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Development of Ferrite/Bainlte Bands and Study of Bainite Transformation Retardation in HSLA Steel During Continuous Cooling

机译:HSLA钢连续冷却过程中铁素体/贝氏体带的发展及贝氏体转变迟缓的研究

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The development of banded structure in HSLA steel during continuous cooling has been systematically studied using dilatometry and microstructural observations. At low cooling rates (<10°C/mm), the micro-structure contains alternating bands of ferrite and a mixture of pearlite and bainite. At higher cooling rate (>10°C/min), the formation of pearlite is suppressed, and the corresponding microstructure consists of banded ferrite and bainite. Dilatometric analysis indicates that as ferrite and pearlite transformation at low rates (or ferrite transformation at higher rates) completes, Manganese (Mn) and Carbon (C) concentration in austenite can retard the bainitic transformation and result in the transformation stagnancy phenomenon. The magnitude of retardation and the bainite morphology are affected by Mn and C concentration. The increased cooling rate decreases Mn and C content in bainite, and then the length of the stagnant stage decreases and bainite morphology changes from lower bainite to acicular ferrite.
机译:HSLA钢在连续冷却过程中带状组织的发展已使用膨胀法和微观结构观察进行了系统研究。在低冷却速率(<10°C / mm)下,微结构包含交替的铁素体带以及珠光体和贝氏体的混合物。在较高的冷却速率(> 10°C / min)下,珠光体的形成受到抑制,相应的显微组织由带状铁素体和贝氏体组成。膨胀分析表明,随着低速铁素体和珠光体转变(或高速铁素体转变)完成,奥氏体中锰(Mn)和碳(C)的浓度会延迟贝氏体转变并导致转变停滞现象。延迟量和贝氏体形态受Mn和C浓度的影响。增加的冷却速率降低了贝氏体中的Mn和C含量,然后停滞阶段的长度减小,贝氏体形态从下部贝氏体变为针状铁素体。

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