Fatigue and Fracture

Fatigue and Fracture
Author: F. C. Campbell
Publisher: ASM International
Total Pages: 699
Release: 2012-01-01
Genre: Technology & Engineering
ISBN: 1615039767

"This book emphasizes the physical and practical aspects of fatigue and fracture. It covers mechanical properties of materials, differences between ductile and brittle fractures, fracture mechanics, the basics of fatigue, structural joints, high temperature failures, wear, environmentally-induced failures, and steps in the failure analysis process."--publishers website.

ASM Handbook: Fatigue and fracture

ASM Handbook: Fatigue and fracture
Author: ASM International. Handbook Committee
Publisher:
Total Pages: 1080
Release: 1990
Genre: Alloys
ISBN:

These volumes cover the properties, processing, and applications of metals and nonmetallic engineering materials. They are designed to provide the authoritative information and data necessary for the appropriate selection of materials to meet critical design and performance criteria.

ASM Metals Reference Book, 3rd Edition

ASM Metals Reference Book, 3rd Edition
Author: Michael Bauccio
Publisher: ASM International
Total Pages: 628
Release: 1993-01-01
Genre: Technology & Engineering
ISBN: 9780871704788

This reference book makes it easy for anyone involved in materials selection, or in the design and manufacture of metallic structural components to quickly screen materials for a particular application. Information on practically all ferrous and nonferrous metals including powder metals is presented in tabular form for easy review and comparison between different materials. Included are chemical compositions, physical and mechanical properties, manufacturing processes, applications, pertinent specifications and standards, and test methods. Contents Overview: Glossary of metallurgical terms Selection of structural materials (specifications and standards, life cycle and failure modes, materials properties and design, and properties and applications) Physical data on the elements and alloys Testing and inspection Chemical composition and processing characteristics

ASM Handbook: Fatigue and fracture

ASM Handbook: Fatigue and fracture
Author: ASM International. Handbook Committee
Publisher:
Total Pages: 1080
Release: 1990
Genre: Alloys
ISBN:

These volumes cover the properties, processing, and applications of metals and nonmetallic engineering materials. They are designed to provide the authoritative information and data necessary for the appropriate selection of materials to meet critical design and performance criteria.

Atlas of Fatigue Curves

Atlas of Fatigue Curves
Author: Howard E. Boyer
Publisher: ASM International
Total Pages: 544
Release: 1985-12-31
Genre: Technology & Engineering
ISBN: 9780871702142

Contains more than 500 fatigue curves for industrial ferrous and nonferrous alloys. Also includes an explanation of fatigue testing and interpretation of test results. Each curve is presented independently and includes an explanation of its particular importance.

Elements of Metallurgy and Engineering Alloys

Elements of Metallurgy and Engineering Alloys
Author: Flake C. Campbell
Publisher: ASM International
Total Pages: 671
Release: 2008-01-01
Genre: Technology & Engineering
ISBN: 1615030581

This practical reference provides thorough and systematic coverage on both basic metallurgy and the practical engineering aspects of metallic material selection and application.

Characterization and Failure Analysis of Plastics

Characterization and Failure Analysis of Plastics
Author: ASM International
Publisher: ASM International
Total Pages: 486
Release: 2003-01-01
Genre: Technology & Engineering
ISBN: 1615030735

The selection and application of engineered materials is an integrated process that requires an understanding of the interaction between materials properties, manufacturing characteristics, design considerations, and the total life cycle of the product. This reference book on engineering plastics provides practical and comprehensive coverage on how the performance of plastics is characterized during design, property testing, and failure analysis. The fundamental structure and properties of plastics are reviewed for general reference, and detailed articles describe the important design factors, properties, and failure mechanisms of plastics. The effects of composition, processing, and structure are detailed in articles on the physical, chemical, thermal, and mechanical properties. Other articles cover failure mechanisms such as: crazing and fracture; impact loading; fatigue failure; wear failures, moisture related failure; organic chemical related failure; photolytic degradation; and microbial degradation. Characterization of plastics in failure analysis is described with additional articles on analysis of structure, surface analysis, and fractography.

Fatigue and Durability of Structural Materials

Fatigue and Durability of Structural Materials
Author: Gary R. Halford
Publisher: ASM International
Total Pages: 471
Release: 2006
Genre: Architecture
ISBN: 1615030743

Fatigue and Durability of Structural Materials explains how mechanical material behavior relates to the design of structural machine components. The major emphasis is on fatigue and failure behavior using engineering models that have been developed to predict, in advance of service, acceptable fatigue and other durability-related lifetimes. The book covers broad classes of materials used for high-performance structural applications such as aerospace components, automobiles, and power generation systems. Coverage focuses on metallic materials but also addresses unique capabilities of important nonmetals. The concepts are applied to behavior at room or ambient temperatures; a planned second volume will address behavior at higher-temperatures. The volume is a repository of the most significant contributions by the authors to the art and science of material and structural durability over the past half century. During their careers, including 40 years of direct collaboration, they have developed a host of durability models that are based on sound physical and engineering principles. Yet, the models and interpretation of behavior have a unique simplicity that is appreciated by the practicing engineer as well as the beginning student. In addition to their own pioneering work, the authors also present the work of numerous others who have provided useful results that have moved progress in these fields. This book will be of immense value to practicing mechanical and materials engineers and designers charged with producing structural components with adequate durability. The coverage is appropriate for a range of technical levels from undergraduate engineering students through material behavior researchers and model developers. It will be of interest to personnel in the automotive and off-highway vehicle manufacturing industry, the aeronautical industry, space propulsion and the power generation/conversion industry, the electric power industry, the machine tool industry, and any industry associated with the design and manufacturing of mechanical equipment subject to cyclic loads.