Optimization of Temperature Measurement on the Bus Drum Brake as a Basis for Developing Brake Fault Signals

R. Siregar, M. Adhitya, D. Sumarsono, N. Nazaruddin, G. Heryana, S. Prasetya, F. Zainuri
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Abstract

Brake failure is always possible due to several factors that are difficult to control, such as a slight leak in the brake hose due to an impact or a rat bite. In the latest research, the development of a brake performance detection tool has been started, but how to detect a brake temperature more efficiently on the brakes of large vehicles has not been specified. Given the significant impact of losses due to brake failure and accidents that are still occurring, this research plays an important role. It must be completed immediately so that accident cases can be reduced. The object of this research is where the position of the maximum brake temperature occurs? How to measure brake temperature is more practical? What sensor is optimal in detecting a brake temperature? The research method is carried out in a systematic stage that ends with an experimental method. This study indicates that the maximum temperature is relative to the entire friction area between the canvas and the drum brake. The most efficient sensor placement is in the hole in the drum brake cover so that installation is more practical and the brakes are not disturbed by the sensor’s presence. The optimal sensor is a thermocouple sensor because it is more stable to vibrations and more resistant to mud disturbances than infrared sensors. When using a thermocouple sensor, the temperature detection results must be corrected. The correction factor can be made with the equation y=10.3670+1.3205x–0.0003x2, where y is the actual temperature displayed, and x is the input temperature from the thermocouple sensor’s initial detection. Accurate brake temperature detection results will be developed as a signal for detecting brake faults in real-time to avoid brake failure. Finally, the safety of public transportation can be improved
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客车鼓式制动器温度测量优化作为制动故障信号提取的依据
由于几个难以控制的因素,例如由于撞击或老鼠咬伤导致制动软管轻微泄漏,制动故障总是可能发生的。在最新的研究中,已经启动了制动性能检测工具的开发,但如何更有效地检测大型车辆制动器的制动温度尚未明确。鉴于由于刹车失灵和事故仍在发生而造成的重大损失,本研究具有重要意义。它必须立即完成,以减少事故的发生。本研究的对象是最大制动温度发生的位置在哪里?如何测量刹车温度更实用?什么传感器在检测刹车温度时是最佳的?研究方法是在系统阶段进行的,最后以实验方法结束。该研究表明,最高温度与帆布和鼓式制动器之间的整个摩擦面积有关。最有效的传感器放置在鼓式刹车盖的孔中,这样安装更实用,刹车不会受到传感器存在的干扰。最理想的传感器是热电偶传感器,因为它比红外传感器对振动更稳定,对泥浆干扰的抵抗力更强。当使用热电偶传感器时,必须对温度检测结果进行校正。修正系数可以用公式y=10.3670+ 1.3205x-0.0003x2表示,其中y为实际显示的温度,x为热电偶传感器初始检测的输入温度。将准确的制动温度检测结果作为实时检测制动故障的信号,避免制动故障的发生。最后,公共交通的安全性可以得到提高
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