1. 苏州大学轨道交通学院
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吴志豪, 吴兵. 地铁列车轴装制动盘热力耦合仿真分析[J]. 机械强度, 2023,(1):190-197.
WU ZhiHao, WU Bing. THERMAL-MECHANICAL COUPLING SIMULATION ANALYSIS OF AXLE-MOUNTED BRAKE DISC OF THE SUBWAY TRAIN (MT)[J]. Journal of Mechanical Strength , 2023,(1):190-197.
吴志豪, 吴兵. 地铁列车轴装制动盘热力耦合仿真分析[J]. 机械强度, 2023,(1):190-197. DOI: 10.16579/j.issn.1001.9669.2023.01.024.
WU ZhiHao, WU Bing. THERMAL-MECHANICAL COUPLING SIMULATION ANALYSIS OF AXLE-MOUNTED BRAKE DISC OF THE SUBWAY TRAIN (MT)[J]. Journal of Mechanical Strength , 2023,(1):190-197. DOI: 10.16579/j.issn.1001.9669.2023.01.024.
电制动失效时的摩擦制动热负荷引起的制动盘热疲劳损伤是影响列车运行安全的重要因素。建立地铁列车轴装制动盘摩擦制动三维有限元模型,调查了制动盘在一次常用制动、一次紧急制动两种制动工况时的热-力耦合情况,获得制动盘在两种制动方式下的温度场和应力场。仿真结果表明,不同工况下制动盘面的温度分布具有相似规律,即在制动初期,盘面温度迅速上升并很快达到峰值点166.81℃和151.5℃,随后盘面温度缓慢下降。应力场初始以机械应力为主,随着制动温度的上升,热应力成为主要影响因素。应力场与温度场分布相似,但应力峰值延后于温度峰值出现。热应力在制动中会引起材料损伤积累,导致制动盘疲劳开裂。
The thermal fatigue damage of the brake disc caused by the thermal load of the friction brake when the electric brake fails is an important factor for the safety of train operation. A three-dimensional finite element model of the friction brake of the axle-mounted brake disc of the subway train was developed. The thermal-mechanical coupling of the brake disc in service brake and one emergency brake was investigated, and the temperature field and stress field of the brake disc under the two braking modes were obtained. Results show that the temperature distributions of the brake disc surface have similarities under different working conditions. In the beginning of braking, the temperature on the disc surface rises rapidly and quickly reaches the peak points of 166.81℃ and 151.5℃. Then the disc surface temperature decreases slowly. The initial stress field is dominated by mechanical stress. With the increase of braking temperature, thermal stress becomes the main influencing factor. The stress field has the similar distribution with the temperature field, but the stress peak appears later than the temperature peak. The thermal stress will cause the accumulation of material damage in the braking process which leads to the fatigue cracking of the brake disc.
制动盘温度场应力场热-力耦合
Brake discTemperature fieldStress fieldThermal-mechanical coupling
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