Alumina-based ceramic coatings obtained by the SHS process for high temperature corrosion and wear protection of steel tubulars

被引:0
|
作者
Medvedovski, Eugene [1 ]
Mendoza, Gerardo Leal [2 ]
机构
[1] Endurance Technol Inc, 39-C Stonehaven Dr, Ottawa, ON K2M 1E3, Canada
[2] Endurance Technol Inc, 71-4511 Glenmore Dr, Calgary, AB T2C 2R9, Canada
关键词
Coatings; Alumina ceramics; Corrosion; Wear; SHS; LINED COMPOSITE PIPES; MECHANICAL-PROPERTIES; CENTRIFUGAL-SHS; COMBUSTION SYNTHESIS; MOLTEN-SALT; MICROSTRUCTURE; OXIDATION; GLASS; RESISTANCE; BEHAVIOR;
D O I
10.1016/j.ceramint.2024.07.055
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Ceramic coatings have much potential for steel tubulars' protection against high temperature corrosion of gases and liquids, often containing abrasive solid particles, and to enhance their integrity in severe power generation, mineral and oil & gas production environments. Combining self-propagating high-temperature synthesis (SHS) with high-speed centrifugal process, alumina-based coatings were produced onto the inner surface of tubulars for these applications. According to the developed SHS batch formulation and the designed centrifugal device and process, well-consolidated composite ceramic layers with a thickness of 1.5-3 mm have been obtained. The developed SHS process does not create hazardous gases, and it takes similar to 30 s for the ceramic phase formation. A high-level compaction due to centrifugal forces and a liquid phase sintering approach provided a dense gradient ceramic structure formed by oxide grains cemented by a glassy phase and bonded with a steel substrate through a thin iron layer. The coatings were successfully produced onto the inner surface of carbon and stainless steels' tubes of up to 12 ft-lengths and standard dimensions from 2 to 3/8 '' to 7.5" OD. The coatings were tested, for the first time, in wear and high-temperature corrosive environments, e.g., in steam-H2S-CO2 gases and molten salts, with encouraging results due to high contents of Al2O3 and some other oxides and consolidated ceramic structure. They can be recommended for applications in high-temperature (900 degrees C and greater) corrosive environments and erosive flows.
引用
收藏
页码:36666 / 36690
页数:25
相关论文
共 50 条
  • [21] HIGH-TEMPERATURE CORROSION-RESISTANT CERAMIC COATINGS OBTAINED BY LASER-CHEMICAL VAPOR-DEPOSITION
    POU, J
    GONZALEZ, P
    GARCIA, E
    FERNANDEZ, D
    SERRA, J
    LEON, B
    SAUNDERS, SRJ
    PEREZAMOR, M
    VACUUM, 1994, 45 (10-11) : 1035 - 1037
  • [22] PVD Al-Ti and Al-Mn coatings for high temperature corrosion protection of sheet steel
    Lauwerens, W
    De Boeck, A
    Thijs, M
    Claessens, S
    Van Stappen, M
    Steenackers, P
    SURFACE & COATINGS TECHNOLOGY, 2001, 146 : 27 - 32
  • [23] Properties of wear and corrosion resistance TiC-Ni based coatings for use in high temperature applications
    Vuoristo, P
    Heinonen, M
    Mantyla, T
    COST 516 TRIBOLOGY SYMPOSIUM, 1998, 180 : 189 - 189
  • [24] The effect of ultrasonic power on high temperature wear and corrosion resistance for Ni based alloy composite coatings
    Tan, Sezer
    Algul, Hasan
    Kilicaslan, Erdem
    Alp, Ahmet
    Akbulut, Hatem
    Uysal, Mehmet
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2023, 656
  • [25] High temperature corrosion behavior and mechanism of steel slag-based glass ceramic in the eutectic carbonates
    Jiao, Lin-xu
    Zhu, Chun
    Zhang, Shi-guang
    Li, Wen-han
    Yang, Liu
    Wu, Yun-yi
    Li, Bao-rang
    CERAMICS INTERNATIONAL, 2024, 50 (20) : 39951 - 39964
  • [26] Analysis of degradation process during the incorporation of ZrO2:SiO2 ceramic nanostructures into polyurethane coatings for the corrosion protection of carbon steel
    Del Angel-Lopez, D.
    Dominguez-Crespo, M. A.
    Torres-Huerta, A. M.
    Flores-Vela, A.
    Andraca-Adame, J.
    Dorantes-Rosales, H.
    JOURNAL OF MATERIALS SCIENCE, 2013, 48 (03) : 1067 - 1084
  • [27] Analysis of degradation process during the incorporation of ZrO2:SiO2 ceramic nanostructures into polyurethane coatings for the corrosion protection of carbon steel
    D. Del Angel-López
    M. A. Domínguez-Crespo
    A. M. Torres-Huerta
    A. Flores-Vela
    J. Andraca-Adame
    H. Dorantes-Rosales
    Journal of Materials Science, 2013, 48 : 1067 - 1084
  • [28] Metal-ceramic diffusion barrier nanocomposite coatings on nickel based superalloys for corrosion and high temperature oxidation resistance
    Kirubaharan, A. M. Kamalan
    Kuppusami, P.
    Ghosh, Chanchal
    Priya, R.
    Ningshen, S.
    Kumar, D. Dinesh
    Divakar, R.
    CERAMICS INTERNATIONAL, 2022, 48 (21) : 31281 - 31288
  • [29] Modeling of the build up process for production of Ni-Al based high temperature wear resistant coatings
    Zinigrad, M
    Mazurovsky, V
    Zalomov, N
    Di, F
    Wujun, Y
    INTERNATIONAL SYMPOSIUM ON STEEL FOR FABRICATED STRUCTURES, 1999, : 230 - 233
  • [30] Corrosion and wear protection of AISI 4140 carbon steel using a laser-modified high-velocity oxygen fuel thermal sprayed coatings
    Sivarajan, Shanmugasundaram
    Joshi, Adwait
    Palani, Karthikeyan C.
    Padmanabhan, Raghupathy
    Stokes, Joseph T.
    JOURNAL OF ELECTROCHEMICAL SCIENCE AND ENGINEERING, 2022, 12 (05): : 865 - 876