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Titanium and Titanium Alloys

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Cover of 'Titanium and Titanium Alloys'

Table of Contents

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    Book Overview
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    Chapter 1 Decomposition of the Martensite in Two-Phase Titanium Alloys
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    Chapter 2 The Investigation of the Titanium Structure after Shock Wave Loading
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    Chapter 3 Embrittlement and “Spontaneous” Cracking of a Hardened (α+β) Titanium Alloy during Aging
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    Chapter 4 Transformation in Unstable Beta-Titanium Alloys
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    Chapter 5 Internal Friction Studies in Stable and Metastable Beta Titanium Alloys
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    Chapter 6 Aging Characteristics of Beta Titanium Alloys
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    Chapter 7 Decomposition of the Solid Solution the The All-Beta βIII
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    Chapter 8 Martensite Formation and Decomposition in Alloys of Titanium Containing β-Stabilizing Elements
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    Chapter 9 An Evaluation of Direct Aging to Achieve Optimum Mechanical Properties for the Metastable Beta Ti-8Mo-8V-2Fe-3Al Alloy
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    Chapter 10 Intensification of Chemical-Thermal Treatment of Titanium and Its Alloys
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    Chapter 11 Effect of Boronising on Adhesive Wear Characteristics of Titanium
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    Chapter 12 Antiseizing Properties of Titanium Alloys under Different Chemical and Heat Treatment
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    Chapter 13 Discussion
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    Chapter 14 Critical Review Influence of Technological Factors on Structure and Properties of Titanium Alloys
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    Chapter 15 Structure of Semifinished Alpha + Beta Titanium Alloy Products
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    Chapter 16 Influence of the Parameters of a Laminated Structure on the Mechanical Properties of Titanium Alloys
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    Chapter 17 Methods of Refining Coarse-Grained Structures of Titanium Alloys
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    Chapter 18 The Influence of Polygonized Structure on the Properties of Heat-Treated Beta Titanium Alloys
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    Chapter 19 Transmission Electron Microscopy Study of Structural Changes Hot Deformation of Titanium Alloys
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    Chapter 20 Influence of Forging Skin on Fatigue Strength of die Forgings in Ti-6a1-4v Material
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    Chapter 21 The Influence of Hydrogen on Hot Deformability of Titanium Alloys with Different Phase Compositions
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    Chapter 22 The Effect of Some Technological Factors on the Structure and Properties of the Equiatomic Titanium-Nickel Alloy
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    Chapter 23 Thermomechanical Properties and Stress Corrosion of RMI Ti-3A1-8V-6Cr-4Mo-4Zr
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    Chapter 24 Texture Development in α+ß Titanium Alloys
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    Chapter 25 The Effect of Phase Transformation on Deformation Texture of α and (α + ß) Titanium Alloys
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    Chapter 26 The Formation of Recrystallization Texture in Ti-Al Alloys
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    Chapter 27 Recrystallization of Ti-Mo Base Beta Alloys
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    Chapter 28 Annealing Behavior and Strengthening of Ti-6a1-2sn
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    Chapter 29 Influence of Grain Size on the Ductility of Age-Hardened Titanium Alloys
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    Chapter 30 Processing and Deformation Studies on Ultrafine Grained Titanium
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    Chapter 31 Effects of Texture on Deep Drawability of Commercially Pure Titanium Sheet
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    Chapter 32 Influence of Processing and Heat Treatment on the Anisotropic Properties of Sheet and Strip of Commercially Pure Titanium
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    Chapter 33 Mechanical Properties of Titanium Alloy Plates
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    Chapter 34 Effect of Heat Treatment on the Mechanical Properties in an Alpha-Beta Titanium
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    Chapter 35 The Effect of Heat Treatment on the Fatigue Strength of Ti-6A1-4V
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    Chapter 36 Effect of Heat Treatment on the Microstructure and Properties of IMI 685
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    Chapter 37 A Comparative Study of Creep Resistance and Thermal Stability of Alloys “685” and “6242” in Air and in Vacuum
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    Chapter 38 Effects of TiA16V4 Metallurgical Structures on Fatigue Properties
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    Chapter 39 The Effect of Variations in Heat Treatment on the Mechanical Properties of an α+ß Titanium Alloy IMI 550 (Ti-4A1-2Sn-4Mo-0.5Si)
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    Chapter 40 Heat Treatment of Cast Ti-6A1-4V Alloy
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    Chapter 41 On Titanium Alloy Residual Stress Following Thermodiffusion Saturation
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    Chapter 42 Discussion
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    Chapter 43 Critical Review Titanium Alloys for Different Branches of Engineering
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    Chapter 44 Critical Review Titanium for Engineering Purposes
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    Chapter 45 Trends in the Development of High-Strength Titanium Alloys
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    Chapter 46 Principles of Titanium Alloys Complex Alloying
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    Chapter 47 A Titanium Alloy with Improved Mechanical Resistance Ti-6A1-6V-2Sn-6Zr
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    Chapter 48 Effect of Impurities on the Working Ability of Ti-6A1-4V Type Alloy
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    Chapter 49 Ti-6A1-4V for Marine Uses
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    Chapter 50 Development of a New Moderate Strength, High Fracture Toughness Titanium Alloy: Ti-4.5A1-5Mo-L.5Cr (Corona 5)
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    Chapter 51 The Metallurgical Synthesis of a New Generation of Deep Hardenable Titanium Alloys. The Metastable Beta Ti-Mo-V-Cr-Al System — design and Properties
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    Chapter 52 Strength and Toughness of Binary Ti-Ni and Ti-Mo Alloys
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    Chapter 53 The Technological Aspects of Titanium Application in the TU-144 Aircraft Structure
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    Chapter 54 Ways of Increasing Titanium Alloys High Temperature Strength
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    Chapter 55 Investigation of Some Properties of VT5L Alloy with Rare Earth Additions
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    Chapter 56 Characteristics of Commercially Pure Titanium for Power Plant
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    Chapter 57 The Effect of Carbon on the Behavior of the Beta-Titanium Alloys
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    Chapter 58 An Investigation of Some Palladium-Titanium Alloys
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    Chapter 59 A Titanium Alloy for Application in Hot Sodium Chloride Solutions
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    Chapter 60 On the Performance of Whole-Titanium Made Turbine Condenser
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    Chapter 61 Manufacture and Properties of Titanium Tubes for Power Station Condensers
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    Chapter 62 Trends in the Use of Titanium in Heat Exchange
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    Chapter 63 Titanium Basket Anodes for Metal Refining and Winning
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    Chapter 64 Recent Advances in Titanium Cathodes
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    Chapter 65 Discussion
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    Chapter 66 Critical Review Powder Metallurgy of Titanium
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    Chapter 67 A Novelty in the Field of Titanium Powder Metallurgy
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    Chapter 68 Production of Die-Forged Discs from BT9 Alloy Powder
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    Chapter 69 Production of Titanium Parts, Apparatus and Machinery by Methods of Powder Metallurgy
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    Chapter 70 Rolling of Titanium Powder and Its Alloys
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    Chapter 71 The Mechanical Properties of P/M Ti-6A1-4V Alloy
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    Chapter 72 Dispersion Hardening of Titanium
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    Chapter 73 Production of High Purity Titanium Powder by Electron Beam Technology
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    Chapter 74 Comparative Evaluation of Forged Ti-6A1-4V Bar Made from Shot Produced by Rep and CSC Processes
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    Chapter 75 Critical Review Titanium Matrix Composites
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    Chapter 76 Investigation of Structure of Titanium Matrix Fiber Composites
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    Chapter 77 Model Composite (Layered) Material on the Basis of Titanium
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    Chapter 78 The Investigation of Solid-Phase Interaction of Titanium with Refractory Compounds
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    Chapter 79 The Influence of Release Agents on Properties of the Titanium Foil Produced by Vacuum Evaporation
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    Chapter 80 The Application of TiC and TiN Thick Films by PVD Processes
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    Chapter 81 Discussion
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Title
Titanium and Titanium Alloys
Published by
Springer US, June 2013
DOI 10.1007/978-1-4757-1758-7
ISBNs
978-1-4757-1760-0, 978-1-4757-1758-7
Editors

Williams, J. C., Belov, A. F.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 31 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 31 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 5 16%
Student > Ph. D. Student 4 13%
Student > Doctoral Student 3 10%
Student > Master 3 10%
Student > Postgraduate 2 6%
Other 4 13%
Unknown 10 32%
Readers by discipline Count As %
Materials Science 12 39%
Engineering 8 26%
Unknown 11 35%