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Tensile properties and fracture toughness of 18Ni (250 grade) maraging steel weldments

机译:18Ni(250级)马氏体时效钢焊件的拉伸性能和断裂韧性

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Gas tungsten arc welding was performed on l8Ni (250 grade) maraging steel sheet using two different filler wires: one of the same composition as the base material and the other containing more cobalt and aluminium and less molybdenum and titanium. Weld specimens were then aged under four different sets of conditions. After metallographic characterisation, mechanical properties including hardness, tensile strength and ductility, and fracture toughness were evaluated. Results showed that use of the matching filler material led to lower strength but higher ductility than in the other case; this was attributed to the presence of reverted austenite in the former (caused by segregation, especially of molybdenum) at the fusion zone substructure boundaries. In both types of weld metal, a re-solution treatment followed by aging at 480 deg C resulted in optimum tensile properties. Fracture toughness of the aged weldments was in general close to that of the parent material aged at 480 deg C; some deterioration occurred only when welds with pronounced segregation were made at high temperature.
机译:使用两种不同的填充金属丝在18Ni(250级)马氏体时效钢板上进行钨极电弧焊:一种与基材的成分相同,另一种包含更多的钴和铝,以及更少的钼和钛。然后,在四个不同的条件下对焊接试样进行时效处理。金相表征后,评估了包括硬度,拉伸强度和延展性以及断裂韧性在内的机械性能。结果表明,与其他情况相比,使用匹配的填料会导致强度降低,但延展性更高;这归因于前者在熔融区下部结构边界处存在奥氏体(由于偏析,尤其是钼引起的偏析)。在两种类型的焊缝金属中,进行固溶处理,然后在480℃进行时效处理,可获得最佳的拉伸性能。时效焊件的断裂韧性通常与在480℃时效时的母材的断裂韧性接近。仅当在高温下进行明显偏析的焊缝时,才会出现一些劣化。

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