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� Behavior and life assessment of high-temperature metals & alloys � Analyzes materials in power plants and energy systems � New information on creep/fatigue interaction and weldments � Valuable data for plant and component design -------------------------------------------------------------------------------- This book offers critical new information from around the world on creep in multiple high-temperature metals, alloys, and advanced materials. It analyzes microstructural effects on plant performance, component and plant design—as well as the performance of weldments and creep/fatigue interaction. Many chapters offer never before published data on materials for power plants—as well as techniques for assessment. Original data is presented from the Advanced Creep program, including defect assessment of high-temperature and multi-axial components, creep crack initiation (incubation), and growth assessment. The 1,131-page book contains key analyses of design and life assessment as these relate to creep and fracture in many high-temperature components in power plants, piping, and other high-temperature environments. The chapters are based on presentations made at the EEEC Creep Conference, organized by the European Creep Collaborative Committee. -------------------------------------------------------------------------------- TABLE OF CONTENTS Introduction Keynote Presentations � Long-Term Creep Rupture Strength Assessment: The Development of the European Collaborative Creep Committee Post Assessment Tests � Microstructure and Long-Term Creep Properties of 9–12% Cr Steels � Acquisition of Long-Term Creep Data and Knowledge for New Applications � A Perspective on the Design of High Temperature Boiler Components Section 1—New High Temperature Plant Materials � U.S. Program on Materials Technology for Ultrasupercritical Coal Power Plants � Improvement of Long-Term Creep Rupture Strengths of 9–11%Cr Ferritic Heat Resistant Steels for Boiler Components � T/P23, 24, 911 and 92: New Grades for Advanced Coal-Fired Power Plants—Properties and Experience Creep Behavior of a New Cast Austenitic Alloy � Long-Term Creep Deformation Characteristics of Advanced Ferritic Steels for USC Power Plants � Creep-Rupture Behavior of 3Cr-3W-V Bainitic Steels � Effect of V and Nb Contents on Mechanical Properties of High Cr Steel � Improved Creep Resistance of Steel 92 by the Use of Modified Heat Treatments � Influence of Normalizing Heat Treatment on Precipitation Behavior in Modified 9Cr-1Mo Steel � Extrapolation of Short-Term Creep Rupture Data—The Potential Risk of Over-Estimation � Long-Term Creep Degradation in 12%Cr Ferritic Steel Tubes and Pipes � Creep Rupture Data Assessments of Alloy 617 Section 2—Physical Damage Measurement � Damage Evolution during Creep of Steels � Dislocation Mechanisms Controlling the Deformation of CMSX-4 Single Crystals � Time-Dependent Deformation of Stand-Alone Plasma-Sprayed TBCs and Related Microstructural Observations � Thermal Fatigue Damage Accumulation in 1CrMoV Rotor Steel � Metallographic Atlas for 2.25Cr-1Mo Steels and Degradation due to Long-term Service at the Elevated Temperatures � Estimation of the Failure Time for Low-Carbon CrMoV Steels in Creep Condition Using Modified Kinetic Theory Based on Microstructural Parameters � In Search of Delayed Elasticity Prior to Fracture in a Nickel-base Single-crystal, CMSX-10 � Short-term Rheology of a Polycrystalline Nickel-base Superalloy Involving Delayed Elasticity � Elastic Properties of Heat Resistant Steels after Long-term Creep Exposure � The Significance of Microstructural Changes and Steam Oxidation for the Service Life of Chromium Steel Components � Long Term Creep Behaviour and Microstructural Evolution of E911 Steel
- Sales Rank: #13347472 in Books
- Published on: 2005-09-30
- Original language: English
- Number of items: 1
- Dimensions: 9.75" h x 7.00" w x 1.25" l,
- Binding: Paperback
- 1131 pages
About the Author
Editors: I. A. Shibli, European Technology Development, S. R. Holdsworth, Alstom Power, and G. Merckling, Istituto Sientifico Breda
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