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Effects of local-brittle-zone (LBZ) microstructures on crack initiation and propagation in three Mo-added high-strength low-alloy (HSLA) steels

机译:脆性区(LBZ)显微组织对三种添加Mo的高强度低合金(HSLA)钢的裂纹萌生和扩展的影响

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摘要

Fracture toughness of intercritically-reheated coarse-grained HAZ (ICRCGHAZ), i.e., local brittle zone, is severely reduced at low temperatures by the presence of undesirable microstructural features such as coarsened prior austenite grains, bainitic microstructures including bainitic ferrite (BF), granular bainite (GB), and acicular ferrite (AF), and martensite-austenite constituent (MA). In this study, effects of the microstructural features on critical CTOD and crack initiation and propagation process were investigated in the ICRCGHAZ of three Mo-added high-strength low-alloy (HSLA) steels. The Mo addition caused the increased volume fractions of GB, BF, and MA and the resultant deterioration of critical CTOD. According to the observation of cracking process, most of hard MAs, particularly MAs located along prior austenite grain boundaries (PAGBs), provided initiation sites of {100} cleavage cracks. In addition, a large hardness difference between PAGB-MA and matrix led to an easy MA/matrix interfacial separation and an increase in crack initiation sites, thereby resulting in very low critical CTOD in the high-Mo-containing steel having the highest fraction of MA. The detailed microscopic observation of cracking process at MM and macroscopic MA/matrix hardness difference provide plausible ideas for reliably evaluating critical CTOD and for designing HSLA steels in consideration of ICRCGHAZ microstructures.
机译:由于存在不良的微观组织特征,例如粗大的奥氏体晶粒粗化,包括贝氏体铁素体(BF)在内的贝氏体组织,颗粒状,在临界温度下,临界加热的粗晶粒HAZ(ICRCGHAZ)的断裂韧性(即局部脆性区)在低温下会严重降低贝氏体(GB),针状铁素体(AF)和马氏体-奥氏体成分(MA)。在这项研究中,研究了三种添加钼的高强度低合金(HSLA)钢在ICRCGHAZ中微观结构特征对临界CTOD以及裂纹萌生和扩展过程的影响。 Mo的添加导致GB,BF和MA的体积分数增加,并导致临界CTOD降低。根据开裂过程的观察,大多数硬质MAs,特别是沿先前奥氏体晶界(PAGBs)的MAs提供了{100}裂解裂纹的起始位置。此外,PAGB-MA与基体之间的较大硬度差导致易于实现MA /基体界面分离,并增加了裂纹萌生部位,从而导致具有最高Mo%含量的高Mo含量钢的临界CTOD非常低。嘛。 MM处开裂过程的详细微观观察以及宏观MA /基体硬度差异为合理评估关键CTOD和考虑ICRCGHAZ微结构设计HSLA钢提供了合理的思路。

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