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通过调质处理同时提高热轧压力容器钢Q345的强度和抗硫化物应力开裂性能

Simultaneous Enhancement of Strength and Sulfide Stress Cracking Resistance of Hot-Rolled Pressure Vessel Steel Q345 via a Quenching and Tempering Treatment.

作者信息

Zhang Jing, Zhao Ming-Chun, Tian Yan, Zhang Jimou, Wang Zhen, Zhao Ying-Chao, Peng Longsheng

机构信息

College of Automotive Engineering, Hunan Industry Polytechnic, Changsha 410082, China.

School of Materials Science and Engineering, Central South University, Changsha 410083, China.

出版信息

Materials (Basel). 2024 Apr 3;17(7):1636. doi: 10.3390/ma17071636.

Abstract

Sulfide stress cracking (SSC) failure is a main concern for the pressure vessel steel Q345 used in harsh sour oil and gas environments containing hydrogen sulfide (HS). Methods used to improve the strength of steel usually decrease their SSC resistance. In this work, a quenching and tempering (Q&T) processing method is proposed to provide higher strength combined with better SSC resistance for hot-rolled Q345 pressure vessel steel. Compared to the initial hot-rolled plates having a yield strength (YS) of ~372 MPa, the Q&T counterparts had a YS of ~463 MPa, achieving a remarkable improvement in the strength level. Meanwhile, there was a resulting SSC failure in the initial hot-rolled plates, which was not present in the Q&T counterparts. The SSC failure was not only determined by the strength. The carbon-rich zone, residual stress, and sensitive hardness in the banded structure largely determined the susceptibility to SSC failure. The mechanism of the property amelioration might be ascribed to microstructural modification by the Q&T processing. This work provides an approach to develop improved strength grades of SSC-resistant pressure vessel steels.

摘要

硫化物应力开裂(SSC)失效是在含有硫化氢(HS)的苛刻酸性油气环境中使用的压力容器钢Q345的主要关注点。用于提高钢强度的方法通常会降低其抗SSC性能。在这项工作中,提出了一种淬火和回火(Q&T)加工方法,以为热轧Q345压力容器钢提供更高的强度并兼具更好的抗SSC性能。与屈服强度(YS)约为372MPa的初始热轧板相比,经Q&T处理的板材YS约为463MPa,强度水平有了显著提高。同时,初始热轧板出现了SSC失效,而经Q&T处理的板材中未出现这种情况。SSC失效不仅取决于强度。带状组织中的富碳区、残余应力和敏感硬度在很大程度上决定了SSC失效的敏感性。性能改善的机制可能归因于Q&T处理引起的微观结构改性。这项工作提供了一种开发更高强度等级的抗SSC压力容器钢的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec7d/11012652/fda8fc85ed29/materials-17-01636-g001.jpg

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