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Solid-phase mechanical alloying of BCC iron alloys by nitrogen in ball mills

机译:球磨机中氮气对BCC铁合金的固相机械合金化

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The methods of M?ssbauer spectroscopy and X-ray diffraction analysis have been used to study the processes of a solid-phase alloying of the iron alloys with a bcc lattice by nitrogen that occur upon ball-mill mechanical activation in the presence of chromium nitrides. It is shown that a deformation-induced dissolution of chromium nitrides in the matrix of pure iron and in that of the alloys Fe-3Al and Fe-6V results in the formation of the substitutional chromium and interstitial nitrogen bcc solid solutions. An additional alloying of iron with aluminum or vanadium under the deformation dissolution of nitrides leads to the escape of aluminum and vanadium from the matrix and to a decrease in the nitrogen content characteristic of the interstitial solid solution proper due to the strong chemical bonding of alloying elements with nitrogen. The subsequent annealing leads to the decomposition of already formed solid solutions with the formation of aluminum, vanadium, and chromium nitrides of extreme dispersion.
机译:Msssbauer光谱法和X射线衍射分析法已被用于研究在氮化铬存在下进行球磨机机械活化时,氮与bcc晶格形成的铁合金通过固相合金化的过程。 。结果表明,在纯铁基体中以及在Fe-3Al和Fe-6V合金中,变形引起的铬氮化物的溶解会导致置换铬和填隙氮bcc固溶体的形成。在氮化物的变形溶解下,铁与铝或钒的另外合金化会导致铝和钒从基体中逸出,并且由于合金元素之间的牢固化学键合,导致间隙固溶体中的氮含量特性降低用氮气。随后的退火导致已经形成的固溶体分解,并形成极度分散的铝,钒和铬氮化物。

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