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Titlebook: Computer-Aided Analysis of Rigid and Flexible Mechanical Systems; Manuel F. O. Seabra Pereira,Jorge A. C. Ambrósio Book 1994 Springer Scie

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Flexibility in Multibody Dynamics with Applications to Crashworthinesss assessed by carrying out an experimental test where a hollow steel extruded beam collide with a rigid block. By predicting where and when failure is likely to occur using a flexible model, the present technique provides an efficient tool to access the crashworthiness design of a broad class of imp
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Kinematic and Dynamic Simulation of Rigid and Flexible Systems with Fully Cartesian Coordinates flexible and experiment large (elastic) deformations and —probably— other second order or coupling effects, that can not be captured with linear methods, such as the standard mode superposition; in this case, large rotation theory of beams and shell finite elements is probably the most suitable sol
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Reduction of Multibody Simulation Time by Appropriate Formulation of Dynamical System Equationsto benefit from parallel computer architectures. Its implementation on a Transputer network results in a significant reduction of execution time for a realistic multibody simulation problem. Flexible structures may be analyzed using finite element or multibody codes. Representing the motion of a fle
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https://doi.org/10.1007/978-3-319-41570-3s allow explicit elimination of all spatial and dependent joint coordinates yielding a minimal system of highly coupled differential equations. A symbolic recursive algorithm that simultaneously decouples the reduced equations of motion as they are generated, was developed to maximize algorithm para
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The Europeanisation of the Western Balkansions. Then, following a second velocity transformation, these equations are converted to a minimal set of differential equations. The combination of point-and joint-coordinate formulations provides some interesting features.
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Britain in Europe and Europe in Britain flexible and experiment large (elastic) deformations and —probably— other second order or coupling effects, that can not be captured with linear methods, such as the standard mode superposition; in this case, large rotation theory of beams and shell finite elements is probably the most suitable sol
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