Journal Article FZJ-2015-02350

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Rubber Friction and Tire Dynamics: A Comparison of Theory with Experimental Data

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2014
Tire Society Akron, Ohio

Tire science and technology 42(4), 216-262 ()

Abstract: In this contribution, a simple rubber friction law is presented. The model can be used for tire and vehicle dynamics calculations [19]. The friction law is tested by comparing numerical results to the full rubber friction theory [6] and to experimental data.A two-dimensional tire model is introduced. The model combines the rubber friction law with a simple mass-spring description of the tire body. The tire model is very flexible and can be applied to different maneuvers. It can be used for calculating l-slip curves, the self-aligning torque, braking and cornering, or combined motion (e.g., braking during cornering). The theory predictions are compared to measured data from indoor tire testing on sandpaper substrate. Simulations of antilock braking systems (ABS) using two different control algorithms are also presented.

Classification:

Contributing Institute(s):
  1. Quanten-Theorie der Materialien (PGI-1)
  2. Quanten-Theorie der Materialien (IAS-1)
Research Program(s):
  1. 424 - Exploratory materials and phenomena (POF2-424) (POF2-424)

Appears in the scientific report 2014
Database coverage:
SCOPUS
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 Record created 2015-04-08, last modified 2021-01-29


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