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Composite structures and products have developed since the publication of the first edition of this work in 1986. This edition has been written to educate the engineering reader in the various aspects of mechanics for using composite materials in the design and analysis of composite structures.
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Materials --- Mechanics, Applied. --- Mechanical properties. --- Materials. --- Materials - Mechanical properties. --- Mechanical properties
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This textbook is for courses on Mechanical Behavior of Materials taught in departments of Mechanical Engineering and Materials Science. The text includes numerous examples and problems for student practice. The book emphasizes quantitative problem solving. End of the chapter notes are included to increase student's interest. This text differs from others because the treatment of plasticity has greater emphasis on the interrelationship of the flow, effective strain and effective stress and their use in conjunction with yield criteria to solve problems. The treatment of defects is new. Schmid's law is generalized for complex stress states. Its use with strains allows for prediction of R-values for textures. Another feature is the treatment of lattice rotations and how they lead to deformation textures. The chapter on fracture mechanics includes coverage of Gurney's approach. Much of the analysis of particulate composites is new. Few texts include anything on metal forming.
Materials --- Matériaux --- Mechanical properties --- Propriétés mécaniques --- Mechanical properties. --- Matériaux --- Propriétés mécaniques --- Materials - Mechanical properties. --- Mecanique des materiaux
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Micromechanics of Composites: Multipole Expansion Approach is the first book to introduce micromechanics researchers to a more efficient and accurate alternative to computational micromechanics, which requires heavy computational effort and the need to extract meaningful data from a multitude of numbers produced by finite element software code. In this book Dr. Kushch demonstrates the development of the multipole expansion method, including recent new results in the theory of special functions and rigorous convergence proof of the obtained series solutions. The complete analytical solutions
Composite materials -- Mechanical properties. --- Fibrous composites -- Mechanical properties. --- Micromechanics. --- Composite materials --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Mechanical properties --- Mechanical properties. --- Solid state physics --- Microstructure
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Nanostructured materials Mechanical properties. --- Nanostructured materials --- Mechanical properties. --- Nanomaterials --- Nanometer materials --- Nanophase materials --- Nanostructure controlled materials --- Nanostructure materials --- Ultra-fine microstructure materials --- Microstructure --- Nanotechnology
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Porous materials --- Continuum mechanics --- Mechanical properties. --- Mechanical properties --- Mathematical models. --- 612.76 --- 539.217 --- 62-405.8 --- 532.546 --- Locomotie. Beweging. Lichaamsmechanica. Biomedische ingenieurstechnieken --- Porosity. Permeability. Imperviousness --- Porous. Cellular. Sponge-like --- In porous media --- Continuum mechanics. --- 532.546 In porous media --- 62-405.8 Porous. Cellular. Sponge-like --- 539.217 Porosity. Permeability. Imperviousness --- Porous media --- Materials --- Porosity --- Mechanics of continua --- Elasticity --- Mechanics, Analytic --- Field theory (Physics) --- Mechanical properties&delete& --- Mathematical models --- Porous materials - Mechanical properties. --- Porous materials - Mechanical properties - Mathematical models.
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Challenges in Mechanics of Time-Dependent Materials and Processes in Conventional and Multifunctional Materials, Volume 2: Proceedings of the 2012 Annual Conference on Experimental and Applied Mechanics, the second volume of seven from the Conference, brings together 26 contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Experimental and Applied Mechanics, including papers on: Effects of interfaces and interphases on the time-dependent behaviors of composite, hybrid and multifunctional materials Effects of inhomogeneities on the time-dependent behaviors of metallic, polymeric and composite materials Environmental and reactive property change effects on thermomechanical and multifunctional behaviors Challenges in time-dependent behavior modeling in metallic and polymeric materials at low, moderate and high strain rates, and effects of frequency and hysteretic heating Challenges in Time-dependent Behavior Modeling in Composite, Hybrid and Multifunctional Materials - viscoelastoplasticity and damage Modeling and Characterization of Fabrication Processes of Conventional and Multifunctional Materials Time dependent and small-scale effects in micro/nano-scale testing.
Fracture mechanics -- Congresses. --- Materials -- Mechanical properties -- Congresses. --- Materials -- Mechanical properties. --- Materials --- Deformations (Mechanics) --- Service life (Engineering) --- Engineering & Applied Sciences --- Chemical & Materials Engineering --- Civil & Environmental Engineering --- Engineering - General --- Civil Engineering --- Materials Science --- Elastic properties --- Mechanics, Applied --- Engineering. --- Industrial engineering. --- Biomaterials. --- Engineering, general. --- Operating Procedures, Materials Treatment. --- Manufactures. --- Manufacturing, Machines, Tools, Processes. --- Manufactured goods --- Manufactured products --- Products --- Products, Manufactured --- Commercial products --- Manufacturing industries --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Biomedical engineering --- Biocompatibility --- Prosthesis --- Construction --- Industrial arts --- Technology --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials)
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Advanced materials play a crucial role in modern engineering applications where they are often exposed to complex loading and environmental conditions. In many cases, new approaches are needed to characterise these materials and to model their behaviour. Such approaches should be calibrated and validated by specific experimental techniques, quantifying both microstructural features and respective mechanisms at various length scales. The book provides an overview of modern modelling tools and experimental methods that can be employed to analyse and estimate properties and performance of advanced materials. A special feature of the book is the analysis of case studies used to demonstrate the strategies of solving the real-life problems, in which the microstructure of materials directly affects their response to loading and/or environmental conditions. The reader will benefit from a detailed analysis of various methods as well as their implementation for dealing with various advanced materials.
Biomedical materials -- Mechanical properties. --- Composite materials -- Mechanical properties. --- Composite materials --- Biomedical materials --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Civil & Environmental Engineering --- Materials Science --- Applied Mathematics --- Civil Engineering --- Mechanical properties --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Mechanical properties. --- Materials --- Engineering. --- Mechanics. --- Applied mathematics. --- Engineering mathematics. --- Continuum mechanics. --- Appl.Mathematics/Computational Methods of Engineering. --- Continuum Mechanics and Mechanics of Materials. --- Biomedical engineering --- Biocompatibility --- Prosthesis --- Mechanics, Applied. --- Mathematical and Computational Engineering. --- Solid Mechanics. --- Classical Mechanics. --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory --- Engineering --- Engineering analysis --- Mathematical analysis --- Mathematics
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