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Effect of Hydrogen Charging on the Tensile and Constant Load Properties of an Austenitic Stainless Steel Weldment

Effect of Hydrogen Charging on the Tensile and Constant Load Properties of an Austenitic Stainless Steel Weldment
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摘要 The effect of cathodic hydrogen charging on the tensile and constant load properties was deter- mined for an austenitic stainless steel weldment comprising a 304L steel in the solution treated condition as a base metal and a 308L filler steel as a weld metal. Part of the 304L solution treated steel was separately given additional sensitization treatment to simulate the microstructure that would develop in the heat affected zone. Tests were performed at room temperature on notched round bar specimens. Hydrogen charging resulted in a pronounced embrittlement of the tested materials. This was manifested mainly as a considerable loss in the ductility of tensile specimens and a decrease in the time to failure and threshold stress of constant load specimens. The 308L weld metal exhibited the highest, and the 304L solution treated steel the lowest, resistance to hydrogen embrittlement. Hydrogen embrittlement was associated with the formation of strain induced martensite as well as a transition from brittle to ductile fracture morphology onwards the centre of the specimens. The effect of cathodic hydrogen charging on the tensile and constant load properties was deter- mined for an austenitic stainless steel weldment comprising a 304L steel in the solution treated condition as a base metal and a 308L filler steel as a weld metal. Part of the 304L solution treated steel was separately given additional sensitization treatment to simulate the microstructure that would develop in the heat affected zone. Tests were performed at room temperature on notched round bar specimens. Hydrogen charging resulted in a pronounced embrittlement of the tested materials. This was manifested mainly as a considerable loss in the ductility of tensile specimens and a decrease in the time to failure and threshold stress of constant load specimens. The 308L weld metal exhibited the highest, and the 304L solution treated steel the lowest, resistance to hydrogen embrittlement. Hydrogen embrittlement was associated with the formation of strain induced martensite as well as a transition from brittle to ductile fracture morphology onwards the centre of the specimens.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第4期444-448,共5页 材料科学技术(英文版)
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参考文献6

  • 1T.P.Perng and C.J.Altstetter: Mater. Science and Engineering Ethics . 1990
  • 2H.K.Birnbaum and P.Sofronis: Mater. Science and Engineering Ethics . 1994
  • 3K.Kitajima: Mater. Science and Engineering Ethics . 1994
  • 4J.Morisava,M.Kodama,S.Nishimura,K.Asano,K.Nakata and S.Shima: J Nucl. Mater . 1994
  • 5Q.Y.Long,C.G.Fan,Z.S.Xing and Y.Y.Li: Metall. Transactions . 1994
  • 6D.Hardie and J.J.F.Butler: Mater. Science and Technology . 1990

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