Books on the topic 'Elevated temperatures'

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1

Belton, G. R., and W. L. Worrell, eds. Heterogeneous Kinetics at Elevated Temperatures. Boston, MA: Springer US, 1995. http://dx.doi.org/10.1007/978-1-4684-8065-8.

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2

Jiang, J. Tribological behaviour of metals at elevated temperatures. Manchester: UMIST, 1995.

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3

Bradley, Brian N. An investigation of lightback at elevated temperatures. Salford: University of Salford, 1987.

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4

Montesano, John, and John Montesano. Fatigue of polymer matrix composites at elevated temperatures. New York: Nova Science Publishers, 2011.

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5

J, singh, and George C. Marshall Space Flight Center., eds. Microstructural evolution of NARloy-Z at elevated temperatures. [Marshall Space Flight Center, Ala.]: National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1993.

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6

Montesano, John. Fatigue of polymer matrix composites at elevated temperatures. New York: Nova Science Publishers, 2011.

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7

J, singh, and George C. Marshall Space Flight Center., eds. Microstructural evolution of NARloy-Z at elevated temperatures. [Marshall Space Flight Center, Ala.]: National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1993.

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8

Abedi, Sei Jalal. Coal particle disintegration at elevated temperatures and pressures. Ottawa: National Library of Canada, 1993.

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9

Li, Longbiao. Micromechanics of Ceramic-Matrix Composites at Elevated Temperatures. Singapore: Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-1294-6.

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10

Zudong, Shi, ed. Experiment and calculation of reinforced concrete at elevated temperatures. Waltham, MA: Butterworth-Heinemann, 2011.

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11

Pincus, HJ, and ER Hoskins, eds. Measurement of Rock Properties at Elevated Pressures and Temperatures. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959: ASTM International, 1985. http://dx.doi.org/10.1520/stp869-eb.

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12

J, Carino Nicholas, and National Institute of Standards and Technology (U.S.), eds. Mechanical properties of high-strength concrete at elevated temperatures. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2001.

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13

J, Carino Nicholas, and National Institute of Standards and Technology (U.S.), eds. Mechanical properties of high-strength concrete at elevated temperatures. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2001.

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14

J, Carino Nicholas, and National Institute of Standards and Technology (U.S.), eds. Mechanical properties of high-strength concrete at elevated temperatures. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2001.

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15

tutkimuskeskus, Valtion teknillinen, and Teknillinen Korkeakoulu, eds. On the measurement of volatile metal species at elevated temperatures. Espoo: Technical Research Centre of Finland, 1993.

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16

Barkby, Campbell Tyrone. Migration from non-ovenable food contact materials at elevated temperatures. Leicester: De Montfort University, 1995.

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17

1950-, Allen David H., and United States. National Aeronautics and Space Administration, eds. Integrated research in constitutive modelling at elevated temperatures.: Final report. College Station, Tex: Mechanics and Materials Center, Texas A&M University, 1986.

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18

J, Mirtich Michael, and United States. National Aeronautics and Space Administration., eds. The emittance of space radiator materials measured at elevated temperatures. [Washington, DC]: National Aeronautics and Space Administration, 1989.

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19

Yoshiki, Oshida, and United States. National Aeronautics and Space Administration, eds. Grain boundary oxidation and fatigue crack growth at elevated temperatures. [Washington, DC: National Aeronautics and Space Administration, 1986.

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20

Crapo, Chuck. Salmon quality: The effects of elevated refrigerated seawater chilling temperatures. Fairbanks: Alaska Sea Grant College Program, University of Alaska, 1987.

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21

DellaCorte, Christopher. Tribological characteristics of silicon carbide whisker-reinforced alumina at elevated temperatures. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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22

Li, Longbiao. Time-Dependent Mechanical Behavior of Ceramic-Matrix Composites at Elevated Temperatures. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-3274-0.

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23

United States. National Aeronautics and Space Administration., ed. Fatigue life prediction of an intermetallic matrix composite at elevated temperatures. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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24

P, Gyekenyesi J., and United States. National Aeronautics and Space Administration., eds. Reliability and life prediction of ceramic composite structures at elevated temperatures. [Washington, DC: National Aeronautics and Space Administration, 1994.

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25

1958-, Phan Long T., Davis Frank, and National Institute of Standards and Technology (U.S.), eds. Mechanical properties of high performance concrete after exposure to elevated temperatures. [Gaithersburg, Md.?]: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2000.

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26

J, Pincus Howard, Hoskins Earl R, ASTM Committee D-18 on Soil and Rock., and Symposium on Measurement of Rock Properties at Elevated Pressures and Temperatures (1983 : College Station, Tex.), eds. Measurement of rock properties at elevated pressures and temperatures: A symposium. Philadelphia, PA: ASTM, 1985.

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27

E, Klaus E., ed. Formation of lubricating films at elevated temperatures from the gas phase. Washington, D.C: National Institute of Standards and Technology, 1988.

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28

Okeremi, A. O. Mapping the erosion of alloys in wet environments at elevated temperatures. Manchester: UMIST, 1997.

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29

Hanna, Robert Keith. Transport phenomena at elevated temperatures: Studies related to direct polymetallic smelting. Birmingham: University of Birmingham, 1990.

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30

Steel Construction Institute (Great Britain). Fire and Blast Information Group. Design guide for steel at elevated temperatures and high strain rates. [Ascot, Eng.]: Steel Construction Institute, 2001.

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31

Klaus, E. Erwin. Formation of lubricating films at elevated temperatures from the gas phase. Edited by Duda J. L. 1936-, Naidu S. K, Munro R. G, Hsu S. M, and DOE ECUT Energy Tribology Program. Gaithersburg, MD: U.S. Dept. of Commerce, National Institute of Standards and Technology, 1988.

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32

Winder, S. M. The fabrication and microstructural evolution, at elevated temperatures, of syalon ceramics. [s.l.]: typescript, 1985.

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33

1958-, Phan Long T., Davis Frank, and National Institute of Standards and Technology (U.S.), eds. Mechanical properties of high performance concrete after exposure to elevated temperatures. [Gaithersburg, Md.?]: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2000.

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34

1958-, Phan Long T., Davis Frank, and National Institute of Standards and Technology (U.S.), eds. Mechanical properties of high performance concrete after exposure to elevated temperatures. [Gaithersburg, Md.?]: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2000.

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35

E, Tuttle M., and United States. National Aeronautics and Space Administration., eds. An investigation of the thermoviscoplastic behavior of a metal matrix composite at elevated temperatures. [Washington, DC: National Aeronautics and Space Administration, 1992.

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36

E, Tuttle M., and United States. National Aeronautics and Space Administration., eds. An investigation of the thermoviscoplastic behavior of a metal matrix composite at elevated temperatures. [Washington, DC: National Aeronautics and Space Administration, 1992.

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37

Hall, A. M. Summary report on elevated temperature tests for asbestos-free gasket materials. [Houston? Tex.]: National Association of Corrosion Engineers, 1990.

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38

Walker, Sandra P. Evaluation of composite honeycomb sandwich panels under compressive loads at elevated temperatures. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1998.

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39

Fapohunda, Chris Ajiboye. Resistance to chloride intrusion of blended cement concretes cured at elevated temperatures. Ottawa: National Library of Canada, 1992.

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40

Khennane, A. Uniaxial model for the thermo-mechanical behaviour of concrete at elevated temperatures. St. Lucia: University of Queensland, Dept. of Civil Engineering, 1989.

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41

L, Chung Deborah D., ed. X-ray diffraction at elevated temperatures: A method for in situ process analysis. New York: VCH, 1993.

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42

Khennane, Amar. A uniaxial model for the thermo-mechanical behaviour of concrete at elevated temperatures. St. Lucia: University of Queensland, Dept. of Civil Engineering, 1989.

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43

C, DellaCorte, and United States. National Aeronautics and Space Administration., eds. Tribological characteristics of sputtered Au/Cr films on alumina substrates at elevated temperatures. [Washington, DC]: National Aeronautics and Space Administration, 1993.

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44

1935-, Adams Donald Frederick, and United States. National Aeronautics and Space Administration., eds. Static tensile and tensile creep testing of five ceramic fibers at elevated temperatures. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1989.

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45

LeVan, Susan. Effects of fire retardant chemicals on the bending properties of wood at elevated temperatures. Madison, WI: U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 1990.

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46

Gates, Thomas S. The effects of physical aging at elevated temperatures on the viscoelastic creep of IM7/K3B. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1994.

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47

United States. National Aeronautics and Space Administration., ed. The analysis of fatigue crack growth mechanism and oxidation and fatigue life at elevated temperatures. [Washington, DC: National Aeronautics and Space Administration, 1988.

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48

Kevin, Rivers H., Smith Russell W, and Langley Research Center, eds. Thermal output of WK-type strain gauges on various materials at cryogenic and elevated temperatures. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1998.

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49

V, Levy Alan, National Association of Corrosion Engineers. Group Committee T-2, and Conference on Corrosion-Erosion-Wear of Materials at Elevated Temperatures (3rd : 1986 : Berkeley, Calif.), eds. Proceedings, Corrosion-Erosion-Wear of Materials at Elevated Temperatures, Berkeley, California, January 27-29, 1986. Houston, Texas: National Association of Corrosion Engineers, 1987.

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50

Kevin, Rivers H., Smith Russell W, and Langley Research Center, eds. Thermal output of WK-type strain gauges on various materials at cryogenic and elevated temperatures. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1998.

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