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Microstructural and fractographic investigation of a centrifugally cast 20Cr32Ni+Nb alloy tube in the ‘as cast’ and aged states

机译:在“铸态”和时效状态下离心铸造的20Cr32Ni + Nb合金管的显微组织和分形学研究

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Fracture surface and microstructure of tensile samples taken from a centrifugally cast 20Cr32Ni+Nb alloy tube were investigated in the ‘as cast’ state and after being submitted to isochronal aging at temperatures between 670°C and 820°C for 200h. The results show that the main crack path is interdendritic at a macroscopic scale, but that the fracture surface is characterized by dimples at microscale in all samples, suggesting that the fracture micromechanism does not change, in spite of the large ductility loss observed in the aged samples (fracture elongation,εˉf≈0.16,for samples aged at 770°C) compared with ‘as-cast’ samples (εˉf≈0.42).
机译:对从离心铸造的20Cr32Ni + Nb合金管中提取的拉伸试样的断裂表面和显微结构进行了“铸态”研究,并在670°C至820°C的温度下进行了等时时效200h。结果表明,主要裂纹路径在宏观尺度上是树突状的,但是在所有样品中,断裂表面的特征都是在微观尺度上的凹坑,这表明尽管在时效过程中观察到了较大的延展性损失,但断裂微观机制并未改变。与“铸态”样品(εˉf≈0.42)相比,样品(断裂伸长率,εˉf≈0.16,对于在770°C时效的样品)。

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