ICAF 2009, Bridging the Gap between Theory and Operational Practice

ICAF 2009, Bridging the Gap between Theory and Operational Practice
Title ICAF 2009, Bridging the Gap between Theory and Operational Practice PDF eBook
Author M. Bos
Publisher Springer Science & Business Media
Pages 1340
Release 2009-05-24
Genre Technology & Engineering
ISBN 9048127467

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The 31st Conference and the 25th Symposium of the International Committee on Aeronautical Fatigue will be hosted in Rotterdam, The Netherlands, by the National Aerospace Laboratory NLR, under the auspices of the Netherlands Association of Aeronautical Engineers NVvL, the Technical University of Delft and Stork Fokker AESP B.V. These Proceedings will consist of reviews of aeronautical fatigue activities presented by the national delegates of the 14 member nations of ICAF. It will also contain specialist papers presented by international authors with design, manufacturing, airworthiness regulations, operations and research backgrounds. The papers will be based on the theme “Bridging the gap between theory and operational practice”.

ICAF 2011 Structural Integrity: Influence of Efficiency and Green Imperatives

ICAF 2011 Structural Integrity: Influence of Efficiency and Green Imperatives
Title ICAF 2011 Structural Integrity: Influence of Efficiency and Green Imperatives PDF eBook
Author Jerzy Komorowski
Publisher Springer Science & Business Media
Pages 950
Release 2011-05-06
Genre Technology & Engineering
ISBN 9400716648

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Proceedings of the 26th Symposium of the International Committee on Aeronautical Fatigue are a widely referenced summary of advances in aeronautical design against fatigue. This is a bi-annual event and the proceedings have been published in book form for over 35 years.

Fatigue and Fracture of Fibre Metal Laminates

Fatigue and Fracture of Fibre Metal Laminates
Title Fatigue and Fracture of Fibre Metal Laminates PDF eBook
Author René Alderliesten
Publisher Springer
Pages 310
Release 2017-04-19
Genre Technology & Engineering
ISBN 3319562274

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This book contributes to the field of hybrid technology, describing the current state of knowledge concerning the hybrid material concept of laminated metallic and composite sheets for primary aeronautical structural applications. It is the only book to date on fatigue and fracture of fibre metal laminates (FMLs). The first section of the book provides a general background of the FML technology, highlighting the major FML types developed and studied over the past decades in conjunction with an overview of industrial developments based on filed patents. In turn, the second section discusses the mechanical response to quasi-static loading, together with the fracture phenomena during quasi-static and cyclic loading. To consider the durability aspects related to strength justification and certification of primary aircraft structures, the third section discusses thermal aspects related to FMLs and their mechanical response to various environmental and acoustic conditions.

Applications of Composite Materials in Engineering

Applications of Composite Materials in Engineering
Title Applications of Composite Materials in Engineering PDF eBook
Author Madhu Puttegowda
Publisher Elsevier
Pages 641
Release 2024-10-19
Genre Technology & Engineering
ISBN 0443139903

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Applications of Composite Materials in Engineering provides an up-to-date review of recent application advancements in different engineering fields. The book concentrates on the availability and utilization of various fibers and reinforcements in composites and analyzes the suitability of them in different engineering and commercial applications. The latest research as well as possible application avenues for the future are discussed in detail. - Covers a diverse range of applications in structural, electronic, thermal, electrochemical, environmental, and biomedical engineering - Includes recent developments in metal- matrix, ceramic- matrix and polymer-matrix composites - Provides a clear understanding of the present state-of-the-art and the growing utility of hybrid polymer composite materials

Fatigue of Materials II

Fatigue of Materials II
Title Fatigue of Materials II PDF eBook
Author T.S. Srivatsan
Publisher Springer
Pages 257
Release 2016-12-06
Genre Technology & Engineering
ISBN 3319481053

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The papers in this collection cover a diverse range of topics on the topic of fatigue of materials. The editors have grouped the papers into five sections. Sections 1 and 2 contain papers that (i) review the current state of knowledge both related and relevant to the subject of fatigue behavior of materials, and (ii) present new, innovative, and emerging techniques for experimental evaluation of the fatigue behavior. Sections 3 and 4 focus on advanced materials that are used in performance-critical applications in the aerospace and automotive industries, such as the alloys of titanium, nickel, aluminum, and magnesium. Section 5 presents papers relating to other materials of engineering interest, such as iron and steel, polymer, rubber, and composites.

Aluminum-Lithium Alloys

Aluminum-Lithium Alloys
Title Aluminum-Lithium Alloys PDF eBook
Author N Eswara Prasad
Publisher Butterworth-Heinemann
Pages 596
Release 2013-09-20
Genre Technology & Engineering
ISBN 0124016790

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Because lithium is the least dense elemental metal, materials scientists and engineers have been working for decades to develop a commercially viable aluminum-lithium (Al-Li) alloy that would be even lighter and stiffer than other aluminum alloys. The first two generations of Al-Li alloys tended to suffer from several problems, including poor ductility and fracture toughness; unreliable properties, fatigue and fracture resistance; and unreliable corrosion resistance. Now, new third generation Al-Li alloys with significantly reduced lithium content and other improvements are promising a revival for Al-Li applications in modern aircraft and aerospace vehicles. Over the last few years, these newer Al-Li alloys have attracted increasing global interest for widespread applications in the aerospace industry largely because of soaring fuel costs and the development of a new generation of civil and military aircraft. This contributed book, featuring many of the top researchers in the field, is the first up-to-date international reference for Al-Li material research, alloy development, structural design and aerospace systems engineering. - Provides a complete treatment of the new generation of low-density AL-Li alloys, including microstructure, mechanical behavoir, processing and applications - Covers the history of earlier generation AL-Li alloys, their basic problems, why they were never widely used, and why the new third generation Al-Li alloys could eventually replace not only traditional aluminum alloys but more expensive composite materials - Contains two full chapters devoted to applications in the aircraft and aerospace fields, where the lighter, stronger Al-Li alloys mean better performing, more fuel-efficient aircraft

Aerospace Materials and Material Technologies

Aerospace Materials and Material Technologies
Title Aerospace Materials and Material Technologies PDF eBook
Author N. Eswara Prasad
Publisher Springer
Pages 568
Release 2016-11-07
Genre Technology & Engineering
ISBN 9811021430

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This book serves as a comprehensive resource on various traditional, advanced and futuristic material technologies for aerospace applications encompassing nearly 20 major areas. Each of the chapters addresses scientific principles behind processing and production, production details, equipment and facilities for industrial production, and finally aerospace application areas of these material technologies. The chapters are authored by pioneers of industrial aerospace material technologies. This book has a well-planned layout in 4 parts. The first part deals with primary metal and material processing, including nano manufacturing. The second part deals with materials characterization and testing methodologies and technologies. The third part addresses structural design. Finally, several advanced material technologies are covered in the fourth part. Some key advanced topics such as “Structural Design by ASIP”, “Damage Mechanics-Based Life Prediction and Extension” and “Principles of Structural Health Monitoring” are dealt with at equal length as the traditional aerospace materials technology topics. This book will be useful to students, researchers and professionals working in the domain of aerospace materials.