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1

Khanna, Anand S. High temperature corrosion. New Jersey: World Scientific, 2016.

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2

High temperature corrosion. London: Elsevier Applied Science, 1988.

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3

Sequeira, César A. C. High Temperature Corrosion. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2019. http://dx.doi.org/10.1002/9781119474371.

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4

Li, Zhengwei. High temperature corrosion of intermetallics. Hauppauge, N.Y: Nova Science Publishers, 2008.

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5

Blachere, J. R. High temperature corrosion of ceramics. Park Ridge, N.J., U.S.A: Noyes Data Corp., 1989.

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6

North Atlantic Treaty Organization. Advisory Group for Aerospace Research and Development. High temperature surface interactions. Neuilly sur Seine, France: AGARD, 1989.

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7

Lai, G. Y. High-temperature corrosion of engineering alloys. Materials Park, OH: ASM International, 1990.

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8

Eisenforschung, Max-Planck-Institut für, and Materials Technology Institute of the Chemical Process Industries (U.S.), eds. Carburization: A high temperature corrosion phenomenon. St. Louis, MO: Material Technology Institute of the Chemical Process Industries, 1998.

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9

High temperature oxidation and corrosion of metals. Amsterdam: Elsevier, 2008.

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10

Symposium, on High Temperature Corrosion and Materials Chemistry (5th 2004 Honolulu Hawaii). High temperature corrosion and materials chemistry V. Pennington, NJ: Electrochemical Society, 2005.

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11

Barson, S. D. High temperature erosion-corrosion of alloys and coatings. Manchester: UMIST, 1997.

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12

Mechanisms of high temperature corrosion: A kinetic approach. Stafa-Zuerich: Distributed worldwide byTrans Tech Publications Ltd., 2008.

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13

National Association of Corrosion Engineers. Effects of high-temperature, high pressure carbon dioxide decompression on elastic materials. Houston: NACE, 2002.

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14

National Association of Corrosion Engineers. Dynamic corrosion testing of metals in high-temperature water. Houston: NACE, 1995.

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15

Mojica-Calderon, C. Electrochemical techniques in hot corrosion of high temperature materials. Manchester: UMIST, 1992.

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16

Engineers, National Association of Corrosion. Autoclave corrosion testing of metals in high-temperature water. Houston: NACE, 1995.

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17

Workshop on the Oxidation of High-Temperature Intermetallics (1988 Cleveland, Ohio). Oxidation of high-temperature intermetallics: Proceedings of the Workshop on the Oxidation of High-Temperature Intermetallics, held in Cleveland, Ohio, September 22-23, 1988 ... Warrendale, Pa: Minerals, Metals & Materials Society, 1989.

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18

Symposium on Fundamental Aspects of High Temperature Corrosion (1996 San Antonio, Tex.). Proceedings of the Symposium on Fundamental Aspects of High Temperature Corrosion. Edited by Shores David A, Rapp Robert A, Hou P. Y, Electrochemical Society Corrosion Division, Electrochemical Society. High Temperature Materials Division., and Electrochemical Society Meeting. Pennington, NJ: Electrochemical Society, 1997.

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19

Blackburn, F. J. High temperature corrosion of stainless steel by waste incinerator ash deposits. Manchester: UMIST, 1997.

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20

Brisson, Bruce W. Stress corrosion crack detection in alloy 600 in high temperature caustic. Springfield, Va: Available from National Technical Information Service, 1996.

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21

Symposium on High Temperature Corrosion and Materials Chemistry (1998 San Diego, Calif.). Proceedings of the Symposium on High Temperature Corrosion and Materials Chemistry. Edited by Hou P. Y, Electrochemical Society. High Temperature Materials Division., Electrochemical Society Corrosion Division, Electrochemical Society Meeting, and Symposium on High Temperature Corrosion and Materials Chemistry (1998 : San Diego, Calif.). Pennington, New Jersey: Electrochemical Society, 1998.

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22

International Symposium on High-temperature Oxidation and Corrosion (2005 Nara, Japan). High-temperature oxidation and corrosion 2005: Proceedings of the International Symposium on High-Temperature Oxidation and Corrosion 2005 , Nara, Japan, 30th November - 2nd December 2005. Uetikon-Zuerich, Switzerland: Trans Tech Publications, 2006.

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23

Michael, Schütze, European Federation of Corrosion, Institute of Materials, Minerals, and Mining, and Knovel (Firm), eds. Protective systems for high temperature applications: From theory to industrial implementation. Leeds, U.K: Maney Pub., 2011.

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24

Ikonen, Kari. Large inelastic deformation analysis of steel pressure vessels at high temperature. Espoo [Finland]: Technical Research Centre of Finland, 2001.

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25

Manghnani, Murli H., and Takehiko Yagi, eds. Properties of Earth and Planetary Materials at High Pressure and Temperature. Washington, D. C.: American Geophysical Union, 1998. http://dx.doi.org/10.1029/gm101.

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26

Symposium on High Temperature Corrosion and Materials Chemistry (4th 2003 Paris, France). High temperature corrosion and materials chemistry IV: Proceedings of the International Symposium. Edited by Opila Elizabeth J, Electrochemical Society. High Temperature Materials Division., Electrochemical Society Corrosion Division, and Electrochemical Society Meeting. Pennington, N.J: Electrochemical Society, 2003.

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27

Symposium on Fundamental Aspects of High Temperature Corrosion (1986 Boston, Mass.). Proceedings of the Symposium on Fundamental Aspects of High Temperature Corrosion--II. Pennington, N.J. (10 S. Main St., Pennington 08534-2896): The Electrochemical Society, 1986.

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28

Symposium on High Temperature Corrosion and Materials Chemistry (3rd 2001 Washington, D.C.). High Temperature Corrosion and Materials Chemistry III: Proceedings of the international symposium. Edited by McNallan Michael, Opila E, Electrochemical Society. High Temperature Materials Division., Electrochemical Society Corrosion Division, and Electrochemical Society Meeting. Pennington, New Jersey: Electrochemical Society, 2001.

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29

Per, Kofstad Memorial Symposium (1999 Honolulu Hawaii). High temperature corrosion and materials chemistry: Proceedings of the Per Kofstad Memorial Symposium. Pennington, NJ: Electrochemical Society, 2000.

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30

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. Edited by Streiff Roland. London: Elsevier Science Publishers, 1989.

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31

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

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32

International Symposium on High-temperature Oxidation and Corrosion (2010 Zushi, Japan). High-temperature oxidation and corrosion 2010: Selected, peer reviewed papers from the 3rd International Symposium on High-Temperature Oxidation and Corrosion 2010 (ISHOC-10), November 8-11, 2010, Zushi, Japan. Zurich: Trans Tech Pub., 2011.

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33

(Editor), R. Streiff, J. Stinger (Editor), and Richand D. Stringer (Editor), eds. High Temperature Corrosion. Elsevier Applied Science, 1990.

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34

Ahmad, Zaki, ed. High Temperature Corrosion. InTech, 2016. http://dx.doi.org/10.5772/61546.

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35

Khanna, A. S. High Temperature Corrosion. WORLD SCIENTIFIC, 2015. http://dx.doi.org/10.1142/9573.

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36

Kaufman, J. Gilbert, and Elwin L. Rooy. Aluminum Alloy Castings. ASM International, 2004. http://dx.doi.org/10.31399/asm.tb.aacppa.9781627083355.

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Abstract:
Aluminum Alloy Castings: Properties, Processes and Applications is a practical guide to the process, structure, property relationships associated with aluminum alloy castings and casting processes. It covers a wide range of casting methods, including variations of sand casting, permanent mold casting, and pressure die casting, showing how key process variables affect the microstructure, properties, and performance of cast aluminum parts. Other chapters provide similar information on the effects of alloying and heat treating and the influence and control of porosity and inclusions. A significant portion of the book contains curated collections of property and performance data, including many previously unpublished aging response curves, growth curves, and fatigue curves; tensile properties at high and low temperatures and at room temperature after high-temperature exposure; the results of creep rupture tests conducted at temperatures from 212 to 600 °F (100 to 315 °C); and stress-strain curves obtained from casting alloys in various tempers under tensile or compressive loads. The book also discusses the factors that contribute to corrosion and fracture resistance and includes test specimen drawings as well as a glossary of terms. For information on the print version, ISBN 978-0-87170-803-8, follow this link.
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37

1948-, Hazen Robert M., Downs Robert T. 1955-, and Mineralogical Society of America, eds. High-temperature and high-pressure crystal chemistry. Washington, DC: Mineralogical Society of America, 2000.

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38

Hazen, Robert M., and Robert T. Downs, eds. High-Temperature and High Pressure Crystal Chemistry. De Gruyter, 2000. http://dx.doi.org/10.1515/9781501508707.

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39

Technology for high pressure high temperature reservoir conditions. London: Bentham Press, 1995.

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40

J, Fordham R., and Commission of the European Communities. Directorate-General for Science, Research, and Development., eds. High temperature corrosion of technical ceramics. London: Elsevier Applied Science, 1990.

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41

High Temperature Corrosion and Materials Applications. ASM International, 2007.

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42

High Temperature Corrosion & Materials Chemistry (Proceedings). Electrochemical Society, 1998.

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43

Lai, George Y. High-Temperature Corrosion and Materials Applications. ASM International, 2007. http://dx.doi.org/10.31399/asm.tb.htcma.9781627083041.

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44

C, Sequeira C. A., ed. High temperature corrosion in Molten Salts. Uetikon-Zürich: Trans Tech Publications LTD, 2003.

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45

High-Temperature Oxidation and Corrosion 2005. Stafa: Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/0-87849-409-x.

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46

F, Rothman Michael, and Metallurgical Society of AIME. High Temperature Alloys Committee, eds. High temperature corrosion in energy systems. Warrendale, PA: Metallurgical Society of AIME, 1985.

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47

Mullen, Corina P. High-temperature, high-pressure NMR probe for superconducting magnets. 1996.

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48

Mullen, Corina P. High-temperature, high-pressure NMR probe for superconducting magnets. 1996.

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49

High-Pressure and Low-Temperature Physics. Springer, 2012.

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50

United States. National Aeronautics and Space Administration., ed. Numerical modeling of high-temperature corrosion processes. [Washington, D.C: National Aeronautics and Space Administration, 1995.

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