Books on the topic 'Functionally graded materials (FGMs)'

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1

Pandey, Pulak M., Sandeep Rathee, Manu Srivastava, and Prashant K. Jain. Functionally Graded Materials (FGMs). Boca Raton: CRC Press, 2021. http://dx.doi.org/10.1201/9781003097976.

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2

Japan) International Symposium on MM & FGMs (10th 2008 Sendai-han. Multiscale, multifunctional and functionally graded materials: Selected, peer reviewed papers from the 10th International Symposium on MM & FGMs, 22nd-25th September 2008, Sendai, Japan. Stafa-Zuriich, Switzerland: Trans Tech, 2010.

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3

International Conference on Multiscale and Functionally Graded Materials (9th 2006 Oahu, Hawaii). Multiscale and functionally graded materials: Proceedings of the international conference, FGM IX, Oahu Island, Hawaii, 15-18 October 2006. Edited by Paulino G. H. Melville, N.Y: American Institute of Physics, 2008.

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4

Miyamoto, Y., W. A. Kaysser, B. H. Rabin, A. Kawasaki, and Reneé G. Ford, eds. Functionally Graded Materials. Boston, MA: Springer US, 1999. http://dx.doi.org/10.1007/978-1-4615-5301-4.

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5

Mahamood, Rasheedat Modupe, and Esther Titilayo Akinlabi. Functionally Graded Materials. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-53756-6.

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6

Reynolds, Nathan J. Functionally graded materials. Hauppauge, N.Y: Nova Science Publishers, 2011.

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7

International Symposium on Functionally Graded Materials (4th 1996 Tsukuba Kenkyū Sentā). Functionally graded materials, 1996. Amsterdam: Elsevier, 1997.

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8

Yoshinari, Miyamoto, ed. Functionally graded materials: Design, processing, and applications. Boston: Kluwer Academic Publishers, 1999.

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9

Ichikawa, Kiyoshi, ed. Functionally Graded Materials in the 21st Century. Boston, MA: Springer US, 2001. http://dx.doi.org/10.1007/978-1-4615-4373-2.

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10

1933-, Ghosh Asish, American Ceramic Society Meeting, and International Symposium on Manufacture, Properties, and Applications of Functionally Graded Materials (1996 : Indianapolis, Ind.), eds. Functionally graded materials: Manufacture, properties, and applications. Westerville, Ohio: American Ceramic Society, 1997.

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11

Chen, Weiqiu, Zheng Zhong, and Linzhi Wu. Mechanics of functionally graded materials and structures. Hauppauge, N.Y: Nova Science Publishers, 2010.

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12

Ibrāhīmī, Farzād. Progress in analysis of functionally graded structures. Hauppauge, NY: Nova Science Publisher, 2011.

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13

International Conference on Functionally Graded Materials, Technology Leveraged Applications (2002 Denver, Colo.). Functionally graded materials, technology leveraged applications: Proceedings of the 2002 International Conference on Functionally Graded Materials, Technology Leveraged Applications. Princeton, NJ: Metal Powder Industries Federation, 2002.

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14

Sobczak, Jerzy, and Ludmil Drenchev. Metal based functionally graded materials: Engineering and modeling. [Saif Zone, Sharjah, U.A.E.]: Bentham eBooks, 2009.

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15

Lee, Po-Hua. Fabrication, Characterization and Modeling of Functionally Graded Materials. [New York, N.Y.?]: [publisher not identified], 2013.

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16

Germany) International Conference on Thermo-Mechanically Graded Materials (1st 2012 Kassel. 1st International Conference on Thermo-Mechanically Graded Materials. Auerbach: Verlag Wissenschaftliche Scripten, 2012.

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17

International Symposium on Functionally Gradient Materials (7th 2002 Beijing, China). Functionally graded materials VII: Proceedings of the seventh International Symposium on Functionally Graded Materials (FGM2002) : Beijing, China, October 15-18, 2002. Uetikon-Zuerich, Switzerland: Trans Tech Publications, 2003.

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18

Functionally graded materials: Nonlinear analysis of plates and shells. Boca Raton: Taylor & Francis, 2009.

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19

International Symposium on Functionally Gradient Materials (6th 2000 Estes Park, Colorado). Functionally graded materials 2000: Proceedings of the 6th International Symposium on Functionally Graded Materials : Stanley Hotel, Estes Park, Colorado, USA, September 10-14, 2000. Westerville, Ohio: American Ceramic Society, 2001.

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20

International Symposium on Functionally Gradient Materials (4th 1996 Tsukuba-shi, Japan). Functionally graded materials 1996: Proceedings of the 4th International Symposium on Functionally Graded Materials, AIST Tsukuba Research Center, Tsukuba, Japan, October 21-24, 1996. Amsterdam: Elsevier, 1997.

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21

International, Symposium on Multifunctional and Functionally Graded Materials (8th 2004 Leuven Belgium). Functionally graded materials VIII: Proceedings of the 8th International Symposium on Multifunctional and Functionally Graded Materials (FGM2004) : held in Leuven, Belgium, 11-14 July 2004. Switzerland: Trans Tech Publications, 2005.

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22

International Symposium on Functionally Gradient Materials (5th 1998 Dresden, Germany). Functionally graded materials 1998: Proceedings of the 5th International Symposium on Functionally Graded Materials, held in New Town Hall, Dresden, Germany, October 26-29, 1998. Edited by Kaisser Wolfgang. Uetikon-Zuerich, Switzerland: Trans Tech Publications, 1999.

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23

International Symposium on Functionally Gradient Materials (5th 1998 Dresden, Germany). Functionally graded materials 1998: Proceedings of the 5th International Symposium on Functionally Graded Materials, held in New Town Hall, Dresden, Germany, October 26-29, 1998. Edited by Kaisser Wolfgang. Uetikon-Zuerich, Switzerland: Trans Tech Publications, 1999.

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24

1943-, Ichikawa Kiyoshi, ed. Functionally graded materials in the 21st century: A workshop on trends and forecasts. Boston: Kluwer Academic Publishers, 2001.

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25

Suresh, S. Fundamentals of functionally graded materials: Processing and thermomechanical behaviour of graded metals and metal-ceramic composites. London: IOM Communications Ltd, 1998.

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26

S, Suresh. Fundamentals of functionally graded materials: Processing and thermomechanical behaviour of graded metals and metal-ceramic composites. London: IOM Communications Ltd, 1998.

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27

Upton, B. Modelling the transition between the erosion regimes for functionally graded materials. Manchester: UMIST, 1995.

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28

author, Yue Zhongqi, ed. Fracture mechanics in layered and graded solids: Analysis using boundary element methods. Berlin: De Gruyter/Higher Education Press, 2014.

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29

Kazuhisa, Miyoshi, and NASA Glenn Research Center, eds. Sliding wear and fretting wear of DLC-based, functionally graded nanocomposite coatings. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 1999.

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30

S, Srivatsan T., American Society of Mechanical Engineers. Materials Division., and International Mechanical Engineering Congress and Exposition (1997 : Dallas, Tex.), eds. Composites and functionally graded materials: Presented at the 1997 ASME International Mechanical Engineering Congress and Exposition, November 16-21, 1997, Dallas, Texas. New York, N.Y: American Society of Mechanical Engineers, 1997.

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31

K, Binienda W., Kreider K, and NASA Glenn Research Center, eds. Analysis of a generally oriented crack in a functionally graded strip sandwiched between two homogeneous half planes. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 1999.

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32

United States. National Aeronautics and Space Administration., ed. Thermoelastic theory for the response of materials functionally graded in two directions with applications to the free-edge problem. [Washington, DC]: National Aeronautics and Space Administration, 1995.

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33

Patrick, Dunn, and United States. National Aeronautics and Space Administration., eds. An evaluation of a coupled microstructural approach for the analysis of functionally graded composites via the finite-element method. [Washington, DC: National Aeronautics and Space Administration, 1995.

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34

Functionally Graded Materials (fgms). Taylor & Francis Group, 2021.

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35

Ebrahimi, Farzad. Smart Functionally Graded Plates: Vibration Analysis of FGM Plates Coupled with Piezoelectric Layers. Nova Science Publishers, Incorporated, 2020.

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36

Ebrahimi, Farzad. Smart Functionally Graded Plates: Vibration Analysis of FGM Plates Coupled with Piezoelectric Layers. Nova Science Pub Inc, 2010.

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37

Smart functionally graded plates: Vibration Analysis of FGM plates coupled with piezoelectric layers", December 2010, Nova Science Publishers. Nova Science Publishers, 2010.

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38

Kaysser, Wolfgang A. Functionally Graded Materials. Trans Tech Publications, Limited, 1999.

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39

Zhong, Zheng. Functionally Graded Materials. Nova Science Publishers, Incorporated, 2011.

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40

Mahamood, Rasheedat Modupe, and Esther Titilayo Akinlabi. Functionally Graded Materials. Springer, 2018.

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41

Mahamood, Rasheedat Modupe, and Esther Titilayo Akinlabi. Functionally Graded Materials. Springer, 2017.

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42

Shen, Hui-Shen. Functionally Graded Materials. Taylor & Francis Group, 2019.

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43

Functionally Graded Materials 1996. Elsevier, 1997. http://dx.doi.org/10.1016/b978-0-444-82548-3.x5000-8.

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44

Functionally Graded Materials VIII. Stafa: Trans Tech Publications Ltd., 2005. http://dx.doi.org/10.4028/0-87849-970-9.

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45

Gong, Jiang Hong, Lian Meng Zhang, Li Dong Chen, and Wei Pan. Functionally Graded Materials VII. Trans Tech Publications, Limited, 2003.

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46

Biest, Omer Van der, Jozef Vleugels, and Michael Gasik. Functionally Graded Materials VIII. Trans Tech Publications, Limited, 2005.

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47

Miyamoto, Y., and I. Shiota. Functionally Graded Materials 1996. Elsevier Science & Technology Books, 1997.

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48

Kaysser, W. A. Functionally Graded Materials (Materials Science Forum). Trans Tech Publications Ltd, 1999.

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49

J. Sobczak, Jerzy, and Ludmil B. Drenchev, eds. Metal Based Functionally Graded Materials. BENTHAM SCIENCE PUBLISHERS, 2012. http://dx.doi.org/10.2174/97816080503831090101.

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50

Paulino, G. H. Fracture of Functionally Graded Materials. Pergamon, 2002.

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