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CRITICAL HARDNESS FOR HSC IN DEPOSIT WELDING ON STEEL LINE PIPES UNDER CATHODIC PROTECTION

机译:阴极保护下钢管管道焊接焊接焊接焊接的关键硬度

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Repairing corrosion-damaged areas of operational steel line pipes by deposit welding performed without stopping the gas flowing inside is a common practice. However, this repair method tends to considerably increase the hardness of the weld metal and the HAZ, and it poses the risk of HSC under cathodic protection. In this study, the HSC susceptibility of the welding area was examined using welded full-scale C-ring specimens. The specimens were prepared from X42, X60, and X65 steel line pipes, whose outer diameter and longitudinal length were 610mm and 100 to 110mm, respectively, and whose nominal thickness was 10.3 to 15.1mm. Deposit welding was applied to the middle of each specimen's outer surface, and then a bolt through the specimen was tightened until the welded part was subjected to yield stress. The welded surface of the welding and its surrounding area were exposed to a test solution whose pH was adjusted to 7, and a cathodic current of 20mA/cm{sup}2 or 4mA/cm{sup}2 was applied for 500hours. Cracks appeared in the weld metals on the C-ring specimens to which a cathodic current of 20mA/cm{sup}2 had been applied. However, the propagation of the cracks ceased at the boundaries between the weld metal and the HAZ, and no cracks initiated in the HAZ. The maximum hardness of the HAZ was about 300 to 400Hv. These levels of hardness are far greater than 260Hv, which is the value obtained from experiments carried out using slow strain rate testing and is widely used in Japan as a criterion of hardness for avoiding HSC in the HAZ.
机译:通过沉积焊接修复运行钢管管道的腐蚀损坏区域,而不会停止流动内部的气体是一种常见的做法。然而,这种修复方法倾向于显着增加焊接金属和危险的硬度,并且在阴极保护下构成了HSC的风险。在该研究中,使用焊接全尺寸C形环样品检查焊接区域的HSC敏感性。试样由X42,X60和X65钢管管制备,其外径和纵向长度分别为610mm和100至110mm,其标称厚度为10.3至15.1mm。将沉积焊接施加到每个样本的外表面的中间,然后拧紧通过样品的螺栓,直至焊接部分进行屈服应力。将焊接的焊接表面及其周围区域暴露于其pH调节至7的测试溶液,并且施加500hours的20mA / cm {sup} 2或4mA / cm {sup} 2的阴极电流。裂缝出现在C形环样品上的焊接金属上,其中应用了20mA / cm {sup} 2的阴极电流。然而,裂缝的传播停止在焊接金属和HAZ之间的边界处,并且在HAZ中没有裂缝。 HAZ的最大硬度约为300至400hv。这些硬度水平远远大于260hv,这是从使用慢菌速率测试进行的实验获得的值,并广泛用于日本作为硬度避免HSC的硬度的标准。

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