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Inclusion Evolution during Modification of Alumina Inclusions by Calcium in Liquid Steel and Deformation during Hot Rolling Process

机译:液态钢中钙对氧化铝夹杂物改性过程中的夹杂物演变以及热轧过程中的形变

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The formation mechanism of Al_(2)O_(3)–CaS based inclusions in Al-killed steel was studied by industrial trials and thermodynamic calculations of various calcium aluminates and the precipitated CaS. The chemical activities of CaO and Al_(2)O_(3) of various calcium aluminates were expressed as a function of CaO and Al_(2)O_(3) content of CaO–Al_(2)O_(3) inclusions respectively by the third liner fitting equation obtained from different researchers. Massive Al_(2)O_(3)–CaS based inclusions were generated with a decrease of temperature of molten steel and subsequent solute segregation during casting. Based on the shapes of CaS layer, there are two formulations to consider: 1) the crescent-shaped CaS layer surrounded calcium aluminates was generated by reaction between dissolved Al, S and modified calcium aluminates or diffusion of S dissolved in inclusions; 2) the oval shape layer associated with calcium aluminates was generated by collision or adsorption of calcium aluminates and the precipitated CaS. In addition, the deformation mechanism of inclusions with different modification extents and sizes during hot rolling was proposed.
机译:通过工业试验和各种铝酸钙和沉淀的CaS的热力学计算,研究了铝镇静钢中Al_(2)O_(3)–CaS基夹杂物的形成机理。各种铝酸钙的CaO和Al_(2)O_(3)的化学活性分别表示为CaO–Al_(2)O_(3)夹杂物的CaO和Al_(2)O_(3)含量的函数。从不同研究人员获得的第三次衬管拟合方程大量的Al_(2)O_(3)–CaS基夹杂物随着钢水温度的降低以及随后在铸造过程中溶质的偏析而产生。根据CaS层的形状,可以考虑两种配方:1)铝酸钙包围的月牙形CaS层是由溶解的Al,S与改性铝酸钙之间的反应或S扩散到夹杂物中而产生的; 2)通过铝酸钙和沉淀的CaS的碰撞或吸附产生与铝酸钙相关的椭圆形层。此外,提出了热轧过程中不同程度和尺寸的夹杂物的变形机理。

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