Libri sul tema "Composites"

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1

author, Gupta A. C., a cura di. Polymer composites. London: New Academic Science, 2019.

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2

(Firm), Knovel, a cura di. Composite materials handbook: Metal matrix composites. [Washington, D.C.?]: U.S. Department of Defense, 2002.

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3

M, Tarnopolʹskiĭ I͡U. Spatially reinforced composites. Lancaster, Pa., U.S.A: Technomic Pub. Co., 1992.

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4

International, ASM, a cura di. Advanced polymer composites. Materials Park, OH: ASM International, 1994.

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5

J, Reinhart Theodore, Dostal Cyril A e ASM Handbook Committee., a cura di. Composites. Metals Park, Ohio: ASM International, 1987.

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6

Piggott, Michael R. Load bearing fibre composites. 2a ed. Boston: Kluwer Academic, 2002.

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7

1939-, Vigo Tyrone L., e Kinzig Barbara J, a cura di. Composite applications: The role of matrix, fiber, and interface. New York, N.Y: VCH, 1992.

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8

American Society of Civil Engineers. Materials Engineering Division. Journal of composites for construction. New York, NY: American Society of Civil Engineers, 1997.

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9

George, Lubin, e Peters S. T, a cura di. Handbook of composites. 2a ed. London: Chapman & Hall, 1998.

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10

Niska, Kristiina Oksman, e Mohini Sain. Wood-polymer composites. Cambridge, U.K: Woodhead Publishing Ltd., 2008.

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11

International Conference on Woodfiber-Plastic Composites (8th 2005 Madison, Wis.). Eighth International Conference on Woodfiber-Plastic Composites (and other natural fibers): May 23-25, 2005, Monona Terrace Community & Convention Center, Madison, Wisconsin, USA. Madison, WI: Forest Products Society, 2005.

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12

M, Gammon Luther, a cura di. Optical microscopy of fiber reinforced composites. Materials Park, Ohio: ASM International, 2010.

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13

1941-, Creese Robert C., GangaRao Hota V. S, West Virginia University. College of Engineering and Mineral Resources. Constructed Facilities Center. e Conference on Polymer Composites (1999 : Parkersburg, W. Va.), a cura di. Polymer composites III 2004: Transportation infrastructure, defense and novel applications of composites. Lancaster, PA: DEStech Publications, Inc., 2004.

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14

Symposium on Toughened Composites (1985 Houston, Tex.). Toughened composites: Symposium on Toughened Composites. A cura di Johnston Norman J. 1934- e ASTM Committee D-30 on High Modulus Fibers and Their Composites. Philadelphia, PA: American Society for Testing and Materials, 1987.

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15

Steel Construction Institute (Great Britain), a cura di. Design of composite trusses =: Dimensionnement de treillis composites. Ascot: Steel Construction Institute, 1992.

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16

(Firm), Knovel, a cura di. Fatigue life prediction of composites and composite structures. Oxford: Woodhead Publishing, 2010.

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17

National Institute for Aviation Research (U.S.), a cura di. Composite materials handbook: Polymer matrix composites, materials properties. Warrendale, Pa.]: SAE International on behalf of CMH-17, a division of Wichita State University, 2018.

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18

Gent, Design Museum, a cura di. Fibre-fixed: Composites in design. Oostkamp: Stitching Kunstboek, 2018.

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19

D, Buckley John, e Edie Danny D. 1943-, a cura di. Carbon-carbon materials and composites. Park Ridge, N.J., U.S.A: Noyes Publications, 1993.

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20

I͡A, Kint͡sis T., a cura di. Static test methods for composites. New York, N.Y: Van Nostrand Reinhold Co., 1985.

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21

Tredway, W. K. Carbon fiber reinforced glass matrix composites for satellite applications. East Hartford, Ct: United Technologies Research Center, 1992.

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22

International Conference on Woodfiber-Plastic Composites (6th 2001 Madison, Wis.). Sixth International Conference on Woodfiber-Plastic Composites: May 15-16, 2001, the Madison Concourse Hotel, Madison, Wisconsin. Madison, WI: Forest Products Society, 2002.

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23

International Conference on Woodfiber-Plastic Composites (5th 1999 Madison, Wis.). Fifth International Conference on Woodfiber-Plastic Composites: May 26-27, 1999, the Madison Concourse Hotel, Madison, Wisconsin. Madison, Wis: Forest Products Society, 1999.

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24

1959-, Spragg Christopher J., Drzal Lawrence T, ASTM Committee D-30 on High Modulus Fibers and Their Composites. e Symposium on Fiber, Matrix, and Interface Properties (1994 : Phoenix, Ariz.), a cura di. Fiber, matrix, and interface properties. West Conshohocken, Penn: ASTM, 1996.

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25

Ceramic matrix composites. 2a ed. Boston: Kluwer Academic, 2003.

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26

Ceramic matrix composites. London: Chapman & Hall, 1993.

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27

M, Margolis James, a cura di. Advanced thermoset composites: Industrial and commercial applications. New York: Van Nostrand Reinhold, 1986.

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28

Pierre, Delhaes, a cura di. Fibers and composites. London: Taylor & Francis, 2003.

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29

Yosomiya, Ryūtoku. Adhesion and bonding in composites. New York: M. Dekker, 1990.

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30

Sidney, Mindess, a cura di. Fibre reinforced cementitious composites. London: Elsevier Applied Science, 1990.

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31

Fundamental principles of fiber reinforced composites. Lancaster: Technomic Pub. Co., 1989.

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32

M, Haddad Y., e North Atlantic Treaty Organization. Scientific Affairs Division., a cura di. Advanced multilayered and fibre-reinforced composites. Dordrecht: Kluwer Academic, 1998.

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33

Fundamental principles of fiber reinforced composites. 2a ed. Lancaster, PA: Technomic Pub. Co., 1993.

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34

M, Haddad Y., e NATO Advanced Research Workshop on Multilayered and Fibre-Reinforced Composites: Problems and Prospects (1997 : Kiev, Ukraine), a cura di. Advanced multilayered and fibre-reinforced composites. Dordrecht: Kluwer Academic Publishers, 1998.

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35

Kelly, A., M. Ashby, Carl H. Zweben, A. A. Baker e P. Beardmore. Comprehensive Composite Materials: Polymer Matrix Composites. Pergamon Pr, 2000.

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36

Composite Materials Handbook: Metal Matrix Composites. Society of Automotive Engineers, 2013.

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37

Jawaid, Mohammad, Naheed Saba e Mohamed Thariq. Failure Analysis in Biocomposites, Fibre-Reinforced Composites and Hybrid Composites. Elsevier Science & Technology, 2018.

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38

Jawaid, Mohammad, Naheed Saba e Mohamed Thariq. Failure Analysis in Biocomposites, Fibre-Reinforced Composites and Hybrid Composites. Elsevier Science & Technology, 2018.

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39

Kreider, Kenneth G. Metallic Matrix Composites: Composite Materials, Vol. 4. Elsevier Science & Technology Books, 2016.

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40

De, SK. Short Fibre-Polymer Composites. CRC, 1996.

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41

Composites. Elsevier, 1999. http://dx.doi.org/10.1016/b978-1-85617-354-4.x5000-0.

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42

Miracle, Daniel B., e Steven L. Donaldson, a cura di. Composites. ASM International, 2001. http://dx.doi.org/10.31399/asm.hb.v21.9781627081955.

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43

Company, The Turner Moss. Composites. 2a ed. CRC Press Inc, 1991.

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44

Jawaid, Mohammad, Naheed Saba e Mohamed Thariq. Durability and Life Prediction in Biocomposites, Fibre-Reinforced Composites and Hybrid Composites. Elsevier Science & Technology, 2018.

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45

(Editor), A. M. Brandt, V. C. Li (Editor) e I. H. Marshall (Editor), a cura di. Brittle Matrix Composites 7. Woodhead Publishing, 2003.

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46

Marshall, I. H., A. M. Brandt e V. C. Li. Brittle Matrix Composites 7. Elsevier Science & Technology, 2003.

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47

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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Abstract (sommario):
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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48

Thakur, Vijay Kumar, Manju Kumari Thakur e Michael R. Kessler. Handbook of Composites from Renewable Materials, Polymeric Composites. Wiley & Sons, Incorporated, John, 2017.

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49

Thakur, Vijay Kumar, Manju Kumari Thakur e Michael R. Kessler. Handbook of Composites from Renewable Materials, Polymeric Composites. Wiley & Sons, Incorporated, John, 2017.

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50

K, Malhotra S., Sabu Thomas, Kuruvilla Joseph, Koichi Goda e M. S. Sreekala. Polymer Composites, Nanocomposites Vol. 2. Wiley & Sons, Incorporated, John, 2013.

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