Modeling and Simulation of Thermal-mechanical Characteristics of the Packaging of Tire Pressure Monitoring System(TPMS)

Xiaojun Wang, Zhiguo Wu, Sheng Liu
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引用次数: 6

Abstract

Correct tire pressure is a critical factor in the safe operation and performance of a motor vehicle. Over inflated tires often result in unnecessary tire wear, reduced gas mileage, and less than optimal vehicle performance. Under inflated tires typically result in increased tire wear, decreased vehicle performance, and compromise the ability of the tires to maintain a safe interface with the road. A tire pressure monitoring system (TPMS) is designed to monitor air pressure and temperature in the tires of a motor vehicle, and that generates a signal indicative of the tire pressure and temperature in each of the tires to increase the vehicle performance and safety. A TPMS mounted to tire rings under tire rolling conditions is presented with a plastic packaging. In order to increase the reliability of the monitoring system, one type of filling glue is used to encapsulate the space existing in the monitoring system. The modeling and numerical simulation for the TPMS with various rolling conditions is conducted to investigate the thermo-mechanical characteristics of the packaging. In our design, the focus is on the selection of the filling glue; also the temperature effect on the materials' mechanical properties is included in the study. A reasonable model is obtained by appropriate simplification of geometry and material properties of the needed components in the TPMS. Stresses and deformation at different temperatures are predicted and results have shown the stresses in our design are low enough for TMPS to operate safely under harsh road conditions
胎压监测系统(TPMS)包装热力学特性建模与仿真
正确的胎压是机动车安全运行和性能的关键因素。过度充气的轮胎经常导致不必要的轮胎磨损,减少汽油里程,并低于最佳车辆性能。充气不足的轮胎通常会导致轮胎磨损增加,车辆性能下降,并损害轮胎与道路保持安全界面的能力。胎压监测系统(TPMS)用于监测汽车轮胎内的气压和温度,并产生指示每个轮胎内的胎压和温度的信号,以提高车辆的性能和安全性。在轮胎滚动条件下,TPMS安装在轮胎环上,采用塑料包装。为了增加监控系统的可靠性,采用一种填充胶对监控系统中存在的空间进行封装。对不同轧制条件下的TPMS进行了建模和数值模拟,研究了包装材料的热力学特性。在我们的设计中,重点是填充胶的选择;研究了温度对材料力学性能的影响。通过对TPMS中所需部件的几何形状和材料特性进行适当的简化,得到了合理的模型。预测了不同温度下的应力和变形,结果表明我们设计的应力足够低,可以使TMPS在恶劣的道路条件下安全运行
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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