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CTOD-R curves of the metal-clad interface of API X52 pipes cladded with an Inconel 625 alloy by welding overlay

机译:API X52管的金属包覆界面的CTOD-R曲线,覆盖有Inconel 625合金,通过堆焊

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摘要

Crack-tip opening displacement resistance curves (CTOD-R) of the substrate/cladding interface of an API 5 L XS2 steel pipe internally coated with Inconel 625 applied by TIG (GTAW) welding were experimentally evaluated. A small pipe section with 168 mm of outer diameter and 22.5 mm of thickness was internally coated with a 15 mm thick layer of Inconel 625 corrosion resistant alloy. Tension test specimens were obtained from both substrate and cladding, as well as compact tension test specimens (C(T)) for the evaluation of CTOD-R curves. The fracture testing specimens were notched at the interface in RL orientation. In addition to fracture and tensile testing, microstructural characterization was conducted at the interface using optical microscopy (OM) and scanning electron microscopy (SEM). Qualitative chemical composition scanning and microhardness determination were also performed. The results indicated high fracture toughness for the substrate/cladding interface and the absence of low toughness regions at the interface of the tested samples.
机译:通过TIG(GTAW)焊接实验评估了内部涂有Inconel 625的API 5 L XS2钢管的基体/覆层界面的裂纹尖端开口位移阻力曲线(CTOD-R)。在一个外径为168 mm,厚度为22.5 mm的小管段上,内部涂覆了15 mm厚的Inconel 625耐腐蚀合金。从基材和覆层中都获得了拉伸测试样品,以及用于评估CTOD-R曲线的紧凑拉伸测试样品(C(T))。将断裂测试样品在RL方向的界面处开槽。除了断裂和拉伸测试,还使用光学显微镜(OM)和扫描电子显微镜(SEM)在界面处进行了微结构表征。还进行了定性化学成分扫描和显微硬度测定。结果表明基材/覆层界面的断裂韧性高,并且在测试样品的界面处没有低韧性区域。

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