ISSN:1003-8620

CN:42-1243/TF

Governed by: CITIC Pacific Special Steel Group Co., LTD

Sponsored by: Daye Special Steel Co., LTD.

Special Steel ›› 2024, Vol. 45 ›› Issue (2): 18-23.DOI: 10.20057/j.1003-8620.2023-00105

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Morphology and Formation Mechanism of Ti and Nb Liquid Precipitation Phase in Medium Carbon CrMo Steel

Jiang Qiao, Zhang Jian, Ni Yanhong   

  1. Daye Special Steel Co., Ltd., Huangshi 435001, China
  • Received:2023-05-30 Online:2024-03-30 Published:2024-04-01

中碳CrMo钢中Ti、Nb液析形貌及生成机理分析

蒋 乔,张 健,倪燕红   

  1. 大冶特殊钢有限公司,黄石 435001
  • 作者简介:蒋 乔(1971—),男,本科,高级工程师; E-mail:jiangqiao@citicsteel.com

Abstract: The morphology of the liquid precipitation phase of micro alloys Ti, Nb, and V in 42CrMo steel continuous casting billets was observed, as well as the changes of the liquid precipitation phase after heating and rolling, then the formation mechanism was derived by using thermodynamic calculations. The results showed that Ti and Nb precipitated in the form of composite carbonitrides can be observed in 42CrMo steel 410 mm ×530 mm continuous casting billets with Ti 0. 012%,Nb 0. 030%, V 0. 030%, N 0. 003 5%, which was formed a micrometer scale liquid precipitation phase. Those with higher Ti content(70%-83%)were mostly polygonal blocks, while others with higher Nb content(70%-85%)were mostly thin films or irregular blocks, and no significant V segregation in the liquid phase; The carbonitrides precipitation phases of Ti and Nb can dissolve and grow together, the liquid precipitation with higher Nb content grew into blocks with the liquid precipitation with higher Ti content as the core, while some phases nucleate and grew with sulfides as the core or basal planes; There were many carbonitrides liquid precipitation phase in the center of continuous casting billets, and their sizes were relatively large ( up to 35 μm), but its quantity and size under the surface were relatively small (below 10μm); After heating and rolling the continuous casting billet at 1 200 ℃, liquid precipitation phase can be partially dissolved, resulting in a decrease in quantity and size, and it will break during the rolling process.

Key words: Ti, Nb, CrMo, Micro Alloy, Medium Carbon Steel, Liquid Precipitation Phase

摘要: 通过观察微合金Ti、Nb、V在42CrMo钢连铸坯中的液析形貌,以及液析经加热轧制后的变化,同时,采用热力学计算的方式推导液析生成机理。结果表明,在含 w[Ti]0. 012%、w[Nb]0. 030%、w[V]0. 030%、w[N]0. 003 5% 的 42CrMo 钢 410mm×530 mm连铸坯中,可观察到Ti、Nb以复合碳氮化物的形式析出,形成微米级液析,w[Ti]较高(70%~83%)的多呈多边形块状,   w[Nb]较高(70%~85%)的多呈薄膜状或不规则块状,液析中基本不含 V 元素;Ti和 Nb 的碳氮化物液析可互溶并共同生长,Nb 含量较高的液析以 Ti含量较高的液析为核心长大为块状,部分液析以含硫夹杂物为核心形核并长大;连铸坯心部的碳氮化物液析较多,并且尺寸较大(最长达35 μm),连铸坯表面的数量较少,尺寸较小(10 μm以下);连铸坯经1200 ℃加热并轧制后,液析可部分回溶,数量减少,尺寸减小,并且在轧制过程中破碎。

关键词: Ti, Nb, CrMo, 微合金, 中碳钢, 液析

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