Journal of Mechanical Engineering, Science, and Innovation
Vol 2, No 2 (2022): (October)

The Effect of Tread Pattern Tires on Hard Compound Coefficient Rolling Resistance

Thatit Widya A.P (Mechanical Engineering Department, Faculty of Engineering, Jember University, Indonesia)
Muh Nurkoyim Kustanto (Mechanical Engineering Department, Faculty of Engineering, Jember University, Indonesia)
Hari Arbiantara B (Mechanical Engineering Department, Faculty of Engineering, Jember University, Indonesia)
Franciscus Xaverius K (Mechanical Engineering Department, Faculty of Engineering, Jember University, Indonesia)
Robertoes Koekoeh K.W (Mechanical Engineering Department, Faculty of Engineering, Jember University, Indonesia)



Article Info

Publish Date
31 Oct 2022

Abstract

Rolling resistance is the resistance of a wheel that will roll or rotate due to friction between the outer surface of the wheel and the track surface. This study aims to determine the effect of tread patterns on the coefficient of rolling resistance. The tires that will be used in this study are hard compounds with a ratio pattern and tread pattern raised by 2 mm with a tire hardness of 79.5 Ha, and using pressure variations at 30 Psi, 40 Psi, and 50 Psi. Coefficient value rolling resistance is 1.39% with a rolling resistance of 8.05 N. These results are produced by a hard compound with a tread pattern of 2 mm at a pressure of 50 Psi. Meanwhile, the rolling is 2.04% with a rolling resistance of 11.82 N. These results are produced by hard compound tires with a pattern at a tire pressure of 30 Psi.Keywords: compound, tread pattern, rolling resistance

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Journal Info

Abbrev

jmesi

Publisher

Subject

Control & Systems Engineering Energy Engineering Mechanical Engineering

Description

Journal of Mechanical Engineering, Science, and Innovation (JMESI) is a peer-reviewed journal in English published two issues per year (in April and October). JMESI dedicated to publishing quality and innovative research in the field of mechanical engineering and science, thereby promoting ...