2016
DOI: 10.3365/kjmm.2016.54.7.475
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Microstructural Evolution of Compound Layers During Gaseous Nitriding of AISI1045 Carbon Steels

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Cited by 4 publications
(3 citation statements)
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“…As shown in Table 1, the raw material used in this study is extremely low-carbon steel with a C content of 0.0018 wt.%. Therefore, the surface hardened layer formed by gas nitrocarburizing of the specimens used in this study is similar to that of other studies, in that a surface hardened layer is composed of a porous ε-phase, massive ε-phase, and γ'-phase processed by gas nitrocarburizing low-carbon steels [3,11]. Based on the SEM image shown in Figure 2, the EPMA and EBSD study were performed from a microstructural view point including phase and metallic element distribution.…”
Section: Microstructure and Phase Analysissupporting
confidence: 74%
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“…As shown in Table 1, the raw material used in this study is extremely low-carbon steel with a C content of 0.0018 wt.%. Therefore, the surface hardened layer formed by gas nitrocarburizing of the specimens used in this study is similar to that of other studies, in that a surface hardened layer is composed of a porous ε-phase, massive ε-phase, and γ'-phase processed by gas nitrocarburizing low-carbon steels [3,11]. Based on the SEM image shown in Figure 2, the EPMA and EBSD study were performed from a microstructural view point including phase and metallic element distribution.…”
Section: Microstructure and Phase Analysissupporting
confidence: 74%
“…Over the last few decades, the importance of surface heat treatment has increased owing to the easily improved physical and chemical properties at a low cost. In particular, nitriding and carburizing, which are typical chemical heat treatment techniques for surface heat treatment, have been applied widely to component parts for transportation machines, which require high wear resistance [1][2][3].…”
Section: Introductionmentioning
confidence: 99%
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