Books on the topic 'Ceramic materials - Thermal properties'

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1

Hocking, M. G. Metallic and ceramic coatings: Production, high temperature properties, and applications. Harlow, Essex, England: Longman Scientific & Technical, 1989.

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2

Hocking, M. G. Metallic and ceramic coatings: Production, high temperature properties and applications. London: Longman Scientific & Technical, 1989.

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3

Lokhova, N. A. Morozostoĭkie stroitelʹnye keramicheskie materialy i izdelii︠a︡ na osnove kremnezemistogo syrʹi︠a︡. Bratsk: Bratskiĭ gos. universitet, 2009.

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4

Chŏng, Hŏn-saeng. Yŏnso panŭngpŏp e ŭihan chŏnyŏlgwan ŭi seramik pʻibok kisul kaebal =: Ceramic lining of pipe for electric heating by combustion reaction process : chʻoejong pogosŏ. [Seoul]: Sanŏp Chawŏnbu, 2006.

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5

Chŏng, Hŏn-saeng. Yŏnso panŭngpŏp e ŭihan chŏnyŏlgwan ŭi seramik pʻibok kisul kaebal =: Ceramic lining of pipe for electric heating by combustion reaction process : chʻoejong pogosŏ. [Seoul]: Sanŏp Chawŏnbu, 2006.

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6

Davis, J. W. Thermal diffusivity/conductivity of AECL Li[subscript 2]TiO[subscript 3] ceramic. Mississauga, Ont: Canadian Fusion Fuels Technology Project, 1995.

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7

Pone, Sergio, and Alfonso Petta. La "pelle" esterna dell'edificio: Nuovi materiali ceramici nel progetto innovativo di sistemi di facciate esterne ventilate. Santarcangelo di Romagna (RN): Maggioli editore, 2011.

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8

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

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9

Smith, Dane. Materials testing on the DC-X and DC-XA. [Moffet Field, Calif: NASA Ames Research Center], 1997.

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10

Miller, Robert A. Thermal barrier coatings for gas turbine and diesel engines. [Washington, D.C.]: NASA, 1990.

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11

Grimvall, Göran. Thermophysical properties of materials. Amsterdam: Elsevier, 1999.

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12

Marghussian, V. K. Thermo-mechanical properties of ceramic fibres. Carnforth, Lancashire, England: Parthenon Press, 1986.

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13

Jannot, Yves, and Alain Degiovanni. Thermal Properties Measurement of Materials. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2018. http://dx.doi.org/10.1002/9781119475057.

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14

Pampuch, Roman. Constitution and properties of ceramic materials. Amsterdam: Elsevier, 1991.

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15

Thermophysical properties of materials. Amsterdam: North-Holland, 1986.

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16

Thermal analysis of materials. New York: Marcel Dekker, 1994.

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17

Williams, S. D. Thermal protection materials: Thermophysical property data. Washington D.C: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1992.

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18

Wachtman, J. B. Mechanical properties of ceramics. 2nd ed. Hoboken, N.J: Wiley, 2008.

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19

Mechanical properties of ceramics. New York: Wiley, 1996.

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20

Ragone, David V. Thermodynamicsof materials. New York: John Wiley, 1995.

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21

Zhu, Xinhua. Piezoelectric ceramic materials: Processing, properties, characterization, and applications. Hauppauge, N.Y: Nova Science Publishers, 2010.

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22

Materials thermodynamics: With emphasis on chemical approach. Singapore: World Scientific, 2012.

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23

Bernard, Samuel. Design, processing, and properties of ceramic materials from preceramic precursors. Hauppauge, N.Y: Nova Science Publishers, 2011.

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24

Introduction to the thermodynamics of materials. 4th ed. New York: Taylor & Francis, 2003.

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25

Introduction to the thermodynamics of materials. 5th ed. New York, NY: Taylor & Francis, 2008.

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26

1940-, Gaskell David R., ed. Introduction to the thermodynamics of materials. 3rd ed. Washington, D.C: Taylor & Francis, 1995.

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27

Thermodynamics of materials. New York: Wiley, 1995.

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28

Choudhury, Namita Roy, Prajna P. De, and Naba K. Dutta. Thermal analysis of rubbers and rubbery materials. Edited by Knovel (Firm) and Ebooks Corporation. Shrewsbury, UK: iSmithers Rapra Pub., 2010.

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29

European Conference on Thermophysical Properties (10th 1986 Rome, Italy). Tenth European Conference on Thermophysical Properties. Edited by Ruffino Giuseppe. London: Pion, 1988.

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30

B, Alcock C., Spencer P. J, and Kubaschewski O. 1912-, eds. Materials thermochemistry. 6th ed. Oxford: Pergamon Press, 1993.

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31

A, Schneider Gerold, Petzow G, North Atlantic Treaty Organization. Scientific Affairs Division., and NATO Advanced Research Workshop on the Thermal Shock and Thermal Fatigue Behavior of Advanced Ceramics (1992 : Munich, Germany), eds. Thermal shock and thermal fatigue behavior of advanced ceramics. Dordrecht: Kluwer Academic Publishers, 1993.

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32

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

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33

Fisher, David. Mechanical Properties of MAX Phases. Materials Research Forum LLC, 2021. http://dx.doi.org/10.21741/9781644901274.

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MAX Phase Materials are uniquely structured carbide and nitride materials which combine the rigidity, oxidation-resistance and high-temperature strength of ceramic materials with such metallic properties as good machinability, thermal-shock resistance, damage-tolerance and good transport properties. Potential applications include microelectronic layers, coatings for electrical contacts, thermal shock-resistant refractories, high-temperature heating elements, neutron-irradiation resistant nuclear applications, thermal barriers, protective aerospace coatings, and bio-compatible materials. The book reviews theoretical and experimental research up to early 2021 and references 185 original resources with their direct web links for in-depth reading.
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34

F, Dyson B., Lohr R. D, Morrell R, UK High Temperature Mechanical Testing Committee., National Physical Laboratory (Great Britain), and Institute of Ceramics (Great Britain), eds. Mechanical testing of engineering ceramics at high temperatures. London: Elsevier Applied Science, 1989.

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35

M, Steen, and Lohr R. D, eds. Ultra high temperature mechanical testing. Cambridge: Woodhead, 1995.

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36

F, Dyson B., Lohr R. D, and Morrell R, eds. Mechanical testing of engineering ceramics at high temperatures: Based on the edited proceedings held at the Excelsior Hotel, Heathrow, London, UK,11-12 April 1988. London: Elsevier, 1989.

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37

Seramikkusu to netsu (Seramikku saiensu shirizu). Gihodo Shuppan, 1985.

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38

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

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39

F, Jones W., American Society of Mechanical Engineers. Winter Meeting, and American Society of Mechanical Engineers. Aerospace Division., eds. Thermomechanical behavior of advanced structural materials: Pesented at the 1993 ASME Winter Annual Meeting, New Orleans, Louisiana, November 28-December 3, 1993. New York: American Society of Mechanical Engineers, 1993.

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40

A, Miller Robert, and Lewis Research Center, eds. Sintering and creep behavior of plasma-sprayed zirconia and hafnia based thermal barrier coatings. [Cleveland, Ohio]: National Aeronautics and Space Administration, Lewis Research Center, 1998.

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41

J, Brindley W., Bailey M. Murray, and United States. National Aeronautics and Space Administration., eds. Thermal barrier coatings for gas turbine and diesel engines. [Washington, D.C.]: NASA, 1990.

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42

Ryan, W. Properties of Ceramic Raw Materials. 2nd ed. Pergamon Pr, 1987.

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43

Ryan, W. Properties of Ceramic Raw Materials. Pergamon Pr, 1987.

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44

Degiovanni, Alain, and Yves Jannot. Thermal Properties Measurement of Materials. Wiley & Sons, Incorporated, John, 2018.

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45

Degiovanni, Alain, and Yves Jannot. Thermal Properties Measurement of Materials. Wiley & Sons, Incorporated, John, 2018.

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46

(Editor), R. Smart, and J. Nowotny (Editor), eds. Ceramic Interfaces: Properties and Applications. Ashgate Publishing, 1998.

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47

1936-, Nowotny Janusz, and Smart, R. St. C. 1944-, eds. Ceramic interfaces: Properties and applications. London: IOM Communications, 1998.

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48

(Editor), Philippe Boch, and Jean-Claude Niepce (Editor), eds. Ceramic Materials: Processes, Properties, and Applications. ISTE Publishing Company, 2006.

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49

Ceramics: Structure and Properties. Abyss Books, 2002.

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50

Mechanical Properties of Ceramics. Chicester: Wiley, 2009.

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