Search Results - "Cylindrical shells"
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Source: Applied Sciences (2076-3417); Jun2026, Vol. 16 Issue 11, p5396, 23p
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Authors: et al.
Source: International Journal of Space Structures. Mar2026, Vol. 41 Issue 1, p22-29. 8p.
Subjects: Cylindrical shells, Parametric modeling, Structural design, Prefabricated buildings, Dead loads (Mechanics)
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Source: Applied Sciences (2076-3417); Apr2026, Vol. 16 Issue 7, p3173, 32p
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Authors: et al.
Source: Communications Physics. 3/31/2026, Vol. 9, p1-7. 7p.
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Authors: et al.
Source: International Journal of Acoustics & Vibration; Mar2026, Vol. 31 Issue 1, p14-26, 13p
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Authors: et al.
Source: International Journal of Microwave & Optical Technology; Mar2026, Vol. 21 Issue 2, p172-180, 9p
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Authors: et al.
Source: Metals (2075-4701); Feb2026, Vol. 16 Issue 2, p215, 10p
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Alternate Title: Ուժեղացված կոմպոզիտային բազմաշերտ գլանային թաղանթների մասին.
Об усиленных многослойных цилиндрических оболочках из композитных материалов.Authors: et al.
Source: Proceedings of the National Academy of Sciences of Armenia. Mechanics. 2026, Vol. 79 Issue 1/2, p133-152. 20p.
Subjects: Mechanical buckling, Cylindrical shells, Compression loads, Fluid pressure, Mechanical vibration research
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Source: Experimental Mechanics. Jan2026, Vol. 66 Issue 1, p87-101. 15p.
Subjects: Cylindrical shells, Mechanical buckling, Hydrostatic pressure, Failure mode & effects analysis, Finite element method, Marine engineering, Dynamic stability
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Authors: et al.
Source: Materials (1996-1944). Jan2026, Vol. 19 Issue 1, p101. 25p.
Subjects: Cylindrical shells, Sandwich construction (Materials), Simulated annealing, Prediction models, Finite element method
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Source: Mathematical Methods in the Applied Sciences. Jan2026, Vol. 49 Issue 1, p7-20. 14p.
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Authors: et al.
Source: Metals (2075-4701); Nov2025, Vol. 15 Issue 11, p1263, 23p
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Source: Mechanics of Advanced Materials & Structures. 2025, Vol. 32 Issue 17, p4196-4224. 29p.
Subjects: Electromagnetic coupling, Cylindrical shells, Viscoelastic materials, Thermodynamics, Multilayers, Laplace transformation, Industrial applications
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Authors: et al.
Source: Journal of Vibration & Control. Jul2026, Vol. 32 Issue 13/14, p3808-3825. 18p.
Subjects: Cylindrical shells, Mechanical vibration research, Elasticity, Finite element method, Differential quadrature method
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Authors: et al.
Source: Archives of Civil & Mechanical Engineering (Elsevier Science). Jul2026, Vol. 26 Issue 4, p1-40. 40p.
Subjects: Cylindrical shells, Elastic foundations, Nanoparticles, Thermal stresses, Graphene, Stress concentration, Shear (Mechanics), Thermal conductivity
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Source: Acta Mechanica. May2026, Vol. 237 Issue 5, p2309-2328. 20p.
Subjects: Cylindrical shells, Carbon nanotubes, Humidity, Active noise & vibration control, Feedback control systems, Dynamic stability, Piezoelectric composites
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Source: Archives of Civil & Mechanical Engineering (Elsevier Science). May2026, Vol. 26 Issue 3, p1-31. 31p.
Subjects: Functionally gradient materials, Cylindrical shells, Boundary value problems, Thermoelasticity, Shear (Mechanics), Thermal properties, Stress concentration, Carbon nanotubes
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Source: International Journal of Structural Stability & Dynamics. 7/15/2026, Vol. 26 Issue 15, p1-34. 34p.
Subjects: Free vibration, Cylindrical shells, Finite element method, Functionally gradient materials, Micromechanics, Urethane foam, Graphene, Genetic algorithms
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Authors: et al.
Source: International Journal of Structural Stability & Dynamics. 5/15/2026, Vol. 26 Issue 10, p1-22. 22p.
Subjects: Cylindrical shells, Dynamic stiffness, Frequency response, Dynamic models, Vibration (Mechanics), Vibration isolation, Damping (Mechanics), Iterative methods (Mathematics)
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Source: Journal of Vibration & Control. May2026, Vol. 32 Issue 9/10, p2174-2192. 19p.
Subjects: Polymeric nanocomposites, Cylindrical shells, Shear (Mechanics), Functionally gradient materials, Graphene, Acoustic vibrations, Eigenfrequencies