔体温度下铸造的钢坯贮槽中的温度和熔体流动分布,并将其用于实验结果的讨论中。除了已知的现象,例如结构变粗,集液槽的加深以及在DC铸造过程中随着铸造温度的升高而渗出的可能性增加之外,还进行了一些新的观察。熔体温度的升高显示出增加了地下偏析的严重性,而其余坯段的宏观偏析实际上并未受到影响。熔体过热的增加大大降低了热撕裂敏感性。已证明“漂浮”晶粒的数量和分布取决于熔体温度和浇铸速度。发现孔隙率仅略微取决于熔融温度。坯料中心的非平衡共晶量随着熔融温度的升高而增加。讨论了熔体温度对贮槽,过渡区和糊状区的尺寸以及贮槽中熔体流动模式的影响,并将其用于解释实验观察到的现象。

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