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Advances in Cryogenic Engineering Materials


Advances in Cryogenic Engineering Materials
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Lieferzeit: 21 Werktage

  • 10365637


Beschreibung

Stiffness and Internal Stresses of Woven-Fabric Composites at Low Temperatures.- Dynamic Young s Modulus and Internal Friction in a Composite Material at Low Temperatures.- Fatigue of Glass-Epoxy Composite at 77K and 300K: Observation and Prediction.- Acoustic Emission from Composite Materials at Low Temperatures.- Problems of Cryogenic Interlaminar Shear Strength Testing.- Mechanical Properties of Organic Insulators for Superconducting Magnets after Low Temperature Irradiation.- Epoxies for Low Temperature Application Impregnating Technology.- Correlation of Dielectric and Mechanical Damping at Low Temperatures.- Optical Relaxation Processes in Polymers at Low Temperatures (Invited).- Low Temperature Fracture Strain at High Deformation Rates.- The Chemistry of Radiation Damage in Epoxide Resins.- Tensile, Compressive, and Shear Properties of a 64-kg/m3 Polyurethane Foam at Low Temperatures.- The Low-Temperature Thermal Conductivity of Rubber.- Photomechanical Stress Analysis under Cryogenic Environments.- Nondestructive Evaluation of Thick Austenitic Stainless Steel Weldments by Shear Horizontal Acoustic Waves.- Low Temperature Strengthening of Austenitic Stainless Steels with Nitrogen and Carbon.- Nitrogen-Containing 25Cr-13Ni Stainless Steel as a Cryogenic Structural Material.- The Development of a Nitrogen-Strengthened High-Manganese Austenitic Stainless Steel for a Large Superconducting Magnet.- Mechanical Properties of High Yield Strength High Manganese Steels at Cryogenic Temperatures.- An Fe-Mn-Al Austenitic Steel for Cryogenic Uses.- Development of a High-Strength High-Manganese Stainless Steel for Cryogenic Use.- The Influence of Processing on the Cryogenic Mechanical Properties of High Strength High Manganese Stainless Steel.- Effect of Strain Rate on Measured Mechanical Properties of Stainless Steel at 4 K.- Strengthening and Serrated Flow of High-Manganese Nonmagnetic Steel at Cryogenic Temperatures.- Mechanical Properties of Cold-Rolled and Aged Fe-Ni-Cr-Ti Austenitic Alloys for Low Temperature Use.- A New Nickel-Free Cryogenic Steel, 06AlNbCuN, and Its Fracture-Safety Evaluation.- Development of the New Cryogenic Structural Material for Fusion Experimental Reactor.- The Influence of Prestrain and Transformation Mode on the Mechanical Properties of Nitrogen Stabilized Austenitic Steel.- The Microstructure and Properties of a Cryogenic Steel Fe-12Cr-6Ni-9Mn-N.- 32Mn-7Cr Austenitic Steel for Cryogenic Applications.- Magneto-mechanical Effects in 304 Stainless Steels.- The Temperature Dependence of the Tensile Yield Strength of Selected Austenitic Steels.- Progress in Cryostructural Materials and Their Welding in the USSR (Invited).- Low Temperature Strength and Toughness of Thermomechanically Treated and EB Welded Fe-13%Ni-3%Mo-Ti Alloys.- Welding Superalloy Sheet for Superconducting Cable Jackets.- The Mechanism of Embrittlement of the Heat-Affected Zone of Metastable Austenitic Steel Welded Joints.- Fracture Toughness of 25Mn Austenitic Steel Weldments at 4 K.- Aging Response and Cryogenic Mechanical Properties of an In-Sn Eutectic Solder Alloy for Josephson Packaging.- Cryogenic Creep of Metals (Invited).- Transitions in Fatigue Processes at Low Temperature.- Cryogenic Fatigue Crack Growth Rate Properties of JBK-75 Base and Autogenous Gas Tungsten Arc Weld Metal.- The Use of Inconel Alloy 706 as a Structural Material in the 300 MVA Superconducting Generator.- Low Temperature Mechanical Properties of CeO2-Alloyed Tetragonal Zirconia.- Heat Treatments and Low Temperature Fracture Toughness of a Ti-6Al-4V Alloy.- Physical Properties: Knowing, Guessing and Measuring (Invited).- Low Temperature Thermal Conduction in Solids (Invited).- Metals and Alloys: Expansion and Contraction (Invited).- Metallic Glasses (Invited).- 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.- Ceramic Composites for Enthalpy Stabilization of Superconducting

Eigenschaften

Breite: 182
Gewicht: 1842 g
Höhe: 254
Länge: 53
Seiten: 998
Sprachen: Englisch
Autor: A. F. Clark

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