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Discontinuous precipitation in a nickel-free high nitrogen austenitic stainless steel on solution nitriding

机译:Discontinuous precipitation in a nickel-free high nitrogen austenitic stainless steel on solution nitriding

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摘要

Chromium-rich nitride precipitates in production of nickel-free austenitic stainless steel plates via pressurised solution nitriding of Fe-22.7Cr-2.4Mo ferritic stainless steel at 1473 K (1200 degrees C) under a nitrogen gas atmosphere was investigated. The microstructure, chemical and phase composition, morphology and crystallographic orientation between the resulted austenite and precipitates were investigated using optical microscopy, X-ray Diffraction (XRD), Scanning and Transmission Electron Microscopy (TEM) and Electron Back Scatter Diffraction (EBSD). On prolonged nitriding, Chromium-rich nitride precipitates were formed firstly close to the surface and later throughout the sample with austenitic structure. Chromium-rich nitride precipitates with a rod or strip-like morphology was developed by a discontinuous cellular precipitation mechanism. STEM-EDS analysis demonstrated partitioning of metallic elements between austenite and nitrides, with chromium contents of about 80 wt. in the precipitates. XRD analysis indicated that the Chromium-rich nitride precipitates are hexagonal (Cr, Mo)(2) N. Based on the TEM studies, (Cr, Mo)(2) N precipitates presented a (1 1 1)//(0 0 2)((Cr, Mo)2N), 1 (1) over bar0//1 (1) over bar0((Cr, Mo)2N) orientation relationship with respect to the austenite matrix. EBSD studies revealed that the austenite in the regions that have transformed into austenite and (Cr, Mo)(2) N have no orientation relation to the untransformed austenite.

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