Thermal imaging on the force transmission of tires on winter tracks under laboratory conditions

For the analyses of the influence of friction heat on the transmission of tangential forces of a tire with and one without sipes on ice and snow, tire's longitudinal force characteristic and its surface temperature have been measured on the inner drum test bench at the KIT. The analysis of the instationary heat flux shows, that the thermal force limit wherein friction forces can be transmitted without melting is close to tires force characteristic. The comparison of resulting friction heat flux with the transmitted mechanical power shows that with increase of track hardness the force closure part of tangential forces increases, while sipes lead to an increase of the form closure part.

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Publication Details

Journal
KITopen
Published
2026-09-30
DOI
https://doi.org/10.5445/ir/1000197471
Primary Topic
Vehicle Dynamics and Control Systems
Type
article
Field-Weighted Citation Impact
0.00
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article

Thermal imaging on the force transmission of tires on winter tracks under laboratory conditions

Martin Gießler, Burkhard Wies, Frank Gauterin, Klaus Wiese
KITopen
Vehicle Dynamics and Control Systems
article

Thermal imaging on the force transmission of tires on winter tracks under laboratory conditions

Martin Gießler, Burkhard Wies, Frank Gauterin, Klaus Wiese
article en

Abstract

For the analyses of the influence of friction heat on the transmission of tangential forces of a tire with and one without sipes on ice and snow, tire's longitudinal force characteristic and its surface temperature have been measured on the inner drum test bench at the KIT. The analysis of the instationary heat flux shows, that the thermal force limit wherein friction forces can be transmitted without melting is close to tires force characteristic. The comparison of resulting friction heat flux with the transmitted mechanical power shows that with increase of track hardness the force closure part of tangential forces increases, while sipes lead to an increase of the form closure part.

KITopen
Openalex Percentile: Top 20%
Vehicle Dynamics and Control Systems
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