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Titlebook: Evaluation of Global Bearing Capacities of Structures; G. Sacchi Landriani,J. Salençon Book 1993 Springer-Verlag Wien 1993 Capacities of S

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https://doi.org/10.1007/978-3-662-42482-7iable and efficient methods for analysing the stability of such composite soil structures. The Yield Design theory is perfectly well suited to undertaking such a task, since it provides a comprehensive mechanical framework. The purpose of this contribution is to present two different approaches to t
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https://doi.org/10.1007/978-3-662-25947-4. In this note it is shown how a homogenization technique applied to yield design theory allows the derivation of two domains (in the space of macroscopic stresses) which are a lower and an upper bound to the composite strength domain. The dependence of these domains on the fiber content and on the
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Eine neue Strategie zur C–O-Bindungsbildunglains how to base the description of structures on the theorem of virtual powers. Application to beams in bending follows, again with appendices 3 and 4 for details. Plates, shells and disks are briefly considered, the general solutions process being illustrated on circular plates examples. Multiple
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Die Krise der aktuellen Strategieforschung, technique is shown. As an application a simple example for optimal plastic design of beams is solved..The variational formulation is discussed in detail for the case of plastic design of circular plates: optimality criterion is shown and special features of optimal solutions are discussed..Then the
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Zielsetzung und Vorgehensweise,fields embedded in the matrix material, are considered. The thickness and the domain of the discs or laminates are assumed to be given, together with prescribed boundary conditions and in-plane loading along the edge..The problem under study consists in determining throughout the structural domain t
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Josef Fassbender,Werner Hoppe,Walter Weizeltion technique. Material is modelled by a second rank composite, and we use the concentrations and orientations of the composite as design variables. Numerical results are presented at the end of the paper.
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Optimal Design of Fiber-Reinforced Orthotropic Bodies,
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Evaluation of Global Bearing Capacities of Structures
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