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Creep-Resistant Steels

Creep-Resistant Steels PDF Author: Fujio Abe
Publisher: Elsevier
ISBN: 1845694015
Category : Technology & Engineering
Languages : en
Pages : 701

Book Description
Creep-resistant steels are widely used in the petroleum, chemical and power generation industries. Creep-resistant steels must be reliable over very long periods of time at high temperatures and in severe environments. Understanding and improving long-term creep strength is essential for safe operation of plant and equipment. This book provides an authoritative summary of key research in this important area.The first part of the book describes the specifications and manufacture of creep-resistant steels. Part two covers the behaviour of creep-resistant steels and methods for strengthening them. The final group of chapters analyses applications in such areas as turbines and nuclear reactors.With its distinguished editors and international team of contributors, Creep-resistant steels is a valuable reference for the power generation, petrochemical and other industries which use high strength steels at elevated temperatures. Describes the specifications and manufacture of creep-resistant steels Strengthening methods are discussed in detail Different applications are analysed including turbines and nuclear reactors

Creep-Resistant Steels

Creep-Resistant Steels PDF Author: Fujio Abe
Publisher: Elsevier
ISBN: 1845694015
Category : Technology & Engineering
Languages : en
Pages : 701

Book Description
Creep-resistant steels are widely used in the petroleum, chemical and power generation industries. Creep-resistant steels must be reliable over very long periods of time at high temperatures and in severe environments. Understanding and improving long-term creep strength is essential for safe operation of plant and equipment. This book provides an authoritative summary of key research in this important area.The first part of the book describes the specifications and manufacture of creep-resistant steels. Part two covers the behaviour of creep-resistant steels and methods for strengthening them. The final group of chapters analyses applications in such areas as turbines and nuclear reactors.With its distinguished editors and international team of contributors, Creep-resistant steels is a valuable reference for the power generation, petrochemical and other industries which use high strength steels at elevated temperatures. Describes the specifications and manufacture of creep-resistant steels Strengthening methods are discussed in detail Different applications are analysed including turbines and nuclear reactors

Examples of Processing of Creep Resistant Steels

Examples of Processing of Creep Resistant Steels PDF Author: K. Mach
Publisher:
ISBN:
Category :
Languages : en
Pages : 37

Book Description


Creep Resistant Steels for Power Plants

Creep Resistant Steels for Power Plants PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Structural Alloys for Power Plants

Structural Alloys for Power Plants PDF Author: A. Shirzadi
Publisher: Elsevier
ISBN: 0857097555
Category : Technology & Engineering
Languages : en
Pages : 519

Book Description
Current fleets of conventional and nuclear power plants face increasing hostile environmental conditions due to increasingly high temperature operation for improved capacity and efficiency, and the need for long term service. Additional challenges are presented by the requirement to cycle plants to meet peak-load operation. This book presents a comprehensive review of structural materials in conventional and nuclear energy applications. Opening chapters address operational challenges and structural alloy requirements in different types of power plants. The following sections review power plant structural alloys and methods to mitigate critical materials degradation in power plants.

9-12Cr Heat-Resistant Steels

9-12Cr Heat-Resistant Steels PDF Author: Wei Yan
Publisher: Springer
ISBN: 3319148397
Category : Technology & Engineering
Languages : en
Pages : 223

Book Description
With China becoming a major force in steel research and development, this book highlights the work of a group from the Chinese Academy of Sciences, led by the first four authors. This group has the ideal knowledge base for writing this updated book on heat-resistant steels. The fifth author, Sha, based in the UK, has been collaborating with the Chinese group since 2009 and is the lead or sole author of four research books, all published in English. The last book, “Steels: from materials science to structural engineering,” was published by Springer in 2013. Within two months of its publication, researchers at the University of Science and Technology Liaoning had requested translation of the book into Chinese. Springer obliged, and the Chinese version was published by the Metallurgical Industry Press, Beijing, in August 2014. Sha has organized and completed the writing of the proposed book, though the main research was done in China.

Rupture Ductility of Creep Resistant Steels

Rupture Ductility of Creep Resistant Steels PDF Author: A. Strang
Publisher: Ashgate Publishing
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 368

Book Description


Creep Resistant High Temperature Martensitic Steel

Creep Resistant High Temperature Martensitic Steel PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The disclosure provides a creep resistant alloy having an overall composition comprised of iron, chromium, molybdenum, carbon, manganese, silicon, nickel, vanadium, niobium, nitrogen, tungsten, cobalt, tantalum, boron, copper, and potentially additional elements. In an embodiment, the creep resistant alloy has a molybdenum equivalent Mo(eq) from 1.475 to 1.700 wt. % and a quantity (C+N) from 0.145 to 0.205. The overall composition ameliorates sources of microstructural instability such as coarsening of M.sub. 23C.sub. 6carbides and MX precipitates, and mitigates or eliminates Laves and Z-phase formation. A creep resistant martensitic steel may be fabricated by preparing a melt comprised of the overall composition followed by at least austenizing and tempering. The creep resistant alloy exhibits improved high-temperature creep strength in the temperature environment of around 650.degree. C.

Proceedings of the Conference on Welding Creep-Resistant Steels, 17-18 February, 1970

Proceedings of the Conference on Welding Creep-Resistant Steels, 17-18 February, 1970 PDF Author:
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 250

Book Description


Austenitic Stainless Steels

Austenitic Stainless Steels PDF Author: Wojciech Borek
Publisher: BoD – Books on Demand
ISBN: 9535137018
Category : Technology & Engineering
Languages : en
Pages : 219

Book Description
Stainless steel is still one of the fastest growing materials. Today, the austenitic stainless steel with the classic composition of 18% Cr and 8% Ni (grade 304L) is still the most widely used by far in the world. The unique characteristic of stainless steel arises from three main factors. The versatility results from high corrosion resistance, excellent low- and high-temperature properties, high toughness, formability, and weldability. The long life of stainless steels has been proven in service in a wide range of environments, together with low maintenance costs compared to other highly alloyed metallic materials. The retained value of stainless steel results from the high intrinsic value and easy recycling. Stainless steel, especially of austenitic microstructure, plays a crucial role in achieving sustainable development nowadays, so it is also important for further generations.

Microstructural Stability of Creep Resistant Alloys for High Temperature Plant Applications

Microstructural Stability of Creep Resistant Alloys for High Temperature Plant Applications PDF Author: A. Strang
Publisher: Woodhead Publishing Limited
ISBN:
Category : Science
Languages : en
Pages : 496

Book Description
The second in a series of international conferences focusing attention on the microstructural changes occurring in high temperature materials during service exposure and identifying the processes and mechanisms leading to the observed degradation of their mechanical properties. Highlights the work in progress to develop improved high temperature materials more resistant to microstructural degradation in service.