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Laser surface modification of a 13.5 Cr, 0.6 C steel

机译:13.5 Cr、0.6 C 钢的激光表面改性

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A 13.5 Cr, 0.6 C steel, with an initial microstructure of chromium carbides in a ferrite matrix, was heat-treated by scanning a high-power laser beam over the surface. The aim was to compare the physical and chemical properties produced by this type of selective surface treatment with those resulting from a conventional furnace desensitization and quench-hardening heat treatment. Surface heating homogenized the carbon originally bound in the carbides sufficiently to produce martensite, giving hardening to levels comparable with a conventional heat treatment. Chromium-rich zones, carbides and retained austenite were also detected in the heated microstructure. Surface melting produced complete homogenization of both carbon and chromium, which resulted in the retention of large amounts of austenite in the microstructure on cooling to room temperature. Subsequent refrigeration at — 196 °C transformed some of the austenite to martensite. Pitting corrosion and local reductions in hardness were observed adjacent to treated areas under certain conditions, due to precipitation of secondary carbides and elevated tempering, respective
机译:13.5%Cr,0.6%C钢,在铁素体基体中具有碳化铬的初始微观结构,通过扫描表面的高功率激光束进行热处理。目的是将这种选择性表面处理产生的物理和化学性能与常规炉子脱敏和淬火-硬化热处理产生的物理和化学性能进行比较。表面加热使碳化物中原本结合的碳充分均质化,从而产生马氏体,使硬化程度达到与传统热处理相当的水平。在加热的微观结构中还检测到富铬区、碳化物和残留奥氏体。表面熔化产生碳和铬的完全均质化,这导致在冷却到室温时在微观结构中保留大量奥氏体。随后在-196°C的冷藏下,将一些奥氏体转化为马氏体。在某些条件下,由于二次碳化物的沉淀和回火的升高,在处理区域附近观察到点蚀和局部硬度降低,分别

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