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Microstructure refinement and mechanical properties improvement by developing IAF on inclusions in Ti-Al complex deoxidized HSLA steel

机译:通过对Ti-Al复合脱氧HSLA钢中的夹杂物进行IAF制备,改善组织和改善力学性能

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摘要

The present study focused on microstructure refinement in Ti-Al complex deoxidized low alloy structural steel by developing IAF on inclusions. The goal was to establish more determined relation between Ti, Al in steel and the produced microstructures. In steel sample with Ti and Al contents of 0.0035% and 0.0004%, respectively, IAF was well developed by inclusions characterized by TiOx-MnO oxide cores enwrapped by (MnO-SiO2Al2O3)-MnS or (MnO-SiO2)-MnS surface layers. With the rise of Ti and Al contents, IAF volume decreased greatly because of different inclusion chemistry, TiOx + MnS, TiOx-Al2O3 or Al2O3, which inhibit the formation of IAF. Thermodynamic calculations were carried out for optimal Ti and Al contents in steel to target inclusions with proper chemistry for nucleating IAF. These laboratorial findings were successfully applied and reproducibly observed in pilot trials. It was indicated that low temperature impact toughness at 0 degrees C and -20 degrees C of the produced medium plate was effectively improved despite lower Ti contents than common process, which was very meaningful in saving the cost of high Ti content steels. (C) 2015 Elsevier Inc. All rights reserved.
机译:本研究的重点是通过开发夹杂物上的IAF来细化Ti-Al复合脱氧低合金结构钢的组织。目的是在钢中的Ti,Al与产生的微结构之间建立更确定的关系。在Ti和Al含量分别为0.0035%和0.0004%的钢样品中,IAF通过夹杂物得以很好地发展,该夹杂物的特征是TiOx-MnO氧化物核包裹了(MnO-SiO2Al2O3)-MnS或(MnO-SiO2)-MnS表面层。随着Ti和Al含量的增加,由于不同的夹杂物化学,TiOx + MnS,TiOx-Al2O3或Al2O3抑制了IAF的形成,IAF的体积大大减少。进行了热力学计算,确定了钢中最佳的Ti和Al含量,并以适当的化学成分将夹杂物用于IAF成核。这些实验室发现已成功应用,并在试验中可重复观察。结果表明,尽管Ti含量比普通工艺低,但生产的中厚板在0℃和-20℃下的低温冲击韧性得到了有效提高,这对于节省高Ti含量钢的成本非常有意义。 (C)2015 Elsevier Inc.保留所有权利。

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