Ti-Al-N과 Ti-Al-Si-N 코팅막의 상 특성 및 내산화 거동

Ti-Al-N ($Ti_{75}$ $Al_{25}$ N) and Ti-Al-Si-N ($Ti_{69}$ $Al_{23}$ $Si_{8}$N) coatings synthesized by a DC magnetron sputtering technique were studied comparatively with respect to phase characterization and high-temperature oxidation behavior. $Ti_{69}$ $Al_{23}$ $Si_{ 8}$N coating had a nanocompo...

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Published in한국표면공학회지 Vol. 37; no. 3; pp. 152 - 157
Main Authors 김정욱, 전준하, 조건, 김광호, Kim, Jung-Wook, Jeon, Jun-Ha, Cho, Gun, Kim, Kwang-Ho
Format Journal Article
LanguageKorean
Published 한국표면공학회 2004
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ISSN1225-8024
2288-8403

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Abstract Ti-Al-N ($Ti_{75}$ $Al_{25}$ N) and Ti-Al-Si-N ($Ti_{69}$ $Al_{23}$ $Si_{8}$N) coatings synthesized by a DC magnetron sputtering technique were studied comparatively with respect to phase characterization and high-temperature oxidation behavior. $Ti_{69}$ $Al_{23}$ $Si_{ 8}$N coating had a nanocomposite microstructure consisting of nanosized(Ti,Al,Si)N crystallites and amorphous $Si_3$$N_4$, with smooth surface morphology. Ti-Al-N coating of which surface $Al_2$$O_3$ layer formed during oxidation suppressed further oxidation. It was sufficiently stable against oxidation up to about $700^{\circ}C$. Ti-Al-Si-N coating showed better oxidation resistance because both surface Ab03 and near-surface $SiO_2$ layers suppressed further oxidation. XRD, GDOES, XPS, and scratch tests were performed.
AbstractList Ti-Al-N (Ti75Al25N) and Ti-Al-Si-N (Ti69Al23Si8N) coatings synthesized by a DC magnetron sputtering technique were studied comparatively with respect to phase characterization and high-temperature oxidation behavior. Ti69Al23Si8N coating had a nanocomposite microstructure consisting of nanosized (Ti,Al,Si)N crystallites and amorphous Si3N4, with smooth surface morphology. Ti-Al-N coating of which surface Al2O3 layer formed during oxidation suppressed further oxidation. It was sufficiently stable against oxidation up to about 700oC. Ti-Al-Si-N coating showed better oxidation resistance because both surface Al2O3 and near-surface SiO2 layers suppressed further oxidation. XRD, GDOES, XPS, and scratch tests were performed. KCI Citation Count: 0
Ti-Al-N ($Ti_{75}$ $Al_{25}$ N) and Ti-Al-Si-N ($Ti_{69}$ $Al_{23}$ $Si_{8}$N) coatings synthesized by a DC magnetron sputtering technique were studied comparatively with respect to phase characterization and high-temperature oxidation behavior. $Ti_{69}$ $Al_{23}$ $Si_{ 8}$N coating had a nanocomposite microstructure consisting of nanosized(Ti,Al,Si)N crystallites and amorphous $Si_3$$N_4$, with smooth surface morphology. Ti-Al-N coating of which surface $Al_2$$O_3$ layer formed during oxidation suppressed further oxidation. It was sufficiently stable against oxidation up to about $700^{\circ}C$. Ti-Al-Si-N coating showed better oxidation resistance because both surface Ab03 and near-surface $SiO_2$ layers suppressed further oxidation. XRD, GDOES, XPS, and scratch tests were performed.
Author 전준하
김광호
Kim, Jung-Wook
Kim, Kwang-Ho
Jeon, Jun-Ha
김정욱
조건
Cho, Gun
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  fullname: Jeon, Jun-Ha
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Ti-Al-N (Ti75Al25N) and Ti-Al-Si-N (Ti69Al23Si8N) coatings synthesized by a DC magnetron sputtering technique were studied comparatively with respect to phase...
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Title Ti-Al-N과 Ti-Al-Si-N 코팅막의 상 특성 및 내산화 거동
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