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Microstructural evolution of aged heat-resistant cast steel following strain controlled fatigue

机译:应变控制疲劳后时效耐热铸钢的组织演变

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摘要

The paper presents the results of research on the microstructure of high-chromium martensitic GX12CrMoVNbN9-1 (GP91) cast steel after the isothermal ageing process and fatigue process. The fatigue process was performed at room temperature and elevated temperature (600 ℃), with the value of total strain amplitude ε_(ac) amounting to 0.25% and 0.60%. Microstructural tests of GP91 cast steel were carried out by means of high-resolution transmission electron microscope. Quantitative study performed by means of TEM included the characteristics of changes in the dislocation substructure and morphology of M_(23)C_6 carbides. Performed research has shown that the microstructure of the examined cast steel after ageing is characterized by partly remaining lath microstructure with numerous precipitations of the MX and M_(23)C_6 type, as well as the Laves phase. It has been shown that the fatigue test at room temperature contributes to the process of dislocation strengthening of the examined cast steel. The increase of fatigue test temperature influences the degree of increase in the matrix softening. The degree of softening of the cast steel microstructure at elevated temperature depends also on the value of strain amplitude ε_(ac). The softening process of the examined cast steel was connected with the decrease of dislocation density and increase of subgrains.
机译:介绍了等温时效和疲劳后高铬马氏体GX12CrMoVNbN9-1(GP91)铸钢组织的研究结果。疲劳过程在室温和高温(600℃)下进行,总应变幅度ε_(ac)分别为0.25%和0.60%。 GP91铸钢的显微组织测试是通过高分辨率透射电子显微镜进行的。用TEM进行的定量研究包括M_(23)C_6碳化物的位错亚结构和形态变化的特征。进行的研究表明,时效后所检验的铸钢的显微组织的特征在于,板条的显微组织部分保留,并且具有MX和M_(23)C_6型以及Laves相的大量析出。已经表明,室温下的疲劳试验有助于所检查的铸钢的位错强化过程。疲劳试验温度的升高会影响基体软化的程度。铸钢组织在高温下的软化程度还取决于应变幅度ε_(ac)的值。所检查的铸钢的软化过程与位错密度的降低和亚晶粒的增加有关。

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