Fracture of Brittle Solids
Title | Fracture of Brittle Solids PDF eBook |
Author | Brian R. Lawn |
Publisher | Cambridge University Press |
Pages | 404 |
Release | 1993-06-03 |
Genre | Technology & Engineering |
ISBN | 9780521409728 |
This book is a monograph on the brittle fracture of ceramic materials, in a unified continuum, microstructural and atomistic treatment.
Brittle Fracture and Damage of Brittle Materials and Composites
Title | Brittle Fracture and Damage of Brittle Materials and Composites PDF eBook |
Author | Jacques Lamon |
Publisher | Elsevier |
Pages | 298 |
Release | 2016-03-16 |
Genre | Technology & Engineering |
ISBN | 008101161X |
Flaws are the principal source of fracture in many materials, whether brittle or ductile, whether nearly homogeneous or composite. They are introduced during either fabrication or surface preparation or during exposure to aggressive environments (e. g. oxidation, shocks). The critical flaws act as stress concentrators and initiate cracks that propagate instantaneously to failure in the absence of crack arrest phenomena as encountered in brittle materials. This book explores those brittle materials susceptible to crack arrest and the flaws which initiate crack induced damage. A detailed description of microstructural features covering numerous brittle materials, including ceramics, glass, concrete, metals, polymers and ceramic fibers to help you develop your knowledge of material fracture. Brittle Failure and Damage of Brittle Materials and Composites outlines the technological progress in this field and the need for reliable systems with high performances to help you advance the development of new structural materials, creating advantages of low density, high resistance to elevated temperatures and aggressive environments, and good mechanical properties. - The effects of flaw populations on fracture strength - The main statistical-probabilistic approaches to brittle fracture - The use of these methods for predictions of failure and effects induced by flaw populations - The application of these methods to component design - The methods of estimation of statistical parameters that define flaw strength distributions - The extension of these approaches to damage and failure of continuous fiber reinforced ceramic matrix composites
Fracture of Engineering Brittle Materials
Title | Fracture of Engineering Brittle Materials PDF eBook |
Author | Ayal de S. Jayatilaka |
Publisher | |
Pages | 408 |
Release | 1979 |
Genre | Brittleness |
ISBN |
Fatigue and Fracture
Title | Fatigue and Fracture PDF eBook |
Author | F. C. Campbell |
Publisher | ASM International |
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.
Fracture of Brittle Disordered Materials: Concrete, Rock and Ceramics
Title | Fracture of Brittle Disordered Materials: Concrete, Rock and Ceramics PDF eBook |
Author | G. Baker |
Publisher | CRC Press |
Pages | 593 |
Release | 2004-01-14 |
Genre | Architecture |
ISBN | 0203223454 |
This book derives from the invited IUTAM Symposium in September 1993. The contributions discuss recent advances in fracture mechanics studies of concrete, rock, ceramics and other brittle disordered materials at micro and structural levels. It draws together research and new applications in continuum, damage and fracture mechanics approaches.
Fracture and Size Effect in Concrete and Other Quasibrittle Materials
Title | Fracture and Size Effect in Concrete and Other Quasibrittle Materials PDF eBook |
Author | Zdenek P. Bazant |
Publisher | Routledge |
Pages | 640 |
Release | 2019-03-04 |
Genre | Technology & Engineering |
ISBN | 1351447297 |
Fracture and Size Effect in Concrete and Other Quasibrittle Materials is the first in-depth text on the application of fracture mechanics to the analysis of failure in concrete structures. The book synthesizes a vast number of recent research results in the literature to provide a comprehensive treatment of the topic that does not give merely the facts - it provides true understanding. The many recent results on quasibrittle fracture and size effect, which were scattered throughout many periodicals, are compiled here in a single volume. This book presents a well-rounded discussion of the theory of size effect and scaling of failure loads in structures. The size effect, which is the most important practical manifestation of fracture behavior, has become a hot topic. It has gained prominence in current research on concrete and quasibrittle materials. The treatment of every subject in Fracture and Size Effect in Concrete and Other Quasibrittle Materials proceeds from simple to complex, from specialized to general, and is as concise as possible using the simplest level of mathematics necessary to treat the subject clearly and accurately. Whether you are an engineering student or a practicing engineer, this book provides you with a clear presentation, including full derivations and examples, from which you can gain real understanding of fracture and size effect in concrete and other quasibrittle materials.
Mechanical Behavior and Fracture of Engineering Materials
Title | Mechanical Behavior and Fracture of Engineering Materials PDF eBook |
Author | Jorge Luis González-Velázquez |
Publisher | Springer Nature |
Pages | 253 |
Release | 2019-08-29 |
Genre | Technology & Engineering |
ISBN | 303029241X |
This book presents the theoretical concepts of stress and strain, as well as the strengthening and fracture mechanisms of engineering materials in an accessible level for non-expert readers, but without losing scientific rigor. This volume fills the gap between the specialized books on mechanical behavior, physical metallurgy and material science and engineering books on strength of materials, structural design and materials failure. Therefore it is intended for college students and practicing engineers that are learning for the first time the mechanical behavior and failure of engineering materials or wish to deepen their understanding on these topics. The book includes specific topics seldom covered in other books, such as: how to determine a state of stress, the relation between stress definition and mechanical design, or the theory behind the methods included in industrial standards to assess defects or to determine fatigue life. The emphasis is put into the link between scientific knowledge and practical applications, including solved problems of the main topics, such as stress and strain calculation. Mohr's Circle, yield criteria, fracture mechanics, fatigue and creep life prediction. The volume covers both the original findings in the field of mechanical behavior of engineering materials, and the most recent and widely accepted theories and techniques applied to this topic. At the beginning of some selected topics that by the author's judgement are transcendental for this field of study, the prime references are given, as well as a brief biographical semblance of those who were the pioneers or original contributors. Finally, the intention of this book is to be a textbook for undergraduate and graduate courses on Mechanical Behavior, Mechanical Metallurgy and Materials Science, as well as a consulting and/or training material for practicing engineers in industry that deal with mechanical design, materials selection, material processing, structural integrity assessment, and for researchers that incursion for the first time in the topics covered in this book.