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首页> 外文期刊>International Journal of Automotive Technology >HOT JUDDER SIMULATION OF A VENTILATED DISC AND DESIGN OF AN IMPROVED DISC USING SENSITIVITY ANALYSIS
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HOT JUDDER SIMULATION OF A VENTILATED DISC AND DESIGN OF AN IMPROVED DISC USING SENSITIVITY ANALYSIS

机译:通风盘的热抖动模拟和灵敏度分析设计改进的盘

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摘要

In a disc brake system, thermal expansion of the material is caused by friction energy that is generated by the sliding contact between a disc and pad during braking. This phenomenon, thermo-elastic instability, can lead to hot spots on the disc surface and a hot judder phenomenon. Transient finite element analysis has been used to simulate this phenomenon. Three dimensional finite element models of a disc, pad, and cylinder were created. Each part was connected by a joint. Contact condition was applied to the disc and pad with a friction coefficient (μ) of 0.4. A convective heat transfer coefficient was set as 40 W/m~2K. Using a commercial program SAMCEF, the simulation of the thermo-mechanically coupled system was performed. In order to find the sensitive parameters of brake judder, sensitivity analysis was carried out with consideration for disc design parameters. As a result, the hot spot phenomenon was confirmed and hot judder was predicted. Moreover, the more sensitive parameters of the hot judder phenomenon were presented. Finally, an improved disc model and an analysis technique were verified by comparison to dynamo test results.
机译:在盘式制动器系统中,材料的热膨胀是由制动过程中由盘和衬套之间的滑动接触产生的摩擦能引起的。这种现象(热弹性不稳定)会导致光盘表面出现热点和热颤动现象。瞬态有限元分析已被用来模拟这种现象。创建了圆盘,轴瓦和圆柱的三维有限元模型。每个部分通过关节连接。接触条件以0.4的摩擦系数(μ)施加到制动盘和制动垫。对流传热系数设定为40 W / m〜2K。使用商业程序SAMCEF,对热力耦合系统进行了仿真。为了找到制动颤振的敏感参数,在考虑了盘设计参数的情况下进行了敏感性分析。结果,证实了热点现象并预测了热颤动。此外,还提出了热颤抖现象的更敏感参数。最后,通过与发电机测试结果进行比较,验证了改进的圆盘模型和分析技术。

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