Studying the load of composite brake pads under high-temperature impact from the rolling surface of wheels

Q3 Engineering
S. Panchenko, J. Gerlici, G. Vatulia, A. Lovska, V. Ravlyuk, J. Harusinec
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引用次数: 1

Abstract

The object of the research is the processes of thermal stress, perception and redistribution of loads by the brake composite pad during braking of the car in operation. In the current conditions, wedge-dual wear of composite brake pads is observed in the braking systems of freight cars, the feature of which is the deterioration of the braking efficiency of freight trains. With this type of wear, both an increase in the load on the brake pad and an "underuse" of the amount of pressure on it can occur. A comprehensive thermal calculation was carried out for composite brake pads with uniform and wedge-dual wear. The results of the calculation showed that the amount of pressure on an abnormally worn pad is 23.3 % less than that acting on a pad with nominal values. It has been proven that the change in the pressure force on the composite pad with different values of the wear parameters during braking leads to a change in the braking force that occurs between the wheel and the rail during braking. The calculation of the strength of the composite brake pad with wedge-dual wear was carried out. The obtained results will make it possible to develop measures to modernize the elements of the brake lever transmission of freight cars. The field of practical use of the obtained results is car-building enterprises. The conditions for the practical use of the results are the brake lever transmissions of carriages of cars with a gauge of 1520 mm. The conducted studies prove the negative impact of wedge-dual wear not only on braking efficiency, but also on the strength of brake pads. This makes it necessary to create measures aimed at its elimination, which will contribute to increasing the level of train traffic safety and significantly reducing the operational costs of maintaining freight cars
研究了复合材料刹车片在车轮滚动面高温冲击下的载荷
研究了汽车制动过程中制动复合材料对热应力、载荷感知和重分配的过程。在目前的条件下,复合材料刹车片在货车制动系统中存在楔形双磨损现象,其特征是货运列车的制动效率下降。由于这种类型的磨损,刹车片上的负荷增加和压力的“使用不足”都可能发生。对均匀磨损和楔形双磨损复合材料刹车片进行了综合热计算。计算结果表明,作用在异常磨损垫片上的压力比作用在标称值垫片上的压力小23.3%。研究表明,不同磨损参数值的复合垫块在制动过程中压力的变化会导致制动过程中轮轨间制动力的变化。对楔形双磨损复合材料刹车片进行了强度计算。所得结果将为制定使货车制动杆传动元件现代化的措施提供可能。实际应用所得成果的领域是汽车制造企业。实际应用结果的条件是1520mm规格的汽车车厢的制动杆传动。研究表明,双楔磨损不仅对制动效率有负面影响,而且对刹车片的强度也有负面影响。因此,有必要制定旨在消除这种现象的措施,这将有助于提高火车交通安全水平,并大大减少维护货车的业务费用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
EUREKA: Physics and Engineering
EUREKA: Physics and Engineering Engineering-Engineering (all)
CiteScore
1.90
自引率
0.00%
发文量
78
审稿时长
12 weeks
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