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METALLURGICAL DESIGN AND PERFORMANCE OF HFW LINEPIPE WITH A HIGH-QUALITY WELD SEAM SUITABLE FOR SOUR SERVICES

机译:HFW LINEPIPE的冶金设计和性能,适用于酸服务的高质量焊接缝

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To clarify the effects of inclusions on the sour resistance properties of X60- to X70-grade steel, their resistance to hydrogen-induced cracking (HIC) was numerically simulated. The steel was assumed to have a yield strength of 562 MPa and a tensile strength of 644 MPa for the simulation. To estimate the effect of nonmetallic inclusions, a virtual inclusion was situated at the center of a 10-mm-thick HIC test specimen. Tests were performed using NACE test solution A. The crack initiation criterion was determined as a function of the diffusible hydrogen concentration, the diameter of the inclusion, the edge radius of the inclusion, and the fracture toughness of the matrix after hydrogen absorption. The crack propagation was calculated as a function of the diffusion coefficient of hydrogen in the steel matrix and the gasification reaction ratio of hydrogen at the interface of the steel matrix and the inclusion. Based on the results of the numerical estimation, high-frequency electric resistance welded (HFW) Linepipe with a high-quality weld seam was developed. Controlling the morphology and distribution of oxides generated during the welding process by means of temperature and deformation distribution control is the key factor for improving resistance to HIC.
机译:为了阐明夹杂物对X60到X70级钢的耐酸性能的影响,数值模拟了它们对氢致开裂(HIC)的抗性。为了进行模拟,假定该钢的屈服强度为562 MPa,抗拉强度为644 MPa。为了评估非金属夹杂物的影响,将虚拟夹杂物放置在厚度为10毫米的HIC测试样品的中心。使用NACE测试溶液A进行测试。确定裂纹萌生标准为扩散氢浓度,夹杂物直径,夹杂物边缘半径和吸氢后基体的断裂韧性的函数。裂纹扩展是根据氢在钢基质中的扩散系数和氢在钢基质与夹杂物的界面处的气化反应比的函数来计算的。基于数值估计的结果,开发了具有高质量焊缝的高频电阻焊(HFW)管道。通过温度和变形分布控制来控制焊接过程中产生的氧化物的形态和分布是提高抗HIC性能的关键因素。

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