[1] |
Yu Chenyang, Chi Qiang, Zhang Weiwei, Hu Meijuan, Chen Qinglong, Ge Jialin.
Determination and analysis of SH-CCT curve of X80 pipeline steel with OD1422 mm
[J]. Heat Treatment of Metals, 2020, 45(6): 93-97.
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[2] |
Ma Jing, Yu Baiqing, Wang Shenhao, Fan Lifeng.
Effect of dual phase accelerated cooling on microstructure and properties of X80 pipeline steel
[J]. HTM, 2020, 45(3): 140-145.
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[3] |
Xu Pengfei, Zhao Zuopeng, Cheng Hongxia, Xiao Furen.
Analysis and forecast of fatigue crack propagation behavior in HAZ of X80 pipeline steel by welding thermal simulation
[J]. Heat Treatment of Metals, 2020, 45(12): 184-188.
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[4] |
Bi Zongyue, Wei Feng, Zhang Wanpeng, Li Jie, Zhang Min.
Effect of heat treatment on microstructure and properties of welded joints of X80 steel used for bent pipe under extremely cold service conditions
[J]. Heat Treatment of Metals, 2020, 45(10): 79-84.
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[5] |
Huang Bensheng, Zhu Yao, Fan Zimeng, Hu Xiaogang, Yang Jiang, Chen Peng.
Corrosion resistance of X80 pipeline steel and its welded joint under high temperature and high pressure environment
[J]. HTM, 2017, 42(4): 127-130.
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[6] |
Liu Yingyi, Zhou Guoshi, He Jun, Li Xinkai, Zhang Hongmei.
Corrosion behavior of X80 pipeline steel in simulated soil solution
[J]. HTM, 2016, 41(5): 181-185.
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[7] |
Gong Jiahe1.2, Li Dechao1, Wang Haiyan1,2, Jia Youqing1,2, Ren Huiping1,2, Liu Zongchang1.
Influence of rare earth on tensile fracture behavior of X80 pipeline steel
[J]. HTM, 2016, 41(2): 15-18.
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[8] |
Xiao Xiaohua1, Lu Jie2, Liang Feike2, Huang Bensheng2.
Effects of cryogenic treatment on microstructure and mechanical properties of X80 steel welding joints
[J]. HTM, 2015, 40(9): 152-155.
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[9] |
Wang Xiaojiang1,2, Sun Xinjun2, Yong Qilong1,2, Li Zhaodong2, Zhao Dongyu1,2, Zhang Zhengyan2.
Effect of VC precipitation on toughness of heat affected zone in X80 pipeline steel
[J]. HTM, 2015, 40(4): 7-12.
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[10] |
Wang Xiaojiang1, 2, Sun Xinjun2, Li Zhaodong2, Yang Junwei2, 3, Li Yuanmei1, 2, Yong Qilong1, 2.
Microstructure evolution of X80 pipeline steel during TMCP process
[J]. HTM, 2015, 40(12): 83-88.
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[11] |
Duan Qiang1, Yan Jun2, Zhu Guohui2, Cai Qingwu1.
Microstructure and crack formation mechanism of X80 pipeline steel welded seam
[J]. HTM, 2015, 40(11): 68-72.
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[12] |
Xie Fei, Wang Dan, Wu Ming, Zhang Kangnan, Yang Xu, Sun Dongxu.
Effect of environment factors on corrosion electrochemical behavior of X80 steel welded joint
[J]. HTM, 2015, 40(10): 200-204.
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[13] |
Huang Bensheng, Fan Zimeng, Chen Liu, Zhou Lujiang, Shao Dapeng, Deng Wei.
Effect of heat treatment on stress corrosion of X80 pipeline steel in simulated seawater
[J]. HTM, 2014, 39(8): 109-112.
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[14] |
Hou Jingli, Wang Haiyan, Ren Huiping, Liu Zongchang, Hou Jingchun.
Microstructure and precipitation behavior of X80 pipeline steel relaxed after deformation
[J]. HTM, 2014, 39(5): 27-30.
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[15] |
Zhang Defen,Wang Jin,Jing Liang,Peng Bo,Jiang Ping.
Influence of heat input on microstructure and properties of welding coarse-grained zone of X80 pipeline steel
[J]. HTM, 2014, 39(2): 47-50.
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