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Fatigue Behavior of High Speed Steel Roll Materials for Hot Rolling by Laser Impacting 被引量:5

Fatigue Behavior of High Speed Steel Roll Materials for Hot Rolling by Laser Impacting
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摘要 The fatigue behavior of high speed steel (HSS) roll materials for hot rolling was researched under watercooling conditions by laser impacting. The microstructure of HSS sample and the morphologies of fatigue samples were observed by scanning electron microscope. The phase structure was detected by XRD. The morphology of situ oxide scale was observed by optical microscope, and the expansion coefficient was measured by TGA. The experiment results indicate that the cracks come into being at the carbide-matrix interface, but there are no cracks in the matrix after many times of laser impacting treatment, for the situ sample taken from the fractured roll surface, big carbides are more sensitive to the fatigue, and peel off prior to small ones. The relevant fatigue mechanisms are also discussed. The fatigue behavior of high speed steel (HSS) roll materials for hot rolling was researched under watercooling conditions by laser impacting. The microstructure of HSS sample and the morphologies of fatigue samples were observed by scanning electron microscope. The phase structure was detected by XRD. The morphology of situ oxide scale was observed by optical microscope, and the expansion coefficient was measured by TGA. The experiment results indicate that the cracks come into being at the carbide-matrix interface, but there are no cracks in the matrix after many times of laser impacting treatment, for the situ sample taken from the fractured roll surface, big carbides are more sensitive to the fatigue, and peel off prior to small ones. The relevant fatigue mechanisms are also discussed.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2006年第6期49-52,共4页 钢铁研究学报(英文版)
基金 ItemSponsored by National Natural Science Foundation of China (50274028) State Key Fundamental Research Project(G19990650)
关键词 high speed steel fatigue laser impacting stress concentration carbide high speed steel fatigue laser impacting stress concentration carbide
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参考文献6

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