N. Prasad – Aerospace Materials and Material Technologies (2 Volume set, 2017)

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Автор: N. Prasad
Название книги: Aerospace Materials and Material Technologies (2 Volume set)
Формат: PDF
Жанр: Авиакосмическая промышленность
Страницы: 1161
Качество: Изначально компьютерное, E-book

1. Aerospace Materials

This book is a comprehensive compilation of chapters on materials (both established and evolving) and material technologies that are important for aerospace systems. It considers aerospace materials in three Parts. Part I covers Metallic Materials (Mg, Al, Al-Li, Ti, aero steels, Ni, intermetallics, bronzes and Nb alloys); Part II deals with Composites (GLARE, PMCs, CMCs and Carbon based CMCs); and Part III considers Special Materials. This compilation has ensured that no important aerospace material system is ignored. Emphasis is laid in each chapter on the underlying scientific principles as well as basic and fundamental mechanisms leading to processing, characterization, property evaluation and applications. This book will be useful to students, researchers and professionals working in the domain of aerospace materials.
Contents
Metallic Materials
Magnesium Alloys.
Aluminium Alloys for Aerospace Applications.
Aluminium–Lithium Alloys.
Titanium Sponge Production and Processing for Aerospace Applications.
Titanium Alloys: Part 1—Physical Metallurgy and Processing.
Titanium Alloys: Part 2—Alloy Development, Properties and Applications.
Aero Steels: Part 1—Low Alloy Steels.
Aero Steels: Part 2—High Alloy Steels.
Nickel-Based Superalloys.
Structural Intermetallics.
Bronzes for Aerospace Applications.
Niobium and Other High Temperature Refractory Metals for Aerospace Applications.
Composites
GLARE: A Versatile Fibre Metal Laminate (FML) Concept.
Carbon Fibre Polymer Matrix Structural Composites.
C/C and C/SiC Composites for Aerospace Applications.
Ceramic Matrix Composites (CMCs) for Aerospace Applications.
Nanocomposites Potential for Aero Applications.
Special Materials
Monolithic Ceramics for Aerospace Applications.
Nano-enabled Multifunctional Materials for Aerospace Applications.
MAX Phases: New Class of Carbides and Nitrides for Aerospace Structural Applications.
Shape Memory Alloys (SMAs) for Aerospace Applications.
Detonation Sprayed Coatings for Aerospace Applications.
Piezoceramic Materials and Devices for Aerospace Applications.
Stealth Materials and Technology for Airborne Systems.
Paints for Aerospace Applications.
Elastomers and Adhesives for Aerospace Applications.

2. Aerospace Material Technologies

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.
Contents
Processing Technologies
Processing of Aerospace Metals and Alloys: Part 1—Special Melting Technologies
Processing of Aerospace Metals and Alloys: Part 2—Secondary Processing
Superplastic Forming of Aerospace Materials
Welding Technologies in Aerospace Applications
Nanomanufacturing for Aerospace Applications
Characterisation and Testing
Microstructure: An Introduction
Texture Effects in Important Aerospace Materials
Physical Property Significances for Aerospace Structural Materials
Structural Alloy Testing: Part 1—Ambient Temperature Properties
Structural Alloy Testing: Part 2—Creep Deformation and Other High-Temperature Properties
Non-destructive Testing and Damage Detection
Structural Design
Design of Aircraft Structures: An Overview
Aircraft Mechanical Systems
Design and Structures of Aircraft Engines
Missile Propulsion Systems
Fatigue Requirements for Aircraft Structures
Full-Scale Fatigue Testing
Residual Strength Requirements for Aircraft Structures
Stress Corrosion Cracking in Aircraft Structures
Special Technologies
Aero Stores (Materials) Inspection and Quality Assurance
Fatigue Life Enhancement for Metallic Airframe Materials
Structural Health Monitoring
Failure Analysis and Prevention
Airworthiness Certification of Metallic and Non-metallic Materials: The Indian Approach and Methodologies
Lightweight Ballistic Armours for Aero-Vehicle Protection

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