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Hydrogen-induced cold cracking in heat-affected zone of low-carbon high-strength steel

机译:低碳高强度钢热影响区的氢致冷裂纹

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The Y-groove cracking test by submerged arc welding was employed to study the susceptibility of a low-carbon high-strength steel to hydrogen-induced cold cracking (HICC). The morphology of hydrogen cracks was observed using an electron probe microscope. The results showed that the heat-affected zone (HAZ) has a higher susceptibility to HICC than the weld metal and that increasing heat input can improve the HICC resistance of the weldment. The intergranular microcracking is the main HICC mode at the lowest heat input condition, accompanied with some transgranular microcracks attached to complex inclusions. In combination with phase transformation behaviour in sub-zones, the effect of the phase transformation sequence is proposed to try to illustrate the fact that the fine-grained HAZ has higher probability of hydrogen cracking than the coarse-grained HAZ owing to the occurrence of hydrogen enrichment in the fine-grained HAZ after the transformation.
机译:采用埋弧焊进行的Y型槽开裂试验,研究了低碳高强度钢对氢致冷裂(HICC)的敏感性。使用电子探针显微镜观察氢裂纹的形态。结果表明,热影响区(HAZ)对HICC的敏感性高于焊缝金属,并且增加的热量输入可以提高焊件的HICC抵抗力。在最低热量输入条件下,晶间微裂纹是主要的HICC模式,伴有一些与复杂夹杂物相连的跨晶微裂纹。结合分区中的相变行为,提出了相变序列的作用,以试图说明以下事实:由于氢的存在,细颗粒的热影响区比粗颗粒的热影响区具有更高的氢裂解可能性。转化后的细粒热影响区的富集。

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