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A Study on the Bench Test of Friction-Induced Hot Spots in Disc Brake

机译:摩擦诱导的圆盘制动器致摩擦斑的台凳试验研究

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During light to moderate braking at high speed, the local high temperature phenomenon can be observed on the brake disc surfaces, known as hot spots. The occurrence of hot spots will lead to negative effects such as brake performance fade, thermal judder and local wear, which seriously affect the performance of vehicle NVH. In this paper, based on the bench test of a ventilated disc brake, the basic characteristics of hot spots is obtained and the evolution process of temperature field and disc deformation is analyzed in detail. In temperature field, hot bands appear first and grow, migrate from inner and outer radius to the middle, with the growing temperature fluctuation and finally hot spots appear in the middle radius of the brake disc. The stable SRO waviness forms much earlier than the temperature fluctuation. In the stop brake studied in this paper, the SRO waviness stabilizes in main 7 order state which is lower than the final hot spot order. As the braking continuing, other high component grows and finally SRO stays in the main 9 order state which corresponds to the number of final hot spots.
机译:在高速光以中等制动期间,可以在制动盘表面上观察到局部高温现象,称为热点。热点的发生将导致负面影响,例如制动性能褪色,热训练和局部磨损,这严重影响了车辆NVH的性能。本文基于通风盘式制动器的台凳试验,获得了热点的基本特性,详细分析了温度场和光盘变形的进化过程。在温度场中,热带首先出现并生长,从内半径和外半径迁移到中间,随着温度的温度波动,最后热点出现在制动盘的中半径。稳定的SRO波纹比温度波动更早地形成。在本文研究的停止制动器中,SRO波纹稳定在优于最终热点令的主要7个顺序状态下。作为制动继续,其他高分组件的增长,最后的SRO保持在主9订单状态,该状态对应于最终热点的数量。

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