Application of Fracture Mechanics to Composite Materials

Application of Fracture Mechanics to Composite Materials
Title Application of Fracture Mechanics to Composite Materials PDF eBook
Author K. Friedrich
Publisher Elsevier
Total Pages 686
Release 2012-12-02
Genre Technology & Engineering
ISBN 0444597212

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This multiauthor volume provides a useful summary of current knowledge on the application of fracture mechanics to composite materials. It has been written to fill the gap between the literature on fundamental principles of fracture mechanics and the special publications on the fracture properties of conventional materials, such as metals, polymers and ceramics. The data are represented in the form of about 420 figures (including diagrams, schematics and photographs) and 80 tables. The author index covers more than 500 references, and the subject index more than 1000 key words.

Fracture Mechanics of Composites

Fracture Mechanics of Composites
Title Fracture Mechanics of Composites PDF eBook
Author G. P. Sendeckyj
Publisher ASTM International
Total Pages 248
Release 1975
Genre Technology & Engineering
ISBN 9780803103665

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Fracture Mechanics

Fracture Mechanics
Title Fracture Mechanics PDF eBook
Author E.E. Gdoutos
Publisher Springer Science & Business Media
Total Pages 370
Release 2006-03-30
Genre Technology & Engineering
ISBN 140203153X

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New developments in the applications of fracture mechanics to engineering problems have taken place in the last years. Composite materials have extensively been used in engineering problems. Quasi-brittle materials including concrete, cement pastes, rock, soil, etc. all benefit from these developments. Layered materials and especially thin film/substrate systems are becoming important in small volume systems used in micro and nanoelectromechancial systems (MEMS and NEMS). Nanostructured materials are being introduced in our every day life. In all these problems fracture mechanics plays a major role for the prediction of failure and safe design of materials and structures. These new challenges motivated the author to proceed with the second edition of the book. The second edition of the book contains four new chapters in addition to the ten chapters of the first edition. The fourteen chapters of the book cover the basic principles and traditional applications, as well as the latest developments of fracture mechanics as applied to problems of composite materials, thin films, nanoindentation and cementitious materials. Thus the book provides an introductory coverage of the traditional and contemporary applications of fracture mechanics in problems of utmost technological importance. With the addition of the four new chapters the book presents a comprehensive treatment of fracture mechanics. It includes the basic principles and traditional applications as well as the new frontiers of research of fracture mechanics during the last three decades in topics of contemporary importance, like composites, thin films, nanoindentation and cementitious materials. The book contains fifty example problems and more than two hundred unsolved problems. A "Solutions Manual" is available upon request for course instructors from the author.

Damage and Fracture of Composite Materials and Structures

Damage and Fracture of Composite Materials and Structures
Title Damage and Fracture of Composite Materials and Structures PDF eBook
Author Mohd Nasir Tamin
Publisher Springer Science & Business Media
Total Pages 244
Release 2012-01-03
Genre Science
ISBN 3642236596

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This monograph presents recent research findings on fracture properties and behavior of the composites, and their damage and cracking process under both quasi-static and impact loading conditions. Theoretical treatment, experimental investigation and numerical simulation aspects of the mechanics of composites, including sandwich structures are included.

Application of Fracture Mechanics to Polymers, Adhesives and Composites

Application of Fracture Mechanics to Polymers, Adhesives and Composites
Title Application of Fracture Mechanics to Polymers, Adhesives and Composites PDF eBook
Author D R Moore
Publisher Elsevier
Total Pages 298
Release 2003-12-04
Genre Technology & Engineering
ISBN 9780080553078

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Application of Fracture Mechanics to Polymers, Adhesives and Composites

Application of Fracture Mechanics to Cementitious Composites

Application of Fracture Mechanics to Cementitious Composites
Title Application of Fracture Mechanics to Cementitious Composites PDF eBook
Author S.P. Shah
Publisher Springer Science & Business Media
Total Pages 701
Release 2012-12-06
Genre Science
ISBN 9400951213

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Portland cement concrete is a relatively brittle material. As a result, mechanical behavior of concrete, conventionally reinforced concrete, prestressed concrete, and fiber reinforced concrete is critically influenced by crack propagation. It is, thus, not surprising that attempts are being made to apply the concepts of fracture mechanics to quantify the resistance to cracking in cementious composites. The field of fracture mechanics originated in the 1920's with A. A. Griffith's work on fracture of brittle materials such as glass. Its most significant applications, however, have been for controlling brittle fracture and fatigue failure of metallic structures such as pressure vessels, airplanes, ships and pipe lines. Considerable development has occurred in the last twenty years in modifying Griffith's ideas or in proposing new concepts to account for the ductility typical of metals. As a result of these efforts, standard testing techniques have been available to obtain fracture parameters for metals, and design based on these parameters are included in relevant specifications. Many attempts have been made, in the last two decades or so, to apply the fracture mechanics concepts to cement, mortar, con crete and reinforced concrete. So far, these attempts have not led to a unique set of material parameters which can quantify the resistance of these cementitious composites to fracture. No standard testing methods and a generally accepted theoretical analysis are established for concrete as they are for metals.

Fracture Mechanics

Fracture Mechanics
Title Fracture Mechanics PDF eBook
Author E.E. Gdoutos
Publisher Springer Science & Business Media
Total Pages 404
Release 2005-02-15
Genre Technology & Engineering
ISBN 9781402028632

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New developments in the applications of fracture mechanics to engineering problems have taken place in the last years. Composite materials have extensively been used in engineering problems. Quasi-brittle materials including concrete, cement pastes, rock, soil, etc. all benefit from these developments. Layered materials and especially thin film/substrate systems are becoming important in small volume systems used in micro and nanoelectromechancial systems (MEMS and NEMS). Nanostructured materials are being introduced in our every day life. In all these problems fracture mechanics plays a major role for the prediction of failure and safe design of materials and structures. These new challenges motivated the author to proceed with the second edition of the book. The second edition of the book contains four new chapters in addition to the ten chapters of the first edition. The fourteen chapters of the book cover the basic principles and traditional applications, as well as the latest developments of fracture mechanics as applied to problems of composite materials, thin films, nanoindentation and cementitious materials. Thus the book provides an introductory coverage of the traditional and contemporary applications of fracture mechanics in problems of utmost technological importance. With the addition of the four new chapters the book presents a comprehensive treatment of fracture mechanics. It includes the basic principles and traditional applications as well as the new frontiers of research of fracture mechanics during the last three decades in topics of contemporary importance, like composites, thin films, nanoindentation and cementitious materials. The book contains fifty example problems and more than two hundred unsolved problems. A "Solutions Manual" is available upon request for course instructors from the author.