Development of a Viscosity Model and an Application, for the Filling Process Calculation in Visco-Dampers
Venczel, Márk
Veress, Árpád
Peredy, Zoltán
2026-06-02T05:57:28Z
2026-06-02T05:57:28Z
2023
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/38759
The lifetime and thermal management of torsional vibration dampers, working with
silicone oils, begin at the design and development phases, of this damping product, with help
of properly developed material and CFD simulation models. Dynamic viscosity
measurements have been carried out on AK 1 000 000 STAB silicone oil samples, with a
high-precision rotational rheometer, to quantify the temperature and shear rate dependence
of the mentioned silicone oil’s non-Newtonian viscous behavior. Eight commonly used
pseudoplastic non-Newtonian viscosity models have been selected for model parameter
estimation and comparison, to develop a reliable, accurate and easy-to-implement viscosity
model valid in -40°C-200°C temperature and 0 1/s-1000 1/s shear rate ranges, based on the
expected operational range of the fluid. The filling process of an existing, small-sized
torsional vibration damper has been thoroughly analyzed under eight different filling
conditions and filling time comparison. Filling mass characteristics, maximal allowed oil
inlet temperatures and maximal oil filling velocities have been determined for each case with
help of 3D, transient, multiphase, coupled fluid dynamic and heat transfer calculations.
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Development of a Viscosity Model and an Application, for the Filling Process Calculation in Visco-Dampers
hu_HU
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Óbudai Egyetem
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Budapest
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Óbudai Egyetem
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