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Titlebook: Design and Modeling of Mechanical Systems - VI; Proceedings of the 1 Mnaouar Chouchane,Moez Abdennadher,Abdelmajid Bena Conference proceedi

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th different material and geometric parameters. The obtained results were compared with experimental data from existing literature focused on the influence of the plasticity theory. The influences of the slenderness ratio and material parameters are discussed.
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https://doi.org/10.1007/978-1-4615-4287-2esent the variation of maximum stress for different inflow velocities and different rotation frequencies for rigid and flexible cases. Our findings highlight the significant effect of flexibility in reducing structural stresses, emphasizing the marked influence of rotation frequency on the evolution of these stresses compared to the rigid case.
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Hybrid Metaheuristic Optimization Algorithm for the Synthesis of a Flexible Four Bar Mechanismnsversal deflections and trajectories. A mono-objective and multi-objectives hybrid optimization synthesis combining PSO, DE and JAYA algorithms based on these responses taken separately and all together have been presented. The optimization efficiency has been proved through numerical simulations carried on MATLAB software.
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A Numerical Study of the Effect of Elasticity on the Strength of Rotor Blades Using the Fluid-Structesent the variation of maximum stress for different inflow velocities and different rotation frequencies for rigid and flexible cases. Our findings highlight the significant effect of flexibility in reducing structural stresses, emphasizing the marked influence of rotation frequency on the evolution of these stresses compared to the rigid case.
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ce considering the flatness tolerance zone value. Two CAD methods based on the use of the Scan To3D tool capabilities and the B-spline interpolation are presented for the final reconstruction of realistic faces with defect. Several algorithms are presented to update the initial coincident mates between planar parts with form tolerance.
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he energy consumed during the dismounting of parts or subsets. A mathematical formulation of the consumed energy during the dismounting operation is developed. An illustrative example is implemented to emphasize the advantages and limitations of the proposed methodology.
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is simple and has proven advantages over the Direct Monte Carlo (DMC) method in terms of time cost. This paper aims to study the problem of non-ideal parts assembly by integrating the influence coefficient method (MIC) and using finite element analysis (FEA).
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