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Coated rotor and slotted pad in good interactions

机译:涂层转子和开槽垫良好的相互作用

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Coating is very important in some applications particularly disc brakes that are most commonly used in the passenger cars. Slotted friction material also has a great effect on the behavior of the disc brake friction. Mixing between the coated rotor and the slotted material is of importance to improve the frictional behavior of the disc brake. Slotted material used in this work is divided into two parts; each part has leading and trailing edge to give the advantages of using two pads in a single braking action. Simulating the kinetic energy of a passenger car to measure the friction force between the disc and pad at different operating conditions have been designed in a test rig. The effect of thermal loading at the sliding interface between the different friction material and the rotor of Floating Calliper Disc Brake (FCDB) has been studied in this work. Initial disc surface temperature was measured and controlled through a high quality technique by using a thermal camera that was fixed at suitable place close to the rotor. The signal from the transducer was amplified and displayed on a digital storage oscilloscope and then fed to a computer for the final analysis. The results showed the different values of coefficient of friction depending on the different operating conditions. The maximum coefficient of friction was 0.58 that was recorded at initial disc surface temperature of 150°C while the braking pressure was 20 bar. The minimum value for the friction coefficient 0.30 was also recorded at initial disc surface temperature of 50°C at rotating speed 500 rpm while the braking pressure was 25 bar.
机译:在某些应用中,涂层非常重要,特别是乘用车最常用的盘式制动器。开槽摩擦材料也对盘式制动摩擦的行为产生了很大的影响。涂覆的转子和开槽材料之间的混合是重视改善盘式制动器的摩擦行为。在本工作中使用的开槽材料分为两部分;每个部分都有前沿和后缘,以提供在单个制动动作中使用两个焊盘的优点。模拟乘用车的动能在试验台上设计了在不同操作条件下测量圆盘和垫之间的摩擦力。在这项工作中,研究了热负荷在不同摩擦材料和浮动点标盘式制动器(FCDB)的转子之间的滑动界面处的效果。通过使用固定在靠近转子的合适位置的热相机来测量初始盘表面温度并通过高质量的技术来控制。来自换能器的信号被放大并显示在数字存储示波器上,然后馈送到计算机以进行最终分析。结果表明,根据不同的操作条件,摩擦系数的不同值。在制动压力为20巴的初始盘表面温度下记录在150°C的初始盘表面温度下,最大摩擦系数为0.58。摩擦系数0.30的最小值也在初始盘表面温度下在50℃的初始盘表面温度下,旋转速度500rpm,而制动压力为25巴。

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