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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >A study of thermal and mechanical behaviour for the optimal design of automotive disc brakes
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A study of thermal and mechanical behaviour for the optimal design of automotive disc brakes

机译:汽车盘式制动器最佳设计的热力学性能研究

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摘要

The thermal distortion induced by thermoelastic instability (TEI) results in hot spots on the surface of the brake disc. This can incur low-frequency vibration known as judder. In pad-induced squeal noise, mode coupling occurs owing to the variation in the friction coefficient between the disc and pad, inducing high-frequency noise. Through a coupled analysis of hot spots and squeal phenomena, an optimum disc and pad design can be designed for higher thermal and mechanical performance. In this study, numerical and experimental analyses are performed in accordance with disc thickness, pressurization type of caliper, and lining arc length, considering thermal and mechanical instability simultaneously. Thermal deformation and pressure distribution are calculated using a finite element analysis (FEA). For evaluating TEI performance, experiments are performed using a chassis dynamometer and a high-speed infrared camera, and the results are correlated with FEA results. A complex eigenvalue analysis is conducted to evaluate mechanical instability using an FEA. Modal testing and simulations are conducted to correlate a real model and an FE model, and the corrected simulation results are applied for a complex eigenvalue problem to analyse coupled modes according to rotor and pad shapes. The results on disc brake performances considering the disc and pad design are discussed in terms of hot spots and squeal problems. [PUBLICATION ABSTRACT]
机译:由热弹性不稳定性(TEI)引起的热变形会在制动盘表面上产生热点。这会引起低频振动,称为颤动。在鼓垫引起的尖叫声中,由于磁盘和鼓垫之间的摩擦系数变化而导致模式耦合,从而产生高频噪声。通过对热点和尖叫现象的耦合分析,可以设计出最佳的磁盘和刹车垫设计,以实现更高的热性能和机械性能。在这项研究中,数值分析和实验分析是根据圆盘厚度,卡钳的加压类型和衬里电弧长度进行的,同时考虑了热和机械的不稳定性。使用有限元分析(FEA)计算热变形和压力分布。为了评估TEI性能,使用底盘测功机和高速红外摄像头进行了实验,并将结果与​​FEA结果相关联。使用FEA进行了复杂的特征值分析以评估机械不稳定性。进行模态测试和仿真以关联真实模型和有限元模型,并将校正后的仿真结果应用于复杂的特征值问题,以根据转子和轴瓦的形状分析耦合模式。考虑到热点和尖叫问题,讨论了考虑了盘和垫设计的盘式制动器性能结果。 [出版物摘要]

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