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Title:

Contribution of Hysteresis Component of Tire Rubber Friction on Stone Surfaces

Accession Number:

01333231

Record Type:

Component

Availability:

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Order URL: http://www.trb.org/Main/Blurbs/166429.aspx

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Order URL: http://worldcat.org/isbn/9780309167505

Abstract:

This research examines the hysteresis friction of a sliding elastomer on various types of stone surfaces. The hysteresis friction is calculated with an analytical model that considers the energy spent by the local deformation of the rubber due to surface asperities of the stone surface. By establishing the fractal character of the stone surfaces, one can account for the contribution to rubber friction of stone roughness at different length scales. A high-resolution surface profilometer is used to calculate the three main surface descriptors and the minimal length scale that can contribute to hysteresis friction. The rubber is treated as a Zener viscoelastic material model. Modeling of the contact between the elastomer and the stone surface is based on the analytical model of Klüppel and Heinrich, which is a generalization of the Greenwood and Williamson theory of contact between spheres that are statistically distributed about a mean plane. The results show that this method can be used in order to characterize in an elegant manner the surface morphology of various stone surfaces and to quantify the friction coefficient of sliding rubber as a function of surface roughness, load, and speed.

Monograph Accession #:

01358795

Report/Paper Numbers:

11-1698

Language:

English

Authors:

Villani, M M
Artamendi, I
Kane, M
Scarpas, A (Tom)

Pagination:

pp 153-162

Publication Date:

2011

Serial:

Transportation Research Record: Journal of the Transportation Research Board

Issue Number: 2227
Publisher: Transportation Research Board
ISSN: 0361-1981

ISBN:

9780309167505

Media Type:

Print

Features:

Figures (14) ; Photos (7) ; References (16)

Subject Areas:

Highways; Pavements; I23: Properties of Road Surfaces

Files:

TRIS, TRB, ATRI

Created Date:

Feb 17 2011 5:53PM

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