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Inelastic Deformation of Composite Materials

Inelastic Deformation of Composite Materials
Author: George J. Dvorak
Publisher: Springer Science & Business Media
Total Pages: 763
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1461391091

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Polymer composites were introduced for the aerospace industry as light, strong, stiff materials, and adopted by the construction and automobile industries, among others. Meanwhile, composite materials have been introduced to fulfill the uses that these conventional materials could not, such as in extreme environments. The research for new composites includes not only new polymer systems, but metals, ceramics and intermetallic systems as well. This volume contains a selection of recent work by leading researchers in micromechanics on the topics of prediction of overall properties of elastic, perfectly bonded systems, problems associated with inelastic deformation of the phase, debonding at interfaces and growth of distributed damage. Many familiar aspects of mechanical behavior, such as fatigue, fracture, strength and buckling, etc. have been reexamined and adapted for these new systems.


Inelastic Deformation of Composite Materials

Inelastic Deformation of Composite Materials
Author:
Publisher:
Total Pages: 858
Release: 1991
Genre: Composite materials
ISBN:

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Polymer composites were introduced for the aerospace industry as light, strong, stiff materials, and adopted by the construction and automobile industries, among others. Meanwhile, composite materials have been introduced to fulfill the uses that these conventional materials could not, such as in extreme environments. The research for new composites includes not only new polymer systems, but metals, ceramics and intermetallic systems as well. This volume contains a selection of recent work by leading researchers in micromechanics on the topics of prediction of overall properties of elastic, perfectly bonded systems, problems associated with inelastic deformation of the phase, debonding at interfaces and growth of distributed damage. Many familiar aspects of mechanical behavior, such as fatigue, fracture, strength and buckling, etc. have been reexamined and adapted for these new systems.


IUTAM Symposium on Inelastic Deformation of Composite Materials Held in Troy, New York on 29 May - 1 June 1990

IUTAM Symposium on Inelastic Deformation of Composite Materials Held in Troy, New York on 29 May - 1 June 1990
Author:
Publisher:
Total Pages: 764
Release: 1991
Genre:
ISBN:

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In the last 25 years, the science and technology of composite materials have experienced a period of substantial development. Composite materials have been introduced, or are expected to serve, in many functions which cannot be fulfilled by conventional materials, particularly in extreme environments. The research focus has been broadened to include not only new polymer system, but also metal matrix composites, intermetallic compounds and ceramic materials. This has brought forth a number of new problems in fabrication and processing, and in analysis of composite material behavior and properties. The latter set of problems is usually approached by various micromechanical techniques. In recent years, their scope has been expanded from prediction of overall properties of elastic, perfectly bonded systems, to include problems associated with inelastic deformation of the phases, debonding at interfaces, and growth of distributed damage. Many familiar aspects of mechanical behavior, such as fracture, fatigue, compressive strength and buckling have been reexamined and adapted for application to the new material systems.


Inelastic Deformation of Composite Materials. IUTAM Symposium Held in Troy, New York on May 29 - June 1, 1990

Inelastic Deformation of Composite Materials. IUTAM Symposium Held in Troy, New York on May 29 - June 1, 1990
Author:
Publisher:
Total Pages: 14
Release: 1991
Genre:
ISBN:

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This volume contains a selection of recent work by leading researchers in micromechanics that was presented at the IUTAM Symposium on Inelastic Deformation of Composite Materials at Rensselaer. The Symposium was made possible by the generous support of AFOSR, ARO, NSF, IUTAM and RPI. Thanks are due to the sponsors and to the local organizing committee for their support and work on behalf of the symposium. Composite materials, Inelastic deformation, Micromechanics.


Inelastic Behavior of Composite Materials

Inelastic Behavior of Composite Materials
Author: American Society of Mechanical Engineers. Applied Mechanics Division
Publisher:
Total Pages: 228
Release: 1975
Genre: Technology & Engineering
ISBN:

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Micromechanics of Inelastic Composite Materials

Micromechanics of Inelastic Composite Materials
Author:
Publisher:
Total Pages: 29
Release: 1998
Genre:
ISBN:

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Under these circumstances, it fs essential to develop micromechanical theories which evaluate the local fields and predict the overall response under combined thermal and mechanical loads. The basic elements of these theories are geometrical modeling of the microstructures and local interactions, and constitutive modeling of the homogeneous phases. An essential requirement of the latter is to include inelastic deformation to model composite systems which exhibit nonlinear response under thermal and mechanical service loads. Since the early 1960s, micromechanics of composite materials has attracted many researchers. This led to significant theoretical developments for prediction of elastic and inelastic constitutive response, and motivated experimental validation. The purpose is to summarize these developments, and illustrate their application in predicting the overall response under thermomechanical loads. Although treatment of the subject in this chapter covers two-phase particulate and fibrous materials, the focus in applications will be on fibrous composites and laminates.


Micromechanics of Composite Materials

Micromechanics of Composite Materials
Author: George Dvorak
Publisher: Springer Science & Business Media
Total Pages: 455
Release: 2012-12-09
Genre: Science
ISBN: 9400741014

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This book presents a broad exposition of analytical and numerical methods for modeling composite materials, laminates, polycrystals and other heterogeneous solids, with emphasis on connections between material properties and responses on several length scales, ranging from the nano and microscales to the macroscale. Many new results and methods developed by the author are incorporated into the rich fabric of the subject, which has developed from the work of many researchers over the last 50 years. Among the new results, the book offers an extensive analysis of internal and interface stresses caused by eigenstrains, such as thermal, transformation and inelastic strains in the constituents, which often exceed those caused by mechanical loads, and of inelastic behavior of metal matrix composites. Fiber prestress in laminates, and modeling of functionally graded materials are also analyzed. Furthermore, this book outlines several key subjects on modeling the properties of composites reinforced by particles of various shapes, aligned fibers, symmetric laminated plates and metal matrix composites. This volume is intended for advanced undergraduate and graduate students, researchers and engineers interested and involved in analysis and design of composite structures.


Mechanical Response of Composites

Mechanical Response of Composites
Author: Pedro P. Camanho
Publisher: Springer Science & Business Media
Total Pages: 321
Release: 2008-06-20
Genre: Technology & Engineering
ISBN: 1402085842

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Themethodologyfordesigninghigh-performancecompositestructuresisstill evo- ing. The complexity of the response of composite materials and the dif?culties in predicting the composite material properties from the basic properties of the c- stituents result in the need for a well-planned and exhaustive test program. The recommended practice to mitigate the technological risks associated with advanced composite materials is to substantiate the performance and durability of the design in a sequence of steps known as the Building Block Approach. The Building Block Approach ensures that cost and performance objectives are met by testing greater numbers of smaller, less expensive specimens. In this way, technology risks are assessed early in the program. In addition, the knowledge acquired at a given level of structural complexity is built up before progressing to a level of increased complexity. Achieving substantiation of structural performance by testing alone can be p- hibitively expensive because of the number of specimens and components required to characterize all material systems, loading scenarios and boundary conditions. Building Block Approachprogramscan achieve signi?cant cost reductionsby se- ing a synergy between testing and analysis. The more the development relies on analysis, the less expensive it becomes. The use of advanced computational models for the prediction of the mechanical response of composite structures can replace some of the mechanical tests and can signi?cantly reduce the cost of designing with composites while providing to the engineers the information necessary to achieve an optimized design.