The stiffness of a roller between two flat surfaces

An experimental study using modal analysis

Journal Article (2026)
Author(s)

David Onno Wijnberg (Student TU Delft)

Rob Eling (PM B.V.)

Ron A.J. van Ostayen (TU Delft - Mechatronic Systems Design)

Research Group
Mechatronic Systems Design
DOI related publication
https://doi.org/10.1016/j.triboint.2025.111234
More Info
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Publication Year
2026
Language
English
Research Group
Mechatronic Systems Design
Volume number
214
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Abstract

The load-stiffness relationship of a roller sandwiched between two flat surfaces is experimentally investigated. This study provides a comprehensive and well-documented dataset on roller stiffness in bearing applications. The measurements, obtained using hammer impact tests on a variety of rollers are both accurate and precise. Comparing the experimental results with the predictions from the commonly used Tripp model, we observe that the stiffness of the roller under relatively light load conditions is significantly lower than what is predicted by the Tripp model. This discrepancy is primarily attributed to surface roughness, a factor not accounted for in the Tripp model. For practical engineering applications, we propose simple formulas that predict the stiffness of real-world roller-rail contacts with an accuracy of ±10%.