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February 20, 20260 citationsOpen Access

Development and validation of a dynamic simulation model with rubber bushings

MNM. NiemeyerCDChristoph DanielEWElmar Woschke

Key Points

  • The aim is to develop and validate a dynamic simulation model that accurately represents rubber bushings in dynamic systems.
  • Established a multi-body simulation model using a laboratory centrifuge as a test example.
  • Conducted material and component tests to assess dynamic properties of two rubber bushing variants.
  • Gradually enhanced the modeling depth from a simple rheological model to a complex material model.
  • Validated the simulation model by comparing it with experimental run-up results from the centrifuge.
  • Achieved improved prediction accuracy for damping behavior under multi-axial loading.

Abstract

Damping elements made of elastomers are commonly used in dynamic systems such as vehicles or centrifuges. Numerical simulation methods, particularly multi-body simulation (MBS), are employed to predict loads and kinematic quantities in these technical systems. This requires knowledge of mass, damping and stiffness properties. Therefore, accurately mod-eling elastomer components is essential for achieving high prediction accuracy. However, the complex and extremely non-linear material behavior of elastomers 1 demands material models capable of replicating these mechanical proper-ties. In addition, one-dimensional models may not suffice for modeling damping elements under multi-axial loading 2,3. To enhance the prediction accuracy of MBS by incorporating these nonlinearities, the first step is to establish an MBS model for the dynamic system, using a laboratory centrifuge as an example. This forms the basis for gradually increasing the modeling depth, starting from a simple rheological model with the objective of substituting it with a physically-motivated material model. Material and component tests are conducted to determine the dynamic properties of two vari-ants of rubber bushings. For validation, a run-up of the test centrifuge is experimentally investigated and compared with the simulation results.

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Cite This Study

Niemeyer et al. (2026) studied this question.

synapsesocial.com/papers/6997fa03ad1d9b11b3452e2chttps://doi.org/10.17185/duepublico/84923
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