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Numerical Analysis of the Reliability of Tire Pressure Monitoring System Installed on Wheel Hub with Glue

机译:轮毂涂胶胎压监测系统可靠性的数值分析。

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摘要

More and more research has been done on tire pressure monitoring system (TPMS) with the rapid development of automobile industry and increasing public attention to automobile safety. It is generally known that suitable tire pressure is a critical factor in the safe operation, tire wear, gas mileage and performance of a motor vehicle. It is also important to reduce maintenance and logistic cost of a fleet for transportation. In order to help maintaining normal tire pressure, TPMS is designed to monitor air pressure and temperature in the tires of a motor vehicle in real time. The driver is alerted immediately by TPMS when the tire''s pressure or temperature is abnormal, so the flat tire accident could be avoided and the driver and passengers are safe. But how to install TPMS on wheel hub, especially with different brands, is a significant problem. In order to reduce the cost of TPMS and simplify the installation process of TPMS, a new method to install TPMS with glue has been put forward. A TPMS installed to wheel hub under tire rolling conditions is supported with a plastic packaging. In order to work well under harsh conditions with high temperature and fast rolling velocity, one type of filling glue is used to encapsulate the space existing in the monitoring system to decrease thermal stress. A reasonable model is established by appropriately simplifying the geometry and material properties of some necessary components in the TPMS and the model''s boundary conditions. Stress distribution at different temperatures and velocity are investigated and results have shown the stresses are low enough for TPMS to operate safely
机译:随着汽车工业的快速发展和公众对汽车安全的关注,对轮胎压力监测系统(TPMS)的研究越来越多。众所周知,合适的轮胎压力是安全运行,轮胎磨损,汽油行驶里程和机动车辆性能的关键因素。减少运输车队的维护和后勤成本也很重要。为了帮助维持正常的轮胎压力,TPMS被设计为实时监测机动车辆轮胎中的气压和温度。当轮胎的压力或温度异常时,TPMS会立即向驾驶员发出警报,从而可以避免发生flat胎事故,并确保驾驶员和乘客安全。但是如何在轮毂上安装TPMS,尤其是在不同品牌的轮毂上,是一个重大问题。为了降低TPMS的成本并简化TPMS的安装过程,提出了一种用胶水安装TPMS的新方法。在轮胎滚动条件下安装到轮毂的TPMS用塑料包装支撑。为了在高温和高轧制速度的苛刻条件下正常工作,一种填充胶被用于封装监控系统中存在的空间以降低热应力。通过适当简化TPMS中某些必要组件的几何形状和材料属性以及模型的边界条件,可以建立一个合理的模型。研究了不同温度和速度下的应力分布,结果表明应力足够低,TPMS可以安全运行

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