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An investigation of the embrittlement in X20CrMoV12.1 power plant steel after long-term service exposure at elevated temperature

机译:X20CrMoV12.1电厂钢在高温下长期暴露后的脆化研究

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X20CrMoV12.1 alloy steel used as main steam pipes in power plants exhibits embrittlement at room temperature after long-term service exposure at 550 deg the embrittlement can be partly removed by retempering. Microstructural observation shows that the carbides in the exposed pipe coarsened heavily with enriching alloying elements of Cr and Mo from the matrix during long-term service exposure, so the coarsened carbides reduce both precipitation and solid solution strengthening mechanisms. The degradation of the material is mainly related to carbide coarsening. AES investigations show that the embrittlement is mostly due to the segregation of phosphorus to the prior austenite grain boundaries, and plenty of coarsened carbides residing on the grain boundaries result in this embrittlement tendency as well.
机译:X20CrMoV12.1合金钢被用作发电厂的主要蒸汽管道,在550°C下长期使用后,在室温下会表现出脆性,可以通过回火部分去除脆性。显微组织观察表明,在长期服役期间,裸露管中的碳化物通过从基体富集的Cr和Mo合金元素大量粗化,因此粗化的碳化物既减少了析出,也减少了固溶强化机制。材料的降解主要与碳化物粗化有关。 AES研究表明,脆化主要是由于磷偏析到先前的奥氏体晶界,并且大量留在晶界的粗大碳化物也导致了这种脆化趋势。

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