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Hydrogen-Induced Cracking of Laser Beam and Gas Metal Arc Welds on API X65 Steel

机译:API X65钢的激光束和气体弧焊的氢气诱导破裂

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Hydrogen-induced cracking (HIC) behavior was analyzed for gas metal arc (GMA) and laser beam (LB) welds on American Petroleum Institute (API) X65 steel. The GMA welds consisted of acicular ferrite (AF) with some widmanstatten ferrite (WF), while the LB welds had bainitic ferrite (BF) with some AF. The welds and heat affected zone (HAZ) of GMA exhibited a hardness of 220-250 HV, while those of the LB had a hardness of 230-290 HV. The LB welds and HAZ exceeded the hardness limit of 250 HV for pipeline steel, defined by the National Association of Corrosion Engineers (NACE) standard. Slow strain rate tests (SSRT) were performed in air and in-situ with hydrogen to observe HIC behavior. The ultimate tensile strength of the GMA welds decreased by 13%, while that of the LB welds decreased by 16% after hydrogen charging. Both welds showed a dimple fracture in the center and quasi-cleavage fracture along the edges. When austenite transforms to BF, it is known to grow along the directions of twins or the Kurdjumov-Sachs relation. These directions are strongly related to the coincidence site lattice, specifically S3 and 213b, and have good crack resistance. Because of this grain boundary characteristic, the LB welds with a BF microstructure showed good HIC behavior compared to the GMA welds.
机译:在美国石油研究所(API)X65钢上的气体金属弧(GMA)和激光束(LB)焊缝分析了氢诱导的裂化(HIC)行为。 GMA焊缝由针状铁氧体(AF)组成,具有一些Widmanstatten铁氧体(WF),而LB焊缝具有贝氏体铁氧体(BF),有一些AF。 GMA的焊接和热影响区(HAZ)表现出220-250HV的硬度,而LB的硬度为230-290 HV。 LB焊缝和HAZ超过了管道钢250 HV的硬度限制,由国家腐蚀工程师(NACE)标准协会定义。在空气中进行慢应变速率测试(SSRT),用氢气进行氢以观察HIC行为。 GMA焊缝的最终拉伸强度降低了13%,而氢气充电后LB焊缝的焊缝的焊缝的焊缝的抗拉性抗拉强度降低了16%。两种焊缝在中心和沿边缘沿着准切割骨折显示凹痕骨折。当奥氏体转化为BF时,已知沿着双胞胎的方向或库尔德·朱诺夫 - 萨克斯关系增长。这些方向与符合条件格,特别是S3和213B强烈相关,并且具有良好的抗裂性。由于这种晶粒边界特性,与GMA焊接相比,具有BF微结构的LB焊缝显示出良好的HIC行为。

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