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Biomechanics Experiment descriptions

Download the experiment descriptions

It is not necessary to print the experiment descriptions. It is sufficient if you read through the first pages of the description, i.e. the theoretical part, before the experiments (in the PDF reader). The password to open the files will be announced at the preliminary discussion.
The instructions will be handed out free of charge before the experiments!

ATTENTION: The experiment instructions will only be made available in ILIAS! Finite element method 1, "Piston" experiment
-> FEM1 (PDF file 5.4 MB)
-> Video on the piston/piston experiment

-> Template LinStatics3D.comm

Finite element method2, "Beam" experiment
-> FEM2 (PDF file 19.2 MB)
-> Video of the beam/beam part 1 experiment
-> Video of the beam/beam part 2 experiment

Finite element method 3 "Bone" experiment
-> FEM3 (PDF file 19.2 MB)

Strain gauge experiment

Experiment description
-> DMS (PDF file 6.2 MB)

Test presentations
-> DMS-Allgemein (PDF file 4.9 MB)
-> DMS-Applikation (PDF file 15.5 MB)
-> DMS-Wheatstone (PDF file 2.2 MB)

Videos on the Wheatstone measuring bridge:
-> Link to the videos quarter/half and full bridge

Optical stress analysis experiment
-> OPT (PDF file approx. 18.7MB)

Digital image correlation experiment
-> Download will be activated shortly!

Evaluation sheet
ATTENTION: A final voluntary test will only take place online in ILIAS at the end of January!

This final evaluation form must be completed and submitted in person by the beginning of the semester at the latest.
> Evaluation (PDF file 512kB). If the measurement results have not been recorded, you can refer to the following results data for evaluation:
> Measurement results ( PDF file 2.4MB)

FEM test descriptions

Calculation of a motorised piston with Salomé and Code_Aster. Import of geometry data from a CAD programme through a STEP interface file to Salomé.

Calculation of a motor piston with SALOME and Code_Aster. Import of the geometry data from a CAD programme using a STEP Interface file.

Stress analysis on a bending beam made of optically birefringent material. During practical training in biomechanics, this beam is also analysed using other methods, such as stress optics and strain gauge technology. The results and the advantages and disadvantages of these methods are then compared with each other.

Experimental modal analysis can be used to describe components in terms of their structural-dynamic properties -frequencies, damping and vibration modes. In this practical section, some aspects of experimental modal analysis are presented without in-depth mathematical derivations.

Calculation of the plastic deformation of a flange.

A steel cylinder rests on a plastic cube with a normal force of 100 N (/d)

Flyer Biomechanics

...is currently being revised...

Flyer Physiotherapy

Flyer B.Sc. Physiotherapy
Dual study programme

Flyer_Physiotherapy_230112.pdf

Programme brochure B.Eng. Biomedical Engineering

Programme brochure B.Eng. Biomedical Engineering

b_biomedical_engineering_201201.pdf

Programme brochure M.Sc. Biomedical Engineering

Programme brochure M.Sc. Biomedical Engineering

m_biomedical_engineering_201201.pdf