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1. HIGH TEMPERATURE COATING STUDY TO REDUCE CONTACT STRESS DAMAGE OF CERAMICS.
Richerson, D. W. (Garrett Turbine Engine Co); Schienle, J. L. Source:
Proceedings - Society of Automotive Engineers, 1985, p 453-461
2. High temperature coating systems for the steel industry
Sanz, A. Source: Revue de Metallurgie. Cahiers D'Informations
Techniques, v 97, n 3, Mar, 2000, p 353-378
3. High temperature coating for improved oxidation/corrosion protection
Wood, J.H. (GE Turbine Business Operations); Foster, A.D.; Schilke,
P.W. Source: American Society of Mechanical Engineers (Paper), 1989,
GT239 7p
4. High-temperature coating for protection of the working surfaces
of ingot molds and stools
Chernyshev, E.Ya. (Chelyabinskij Metallurgicheskij Kombinat 'Mechel');
Braslavskaya, T.S.; Magidson, N.Yu.; Emel'yanov, G.N. Source:
Metallurg, n 3, Mar, 1996, p 34 Language: Russian
5. Environment-induced degradation in high-temperature coating systems
Yoshiba, Masayuki (Tokyo Metropolitan Univ) Source: Zairyo to Kankyo/
Corrosion Engineering, v 48, n 3, Mar, 1999, p 135-143 Language:
Japanese
6. EXPERIMENTAL LOW COST SILICON/ALUMINIDE HIGH TEMPERATURE COATING
FOR SUPERALLOYS.
Young, Stanley G. (NASA, Lewis Res Cent, Cleveland, Ohio); Deadmore,
Daniel L. Source: Thin Solid Films, v 73, n 2, Nov 17, 1980, p 373-378
7. Chemical vapor deposition of HF/SI compounds as a high
temperature coating for carbon/carbon composites
Bavarian, Behzad (California State Univ); Arrieta, Victor; Zamanzadeh,
Mehrouz Source: National SAMPE Symposium and Exhibition (Proceedings),
v 35, n pt 2, Apr, 1990, p 1348-1362
8. HEAT RESISTANCE PROTECTIVE COATINGS INFLUENCE THE ECONOMICS OF
HEAVY CRUDE OIL TRANSMISSION.
Van Hooff, Walter (Raychem Int Sales Corp, USA) Source: Papers
presented at the International Conference on the Internal & External
Protection of Pipes, 1983, p 413-419
9. Getting of protective high temperature coatings on carbon -
Carbon composites by means of laser beam
Kuznetsov, S.I. (P.N. Lebedev Physics Institute, Samara Branch,
Russian Academy of Sciences); Petrov, A.L.; Gureev, D.M. Source:
Proceedings of SPIE - The International Society for Optical
Engineering, v 4644, 2002, p 152-157
10. Oxidation mechanisms of ß-NiAl + Zr determined by SIMS
Prescott, R. (Pulp and Paper Research Inst of Canada); Mitchell, D.F.;
Graham, M.J.; Doychak, J. Source: Corrosion Science, v 37, n 9, Sep,
1995, p 1341-1364
11. Electrolytic deposits on stainless steel as high temperature coatings
El Hajjaji, S. (Lab. d'Electrochimie-Corrosion, Universite Med V,
Faculte des Sciences); Bachir, A.B.; Aries, L. Source: Surface
Engineering, v 17, n 3, 2001, p 201-204
12. DEVELOPMENT OF A DISTRIBUTION TRANSFORMER NOT SUBJECT TO DESTRUCTIVE FAILURE.
GHINAZZI, J. M. (MCGRAW EDISION CO, FRANKSVILLE, WIS, USA); SOKOLY, T.
O.; STANGER, R. J. Source: IEEE TRANS POWER APPAR SYST, V PAS-101, N
6, Jun, 1982, p 1674-1678
13. Protecting stainless steel at high temperatures
Senkowski, E. Bud (KTA-Tator, Inc) Source: Journal of Protective
Coatings and Linings, v 17, n 2, Feb, 2000, 5 pp
14. Effect of ductile--brittle transition temperature of Al-Si
coating on fatigue properties of Ni-base superalloys
Zhang, Detang (Beijing Inst of Aeronautical Materials) Source: Jinshu
Xuebao/Acta Metallurgica Sinica, v 26, n 3, Jun 18, 1990, p A215-A219
Language: Chinese
15. EFFECT OF DEPOSITION AND PROCESSING VARIABLES ON THE OXIDE
STRUCTURE OF M-Cr-Al COATINGS.
Shaffer, S. J. (Lawrence Berkeley Lab, Materials & Molecular Research
Div, Berkeley, Calif, USA); Boone, D. H.; Lambertson, R. T.; Peacock,
D. E. Source: Thin Solid Films, v 107, n 4, Sep 30, 1983, p 463-472
16. HARTSTOFFSCHICHTEN IN DER SCHNEID- UND UMFORMTECHNIK. (Carbide
Coatings of Cutting and Forming Tools.)
Vogel, J. Source: Werkstatt und Betrieb, v 120, n 10, Oct, 1987, p
889-892 Language: German
17. QUASI-THERMODYNAMIC PREDICTION OF HYDROGEN REEMISSION BEHAVIOR
FROM TITANIUM FILMS.
Hirooka, Y. (Univ of California at Los Angeles, Cent for Plasma
Physics & Fusion Engineering, Los Angeles, CA, USA); Conn, R. W.;
Goebel, D. M. Source: Journal of Nuclear Materials, v 135, n 1, 1985,
p 82-94
18. FORM AND DISTRIBUTION OF Si IN Si-Al COATING ON K-3 ALLOY.
Li, Yongzuo (Inst of Aeronautical Materials, Beijing, China) Source:
Chin Shu Hsueh Pao: Acta Metallurgica Sinica, v 20, n 2, Apr 18, 1984,
p b. 94-b. 103 Language: Chinese
19. Chemical vapor deposition of hafnium carbide and
characterization of the deposited layers by secondary-neutral mass
spectrometry
Ache, H.F. (Karlsruhe GmbH); Goschnick, J.; Sommer, M.; Emig, G.;
Schoch, G.; Wormer, O. Source: Thin Solid Films, v 241, n 1-2, Apr 1,
1994, p 356-360
20. Monolithic coatings and mathematical modeling of their thermal
properties: heat-transfer aspect
Antipov, V.S. (Zaporozhkoks); Dzhelali, V.V.; Rubchevskij, V.N.;
Chernyshov, Yu.A.; Shakun, G.V.; Volokh, V.M. Source: Koks i
Khimiya/Coke and Chemistry, n 3, Mar, 1999, p 23-28 Language: Russian
21. Preparation and mechanical properties of SiC/2024 composite by
semisolid casting
Meng, Xianyun (Sch. of Mat. and Metall., Northeastern Univ.); Ding,
Hua; Chen, Yanbo; Wen, Jinglin Source: Rare Metals, v 21, n 3,
September, 2002, p 203-206
22. Design and fabrication of high-temperature micro-hotplates for
drop-coated gas sensors
Briand, D. (Inst of Microtechnology); Krauss, A.; van der Schoot, B.;
Weimar, U.; Barsan, N.; Gopel, W.; de Rooij, N.F. Source: Sensors and
Actuators, B: Chemical, v 68, n 1, Aug, 2000, p 223-233
23. Designing oxidation-resistant coatings
Nicholls, J.R. Source: JOM, v 52, n 1, Jan, 2000, p 28-35
24. Arsenic removal from drinking water using iron oxide-coated sand
Thirunavukkarasu, O.S. (Environmental Systems Engineering, Faculty of
Engineering, University of Regina); Viraraghavan, T.; Subramanian,
K.S. Source: Water, Air, and Soil Pollution, v 142, n 1-4, January,
2003, p 95-111
25. GROWTH OF CERAMIC FIBER INSULATION SPURS NEW COATING PRACTICES
FOR REFINERY AND CHEMICAL PROCESS FURNACES.
Anon Source: Industrial Heating, v 49, n 11, Nov, 1982, p 46-48
26. Comparison of the thermal stresses developed in diamond and
advanced ceramic coating systems under thermal loading
Ozel, A. (Univ of Sakarya); Ucar, V.; Mimaroglu, A.; Calli, I. Source:
Materials and Design, v 21, n 5, Oct, 2000, p 437-440
27. Pulsed laser deposition of high-quality tribological coatings
Radhakrishnan, Gouri (Aerospace Corp); Adams, Paul M.; Speckman, Donna
M. Source: Proceedings of SPIE - The International Society for Optical
Engineering, v 3618, 1999, p 487-494
28. Aluminum Oxide and Chromium Oxide Coatings on Ceramic Fibers via MOCVD
Nable, Jun C. (Department of Chemistry, University of Connecticut);
Gulbinska, Malgorzata K.; Kmetz, Michael A.; Suib, Steven L.; Galasso,
Francis S. Source: Chemistry of Materials, v 15, n 25, Dec 16, 2003, p
4823-4829
29. Engineering limitations of MoSi2 coatings
Kircher, Thomas, A. (Naval Air Development Cent); Courtright, Edward,
L. Source: Materials Science & Engineering A: Structural Materials:
Properties, Microstructure and Processing, v A155, n 1-2, Jul 30,
1992, p 67-74
30. Evaluation of alternative high temprature coatings to improve
hot corrosion resistance in a shipboard environment
Shifler, David A. (Marine Corrosion Branch, Carderock Division, Naval
Surface Warfare Center); Russom, Dennis M.; Rodman, Bruce E. Source:
American Society of Mechanical Engineers, International Gas Turbine
Institute, Turbo Expo (Publication) IGTI, v 3, 2003, p 465-472
31. New approach to MoSi2/SiC intermetallic-ceramic composite with B4C
Chen, H. (Institute for Energy Utilization, National Institute of
AIST); Suzuki, M.; Sodeoka, S.; Inoue, T.; Ueno, K. Source: Journal of
Materials Science, v 36, n 24, Dec 15, 2001, p 5773-5777
32. Characteristics and adsorption properties of iron-coated sand
Lo, Shang-Lien (Natl Taiwan Univ); Jeng, Hung-Te; Lai, Chin-Hsing
Source: Water Science and Technology, v 35, n 7, 1997, p 63-70
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