• 제목/요약/키워드: metallurgical technology

검색결과 690건 처리시간 0.024초

Localized Corrosion of Zn-Plated Carbon Steel Used as a Fire Sprinkler Pipe

  • Lee, Jin Hee;Lee, You-Kee;Lee, Kyu Hwan;Kim, Dong-Kyu;Lee, Sung Gun;Lee, Sang Hwa;Kim, Insoo
    • Corrosion Science and Technology
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    • 제8권4호
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    • pp.148-152
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    • 2009
  • The failure of a Zn-plated carbon steel pipe that served as a fire sprinkler was investigated in terms of the pipe's corrosion products. The pipes leaked through holes formed beneath the tubercles. The formation of oxygen concentration cell involves colonization of metal surface by aerobic bacteria or other slime formers, and anodic reaction beneath tubercle is accelerated by the presence of SRB, leading to the formation of hole beneath tubercle.

Carbon Nanotube Reinforced Metal Matrix Nanocomposites via Equal Channel Angular Pressing

  • Quang, Pham;Jeong, Young-Gi;Yoon, Seung-Chae;Hong, Sun-Ig;Hong, Soon-Hyung;Kim, Hyoung-Seop
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.980-981
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    • 2006
  • In this study, bottom-up type powder processing and top-down type SPD (severe plastic deformation) approaches were combined in order to achieve full density of Carbon nanotube (CNT)/metal matrix composites with superior mechanical properties by improved particle bonding and least grain growth, which were considered as a bottle neck of the bottom-up method using the conventional powder metallurgy of compaction and sintering. ECAP (equal channel angular pressing), the most promising method in SPD, was used for the CNT/Cu powder consolidation. The powder ECAP processing with 1, 2, 4 and 8 route C passes was conducted at room temperature.

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Mg-Zn-(Mn)-Ca 합금의 미세조직 및 기계적성질 (Mechanical Properties and Microstructure of Mg-Zn-(Mn)-Ca Alloys)

  • 엄정필;차동득;임수근;허보영
    • 한국주조공학회지
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    • 제17권6호
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    • pp.592-597
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    • 1997
  • The microstructure and tensile properties of Mg-Zn-Ca and Mg-Zn-Mn-Ca alloys have been investigated. The alloys were obtained by melting in a low carbon crucible coated with boron nitride under an Ar gas atmosphere to prevent oxidation and combustion. The Mg alloy melt was cast into the metallic mold at room temperature, and cooling part was located at the bottom of mold. The phase formed during solidification of the Mg-Zn-(Mn) alloys containing 0.5%Ca is $Ca_2Mg_6Zn_3$. The yield strength and ultimate tensile strength of the alloys increased with increasing Zn content, but the ductility did not change with increasing Zn content. The addition of Mn improves the yield strength and ultimate tensile strength of the alloys, but the ductility did not change. Tensile fracture of the alloys revealed brittle failure, with cracking along the $Ca_2Mg_6Zn_3$ phase. The variation of stress with strain obeyed the relationship of the ${\sigma}=K{\varepsilon}^n$.

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직류전원부하에 의한 지르코니아와 금속의 접합 (A Study on the Metal to Zirconia Joining by Applying Direct Current)

  • 김성진;김문협;박성범;권원일
    • 한국전기화학회:학술대회논문집
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    • 한국전기화학회 2005년도 수소연료전지공동심포지움 2005논문집
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    • pp.383-390
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    • 2005
  • Effect of applying a DC voltage on the interfacial reaction at the metal to zirconia interface was investigated utilizing an oxygen ionic conductivity of partially stabilized zirconia. The joining of copper rod and zirconia tube was carried out in Ar gas atmosphere at $1000^{\circ}C$. There are two type of the joining. The one is the reaction bond consisting of copper and zirconia was dominated by surface reaction with a undetectable very thin layer. It was found that copper elements were diffused to zirconia side, but that Zr ions were not diffused to copper side. These results mean application of a DC voltage to migrate oxygen to the copper-zirconia interface can oxidize metal at the copper-zirconia interface and the bonding reaction between zirconia and copper oxide may occur. The other is the reaction bonding was dominated by interdiffusion with a very thick interface layer. This result mean application of a DC voltage can reduce zirconia at the interface. The bonding reaction is to be an alloying between Zr and Cu.

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구상흑연주철의 피절삭성과 내마모성에 미치는 Boron 첨가의 효과에 관한 연구 (A Study for the Effects of Boron Addition on Machinability and Wear Resistance of Ductile Cast Iron)

  • 최양진;이병엽;권혁무;백상한;박용진
    • 한국주조공학회지
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    • 제14권1호
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    • pp.75-81
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    • 1994
  • It is very important to obtain high performance ductile iron by addition a small amount of alloying elements. In this study, to improve the characteristics of small piston ring casted from ductile iron melt a small amount of boron($0{\sim}0.008wt.%$) that is powerful carbide stabilizer was added in ductile iron, and inspected it`s effects on the microstructure, wear resistance, machinability and mechanical properties. The results obtained from this study are as follows. 1. As the amount of boron increased to 0.04wt.%, the machinability of ductile iron is increased, and if the amount is in excess of 0.04wt.% the machinability is decreased conversely. 2. The wear resistance of ductile iron is improved by boron addition. 3. The recommended ladle addition of boron amount ranges from 0.04wt.% to 0.06wt.% for the use of small piston ring.

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테플론 코팅과 오일 담지를 이용한 알루미늄 양극산화피막의 응축 열전달 향상 (Enhancement of Condensation Heat Transfer of Anodized Aluminum by Teflon Coating and Oil-Impregnation)

  • 강민주;이종훈;차수진;신예지;김동현;김경자;이정훈
    • 한국표면공학회지
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    • 제54권2호
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    • pp.90-95
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    • 2021
  • Surface modification technique enabling the control of condensation provides various benefit in various engineering systems, such as heat transfer, desalination, power plants, and so on. In this study, lubricant oil-impregnation into Teflon-coated nanoporous anodic oxide layer of aluminum to enhance a de-wetting and mobility of water droplet on surface. Due to the surface treatment improving water-repellency, the condensation mode is changed to dropwise, thus the frequency of sliding condensed water droplet on surface is increased. For these reasons, the surface of oil-impregnated Teflon-coated nanoporous anodic aluminum oxide shows significantly enhanced condensation heat transfer compared to bare aluminum surface. In addition, the porosity of anodic aluminum oxide affected the mobility of water droplet even with oil-impregnation and Teflon-coating, indicating that the optimization of porous structure of anodic oxide is required for maximizing the condensation heat transfer.