Shaping stress: how curvature governs the mechanics of film-substrate systems undergoing volumetric expansion. [PDF]
Gross SJ, Valdevit L, Mohraz A.
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Poly(Ionic) Liquid‐Enhanced Ion Dynamics in Cellulose‐Derived Gel Polymer Electrolytes
Advancing Energy Storage: Gel Polymer Electrolytes with Promising Potential Gel polymer electrolytes (GPEs) incorporating methyl cellulose and a range of ionic/polymeric achieved Li+ transference numbers comparable to traditional liquid electrolytes.
Tiago G. Paiva +7 more
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Toward Thermally Stimuli-Responsive Polymeric Vesicles Fabricated by Block Copolymer Blends for Nanocarriers. [PDF]
Lee JK +6 more
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Enhancing battery thermal management system using the emulsion of encapsulated phase change material and water in a mini helical tube. [PDF]
Hussien SA +4 more
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Study of payload calculation and motion prediction for unpowered diving and floating of deep-sea manned submersible. [PDF]
Hu Z, Ye C, Liu S, Qu W.
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Modified Couple Stress Theory for nonlinear primary resonance of FG-GPLRC cylindrical shells in thermal environment. [PDF]
Forghani MA +4 more
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Equivalent method for calculating internal blast loads in cylindrical lattice shell structure. [PDF]
Shiqi F, Xuanneng G.
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Related searches:
A cylindrical shell discrete element.
AIAA Journal, 1967The development of the stiffness and consistent mass matrices for a finite cylindrical shell element is reported. The derivation of these matrices is based upon linear behavior and thin-shell assumptions. Expressing the assumed displacement state over the middle surface of the cylindrical shell element as products of one-dimensional, first-order ...
Bogner, F. K., Fox, R. L., Schmit, L. A.
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Nonlinear Vibration of Cylindrical Shells
AIAA Journal, 1975The large amplitude vibrations of a thin-walled cylindrical shell are analyzed using the Donnell's shallow-shell equations. A perturbation method is applied to reduce the nonlinear partial differential equations into a system of linear partial differential equations.
Chen, Jay C., Babcock, Charles D.
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DYNAMIC INSTABILITY I N CYLINDRICAL SHELLS
17th Structures, Structural Dynamics, and Materials Conference, 1976The stability of the steady state response of simply supported circular cylinders subjected to harmonic excitation is investigated by using variational equations reduced from “exact” non-linear modal equations. The inertia of the unperturbed vibration motion is included as well as the non-linearities in the steady state resonant response. The existence
Radwan, H. R., Genin, J.
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