A combined analytical formulation and genetic algorithm to analyze the nonlinear damage responses of continuous fiber toughened composites
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Publication:1697118
DOI10.1007/s00466-017-1398-zzbMath1386.74042OpenAlexW2607870929WikidataQ113327416 ScholiaQ113327416MaRDI QIDQ1697118
Publication date: 15 February 2018
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-017-1398-z
Cites Work
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- A theory of plasticity for carbon nanotube reinforced composites
- An elastoplastic damage model for metal matrix composites considering progressive imperfect interface under transverse loading
- Micromechanical effective elastic moduli of continuous fiber-reinforced composites with near-field fiber interactions
- Micromechanics-based elastic-damage analysis of laminated composite structures
- Micromechanics and effective transverse elastic moduli of composites with randomly located aligned circular fibers
- Micromechanics and effective moduli of elastic composites containing randomly dispersed ellipsoidal inhomogeneities
- Composite materials for wind energy applications: micromechanical modeling and future directions
- A statistical descriptor based volume-integral micromechanics model of heterogeneous material with arbitrary inclusion shape
- Micromechanics-based constitutive modeling for unidirectional laminated composites
- On Stiffness and Strength of an Aligned Short-Fiber Reinforced Composite Containing Fiber-End Cracks Under Uniaxial Applied Stress
- Micromechanical prediction of ultimate strength of transversely isotropic fibrous composites
- A computational approach to the investigation of impact damage evolution in discontinuously reinforced fiber composites
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