Proceedings Of The Asme Nondestructive Evaluation Engineering Division 2002
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Proceedings of the ASME Nondestructive Evaluation Engineering Division--2002
Author | : Çetin Çetinkaya |
Publisher | : |
Total Pages | : 135 |
Release | : 2002-01-01 |
Genre | : Aerospace engineering |
ISBN | : 9780791836491 |
Index of Conference Proceedings
Author | : British Library. Document Supply Centre |
Publisher | : |
Total Pages | : 870 |
Release | : 2003 |
Genre | : Conference proceedings |
ISBN | : |
Structural Health Monitoring 2003
Author | : Fu-Kuo Chang |
Publisher | : DEStech Publications, Inc |
Total Pages | : 1592 |
Release | : 2003 |
Genre | : Technology & Engineering |
ISBN | : 9781932078206 |
Important new information on sensors, monitoring, prognosis, networking, and planning for safety and maintenance.
Proceedings of the ASME Aerospace Division
Author | : American Society of Mechanical Engineers. Aerospace Division |
Publisher | : |
Total Pages | : 704 |
Release | : 2007 |
Genre | : Airplanes |
ISBN | : |
Mechanics of Elastic Waves and Ultrasonic Nondestructive Evaluation
Author | : Tribikram Kundu |
Publisher | : CRC Press |
Total Pages | : 390 |
Release | : 2019-07-09 |
Genre | : Science |
ISBN | : 1351849395 |
Summary: This book presents necessary background knowledge on mechanics to understand and analyze elastic wave propagation in solids and fluids. This knowledge is necessary for elastic wave propagation modeling and for interpreting experimental data generated during ultrasonic nondestructive testing and evaluation (NDT&E). The book covers both linear and nonlinear analyses of ultrasonic NDT&E techniques. The materials presented here also include some exercise problems and solution manual. Therefore, this book can serve as a textbook or reference book for a graduate level course on elastic waves and/or ultrasonic nondestructive evaluation. It will be also useful for instructors who are interested in designing short courses on elastic wave propagation in solids or NDT&E. The materials covered in the first two chapters provide the fundamental knowledge on linear mechanics of deformable solids while Chapter 4 covers nonlinear mechanics. Thus, both linear and nonlinear ultrasonic techniques are covered here. Nonlinear ultrasonic techniques are becoming more popular in recent years for detecting very small defects and damages. However, this topic is hardly covered in currently available textbooks. Researchers mostly rely on published research papers and research monographs to learn about nonlinear ultrasonic techniques. Chapter 3 describes elastic wave propagation modeling techniques using DPSM. Chapter 5 is dedicated to an important and very active research field – acoustic source localization – that is essential for structural health monitoring and for localizing crack and other type of damage initiation regions. Features • Introduces Linear and Nonlinear ultrasonic techniques in a single book. • Commences with basic definitions of displacement, displacement gradient, traction and stress. • Provides step by step derivations of fundamental equations of mechanics as well as linear and nonlinear wave propagation analysis. • Discusses basic theory in addition to providing detailed NDE applications. • Provides extensive example and exercise problems along with an extensive solutions manual.
High Temperature Materials and Mechanisms
Author | : Yoseph Bar-Cohen |
Publisher | : CRC Press |
Total Pages | : 586 |
Release | : 2014-03-03 |
Genre | : Science |
ISBN | : 1466566450 |
The use of high-temperature materials in current and future applications, including silicone materials for handling hot foods and metal alloys for developing high-speed aircraft and spacecraft systems, has generated a growing interest in high-temperature technologies. High Temperature Materials and Mechanisms explores a broad range of issues related to high-temperature materials and mechanisms that operate in harsh conditions. While some applications involve the use of materials at high temperatures, others require materials processed at high temperatures for use at room temperature. High-temperature materials must also be resistant to related causes of damage, such as oxidation and corrosion, which are accelerated with increased temperatures. This book examines high-temperature materials and mechanisms from many angles. It covers the topics of processes, materials characterization methods, and the nondestructive evaluation and health monitoring of high-temperature materials and structures. It describes the application of high temperature materials to actuators and sensors, sensor design challenges, as well as various high temperature materials and mechanisms applications and challenges. Utilizing the knowledge of experts in the field, the book considers the multidisciplinary nature of high temperature materials and mechanisms, and covers technology related to several areas including energy, space, aerospace, electronics, and metallurgy. Supplies extensive references at the end of each chapter to enhance further study Addresses related science and engineering disciplines Includes information on drills, actuators, sensors and more A comprehensive resource of information consolidated in one book, this text greatly benefits students in materials science, aerospace and mechanical engineering, and physics. It is also an ideal resource for professionals in the industry.