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Study of technique and performance of laser beam welding for W18Cr4V and 65Mn

Study of technique and performance of laser beam welding for W18Cr4V and 65Mn
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摘要 In this experiment, we used 7-kW continuous wave (CW) CO2 low order mode laser and YAG impulse laser to deeply weld high-speed steel (W18Cr4V) and spring steel (65Mn). To welded joint, we analyzed its microstructure, micro hardness and fracture appearance for different welding technology by metallography microscope, scanning electron microscopy and bending strength test, discussed its action of fracture and the relation between its structural transformation and strength. At last, we offered an optimum welding technology having no welding defect by the comparison and analysis of processing property. In this experiment, we used 7-kW continuous wave (CW) CO2 low order mode laser and YAG impulse laser to deeply weld high-speed steel (W18Cr4V) and spring steel (65Mn). To welded joint, we analyzed its microstructure, micro hardness and fracture appearance for different welding technology by metallography microscope, scanning electron microscopy and bending strength test, discussed its action of fracture and the relation between its structural transformation and strength. At last, we offered an optimum welding technology having no welding defect by the comparison and analysis of processing property.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2004年第1期39-42,共4页 中国光学快报(英文版)
关键词 Carbon dioxide lasers MICROHARDNESS MICROSTRUCTURE STEEL Carbon dioxide lasers Microhardness Microstructure Steel
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