Оцінка ресурсу фрикційних поверхонь гальмівних дискових механізмів за показниками відносного зношення для легкових автомобілів
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Modern development of vehicle designs requires paying great attention to braking properties, which will depend on the design
parameters of the brake mechanisms. The article discusses a scheme where a disc brake is installed on the front wheels, and
drum brakes are installed on the rear wheels. From the diagram of the distribution of forces that act on the vehicle during braking,
the maximum friction forces for the front and rear axles were determined. A general formula was obtained for the braking distance
of a vehicle, during which wear of the brake mechanism occurs. We used the results of the well-known theory of friction and wear
by I.V. Kragelsky. The mathematical wear model was built for each friction pair. The wear model takes into account the design
parameters of the vehicle, the wear resistance coefficient of materials, the initial braking speed of the vehicle, the mileage and
braking distance. The main design parameters of the brake system are the friction radius, the kinematic rolling radius of the wheel,
and the amount of drive pressure.
To assess the service life of the brake mechanism, it was proposed to use such an indicator as the relative wear of associated
parts. A formula has been obtained for calculating this indicator based on changes in geometric parameters and operating modes
of the brake mechanism under operating conditions. A forecast was made of the service life of the brake mechanisms of the front
and rear axles of passenger cars, which is proposed to be carried out according to the indicator of relative wear of friction surfaces.
Graphic dependences of the distribution of relative wear of the friction surfaces of brake mechanisms for Chevrolet Aveo and
Forza cars were constructed. It was shown using the example of Chevrolet Aveo passenger cars that the relative wear of the front
axle brakes is maximum and it varies from 22.5 to 26.1%, and for the rear axle this figure varies from 21.0 to 22.5%. The service
life of the brake disc is 4.44 times greater than the service life of the friction lining for the Chevrolet Aveo. For the Forza car this
figure is 4.76. The results of the work can be used to estimate the residual life of brake mechanisms, taking into account operating
conditions.
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Назаров О. І., Кривошапов С. І., Сергієнко М. Є., Кашканов В. А., Семченко В. В., Кулай В. П. Оцінка ресурсу фрикційних поверхонь гальмівних дискових механізмів за показниками відносного зношення для легкових автомобілів. Вісник машинобудування та транспорту. 2023. № 2. С. 120-126.
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Список використаної літератури (1)
- Braking force dynamic coordinated control for hybrid electric vehicles / M. Shang, L. Chu, J. Guo, Y. Fang et al. Proceedings of the 2nd IEEE International Conference on Advanced Computer Control (ICACC '10). Shenyang, China, 2010. Vol. 4. Р. 411–416.