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ANACYSIS OF HYDROGEN ATTACK ACTIVATION ENERGY AND WELDING SEAM HYDROGENATTACK FOR 15CrMo STEEL |
LI Xiaogang; (Institute of Corrosion and Protection of Metals; Chinese Academy of Sciences.Shenyang 110015) CHEN Hua; MENG Qinghai; YAO Zhiming; LI Jin; KE Wei (State Key Laboratory of Corrosion and protection; Institute of Corrosion and Protection of Metals; Chinese Academy of Sciences; Shenyang 110015) (Fushun Petroleum Institute; Fushun 113001) |
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Cite this article:
LI Xiaogang; (Institute of Corrosion and Protection of Metals; Chinese Academy of Sciences.Shenyang 110015) CHEN Hua; MENG Qinghai; YAO Zhiming; LI Jin; KE Wei (State Key Laboratory of Corrosion and protection; Institute of Corrosion and Protection of Metals; Chinese Academy of Sciences; Shenyang 110015) (Fushun Petroleum Institute; Fushun 113001). ANACYSIS OF HYDROGEN ATTACK ACTIVATION ENERGY AND WELDING SEAM HYDROGENATTACK FOR 15CrMo STEEL. Acta Metall Sin, 1995, 31(22): 455-459.
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Abstract The activation energies of decarburization and hydrogen attack of 15CrMo steel exposed under 18 MPa H2 and at 300, 350, 400, 450 and 500℃ for different time were evaluated. Both activation energies have similar value. This is believed that the hydrogen attack reaction is controlled by the diffusion of C-atom. The hydrogen attack in the welding affected zone is more obvious than that of matrix.
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1余宗森.钢的高温氢腐蚀.北京:化学工业出版社,19862郦建立,李晓刚,谢根拴,姚治铭,李劲,柯伟.金属学报,1995;31:B263余宗森.中国腐蚀与防护学报,1984;1:2634PandaB,ShewmonPG.MetallTrans,1984;15A:4875APIPublication,1977;7:9416AllenRE.APIProc,1961;41:747MitsuoT,YamatoK,SaitohT.溶接学会会志,1969;19:12V |
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