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列车制动摩擦热预测 被引量:3
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作者 宫内瞳留 薛亮 《电力机车与城轨车辆》 2005年第2期42-44,共3页
在制动负荷较高的情况下,制动盘等的摩擦表面就会产生热斑和热裂等热现象。要解决这一问题,需对制动摩擦热做出精确的预测。文章使用二维和三维有限元模型,在小型摩擦试验机上对制动盘和制动块的摩擦热进行了预测和导热分析。结果表明,... 在制动负荷较高的情况下,制动盘等的摩擦表面就会产生热斑和热裂等热现象。要解决这一问题,需对制动摩擦热做出精确的预测。文章使用二维和三维有限元模型,在小型摩擦试验机上对制动盘和制动块的摩擦热进行了预测和导热分析。结果表明,用有限元法进行导热分析能够预测制动盘和制动块的摩擦热。 展开更多
关键词 制动摩擦热 有限元模型 温度分布 分析
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Tribological properties and thermal-stress analysis of C/C-SiC composites during braking 被引量:10
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作者 Guan-yi CHEN Zhuan LI +5 位作者 Peng XIAO Xi OUYANG Wen-jie MA Peng-tao LI Jin-wei LI Yang LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第1期123-131,共9页
The tribological properties and thermal-stress behaviors of C/C-SiC composites during braking were investigated aiming to simulate braking tests of high-speed trains. The temperature and structural fields of C/C-SiC c... The tribological properties and thermal-stress behaviors of C/C-SiC composites during braking were investigated aiming to simulate braking tests of high-speed trains. The temperature and structural fields of C/C-SiC composites during braking were fully coupled and simulated with ANSYS software. The results of tribological tests indicated that the C/C-SiC composites showed excellent static friction coefficient (0.68) and dynamic friction coefficient (average value of 0.36). The highest temperature on friction surface was 445℃. The simulated temperature field showed that the highest temperature which appeared on the friction surface during braking was about 463℃. Analysis regarding thermal-stress field showed that the highest thermal-stress on friction surface was 11.5 MPa. The temperature and thermal-stress distributions on friction surface during braking showed the same tendency. 展开更多
关键词 C/C-SiC composites BRAKE tribological behavior temperature field thermal-stress field
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