On the transformation toughening of a crack along an interface between a shape memory alloy and an isotropic medium
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Publication:1039504
DOI10.1016/J.JMPS.2008.06.003zbMath1183.74235OpenAlexW2026921516MaRDI QIDQ1039504
Leslie Banks-Sills, Yuval Freed, Jacob Aboudi
Publication date: 30 November 2009
Published in: Journal of the Mechanics and Physics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jmps.2008.06.003
Control, switches and devices (``smart materials) in solid mechanics (74M05) Brittle fracture (74R10) Finite element methods applied to problems in solid mechanics (74S05)
Related Items (2)
On phase transformations in shape memory alloy materials and large deformation generalized plasticity ⋮ Rice local phase angle study for a delamination problem between a shape memory alloy and an elastic material
Cites Work
- On the thermomechanical modeling of shape memory alloys
- Crack growth resistance of shape memory alloys by means of a cohesive zone model
- Recent finite element studies in plasticity and fracture mechanics
- Fracture toughening mechanism of shape memory alloys due to martensite transformation
- Development of a methodology for determination of interface fracture toughness of laminate composites --the \(0^\circ/90^\circ\) pair
- Higher-order theory for periodic multiphase materials with inelastic phases.
- Smart structure for suppression of mode I and II crack propagation in CFRP laminates by shape memory alloy TiNi actuator
- Dynamic response of active composite plates: shape memory alloy fibers in polymeric/metallic matrices
- Finite element interface models for the delamination analysis of laminated composites: mechanical and computational issues
- Stress Intensity Factors for Finite Interface Cracks Between a Special Pair of Transversely Isotropic Materials
- General Crack-Tip Fields for Stationary and Steadily Growing Interface Cracks in Anisotropic Bimaterials
- An efficient method for finding the minimum of a function of several variables without calculating derivatives
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