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Influence of Welding Power to the Microstructure and Properties of 304 Stainless Steel Sheet Joints in CO_2 La-ser Welding 被引量:1

Influence of Welding Power to the Microstructure and Properties of 304 Stainless Steel Sheet Joints in CO_2 La-ser Welding
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摘要 The optical microscope,SEM,XRD,microhardness and tensile tests are used to analyze the microstructure,microhardness and tensile strength of the joints of 304 stainless steel sheet joint by CO2 laser welding with different welding powers.The results show that microstructure of laser welding seam is the ferrite phase and austenite phase.There has an epitaxial solidification phenomenon and fine grains in the fusion zone.When the welding power is 1.4kW,the microhardness reaches a maximum value of 205HV in welding seam center,which is the transition zone of two directional dendritical structures.The coarser equiaxed grains lay in the 1.8kW welding seam center,and microhardness reached a minimum value of 195HV in the welding seam center.When the welding power increases,the effective bearing area of lap welding seam builds up rapidly,and the maximum loads of the double welding seams joints also increase from 4500N to 6000N in tensile test. The optical microscope,SEM,XRD,microhardness and tensile tests are used to analyze the microstructure,microhardness and tensile strength of the joints of 304 stainless steel sheet joint by CO2 laser welding with different welding powers.The results show that microstructure of laser welding seam is the ferrite phase and austenite phase.There has an epitaxial solidification phenomenon and fine grains in the fusion zone.When the welding power is 1.4kW,the microhardness reaches a maximum value of 205HV in welding seam center,which is the transition zone of two directional dendritical structures.The coarser equiaxed grains lay in the 1.8kW welding seam center,and microhardness reached a minimum value of 195HV in the welding seam center.When the welding power increases,the effective bearing area of lap welding seam builds up rapidly,and the maximum loads of the double welding seams joints also increase from 4500N to 6000N in tensile test.
作者 T Akiyama
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2011年第S4期106-110,共5页 Rare Metal Materials and Engineering
基金 Foundation item:FY2010 NEDO International Research Programs(No.0312003) Natural Science Foundation Project of CSTC(No.2009BA3026) New Century Excellent Talents in University(NCET-08-0607) the Fundamental Research Funds for the Central University(CDJRC11280002) Excellent Talents Project inUniversities of Chongqing Municipal Education Commission(2010)
关键词 laser WELDING 304 STAINLESS STEEL microstructure properties laser welding 304 stainless steel microstructure properties
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  • 1Rahma F. Performance evalution of synthesized acrylic acid grafed polypropylene within CaCO3/polypropylene composites[J]. Polymer Composites, 2000,21 (2) : 175-186.
  • 2Koizumi S, Igarashi R. Photo-responsive discharging effect of static electricity on TiO2-coated film[J]. J Mater Sci Lett,2000,19(6): 1431-1434.
  • 3Kayano Sunada, Yoshihiko Kikuchi, Kazuhito Hashimoto.Bactericidal and detoxification effects of TiO2 thin film photocatalysts[J]. Environmental Science and Technology, 1998,32(5) :726-728.
  • 4Wang R, Hashimoto K, Fujishima A, et al. Light-induced amphiphilic srufaces[J]. Nature, 1997,388: 431- 433.
  • 5Mairs A J, Yeung K L, Lee C Y, et al. Size effects in gasphase photo-ocidation of trichloroethylene using nanometer sized TiO2 catalysis[J]. J Catalysis, 2000,192:185-196.
  • 6Duley W W. Laser Welding[M]. New York: Jhon Wiley & Sons Inc, 1998
  • 7Glowacki M H. J Phys D: Appl Phys[J] 1995, 28(10): 2051
  • 8TangXiahui(唐霞辉) ZhuHaihong(朱海红) DuanJun(段军)etal.化中理工大学学报,1995,23(1):53-53.
  • 9Hamadou M, Fabbro R, Caillibotte G et al. Study of Assist Gas Flow Behavior during Laser Welding. Proceedings of ICALEO[C].2002
  • 10Wang Haixing, Chen Xi. J Phys D: Appl Phys[J], 2003, 36(6): 628

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