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SiC3D/Al复合材料高速列车制动盘紧急制动热流耦合有限元模拟 被引量:3
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作者 喻亮 周立智 姜艳丽 《热加工工艺》 北大核心 2019年第12期75-79,共5页
建立了带有散热筋和通风槽的具有三维网络碳化硅骨架增强铝基复合材料(SiC3D/Al)摩擦层的高速列车轴装制动盘温度场和流场计算模型。用温度-流场顺序耦合法对紧急制动初速380 km/h的高速列车制动盘进行热流分析,研究制动盘的瞬态温度场... 建立了带有散热筋和通风槽的具有三维网络碳化硅骨架增强铝基复合材料(SiC3D/Al)摩擦层的高速列车轴装制动盘温度场和流场计算模型。用温度-流场顺序耦合法对紧急制动初速380 km/h的高速列车制动盘进行热流分析,研究制动盘的瞬态温度场变化规律。结果表明:考虑气流散热时,SiC3D/Al复合材料制动盘能迅速将摩擦热传递到整个盘体,摩擦面最高温度527℃,摩擦表面温度场均匀,轴向温度梯度较小。制动盘的板状散热筋可增加制动盘的刚度,减少摩擦面翘曲,减少盘内气体紊流,对制动盘气流具有导向作用。通风槽可排除磨屑,降低摩擦面温度,保证制动盘有较高的摩擦力和稳定的摩擦系数。模拟计算值与全尺寸台架实验数据一致。 展开更多
关键词 sic3d/al复合材料 制动盘 高速列车 热流耦合
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Fabrication, microstructure, friction and wear properties of SiC3D/Al brake disc-graphite/Si C pad tribo-couple for high-speed train 被引量:5
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作者 Lan JIANG Yan-li JIANG +4 位作者 Liang YU Hong-liang YANG Zi-shen LI You-dong DING Gao-feng FU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第9期1889-1902,共14页
The friction and wear properties of interpenetrating phase composites(IPC) SiC3D/Al sliding against graphite/SiC(G/SiC) composites were investigated using a sub-scale brake dynamometer. The testing conditions included... The friction and wear properties of interpenetrating phase composites(IPC) SiC3D/Al sliding against graphite/SiC(G/SiC) composites were investigated using a sub-scale brake dynamometer. The testing conditions included a braking pressure of 1.25 MPa and an initial braking speed(IBS) of 200-350 km/h in a braking process of high-speed train according to the scale-conversion rules. The tribo-couple materials were characterized using scanning electron microscopy(SEM), X-ray diffractometry(XRD), and energy-dispersive X-ray spectrometry(EDS). It is found that the matching tribo-couple features low friction surface temperature, reliable friction factor, and high durability. The continuous lubricating mechanically-mixed layer(MML) forms gradually on the worn surfaces of ring in the friction process. The MML is heterogeneous, which greatly controls wear rate and coefficient of friction(COF) of the composites. The wear mechanism of SiC3D/Al is typically abrasive wear at an IBS of 200-300 km/h. When the IBS increases to 350 km/h, oxidation wear and delamination are observed. The friction behavior of the tribo-couple predicted using Solidwork simulation software agrees well with the experimental results. The tribo-couple meets the requirement of emergency braking of high-speed train. 展开更多
关键词 sic3d/al graphite/sic tribo-couple WEAR MICROSTRUCTURE sub-scale brake test
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