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タイトルA method for the geometrically nonlinear analysis of compressively loaded prismatic composite structures
本文(外部サイト)http://hdl.handle.net/2060/19910012248
著者(英)Stoll, Frederick; Starnes, James H., Jr.; Gurdal, Zafer
著者所属(英)Virginia Polytechnic Inst. and State Univ.
発行日1991-02-01
言語eng
内容記述A method was developed for the geometrically nonlinear analysis of the static response of thin-walled stiffened composite structures loaded in uniaxial or biaxial compression. The method is applicable to arbitrary prismatic configurations composed of linked plate strips, such as stiffened panels and thin-walled columns. The longitudinal ends of the structure are assumed to be simply supported, and geometric shape imperfections can be modeled. The method can predict the nonlinear phenomena of postbuckling strength and imperfection sensitivity which are exhibited by some buckling-dominated structures. The method is computer-based and is semi-analytic in nature, making it computationally economical in comparison to finite element methods. The method uses a perturbation approach based on the use of a series of buckling mode shapes to represent displacement contributions associated with nonlinear response. Displacement contributions which are of second order in the model amplitudes are incorported in addition to the buckling mode shapes. The principle of virtual work is applied using a finite basis of buckling modes, and terms through the third order in the model amplitudes are retained. A set of cubic nonlinear algebraic equations are obtained, from which approximate equilibrium solutions are determined. Buckling mode shapes for the general class of structure are obtained using the VIPASA analysis code within the PASCO stiffened-panel design code. Thus, subject to some additional restrictions in loading and plate anisotropy, structures which can be modeled with respect to buckling behavior by VIPASA can be analyzed with respect to nonlinear response using the new method. Results obtained using the method are compared with both experimental and analytical results in the literature. The configurations investigated include several different unstiffened and blade-stiffening panel configurations, featuring both homogeneous, isotropic materials, and laminated composite material.
NASA分類STRUCTURAL MECHANICS
レポートNO91N21561
PB91-169771
VPI-E-91-01
NAS 1.26:184846
NASA-CR-184846
CCMS-91-03
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/133125


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