Please enable javascript in your browser.
Page
of
0
Fracture toughness of a hybrid rubber modified epoxy. II. Effect of loading rate
Abadyan, M
Cataloging brief
Fracture toughness of a hybrid rubber modified epoxy. II. Effect of loading rate
Author :
Abadyan, M
Publisher :
Wiley
Pub. Year :
2012
Subjects :
Damage zones Fracture toughness measurements Fracture toughness values Hybrid compounds...
Call Number :
Find in content
sort by
page number
page score
Bookmark
Contentsto.44em.
(6)
List of Figuresto.44em.
(8)
List of Tablesto.44em.
(12)
Chapter 1 Introduction to.44em.
(13)
Chapter 2 Reproducing Kernel Particle Method to.44em.
(16)
2.1 Review of 1D RKPM Formulation
(16)
2.1.1 Reproducing Equation
(16)
2.1.2 The 1th Derivative of Reproducing Equation
(18)
2.1.3 RKPM Shape Function and their Derivative
(19)
2.1.4 Example of 1D RKPM Shape Function
(20)
2.1.5 Function Reconstruction
(20)
2.2 Review of 2D RKPM Formulation
(26)
2.2.1 2D RKPM
(26)
2.2.2 Example of 2d Shape Functions RKPM
(27)
2.2.3 Function Reproducing
(27)
2.3 Assign Essential Boundary Condition With Collocation
(30)
2.4 RKPM with Augmented Corrected Collocation
(35)
Chapter 3 Solving Some Problems in a RKPM Framework to.44em.
(39)
3.1 1D-Advection Diffusion
(39)
3.2 Two Dimensional Differential Equation
(42)
3.3 Modeling of Euler-Bernoulli in One Dimensional RKPM
(43)
3.4 Modeling Of Crack in Two Dimensional RKPM
(46)
Chapter 4 Review Of Beam Theories to.44em.
(55)
4.1 The Thin and Thick Beam Theories Hypotheses
(55)
4.2 Two Dimensional Elastic Beam
(57)
4.3 Separate The Phase of Thin and Thick Nano Beam with Considering the Surface to Volume Ratio
(58)
4.4 The numerical modeling
(59)
4.5 Numerical Results
(61)
Chapter 5 Review of Surface/Interface Elasticity to.44em.
(63)
5.1 Definition of Laminated Beam
(64)
5.2 Nano Laminated Beam Formulation with Surface/Interface Effect
(65)
5.3 Numerical Modeling
(68)
5.4 Numerical Results
(69)
Chapter 6 Review of Dislocation to.44em.
(76)
6.1 Modeling of Glide Edge Dislocation In RKPM
(76)
6.2 Review of Analytical Solution For Glide Edge Dislocation In Infinite Domain
(78)
6.3 Review of Analytical Solution For Glide Edge Dislocation In Bi-Material
(80)
6.4 Numerical Results
(84)
Chapter 7 Conclusion and Future Work to.44em.
(89)
AppendixChapter A to.44em.
(90)
A.1 Spline Function
(90)
A.2 Shurttleworth Formula
(90)
Bibliographyto.44em.
(92)