Stress Analysis of Fiber-reinforced Composite Materials

Stress Analysis of Fiber-reinforced Composite Materials
Title Stress Analysis of Fiber-reinforced Composite Materials PDF eBook
Author M. W. Hyer
Publisher DEStech Publications, Inc
Pages 718
Release 2009
Genre Technology & Engineering
ISBN 193207886X

Download Stress Analysis of Fiber-reinforced Composite Materials Book in PDF, Epub and Kindle

Updated and improved, Stress Analysis of Fiber-Reinforced Composite Materials, Hyer's work remains the definitive introduction to the use of mechanics to understand stresses in composites caused by deformations, loading, and temperature changes. In contrast to a materials science approach, Hyer emphasizes the micromechanics of stress and deformation for composite material analysis. The book provides invaluable analytic tools for students and engineers seeking to understand composite properties and failure limits. A key feature is a series of analytic problems continuing throughout the text, starting from relatively simple problems, which are built up step-by-step with accompanying calculations. The problem series uses the same material properties, so the impact of the elastic and thermal expansion properties for a single-layer of FR material on the stress, strains, elastic properties, thermal expansion and failure stress of cross-ply and angle-ply symmetric and unsymmetric laminates can be evaluated. The book shows how thermally induced stresses and strains due to curing, add to or subtract from those due to applied loads.Another important element, and one unique to this book, is an emphasis on the difference between specifying the applied loads, i.e., force and moment results, often the case in practice, versus specifying strains and curvatures and determining the subsequent stresses and force and moment results. This represents a fundamental distinction in solid mechanics.

Stress Analysis of Fiber-reinforced Composite Materials

Stress Analysis of Fiber-reinforced Composite Materials
Title Stress Analysis of Fiber-reinforced Composite Materials PDF eBook
Author M. W. Hyer
Publisher
Pages 627
Release 1998
Genre Composite materials
ISBN 9789339205317

Download Stress Analysis of Fiber-reinforced Composite Materials Book in PDF, Epub and Kindle

Experimental Mechanics of Fiber Reinforced Composite Materials

Experimental Mechanics of Fiber Reinforced Composite Materials
Title Experimental Mechanics of Fiber Reinforced Composite Materials PDF eBook
Author James M. Whitney
Publisher
Pages 250
Release 1982
Genre
ISBN

Download Experimental Mechanics of Fiber Reinforced Composite Materials Book in PDF, Epub and Kindle

Analysis and Performance of Fiber Composites

Analysis and Performance of Fiber Composites
Title Analysis and Performance of Fiber Composites PDF eBook
Author Bhagwan D. Agarwal
Publisher Wiley-Interscience
Pages 480
Release 1990-10-08
Genre Technology & Engineering
ISBN

Download Analysis and Performance of Fiber Composites Book in PDF, Epub and Kindle

Having fully established themselves as workable engineering materials, composite materials are now increasingly commonplace around the world. Serves as both a text and reference guide to the behavior of composite materials in different engineering applications. Revised for this Second Edition, the text includes a general discussion of composites as material, practical aspects of design and performance, and further analysis that will be helpful to those engaged in research on composites. Each chapter closes with references for further reading and a set of problems that will be useful in developing a better understanding of the subject.

Analysis and Performance of Fiber Composites

Analysis and Performance of Fiber Composites
Title Analysis and Performance of Fiber Composites PDF eBook
Author Bhagwan D. Agarwal
Publisher John Wiley & Sons
Pages 584
Release 2017-10-26
Genre Technology & Engineering
ISBN 1119389976

Download Analysis and Performance of Fiber Composites Book in PDF, Epub and Kindle

Updated and expanded coverage of the latest trends and developments in fiber composite materials, processes, and applications Analysis and Performance of Fiber Composites, Fourth Edition features updated and expanded coverage of all technical aspects of fiber composites, including the latest trends and developments in materials, manufacturing processes, and materials applications, as well as the latest experimental characterization methods. Fiber reinforced composite materials have become a fundamental part of modern product manufacturing. Routinely used in such high-tech fields as electronics, automobiles, aircraft, and space vehicles, they are also essential to everyday staples of modern life, such as containers, piping, and appliances. Little wonder, when one considers their ease of fabrication, outstanding mechanical properties, design versatility, light weight, corrosion and impact resistance, and excellent fatigue strength. This Fourth Edition of the classic referencethe standard text for composite materials courses, worldwideoffers an unrivalled review of such an important class of engineering materials. Still the most comprehensive, up-to-date treatment of the mechanics, materials, performance, analysis, fabrication, and characterization of fiber composite materials available, Analysis and Performance of Fiber Composites, Fourth Edition features: Expanded coverage of materials and manufacturing, with additional information on materials, processes, and material applications Updated and expanded information on experimental characterization methodsincluding many industry specific tests Discussions of damage identification techniques using nondestructive evaluation (NDE) Coverage of the influence of moisture on performance of polymer matrix composites, stress corrosion of glass fibers and glass reinforced plastics, and damage due to low-velocity impact New end-of-chapter problems and exercises with solutions found on an accompanying website Computer analysis of laminates No other reference provides such exhaustive coverage of fiber composites with such clarity and depth. Analysis and Performance of Fiber Composites, Fourth Edition is, without a doubt, an indispensable resource for practicing engineers, as well as students of mechanics, mechanical engineering, and aerospace engineering. Visit the Companion Website at: https://www.wiley.com/WileyCDA/Section/id-830336.html

Analysis of Nonlinear Stress-strain Behavior of Fiber-reinforced Composite Materials

Analysis of Nonlinear Stress-strain Behavior of Fiber-reinforced Composite Materials
Title Analysis of Nonlinear Stress-strain Behavior of Fiber-reinforced Composite Materials PDF eBook
Author Harold Sledge Morgan
Publisher
Pages 714
Release 1976
Genre Fibrous composites
ISBN

Download Analysis of Nonlinear Stress-strain Behavior of Fiber-reinforced Composite Materials Book in PDF, Epub and Kindle

Fatigue of Fiber-reinforced Composites

Fatigue of Fiber-reinforced Composites
Title Fatigue of Fiber-reinforced Composites PDF eBook
Author Anastasios P. Vassilopoulos
Publisher Springer Science & Business Media
Pages 246
Release 2011-07-14
Genre Technology & Engineering
ISBN 1849961816

Download Fatigue of Fiber-reinforced Composites Book in PDF, Epub and Kindle

Fatigue has long been recognized as a mechanism that can provoke catastrophic material failure in structural applications and researchers are now turning to the development of prediction tools in order to reduce the cost of determining design criteria for any new material. Fatigue of Fiber-reinforced Composites explains these highly scientific subjects in a simple yet thorough way. Fatigue behavior of fiber-reinforced composite materials and structural components is described through the presentation of numerous experimental results. Many examples help the reader to visualize the failure modes of laminated composite materials and structural adhesively bonded joints. Theoretical models, based on these experimental data, are demonstrated and their capacity for fatigue life modeling and prediction is thoroughly assessed. Fatigue of Fiber-reinforced Composites gives the reader the opportunity to learn about methods for modeling the fatigue behavior of fiber-reinforced composites, about statistical analysis of experimental data, and about theories for life prediction under loading patterns that produce multiaxial fatigue stress states. The authors combine these theories to establish a complete design process that is able to predict fatigue life of fiber-reinforced composites under multiaxial, variable amplitude stress states. A classic design methodology is presented for demonstration and theoretical predictions are compared to experimental data from typical material systems used in the wind turbine rotor blade industry. Fatigue of Fiber-reinforced Composites also presents novel computational methods for modeling fatigue behavior of composite materials, such as artificial neural networks and genetic programming, as a promising alternative to the conventional methods. It is an ideal source of information for researchers and graduate students in mechanical engineering, civil engineering and materials science.