Books on the topic 'Stresses and deformations condition'

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1

Patnaik, Surya N. Compatibility conditions of structural mechanics for finite element analysis. [Washington, DC]: National Aeronautics and Space Administration, 1990.

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2

1934-, Favre R., ed. Concrete structures: Stresses and deformations. London: Chapman and Hall, 1986.

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3

1934-, Favre R., and El-Badry Mamdouh Mohamed 1953-, eds. Concrete structures: Stresses and deformations. 3rd ed. London: Spon Press, 2002.

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4

Indian Institute of Technology, Delhi. Dept. of Civil Engineering. Soil and Rock Engineering Division. Evaluation of stresses and deformations around underground openings. New Delhi: Central Board Irrigation & Power, 1986.

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5

Ieşan, Dorin. Thermoelastic deformations. Dordrecht: Kluwer Academic, 1996.

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6

1934-, Favre R. (Renaud), and Elbadry M, eds. Concrete structures: Stresses and deformations : analysis and design for serviceability. 4th ed. London: Taylor & Francis, 2012.

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7

Botvenko, S. I. Ostatochnye napri︠a︡zhenii︠a︡ i deformat︠s︡ii pri izgotovlenii detaleĭ tipa plastin s podkreplenii︠a︡mi: Monografii︠a︡. Irkutsk: Izdatelʹstvo Irkutskogo gosudarstvennogo tekhnicheskogo universiteta, 2012.

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8

IUTAM Symposium (1991 Luleå, Sweden). Mechanical effects of welding: IUTAM Symposium, Luleå, Sweden, 1991. Berlin: New York, 1992.

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9

Samedov, A. M. Deformirovanie i razrushenie konstrukt͡s︡iĭ pri termosilovykh vozdeĭstvii͡a︡kh. Moskva: Stroĭizdat, 1989.

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10

Taboada, José Antonio González. Tensiónes y deformaciónes en materiales elásticos. Santiago de Compostela: Universidade de Santiago de Compostela, Servicio de Publicacións e Intercambio Científico, 1989.

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11

P, Staudhammer Karl, Murr Lawrence Eugene, and Meyers Marc A, eds. Fundamental issues and applications of shock-wave and high strain-rate phenomena: Proceedings of the 2000 International Conference on Fundamental Issues and Applications of Shock-Wave and High-Strain-Rate Phenomena (EXPLOMET '2000). New York: Elsevier, 2001.

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12

Hidekazu, Murakawa, and Ma Ninshu, eds. Welding deformation and residual stress prevention. Amsterdam: Butterworth-Heinemann, 2012.

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13

Christ, Hans-Jürgen. Wechselverformung von Metallen: Zyklisches Spannungs-Dehnungs-Verhalten und Mikrostruktur. Berlin: Springer-Verlag, 1991.

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14

Mechanics of finite deformation and fracture. Toronto: Apple Academic Press, 2015.

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15

Gräser, Ralf-Gunter. Ein Verfahren zur Kompensation temperaturinduzierter Verformungen an Industrierobotern. München: Utz, 1999.

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16

Hyer, M. W. Stresses and deformations in cross-ply composite tubes subjected to a uniform temperature change: Elasticity and approximate solutions. Blacksburg, Va: Center for Composite Materials and Structures, Virginia Polytechnic Institute and State University, 1985.

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17

Karlsson, Lennart. Mechanical Effects of Welding: IUTAM Symposium, Luleå/Sweden, June 10-14, 1991. Berlin, Heidelberg: Springer Berlin Heidelberg, 1992.

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18

Mitter, Werner. Umwandlungsplastizität und ihre Berücksichtigung bei der Berechnung von Eigenspannungen. Berlin: Borntraeger, 1987.

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19

Pressure, Vessels and Piping Conference (1987 San Diego Calif ). Thermal stress, material deformation, and thermo-mechanical fatigue: Presented at the 1987 Pressure Vessels and Piping Conference, San Diego, California, June 28-July 2, 1987. New York, N.Y. (345 E. 47th St., New York 10017): American Society of Mechanical Engineers, 1987.

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20

Holnicki-Szulc, Jan. Virtual distortion method. Berlin: Springer-Verlag, 1991.

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21

Luehring, Ronald W. Methods for determining in situ deformation of rock masses. Denver, Colo: Geotechnical Branch, Division of Research and Laboratory Services, Engineering and Research Center, U.S. Dept. of the Interior, Bureau of Reclamation, 1988.

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22

Perlt, James. Ein geokinematisches Modell für Island. Braunschweig: IGP, 2006.

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23

Pressure Vessels and Piping Conference (1989 Honolulu, Hawaii). Weld residual stresses and plastic deformation: Presented at the 1989 ASME Pressure Vessels and Piping Conference, JSME co-sponsorship, Honolulu, Hawaii, July 23-27, 1989. Edited by Rybicki E. F, Shiratori M. 1942-, American Society of Mechanical Engineers., and Nihon Kikai Gakkai. New York, N.Y: American Society of Mechanical Engineers, 1989.

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24

Wei, Cai, and Zheng Yufeng, eds. He jin de xing zhuang ji yi xiao ying yu chao tan xing: Shape memory effect and superelasticity in alloys. Beijing: Guo fang gong ye chu ban she, 2002.

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25

service), SpringerLink (Online, ed. Interference-optical Methods of Solid Mechanics. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2011.

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26

Earthquake and volcano deformation. Princeton: Princeton University Press, 2010.

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27

Bondarʹ, V. S. Inelasticity: Variants of the theory. New York: Begell House, Inc., 2013.

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28

International Conference on Metallurgical and Materials Applications of Shock-Wave and High-Strain-Rate Phenomena (1995 El Paso, Tex.). Metallurgical and materials applications of shock-wave and high-strain-rate phenomena: Proceedings of the 1995 International Conference on Metallurgical and Materials Applications of Shock-Wave and High-Strain-Rate Phenomena (EXPLOMET '95). Amsterdam: Elsevier, 1995.

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29

Bondarʹ, V. S. Neuprugostʹ: Varianty teorii. Moskva: Fizmatlit, 2004.

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30

Magnucka-Blandzi, Ewa. Stateczność belek i płyt trójwarstwowych oraz belek cienkościennych kształtowanych na zimno. Poznań: Wydawnictwo Politechniki Poznańskiej, 2010.

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31

Michaleris, Pan. Minimization of welding distortion and buckling: Modelling and implementation. Oxford: WP, Woodhead Publishing, 2011.

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32

Gleich, Sven. Simulation des thermischen Verhaltens spanender Werkzeugmaschinen in der Entwurfsphase. Chemnitz: Fraunhofer-Institut für Werkzeugmaschinen und Umformtechnik, IWU, 2008.

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33

Investigación no destructiva y cargas extremas en estructuras. Bogotá, Colombia: Universidad de los Andes, Facultad de Ingeniería, Departamento de Ingeniería Civil y Ambiental, 2004.

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34

Łodygowski, Tomasz. Advances in constitutive relations applied in computer codes. Wien: Springer Verlag, 2009.

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35

Eberhardshtayner, Yozef, Sergey Leonovich, and Valentin Dorkin. Design models of structural building materials under multiaxial stress. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1082947.

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The monograph presents the results of experimental and theoretical studies of the behavior of wood and concrete of various structures under biaxial and triaxial compression. It contains a systematic classification of existing models for concrete that link three-axis nonlinear elastic stresses and deformations, as well as research and subsequent evaluation of some basic models from the point of view of their possible use in the framework of spatial load analysis using FEM. It is intended for scientific and engineering workers of research and design organizations.
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36

Liviu, Librescu, and Joint Mechanics Meeting of ASME, ASCE, SES (1st : 1993 : Charlottesville, Va.), eds. Non-classical problems of the theory and behavior of structures exposed to complex environmental conditions: Presented at the 1st Joint Mechanics Meeting of ASME, ASCE, SES, MEET'N '93, Charlottesville, Virginia, June 6-9, 1993. New York: American Society of Mechanical Engineers, 1993.

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37

Ghali, A. Concrete Structures: Stresses and Deformations. 2nd ed. Spon Press, 1994.

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38

India. Central Board of Irrigation and Power. and India. Ministry of Water Resources., eds. Evaluation of stresses and deformations around underground openings. New Delhi: Central Board of Irrigation and Power, 1991.

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39

W, Hyer M., Tompkins Stephen S, and Langley Research Center. Applied Materials Branch., eds. Stresses and deformations in angle-ply composite tubes. Hampton, VA: Applied Materials Branch, National Aeronautics and Space Administration, Langley Research Center, 1987.

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40

Scalia, Antonio, and D. Iesan. Thermoelastic Deformations. Springer, 2010.

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41

N, Chernyshev G., ed. Ostatochnye napri͡a︡zhenii͡a︡ v deformiruemykh tverdykh telakh. Moskva: Nauka, Fizmatlit, 1996.

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42

Franson, Jeffrey R. Formation of adiabatic shear bands in metal-forming processes. 1992.

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43

V, Moshev V., Rogovoĭ A. A, Golotina L. A, and Akademii͡a︡ nauk SSSR. Uralʹskiĭ nauchnyĭ t͡s︡entr., eds. Napri͡a︡zhenii͡a︡ i deformat͡s︡ii v konstrukt͡s︡ii͡a︡kh i materialakh. Sverdlovsk: Akademii͡a︡ nauk SSSR, Uralʹskiĭ nauch. t͡s︡entr, 1985.

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44

V, Belinskiĭ I., and Instytut heofizyky imeni S.I. Subbotina. Viddilenni͡a︡ heodynamiky vybukhu., eds. Deformiruemye sredy pri impulʹsnykh nagruzkakh: Sbornik nauchnykh trudov. Kiev: Nauk. dumka, 1992.

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45

Karlsson, L., and Lowell E. Lindgren. Mechanical Effects of Welding: Iutam Symposium, Lulea/Sweden June 10-14, 1991 (I U T a M - Symposien). Springer, 1992.

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46

(Editor), Lennart Karlsson, E. Lindgren (Editor), and M. Jonsson (Editor), eds. Mechanical Effects of Welding (IUTAM Symposia). Springer-Verlag Berlin and Heidelberg GmbH & Co. K, 1992.

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47

Staudhammer, K. P., L. E. Murr, and M. A. Meyers. Fundamental Issues and Applications of Shock-Wave and High-Strain-Rate Phenomena. Elsevier Science, 2001.

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48

Staudhammer, K. P., L. E. Murr, and M. A. Meyers. Fundamental Issues and Applications of Shock-Wave and High-Strain-Rate Phenomena. Elsevier Science, 2001.

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49

Associates, Key, ed. FMA-3D theoretical manual: A program for simulating the large deformation, elastic and inelastic, transient dynamic response of three-dimensional solids and structures : version 7.43, March 26, 1994. Albuquerque, N.M: Key Associates, 1994.

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50

Center, Langley Research, ed. Micromechanics analysis of space simulated thermal deformations and stresses in continuous fiber reinforced composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1990.

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