Advances in Conservation Laws and Energy Release Rates: Theoretical Treatments and Applications

This book summarizes two significant tendencies for application of conservation laws and energy release rates. The first is to establish a bridge between some famous invariant integrals and microcrack damage descriptions. The second is the direct extension from the understandings established in Fracture Mechanics for conventional materials to those for functional materials. In the first point it discusses the vanishing nature for both components of the Jk-integral vector when the closed contour encloses all discontinuities completely. Both mathematical manipulations and numerical examinations are given. Thus the M-integral and the L-integral are independent of coordinate shifts and, more significantly, the M-integral presents a new description for the damage level of a microcracking brittle solid. In the second point it discusses the direct extension from the basic understandings established in Linear Elastic Fracture Mechanics to those for functional materials, e.g., piezoelectric ceramics. Owing to the mechanical and electric coupling, some new insights of energy release rates are discussed in detail.

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Advances in Conservation Laws and Energy Release Rates: Theoretical Treatments and Applications

This book summarizes two significant tendencies for application of conservation laws and energy release rates. The first is to establish a bridge between some famous invariant integrals and microcrack damage descriptions. The second is the direct extension from the understandings established in Fracture Mechanics for conventional materials to those for functional materials. In the first point it discusses the vanishing nature for both components of the Jk-integral vector when the closed contour encloses all discontinuities completely. Both mathematical manipulations and numerical examinations are given. Thus the M-integral and the L-integral are independent of coordinate shifts and, more significantly, the M-integral presents a new description for the damage level of a microcracking brittle solid. In the second point it discusses the direct extension from the basic understandings established in Linear Elastic Fracture Mechanics to those for functional materials, e.g., piezoelectric ceramics. Owing to the mechanical and electric coupling, some new insights of energy release rates are discussed in detail.

169.99 In Stock
Advances in Conservation Laws and Energy Release Rates: Theoretical Treatments and Applications

Advances in Conservation Laws and Energy Release Rates: Theoretical Treatments and Applications

by Yi-Heng Chen
Advances in Conservation Laws and Energy Release Rates: Theoretical Treatments and Applications

Advances in Conservation Laws and Energy Release Rates: Theoretical Treatments and Applications

by Yi-Heng Chen

Paperback(Softcover reprint of the original 1st ed. 2002)

$169.99 
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Overview

This book summarizes two significant tendencies for application of conservation laws and energy release rates. The first is to establish a bridge between some famous invariant integrals and microcrack damage descriptions. The second is the direct extension from the understandings established in Fracture Mechanics for conventional materials to those for functional materials. In the first point it discusses the vanishing nature for both components of the Jk-integral vector when the closed contour encloses all discontinuities completely. Both mathematical manipulations and numerical examinations are given. Thus the M-integral and the L-integral are independent of coordinate shifts and, more significantly, the M-integral presents a new description for the damage level of a microcracking brittle solid. In the second point it discusses the direct extension from the basic understandings established in Linear Elastic Fracture Mechanics to those for functional materials, e.g., piezoelectric ceramics. Owing to the mechanical and electric coupling, some new insights of energy release rates are discussed in detail.


Product Details

ISBN-13: 9789048159703
Publisher: Springer Netherlands
Publication date: 12/01/2010
Edition description: Softcover reprint of the original 1st ed. 2002
Pages: 298
Product dimensions: 6.10(w) x 9.25(h) x 0.03(d)

Table of Contents

1. Historical Review and Fundamentals.- 2. Conservation Laws in Brittle Solids.- 3. The Projected Conservation Law of Jk Vector in Microcrack Shielding Problems.- 4. Application of the Conservation Laws in Metal/Ceramic Bimaterials.- 5. Macrocrack Microcrack Interaction in Dissimilar Anisotropic Materials.- 6. Macrocrack Microcrack Interaction in Piezoelectric Materials.- 7. Microcrack Damage in Piezoelectric Materials.- 8. Some other Developments of the Conservation Laws and Energy Release Rates.
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