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A Method to Predict the Modal Damping in a Braking System Based on the Damping of the Pad in Its Free-Free Condition

机译:一种在无自由条件下基于垫子阻尼的制动系统中模态阻尼的方法

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Damping plays an important role in controlling brake squeal caused by the coupling between the rotor and the pads. Since most of the damping in the system (during brake squeal conditions) is coming from the pads, it becomes important to understand the relationship between the damping of the pad by itself in its free-free condition and that of the system in terms of braking pressure, temperature, and frequency. This relationship will help in understanding the effects of optimizing the damping of the pad, whether the damping comes from the friction material, backing layer, or add-on damping treatments. The purpose of this paper is to show that the modal strain energy method can be used to arrive at such a relationship. Results of measurements made on the pads and rotor in their free-free condition and when assembled in the system under typical operating conditions that cause brake squeal, will be presented as well as the effectiveness of the modal strain energy method in predicting the relationship. This paper will only focus on one of the possible brake squeal mechanisms: the coupling between the pads and the rotor, when they exhibit similar frequencies and wavelength.
机译:阻尼在控制由转子和焊盘之间的联接引起的制动凸起中起重要作用。由于系统中的大部分阻尼(在制动器尖叫状况期间)来自焊盘,因此在其自由的自由状态和制动方面,本身可以自身抑制垫之间的关系变得非常重要压力,温度和频率。这种关系将有助于理解优化垫的阻尼的效果,是否阻尼来自摩擦材料,背衬层或附加阻尼处理。本文的目的是表明,模态应变能量方法可用于到达这种关系。将呈现在可自由状态下的焊盘和转子在焊盘和转子中进行测量结果,并在导致制动尖叫的典型操作条件下,以及模态应变能量方法在预测关系中的有效性。本文仅关注可能的制动尖叫机构之一:当它们表现出类似的频率和波长时,焊盘和转子之间的联接。

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