A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a uniformly prestressed (or prestrained), incompressible and orthotropic elastic sheet, subject to a homogeneous far-field deformation increment. This problem is solved under the assumption of plane strain deformation, with prestress principal directions and orthotropy axes aligned with the stiffener. A full-field solution is obtained solving the Riemann–Hilbert problem for symmetric incremental loading at infinity (while for shear deformation the stiffener leaves the ambient field unperturbed). In addition to the full-field solution, the asymptotic Mode I near-tip representation involving the corresponding incremental stress intensity factor are d...
Localized deformation patterns are experimentally observed to prelude failure in many ductile materi...
Analytical solutions in elasticity predict singularities of stress fields at the corners/tips of rig...
3nonenoneGei, Massimiliano; Dal Corso, Francesco; Bigoni, DavideGei, Massimiliano; Dal Corso, France...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
3noA lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a u...
The full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid incl...
The full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid incl...
The full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid incl...
3noThe full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid i...
Can the thickness of a thin inclusion (in a matrix material) be made so small (though retaining suff...
Can the thickness of a thin inclusion (in a matrix material) be made so small (though retaining suff...
Analytical solutions in elasticity predict singularities of stress fields at the corners/tips of rig...
Localized deformation patterns are experimentally observed to prelude failure in many ductile materi...
Analytical solutions in elasticity predict singularities of stress fields at the corners/tips of rig...
3nonenoneGei, Massimiliano; Dal Corso, Francesco; Bigoni, DavideGei, Massimiliano; Dal Corso, France...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
A lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a unif...
3noA lamellar (zero-thickness) rigid inclusion, so-called ‘stiffener’, is considered embedded in a u...
The full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid incl...
The full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid incl...
The full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid incl...
3noThe full-field and asymptotic solutions derived in Part I of this article (for a lamellar rigid i...
Can the thickness of a thin inclusion (in a matrix material) be made so small (though retaining suff...
Can the thickness of a thin inclusion (in a matrix material) be made so small (though retaining suff...
Analytical solutions in elasticity predict singularities of stress fields at the corners/tips of rig...
Localized deformation patterns are experimentally observed to prelude failure in many ductile materi...
Analytical solutions in elasticity predict singularities of stress fields at the corners/tips of rig...
3nonenoneGei, Massimiliano; Dal Corso, Francesco; Bigoni, DavideGei, Massimiliano; Dal Corso, France...