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1

Rushchitsky, Jeremiah J. Nonlinear Elastic Waves in Materials. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-00464-8.

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2

Alfutov, N. A. Stability of Elastic Structures. Berlin, Heidelberg: Springer Berlin Heidelberg, 2000.

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3

Wolfenden, A., ed. Dynamic Elastic Modulus Measurements in Materials. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959: ASTM International, 1990. http://dx.doi.org/10.1520/stp1045-eb.

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4

Eduard-Marius, Cracium, and Soós E, eds. Mechanics of elastic composites. Boca Raton, Fla: Chapman & Hall/CRC, 2004.

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5

Hwu, Chyanbin. Anisotropic elastic plates. New York: Springer, 2010.

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6

C, Xi Z., ed. Elastic waves in anisotropic laminates. Boca Raton, USA: CRC Press, 2001.

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7

Reddy, J. N. Geometrically nonlinear analysis laminated elastic structures. [Washington, DC]: National Aeronautics and Space Administration, 1993.

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8

Yuan, Huang. Numerical Assessments of Cracks in Elastic-Plastic Materials. Berlin, Heidelberg: Springer Berlin Heidelberg, 2002. http://dx.doi.org/10.1007/978-3-540-45882-1.

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9

Kallio, Marke. The elastic and damping properties of magnetorheological elastomers. [Espoo, Finland]: VTT Technical Research Centre of Finland, 2005.

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10

Steigmann, David J., and R. W. Ogden. Mechanics and electrodynamics of magneto-and electro-elastic materials. Wien: Springer, 2011.

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11

Ogden, Ray W., and David J. Steigmann, eds. Mechanics and Electrodynamics of Magneto- and Electro-elastic Materials. Vienna: Springer Vienna, 2011. http://dx.doi.org/10.1007/978-3-7091-0701-0.

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12

Structure, deformation, and integrity of materials. Weinheim: Wiley-VCH, 2006.

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13

1963-, Hinders Mark K., ed. Interface effects in elastic wave scattering. Berlin: Springer-Verlag, 1994.

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14

Atkins, A. G. Elastic and plastic fracture: Metals, polmers, ceramics, composites, biological materials. Chichester: Ellis Horwood, 1988.

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15

1946-, Mai Y. W., ed. Elastic and plastic fracture: Metals, polymers, ceramics, composites, biological materials. Chichester: Ellis Horwood, 1985.

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16

Atkins, Anthony G. Elastic and plastic fracture: Metals, polymers, ceramics, composites, biological materials. Chichester: Ellis Horwood, 1988.

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17

Lustman, Liviu. A three dimensional calculation of elastic equilibrium for composite materials. Hampton, Va: ICASE, 1986.

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18

Joyce, J. A. Manual on elastic-plastic fracture: Laboratory test procedures. West Conshohocken, PA: ASTM, 1996.

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19

Jasim, Mahdi Hadi. Elastic and inelastic scattering of fast neutrons in fusion reactor materials. Birmingham: University of Aston. Department of Mathematics and Physics, 1985.

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20

Linear elastic fracture mechanics for engineers: Theory and applications. Southampton, UK: WIT Press, 2000.

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21

Piatak, David J. Stiffness characteristics of composite rotor blades with elastic couplings. Washington, D.C: National Aeronautics and Space Administration, 1997.

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22

Markoš, Peter. Wave propagation: From electrons to photonic crystals and left-handed materials. Princeton: Princeton University Press, 2008.

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23

Markoš, Peter. Wave propagation: From electrons to photonic crystals and left-handed materials. Princeton: Princeton University Press, 2008.

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24

Markoš, Peter. Wave propagation: From electrons to photonic crystals and left-handed materials. Princeton: Princeton University Press, 2008.

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25

1952-, Saleeb Atef F., ed. Constitutive equations for engineering materials. Amsterdam: Elsevier, 1994.

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26

Viscoelasticity of engineering materials. London: Chapman & Hall, 1995.

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27

Nazarov, V. E. Nonlinear acoustic waves in micro-inhomogeneous solids. Hoboken, NJ: John Wiley & Sons Inc., 2015.

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28

Jaime, Planas, ed. Fracture and size effect in concrete and other quasibrittle materials. Boca Raton: CRC Press, 1998.

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29

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

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30

Sun, C. T. Characterization of elastic-plastic properties of AS4/APC-2 thermoplastic composite. Hampton, Va: Langley Research Center, 1988.

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31

Bielski, W. Nonstationary flows of viscous fluids through porous elastic media: Homogenization method. Warszawa: Institute of Geophysics, Polish Academy of Sciences, 2005.

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32

Kang, Feng. Mathematical theory of elastic structures. Berlin: Springer, 1996.

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33

Thomas, Lewis J. Ultrasonic backscattering: A quantitative index of the elastic properties of inherently inhomogeneous media. Saint Louis, Mo: Washington University, 1985.

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34

W, Mar James, and Pian, Theodore H. H., 1919-, eds. Statics of deformable solids. New York: Dover, 1990.

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35

Mechanics of materials: An introduction to the mechanics of elastic and plastic deformation of solids and structural materials. 3rd ed. Oxford: Butterworth-Heinemann, 1997.

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36

Johnson, W. S. Elastic-plastic stress concentrations around crack-like notches in continuous fiber reinforced metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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37

Johnson, W. S. Elastic-plastic stress concentrations around crack-like notches in continuous fiber reinforced metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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38

Hearn, E. J. Mechanics of materials: An introduction to the mechanics of elastic and plastic deformation of solids and structural components. 2nd ed. Oxford, OX, England: Pergamon Press, 1985.

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39

Hearn, E. J. Mechanics of materials: An introduction to the mechanics of elastic and plastic deformation of solids and structural components. 3rd ed. Boston: Butterworth-Heinemann, 1997.

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40

Mechanics of materials: An introduction to the mechanics of elastic and plastic deformation of solids and structural components. 2nd ed. Oxford, OX, England: Pergamon Press, 1989.

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41

Mechanics of materials: An introduction to the mechanics of elastic and plastic deformation of solids and structural components. 2nd ed. Oxford: Butterworth-Heinemann, 1995.

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42

Ahzi, S., M. Cherkaoui, M. A. Khaleel, H. M. Zbib, M. A. Zikry, and B. Lamatina, eds. IUTAM Symposium on Multiscale Modeling and Characterization of Elastic-Inelastic Behavior of Engineering Materials. Dordrecht: Springer Netherlands, 2004. http://dx.doi.org/10.1007/978-94-017-0483-0.

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43

Prosser, William H. Ultrasonic characterization of the nonlinear elastic properties of unidirectional graphite/epoxy composites. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Division, 1988.

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44

Prosser, William H. Ultrasonic characterization of the nonlinear elastic properties of unidirectional graphite/epoxy composites. Hampton, Va: Langley Research Center, 1987.

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45

Parker, E. J. A new technique to measure the dynamic elastic constants of rubber-like materials under load. Birmingham: University of Birmingham, 1996.

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46

Jüri, Engelbrecht, and Maugin G. A. 1944-, eds. Numerical simulation of waves and fronts in inhomogeneous solids. New Jersey: World Scientific, 2008.

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47

Akbarov, Surkay. Stability Loss and Buckling Delamination: Three-Dimensional Linearized Approach for Elastic and Viscoelastic Composites. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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48

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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49

Balint, Daniel S., and Stephane P. A. Bordas. Elastic Metamaterials. Elsevier Science & Technology, 2018.

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50

Rushchitsky, Jeremiah J. Nonlinear Elastic Waves in Materials. Springer, 2017.

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