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.
Capacitive Micromachined Ultrasonic Transducer with Lumped Model
This tutorial demonstrates how a lumped model of a MEMS transducer can be derived from its FEM model. It includes an FEM model of a capacitive micromachined ultrasonic transducer (CMUT) and the corresponding lumped model created using the Lumped Mechanical System (LMS) interface. The ... En savoir plus
Lecture Series Files: Joule Heating and Thermal Expansion
These model and geometry files were used during a lecture series on Joule heating and thermal expansion. Get an overview in the accompanying blog post Video Lecture Series: Modeling Joule Heating with Thermal Expansion. En savoir plus
Manufacturing Variation Effects in a Micromachined Comb-Drive Tuning Fork Rate Gyroscope
This tutorial example is kindly provided by Dr. James Ransley at Veryst Engineering, LLC. This model continues from the base model “A Micromachined Comb-Drive Tuning Fork Rate Gyroscope”, which is also provided by Dr. Ransley. The model demonstrates how to accurately compute the effects ... En savoir plus
Lithium Diffusion and Plastic Deformation in a Double-Walled Nanotube Electrode
This example shows how to model Lithium diffusion in a silicon electrode that swells. The model shows how swelling-induced plastic deformation can increase the maximum state of charge (SOC). En savoir plus
Squeeze-Film Gas Damping in an Accelerometer
Squeezed-film gas damping is a critical aspect of many MEMS transducers and actuators. In accelerometers, for example, inertia produces a motion that the device detects. A typical structure connects a large proof mass to surrounding structures with elastic beams, which forms a mechanical ... En savoir plus
Normal Modes of a Biased Resonator — 3D Geometry from a GDS-File
This tutorial demonstrates how to build the geometry for the 3D biased resonator from GDS file using the ECAD Import Module and the Design Module. The procedure emulates semiconductor and MEMS fabrication processes to build 3D geometry more efficiently and is more intuitive for those ... En savoir plus
Trimmer Capacitor
A trimmer capacitor has a variable capacitance. One way of obtaining this is to use parallel facing electrodes with a variable overlap area. In this example, the capacitance can be changed by turning one electrode using a screwdriver. Typically a linear angular response is desired. ... En savoir plus
Solidly Mounted Resonator 2D with Uncertainty Quantification
Uncertainty Quantification is used to study the effect of manufacturing variation on the performance of 2D Solidly Mounted Resonator (2D SMR). This tutorial shows how resonant frequency is effected by thickness variations of the piezoelectric layer and the Bragg reflector layers. The ... En savoir plus