Mass spectrometry study of ammonia formed during plasma nitrocarburizing and nitriding processes

被引:3
|
作者
Egert P. [1 ]
Turatti Silva H.R. [1 ]
Speller C.V. [2 ]
de Amorim J. [3 ]
Seeber A. [4 ]
机构
[1] Unidade Acadêmica das Ciências da Produção, Construção e Agronegócio, Universidade do Sul de Santa Catarina, SC, Palhoça
[2] Departamento de Engenharia Mecânica, Laboratório de Materiais - LABMAT, Universidade Federal de Santa Catarina, SC, Florianópolis
[3] Departamento de Física, Instituto Tecnológico de Aeronáutica-ITA, SP, São José dos Campos
[4] Engenharia de Energias Renováveis e Meio Ambiente, Universidade Federal do Pampa, RS, Bagé
关键词
Ammonia synthesis; Glow discharge; Mass spectrometry; Nitriding; Nitrocarburizing; Plasma;
D O I
10.1590/1980-5373-MR-2018-0133
中图分类号
学科分类号
摘要
In this work, we used mass spectrometry to investigate ammonia (NH3) formed during the nitrocarburizing and nitriding processes of α-Fe sintered and low alloy steel by using d.c. glow discharges in different N2/H2/CH4 gas concentration mixtures. Experiments were conducted using two different configurations: one to collect and analyze species probed primarily in the bulk of the plasma, at a position distant from the heated sample; and the other to collect and analyze species very close to the reactive surface of the heated sample in such a way as to allow the analysis of lower concentration or residence time species, formed at the plasma/sample surface interface. Use of these configurations contributed to the investigation of the physical chemistry involved in the above plasma processes. An exchange the expected stoichiometry in ammonia formation in N2/H2/CH4 mixtures, with a shift towards higher nitrogen consumption, is observed and is interpreted an indication of nitrogen removal from the surface associated with ammonia and carbonitrides/nitrides formation. The present results point to the existence of a correlation between the nitrocarburizing and nitriding processes with respect to the formation of non-stoichiometric ammonia as a product. © 2018 Universidade Federal de Sao Carlos. All rights reserved.
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