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Advances in Cryogenic Engineering

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Cover of 'Advances in Cryogenic Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 Fatigue Behavior of Aluminum and Titanium Sheet Materials Down to -423°F
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    Chapter 2 Cryogenic Tensile Properties of Selected Aerospace Materials
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    Chapter 3 Evaluation of Stainless Steel Casting Alloys for Cryogenic Service in the 80-Inch Liquid-Hydrogen Bubble Chamber
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    Chapter 4 Metallurgical Evaluation of a New Aluminum Casting Alloy Developed for Space Vehicle Use at Cryogenic Temperatures
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    Chapter 5 An Anomalous Decrease of the Elastic Moduli at Very Low Temperatures in Some 300 Series Stainless Steels
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    Chapter 6 Shear Strength of Several Alloys at Liquid-Hydrogen Temperatures
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    Chapter 7 Charpy Impact Testing at 20°K
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    Chapter 8 Mechanical Properties of Several 2000 and 6000 Series Aluminum Alloys
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    Chapter 9 Evaluation of Fracture Characteristics of Aluminum Alloys at Cryogenic Temperatures
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    Chapter 10 Evaluation of the Effects of Specimen Configuration and Testing Variables on Crack Propagation Properties
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    Chapter 11 Low-Temperature Flow and Fracture Behavior of Tantalum
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    Chapter 12 Creep Properties of 18–10 and 25–20 Stainless Steels at Cryogenic Temperatures
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    Chapter 13 Mechanical Properties Testing of Plastic Laminate Materials Down to 20°K
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    Chapter 14 An Assessment of Test Specimens and Test Techniques Useful to the Evaluation of Structural Reinforced Plastic Materials at Cryogenic Temperatures
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    Chapter 15 Structural Properties of Glass-Fiber Filament-Wound Cryogenic Pressure Vessels
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    Chapter 16 The Development of a New Cryogenic Gasket for Liquid-Oxygen Service
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    Chapter 17 Thermal Expansion Characteristics of Some Plastic Materials and Composites from Room Temperature to -253°C
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    Chapter 18 Thermal Conductivity of Reinforced Plastics at Cryogenic Temperatures
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    Chapter 19 Low-Temperature Tensile, Thermal Contraction, and Gaseous Hydrogen Permeability Data on Hydrogen-Vapor Barrier Materials
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    Chapter 20 Improved Ferric Oxide Gel Catalysts for Ortho-Parahydrogen Conversion
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    Chapter 21 Experimental Study of Reaction Kinetics for Para-Orthohydrogen at 20° to 80°K
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    Chapter 22 Multishielding—An Advanced Superinsulation Technique
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    Chapter 23 Practical Problems in Design of High-Performance Multilayer Insulation System for Cryogenic Stages
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    Chapter 24 Development of a Lightweight External Insulation System for Liquid-Hydrogen Stages of the Saturn V Vehicle
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    Chapter 25 Thermal and Pressure-Induced Strains in Internal Cryogenic Insulations
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    Chapter 26 Dilute Gold-Iron Thermoelements in Low-Temperature Thermocouples
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    Chapter 27 A Novel Principle for the Measurement of Low Temperature
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    Chapter 28 Considerations When Using Turbine-Type Flowmeters in Cryogenic Service
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    Chapter 29 A Single-Channel, Multipoint, Continuous, Liquid-Level System for Liquid Hydrogen, Using Carbon Resistors
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    Chapter 30 A Combustion Test Program to Establish Design Criteria for Liquid-Hydrogen-Fueled Space Vehicles
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    Chapter 31 Spark Ignition Parameters of Cryogenic Hydrogen in Oxygen and Nitrogen Mixtures
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    Chapter 32 Large Volume Operational Room Inerting
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    Chapter 33 Catalysis Poisons for Platinum-Wire Liquid-Level Sensors
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    Chapter 34 Capture Coefficients of Gases at 77°K
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    Chapter 35 Obtaining Low Pressures with Cryosorption Pumps
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    Chapter 36 A Technique for the Simulation of Thermal Behavior of Fluids in a Low-Gravity Field
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    Chapter 37 Probing Experiments on Pressure Oscillations in Two-Phase and Supercritical Hydrogen with Forced Convection Heat Transfer
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    Chapter 38 Transfer Line Surge
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    Chapter 39 Detection of Density Variations in Flowing Two-Phase Hydrogen
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    Chapter 40 Cooldown Temperatures and Cooldown Time during Mist Flow
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    Chapter 41 Analytical and Experimental Investigation of Thermal and Helium Lift-Pumping Recirculation Systems
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    Chapter 42 An Experimental Investigation of Geysering in Vertical Tubes
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    Chapter 43 An Experimental Evaluation of the Performance of Cryogenic Gaseous Hydrogen as a Monopropellant
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    Chapter 44 Pressure Drop Considerations in the Transfer of Fluids
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    Chapter 45 Experimental Study of H 2 O-LH 2 and H 2 O-LN 2 Heat Exchangers
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    Chapter 46 Expulsion Bladders for Cryogenic Liquids
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    Chapter 47 A Versatile Low-Temperature Probe for Application to Cryosurgery
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    Chapter 48 Simple Technique for the Ultrapurification of Helium
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    Chapter 49 A Nitrogen Supply System for Post-Run Cooldown of Nuclear Reactors
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    Chapter 50 Development and Design of a 100-Lb/Sec Liquid Air Vaporizer
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    Chapter 51 Mobile Nitrogen Transport and High-Pressure Pumping Equipment for Oil Well Servicing
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    Chapter 52 Supercritical Pressure Customer Station
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    Chapter 53 A Large-Scale Storage and Transfer System for Distribution of Liquid Helium as a Refrigerant Medium
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    Chapter 54 Efficiency of Low-Temperature Expansion Machines
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    Chapter 55 Large-Diameter Metal Seals for Nuclear Rocket Applications
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    Chapter 56 A New Vacuum-Insulated Cryogenic Coupling
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    Chapter 57 A Rotatable Sealing Coupling for Cryogenic Uses
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    Chapter 58 A New Positive Seal for Pistons and Axially Moving Rods
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    Chapter 59 Continuous Cryogenic Refrigeration for Three to Five Micron Infrared Systems
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    Chapter 60 A Cryogenic Refrigerator for Long-Life Applications in Satellites
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    Chapter 61 Conduction Cooling of a Traveling Wave Maser Superconducting Magnet in a Closed-Cycle Refrigerator
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    Chapter 62 The Feasibility of Solid-State Cryogenic Refrigeration to 70°K
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Title
Advances in Cryogenic Engineering
Published by
Springer US, March 2013
DOI 10.1007/978-1-4684-3108-7
ISBNs
978-1-4684-3110-0, 978-1-4684-3108-7
Editors

Timmerhaus, K. D.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 5 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 5 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 3 60%
Student > Master 2 40%
Readers by discipline Count As %
Engineering 4 80%
Earth and Planetary Sciences 1 20%