Analysis of Magnetic Force Linearity in Magnetic Levitation Systems
Gumus, Samed
Ozturk, Yavuz
2025-08-06T06:56:59Z
2025-08-06T06:56:59Z
2025
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/31942
The important parameters of bar magnet configurations, in which the same poles
are facing each other, are investigated with a focus on their potential applications in
magnetic levitation. The scalar product of the magnetic field and its gradient between
magnets is referred to as fz, which is a function for force calculations. The magnitude and
linear range of this function are then examined. These parameters are computed for several
air gap lengths between the magnets, as well as the height and thickness of the magnets,
while keeping the magnet length constant. The calculations are experimentally validated by
measuring the magnetic field of a magnet system. The choice of thickness and height of the
magnets was found to have critical effects on both linearity and the maximum value of fz
within the linear range. The results of this study can be used to guide the selection of magnet
dimensions and also to evaluate the factors that can influence the measurements and
sensitivity of magnetic levitation systems.
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Analysis of Magnetic Force Linearity in Magnetic Levitation Systems
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Óbudai Egyetem
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Budapest
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Óbudai Egyetem
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