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Fatigue Crack Propagation in SAW Seam Welds of API 5L X42 Steel Pipe in the Radial Short Direction

机译:API 5L X42钢管的SAW焊缝在径向短方向上的疲劳裂纹扩展

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Fatigue crack propagation (FCP) rates in submerged arc welding (SAW) seam welds of 1524 steel (API 5L X42) pipe were measured by using an arc-shaped bend specimen with the same radius of curvature of the body of the pipe so the material did not have to be cold worked to get a flat shape nor extensively machined. The test direction was girth radial and the stress intensity factor (K) function was calibrated for this type of nonstandard specimen. The FCP tests were carried out in air at room temperature, testing the three zones: The base metal, the deposited metal, and the heat affected zone (HAZ). A fractographic analysis was done to analyze the role of the microstructure in the FCP in the three zones. It was found that the zone of greater resistance to FCP was the base metal, whereas the deposited metal showed the least resistance to crack propagation. FCP in the deposited metal and the HAZ behaved according to the Paris law, unlike the base metal, which showed a high data dispersion. The behavior in the base metal was attributed to the propagation of the crack in the transverse direction of the preferential alignment of the microstructure, while the deposited metal and the HAZ had a more homogeneous microstructure.
机译:1524钢(API 5L X42)埋弧焊(SAW)缝焊中的疲劳裂纹扩展(FCP)速率是通过使用与管体曲率半径相同的弧形弯曲试样测量的,因此材料不必进行冷加工即可获得扁平形状,也无需进行广泛的加工。测试方向为周向径向,并针对此类非标准样品校准了应力强度因子(K)函数。 FCP测试在室温下的空气中进行,测试了三个区域:贱金属,沉积金属和热影响区(HAZ)。进行了分形分析以分析三个区域中FCP的微观结构的作用。已发现,对FCP的抵抗力较大的区域是贱金属,而沉积的金属对裂纹扩展的抵抗力最小。与贱金属不同,熔敷金属和HAZ中的FCP行为符合巴黎法,表现出很高的数据分散性。贱金属中的行为归因于裂纹在微观结构优先排列的横向方向上的扩展,而沉积的金属和HAZ具有更均匀的微观结构。

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