Advances in Cryogenic Engineering

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Advances in Cryogenic Engineering

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Advances in Cryogenic Engineering

  • Brand: Unbranded

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Advances in Cryogenic Engineering

Structural AlloysFracture. - A1 A Research Program on the Properties of Structural Materials at 4 K. - A2 Fracture Mechanics and Its Application to Cryogenic Structures. - A3 The Fracture Toughness of Cryogenic Steels. - A4 Fatigue Crack Growth Rates of Structural Alloys at 4 K. - A5 Cryogenic Fracture Mechanics Properties of Several Manufacturing Process/Heat Treatment Combinations of Inconel X750. - A6 Microstructures of Inconel X750 for Cryogenic Structural Applications. - A7 The Fracture Toughness and Fatigue Crack Growth Rate of an Fe-Ni-Cr Superalloy at 29876 and 4 K. - A8 Evaluation of Inconel X750 Weldments for Cryogenic Applications. - A9 Accident Simulation Tests on a Wet-Wall LNG Design. - A10 Plasticity and Fracture of Ductile Structural Alloys under Plane Stress at Low Temperatures. - A11 Crack Tip Strain Field of Strain-Hardening Materials at Low Temperature. - A12 Mechanical Property Measurement Techniques of Structural Materials at Cryogenic Temperatures. - Structural AlloysPhysical Properties. - B1 Magnetothermal Conductivity of Selected Pure Metals and Alloys. - B2 Thermal and Electrical Measurements on Selected Materials for Low-Temperature Applications. - B3 Thermal Conductivity of Selected Alloys at Low Temperatures. - B4 Low-Temperature Thermal Conductivity and Dislocation Structures in CopperAluminum Alloys under High-Cycle Low-Stress Fatigue. - B5 Measurement of Thermal Conductance. - B6 Magnetic and Thermal Properties of Stainless Steel and Inconel at Cryogenic Temperatures. - B7 Low-Temperature Elastic Properties of Invar. - B8 Embrittlement Mechanisms in a Hydrogen Environment. - Composites. - C1 Application of Fiber-Reinforced Polymers to Rotating Superconducting Machinery. - C2 StaticTensile Properties of BoronAluminum and BoronEpoxy Composites at Cryogenic Temperatures. - C3 Low Thermal Flux Glass-Fiber Tubing for Cryogenic Service. - C4 Optimization of Mechanical Supports for Large Superconductive Magnets. - InsulatorsThermal. - D1 Aging Characteristics of Polyurethane Foam Insulation. - D2 Cellular Glass Insulation for Load-Bearing Application in the Storage of Cryogenic Fluids. - D3 Thermal Conductivity of Microsphere Cryogenic Insulation. - D4 Apparent Thermal Conductivity of Uncoated Microsphere Cryogenic Insulation. - D5 Thermal Performance of Multilayer Insulation Applied to Small Cryogenic Tankage. - InsulatorsElectrical. - E1 Low-Temperature Properties of Resins and Their Correlations. - E2 Evaluation of Pre-Impregnated Resin-Glass Systems for Insulating Superconducting Magnets. - E3 Dielectric Design Considerations for a Flexible Superconducting Power Transmission Cable. - E4 Surface Flashover Voltage of Spacers in Vacuum at Cryogenic Temperatures. - E5 Dimensional Behavior of Thin-Film Dielectric Polymers in the Temperature Range 4. 2 to 300 K. - Superconductors. - F1 Superconducting Materials for Large Scale Applications. - F2 Effect of Metallurgical Treatments on AC Losses of Nb3Sn Produced by Solid State Diffusion. - F3 Critical Current and AC Loss of Coevaporated Nb3Sn Superconductors. - F4 Nb3Sn for Superconducting RF Cavities. - F5 Chemical Vapor Deposition of Nb3Ge. - SuperconductorsMultifilamentary. - G1 Improvements in Critical Current Densities of Nb3Sn by Solid Solution Additions of Sn in Nb. - G2 Performance Data of a Multifilamentary Nb3Sn Conductor and Magnet. - G3 Test Results of a 27-Cm Bore Multifilamentary Nb3Sn Solenoid. - G4 Superconducting Wire Test at Fermilab. -G5 Superconducting Wires for a Pulsed Magnet. - G6 Survey Results of Multifilamentary NbTi Users. - G7 Single-Phase Helium as Coolant for Superconducting Magnets. - G8 Critical Rate of Magnetic Field Variation for Composite Superconductor. - G9 Stability of Composite Superconductors under AC Conditions. - Transient Losses in Superconductors. - H1 Technique for Measuring AC Losses in Thin-Film Superconductors. - H2 Field Orientation Dependence of Losses in Rectangular Multifilamentary Superconductors. - H3 Hysteresis Loss in a Multifilament Superconductor. - H4 Design of Helically-Wound Superconducting AC Power Transmission Cables. - H5 Interaction between Two Parallel Superconducting Wires Carrying Alternating Current. - Stress Effects in Conductor Materials. - I1 Effect of Stress on the Critical Current of NbTi Multifilamentary Composite Wire. - I2 Mechanical Properties of Superconducting Nb-Ti Composites. - I3 Low Temperature Tensile Behavior of Copper-Stabilized Niobium-Titanium Superconducting Wire. - I4 Electrical and Mechanical Properties of Dilute AluminumGold Alloys at 30077 and 4. 2 K. - I5 Effect of Cyclic Strain on Electrical Resistivity of Copper at 4. 2 K. - I6 Low Temperature Resistance of Cyclically Strained Aluminum. - I7 Stress Analysis of Nonhomogeneous Superconducting Solenoids. - I8 Study of Cooldown Stresses in the Cryogenic Envelope of a Superconducting Cable. - Special Materials. - J1 Aboveground Concrete Secondary Containment for LNG. - J2 Thin Windows for Gaseous and Liquid Targets: An Optimization Procedure. - J3 A Promising New Cryogenic Seal Candidate. - Indexes. - Author Index. - Material Index. Language: English
  • Brand: Unbranded
  • Category: Education
  • Artist: Timmerhaus K.
  • Format: Paperback
  • Language: English
  • Publication Date: 2012/10/12
  • Publisher / Label: Springer Us
  • Number of Pages: 559
  • Fruugo ID: 343653314-752834317
  • ISBN: 9781461398523

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