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Cho, J.C. and Jung, B.C. (2007) Prediction of Tread Pattern Wear by an Explicit Finite Element Model. Tire Science and Technology, 35, 276-299.
https://doi.org/10.2346/1.2804913

has been cited by the following article:

  • TITLE: Numerical Estimation of the Uneven Wear of Passenger Car Tires

    AUTHORS: Sang Wook Lee, Kyoung Moon Jeong, Kee Woon Kim, Jang Hyeon Kim

    KEYWORDS: Tire, Uneven Wear, Finite Element Analysis, Frictional Energy

    JOURNAL NAME: World Journal of Engineering and Technology, Vol.6 No.4, November 6, 2018

    ABSTRACT: Tire wear is a very complicated phenomenon that is influenced by various factors such as tire material, structure, vehicle and road conditions. In order to evaluate tire wear, a method for measuring tire wear using the intensity of reflected light was presented[1]. It comprises applying a single layer of reflected paint to a tread surface by spraying, and then measuring the intensity of light reflected from a matrix of blocks on the unworn tire. In this paper, a numerical technique for predicting the uneven wear of passenger car tire is presented. The uneven tire wear produced in wheel alignment condition with vehicle speed, camber angle, and toe angle is predicted by the frictional dynamic rolling analysis of 3D patterned tire model. The proposed numerical technique is illustrated through the method of paint testing the wear on the tread surface of a tire.