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Microstructure and fatigue crack growth behaviour of electron beam welding in 30CrMnSiNi2A steel 被引量:2

Microstructure and fatigue crack growth behaviour of electron beam welding in 30CrMnSiNi2A steel
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摘要 The effects of two post-weld heat treatment processes on the microstructure and fatigue properties of the electron beam welded joints of 30CrMnSiNi2A steel were studied. Electron beam local post-weld heat treatment (EBLPWHT), in a vacuum chamber, immediately after welding and a traditional furnace whole post-weld heat treatment (FWPWHT) were accepted. The experimental results show that, after EBLPWHT, the main microstructure of weld is changed from coarse acicular martensite into lath martensite, and base metal is changed from ferrite and perlite into upper bainite and residual austenite, however the microstructures of different zones of joints in FWPWHT conditions are tempered sorbite. The fatigue crack growth rate da/dN of welds and base metal are not obviously changed among EBLPWHT, FWPWHT test and as-welded (AW) test, as the mechanical properties of materials have a certain but not large effect on the da/dN of welded joints. The resistance to near threshold fatigue crack growth data of welded joints can be largely improved by EBLPWHT and it is related to microstructure and crack closure effect. The effects of two post-weld heat treatment processes on the microstructure and fatigue properties of the electron beam welded joints of 30CrMnSiNi2A steel were studied. Electron beam local post-weld heat treatment (EBLPWHT), in a vacuum chamber, immediately after welding and a traditional furnace whole post-weld heat treatment (FWPWHT) were accepted. The experimental results show that, after EBLPWHT, the main microstructure of weld is changed from coarse acicular martensite into lath martensite, and base metal is changed from ferrite and perlite into upper bainite and residual austenite, however the microstructures of different zones of joints in FWPWHT conditions are tempered sorbite. The fatigue crack growth rate da/dN of welds and base metal are not obviously changed among EBLPWHT, FWPWHT test and as-welded (AW) test, as the mechanical properties of materials have a certain but not large effect on the da/dN of welded joints. The resistance to near threshold fatigue crack growth data of welded joints can be largely improved by EBLPWHT and it is related to microstructure and crack closure effect.
出处 《China Welding》 EI CAS 2003年第2期128-132,共5页 中国焊接(英文版)
基金 thefoundationoftheNationalDefenseTechnologyKeyLaboratory (No .99JS5 0 .3 .2JW14 0 2 )
关键词 electron beam local heat treatment electron beam welding MICROSTRUCTURE fatigue properties electron beam local heat treatment, electron beam welding, microstructure, fatigue properties
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  • 1C.C Huang,Y.C Pan,T.H Chuang.Effects of post-weld heat treatments on the residual stress and mechanical properties of electron beam welded sae 4130 steel plates[J].Journal of Materials Engineering and Performance.1997(1)
  • 2Chien-Chun Wang Ph.D. Candidate,Yih Chang.Effect of postweld treatment on the fatigue crack growth rate of electron-beam-welded AISI 4130 steel[J].Metallurgical and Materials Transactions A.1996(10)
  • 3T. Sebastiano,N. Fabio,D. M. Marcello.Electron beam welding and post-weld treatments of steels[J].Journal of Materials Science Letters.1996(10)
  • 4Huo Lixing.Fracture behavior and assessment of welded structures[]..2000

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