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Exact(10)
Numerical results are presented for sandwich beams with different boundary conditions subjected to distributed loadings.
In this paper, the asymptotic development method (ADM) is utilized to investigate the free vibration of uniform AFG beams with different boundary conditions.
Finally, the lightweight designs of the composite laminated beams with different boundary conditions are performed.
Natural frequencies and vibrational modes of laminated beams with different boundary conditions are obtained.
Numerical results for buckling loads of laminated beams with different boundary conditions and lamina stacking are presented.
However, the coefficients are not the same in the presence of an initial stress for vibrating beams with different boundary conditions.
Similar(50)
The framework is used to find the optimal design of cantilevered composite beams with different geometries, boundary conditions and load cases.
A number of composite channel-section beams with different types of boundary conditions, span-to-height ratios, and lay-up schemes are investigated for the optimum design.
Typical cases of a delaminated composite beam with different boundary conditions are studied.
A parametric analysis shows the key factors, which affect the rotatory inertia and its influence on the frequency of a single-span composite beam with different boundary conditions.
The eigenequation is deduced and the dimensionless complex frequencies of the axially moving beam with different boundary conditions under the coupled thermoelastic case are calculated by the differential quadrature method.
More suggestions(20)
beams with various boundary
beams with other boundary
beams with several boundary
beams with different strand
beams with different end
beams with different stiffness
beams with different ρ
beams with classical boundary
beams with different percentage
beams with different layer
beams with arbitrary boundary
beams with different web
beams with general boundary
beams with different design
beams with different handedness
beams with unknown boundary
beams with different waist
beams with different polarization
beams with different reinforcement
beams with different stacking
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com