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首页> 外文期刊>International Journal of Automotive Technology >Cooling Efficiency According to Shape Changes to the Straight Ventilation Hole in Carbon-Ceramic Brake Disks
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Cooling Efficiency According to Shape Changes to the Straight Ventilation Hole in Carbon-Ceramic Brake Disks

机译:根据碳陶瓷制动盘中的直通风孔的形状变化,冷却效率

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摘要

In this study, in order to examine the cooling efficiency of a carbon-ceramic brake disk, the temperature distribution of the disk, depending on the AMS (Auto-Motor-Sport) Fade mode, was analyzed using a numerical method. Two brake disks with different straight ventilation hole shapes were considered. The ventilation holes configuration was changed from base models in order to find a higher cooling efficiency disk design. In the Model A disk, the mean temperatures of the mid-plane and the entire disk, at the AMS Fade mode end time decreased 1.9 oC and 3 oC, hole length respectively. This was done by decreasing the length of the a2 hole from 94 mm to 59 mm. When a(2) hole length was increased from 94 mm to 128 mm, the mean temperature of the entire disk and the disk mid-plane increased 3.7 oC and 16.2 oC, respectively. This was due to the increased affined air stagnation in the disk. In the Model B disk, after removing stagnation region of the b(2) hole, the hole diameter expanded from 13 mm to 17.6 mm. As a result, the mean temperature of the entre disk and the mid-plane decreased 2.8 oC and 18.7 oC, respectively, (compared to the base model). As a result, increasing the surface area of the ventilation holes gave a higher cooling efficiency.
机译:在该研究中,为了检查碳陶瓷制动盘的冷却效率,使用数值方法分析根据AMS(自动电动机 - 运动)褪色模式的盘的温度分布。考虑了具有不同直通风孔形状的两个制动磁盘。通风孔配置从基础模型改变,以找到更高的冷却效率盘设计。在模型中,中间平面和整个盘的平均温度,在AMS褪色模式结束时间下降1.9 oc和3 oc,孔长度。这是通过将A2孔的长度从94mm降低到59mm来完成。当(2)孔长度从94mm增加到128毫米时,整个盘的平均温度和磁盘中间平面分别增加3.7℃和16.2℃。这是由于磁盘中的带电空气停滞增加。在模型B盘中,在去除B(2)孔的停滞区域之后,孔直径膨胀从13mm至17.6mm。结果,企业盘的平均温度和中平面的平均温度分别减少了2.8℃和18.7℃(与基础模型相比)。结果,增加通风孔的表面积具有更高的冷却效率。

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