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Impact of Intercritical Annealing on Retained Austenite and Toughness of a 460?MPa Grade Multiphase Heavy Gauge Plate Steel

机译:跨临界退火对460的保留奥氏体和韧性的影响

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>The objective of the study described here is to elucidate structure‐property relationship in a 460?MPa multiphase steel with particular emphasis on the influence of intercritical annealing process and retained austenite on mechanical properties. The study suggests that there is significant effect on comprehensive mechanical properties of heavy gauge plate (60?mm thickness) on intercritical annealing, especially the low temperature toughness is increased from 135 to 254?J at the test temperature of ?40?°C. Fine retained austenite can be obtained by optimization of interrupted on‐line cooling and partitioning during intercritical annealing heat treatment. The retained austenite stabilized by enrichment with alloying elements during heat treatment replacing coarse martensite and austenite (M/A) constituent is the underlying reason for superior toughness. The study underscores that a practical approach to enhance the toughness of heavy plate is via multiphase control during thermo‐mechanical control processing (TMCP) and off line intercritical annealing.
机译: <第XML:ID =“SRIN201800006-SEC-0001”> 本文所述的研究的目的是阐明460αMPA多相钢中的结构性质关系,特别强调跨临界退火过程和保留奥氏体对机械性能的影响。该研究表明,在跨临界退火上的重型压力表(60×mm厚度)的综合力学性能有显着影响,特别是低温韧性在Δ40Ω·℃的测试温度下从135增加到254Ω·j。通过在临界退火热处理期间优化中断的在线冷却和分配,可以获得精细的保留奥氏体。通过在热处理期间用富含合金元素稳定的保留奥氏体替代粗马氏体和奥氏体(M / A)成分是优异韧性的潜在原因。该研究强调了提高重型板韧性的实用方法是通过热机械控制处理(TMCP)和截止线跨临界退火的多相控制。

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