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A Cyclosymmetric Beam Model and a Spring-Supported Annular Plate Model for Automotive Disc Brake Vibration

机译:汽车盘式制动器振动的线对称梁模型和弹簧支撑环形板模型

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This paper discusses two simplified analytical models for automotive disc brake vibration which can be used to complement more complex finite element methods. The first model approximates the brake disc as a simple beam structure with cyclosymmetric boundary conditions. Since the beam model is a one-dimensional approach, modelling of the inner boundary condition of the brake disc, at the interface of the brake rotor and the central hat, is not possible. The second model, which is established based upon Kirchhoff’s thin plate theory, is presented in this paper in order to incorporate the vibrational deformation at the hat-disc interface. The mode shapes, natural frequencies, and forced response of a static disc are calculated using different inner boundary conditions. Among others, the spring-supported boundary condition is proposed and applied in this paper to make appropriate predictions. The predicted results are compared with measurements of the vibration characteristics of a solid brake disc mounted upon a static test rig. These comparisons demonstrate that the most appropriate model for the inner boundary condition of the measured brake disc is the proposed spring-supported inner boundary condition.
机译:本文讨论了两种用于汽车盘式制动器振动的简化分析模型,这些模型可用于补充更复杂的有限元方法。第一个模型将制动盘近似为具有圈对称边界条件的简单梁结构。由于梁模型是一维方法,因此无法对制动盘的内部边界条件进行建模,该内部边界条件位于制动转子和中心罩的界面处。本文介绍了第二个模型,该模型是基于Kirchhoff的薄板理论建立的,目的是考虑帽子-光盘界面处的振动变形。使用不同的内部边界条件来计算静态磁盘的模式形状,固有频率和强制响应。其中,提出了弹簧支撑边界条件,并将其应用到本文中以进行适当的预测。将预测结果与安装在静态测试台上的固体制动盘振动特性的测量结果进行比较。这些比较表明,对于所测量的制动盘的内部边界条件最合适的模型是建议的弹簧支撑的内部边界条件。

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