Microstructural Evolution and Carbon Partitioning in Interstitial Free Weld Simulated API 5L X60 Steel

Author:

Zarchi Hamid Reza Karimi1,Khajesarvi Ali2,Banadkouki Seyed Sadegh Ghasemi2,Somani Mahesh C.3

Affiliation:

1. Department of Mining and Metallurgical Engineering, Yazd University, University Blvd, Safayieh, Yazd, PO Box: 98195 – 741, Iran, Tel: +98 9132528680; Fax: +98 35 38210995

2. Department of Mining and Metallurgical Engineering, Yazd University, University Blvd, Safayieh, Yazd, PO Box: 98195 – 741, Iran

3. University of Oulu, Materials and Mechanical Engineering, Centre for Advanced Steels Research, Post Box 4200, 90014Oulu, Finland

Abstract

AbstractThe microstructural characterizations and partitioning of carbon element in the weld heat affected zones of a commercial API 5L X60 line pipe steel were studied by applying a high speed heating and cooling dilatometry technique in the present research work. The hollow cylindrical specimens were quickly heated to 1000°C, soaked for only 5 s followed by continuous cooling to ambient temperature. Besides the construction of CCT diagram of this high strength low alloy steel using the dilatation data, the hardening response, microstructural features and carbon partitioning of weld simulated specimens were investigated. The obtained results showed that the hardening response of samples increased from 142 to 261HV10kg with increasing cooling rates. These hardening variations were attributed to the changes in microstructural features and carbon partitioning that occurred between the microconstituents present in the microstructures of weld simulated samples.

Publisher

Walter de Gruyter GmbH

Subject

Condensed Matter Physics,General Materials Science

Reference35 articles.

1. Chapter pipelines In Gulf Professional Publishing;Bahadori;Transportation,2017

2. Gas;Sharma;Nat Sci Eng,2017

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