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The Road Particle Effect on Squeal Noise of Disc Braking System

机译:盘制动系统尖端噪声的道路粒子效应

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This experimental work was carried out to examine the effect of road particle on squeal noise exerted at different load and sliding speed. The test was performed under dry sliding condition by utilizing brake test rig and commercial brake pad and discs. Squeal measurement was taken based on frequency, sound pressure level (SPL) value, vibration and brake torque measurement. The output signal from microphone and accelerometer was processed by Fast Fourier Transform analyzer to synchronize value SPL and vibration in the power spectrum graph. Simultaneous increase at the same value of frequency and SPL values showed the squeal occurrence for value above 70dBa and 1000Hz respectively. Result for test with road particle showed number of squeal tends to increase compared to test without road particle. SPL also showed high pitch of noise on squeal with road particle presence. Brake torque significantly increased with increasing brake line pressure and exaggerated with road particle. Higher brake torque resulted in higher coefficient of friction and showed high squeal generation.
机译:进行了这种实验工作,以检查道路颗粒对不同负载和滑动速度施加的尖端噪声的影响。通过利用制动试验台和商业制动垫和盘在干滑动条件下进行测试。基于频率,声压水平(SPL)值,振动和制动扭矩测量来采用尖端测量。通过快速傅里叶变换分析器处理来自麦克风和加速度计的输出信号,以在功率谱图中同步值SPL和振动。在相同的频率和SPL值的同时增加,分别为70dBA和100​​0Hz的值尖叫。与没有道路颗粒的测试相比,使用道路颗粒测试的结果显示出尖叫率趋于增加。 SPL还显示出高度的噪音,尖叫声粒子存在。随着制动管线压力的增加并夸大道路颗粒,制动扭矩显着增加。更高的制动扭矩导致摩擦系数较高,并且显示出高尖叫的尖峰。

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