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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effects of microstructures on the creep-rupture properties and fracture mechanisms in austenitic heat-resistant steels
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Effects of microstructures on the creep-rupture properties and fracture mechanisms in austenitic heat-resistant steels

机译:显微组织对奥氏体耐热钢蠕变断裂性能和断裂机理的影响

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摘要

Both rupture life and creep ductility increase with increasing grain size in the SUS304 steel, in which a mixed mode of transgranular fracture and intergranular fracture occurs. This was correlated with the increased proportion of transgranular fracture with grain size. Rupture life increases and creep ductility decreases with grain size, especially in the range from 8.4 to 99 μm, in the 21Cr-4Ni-9Mn steel, in which only intergranular fracture occurs. The difference in the fracture mechanism led to the different grain size dependence of creep ductility between these steels. These experimental results were supported by the size distribution of creep cracks and the results of the fractal analysis of fracture surface profiles in both steels.
机译:在SUS304钢中,断裂寿命和蠕变延展性都随着晶粒尺寸的增加而增加,其中发生了跨晶断裂和晶间断裂的混合模式。这与晶状体骨折的比例随晶粒尺寸的增加而增加有关。在仅发生晶间断裂的21Cr-4Ni-9Mn钢中,随着晶粒尺寸的增加,断裂寿命增加,蠕变延展性降低,特别是在8.4至99μm的范围内。断裂机理的差异导致这些钢之间的蠕变延展性对晶粒尺寸的依赖性不同。这些实验结果得到两种钢的蠕变裂纹尺寸分布和断裂表面轮廓的分形分析结果的支持。

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