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Materials Properties Handbook: Titanium Alloys,Used
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The most comprehensive titanium data package ever assembled provides extensive information on applications, physical properties, corrosion, mechanical properties (including design allowables where available), fatigue, fracture properties, and elevated temperature properties. The appropriate specifications for each alloy are included.The 60plus data sheets supply not only extensive graphical and tabular information on properties, but the datasheets also describe or illustrate important factors which would aid in the selection of the proper alloy or heat treatment. The datasheets are further supplemented with background information on the metallurgy and fabrication characteristics of titanium alloys. An especially extensive coverage of properties, processing and metallurgy is provided in the datasheet for the workhorse of the titanium industry, Ti6Al4V.In many cases, key references are included for further information on a given subject.Comprehensive datasheets provide extensive information on: Applications, Specifications, Corrosion, Mechanical Design Properties, Fatigue and Fracture Properties, Fabrication Characteristics, and Effects of Processing on Properties.Save when you buy the Database of Titanium Properties CD ROM and the Materials Properties Handbook: Titanium Alloys as a set!Published: 1994 Pages: 1169 Format: HardboundEdited by: R. Boyer, E.W. Collings, and G. WelschPowder Metallurgy and RapidSolidification Processing Technical Note 2: CorrosionNonequilibrium Phases IntroductionTechnical Note 3: Casting Technical Note 7: MachiningTitanium Alloys for LowTemperature Service Technical Note 6: Heat TreatingMechanical Properties Physical PropertiesTechnical Note 5a: Superplastic Forming Technical Note 10: Welding and BrazingClassification of Titanium Alloys Equilibrium PhasesRapidSolidification Processing of Precipitate and DispersionStrengthened Titanium Alloys RollingFriction and Wear of Titanium Alloys DeformationTechnical Note 1 Appendix: Example of ISO Formation Technical Note 4: ForgingTechnical Note 8: Powder Metallurgy AgingTechnical Note 5: Forming Evolution of Conventional (Ingot Metallurgy) HighTemperature Titanium AlloysTechnical Note 9: Surface Treatments Technical Note 1: Metallography and Microstructure
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