- Online training provides you with solutions to your design projects.
- Receive guidance from experienced Dlubal instructors.
- Gain valuable program insight, increase efficiency, and improve workflows.
- Virtual training sessions are cost-effective, flexible, and convenient.
RFEM 6 | For Students | Introduction to FEM
Online Training Information
Why Online Training?
Free Online Basic Training on Structural FEA Software RFEM 6 | Introduction to FEM for Students
Date | Time
Event Language
EnglishContent
Time Schedule
- |
Basics of FEM Description and definition of the finite element method (FEM)
Schematic process of the FEM calculation Explaining graphical user interface |
- |
Introductory Example: Continuous slab Comparing beam element with surface element
Modeling a two-span beam and a rectangular plate Plate theory Result evaluation |
- |
Nonlinear Analysis & Singularities Geometric and material nonlinearities
Singularities |
The online training requires a fast and reliable internet connection.
During the training, each participant can ask questions via chat at any time.
After the event, each participant will find the models, video recordings and training documents presented in the training on our website. The website link will be sent by email after the training.
This allows the participant to go through and understand the training step by step by means of the models.
After completing the training, each participant will receive a certificate.
Speakers

Thomas Eichner, M.Sc.
Product Engineering & Customer Support
Mr. Eichner is responsible for the development of products for dynamic analysis and provides technical support for our customers.

Paul Sivolgin, B.Eng.
Product Engineering
Mr. Sivolgin supports product development in the area of interfaces.
Keywords
Training RFEM Basics Online Training Student Student Version
Links
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If you are interested in a specific topic not included in a group training, consider an Individual Training.
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Smoothing of Surface Internal Forces in RFEM
When calculating a surface model, the internal forces are determined separately for each finite element. Since the element-by-element results usually represent a discontinuous distribution, RFEM performs smoothing of the internal forces.
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