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Creep properties in similar weld joint of a thick-walled P92 steel pipe

机译:厚壁P92钢管类似焊接接头的蠕变性能

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The creep behaviour of a welded joint of a real thick-walled P92 steel pipe was investigated at 600 and 650 degrees C and a stress ranging of 60-250 MPa using uniaxial tensile creep tests. Creep smooth cross-weld specimens were machined from different positions of the weld representing the welding sequence. Following analysis of creep data, all creep tests were performed in the region of power-law creep. The rate-controlling creep deformation mechanism is most probably climb of intergranular mobile dislocations for both the weld and base P92 steel. The creep resistance of the weld joint was lower than that of the base metal. No substantial differences were found in the minimum creep, the time to fracture and creep ductility for creep specimens taken from different locations of the weld. The fracture morphology of the crept welded specimens was found to be a mixture of transgranular ductile and intergranular mode. The fracture locations were found to shift from the weld metal in the higher stress region to the heat affected zone in the lower stress region. Many cavities formed at grain boundaries during creep. It was considered that the coarse precipitates of Laves phase acted as the preferential nucleation sites for cavities. (C) 2016 Elsevier Inc All rights reserved.
机译:使用单轴拉伸蠕变测试,研究了实厚P92钢管在600和650摄氏度,应力范围60-250 MPa时,焊接接头的蠕变行为。从代表焊接顺序的焊缝的不同位置加工出蠕变平滑的交叉焊接试样。在对蠕变数据进行分析之后,所有的蠕变测试均在幂律蠕变区域中进行。速率控制蠕变变形机制很可能是焊缝和基础P92钢的晶间移动位错的爬升。焊接接头的抗蠕变性低于母材。从焊缝的不同位置获取的蠕变样品的最小蠕变,断裂时间和蠕变延展性没有实质性差异。蠕变焊接试样的断裂形态被发现是跨晶延性和晶间模式的混合物。发现断裂位置从较高应力区的焊缝金属转移到较低应力区的热影响区。在蠕变过程中,在晶界处形成了许多空洞。据认为,拉夫斯相的粗大析出物是空穴的优先成核位点。 (C)2016 Elsevier Inc保留所有权利。

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