Fracture of Nano and Engineering Materials and Structures

Fracture of Nano and Engineering Materials and Structures

Author: E.E. Gdoutos

Publisher: Springer Science & Business Media

Published: 2008-01-08

Total Pages: 1452

ISBN-13: 1402049722

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The 16th European Conference of Fracture (ECF16) was held in Greece, July, 2006. It focused on all aspects of structural integrity with the objective of improving the safety and performance of engineering structures, components, systems and their associated materials. Emphasis was given to the failure of nanostructured materials and nanostructures including micro- and nano-electromechanical systems (MEMS and NEMS).


Fracture of Engineering Materials and Structures

Fracture of Engineering Materials and Structures

Author: S.H. Teoh

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 930

ISBN-13: 9401136505

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Recent advances in the field of fracture of engineering materials and structures have increasingly indicated its multidisciplinary nature. This area of research now involves scientists and engineers who work in materials science, applied mathematics and mechanics, and also computer scientists. The present volume, which contains the Proceedings of the Joint FEFG/lCF International Conference on Fracture of Engineering Materials and Structures held in Singapore from the 6th to 8th of August 1991, is a testimony of this multidisciplinary nature. This International Conference was the Second Symposium of the Far East Fracture Group (FEFG) and thus provided a unique opportunity for researchers and engineers in the Far East region to exchange and acquire knowledge of new advances and applications in fracture. The Conference was also the Inter-Quadrennial International Conference on Fracture (ICF) for 1991 and thus appealed to researchers in the international arena who wished to take advantage of this meeting to present their findings. The Conference has brought together over 130 participants from more than 24 countries, and they represented government and industrial research laboratories as well as academic institutions. It has thus achieved its objective of bringing together scientists and engineers with different backgrounds and perspectives but with . a common interest in new developments in the fracture of engineering materials and structures. This volume contains 4 keynote papers, 4 invited papers and 130 contributed papers.


Experimental Analysis of Nano and Engineering Materials and Structures

Experimental Analysis of Nano and Engineering Materials and Structures

Author: E.E. Gdoutos

Publisher: Springer Science & Business Media

Published: 2007-12-06

Total Pages: 1003

ISBN-13: 1402062397

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This volume contains two-page abstracts of the 482 papers presented at the latest conference on the subject, in Alexandroupolis, Greece. The accompanying CD contains the full length papers. The abstracts of the fifteen plenary lectures are included at the beginning of the book. The remaining 467 abstracts are arranged in 23 tracks and 28 special symposia/sessions with 225 and 242 abstracts, respectively. The papers of the tracks have been contributed from open call, while the papers of the symposia/sessions have been solicited by the respective organizers.


Multiscale Deformation and Fracture in Materials and Structures

Multiscale Deformation and Fracture in Materials and Structures

Author: T-J. Chuang

Publisher: Springer Science & Business Media

Published: 2006-04-11

Total Pages: 451

ISBN-13: 0306469529

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Modern Solid Mechanics considers phenomena at many levels, ranging from nano size at atomic scale through the continuum level at millimeter size to large structures at the tens of meter scale. The deformation and fracture behavior at these various scales are inextricably related to interdisciplinary methods derived from applied mathematics, physics, chemistry, and engineering mechanics. This book, in honor of James R. Rice, contains articles from his colleagues and former students that bring these sophisticated methods to bear on a wide range of problems. Articles discussing problems of deformation include topics of dislocation mechanics, second particle effects, plastic yield criterion on porous materials, hydrogen embrittlement, solid state sintering, nanophases at surfaces, adhesion and contact mechanics, diffuse instability in geomaterials, and percolation in metal deformation. In the fracture area, the topics include: elastic-plastic crack growth, dynamic fracture, stress intensity and J-integral analysis, stress-corrosion cracking, and fracture in single crystal, piezoelectric, composite and cementitious materials. The book will be a valuable resource for researchers in modern solid mechanics and can be used as reference or supplementary text in mechanical and civil engineering, applied mechanics, materials science, and engineering graduate courses on fracture mechanics, elasticity, plasticity, mechanics of materials or the application of solid mechanics to processing, and reliability of life predictions.


Nano Tribology and Fracture Mechanics

Nano Tribology and Fracture Mechanics

Author: K. S. Lokesh

Publisher: GRIN Verlag

Published: 2019-01-14

Total Pages: 69

ISBN-13: 3668864446

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Document from the year 2018 in the subject Engineering - General, Basics, grade: A, Srinivas School of Engineering (Srinivas Institute of Technology), course: Engineering, language: English, abstract: The main aim of this text book is to understand the applications of nano technology in mechanical engineering & the mechanics of nanomaterials and also to understand the concept of nano tribology & fracture mechanics and advancement in nano materials. At the end of the study student can able to understan: - Applications of nano materials in mechanical engineering; - Mechanics of nano materials; - Defects in nano structures; - Failure modes; - Mechanical behaviors of nano materials; - Fracture of nano structures; - Advancements in nano materials.


Fatigue and Fracture of Non-metallic Materials and Structures

Fatigue and Fracture of Non-metallic Materials and Structures

Author: Andrea Spagnoli

Publisher: MDPI

Published: 2020-06-23

Total Pages: 586

ISBN-13: 3039287788

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The mechanics of fracture and fatigue have produced a huge body of research work in relation to applications to metal materials and structures. However, a variety of non-metallic materials (e.g., concrete and cementitious composites, rocks, glass, ceramics, bituminous mixtures, composites, polymers, rubber and soft matter, bones and biological materials, and advanced and multifunctional materials) have received relatively less attention, despite their attractiveness for a large spectrum of applications related to the components and structures of diverse engineering branches, applied sciences and architecture, and to the load-carrying systems of biological organisms. This book covers the broad topic of structural integrity of non-metallic materials, considering the modelling, assessment, and reliability of structural elements of any scale. Original contributions from engineers, mechanical materials scientists, computer scientists, physicists, chemists, and mathematicians are presented, applying both experimental and theoretical approaches.


Deformation and Fracture Mechanics of Engineering Materials

Deformation and Fracture Mechanics of Engineering Materials

Author: Richard W. Hertzberg

Publisher:

Published: 1996

Total Pages: 824

ISBN-13:

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This edition comprehensively updates the field of fracture mechanics by including details of the latest research programmes. It contains new material on non-metals, design issues and statistical aspects. The application of fracture mechanics to different types of materials is stressed.


Comprehensive Structural Integrity

Comprehensive Structural Integrity

Author: Ian Milne

Publisher: Elsevier Science

Published: 2003-07-25

Total Pages: 0

ISBN-13: 9780080437491

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The aim of this major reference work is to provide a first point of entry to the literature for the researchers in any field relating to structural integrity in the form of a definitive research/reference tool which links the various sub-disciplines that comprise the whole of structural integrity. Special emphasis will be given to the interaction between mechanics and materials and structural integrity applications. Because of the interdisciplinary and applied nature of the work, it will be of interest to mechanical engineers and materials scientists from both academic and industrial backgrounds including bioengineering, interface engineering and nanotechnology. The scope of this work encompasses, but is not restricted to: fracture mechanics, fatigue, creep, materials, dynamics, environmental degradation, numerical methods, failure mechanisms and damage mechanics, interfacial fracture and nano-technology, structural analysis, surface behaviour and heart valves. The structures under consideration include: pressure vessels and piping, off-shore structures, gas installations and pipelines, chemical plants, aircraft, railways, bridges, plates and shells, electronic circuits, interfaces, nanotechnology, artificial organs, biomaterial prostheses, cast structures, mining... and more. Case studies will form an integral part of the work.


8th International Conference on Fracture and Strength of Solids

8th International Conference on Fracture and Strength of Solids

Author: Ahmad Kamal Ariffin

Publisher:

Published: 2011

Total Pages: 1428

ISBN-13: 9780878492107

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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.