DiQuMaSPAB. Differential quadrature for mechanics of anisotropic shells, plates, arches and beams.pdf

DiQuMaSPAB. Differential quadrature for mechanics of anisotropic shells, plates, arches and beams PDF

Francesco Tornabene, Nicholas Fantuzzi, Michele Bacciocchi

The main aim of this book is to show the features of DiQuMASPAB so ware through the description of its graphical interface, by giving special emphasis to all those aspects implemented in the code. DiQuMASPAB, acronym of “Differential Quadrature for Mechanics of Anisotropic Shells, Plates, Arches and Beams”, is a computational code, which can be used for the numerical analysis of doubly curved shells made of innovative materials, using the Generalized Differential Quadrature (GDQ) and the Generalized Integral Quadrature (GIQ) methods. The software can investigate the mechanical behavior of these structures through different approaches and structural theories. In particular, this code allows considering a kinematic expansion characterized by different degrees of freedom for the Equivalent Single Layer (ESL) theories and for each layer when the Layer-Wise (LW) approach is taken into account. As far as the materials are concerned, it is possible to consider different lamination schemes, as well as various distributions of the volume fraction of the constituents for those layers that vary their mechanical properties along the thickness. In addition, the software analyzes structures with variable thickness and characterized by variable mechanical properties that can change point by point. A finite element formulation is also available to investigate the mechanical behavior of plane structures characterized by irregular domains and mechanical discontinuities.

As far as the structural mechanics is concerned, fiber-reinforced layers, as well as laminated composites, are widely used as main constituents of shells, plates, and beams . These structural elements made of innovative materials are employed in many engineering fields, such as mechanical, civil, automotive, biomedical, and aerospace, due to the advantages that the composite media can exhibit The present research deals with the linear static behavior of soft-core sandwich plates and shells. The external skins are reinforced by curvilinear fibers. Their curved paths are described by a general mathematical law that allows the definition of arbitrary placements. The mechanical behavior of these structures is modeled through several Higher-order Shear Deformation Theories (HSDTs

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DiQuMaSPAB. Differential quadrature for mechanics of anisotropic shells, plates, arches and beams.pdf

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Note correnti

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Sofi Voighua

23 Prefazione DiQuMASPAB Recentemente, dopo più di dieci anni di articoli scientifici pubblicati, gli autori hanno deciso di rendere disponibile online una raccolta di tutti questi lavori intitolata Differential Quadrature for Mechanics of Anisotropic Shells, Plates, Arches and Beams (da cui l …

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Mattio Mazio

DiQuMaSPAB. Differential quadrature for mechanics of anisotropic shells, plates, arches and beams. Francesco Tornabene, Nicholas Fantuzzi, Michele Bacciocchi edito da Esculapio. Libri-Brossura. Disponibile in 3-4 settimane. Aggiungi ai desiderati Differential quadrature for mechanics of anisotropic shells, plates, arches and beams di Francesco Tornabene , Nicholas Fantuzzi , Michele Bacciocchi - Esculapio € 15.20 € 16.00

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Noels Schulzzi

Acquista online il libro DiQuMaSPAB. Differential quadrature for mechanics of anisotropic shells, plates, arches and beams di Francesco Tornabene, Nicholas Fantuzzi, Michele Bacciocchi in offerta a prezzi imbattibili su Mondadori Store.

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Jason Statham

Differential Quadrature for Mechanics of Anisotropic Shells, Plates, Arches and Beams. The main aim of this book is to show the features of DiQuMASPAB so ware through the description of its graphical interface, by giving special emphasis to all those aspects implemented in the code.

avatar
Jessica Kolhmann

Anisotropic Shells and Panels Using CUF Approach, Differential Geometry and Differential Quadrature Method, Composite Structures Vol. 107(1), p. 675-697 (2014). 19.E. Viola, F. Tornabene, E. Ferretti, N. Fantuzzi, “On Static Analysis of Composite Plane State Structures via GDQFEM and Cell Method”, CMES Vol. 94(5), p. 421-458 (2013). As far as the structural mechanics is concerned, fiber-reinforced layers, as well as laminated composites, are widely used as main constituents of shells, plates, and beams . These structural elements made of innovative materials are employed in many engineering fields, such as mechanical, civil, automotive, biomedical, and aerospace, due to the advantages that the composite media can exhibit