• 제목/요약/키워드: Corrosion mechanism

검색결과 397건 처리시간 0.029초

석탄화력발전소 보일러의 수냉벽튜브 부식 메카니즘에 대한 실증적 고찰 (Empirical Study on water wall tube corrosion mechanism for Tangential type coal fired power plant boiler)

  • 백세현;김현희;박호영;고성호
    • 에너지공학
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    • 제23권4호
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    • pp.49-55
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    • 2014
  • 석탄화력 발전소 보일러의 부식 메카니즘에 대한 실증적 고찰을 위하여 500MW 표준화력 발전소 보일러에 대한 보일러 튜브의 두께측정 및 수치해석을 병행하여 분석을 시행하였다. 그 결과 접선연소방식의 보일러 수냉벽 튜브의 부식에 가장 핵심적인 영향을 미치는 메카니즘은 퇴적된 미연탄소분에 포함된 유황분에 의한 부식이었으며, 두 번째 요소는 보일러 내부에서 국부적인 환원성 분위기가 생성되는 위치에서의 $H_2S$ 가스에 의한 부식으로 나타났다. 이와 같은 수냉벽튜브 부식을 완화시키기 위해서는 보일러의 다단연소 운전을 감소시키는 것이 필요하며, 미연분 감소를 위한 엄격한 미분도 관리 및 부식 취약부위에 대한 내부식 코팅보강 작업이 필요하다.

ρ-알루미나결합 알루미나 캐스터블의 용융슬래그에 의한 침식기구 (Kinetics and Mechanism of Corrosion of ρ-alumina Bonded Alumina Castable by Molten Slag)

  • 천승호;전병세
    • 한국세라믹학회지
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    • 제40권10호
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    • pp.1015-1020
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    • 2003
  • $\rho$-알루미나 결합 진동성형용 알루미나 캐스터블 내화물의 매트릭스부분과 용응 슬래그와의 침식거동을 젭센(Jabsen)이 주장한 이론을 기초로 하고 킹거리(Kingery)가 제안한 반응 기구를 통해 규명하였다. 매트릭스 부분의 초기침식이 분자확산거동에 의하여 지배되며, 아레니우스 관계식과 잘 일치하고 있어 온도의존성 활성화 과정으로 받아들 수 있다. 슬래그와 경계층의 Ca 농도차이가 23.2%로서 경계층을 형성하기 위한 물질이동의 구동력이 되었다. 매트릭스의 침식정도가 뮬라이트 소결체보다 심하지만 킹거리의 침식반응 기구와 잘 일치하고 있어 캐스터블의 수명예측이 가능하다.

Corrosion Mechanism and Bond-Strength Study on Galvanized Steel in Concrete Environment

  • Kouril, M.;Pokorny, P.;Stoulil, J.
    • Corrosion Science and Technology
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    • 제16권2호
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    • pp.69-75
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    • 2017
  • Zinc coating on carbon steels give the higher corrosion resistance in chloride containing environments and in carbonated concrete. However, hydrogen evolution accompanies the corrosion of zinc in the initial activity in fresh concrete, which can lead to the formation of a porous structure at the reinforcement -concrete interface, which can potentially reduce the bond-strength of the reinforcement with concrete. The present study examines the mechanism of the corrosion of hot-dip galvanized steel in detail, as in the model pore solutions and real concrete. Calcium ion plays an important role in the corrosion mechanism, as it prevents the formation of passive layers on zinc at an elevated alkalinity. The corrosion rate of galvanized steel decreases in accordance with the exposure time; however, the reason for this is not the zinc transition into passivity, but the consumption of the less corrosion-resistant phases of hot-dip galvanizing in the concrete environment. The results on the electrochemical tests have been confirmed by the bond-strength test for the reinforcement of concrete and by evaluating the porosity of the cement adjacent to the reinforcement.

합금도금강판의 수적에 의한 표면층의 부식기구에 관한 연구 (A Study on the Corrosion Mechanism by the Moisture on the Surface Layer of the Alloys Coated Steel Sheet)

  • 김영호;김순경;전언찬
    • 한국기계가공학회지
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    • 제1권1호
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    • pp.71-78
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    • 2002
  • Since the early 1980's the use of zinc-aluminum alloy-coated steel sheet(Galvalume) for vehicular corrosion protection has increased drastically. It is consisting of 55%Al-43.4% Zn-1.6%Si. Galvalume has a good corrosion resistance, heat reflectivity and shiny appearance, which has a dendritic structure of alloy layer. It has a good corrosion resistance due to dendritic structure. But, this also has a weak point against moisture during long period of transportation as sheeted and or coiled without any relation of chromating on the surface of steel sheet or not because of high humidity and temperature. Here, We studied the corrosion mechanism by the moisture.

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이온 플레이팅법에 의한 내식 박막의 제작과 부식방식 메카니즘 (Preparation of corrosion-resistive thin films by ion plating method and their corrosion protection mechanism)

  • 이경희;배일용;김기준;문경만;이명훈
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2006년도 전기학술대회논문집
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    • pp.285-286
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    • 2006
  • Magnesium is the lightest of all the structural metals having density of 1.74. It is approximately 2/3 lighter than aluminium, l/4 lighter than titanium alloy and 1/5 lighter than iron. Among the light-weight alloys, magnesium and its alloys show a good possibility for high performance aerospace and automotive applications, however the widespread use of magnesium alloys has been limited mainly by its poor oxidation and corrosion resistance. In this work, corrosion-resistive thin films were prepared onto the magnesium alloy substrate(AZ91D) by environmental friendly coating technique, ion plating method. And their corrosion protection mechanism were analyzed.

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Comparative study on Corrosion Inhibition of Vietnam Orange Peel Essential Oil with Urotropine and Insight of Corrosion Inhibition Mechanism for Mild Steel in Hydrochloric Solution

  • Bui, Huyen T.T.;Dang, Trung-Dung;Le, Hang T.T.;Hoang, Thuy T.B.
    • Journal of Electrochemical Science and Technology
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    • 제10권1호
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    • pp.69-81
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    • 2019
  • The corrosion inhibiting mechanism of Vietnam orange peel essential oil (OPEO) for mild steel in 1 N HCl solution was investigated elaborately. Corrosion inhibition ability of OPEO was characterized by electrochemical polarization, electrochemical impedance spectroscopy (EIS), and weight loss method. In the corrosive solution, OPEO worked as a mixed inhibitor and the inhibition efficiency of OPEO increased with the increase of its concentration. High inhibition efficiencies over 90% were achieved for the concentration of 3 - 4 g/L OPEO, comparable to that of 3.5 g/L urotropine (URO), a commercial corrosion inhibitor for acid media used in industry. By using adsorption isotherm models (Langmuir, Temkin and Frumkin), thermodynamic parameters of adsorption were calculated. The obtained results indicated physical adsorption mechanism of OPEO on the steel surface. The components responsible for the corrosion inhibition activity of OPEO were not only D-limonene, but also other compounds, which contain C=O, C=C, O-H, C-O-C, -C=CH and C-H bonding groups in the molecules.

Design Considerations to Enhance Perforation Corrosion and Life Prediction of Automotive Body Panel

  • Choi, Minsoo;Chung, Bumgoo;Choi, Jaewoong
    • Corrosion Science and Technology
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    • 제2권5호
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    • pp.247-251
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    • 2003
  • The corrosion forms of automotive body panels are various. One of the representations is a corrosion pitting and its propagation on the lapped portion by galvanic corrosion. But it has been difficult in correlation analysis about the corrosion propagation rate and mechanism of pitting and the actual automotive body in field. This present study interprets experimentally the rust pitting occurrence mechanism on the lapped panels through experimental methods. And field car investigation was executed for correlation analysis with experimental results. This paper compares corrosion propagation rate by pitting on hot-dip galvannealed steel sheets with corrosion forms in the automotive field condition. The research fundamentals which make it possible to predict the pitting occurrence and propagation on the lapped panels in the actual vehicles are given.

A Research on Stray-Current Corrosion Mechanism of High Voltage Cable Connector on Electrification Vehicles

  • Lee, Hwi Yong;Ahn, Seung Ho;Im, Hyun Taek
    • Corrosion Science and Technology
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    • 제18권4호
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    • pp.117-120
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    • 2019
  • Considering the tendency of development of electrification vehicles, development and verification of new evaluation technology is needed because of new technology applications. Recently, as the battery package is set outdoors of an electric vehicle, such vehicles are exposed to corrosive environments. Among major components connected to the battery package, rust prevention of high-voltage cables and connectors is considered the most important issue. For example, if corrosion of high voltage cable connectors occurs, the corrosion durability assessment of using an electric vehicle will be different from general environmental corrosion phenomena. The purpose of this study is to investigate the corrosion mechanism of high voltage cable connectors of an electric vehicle under various driving environments (road surface vibration, corrosion environment, current conduction by stray current, etc.) and develop an optimal rust prevention solution. To improve our parts test method, we have proposed a realistic test method to reproduce actual electric vehicle corrosion issues based on the principle test.

용융탄산염 연료전지에서 양극측 분리판의 부식기구 해석 (Interpretation of Corrosion Mechanism on Anode side Separator for MCFC)

  • 박형호;이민호;이규택
    • 한국재료학회지
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    • 제8권6호
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    • pp.571-576
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    • 1998
  • 본 연구에서는 용융탄산염 연료전지용 분리판으로서 오스테나이트계 스테인레스강 중, 310S를 사용하여 용융염 전해질 및 양극측 분위기에서 부식거동, 부식생성물의 형성과정 및 기구에 관한 고찰을 실시하였다. 분리판의 부식 진행과정은 부식반응 이후 안정 부식생성물이 형성되기까지 빠른 부식이 진행되는 부식생성물 형성단계와 안정 부식생성물 형성 후 보호파괴가 일어나기 까지의 부식 억제단계, 그리고 보호파괴 이후 부식이 다시 증가되는 부식 진행단계의 3단계 과정을 경유하며 진행하였다. 분리판 내 원소들의 농도분포는 부식생성물 형성영역에서는 Fe가, 부식 방어영역에서는 Cr이, 그리고 Ni은 Cr 고갈영역과 기지 안쪽에서 높게 형성되었다. 또한 양극측에서 분리판은 전해질의 이온화에 의한 부식이 주된 부식기구였으며, 최종 부식생성물은 $LiFeO_2$$LiCrO_2$였다.

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430 스테인리스강의 틈부식 발생기구에 대한 연구 (A Study on the Mechanism of Crevice Corrosion for 430 Stainless Steel)

  • 백신영;나은영
    • Journal of Advanced Marine Engineering and Technology
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    • 제27권3호
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    • pp.447-452
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    • 2003
  • Crevice corrosion is localized form of corrosion usually associated with a stagnant solution on the micro-environmental level. Such stagnant micro environments tend to occur in crevices (shielded areas) such as those formed under gaskets washers insulation material. fastener heads. surface deposits. disbonded coatings. threads. lap joints and clamps. Crevice corrosion is initiated by changes in located electrochemical reaction within the crevice such as a) depletion of inhibitor in the crevice b) depletion of oxygen in the crevice c) a shift to acid conditions in the crevice and d) build-up of aggressive ion species (e.g chloride) in the crevice. In this study. the mechanism of crevice corrosion for Type 430 stainless steel is investigated undercondition that the size of specimen is $15{\times}20\{times}3mm$, in 1N $H_2SO_4$ + 0.05N NaCl solution. and the artificial crevice gap size of 3 x 0.2 x 15 mm. Crevice corrosion is measured under applied potential -300mV(SCE) to the external surface. The obtained result of this study showed that 1) the induced time for initiation of crevice is 750 seconds. 2) potential of the crevice was about from -320mV to -399mV. which is lower than that of external surface potential of -300mV It is considered that potential drop in the crevice is one of mechanisms for the crevice corrosion