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Advances in Cryogenic Engineering Materials

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Cover of 'Advances in Cryogenic Engineering Materials'

Table of Contents

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    Book Overview
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    Chapter 1 Stiffness and Internal Stresses of Woven-Fabric Composites at Low Temperatures
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    Chapter 2 Dynamic Young’s Modulus and Internal Friction in a Composite Material at Low Temperatures
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    Chapter 3 Fatigue of Glass-Epoxy Composite at 77K and 300K: Observation and Prediction
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    Chapter 4 Acoustic Emission from Composite Materials at Low Temperatures
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    Chapter 5 Problems of Cryogenic Interlaminar Shear Strength Testing
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    Chapter 6 Mechanical Properties of Organic Insulators for Superconducting Magnets after Low Temperature Irradiation
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    Chapter 7 Epoxies for Low Temperature Application Impregnating Technology
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    Chapter 8 Correlation of Dielectric and Mechanical Damping at Low Temperatures
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    Chapter 9 Optical Relaxation Processes in Polymers at Low Temperatures
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    Chapter 10 Low Temperature Fracture Strain at High Deformation Rates
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    Chapter 11 The Chemistry of Radiation Damage in Epoxide Resins
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    Chapter 12 Tensile, Compressive, and Shear Properties of a 64-Kg/m 3 Polyurethane Foam at Low Temperatures
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    Chapter 13 The Low-Temperature Thermal Conductivity of Rubber
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    Chapter 14 Photomechanical Stress Analysis Under Cryogenic Environments
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    Chapter 15 Nondestructive Evaluation of Thick Austenitic Stainless Steel Weldments by Shear Horizontal Acoustic Waves
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    Chapter 16 Low Temperature Strengthening of Austenitic Stainless Steels with Nitrogen and Carbon
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    Chapter 17 Nitrogen-Containing 25Cr-13Ni Stainless Steel as a Cryogenic Structural Material
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    Chapter 18 The Development of a Nitrogen-Strengthened High-Manganese Austenitic Stainless Steel for a Large Superconducting Magnet
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    Chapter 19 Mechanical Properties of High Yield Strength High Manganese Steels at Cryogenic Temperatures
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    Chapter 20 An Fe-Mn-Al Austenitic Steel for Cryogenic Uses
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    Chapter 21 Development of a High-Strength High-Manganese Stainless Steel for Cryogenic Use
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    Chapter 22 The Influence of Processing on the Cryogenic Mechanical Properties of High Strength High Manganese Stainless Steel
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    Chapter 23 Effect of Strain Rate on Measured Mechanical Properties of Stainless Steel at 4 K
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    Chapter 24 Strengthening and Serrated Flow of High-Manganese Nonmagnetic Steel at Cryogenic Temperatures
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    Chapter 25 Mechanical Properties of Cold-Rolled and Aged Fe-Ni-Cr-Ti Austenitic Alloys for Low Temperature Use
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    Chapter 26 A New Nickel-Free Cryogenic Steel, 06A1NbCuN, and Its Fracture-Safety Evaluation
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    Chapter 27 Development of the New Cryogenic Structural Material for Fusion Experimental Reactor
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    Chapter 28 The Influence of Prestrain and Transformation Mode on the Mechanical Properties of Nitrogen Stabilized Austenitic Steel
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    Chapter 29 The Microstructure and Properties of a Cryogenic Steel Fe-21Cr-6Ni-9Mn-N
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    Chapter 30 32Mn-7Cr Austenitic Steel for Cryogenic Applications
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    Chapter 31 Magneto-Mechanical Effects in 304 Stainless Steels
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    Chapter 32 The Temperature Dependence of the Tensile Yield Strength of Selected Austenitic Steels
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    Chapter 33 Progress in Cryostructural Materials and their Welding in the USSR
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    Chapter 34 Low Temperature Strength and Toughness of Thermomechanically Treated and EB Welded Fe-13%Ni-3%Mo-Ti Alloys
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    Chapter 35 Welding Superalloy Sheet for Superconducting Cable Jackets
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    Chapter 36 The Mechanism of Embrittlement of the Heat-Affected Zone of Metastable Austenitic Steel Welded Joints
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    Chapter 37 Fracture Toughness of 25Mn Austenitic Steel Weldments at 4 K
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    Chapter 38 Aging Response and Cryogenic Mechanical Properties of an In-Sn Eutectic Solder Alloy for Josephson Packaging
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    Chapter 39 Cryogenic Creep of Metals
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    Chapter 40 Transitions in Fatigue Processes at Low Temperature
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    Chapter 41 Cryogenic Fatigue Crack Growth Rate Properties of JBK-75 Base and Autogenous Gas Tungsten Arc Weld Metal
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    Chapter 42 The Use of Inconel Alloy 706 as a Structural Material in the 300 MVA Superconducting Generator
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    Chapter 43 Low Temperature Mechanical Properties of CeO 2 -Alloyed Tetragonal Zirconia
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    Chapter 44 Heat Treatments and Low Temperature Fracture Toughness of a Ti-6Al-4V Alloy
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    Chapter 45 Physical Properties: Knowing, Guessing, and Measuring
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    Chapter 46 Low Temperature Thermal Conduction in Solids
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    Chapter 47 Metals and Alloys: Expansion and Contraction
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    Chapter 48 Metallic Glasses
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    Chapter 49 An Apparatus to Determine the Heat Capacity and Thermal Conductivity of a Material from 1 to 300 K in Magnetic Fields up to 9 T
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    Chapter 50 Ceramic Composites for Enthalpy Stabilization of Superconducting Wire
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    Chapter 51 Electrical Resistivity of Metals and Alloys at Cryogenic Temperatures: A Review
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    Chapter 52 The Effect of Mill Temper on the Mechanical and Magnetoresistive Properties of Oxygen-Free Copper in Liquid Helium
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    Chapter 53 Degradation of Copper Stabilizer in a Superconducting Wire Induced by Cyclic Stressing at Cryogenic Temperature
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    Chapter 54 Magnetic Properties and Ferromagnetic Shielding of Ni-Fe-Mo Alloys at Cryogenic Temperatures
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    Chapter 55 Magnetic Susceptibility and Strain-Induced Martensite Formation at 4 K in Type 304 Stainless Steel
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    Chapter 56 Peculiarities of the Low-Temperature Electrical and Magnetic Properties in Fe-Cr-Ni-Mn Alloys
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    Chapter 57 Effect of the Structure of Fe-Cr-Ni Alloys Strained at Low Temperatures on Their Electrical Resistivity
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    Chapter 58 Materials for Superconducting Electronics
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    Chapter 59 Tunneling and Surface Properties of Oxidized Metal Overlayers on Nb
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    Chapter 60 Barrier/Electrode Interface Structure and I–V Characteristics of NbN Josephson Junctions
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    Chapter 61 All Refractory, High T c Josephson Device Technology
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    Chapter 62 Preparation of High T c Nb-(Ge,Si) Thin Films at Low Substrate Temperature
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    Chapter 63 Superconducting NbN Film Treatments
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    Chapter 64 Dependence of T c Phase Composition for Superconducting Nb-Ge Films Prepared by DC-Magnetron Sputtering
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    Chapter 65 Oxidation Mechanism of the Surface of A15 Superconductors
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    Chapter 66 Tunneling Studies of VN Thin Films
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    Chapter 67 Fabrication of High Tc NbN Films by Ion Beam Deposition Technique
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    Chapter 68 Homoepitaxial Growth of Nb 3 Ge on Nb 3 Ge
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    Chapter 69 Preparation of NbC x N 1−x Thin Films by High Rate Reactive Sputtering
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    Chapter 70 Determination of Optimum Preparation Parameters for Thin High-T c Nb 3 Ge Films
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    Chapter 71 Local Investigation of Superconducting Transition of Nb 3 Ge Films
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    Chapter 72 Flux Pinning in Ultrafine Filamentary Composites
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    Chapter 73 Phase Relationships and Superconducting Properties of Ternary Systems Used in the Bronze Process
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    Chapter 74 The Relationship Between the Martensitic Phase Transition and the Superconducting Properties of A15 Compounds
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    Chapter 75 High Field NbN Superconductor on Carbon Fibers
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    Chapter 76 Preparation of Superconducting Germanium Alloy Filament Using the Method of Glass-Coated Melt Spinning
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    Chapter 77 Superconducting Properties of V 2 (Hf,Zr) Laves Phase Multifilamentary Wires
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    Chapter 78 Superconducting Wires of Pb-Mo-S by Electro-Plating Technique
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    Chapter 79 An Overview of Practical Superconductor Development in Japan
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    Chapter 80 Superconducting Properties of Nb 3 Sn Multifilamentary Wires Fabricated by Internal Tin Process
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    Chapter 81 Properties of (NbTa) 3 Sn-Filamentary Conductors
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    Chapter 82 Manufacture and Superconducting Properties of Bronze Processed Nb 3 Sn Monofilamentary Wires with Be Additions
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    Chapter 83 On the Nature of Coupling of In Situ Superconductors
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    Chapter 84 High-Field Current-Carrying Capacities of ‘Titanium Bronze’ Processed Multifilamentary Nb 3 Sn Conductors with Pure and Alloy Cores
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    Chapter 85 The Effects of Indium Addition on the Properties of Internal Tin Diffusion Processed Nb 3 Sn Wires
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    Chapter 86 Development of Nb 3 Sn Cabled Conductor by External Diffusion Process and the Effect of Strain on the Critical Current
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    Chapter 87 The Effect of Silicon Impurities on Superconducting Properties of V 3 Ga-Cu Wire
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    Chapter 88 Improved Performance Powder Metallurgy and In Situ Processed Multifilamentary Superconductors
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    Chapter 89 Optimization of High Current Density A-15 Superconductors Made by the ECN Powder Method
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    Chapter 90 Strain Effects in Superconducting Compounds
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    Chapter 91 Acoustic Emission in Materials for Superconductor Applications: A Review
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    Chapter 92 Long-Range Atomic Order, Crystallographical Changes and Strain Sensitivity of J c in Wires Based on Nb 3 Sn and Other A15 Type Compounds
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    Chapter 93 Elastic Behavior of Polycrystalline Nb 3 Sn, V 3 Ga and Nb 3 Ge
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    Chapter 94 Study of Strain Effects on Critical Current and Mechanical Property in “In Situ” Nb 3 Sn Conductor
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    Chapter 95 Effect of Internal Reinforcement on the Critical Current Density of Nb 3 Sn Wires
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    Chapter 96 Effects of Incoloy 903 and Tantalum Conduits on Critical Current in Nb 3 Sn Cable-in-Conduit Conductors
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    Chapter 97 Effects of Hot Isostatic Pressing on the Superconducting Properties of Nb 3 Sn Multifilamentary Wires
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    Chapter 98 Electromagnetic Theory for In Situ Superconductors
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    Chapter 99 Magnetic Impurity Scattering in In Situ Superconductors
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    Chapter 100 Smooth Transition of Nb 3 Al Wire Fed by AC Current in High Magnetic Field
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    Chapter 101 Hysteresis in a Fine Filament NbTi Composite
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    Chapter 102 AC Losses in Superconducting Mono and Multifilamentary NbTi Wires Fed by AC Current at Different Frequency Values
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    Chapter 103 AC Losses of 19-Strand Subcables for the ANL 3.3 MJ Coil
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    Chapter 104 Current-Carrying Capacity and Energy Losses in Hydrostatically Extruded NbTi Wires
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    Chapter 105 Critical Current Measurements on a NbTi Superconducting Wire Standard Reference Material
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    Chapter 106 Pulsed Magnetic Field Testing of Multifilamentary Nb 3 Sn Superconducting Wire
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    Chapter 107 Influence of Stabilizing Copper on the Quench Characteristics of Nb 3 Sn Wire
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    Chapter 108 Training Studies of Epoxy-Impregnated Superconductor Windings — Part III: Epoxies, Conductor Insulations and Copper Ratio
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Title
Advances in Cryogenic Engineering Materials
Published by
Springer US, November 2013
DOI 10.1007/978-1-4613-9868-4
ISBNs
978-1-4613-9870-7, 978-1-4613-9868-4
Editors

Clark, A. F., Reed, R. P.

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The data shown below were collected from the profile of 1 X user who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 19 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Colombia 1 5%
Unknown 18 95%

Demographic breakdown

Readers by professional status Count As %
Student > Master 5 26%
Student > Ph. D. Student 5 26%
Researcher 3 16%
Student > Bachelor 2 11%
Student > Doctoral Student 2 11%
Other 2 11%
Readers by discipline Count As %
Engineering 5 26%
Materials Science 4 21%
Physics and Astronomy 4 21%
Unspecified 3 16%
Agricultural and Biological Sciences 2 11%
Other 1 5%