In this study, damage evolution in glass/carbon fiber hybrid composites with various stacking sequences is investigated under pure bending and tensile loading conditions. Based on the …
Over the last few decades, uncertainty quantification in composite materials and structures has gained a lot of attention from the research community as a result of industrial …
A Kheyabani, E Massarwa, A Kefal - Composite Structures, 2022 - Elsevier
This study presents a novel multiscale modeling strategy by combining the parametric high fidelity generalized method of cells (HFGMC) micromechanical model and isogeometric …
This study presents a highly accurate, computationally efficient, and novel isogeometric beam element, named as IG-RZT (m), whose formulation is derived by using the kinematic …
In this study, a novel multiscale analysis technique is presented for predicting the mechanical behavior of 3D woven composites. To this end, the model of the representative …
H Hu, T Yu, TQ Bui - Composite Structures, 2020 - Elsevier
Studies on functionally graded (FG) curved microbeam structures are rather rare in the literature, and we thus present an effective computational approach on the basic …
A novel isogeometric plate formulation based on {3, 2}-order refined zigzag theory (RZT) is developed and coupled with the parametric high fidelity generalized method of cells …
In this study, we propose a new IsoG eometric formulation based on Refined Zigzag Theory (RZT), abbreviated as IG-RZT, for static analysis of laminated plates and sandwich panels …
This study presents a novel C0 continuous refined zigzag finite element formulation {1, 2}, namely RZE {1, 2}, for the bending and free vibration analyses of laminated composite …