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1

Zhishou, Zhu, and Wang Honghong, eds. Xian jin hang kong tai he jin cai liao yu ying yong: Advanced aeronautical titanium alloys and applications. Beijing Shi: Guo fang gong ye chu ban she, 2012.

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2

W, Lee Eui, Minerals, Metals and Materials Society. Meeting, and Minerals, Metals and Materials Society. Non-ferrous Metals Committee., eds. Light weight alloys for aerospace applications IV: Proceedings of the fourth "Light Weight Alloys for Aerospace Applications" Symposium : held February 10-13, 1997, during the 1997 TMS Annual Meeting in Orlando, Florida. Warrendale, Pa: Minerals, Metals & Materials Society, 1997.

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3

Davim, J. Paulo, R. Zitoune, and V. Krishnaraj. Machining of titanium alloys and composites for aerospace applications: Special topic volume with invited peer reviewed papers only. Durnten-Zurich: Trans Tech Publications, 2013.

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4

H, Froes F., Allen P. G, Niinomi M, Minerals, Metals and Materials Society. Structural Materials Division., and Minerals, Metals and Materials Society. Meeting, eds. Non-aerospace applications of titanium: Proceedings of the symposium sponsored by the Structural Materials Division of the Minerals, Metals & Materials Society, presented at the 1998 TMS Annual Meeting in San Antonio, Texas, on February 16-19, 1998. Warrendale, Pa: TMS, 1998.

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5

V, Jata K., Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Minerals, Metals and Materials Society. Meeting, eds. Lightweight alloys for aerospace application: Proceedings of symposium sponsored by the Non-Ferrous Metals Committee of the Structural Materials Division (SMD) of TMS (The Minerals, Metals & Materials Society), held at the TMS Annual Meeting in New Orleans, LA, USA, February 12-14, 2001. Warrendale, Pa: TMS, 2001.

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6

1967-, Leyens C., and Peters M. 1950-, eds. Titanium and titanium alloys: Fundamentals and applications. Weinheim: Wiley-VCH, 2003.

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7

Sanchez, Pedro N. Titanium alloys: Preparation, properties, and applications. New York: Nova Science Publishers, 2010.

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8

Sha, Wei. Titanium alloys: Modelling of microstructure, properties and applications. Boca Raton: CRC, 2009.

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9

Wilkinson, C. High temperature cyclic behaviour of aerospace materials: room temperature validation tests of Ti-6Al-4V. Neuilly sur Seine, France: AGARD, 1994.

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10

A. K.M Nurul Amin. Titanium alloys - towards achieving enhanced properties for diversified applications. Rijeka, Croatia: INTECH, 2014.

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11

World Conference on Titanium (10th 2003 Hamburg, Germany). Ti-2003 science and technology: Proceedings of the 10th world conference on titanium, held at the CCH-Congress Center, Hamburg, Germany, 13-18 July 2003. Weinheim: DGM, 2004.

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12

H, Froes F., and United States. National Aeronautics and Space Administration., eds. Development of low density titanium alloys for structural applications: Final report. [Washington, DC: National Aeronautics and Space Administration, 1996.

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13

Kim, Kyo-Han. Surface modification of titanium for biomaterial applications. Hauppauge, N.Y: Nova Science Publishers, 2009.

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14

(Ramaswamy), Narayanan R., and Rautray Tapash R, eds. Surface modification of titanium for biomaterial applications. New York: Nova Science Publishers, 2010.

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15

Brunette, Donald M. Titanium in Medicine: Material Science, Surface Science, Engineering, Biological Responses and Medical Applications. Berlin, Heidelberg: Springer Berlin Heidelberg, 2001.

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16

Brown, SA, and JE Lemons, eds. Medical Applications of Titanium and Its Alloys: The Material and Biological Issues. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959: ASTM International, 1996. http://dx.doi.org/10.1520/stp1272-eb.

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17

1943-, Brown Stanley A., and Lemons Jack E, eds. Medical applications of titanium and its alloys: The material and biological issues. West Conshohocken, PA: ASTM, 1996.

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18

Materials Research Society. Meeting Symposium U., ed. Advanced intermetallic-based alloys for extreme environment and energy applications: Symposium held December 1-4, 2008, Boston, Massachusetts, U.S.A. Warrendale, Pa: Materials Research Society, 2009.

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19

D, Zardiackas Lyle, Kraay Matthew J. 1955-, Freese Howard L. 1941-, and ASTM International, eds. Titanium, niobium, zirconium, and tantalum for medical and surgical applications. West Conshohocken, PA: ASTM, 2006.

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20

Hang tian, yi xue ling yu tai he jin cai liao ji chu yan jiu ji ying yong. Beijing: Ke xue chu ban she, 2012.

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21

Gangloff, R. P. NASA-UVa light aerospace alloy and structures technology program (LA²ST). [Washington, D.C: National Aeronautics and Space Administration, 1996.

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22

Gangloff, R. P. NASA-UVa light aerospace alloy and structures technology program (LA²ST). [Washington, D.C: National Aeronautics and Space Administration, 1996.

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23

Gangloff, R. P. NASA-UVa light aerospace alloy and structures technology program (LA²ST). [Washington, D.C: National Aeronautics and Space Administration, 1996.

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24

W, Lee Eui, Chia E. Henry, Kim Nack-Joon, Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Minerals, Metals and Materials Society. Meeting, eds. Light-weight alloys for aerospace applications: Proceedings of a symposium sponsored by the TMS Nonferrous Metals Committee, held during the 1989 TMS Annual Meeting, Las Vegas, Nevada, February 28-March 2, 1989. Warrendale, Pa: Minerals, Metals & Materials Society, 1989.

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25

W, Lee Eui, Kim Nack-Joon, Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Minerals, Metals and Materials Society. Meeting, eds. Light-weight alloys for aerospace applications II: Proceedings of a symposium sponsored by the TMS Nonferrous Metals Committee, held during the 1991 TMS Annual Meeting, New Orleans, Louisiana, February 17-21, 1991. Warrendale, Pa: Minerals, Metals & Materials Society, 1991.

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26

K, Kokula Krishna Hari, ed. Influence of Thermo Mechanical Properties Parameters on Titanium Metal Matrix Composite and Ti-6Al-4V for Aerospace Applications: ICIEMS 2014. India: Association of Scientists, Developers and Faculties, 2014.

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27

Schulz, Paul. Materials research for high speed civil transport and generic hypersonics: Metals durability. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1996.

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28

United States. National Aeronautics and Space Administration., ed. NASA-UVA light aerospace alloy and structures technology program (LAST): A progress report, January 1, 1994-June 30, 1994. Charlottesville, VA: Dept. of Materials Science and Engineering, School of Engineering & Applied Science, 1994.

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29

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVA light aerospace alloy and structures technology program (LA²ST).: Research on materials for the high speed civil transport. Charlottesville, VA: School of Engineering & Applied Science, University of Virginia, 1997.

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30

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVA light aerospace alloy and structures technology program (LA²ST).: Research on materials for the high speed civil transport. Charlottesville, VA: School of Engineering & Applied Science, University of Virginia, 1997.

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31

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVa light aerospace alloy and structures technology program (LA²ST): Progress report January 1, 1995 to June 30, 1995. Charlottesville, VA: School of Engineering & Applied Center, University of Va., 1995.

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32

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVA light aerospace alloy and structures technology program (LA²ST).: Research on materials for the high speed civil transport. Charlottesville, VA: School of Engineering & Applied Science, University of Virginia, 1997.

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33

United States. National Aeronautics and Space Administration., ed. NASA-UVA light aerospace alloy and structures technology program (LA²ST): A progress report, January 1, 1994-June 30, 1994. Charlottesville, VA: Dept. of Materials Science and Engineering, School of Engineering & Applied Science, 1994.

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34

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVa light aerospace alloy and structures technology program (LA²ST): Progress report January 1, 1995 to June 30, 1995. Charlottesville, VA: School of Engineering & Applied Center, University of Va., 1995.

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35

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVA Light Aerospace Alloy and Structures Technology Program (LA²ST): Progress report, July 1, 1996 through December 31, 1996, NASA-LaRC grant NAG-1-745. Charlottesville, VA: School of Engineering & Applied Science, University of Virginia, 1997.

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36

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVA Light Aerospace Alloy and Structures Technology Program (LA²ST): Progress report, July 1, 1996 through December 31, 1996, NASA-LaRC grant NAG-1-745. Charlottesville, VA: School of Engineering & Applied Science, University of Virginia, 1997.

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37

A, Starke E., and United States. National Aeronautics and Space Administration., eds. NASA-UVA Light Aerospace Alloy and Structures Technology Program (LA²ST): Progress report, July 1, 1996 through December 31, 1996, NASA-LaRC grant NAG-1-745. Charlottesville, VA: School of Engineering & Applied Science, University of Virginia, 1997.

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38

W, Lee Eui, Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Minerals, Metals and Materials Society. Meeting, eds. Light weight alloys for aerospace applications IV: Proceedings of the fourth "Light weight alloys for aerospace applications" symposium : sponsored by the Non-Ferrous Metals Committee of the Structural Materials Division (SMD) of the Minerals, Metals & Materials Society (TMS), held February 10-13, 1997, TMS Annual Meeting in Orlando, Florida. Warrendale, Pa: Minerals, Metals & Materials Society, 1997.

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39

Moiseyev, Valentin N. Titanium Alloys: Russian Aircraft and Aerospace Applications. Taylor & Francis Group, 2005.

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40

Titanium Alloys: Russian Aircraft and Aerospace Applications (Advances in Metallic Alloys). CRC, 2005.

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41

Moiseyev, Valentin N. Titanium Alloys: Russian Aircraft and Aerospace Applications. Taylor & Francis Group, 2006.

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42

Moiseyev, Valentin N. Titanium Alloys: Russian Aircraft and Aerospace Applications. Taylor & Francis Group, 2005.

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43

(Editor), K. V. Jata, Eui Whee Lee (Editor), William Frazier (Editor), and N. J. Kim (Editor), eds. Lightweight Alloys for Aerospace Applications. Tms, 2002.

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44

Davim, J. Paulo, Redouane Zitoune, and Vijayan Krishnaraj. Machining of Titanium Alloys and Composites for Aerospace Applications. Trans Tech Publications, Limited, 2013.

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45

Jackson, Mark J., Alisson R. Machado, and Marcio B. da Silva. Machining of Titanium and Nickel Alloys for Aerospace Applications. Springer, 2020.

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46

Information, Materials. Titanium and Titanium Base Alloys in Aerospace Applications, 2006 ED: A Guide. Cambridge Scientific Abstracts, 2006.

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47

Information, Materials. Titanium and Titanium Base Alloys in Aerospace Applications, 2005 ED: A Guide. Cambridge Scientific Abstracts, 2005.

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48

Non-Aerospace Applications of Titanium: Proceedings of the Symposium Sponsored by the Structural Materials Division of the Minerals, Metals & Materials Society, Presented at the 1998 Tms ann. Minerals, Metals, & Materials Society, 1998.

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49

Peters, Manfred, and Christoph Leyens. Titanium and Titanium Alloys: Fundamentals and Applications. Wiley-VCH Verlag GmbH, 2005.

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50

(Editor), Christoph Leyens, and Manfred Peters (Editor), eds. Titanium and Titanium Alloys: Fundamentals and Applications. Wiley-VCH, 2003.

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