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1

1935-, Schacht Charles A., ed. Refractories handbook. New York: Marcel Dekker, 2004.

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2

United States. National Aeronautics and Space Administration., ed. Probabilistic material strength degradation model for Iconel 718 components subjected to high temperature, mechanical fatigue, creep and thermal fatigue effects. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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3

George C. Marshall Space Flight Center., ed. A preliminary mechanical property and stress corrosion evaluation of VIM-VAR work strengthened and direct aged inconel 718 bar material. [Marshall Space Flight Center, Ala.]: National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1987.

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4

Weimar Workshop on High Performance Concrete: Material Properties and Design (4th 1995 Hochschule für Architektur und Bauwesen). High performance concrete: Material properties and design : proceedings of the Fourth Weimar Workshop on High Performance Concrete: Material Properties and Design held at Hochschule für Architektur und Bauwesen (HAB) Weimar, Germany, October 4th and 5th 1995. Edited by Wittmann F. H, Schwesinger Peter, and Hochschule für Architektur und Bauwesen Weimar (Germany). Freiburg: Aedificatio, 1995.

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5

Erol, Ayşe. Dilute III-V nitride semiconductors and material systems: Physics and technology. Berlin: Springer, 2008.

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6

High Heat-resistant Plastics Conference (1985 Stamford, Conn.). Proceedings from 1985 Conference on High Heat-resistant Plastics: "material options and market opportunities in plastics applications requiring elevated temperature resistance" : as presented at 1985 High Heat-resistant Plastics Conference, November 12-13, 1985, Crowne Plaza Hotel, Stamford, Connecticut. Stamford, CT: Business Communications Co., 1985.

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7

Kajaste-Rudnitski, Juri. Numerical model of thermoelastic-plastic concrete material. Espoo: Technical Research Centre of Finland, 1993.

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8

Hugo, Leon, and Huang Xiao, eds. Superalloys: Alloying and performance. Materials Park, Ohio: ASM International, 2010.

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9

1939-, Kumashiro Yukinobu, ed. Electric refractory materials. New York: Marcel Dekker, 2000.

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10

R, Davis J., and ASM International. Handbook Committee., eds. Heat-resistant materials. Materials Park, Ohio: ASM International, 1997.

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11

N, Pravednikov A., and Kopylov V. V, eds. Polimernye materialy s ponizhennoĭ gori͡u︡chestʹi͡u︡. Moskva: Khimii͡a︡, 1986.

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12

Aleksandrovich, Bannykh Oleg, and Institut metallurgii im. A.A. Baĭkova., eds. Zharoprochnye i zharostoĭkie metallicheskie materialy: Fiziko-khimicheskie print͡s︡ipy sozdanii͡a︡. Moskva: "Nauka", 1987.

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13

European Conference on Advanced Materials and Processes (1st 1989 Aachen, Germany). Advanced materials and processes: Proceedings of the First European Conference on Advanced Materials and Processes, EUROMAT '89. Edited by Exner Hans Eckart, Schumacher V, and Deutsche Gesellschaft für Materialkunde. Oberursel, FRG: DGM Informationsgesellschaft, 1990.

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14

Symposium on "Materials Design Approaches and Experiences" (2001 Indianapolis, Ind.). Materials design approaches and experiences: Proceedings of symposium. Warrendale, Pa: TMS, 2001.

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15

Khoroshavin, L. B. Dialektika kak nauka o razvitii i eë rolʹ v sozidanii ogneuporov novogo pokolenii͡a︡. Ekaterinburg: [s.n.], 1997.

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16

I͡A︡, Kosolapova T., and Institut problem materialovedenii͡a︡ im. I.N. Frant͡s︡evicha., eds. Tugoplavkie soedineni͡a︡: Poluchenie, struktura, svoĭstva i primenenie : sbornik nauchnykh trudov. Kiev: Nauk. dumka, 1991.

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17

United States. National Aeronautics and Space Administration., ed. Final report submitted to ... George C. Marshall Space Flight Center ... for NAS8-36955 D.O. 47 entitled high temperature materials characterization. Huntsville, Ala: Johnson Research Center, University of Alabama in Huntsville, 1990.

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18

Khoroshavin, L. B. Ogneupory novogo pokolenii͡a︡. Ekaterinburg: In-t metallurgii UrO RAN, 1996.

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19

E, Bullock, ed. Research and development of high temperature materials for industry. London: Elsevier Applied Science, 1989.

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20

S, Kislyĭ P., and Instytut nadtverdykh materialov (Akademii͡a︡ nauk Ukraïnsʹkoï RSR), eds. Sverkhtverdye i tugoplavkie materialy: Sbornik nauchnykh trudov. Kiev: In-t sverkhtverdykh materialov AN USSR, 1985.

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21

United States. National Aeronautics and Space Administration., ed. Development of high Tc (>110K) Bi, TI and Y-based materials as superconducting circuit elements. [Clemson, S.C.?]: Clemson University, Dept. of Ceramic Engineering, College of Engineering, 1992.

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22

B, Holt J., International Symposium on Functionally Gradient Materials (2nd : 1992 : San Francisco, Calif.), and International Ceramic Science and Technology Congress (3rd : 1992 : San Francisco, Calif.), eds. Functionally gradient materials. Westerville, Ohio: American Ceramic Society, 1993.

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23

Kaihatsukyoku, Japan Kagaku Gijutsuchō Kenkyū. Netsuōryoku kanwa no tame no keisha kinō zairyō kaihatsu no kiban gijutsu ni kansuru kenkyū (dai II-ki Heisei 2-nen--3-nendo) seika hōkokusho. [Tokyo]: Kagaku Gijutsuchō Kenkyū Kaihatsukyoku, 1992.

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24

Yashwant, Mahajan, and Sekhar J. A, eds. Progress in high temperature ceramics: Special topic volume with invited papers only. Stafa-Zurich, Switzerland: Trans Tech Publications, 2009.

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25

Yashwant, Mahajan, and Sekhar J. A, eds. Progress in high temperature ceramics: Special topic volume with invited papers only. Stafa-Zurich, Switzerland: Trans Tech Publications, 2009.

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26

Yashwant, Mahajan, and Sekhar J. A, eds. Progress in high temperature ceramics: Special topic volume with invited papers only. Stafa-Zurich, Switzerland: Trans Tech Publications, 2009.

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27

Yashwant, Mahajan, and Sekhar J. A, eds. Progress in high temperature ceramics: Special topic volume with invited papers only. Stafa-Zurich, Switzerland: Trans Tech Publications, 2009.

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28

Jisedai Kinzoku Fukugō Zairyō Kenkyū Kaihatsu Kyōkai. "Kōzōyō tainetsu fukugō zairyō no dēta bēsu kōchiku ni kansuru kenkyū" seika hōkokusho. [Tokyo]: Jisedai Kinzoku Fukugō Zairyō Kenkyū Kaihatsu Kyōkai, 2000.

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29

Yashwant, Mahajan, and Sekhar J. A, eds. Progress in high temperature ceramics: Special topic volume with invited papers only. Stafa-Zurich, Switzerland: Trans Tech Publications, 2009.

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30

Kuzʹminov, I︠U︡ S. Tugoplavkie materialy iz kholodnogo tigli︠a︡. Moskva: Nauka, 2004.

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31

1942-, Natesan K., Tillack D. J, ASM International. Heat-Resistant Materials Committee., and National Association of Corrosion Engineers., eds. Heat-resistant materials: Proceedings of the first international conference, 23-26 September 1991, Fontana, Wisconsin, USA. Materials Park, Ohio: ASM International, 1991.

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32

Donskoi, A. A. Physico-chemistry of elastomer heat-shielding materials. New York: Nova Science Publishers, 1998.

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33

Japan-U.S. Conference on Composite Materials (4th 1988 Washington, D.C.). Proceedings of the Fourth Japan-U.S. Conference on Composite Materials: June 27-29, 1988, Loews L'Enfant Plaza Hotel, Washington, D.C. Lancaster, Pa: Technomic Pub. Co., 1989.

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34

Erol, Ayse. Dilute III-V Nitride Semiconductors and Material Systems. Springer, 2008.

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35

Erol, Ayse. Dilute III-V Nitride Semiconductors and Material Systems: Physics and Technology. Springer, 2010.

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36

High performance concrete: Material properties and design : proceedings of the Fourth Weimar Workshop on High Performance Concrete: Material Properties ... Weimar, Germany, October 4th and 5th 1995. Aedificatio, 1995.

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37

Smith, Jeffrey D., and Thomas Vert. Refractory Material Selection for Steelmaking. Wiley & Sons, Incorporated, John, 2016.

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38

Smith, Jeffrey D., and Thomas Vert. Refractory Material Selection for Steelmaking. Wiley & Sons, Limited, John, 2016.

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39

Refractory Material Selection for Steelmaking. Wiley & Sons, Incorporated, John, 2016.

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40

Leon, Hugo. Superalloys. 2010.

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41

Kumashiro, Yukinobu. Electric Refractory Materials. Taylor & Francis Group, 2000.

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42

Kumashiro, Yukinobu. Electric Refractory Materials. Taylor & Francis Group, 2000.

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43

Kumashiro, Yukinobu. Electric Refractory Materials. Taylor & Francis Group, 2000.

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44

Electric Refractory Materials. CRC Press LLC, 2000.

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45

MAX phases and ultra-high temperature ceramics for extreme environments. Hershey, PA: Engineering Science Reference, an imprint of IGI Global, 2013.

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46

Superalloys 2012. Wiley-TMS, 2012.

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47

The Superalloys. Cambridge University Press, 2006.

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48

Reed, Roger C. Superalloys: Fundamentals and Applications. Cambridge University Press, 2006.

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49

The Superalloys: Fundamentals and Applications. Cambridge University Press, 2006.

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50

Arzhakov, Maxim. Relaxation in Physical and Mechanical Behavior of Polymers. Taylor & Francis Group, 2019.

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