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1

Jiang, Kaiyan. A study of tensile deformation, fracture characteristics and beta brittleness in alpha-beta titanium alloy. Cradley Heath, Warley, U.K: Engineering Materials Advisory Services, 1985.

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2

Daniel, Eylon, Boyer Rodney, Koss Donald A, Minerals, Metals and Materials Society. Titanium Committee., and Minerals, Metals and Materials Society. Meeting, eds. Beta titanium alloys in the 1990's: Proceedings of a Symposium on Beta Titanium Alloys. Warrendale, Pa: Minerals, Metals & Materials Society, 1993.

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3

Wanhill, Russell, and Simon Barter. Fatigue of Beta Processed and Beta Heat-treated Titanium Alloys. Dordrecht: Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-94-007-2524-9.

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4

Ltjering, G. Titanium. Berlin: Springer, 2003.

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5

Boettcher, Carl Michael. Development of a surface engineering treatment for the timet550 [alpha plus beta] titanium alloy. Birmingham: University of Birmingham, 2002.

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6

Jan Cornelis van der Waal. Synthesis, characterization and catalytic application of zeolite titanium beta. Delft: Delft Univ. Press, 1998.

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7

Chen, Li-Hung. The development of T1-15MO-based beta titanium alloys with boron, carbon and silicon additions. Birmingham: University of Birmingham, 1998.

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8

Snaith, Nigel Nicholas. The effect of non-conventional processing routes on the mechanical properties of two [alpha] plus [beta] titanium alloys, CORONA 5 and IMI 550. Birmingham: University of Birmingham, 1986.

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9

Hunter, Lisa Jane. Effects of microstructure and oxygen content on the fracture behaviour of the [alpha] and [beta] Titanium alloy: Ti-4A1-4Mo-2Sn-0.5Si wt.% (IMI 550). Birmingham: University of Birmingham, 1997.

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10

Fatigue Of Beta Processed And Beta Heattreated Titanium Alloys. Springer, 2011.

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11

Rack, H. J. Beta-titanium Alloys For The Oos. Tms, 2005.

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12

Synthesis, Characterization and Catalytic Application of Zeolite Titanium Beta. Delft Univ Pr, 1998.

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13

Williams, James C., and Gerd Lütjering. Titanium (Engineering Materials and Processes). Springer, 2003.

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14

Oxidation characteristics of Beta-21S in the air in the temperature Range 600 to 800 ̊C. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1992.

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15

Chang, Roy. The processing-structure-properties relationship of beta (BCC) titanium for orthopedic applications. 2006.

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16

E, Wiedemann Karl, and Langley Research Center, eds. Mechanical properties of coated titanium Beta-21S after exposure to air and 700 and 800⁰C. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1992.

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17

E, Wiedemann Karl, and Langley Research Center, eds. Mechanical properties of coated titanium Beta-21S after exposure to air and 700 and 800⁰C. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1992.

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