8th International Conference on Fracture and Strength of Solids


Book Description

This two-volume set of 339 peer-reviewed papers covers the broad areas of Composite, Polymer and Ceramic Materials, Fracture Mechanics and Mechanisms, Materials, Mechanical Structure, Strength and Dynamics, Interface Failure and Failure Analysis, Nano-Mechanics and Structures, Damage and Failure, Structural Design and Optimisation, Fatigue and Crack Propagation, Materials Modelling and Computation, Concrete, Rock and Soil, Dynamic Fracture and Impact, Erosion and Corrosion, Smart Materials and Structures, Biomechanics and Other Novel Methods of Computer Modelling in Engineering and Science. The new ideas and results presented will certainly stimulate and enhance progress in research on fracture mechanics, materials behaviour and computational science, as well as advancing fundamental understanding in these fields.




High-Pressure Shock Compression of Solids VII


Book Description

Presenting some of the most recent results of Russian research into shock compression, as well as historical overviews of the Russian research programs into shock compression, this volume will provide Western researchers with many novel ideas and points of view. The chapters in this volume are written by leading Russian specialists various fields of high-pressure physics and form accounts of the main researches on the behavior of matter under shock-wave interaction. The experimental portions contain results of studies of shock compression of metals to high and ultra-high pressure, shock initiation of polymorphic transformations, strength, fracture and fragmentation under shock compression, and detonation of condensed explosives. There are also chapters on theoretical investigations of shock-wave compression and plasma states in regimes of high-pressure and high- temperature. The topics of the book are of interest to scientists and engineers concerned with questions of material behavior under impulsive loading and to the equation of state of matter. Application is to questions of high-speed impact, inner composition of planets, verification of model representations of material behavior under extreme 1oading conditions, syntheses of new materials, development of new technologies for material processing, etc. Russian research differs from much of the Western work in that it has traditionally been wider-ranging and more directed to extremes of response than to precise characterization of specific materials and effects. Western scientists could expect to benefit from the perspective gained from close knowledge of the Russian work.




Fracture of Brittle Solids


Book Description

This book is a monograph on the brittle fracture of ceramic materials, in a unified continuum, microstructural and atomistic treatment.




Fracture and Strength of Solids VII


Book Description

This two-volume set of 339 peer-reviewed papers covers the broad areas of Composite, Polymer and Ceramic Materials, Fracture Mechanics and Mechanisms, Materials, Mechanical Structure, Strength and Dynamics, Interface Failure and Failure Analysis, Nano-Mechanics and Structures, Damage and Failure, Structural Design and Optimisation, Fatigue and Crack Propagation, Materials Modelling and Computation, Concrete, Rock and Soil, Dynamic Fracture and Impact, Erosion and Corrosion, Smart Materials and Structures, Biomechanics and Other Novel Methods of Computer Modelling in Engineering and Science. The new ideas and results presented will certainly stimulate and enhance progress in research on fracture mechanics, materials behaviour and computational science, as well as advancing fundamental understanding in these fields.




NBS Special Publication


Book Description




Statistical Physics of Fracture, Breakdown, and Earthquake


Book Description

In this book, the authors bring together basic ideas from fracture mechanics and statistical physics, classical theories, simulation and experimental results to make the statistical physics aspects of fracture more accessible. They explain fracture-like phenomena, highlighting the role of disorder and heterogeneity from a statistical physical viewpoint. The role of defects is discussed in brittle and ductile fracture, ductile to brittle transition, fracture dynamics, failure processes with tension as well as compression: experiments, failure of electrical networks, self-organized critical models of earthquake and their extensions to capture the physics of earthquake dynamics. The text also includes a discussion of dynamical transitions in fracture propagation in theory and experiments, as well as an outline of analytical results in fiber bundle model dynamics With its wide scope, in addition to the statistical physics community, the material here is equally accessible to engineers, earth scientists, mechanical engineers, and material scientists. It also serves as a textbook for graduate students and researchers in physics.




Practical Fracture Mechanics in Design


Book Description

Theoretical treatments of fracture mechanics abound in the literature. Among the first books to address this vital topic from an applied standpoint was the first edition of Practical Fracture Mechanics in Design. Completely updated and expanded to reflect recent developments in the field, the second edition of this valuable reference concisely revi







Advances in Bioceramics and Porous Ceramics VII, Volume 35, Issue 5


Book Description

A collection of 15 papers from The American Ceramic Society’s 38th International Conference on Advanced Ceramics and Composites, held in Daytona Beach, Florida, January 26-31, 2014. This issue includes papers presented in Symposium 5 - Next Generation Bioceramics and Biocomposites and Symposium 9 - Porous Ceramics: Novel Developments and Applications.




Solid mechanics research for quantitative non-destructive evaluation


Book Description

Within the Solid Mechanics Program at the Office of Naval Research (ONR), our primary mission is to establish a basic research program which addresses the funda mental issues in solid mechanics where a clear scientific understanding is lacking. Our approach involves first identifying the various scales at which material and structural response and failure occur. Within each level of behavior we address the basic mechanical phenomena for which a clear physical description is not available. ONR's program emphasizes experimental research to identify and quantify the interacting behavior and response mechanisms. Theoretical and computational approaches are developed to explain the details of the physical processes and to establish the technology necessary to control the thermomechanical behavior of materials and structures. Within the Department of Defense, it is a natural evolution that all new systems must generally operate in more demanding environments than the systems they replace. Thus, structural designers are pushed towards lighter weight, precision structures utilizing new materials. In such an environment, structural design mar gins simultaneously shrink and become more critical. Such trends make it essential that a well founded scientific base for the nondestructive detection and assessment of subcritical flaws in structural materials and structures exist. Within the ONR Solid Mechanics Program we are interested in both the identification of flaws and assessment of their degree of criticality.