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Analyse dynamique des structures mécaniques par la méthode des éléments finis.

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dc.contributor.author Hamrit, Fareh
dc.contributor.author Necib, Brahim
dc.date.accessioned 2022-05-24T10:33:15Z
dc.date.available 2022-05-24T10:33:15Z
dc.date.issued 2018
dc.identifier.uri http://depot.umc.edu.dz/handle/123456789/6498
dc.description.abstract The mechanicaldiscrete or continuumstructures are actually of great importance in the application field of contemporary modern industry. However, during their life time these structures are often subjected to considerable external stresses or to high amplitudes of vibrations which can cause them large deformations and internal stresses which can cause them internal cracking or even their total destruction. In order to avoid these types of problems, the concept of static and dynamic analysis of these structures is recommended, and due to the complexity of their shape and size, the finite element method is the most used. The latter is currently recognized as a very powerful technique for the static and dynamic analysis of discrete or continuous structures of complicated form applied in the field of mechanics, aeronautics, civil engineering, maritime or robotics. Consequently, the calculation and dimensioning of these mechanical systems by the finite element method plays an important role at the service of the industry for possible sizing and prediction of their lifetime. Our work consists of static and dynamic analysis of two-dimensional discrete and continuous mechanical systems using the finite element method based on the main elements of bars, beams and plates, under the effect of external excitations with different boundary conditions. The discrete structures considered are twodimensional in metallic framework interconnected to the nodes by welding, riveting or bolted under various boundary conditions. Their elements are modeled comparatively by bar elements and beam elements, while for continuous structures the elements are rectangular thin plates with different boundary conditions. The excitation forces are based on periodic, random or impulsive forces and a numerical solution by development of a program to describe the behavior of these structures is realized. The mass and stiffness matrices of all the structures are determined respectively by assembling the bars, beam and plate elements based on the kinetic and deformation energy for each element. The displacements, the node reactions and the axial forces in all the elements as well as the transverse stresses and the eigenvalues of the structures under different boundary conditions were also calculated and good results were obtained compared to those obtained using other software Already existing. In fact, analysis using the finite element method will allow the proper dimensioning and design of complex industrial mechanical structures according to different boundary conditions, their internal loading and their vibratory level.
dc.language.iso fr
dc.publisher Université Frères Mentouri - Constantine 1
dc.subject Structures mécaniques
dc.subject rigidité
dc.subject déformation
dc.subject contrainte
dc.subject modes de vibration
dc.subject éléments finis
dc.subject élément barre
dc.subject élément poutre
dc.subject élément plaque
dc.subject assemblage
dc.subject énergie de déformation
dc.subject forces internes
dc.subject Mechanical structures
dc.subject stiffness
dc.subject vibration modes
dc.subject finite elements
dc.subject bar element
dc.subject beam element
dc.subject plate element
dc.subject assembly
dc.subject deformation energy
dc.subject internal forces
dc.subject deformation
dc.subject stress
dc.subject الهياكل الميكانيكية
dc.subject والإجهاد
dc.subject وسائط الاهتزاز،
dc.subject والعناصر المحدودة
dc.subject عنصر شريط
dc.subject عنصر شعاع
dc.subject عنصر لوحة
dc.subject والتجمع
dc.subject والطاقة تشوه
dc.subject القوى الداخلية
dc.subject وصلابة
dc.subject وتشوه
dc.title Analyse dynamique des structures mécaniques par la méthode des éléments finis.
dc.type Thesis


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