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Tempering microstructure and mechanical properties of pipeline steel X80

机译:X80管线钢回火组织与力学性能。

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摘要

The tempering microstructure and mechanical properties of X80 steel used for heating-bent pipe were analyzed. The results show that the microstructure of X80 steel tempered at 550 °C and 600 °C is bainitic ferrite (BF)+granular bainite (GB), and partial ferrite laths in BF merge and broaden. The interior sub-lath boundary of some GB begins to disappear due to merging, the M/a constituent (a mixture of martensite plus retained austenite) in GB is orbicular. At the two tempering temperatures the tested X80 steel shows a certain degree of tempering stability. After being tempered at 650 °C, the microstructure of X80 steel is GB+quasi-polygonal ferrite(QF), and the original Bf laths have merged to form smaller GB crystal grains. The reason is that the steel shows better match of strength and toughness. After being tempered at 700 °C, the microstructure of X80 steel is composed mainly of QF, which can improve the plasticity but decline severely the yield strength of X80, and the M/A constituent assembles and grows up at the grain boundary of QF, resulting in excellent lower lowtemperature toughness of X80.
机译:分析了用于热弯管的X80钢的回火组织和力学性能。结果表明,在550°C和600°C下回火的X80钢的显微组织为贝氏体铁素体(BF)+颗粒贝氏体(GB),高炉中的部分铁素体板条融合并展宽。由于合并,某些GB的内部板条下边界开始消失,GB中的M / a成分(马氏体与残余奥氏体的混合物)呈圆形。在两个回火温度下,测试的X80钢表现出一定程度的回火稳定性。在650°C下回火后,X80钢的显微组织为GB +准多边形铁素体(QF),原始的Bf板条已经融合形成较小的GB晶粒。原因是钢显示出更好的强度和韧性匹配。 X80钢在700°C的温度回火后,其组织主要由QF组成,它可以改善X80的塑性,但会严重降低X80的屈服强度,并且M / A成分在QF的晶界聚集并长大,导致X80优异的低温低温韧性。

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