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Effect of the braking pressure variation on disc brake squeal of a railway vehicle: Test measurement and finite element analysis

机译:制动压力变化对铁路车辆盘式尖叫的影响:测试测量和有限元分析

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摘要

In order to suppress or eliminate brake squeal of light rail trains, a field test measurement and a finite element analysis of disc brake squeal were carried out. In the field test measurement, the braking air pressure, speed of the axle, vibration accelerations of a backplate were measured. The brake squeal test was carried out in five brake conditions frequently used. Test results show that disc brake squeal generally occurred in the maximum common compound brake condition. The occurrence propensity of brake squeal depends on the variation of braking air pressure against time. A finite element model of the disc brake system was established, in which the friction coupling between the pad and disc was taken into account. A transient dynamics of the model was also studied using the measured braking air pressure data as an input of the model. The squeal frequency measured in the field test is in a good agreement with the finite element prediction result.
机译:为了抑制或消除轻轨列车的制动尖峰,进行现场测试测量和盘式制动尖峰的有限元分析。 在现场测试测量中,测量制动空气压力,轴的速度,测量背板的振动加速度。 制动尖端试验在经常使用的五种制动条件下进行。 测试结果表明,盘式制动尖峰通常发生在最大普通的复合制动条件下。 制动尖肌的发生倾向取决于制动空气压力的变化。 建立了盘式制动系统的有限元模型,其中考虑了垫和盘之间的摩擦耦合。 还使用测量的制动空气压力数据作为模型的输入研究了模型的瞬态动力学。 在现场测试中测量的尖叫频率与有限元预测结果良好。

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