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Effect of Dendritic Morphology and Central Segregation of Billet Castings on the Microstructure and Mechanical Property of Hot-Rolled Wire Rods

机译:方坯铸件树枝状形态的影响和坯料铸件对热轧线杆微观结构和力学性能的影响

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摘要

Microscopic dendritic morphology and central macrosegregation in continuously cast high carbon steel billets with a cross section 150 x 150 mm(2) are investigated to elucidate their effect on the microstructure and mechanical property of the following hot-rolled wire rods, whose diameters are 10 and 6.5 mm, respectively. Experimental observations and numerical simulations for the steel billets under different casting conditions are carried out. It is found that the secondary dendrite arm spacing (SDAS) in the billets increases with the increase of superheat temperature, while decreases with the increasing specific water flow. Smaller SDAS in the billet center leads to lower segregation index of carbon (r(C)) and manganese (r(Mn)) due to the low permeability in the final solidification stage. The measured r(Mn) and r(C) in billets are in an approximately linear relationship. In addition, for the same rolling and cooling process, the severer carbon segregation in the center of the billets is, the lower the sorbite rate of the rods and the worse stability in the mechanical property of the rods. The tensile strength of wire rods can be improved by adjusting the casting parameters to decrease the SDAS and reduce the central carbon segregation of the billets.
机译:在连续铸造高碳钢坯料中进行微观树枝状形态和中央宏观测定,横截截面150×150mm(2)进行阐明它们对以下热轧线材的微观结构和机械性能的影响,其直径为10和分别为6.5毫米。进行了不同铸造条件下钢坯的实验观测和数值模拟。发现坯料中的次级树枝状臂间距(SDA)随比高温的增加而增加,同时随着特定水流的增加而降低。由于最终凝固阶段的低渗透性,坯料中心中的较小SDA导致碳(R(c))和锰(R(Mn))的偏析指数。坯料中的测量的R(Mn)和R(c)处于大致线性关系。此外,对于相同的轧制和冷却过程,坯料中心的严重碳偏析是杆的岩岩速率降低以及杆的力学性质中的较差稳定性。通过调节铸造参数来降低SDA并减少坯料的中心碳偏析,可以改善线材的拉伸强度。

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