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Study of Bauschinger effect of acicular ferrite and polygonal ferrite through ex-situ interrupted bending tests in API X80 linepipe steels

机译:通过API X80管线钢的异位间断弯曲试验研究针状铁素体和多边形铁素体的鲍辛格效应

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摘要

Linepipe steels complexly consisted of low-temperature transformation microstructures of bainitic ferrite, granular bainite, and acicular ferrite (AF) as well as polygonal ferrite (PF) which individually affect the Bauschinger effect occurring during the pipe-forming. In this study, microscopic analyses of electron back-scattered diffraction (EBSD) coupled with tension-compression and interrupted bending tests were performed for verification of the Bauschinger effect of AF and PF working as major microstructures in single-phase- and two-phase-rolled API X80 steels, respectively. With respect to microstructural effects on Bauschinger effect, the reduction in mobile dislocation density during the flattening was smaller in the AF than in the PF. However, the dislocation pile-up at low-angle substructures and high-angle grain boundaries was more frequently observed, thereby leading to the higher back stress and Bauschinger effect in the AF. Boundary kernel average misorientation (KAM) profile played a critical role in determining the Bauschinger effect because they were closely related with the back stress. Thus, the Bauschinger effect was higher in the single-phase-rolled steel than in the two-phase-rolled steel. The present ex-situ interrupted bending methods coupled with EBSD analyses are outstanding ones for the detailed explanation of Bauschinger effect and provide an important idea for the yield strength designs of linepipe steels.
机译:管线钢由贝氏体铁素体,粒状贝氏体和针状铁素体(AF)以及多边形铁素体(PF)的低温转变微观结构组成,它们分别影响在管道成形过程中发生的包辛格效应。在这项研究中,进行了电子背散射衍射(EBSD)的微观分析,以及张力压缩和间断弯曲试验,以验证AF和PF在单相和两相中的主要微观结构的包辛格效应。分别轧制API X80钢。关于对鲍辛格效应的微观结构影响,在扁平化过程中,移动性位错密度的减小在AF中比在PF中小。然而,在低角度亚结构和高角度晶界处的位错堆积更频繁地被观察到,从而导致AF中更高的背应力和鲍辛格效应。边界核平均取向错误(KAM)轮廓在确定包辛格效应中起着关键作用,因为它们与背应力密切相关。因此,单相轧制钢的鲍辛格效应比双相轧制钢的更高。目前的异位间断弯曲方法与EBSD分析相结合,是对鲍辛格效应进行详细解释的出色方法,并为管线钢的屈服强度设计提供了重要思路。

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