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Unresolved Problems in Brittle Material Design

Unresolved Problems in Brittle Material Design
Author: W. H. Dukes
Publisher:
Total Pages: 40
Release: 1966
Genre: Brittleness
ISBN:

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Extensive benefits are to be derived from the employment of certain non-metallic refractory materials in structural applications, particularly where severe operating temperatures are involved. These materials, however, lack ductility and are susceptible to flaws, so that conventional design procedures cannot be used with confidence that a reliable structure will result. In view of the interest in the use of these materials the Panel has therefore embarked upon a programme to appropriately refine design procedures and techniques, and to present the resulting material in a form convenient for use by designers. This critical literature review is an early result of this programme. (Author).


The Fracture of Brittle Materials

The Fracture of Brittle Materials
Author: Stephen W. Freiman
Publisher: John Wiley & Sons
Total Pages: 256
Release: 2019-01-07
Genre: Technology & Engineering
ISBN: 1118769708

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Provides a modern, practical approach to the understanding and measurement procedures relevant to the fracture of brittle materials This book examines the testing and analysis of the fracture of brittle materials. Expanding on the measurement and analysis methodology contained in the first edition, it covers the relevant measurements (toughness and strength), material types, fracture mechanics, measurement techniques, reliability and lifetime predictions, microstructural considerations, and material/test selection processes appropriate for the analysis of the fracture behavior of brittle materials. The Fracture of Brittle Materials: Testing and Analysis, Second Edition summarizes the concepts behind the selection of a test procedure for fracture toughness and strength, and goes into detail on how the statistics of fracture can be used to assure reliability. It explains the importance of the role of microstructure in these determinations and emphasizes the use of fractographic analysis as an important tool in understanding why a part failed. The new edition includes a significant quantity of material related to the fracture of biomaterials, and features two new chapters—one on thermal shock, the other on the modeling of the fracture process. It also expands on a discussion of how to treat the statistics of fracture strength data to ensure reliability. Provides practical analysis of fracture toughness and strength Introduces the engineering and materials student to the basic concepts necessary for analyzing brittle fracture Contains new statistical analysis procedures to allow for the prediction of the safe design of brittle components Contains real-world examples to assist the reader in applying the concepts to their own research, material development, and quality-control needs The Fracture of Brittle Materials: Testing and Analysis, Second Edition is an important resource for all students, technicians, engineers, scientists, and researchers involved in the study, analysis, creation, or testing of ceramics.


Multiaxial Fatigue

Multiaxial Fatigue
Author: Darrell Socie
Publisher: SAE International
Total Pages: 510
Release: 1999-12-15
Genre: Technology & Engineering
ISBN: 0768065100

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This book provides practicing engineers, researchers, and students with a working knowledge of the fatigue design process and models under multiaxial states of stress and strain. Readers are introduced to the important considerations of multiaxial fatigue that differentiate it from uniaxial fatigue.


Engineering Fracture Design

Engineering Fracture Design
Author: H. Liebowitz
Publisher: Academic Press
Total Pages: 472
Release: 2014-05-10
Genre: Technology & Engineering
ISBN: 1483273288

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Fracture: An Advanced Treatise, Volume IV: Engineering Fracture Design presents the development and status of knowledge on sudden, catastrophic failure of structures due to unexpected brittle fracture of component materials. This book provides information pertinent to the engineering fracture design as well as the microscopic and macroscopic fundamentals of fracture. Organized into eight chapters, this volume begins with an overview of the evaluation of fracture tests. This text then presents an analysis of temperature effects on fracture. Other chapters consider the fracture and carrying capacity of long, slender columns and related topics. This book discusses as well the problems in connection with columns, beams, and plates, and experimental evidence to support theories proposed for describing the strength and stiffness of these elements. The final chapter presents an analysis of the problem of brittle fracture in weldments. This book is a valuable resource for engineers, students, and research workers in industrial organizations, education and research institutions, and various government agencies.