La Bibliothèque d'Applications présente des modèles construits avec COMSOL Multiphysics pour la simulation d'une grande variété d'applications, dans les domaines de l'électromagnétisme, de la mécanique des solides, de la mécanique des fluides et de la chimie. Vous pouvez télécharger ces modèles résolus avec leur documentation détaillée, comprenant les instructions de construction pas-à-pas, et vous en servir comme point de départ de votre travail de simulation. Utilisez l'outil de recherche rapide pour trouver les modèles et applications correspondant à votre domaine d'intérêt. Notez que de nombreux exemples présentés ici sont également accessibles via la Bibliothèques d'Applications intégrée au logiciel COMSOL Multiphysics® et disponible à partir du menu Fichier.
Nowadays, there is a trend toward manufacturing wheel rims from composite materials instead of aluminum. The main motivation is to reduce unsprung mass, which improves dynamic response and can enhance acceleration, braking, and cornering performance. Carbon-fiber-reinforced polymer ... En savoir plus
Wind turbines are an increasingly popular source of renewable energy. As such, the design, analysis and manufacture of wind turbines are important to the energy industry. The turbine blades are critical components of a wind turbine. When generating electric power through rotation, they ... En savoir plus
Interfacial failure, or delamination, in a composite material can be simulated using a cohesive zone model (CZM). A key component of a CZM is the traction-separation law, which describes softening in the cohesive zone near the delamination tip. This example demonstrates the ... En savoir plus
In this example, the structural integrity of a cylinder made of a fiber-reinforced composite is assessed at both the macroscale and the microscale. In addition to macroscale analyses, structural composites require microscale stress and failure analyses to identify the critical ... En savoir plus
Fiber composites are widely used in industrial applications. Compared with traditional metallic engineering materials, fiber composites often offer higher specific stiffness and strength, as well as greater corrosion resistance. In addition, properties such as strength, stiffness, and ... En savoir plus
Loudspeaker design is a challenging task. The objective is to achieve high sound quality while satisfying manufacturing and operational constraints. Sound quality depends on many factors, including the ability to control, damp, and shift diaphragm resonances and to control diaphragm ... En savoir plus
Composite laminates are synthetic structures and there is always a possibility to optimize the design in terms of the number of layers, the material of each layer, the thickness of each layer, and the stacking sequence for the specified loading conditions. Designers need to know how safe ... En savoir plus
Delamination or the separation of layers is a common failure mode in laminated composite materials. Various factors, including loading, defects in the material, and environmental conditions, can trigger the initiation and propagation of layer separation. This leads to degraded structural ... En savoir plus
This tutorial is intended as a simple example showing how to model piezoelectric devices using the layered shell functionality. Two cases of material orientation are studied. In the first case, the pole axis is normal to the shell surface, which results in a thickness change. In the ... En savoir plus
This example illustrates the modeling of ply drop-off in a composite panel. The panel considered for the analysis has three sections–thick, taper, and thin. The thick section plies are divided into the core, top-bottom belts, and dropped plies. The thick section of the panel has sixteen ... En savoir plus
