首页> 外文会议>International Congress on the Science and Technology of Steelmaking >In-Situ Observation on Behaviors of CaO-MgO-Al_2O_3-SiO_2 Complex Inclusions at Solid-Liquid Interface of Low Oxygen Special Steel
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In-Situ Observation on Behaviors of CaO-MgO-Al_2O_3-SiO_2 Complex Inclusions at Solid-Liquid Interface of Low Oxygen Special Steel

机译:低氧特钢固体液体界面CAO-MgO-AL_2O_3-SIO_2复合物夹杂物行为的原位观察

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Movements of CaO-MgO-Al_2O_3-SiO_2 inclusions at solid-liquid (S-L) interface during the solidification of low oxygen special steel were observed real time by the confocal laser scanning microscope, trying to explore the possible formation mechanism of the D-type and DS-type inclusions. It was found that S-L interfaces showed strong interaction with the inclusions, especially when the inclusions were captured. Collision and agglomeration between inclusion in liquid steel and inclusion captured by the S-L interface were reproducibly observed, followed by an obvious size growth. During this process, inclusions in liquid steel acted as the guest particles while the S-L interface capture inclusions acted as the host particles. There were also inclusions firstly moved towards whereas later away from S-L interfaces. In order to explain the behaviors of inclusion pairs, forces acted on inclusions were estimated and discussed. Based on the obtained result, it can be cautiously pointed out that collision and agglomeration of inclusions at S-L interface during the casting of steel is probably an important reason for the frequent existence of D-type and DS-type inclusions during the production of low oxygen special steel despite the high cleanliness. Therefore, minimization of inclusion size is very significant except the reduction of inclusion numbers.
机译:通过共聚焦激光扫描显微镜实时观察到在低氧特殊钢的固化过程中的CAO-MgO-AL_2O_3-SiO_2夹杂物的运动,试图探讨D型的可能形成机制DS型夹杂物。发现S-L界面显示出与夹杂物的强烈相互作用,特别是当夹杂物被捕获时。夹杂物在液体钢中与S-L界面捕获的夹杂物之间的碰撞和凝聚可再现地观察到,然后进行明显的尺寸生长。在此过程中,液钢中的夹杂物作用为客体颗粒,而S-L界面捕获夹杂物的作用是主体颗粒。还有一个夹杂物首先朝向后来远离S-L接口。为了解释包含对的行为,估计并讨论了对夹杂物上的力量。基于所得的结果,可以谨慎地指出,在钢铸造期间SL接口的夹杂物的碰撞和聚集可能是在低氧气生产过程中频繁存在D型和DS型夹杂物的重要原因特殊钢尽管有很高的清洁度。因此,除了夹杂数减少之外,夹杂物尺寸的最小化是非常显着的。

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