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1

Freger, G. E., V. N. Kestelman e D. G. Freger. Spirally Anisotropic Composites. Berlin, Heidelberg: Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-662-09975-9.

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2

Freger, G. E. Spirally Anisotropic Composites. Berlin, Heidelberg: Springer Berlin Heidelberg, 2004.

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3

Robinson, David N. A hydrostatic stress-dependent anisotropic model of viscoplasticity. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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4

Q, Tao, Verrilli M. J e United States. National Aeronautics and Space Administration., eds. A hydrostatic stress-dependent anisotropic model of viscoplasticity. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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5

Nayfeh, Adnan H. Wave propagation in layered anisotropic media: With applications to composites. Amsterdam: Elsevier, 1995.

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6

F, Knight Norman, Ambur Damodar R e United States. National Aeronautics and Space Administration., eds. Buckling analysis of anisotropic curved panels and shells with variable curvature. [Washington, D.C: National Aeronautics and Space Administration, 1998.

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7

F, Knight Norman, Ambur Damodar R e United States. National Aeronautics and Space Administration., eds. Buckling analysis of anisotropic curved panels and shells with variable curvature. [Washington, D.C: National Aeronautics and Space Administration, 1998.

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8

M, Arnold S., Al-Zoubi Nasser R e NASA Glenn Research Center, eds. A study of time-dependent and anisotropic effects on the deformation response of two flywheel designs. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2003.

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9

M, Arnold S., Al-Zoubi Nasser R e NASA Glenn Research Center, eds. A study of time-dependent and anisotropic effects on the deformation response of two flywheel designs. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2003.

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10

Saleeb, Atef F. A study of time-dependent and anisotropic effects on the deformation response of two flywheel designs. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2003.

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11

Center, Langley Research, ed. Buckling behavior of long anisotropic plates subjected to combined loads. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1995.

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12

C, Marques Elizabeth R., Lee Samson S, Lewis Research Center e United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch., eds. Wave propagation in anisotropic medium due to an oscillatory point source with application to unidirectional composites. [Washington, D.C.]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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13

H, Williams James. Wave propagation in anisotropic medium due to an oscillatory point source with application to unidirectional composites. [Washington, D.C.]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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14

Center, Langley Research, ed. Buckling behavior of long symmetrically laminated plates subjected to shear and linearly varying axial edge loads. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1997.

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15

Nemeth, Michael P. Buckling behavior of long symmetrically laminated plates subjected to shear and linearly varying axial edge loads. Washington, D.C: National Aeronautics and Space Administration, 1997.

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16

Marques, Elizabeth R. C. Stress waves in transversely isotropic media: The homogeneous problems. Cleveland, Ohio: Lewis Research Center, 1986.

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17

H, Williams James, United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch. e Lewis Research Center, eds. Stress waves in transversely isotropic media: The homogeneous problem. [Washington, D.C.]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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18

Gopalakrishnan, S. Spectral finite element method: Wave propagation, diagnostics and control in anisotropic and inhomogenous structures. London: Springer, 2008.

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19

Gopalakrishnan, S. Spectral finite element method: Wave propagation, diagnostics and control in anisotropic and inhomogenous structures. London: Springer, 2008.

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20

Gopalakrishnan, S. Spectral finite element method: Wave propagation, diagnostics and control in anisotropic and inhomogenous structures. London: Springer, 2008.

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21

Friedel, Michael. Documentation and verification of VST2D: A model for simulating transient, variably saturated, coupled water-heat-solute transport in heterogeneous, anisotropic, 2-dimensional, ground-water systems with variable fluid density. Urbana, Ill. (221 North Broadway Ave., Urbana 61801): U.S. Dept. of the Interior, U.S. Geological Survey, 2001.

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22

Friedel, Michael. Documentation and verification of VST2D: A model for simulating transient, variably saturated, coupled water-heat-solute transport in heterogeneous, anisotropic, 2-dimensional, ground-water systems with variable fluid density. Urbana, IL: U.S. Dept. of the Interior, U.S. Geological Survey, 2001.

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23

Friedel, Michael. Documentation and verification of VST2D: A model for simulating transient, variably saturated, coupled water-heat-solute transport in heterogeneous, anisotropic, 2-dimensional, ground-water systems with variable fluid density. Urbana, Ill. (221 North Broadway Ave., Urbana 61801): U.S. Dept. of the Interior, U.S. Geological Survey, 2001.

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24

Friedel, Michael. Documentation and verification of VST2D: A model for simulating transient, variably saturated, coupled water-heat-solute transport in heterogeneous, anisotropic, 2-dimensional, ground-water systems with variable fluid density. Urbana, Ill. (221 North Broadway Ave., Urbana 61801): U.S. Dept. of the Interior, U.S. Geological Survey, 2001.

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25

Spirally Anisotropic Composites. Springer, 2004.

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26

Dekel, Shai. Pointwise Variable Anisotropic Function Spaces on ℝⁿ. De Gruyter, 2022. http://dx.doi.org/10.1515/9783110761795.

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27

Dekel, Shai. Pointwise Variable Anisotropic Function Spaces On ℝⁿ. de Gruyter GmbH, Walter, 2022.

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28

Dekel, Shai. Pointwise Variable Anisotropic Function Spaces On ℝⁿ. de Gruyter GmbH, Walter, 2022.

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29

Dekel, Shai. Pointwise Variable Anisotropic Function Spaces On ℝⁿ. de Gruyter GmbH, Walter, 2022.

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30

A hydrostatic stress-dependent anisotropic model of viscoplasticity. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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31

A hydrostatic stress-dependent anisotropic model of viscoplasticity. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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32

Wave Propagation in Layered Anisotropic Media - with Applications to Composites. Elsevier, 1995. http://dx.doi.org/10.1016/s0167-5931(06)x8001-4.

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33

Nayfeh, A. H. Wave Propagation in Layered Anisotropic Media: With Application to Composites. Elsevier Science & Technology Books, 1995.

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34

Chimenti, Dale, Stanislav Rokhlin e Peter Nagy. Physical Ultrasonics of Composites. Oxford University Press, 2011. http://dx.doi.org/10.1093/oso/9780195079609.001.0001.

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Physical Ultrasonics of Composites is a rigorous introduction to the characterization of composite materials by means of ultrasonic waves. Composites are treated here not simply as uniform media, but as inhomogeneous layered anisotropic media with internal structure characteristic of composite laminates. The objective here is to concentrate on exposing the singular behavior of ultrasonic waves as they interact with layered, anisotropic materials, materials which incorporate those structural elements typical of composite laminates. This book provides a synergistic description of both modeling and experimental methods in addressing wave propagation phenomena and composite property measurements. After a brief review of basic composite mechanics, a thorough treatment of ultrasonics in anisotropic media is presented, along with composite characterization methods. The interaction of ultrasonic waves at interfaces of anisotropic materials is discussed, as are guided waves in composite plates and rods. Waves in layered media are developed from the standpoint of the "Stiffness Matrix", a major advance over the conventional, potentially unstable Transfer Matrix approach. Laminated plates are treated both with the stiffness matrix and using Floquet analysis. The important influence on the received electronic signals in ultrasonic materials characterization from transducer geometry and placement are carefully exposed in a dedicated chapter. Ultrasonic wave interactions are especially susceptible to such influences because ultrasonic transducers are seldom more than a dozen or so wavelengths in diameter. The book ends with a chapter devoted to the emerging field of air-coupled ultrasonics. This new technology has come of age with the development of purpose-built transducers and electronics and is finding ever wider applications, particularly in the characterization of composite laminates.
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35

Hybrid anisotropic materials for structural aviation parts. Boca Raton: CRC Press, 2011.

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36

Golfman, Yosif. Hybrid Anisotropic Materials for Structural Aviation Parts. Taylor & Francis Group, 2016.

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37

Golfman, Yosif. Hybrid Anisotropic Materials for Structural Aviation Parts. Taylor & Francis Group, 2017.

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38

A study of time-dependent and anisotropic effects on the deformation response of two flywheel designs. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2003.

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39

Buckling behavior of long anisotropic plates subjected to combined loads. [Washington, D.C: National Aeronautics and Space Administration, 1995.

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40

Pujala, Ravi Kumar. Dispersion Stability, Microstructure and Phase Transition of Anisotropic Nanodiscs. Springer, 2016.

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41

Pujala, Ravi Kumar. Dispersion Stability, Microstructure and Phase Transition of Anisotropic Nanodiscs. Springer London, Limited, 2014.

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42

Dispersion Stability, Microstructure and Phase Transition of Anisotropic Nanodiscs. Springer, 2014.

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43

Gopalakrishnan, Srinivasan, Debiprosad Roy Mahapatra e Abir Chakraborty. Spectral Finite Element Method: Wave Propagation, Diagnostics and Control in Anisotropic and Inhomogeneous Structures. Springer London, Limited, 2010.

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44

Gopalakrishnan, Srinivasan, Debiprosad Roy Mahapatra e Abir Chakraborty. Spectral Finite Element Method: Wave Propagation, Diagnostics and Control in Anisotropic and Inhomogenous Structures (Computational Fluid and Solid Mechanics). Springer, 2007.

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