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The novelty of our approach depends on the application of the hybrid experimental methods and the comparison of their effectiveness in the description of complicated fatigue problems arising in the analysis of the behavior of laminated panels with open holes and subjected to tensile loading.
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The modulus of rupture and compression strength values of laminated panels made from compressed OPT was greater than those of laminated panels made from uncompressed OPT.
Surface roughness, water absorption, and thickness swelling of laminated panels made from compressed OPT significantly improved.
The paper illustrates the application of the ant colony optimization (ACO) metaheuristic to the lay-up design of laminated panels for maximization of buckling load with strength constraints.
This study evaluated physical and mechanical properties of laminated panels made from compressed oil palm trunk (OPT).
Supersonic panel flutter behavior of laminated composite plates and cylindrical panels are investigated here using a 16-noded isoparametric degenerated shell element.
Buckling behavior of laminated composite beam and flat panels are analyzed to illustrate the efficacy of the present formulation and various types of buckling modes are observed depending on the geometrical and material parameters.
Here, the system parameters effects on supersonic panel flutter behavior of laminated composite skew plates are investigated using a shear deformable finite element approach.
The paper presents the results of an experimental research on the viscoelastic behavior of laminated glasses with polyvinyl-butyral interlayers.
In this paper, a refined and simple theory of plates is presented and applied to the investigation of static, buckling, and free vibration behavior of laminated composite plates.
Aerothermoelastic characteristics of composite laminated panels with time-dependent boundary conditions are investigated.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com