STUDYING AND ELIMINATING THE SHORTCOMINGS OF THE TORMOZING SYSTEM OF A MODERN LIGHT CAR
DOI:
https://doi.org/10.47390/ts-v3i8y2025No11Keywords:
braking system, friction, traffic safety.Abstract
Currently, a number of large-scale reforms being carried out in our country are bearing fruit. The automotive industry is also entering a new era of development, progress, and renewal. And, of course, meeting consumer demands is an important task in every sphere, whether it be production or service provision, any product or service must have high quality that meets the customer's needs. Also, in a constantly growing, globalizing world, the production of stylish, comfortable, convenient, and multifaceted modern cars for customers is a requirement of the times. The types of cars manufactured in our country are increasing day by day, but there are technical malfunctions in the cars manufactured, and many malfunctions occur during operation. For example, Cobalt, Lacetti cars have some brake system problems that are dangerous to human life. Due to malfunctions in the braking system, several hundred car accidents occur annually. Therefore, through this article, we will thoroughly examine such issues and demonstrate the importance of their resolution.
References
1. T. Gillespie, Fundamentals of Vehicle Dynamics, SAE International, 1992. doi:10.4271/R-114
2. S. R. Guo and Y. Li, "Brake System Design and Performance Analysis for Modern Passenger Vehicles," IEEE Access, vol. 9, pp. 144560-144571, 2021. doi: 10.1109/ACCESS.2021.3122701.
3. Haqqulov Komil Bohodirovich. Connection by traffic stops for students of Namangan Engineering and Construction Institute of Mechanical Technology Institute scientific journal Scientific Journal of Mechanics and Technology Scientific Journal Journal of Mechanics of Technology, 2022.
4. Ilarionov, V.A. Automotive Expertise. / V.A. Ilarionov. - M.: Transport, 1989. - 240 p.
5. V. A. Ilarionov, B. E. Borovskoy, Yu. B. Suvorova, S. A. Yevtyukova, E. R. Domke, V. A. Bekasova, N. M. Kristi and E. A. Kitaygorodsky, Investigation of Automotive Braking Processes, Moscow: Mashinostroyeniye, 2008.
6. V. Yu. Gittis, D. Velikanova, E. V. Mikhailovsky, G. V. Zimeleva, E. G. Odlich, and Yu. 35-42, 2010.
7. R. Bayetta, R. Watts, D. Collins, D. Morris, J. Reimel, and J. Wong, Vehicle Dynamics and Control, New York, NY, USA: Springer, 2008.
8. A. V. Chichinadze and I. V. Kragelsky, Fundamentals of Tribology: Friction and Wear, Moscow: Nauka, 1990.
9. 4. Stetsyuk, L.S. Wheel-to-road adhesion and traffic safety / L.S. Stetsyuk, M.A. Parshin, A.T. Epifansev. - M.: Avtotransizdat, 1963. - 354.
10. Alexandrova M. P, Nikulnikova E. N Fedoseeva V. N. " Braking mechanisms resource assessment of in-factory g wheel of their machine friction on the surface compressed air delivered taking into account " 2021 ."
11. Vashutkin Alexander Sergeyevich "Study of Brake Mechanism Parameters and Ensuring Brake Moment Stability" 2012.