World Journal of Engineering and Technology

Volume 4, Issue 2 (May 2016)

ISSN Print: 2331-4222   ISSN Online: 2331-4249

Google-based Impact Factor: 0.80  Citations  

Prediction of Burst Pressure of a Radial Truck Tire Using Finite Element Analysis

HTML  XML Download Download as PDF (Size: 2662KB)  PP. 228-237  
DOI: 10.4236/wjet.2016.42022    5,610 Downloads   8,326 Views  Citations
Author(s)

ABSTRACT

This paper is concerned with the numerical prediction of the burst pressure of a radial truck tire. Even though relatively rare, the tire fracture or failure brings up a big accident. Especially, the tire burst or rupture is a rapid loss of inflation pressure of a truck and bus tire leading to an explosion. The tire burst pressure, under this extreme loading condition, can be predicted by identifying the pressure at which the cord breaking force of the composite materials is attained. Recently, the use of finite element analysis in tire optimal design has become widely popular. In order to determine the burst pressure of a radial truck tire, an axisymmetric finite element model has been developed using a commercial finite element code with rebar element. The numerical result shows that the bead wire among the various layers modeled the rebar element breaks off first in the radial truck tire. The finite element modeling with the rebar element on the bead wire of a radial truck tire is able to well predict the tire burst pressure identifying the pressure at which the breaking force of steel bead wires is reached. The model predictions of tire burst pressure should be correlated with test data, in which case the tire is hydro-tested to destruction. The effect of the design change with the different bead structure on the tire burst pressure is discussed.

Share and Cite:

Jeong, K. (2016) Prediction of Burst Pressure of a Radial Truck Tire Using Finite Element Analysis. World Journal of Engineering and Technology, 4, 228-237. doi: 10.4236/wjet.2016.42022.

Cited by

[1] Simulation of Static Tyre–Pavement Interaction Using Two FE Models of Different Complexity
Applied Sciences, 2022
[2] Simulation of a Truck Tyre Using a Viscoplastic Constitutive Rubber Model
The IAVSD International …, 2022
[3] Analysis of Cord Stress During Tire Dynamic Longitudinal Slip
2022
[4] A review on vehicle tyre aerodynamics
2021
[5] Stress distributions in the textures of prefabricated pavement surface created with the assistance of 3D printing technology
International Journal of …, 2021
[6] A gumiabroncs és az útpályaszerkezet érintkezési kapcsolatának elemzése végeselem módszerrel
2020
[7] Experimental and theoretical analysis of high-speed radial tire standing waves
2020
[8] Simulation-Based Methodology for Determining the Dynamic Strength of Tire Inflation Restraining Devices
2020
[9] Towards fast modelling of the tire-pavement contact
2019
[10] Global-Local Finite Element Analysis for Predicting Separation in Cord-Rubber Composites of Radial Truck Tires
2019
[11] 子午线轮胎胎圈裂纹的有限元分析
2019
[12] Stability Control of Vehicles during Tyre Burst with Auto Expanding Rims
2018
[13] Investigation on structural behavior of ring-stiffened composite offshore rubber hose under internal pressure
Applied Ocean Research, 2018
[14] Bearing Capacity of Roads, Railways and Airfields: Proceedings of the 10th International Conference on the Bearing Capacity of Roads, Railways and …
2017
[15] Geotechnical assessment strategy for bridge maintenance–case study.
2017
[16] 3D modeling and measuring of tire-pavement contact pressure
2017

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.