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Effect of Laser-Induced Microstructure in Cavitation Erosion Performance of Martensitic Stainless Steel

机译:激光诱导微观结构在马氏体不锈钢空化腐蚀性能下的影响

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摘要

Cavitation erosion causes material removal from the surface of metal components submerged under swift flowing fluid due to implosions of gas bubbles on their surface. Since erosion is a surface degradation phenomenon, laser surface hardening can be a promising solution to tackle this problem without affecting the bulk properties of material. Laser acts as a localized surface heater which induces rapid non-equilibrium phase transformation and produces hard microstructure near the surface. In this paper, the effect of laser-induced microstructure on cavitation erosion performance of AISI 420 martensitic stainless steel is systematically investigated. Surface hardness as high as 700 HV is recorded after laser hardening and the microstructure consisted of fine carbides and retained austenite in a martensitic matrix. Such microstructure is attributed to result in high cavitation erosion resistance. The cavitation erosion resistance of laser hardened surface was found to be 18 times higher than that of untreated surface. The results indicate the significance of microstructural transformation induced by laser treatment on erosion performance of stainless steels.
机译:由于气泡在其表面上的气泡的内衬,空化腐蚀导致从迅速流动的金属成分表面去除。由于侵蚀是一种表面降级现象,激光表面硬化可以是应对溶液来解决这个问题而不影响材料的堆积性质。激光用作局部表面加热器,其诱导快速的非平衡相变,并在表面附近产生硬组织。本文系统地研究了激光诱导微观结构对AISI 420马氏体不锈钢的空化腐蚀性能的影响。在激光硬化之后记录高达700HV的表面硬度,并且在马氏体基质中由细碳化物和保留奥氏体组成的微观结构。这种微观结构归因于导致高空化腐蚀性。发现激光硬化表面的空化蚀灾抗性比未处理表面高18倍。结果表明激光处理对不锈钢腐蚀性能引起的微观结构变换的重要性。

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