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Microstructure evolution and precipitation behavior of a high nitrogen 15Cr martensitic stainless steel during tempering

机译:高氮15Cr马氏体不锈钢在回火过程中的微观结构演化和降水行为

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The microstructure evolution and precipitation behavior of a low carbon high nitrogen martensitic stainless steel containing 15%Cr-5%Ni-l%Mo-0.16%N (in mass percentage) after tempering at temperatures ranged from 300 °C~700 °C were investigated by hardness test, X-ray diffraction (XRD) and Transmission electron microscopy (TEM). The steel exhibits second hardening behavior after tempering at temperatures below 500 °C. Tempering at temperatures above 500 °C promotes the formation of reversed austenite and the precipitation of Cr_2N. The coherent orientation relationship of Cr_2N with martensite was revealed as [111]_M//[001]_(Cr_2N), (011)_M //(100)_(Cr_2N). Retained austenite originated from reversed austenite at room temperature results in the softening of the steel, and the retransformation of reversed austenite to untempered martensite after tempering at temperatures above 600 °C restores the hardness of the steel, a phase was also found in specimens tempered at temperatures ranged from 500 °C to 700 °C.
机译:低碳高氮马氏体不锈钢的微观结构演化和沉淀性能含有15%Cr-5%Ni-L%Mo-0.16%N(质量百分比)在温度下的温度范围为300℃〜700°C之后由硬度试验,X射线衍射(XRD)和透射电子显微镜(TEM)研究。在低于500℃的温度下回火后,钢在高温下表现出第二个硬化行为。温度高于500℃的温度促进逆转奥氏体的形成和Cr_2N的沉淀。 CR_2N与马氏体的相干取向关系被揭示为[111] _M // [001] _(CR_2N),(011)_M //(100)_(CR_2N)。保留的奥氏体起源于室温下的逆转奥氏体导致钢的软化,并且在600°C以上温度的温度下回火后反转奥氏体对无限的马氏体的再变换恢复了钢的硬度,在标本中也发现了一定的阶段温度范围为500°C至700°C。

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