Plasma immersion N and N+C implantation into high-speed tool steel: surface morphology, phase composition and mechanical properties
The effect of plasma immersion N and N+C implantation at elevated temperatures (380°C and 500°C) on microstructure, element and phase composition, microhardness and tribological properties of high-speed tool steel (HSS) has been studied. It has been established that under plasma immersion ion implan...
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Published in | Surface & coatings technology Vol. 142; pp. 406 - 411 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.07.2001
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Abstract | The effect of plasma immersion N and N+C implantation at elevated temperatures (380°C and 500°C) on microstructure, element and phase composition, microhardness and tribological properties of high-speed tool steel (HSS) has been studied. It has been established that under plasma immersion ion implantation (PIII) of nitrogen (8×10
18 ions/cm
2, 380°C) the microhardness of steel surface layers increases by a factor of 2.5 and the friction coefficient decreases by a factor of 2. By methods of Auger electron spectrometry (AES), energy dispersive X-ray analysis (EDX), glancing X-ray diffraction (GXRD) and scanning electron microscopy (SEM) it is shown that transformations of near-surface layers are associated with: the formation of strained ε-(Fe,M)
2+
x
N; nitrogen doping of M
6C carbide; the formation highly defective regions (channels and/or pores) predominantly localized near carbide precipitates in near-surface layers (up to 10 μm); the considerable increase of concentration of tiny (up to 0.2 μm) carbide phases doped with nitrogen; the formation of less modified deep layers in the case of N+C as compared to N PIII; the significant selective sputtering of martensite at 500°C. |
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AbstractList | The effect of plasma immersion N and N+C implantation at elevated temperatures (380°C and 500°C) on microstructure, element and phase composition, microhardness and tribological properties of high-speed tool steel (HSS) has been studied. It has been established that under plasma immersion ion implantation (PIII) of nitrogen (8×10
18 ions/cm
2, 380°C) the microhardness of steel surface layers increases by a factor of 2.5 and the friction coefficient decreases by a factor of 2. By methods of Auger electron spectrometry (AES), energy dispersive X-ray analysis (EDX), glancing X-ray diffraction (GXRD) and scanning electron microscopy (SEM) it is shown that transformations of near-surface layers are associated with: the formation of strained ε-(Fe,M)
2+
x
N; nitrogen doping of M
6C carbide; the formation highly defective regions (channels and/or pores) predominantly localized near carbide precipitates in near-surface layers (up to 10 μm); the considerable increase of concentration of tiny (up to 0.2 μm) carbide phases doped with nitrogen; the formation of less modified deep layers in the case of N+C as compared to N PIII; the significant selective sputtering of martensite at 500°C. |
Author | Kuleshov, A.K Anishchik, V.M Fedotova, J.A Richter, E Kvasov, N.T Danilyuk, A.L Uglov, V.V Guenzel, R Reuther, H |
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CitedBy_id | crossref_primary_10_4028_www_scientific_net_AMR_154_155_1393 crossref_primary_10_1016_j_nimb_2005_08_041 crossref_primary_10_1016_j_surfcoat_2003_10_012 crossref_primary_10_1016_j_jmatprotec_2007_02_014 crossref_primary_10_1016_j_surfcoat_2015_12_025 |
Cites_doi | 10.1016/0257-8972(92)90287-K 10.1016/S0257-8972(94)80023-5 10.1016/S0257-8972(98)00383-1 10.1016/S0168-583X(98)00746-0 10.1116/1.590665 10.1016/S0257-8972(97)00048-0 10.1016/S0257-8972(98)00413-7 |
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Keywords | High-speed steel Mechanical properties Phase composition Microstructure Plasma immersion ion implantation |
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SubjectTerms | High-speed steel Mechanical properties Microstructure Phase composition Plasma immersion ion implantation |
Title | Plasma immersion N and N+C implantation into high-speed tool steel: surface morphology, phase composition and mechanical properties |
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