Mesh the Flow Simulation geometry using manual meshing approach. Control Basic mesh settings. Apply manual mesh setting and options. Define control planes. Define and apply local mesh controls. Plot mesh on cut plots.
Lesson
4 jours il y a
ENG
Mesh the Flow Simulation geometry using automated meshing approach. Understand the Basic mesh, and Initial mesh concepts. Control the Global Initial mesh refinement level. Analyze the Minimum Gap Size feature value as the project settings change. Plot mesh on cut plots.
Lesson
4 jours il y a
ENG
Run SOLIDWORKS Flow simulation and monitor it. Postprocess Flow simulation results. Launch the SOLIDWORKS Flow simulation and monitor it in the solver window. Monitor execution of the simulation in the solver window. Postprocess results using cut plots, surface plots, flow trajectories. Create 2D graphs from the calculated results, extract results on desired geometrical entities.
Lesson
4 jours il y a
ENG
Build the SOLIDWORKS Flow Simulation project. Use Wizard to define Flow Simulation project. Define boundary conditions. Define goals. Mesh the model geometry.
Lesson
4 jours il y a
ENG
Prepare SOLIDWORKS geometry for Flow Simulation analysis. Create lids manually. Create lids using the Lid Creation tool. Check if the geometry is water tight for internal flow analysis. Detect leaks in improperly sealed geometry.
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4 jours il y a
ENG
Learn about SOLIDWORKS Flow Simulation software. View sample applications from the real world. View sample real world examples where the software was used.
Lesson
4 jours il y a
ENG
SOLIDWORKS Motion is a virtual prototyping tool for engineers and designers interested in understanding the performance of their assemblies. Perform a basic motion analysis using SOLIDWORKS Motion. Simulate the weight of a vehicle on the jack. Determine toque and power required to lift it.
Lesson
10 jours il y a
ENG
Simulate a mechanism placing an object into a box and a cover on the box. Apply servo motors. Add proximity sensors. Create and run event based motion study.
Lesson
10 jours il y a
ENG
Generate a cam profile based on an input follower displacement from a data set. Define a motion of a follower using Data Points. Generate a cam profile using Trace Path. Verify the generated cam profile.
Lesson
10 jours il y a
ENG
Examine the motion of a catapult as it is loaded and throws a projectile. Add solid bodies contact, add a spring and apply friction. Determine torque required to rotate the crank and load the catapult. Determine the displacement of the loading spring. Study the effect of contact friction on the motion of the projectile.
Lesson
10 jours il y a
ENG
Découvrez la suite de produits SOLIDWORKS Simulation en explorant tous les modules. Analysez le transfert de chaleur et l'écoulement des fluides à l'aide de SOLIDWORKS Flow. Utilisez Sustainability pour réduire l'impact environnemental de vos conceptions. Explorez l'analyse de contrainte-déformation à l'aide de SOLIDWORKS Simulation. Analysez la dynamique de corps rigide à l'aide de SOLIDWORKS Motion. Affichez les répétions dans une zone des pièces en plastique injecté à l'aide de SOLIDWORKS Plastics.
Lesson
5 mois il y a
ENG
Découvrez comment analyser une partie d'un plus grand assemblage pour gagner du temps et obtenir des résultats plus précis en utilisant la sous-modélisation. Créez une étude de sous-modèle à partir d'une étude parente. Découvrez comment les charges sont automatiquement transférées dans une étude de sous-modèle. Gagnez du temps et économisez des ressources informatiques tout en conservant la précision des résultats. Utilisez eDrawings pour enregistrer les résultats.
Lesson
5 mois il y a
ENG
Ce module présente le concept de la convergence du maillage en étudiant la façon dont la taille des éléments affecte les contraintes, déformations et déplacements. Découvrez comment une modification de la taille globale de l'élément affecte les résultats. Découvrez comment appliquer des contrôles de maillage à des sites spécifiques. Voyez comment les angles vifs peuvent produire des concentrations de contraintes.
Lesson
5 mois il y a
ENG
Apprenez à optimiser les conceptions pour réduire le poids du modèle en variant les cotes du modèle. Appliquez des paramètres et des contraintes pour optimiser votre conception afin d'atteindre les objectifs. Découvrez comment les études de conception sont utilisées avec la simulation.
Lesson
5 mois il y a
ENG
Découvrez comment les coques sont utilisées pour modéliser des structures minces. Créez des coques sur des structures minces à l'aide du Gestionnaire de coques. Appliquez une garniture fixe de symétrie pour réduire les efforts de calcul.
Lesson
5 mois il y a
ENG
Ce module présente l'interface utilisateur de Simulation et vous guide à travers le processus de configuration d'une pièce simple. La simulation est ensuite exécutée et les résultats sont analysés. Apprenez à utiliser l'interface utilisateur de Simulation. Appliquez des garnitures fixes, matériaux et charges. Exécutez la simulation et analysez le modèle en termes de contraintes et de déplacements.
Lesson
5 mois il y a
ENG
Introduction to the material nonlinearity, namely metal plasticity. Effect of mesh quality on the quality of the numerical stress results. Solve problem with linear small displacement solution and identify a need for the nonlinear solution due to high stress. Define nonlinear study boundary conditions and loads. Define nonlinear material model with von Mises plasticity. Use simplified bi-linear plasticity material model. Review the stress and displacement results at various times. Study effect of mesh quality on the quality of the stress results. Use the mesh sectioning feature to review stress distribution within the bodies.
Lesson
6 mois il y a
ENG
Introduction to the force control and displacement control methods in nonlinear module. Experience and resolve solution instabilities when solving nonlinear problems. Define nonlinear study boundary conditions and loads. Stabilize force control method to arrive to a final solution. Solve the problem using the displacement control method. Adjust boundary conditions for the displacement control method. Compare nonlinear results from the force control, and the displacement control methods.
Lesson
6 mois il y a
ENG
Review the difference between small displacement linear, and large displacement nonlinear analyses. Introduce the concept of time curves, and discuss basic options. Solve small displacement linear analysis to demonstrate inaccurate solution. Define a nonlinear simulation study. Use time curves to control variation of the nonlinear loading. Use fixed increment stepping, and autostepping stepping procedures to solve the nonlinear problem. Postprocess results of the nonlinear simulation. Compare results from nonlinear studies with various setup parameters.
Lesson
6 mois il y a
ENG
Review the basic functionality of the SOLIDWORKS Nonlinear module. Show activation of SOLIDWORKS Simulation Add-In. Learn three basic nonlinear phenomena in engineering calculations. Review of control methods available in the module. Review of basic material models available in the module.
Lesson
6 mois il y a
ENG
Setup, run and postprocess a dynamic simulation with the base motion shock excitation. Understand the optimum mesh design, and get more familiar with the estimation of the minimum number of natural frequencies. Understand the basics of damping. Setup, run and postprocess a transient study Define base excitation shock load Use the mass participation factor to select a sufficient number of natural frequencies Optimize the finite element mesh for dynamic simulation Define structural damping Calculate the maximum time step Use remote mass to simplify the model
Lesson
6 mois il y a
ENG
Setup, run and postprocess a harmonic simulation. Understand and practice the frequency domain excitation definition. Practice postprocessing results from the harmonic study. Setup, run and postprocess a harmonic study Use the mass participation factor to select a sufficient number of natural frequencies Optimize the finite element mesh for dynamic simulation Define the harmonic load in the frequency domain Postprocess results from the harmonic study
Lesson
6 mois il y a
ENG
Setup initial dynamic simulation, solve and postprocess the results. Understand the importance of natural frequencies in dynamic simulations. Compare the dynamic and static results. Setup, run and postprocess a basic transient study Calculate a sufficient number of natural frequencies Use the mass participation factor to estimate a sufficient number of natural frequencies Run dynamic simulation for slow and fast forces, and compare their results
Lesson
6 mois il y a
ENG
Review the basic functionality of the SOLIDWORKS Dynamics module. Show activation of SOLIDWORKS Simulation Add-In. Review the available modules for specific dynamic load times.
Lesson
6 mois il y a
ENG