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Austenitic transformation and influence of prior ferrite formation on martensite transformation characteristics of Al-added P91 ferritic-martensitic steel

机译:先前铁氧体形成对Al添加P91铁素体 - 马氏体钢马氏体转化特性的奥氏体转化及影响

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In the present study austenitic transformation and effect of prior ferrite formation on martensite transformation characteristics of 0.48 wt% Al-added P91 steel was investigated by thermal analysis using differential scanning calorimetry and related microstructure characterization. Starting microstructure of as-cast alloy was dual phase consisting of alpha'-martensite+delta-ferrite. Austenitization heat treatments were carried out in the temperature range of 1273-1673 K at constant heating/cooling rates and hold time. gamma-austenite formation from the initial dual phase structure occurred in two stages with increasing temperature: delta-ferrite (martensite) -> gamma-austenite transformation at 1170 K followed by delta-ferrite and Al enriched fibrous alpha-ferrite gamma formation that begins at 1210 K. Isothermal characteristics of gamma-austenite transformations were studied by Dictra (R) simulations. Elemental segregations were found to be the reason for two stage gamma-austenite formation with temperature. These transformations involving alpha-ferrite, delta-ferrite and gamma-austenite and extent of these transformations at various temperatures affected the martensite formation characteristics. Formation of alpha'-martensite was favored after heat treatment at 1373 K and 1473 K. Dissolution of ferrite and corresponding changes in the stability of gamma-austenite at 1273 K and 1373 K, interfacial effects at 1473 K, grain size and new delta-ferrite formation effects at 1573 K and 1673 K dominated martensite transformation of Al-added P91 steel. (C) 2020 Elsevier B.V. All rights reserved.
机译:在本研究中,通过差示扫描量热法和相关显微组织表征的热分析,研究了添加0.48 wt%Al的P91钢的奥氏体转变以及先前铁素体形成对马氏体转变特性的影响。铸态合金的起始组织是由α′-马氏体+δ铁素体组成的双相组织。奥氏体化热处理在1273-1673K的温度范围内以恒定的加热/冷却速率和保持时间进行。随着温度的升高,初始双相结构的γ-奥氏体形成分为两个阶段:1170 K时的δ铁素体(马氏体)->γ-奥氏体转变,然后是1210 K时开始的δ铁素体和富铝纤维状α-铁素体γ形成。通过Dictra(R)模拟研究了γ-奥氏体转变的等温特性。元素偏析被发现是两阶段伽马奥氏体随温度形成的原因。这些涉及α铁素体、δ铁素体和γ奥氏体的转变以及这些转变在不同温度下的程度影响了马氏体的形成特征。在1373 K和1473 K下热处理后,有利于α-马氏体的形成。在1273 K和1373 K下,铁素体的溶解和γ-奥氏体稳定性的相应变化,1473 K下的界面效应,1573 K和1673 K下晶粒尺寸和新的δ铁素体形成效应,主导了添加铝的P91钢的马氏体转变。(C) 2020爱思唯尔B.V.版权所有。

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