首页> 外文期刊>Journal of Materials Research and Technology >Retained austenite phase detected by M?ssbauer spectroscopy in ASTM A335 P91 steel submitted to continuous cooling cycles
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Retained austenite phase detected by M?ssbauer spectroscopy in ASTM A335 P91 steel submitted to continuous cooling cycles

机译:进行连续冷却循环的ASTM A335 P91钢的Mssbauer光谱检测到的残余奥氏体相

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Samples of ASTM A335 P91 steel submitted to continuous cooling at different rates were analyzed in the form of foils and powders by means of M?ssbauer spectroscopy. The Continuous Cooling Transformation (CCT) diagram of steel ASTM A335 P91 displays two basic microstructural domains at low temperatures – ferritic and martensitic – whose limits depend on the austenite holding temperature, the precise chemical composition and the cooling conditions from the austenite mother phase. Under certain conditions, the martensitic transformation may not be completed, leading to a final microstructure with a non-negligible percentage of the austenite phase retained in a metastable state. This retained austenite could be detrimental for the mechanical properties of the steel.M?ssbauer analysis suggested that powdering process promotes the retained austenite transformation to martensite; in particular, in the present case, all the austenite transformed into martensite during powdering. Foil samples instead displayed retained austenite whose relative fraction was determined as a function of the cooling rate. At the same time, the carbon content of retained austenite was estimated for the faster cooled samples; a preliminary explanation for the observed trends is given.
机译:采用Msssbauer光谱法分析以不同速度连续冷却的ASTM A335 P91钢样品的箔和粉末形式。钢ASTM A335 P91的连续冷却转变(CCT)图显示了在低温下的两个基本显微组织区域(铁素体和马氏体),其极限取决于奥氏体保持温度,精确的化学成分和奥氏体母相的冷却条件。在某些条件下,马氏体相变可能不会完成,从而导致最终的微观结构,奥氏体相的百分率保持在亚稳态。这种残留的奥氏体可能会损害钢的力学性能。M?ssbauer分析表明,粉末化过程会促进残留的奥氏体向马氏体的转变。特别是在当前情况下,所有奥氏体在粉末化过程中都转变为马氏体。代替地,箔样品显示出残留的奥氏体,其相对分数取决于冷却速率。同时,估计了冷却较快的样品中残余奥氏体的碳含量。给出了对观察到的趋势的初步解释。

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