材料科学
蠕动
软化
焊接
穿晶断裂
冶金
断裂(地质)
聚结(物理)
微观结构
复合材料
板条
马氏体
晶间断裂
晶界
物理
天体生物学
作者
Jiankun Xiong,Jianping Yang,Haiyan Zhao,Lin Yang,Yang Guo,Fuheng Nie,Dexing Xu,Li‐Ping Yu,Cao Fenghong
摘要
Creep rupture behavior of dissimilar weldments between FB2 and 30Cr1Mo1V heat-resistant steel by multipass welding at 783 K (510°C) under different stresses (260 to 420 MPa) was researched. The fitted creep rupture exponent is 14.53, and the 10,000 h extrapolating strength values predicted by the power law and Larson-Miller parameter show good agreement with experimental data. The samples exhibit a ductile fracture character and fracture in the weld fusion zone, which has a highly heterogeneous microstructure and grains with different morphologies and sizes and an obvious softening. There exist a decrease in the dislocation and precipitate density and an increase in the subgrain size in the weld metal after creep. The rupture is a transgranular fracture characterized by dimples as a result of microvoid coalescence. Laves phases along with copper-rich precipitates are observed in the vicinity of fracture surface, which creates a stress concentration that can cause transgranular fracture initiation.
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