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1

High temperature coatings. Amsterdam: Elsevier Butterworth-Heinemann, 2007.

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2

B, Dahotre Narendra, i Sudarshan T. S. 1955-, red. Intermetallic and ceramic coatings. New York: Marcel Dekker, 1999.

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3

Coextrusion, Seminar (1989 Hilton Head S. C. ). 1989 Coextrusion Seminar, Marriott's Hilton Head, Hilton Head, SC, March 28-31. Atlanta, GA, USA (P.O. Box 105113, Atlanta 30348): TAPPI Press, 1989.

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4

Coextrusion Seminar (1986 Hilton Head, S.C.). 1986 Coextrusion Seminar, Marriott Hilton Head, Hilton Head, SC, April 1-3, 1986. Atlanta, GA, USA (P.O. Box 105113, Atlanta 30348): TAPPI Press, 1986.

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5

Society, American Ceramic, red. Progress in thermal barrier coatings. Hoboken, N.J: Wiley, 2009.

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6

Thermal Barrier Coating Workshop (1995 NASA Lewis Research Center). Thermal Barrier Coating Workshop: Proceedings of a conference held at and sponsored by NASA Lewis Research Center and cosponsored by DOE and NIST, Cleveland, Ohio, March 27-29, 1995. [Washington, D.C.]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1995.

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7

Baumeister, Joseph F. Relationship of optical coating on thermal radiation characteristics of nonisothermal cylindrical enclosures. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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8

Bryant, Richard W. Inorganic coatings for enchanced metal surface properties. Norwalk, CT: Business Communications Co., 1986.

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9

W, Bryant Richard, i Business Communications Co, red. Inorganic surface coatings and finishes: Competitive markets. Stamford, Conn: Business Communications Co., 1986.

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10

Freni, Angelo, Belal Dawoud, Lucio Bonaccorsi, Stefanie Chmielewski, Andrea Frazzica, Luigi Calabrese i Giovanni Restuccia. Characterization of Zeolite-Based Coatings for Adsorption Heat Pumps. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-09327-7.

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11

E, Lindemuth James, i United States. National Aeronautics and Space Administration., red. Insoluble coatings for Stirling engine heat pipe condenser surfaces. Lancaster, Pa: Thermacore, Inc., 1997.

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12

Center, Lewis Research, red. Insoluble coatings for Stirling engine heat pipe condenser surfaces. [Cleveland, Ohio]: Lewis Research Center, National Aeronautics and Space Administration, 1993.

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13

Society, American Ceramic, red. Progress in nanotechnology. Hoboken, N.J: John Wiley & Son, 2010.

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14

Society, American Ceramic. Progress in nanotechnology: Applications. Hoboken, N.J: Wiley, 2010.

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15

Vsesoi͡uznoe soveshchanie po zharostoĭkim pokrytii͡am (6th 1973 Leningrad, R.S.F.S.R.). Inorganic and organosilicate coatings: Proceedings of the Sixth All-Union Conference on Heat-resistant Coatings, Leningrad, March 20-23, 1973. Redaktor Shulʹt͡s M. M. New Delhi: Oxonian Press, 1986.

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16

Gethin, D. T. Numerical models for printing and coating flows. Redaktor ebrary Inc. Bradford, England: Emerald Group Publishing, 2002.

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17

M, Hampikian Janet, Dahotre Narendra B, Minerals, Metals and Materials Society. Surface Modification and Coatings Technologies Committee., Minerals, Metals and Materials Society. Corrosion & Environmental Effects Committee. i Minerals, Metals and Materials Society. Meeting, red. Elevated temperature coatings: science and technology III: Proceedings of a symposium sponsored by the Surface Modification and Coatings Technology Committee of the Materials Processing and Manufacturing Division (MPMD) of TMS, and by the Joint TMS/ASM Corrosion and Environmental Effects Committee of the Structural Materials Division (SMD) of TMS, held during the 1999 TMS Annual Meeting in San Diego, California, February 28-March 4, 1999. Warrendale, Penn: Minerals, Metals & Materials Society, 1999.

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18

J, Petrus G., Krauss T. M i United States. National Aeronautics and Space Administration., red. Modeling of thermal barrier coatings: Final report. [Washington, DC]: National Aeronautics and Space Administration, 1992.

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19

D, Hass Derek, i Langley Research Center, red. Reflective coating on fibrous insulation for reduced heat transfer. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1997.

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20

Gao wen fang hu tu ceng ji shu: High-temperature protective coating. Beijing: Guo fang gong ye chu ban she, 2012.

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21

1947-, Miller Robert A., i NASA Glenn Research Center, red. Thermal conductivity and elastic modulus evolution of thermal barrier coatings under high heat flux conditions. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 1999.

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22

United States. National Aeronautics and Space Administration., red. Test method to evaluate cylinder liner-piston ring coatings for advanced heat engines. [Washington, D.C: National Aeronautics and Space Administration, 1997.

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23

United States. National Aeronautics and Space Administration., red. Test method to evaluate cylinder liner-piston ring coatings for advanced heat engines. [Washington, D.C: National Aeronautics and Space Administration, 1997.

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24

Schütze, Michael. Die Korrosionsschutzwirkung oxidischer Deckschichten unter thermisch-chemisch-mechanischer Werkstoffbeanspruchung. Berlin: Borntraeger, 1991.

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25

Sheet Metal and Air Conditioning Contractors' National Association (U.S.). Accepted industry practices for sheet metal lagging. Chantilly, VA: Sheet Metal and Air Conditioning Contractors' National Association, 2002.

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26

Coatings for high-temperature structural materials: Trends and opportunities. Washington, D.C: National Academy Press, 1996.

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27

Ivashko, V. S. Ėlektrotermicheskai͡a︡ tekhnologii͡a︡ nanesenii͡a︡ zashchitnykh pokrytiĭ. Minsk: "Navuka i tėkhnika", 1996.

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28

DellaCorte, Christopher. Thermal processing effects on the adhesive strength of PS304 high temperature soild lubricant coatings. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2001.

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29

SICMAC, Summer School on Layered Functional Gradient Ceramics and Thermal Barrier Coatings (2006 Mahón Spain). Layered, functional gradient ceramics, and thermal barrier coatings: Design, fabrication and applications : proceedings of the SICMAC summer school on layered, functional gradient ceramics, and thermal barrier coatings held in Maó, Menorca Island (Spain) on June 11-16, 2006. Zuerich: Trans Tech Publications Ltd., 2007.

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30

Majerus, Patrick. Neue Verfahren zur Analyse des Verformungs- und Schädigungsverhaltens von MCrAlY-Schichten im Wärmedämmschichtsystem. Jülich: Forschungszentrum Jülich GmbH, Zentralbibliothek, 2004.

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31

E, Brewe David, United States. Army Aviation Research and Technology Activity. i United States. National Aeronautics and Space Administration., red. The effect of coatings and liners on heat transfer in a dry shaft-bush tribosystem. [Washington, DC]: National Aeronautics and Space Administration, 1990.

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32

Center, Lewis Research, red. The effect of cobalt content in U-700 type alloys on degradation of aluminide coatings. [Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1985.

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33

D.C.) International Heat Transfer Conference (14th 2010 Washington. Enhancement of heat transfer with pool and spray impingement boiling on microporous and nanowire surface coatings. Golden, CO: National Renewable Energy Laboratory, 2010.

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34

Alain, Galerie, red. Vapor surface treatments. London: ISTE, 2009.

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35

Radchenko, Tat'yana, i Yuriy Shevcov. The creation of protective and strengthening coatings by methods of electron beam processing in vacuum. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1000599.

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Streszczenie:
This monograph presents basic theoretical and applied issues of the process of electron beam heat treatment, cladding and welding in various industries. Reviewed hardware and technological aspects, peculiarities of formation of structure of metals and alloys, as well as the patterns of change of such physical-mechanical properties, such as hardness, wear resistance, corrosion resistance, thermal conductivity. The specific examples of the electron beam to create a strengthening and protective coatings. Can be recommended as a textbook for students of technical universities, engineers and researchers and practical workers in the field of welding production.
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36

International Symposium on High Temperature Corrosion of Advanced Materials and Coatings (2nd 1989 Ile des Embiez, France). High temperature corrosion 2: Advanced materials and coatings : proceedings of the 2nd International Symposium on High Temperature Corrosion of Advanced Materials and Coatings, Les Embiez, France, May 22-26, 1989. Redaktor Streiff Roland. London: Elsevier Science Publishers, 1989.

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37

Vassen, Robert. Entwicklung neuer oxidischer Wärmedämmschichten für Anwendungen in stationären und Flug-Gasturbinen. Jülich: Forschungszentrum Jülich GmbH, Zentralbibliothek, 2004.

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38

D, Sisson R., American Society for Metals. Energy Division. i American Society for Metals. Coatings Committee., red. Coatings and bimetallics for aggressive environments: Conference proceedings : Conference on Coatings and Bimetallics for Energy Systems and Chemical Process Environments, Hilton Head, South Carolina, 12-14 November, 1984. [Metals Park, Ohio]: ASM, 1985.

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39

United States. National Aeronautics and Space Administration., red. Heat conduction in ceramic coatings: Relationship between microstructure and effective thermal conductivity : technical report for task 2 (second year) : (period of performance, February 7, 1998-May 6, 1998). [Washington, DC: National Aeronautics and Space Administration, 1998.

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40

Alain, Galerie, red. Vapor surface treatments. London: ISTE, 2009.

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41

Alain, Galerie, red. Vapor surface treatments. London: ISTE, 2009.

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42

Ingard, Kvernes, Bunk W. J. G, Wurm J. G, European Materials Research Society. Meeting i Council of Europe, red. Advanced materials research and developments for transport: Ceramic coatings for heat engines : November 26-28th 1985, Strasbourg, France. Paris: Editions de Physique, 1986.

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43

K, Haritos G., Ochoa O. O, American Society of Mechanical Engineers. Winter Meeting, American Society of Mechanical Engineers. Aerospace Division., American Society of Mechanical Engineers. Applied Mechanics Division. i American Society of Mechanical Engineers. Materials Division., red. Damage and oxidation protection in high temperature composites: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Atlanta, Georgia, December 1-6, 1991. New York, N.Y: ASME, 1991.

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44

United States. National Aeronautics and Space Administration., red. Composite matrix experimental combustor: Final technical report. [Washington, D.C.]: NASA, 1994.

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45

Werner, André. Thermische Stabilität von abriebfähigen Dichtungswerkstoffen auf Nickel- oder Kobaltbasis für Hochdruckverdichter. Redaktor Wielage B. (Bernhard). Chemnitz: TU Chemnitz, Fakultät für Maschinenbau, Lehrstuhl für Verbundwerkstoffe, 2008.

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46

Y, Saito, Önay B, Maruyama T. 1950- i International Symposium on Solid State Chemistry of Advanced Materials (1990 : Tokyo, Japan), red. High temperature corrosion of advanced materials and proctective coatings: Proceedings of the Workshop on High Temperature Corrosion of Advanced Materials and Protective Coatings, Tokyo, Japan, December 5-7, 1990 as part of the International Symposium on Solid State Chemistry of Advanced Materials. Amsterdam: North-Holland, 1992.

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47

International Symposium on High Temperature Corrosion of Materials and Coatings for Energy Systems and Turboengines (1st 1986 Université de Provence). High temperature corrosion of materials and coatings for energy systems and turboengines: Proceedings of the First International Symposium on High Temperature Corrosion of Materials and Coatings for Energy Systems and Turboengines Université de Provence,Marseille, France, July 7-11, 1986. Redaktor Streiff Roland. London: Elsevier Applied Science, 1987.

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48

Nelson, James B. Effect of long-term thermal aging on coated celion/LARC-160 composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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49

Center, Langley Research, red. Effect of long-term thermal aging on coated celion/LARC-160 composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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50

Center, Langley Research, red. Effect of long-term thermal aging on coated celion/LARC-160 composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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