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Laser Shock Processing of an Austenitic Stainless Steel and a Nickel-base Superalloy 被引量:1

Laser Shock Processing of an Austenltic Stainless Steel and a Nickel-base Superalloy
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摘要 An austenitic stainless steel 1Cr18Ni9Ti and a solid solution-strengthened Ni-base superalloy GH30 were shock processed using a Q-switched pulsed Nd-glass laser. Microstructure, hardness and residual stress of the laser shock processed surface were investigated as functions of laser processing parameters. Results show that high density of dislocations and fine deformation twins are produced in the laser shock processed surface layers in both the austenitic stainless steel and the nickel-base superalloy. Extensive strain-induced martensite was also observed in the laser shock processed zone of the austenitic steel. The hardness of the laser shock processed surface was significantly enhanced and compressive stress as high as 400 MPa was produced in the laser shock processed surface. An austenitic stainless steel 1Cr18Ni9Ti and a solid solution-strengthened Ni-base superalloy GH30 were shock processed using a Q-switched pulsed Nd-glass laser. Microstructure, hardness and residual stress of the laser shock processed surface were investigated as functions of laser processing parameters. Results show that high density of dislocations and fine deformation twins are produced in the laser shock processed surface layers in both the austenitic stainless steel and the nickel-base superalloy. Extensive strain-induced martensite was also observed in the laser shock processed zone of the austenitic steel. The hardness of the laser shock processed surface was significantly enhanced and compressive stress as high as 400 MPa was produced in the laser shock processed surface.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2003年第5期402-404,共3页 材料科学技术(英文版)
关键词 Laser shock processing Austenitic stainless steel Nickel-base superalloy Surface mechanical properties Residual stress Laser shock processing, Austenitic stainless steel, Nickel-base superalloy, Surface mechanical properties, Residual stress
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