• Title/Summary/Keyword: 산화 거동

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Effect of Water Content on the Transport of Gemini Surfactant and Hydrophobic Organic Compounds (수분함량이 쌍둥이형 계면활성제 및 소수성 유기오염물질의 거동에 미치는 영향에 관한 연구)

  • Park, In-Sun;Park, Jae-Woo;Cho, Jong-Soo;Hwang, In-Seong
    • Journal of the Korean GEO-environmental Society
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    • v.4 no.2
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    • pp.39-46
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    • 2003
  • An immobilization zone can be constructed by modifying soils in the vadose zone with surfactants, which can be used to promote retardation of organic contaminants in the subsurface. Column experiments were conducted to investigate the behavior of surfactants and organic contaminants in unsaturated and saturated conditions with different water contents (25%, 50%, 75%, 100%). Transport and sorption of surfactant (dialkylated disulfonated diphenyl oxide) in the columns containing aluminum oxide was similar under the conditions at different water contents. However, transport of a model organic compound (naphthalene) was retarded as the water content decreased by enhanced partitioning of the compound into the surfactants that were sorbed on the aluminum oxide. This suggests that the immobilization method could well be applied to vadose zone as well as to saturated zone.

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The Effects of AI-Alloying Elements on the Melt Oxidation - III. Oxidation Behavior of Pentad Alloy- (AI 합금의 원소가 용융산화에 미치는 영향 -lll. 오원계 합금의 산화거동-)

  • Ha, Yong-Soo;Kim, Chul-Soo;Kang, Chung-Yun;Kim, Il-Soo;Cho, Chang-Hyun
    • Korean Journal of Materials Research
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    • v.8 no.8
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    • pp.672-677
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    • 1998
  • The following work examines the growth rate and microstructure of the $AI_2O_3$-composite formation by melt oxdation of pentad AI-alloys. The I weight % of each metal elements Cu and Ni were added to AI-IMg-3Si-3Zn and AI-IMg- 3Si-5Zn alloys. The diffenent pentad AI-alloys were oxidized 20 hours long at 1373K and 1473K. The oxidation rates were determined by observing the weight gain. The macro- and microstructure of formed oxide layer were examined by optical microscopy. The AI-IMg-3Si-5Zn-lCu alloy revealed the best oxidation behavior, but formedoxide layer was inhomogeneous.The oxidation rate were accelerated, and the uniform growth of the oxide layer with fine microstructure were obtained by putting a thin layer of $SiO_2$ on the surface of the alloy.

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Effect of Oxide Film Formation on the Fatigue Behavior of Aluminum Alloy (알루미늄합금 재료의 산화막 형성이 피로거동에 미치는 영향)

  • Kim, Jong-Cheon;Cheong, Seong-Kyun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.36 no.4
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    • pp.421-428
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    • 2012
  • In this study, the effects of surface oxide film formation on the fatigue behavior of 7075-T6 aluminum alloy were analyzed in terms of the corrosion time of the alloy. The aluminum material used is known to have high corrosion resistance due to the passivation phenomenon that prevents corrosion. Aluminum alloys have been widely used in various industrial applications such as aircraft component manufacturing because of their lighter weight and higher strength than other materials. Therefore, studies on the fatigue behavior of materials and passivation properties that prevent corrosion are required. The fatigue behavior in terms of the corrosion time was analyzed by using a four-pointing bending machine, and the surface corrosion level of the aluminum material in terms of the corrosion time was estimated by measuring the surface roughness. In addition, fractographic analysis was performed and the oxide films formed on the material surface were studied by scanning electron microscopy (SEM). The results indicated that corrosion actively progressed for four weeks during the initial corrosion phase, the fatigue life significantly decreased, and the surface roughness increased. However, after four weeks, the corrosion reaction tended to slow down due to the passivation phenomenon of the material. Therefore, on the basis of SEM analysis results, it was concluded that the growth of the surface oxide film was reduced after four weeks and then the oxide film on the material surface served as a protection layer and prevented further corrosion.

Oxidation Behavior at the Interface between E-beam Coated $ZrO_{2}$-7wt.%$Y_{2}O}_{3}$and Plasma Sprayed CoNiCrAlY (전자빔 코팅 및 플라즈마 용사에 의한 안정화지르코니아/CoNiCrAlY 계면의 산화거동)

  • Choi, Won-Seop;Kim, Young-Do;Jeon, Hyeong-Tag;Kim, Hyon-Tae;Yoon, Kook-Han;Hong, Kyung-Tae;Park, Jong-Ku;Park, Won-Sik
    • Korean Journal of Materials Research
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    • v.8 no.6
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    • pp.538-544
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    • 1998
  • The spallation of a thermal barrier coating layer depends on the formation of brittle spinels. thermal expansion mismatch between ceramic and metal. the phase transformation of a ceramic layer and residual stress of coating layer. In this work. the formation mechanism of oxide scale formed by oxidation treatment at 90$0^{\circ}C$ was investigated in order to verify oxidation behavior at the interface between E-beam coated $Zr0_2$-7wt.% $Y_20_3$ and plasma sprayed CoNiCrAIY. Some elements distributed in the bond coating layer were selectively oxidized after oxidation. At the initial time of oxidation. AI-depletion zone and $\alpha$-$Al_O_3$,O, were formed at the bond coating layer by the AI-outward diffusion. After layer grew until critical thickness. spinels. $Cr_20$, and $C0_2CrO_4$ by outward diffusion of Co. Cr, Ni were formed. It was found that the formation of spinels may be related to the spallation of $Zr0_2$-7wt.% $Y_20_3$ during isothermal oxidation.

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모의 금속전환체 U-1wt%Nb 합금의 공기중 산화거동

  • 이은표;주준식;유길성;조일제;국동학;김호동
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2004.06a
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    • pp.355-355
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    • 2004
  • 사용후핵연료 금속전환체는 세라믹형 사용후핵연료를 리튬용융염으로 금속전환하여 생성한 우라늄금속으로 상온에서도 표면산화가 진행될 정도로 매우 불안정한 상태이다. 이에 대한 저장 안정성 향상방안을 도출하기 위해 금속전환체의 주성분인 금속우라늄과 산화 안정화물질인 Nb을 첨가한 모의 금속전환체 합금을 제작하여 $200^{\circ}C~300^{\circ}C$ 온도구간에서 열중량분석기(TGA)를 이용해 순수 산소분위기로 산화시험을 수행하였다.(중략)

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Growth mechanism of oxide barriers on plasma and ion-beam treated polymer substrates

  • Yun, Jeong-Heum;Lee, Seong-Hun;Jeong, Yu-Jeong;Lee, Geon-Hwan
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.10a
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    • pp.126-126
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    • 2009
  • 알루미나와 실리카로 대표되는 투명 산화물 박막은 폴리머 기판상의 투습 방지막으로 응용되고 있으며, 플라즈마와 이온빔을 이용한 폴리머 기판 전처리를 통해 산화물 박막의 투습 특성을 향상시켰다. 기상 증착된 산화물 박막의 성장 거동에 대한 전처리 후 폴리머 기판의 wettability와 morphology의 효과를 확인하였으며, 그 폴리머 기판상에 증착되는 산화물 박막의 성장 메카니즘을 제안하였다.

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Effect of second-phase particles on the formation of anodic oxide films on AC2A alloy (AC2A 합금의 양극 산화 피막 형성에 미치는 석출물의 영향)

  • Nam, Yun-Gyeong;Mun, Seong-Mo;Kim, Jong-Hwa
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.10a
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    • pp.205-206
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    • 2009
  • 다량의 석출물을 포함하고 있는 AC2A 합금을 $0^{\circ}C$에서 2.25M H2SO4에서 양극산화처리를 행하여 피막형성 거동을 관찰하였다. 주조용 알루미늄 합금은 다량의 석출물을 포함하고 있고 석출물들은 산화피막의 형성에 영향을 미치게 된다. 본 연구에서는 주조용 AC2A합금의 양극 산화 피막의 형성에 미치는 석출물들의 영향을 OM, SEM, LSCM을 사용하여 정밀하게 관찰해 보았다.

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Study on the oxidation behavior of Poly $Si_{1-x}Ge_x$ films (Poly $Si_{1-x}Ge_x$ 박막의 산화 거동 연구)

  • 강성관;고대홍;오상호;박찬경;이기철;양두영;안태항;주문식
    • Journal of the Korean Vacuum Society
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    • v.9 no.4
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    • pp.346-352
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    • 2000
  • We investigated the oxidation behavior of poly $Si_{1-x}Ge_x$ films (X=0.15, 0.42) at $700^{\circ}C$ in wet oxidation ambients and analyzed the oxide by XPS, RBS, and cross-sectional TEM. In the case of poly $Si_{0.85}Ge_{0.15}$ films, $SiO_2$ was formed on the poly $Si_{1-x}Ge_x$ films and Ge was rejected from growing oxide, subsequently leading to the increase of Ge content. In the case of poly $Si_{0.58}Ge_{0.42}$ films, we found that $SiO_2-GeO_2$ were formed on the poly $Si_{1-x}Ge_x$ films due to high Ge content. Finally, we proposed the oxidation model of poly $Si_{1-x}Ge_x$ films.

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Monitoring Oxidation Behavior of [C70]Fullerene by Ultrasonic Spectroscopy ([C70]풀러렌 산화 반응의 거동에 관한 초음파 분광학적 고찰)

  • Ko, Weon Bae
    • Elastomers and Composites
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    • v.49 no.2
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    • pp.155-159
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    • 2014
  • High resolution ultrasonic spectroscopy was used to observe the oxidation of [$C_{70}$]fullerene with 3-chloroperoxy benzoic acid in 1,2-dichlorobenzene. UV-vis spectroscopy and X-ray diffraction confirmed the resulting roducts of [$C_{70}$]fullerene oxidation.