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Improvement of resistance to hydrogen induced cracking in electric resistance welded pipes fabricated with slit coils

机译:缝隙线圈制造的电阻焊管对氢致开裂的抵抗力的提高

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The optimization of electric resistance welding (ERW) conditions was studied to improve the resistance to hydrogen induced cracking (HIC) at the bondline in small diameter API X60 ERW pipes fabricated with slit coils. The results show that HIC is initiated preferentially at the elongated Si, Mn and Al-rich oxide inclusions, normally known as a penetrator on the bondline. However, no evidence was found of any centerline segregation effect. The HIC ratio increases with the fraction of penetrators at the bondline, regardless of the degrees of center segregation. Furthermore, for a satisfactory level of HIC resistance, the fraction of penetrators must be less than 0.03 % and most of the penetrators should be circular-shaped. The design of experimental (DOE) method was used to determine the optimum ERW condition for minimization of the penetrator ratio. Finally, guideline is suggested for the optimum ERW condition for achieving excellent HIC resistance.
机译:研究了电阻焊接(ERW)条件的优化,以提高由狭缝线圈制成的小直径API X60 ERW管在粘结线上的氢致开裂(HIC)耐受性。结果表明,HIC优先在细长的富含Si,Mn和Al的氧化物夹杂物上引发,通常被称为粘结线上的渗透剂。但是,没有证据表明有任何中心线分离效应。无论中心偏析的程度如何,HIC比率都随着键合线处渗透剂分数的增加而增加。此外,为了使抗HIC性能达到令人满意的水平,渗透剂的比例必须小于0.03%,并且大多数渗透剂应为圆形。实验设计(DOE)方法用于确定最佳ERW条件,以使渗透率最小化。最后,建议了获得最佳抗HIC性能的最佳ERW条件的指南。

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