NoRepresentations for the stress fields created around an infinite row of collinear, antiplane shear cracks moving within one-dimensional hexagonal quasicrystals, and the resulting stress intensity factors and the J-integral, are determined in closed-form and discussed, using an extended method of dislocation layers. The solutions for a finite quasicrystalline plate containing a single moving crack and a plate with a moving edge crack are also provided by this analysis. (C) 2014 Elsevier Ltd. All rights reserved
A review on mathematical elasticity of quasicrystals is given. In this review, the focus is on vario...
© 2021 Elsevier Ltd The displacement discontinuity (DD) method is proposed to analyze interface ...
The path-independent J-integral is derived for fracture mechanics analysis of decagonal quasicrystal...
The displacement discontinuity method is extended to study the fracture behavior of interface cracks...
AbstractThis present work is concerned with planar cracks embedded in an infinite space of one-dimen...
The purpose of this paper is to consider the interaction between many parallel dislocations and a we...
Stationary straight cracks in quasicrystals in linear elastic setting are under scrutiny. The analys...
Representations in a closed form are derived, using an extension to the method of dislocation layers...
An analysis solution method (ASM) is proposed for analyzing arbitrarily shaped planar cracks in two-...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
Interaction of a screw dislocation with wedge-shaped cracks in one-dimensional hexagonal piezoelectr...
Based on the fundamental equations of piezoelasticity of quasicrystals (QCs), with the symmetry oper...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
A review on mathematical elasticity of quasicrystals is given. In this review, the focus is on vario...
© 2021 Elsevier Ltd The displacement discontinuity (DD) method is proposed to analyze interface ...
The path-independent J-integral is derived for fracture mechanics analysis of decagonal quasicrystal...
The displacement discontinuity method is extended to study the fracture behavior of interface cracks...
AbstractThis present work is concerned with planar cracks embedded in an infinite space of one-dimen...
The purpose of this paper is to consider the interaction between many parallel dislocations and a we...
Stationary straight cracks in quasicrystals in linear elastic setting are under scrutiny. The analys...
Representations in a closed form are derived, using an extension to the method of dislocation layers...
An analysis solution method (ASM) is proposed for analyzing arbitrarily shaped planar cracks in two-...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
Interaction of a screw dislocation with wedge-shaped cracks in one-dimensional hexagonal piezoelectr...
Based on the fundamental equations of piezoelasticity of quasicrystals (QCs), with the symmetry oper...
A closed-form solution is provided for the stress, strain and velocity fields due to a planar crack ...
A review on mathematical elasticity of quasicrystals is given. In this review, the focus is on vario...
© 2021 Elsevier Ltd The displacement discontinuity (DD) method is proposed to analyze interface ...
The path-independent J-integral is derived for fracture mechanics analysis of decagonal quasicrystal...