Service portfolio: Structural mechanics

Whether in the development, optimization, or evaluation of technical components: We support you with precise mechanical simulation and metrological validation – for sound decisions, standard-compliant verification, and reliable products.

FEM Simulation mit COMSOL Multiphysics®

Structural mechanics, vibration, contact, thermomechanics or material modeling – we simulate the behavior of mechanical systems with the full FEM functionality of COMSOL Multiphysics®.

Our calculations provide in-depth insights into structural behavior, validate designs, and enable robust optimizations. Whether linear or nonlinear, static or transient, purely mechanical or multi-physically coupled: We support you in the analysis, design, and development of your components, assemblies, and systems.

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Static FEM analysis (linear and nonlinear)

  • Voltage distributions & safety proofs
  • Deformations & wear
  • Contact & Friction
  • Geometric nonlinearities
  • Material nonlinearity (plasticity, hyperelasticity)


Dynamic structural mechanics

  • Modal analysis (natural frequencies & vibration shapes)
  • Harmonic analysis (frequency response analysis)
  • Transient structural responses
  • Random Vibration Analysis
  • Vibration isolation & damping

Thermomechanik

  • Stresses due to temperature gradients
  • Expansion, loss of prestress, deformation
  • Coupled simulation with steady or transient heat transfer

Kinematic

  • Multibody simulation (MBS)
  • Mechanisms
  • Combination with strength and contact analysis


Measurement & experimental vibration analysis

Structures deform, machines vibrate, forces act – but what's really happening? With our mechanical measurement methods, we visualize vibrations, structure-borne sound, and structural responses. This allows problems to be specifically identified, models validated, and designs optimized.

We measure mechanical vibrations, accelerations, structure-borne sound, and frequency response using practical sensors – contact-based or contactless. The data provides concrete information about the dynamics of components, systems, or equipment.

Experimental modal analysis

Determination of natural frequencies, mode shapes and modal damping of a component or system.

Operating vibration analysis

Recording of vibration shapes and frequencies in real operation, under real loads.

Transfer path analysis

Quantification and evaluation of Transmission routes between source and receiver.

Long-term monitoring

Recording of time-dependent vibrations and level curves under continuous load.

Are you interested in a service?

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