MODERN BRAKING SYSTEMS AND THEIR APPLICATIONS

Authors

  • Sobirov Mamurjon Marufjonovich senior teacher, Andijan state technical institute, Uzbekistan, Andijan,

DOI:

https://doi.org/10.55640/

Keywords:

Modern braking systems, speed, floating, tread, caliper piston, caliper, disc, pad, brake hoses, electronic safety systems, intelligentization.

Abstract

This article will study the braking systems used in modern cars and analyze their development. It will also analyze the indicators that need to be made for the main improvement of car brakes..

References

[1]. Jianqiang Gong, Yaping Luo, Zhaowen Qiu, Xiangdong Wang’s Determination of key components in automobile braking systems based on ABC classification and FMECA, Journal of Traffic and Transportation Engineering (English Edition), 2022; 9(I): 69-77

[2]. Shoaib Munir Mulani, Ashwani Kumar, Haris Naiyer, E Azam Shaikh, Ashish Saurabh, Pravin Kumar Singh, Piyush Chandra Verma A review on recent development and challenges in automotive brake pad-disc system , journal Materials Today Proceedings · July 2022.

[3]. S.P. Jadhav, S.H. Sawant Development of novel friction material for vehicle brake pad application to minimize environmental and health issues, journal Materials Today Proceedings • July 2019.

[4]. Sobirov M.M., Xaydarov M.A. Avtomobillar tormozining ekspluatatsion muammolari, “O‘zbekistonda avtomobil transportini rivojlantirish istiqbollari: Loyihalash, ishlatish va logistika” mavzusida xalqaro ilmiy-texnik anjumani 2024 yil 15-16-noyabr 659-691 betlar

[5]. Q.H. Azizov. “Yo‘l transport hodisalarini tizimli tahlili” o‘quv qo‘llanma Toshkent 2022

y. – 47 b.

[6]. Q.H.Azizov “Harakat xavfsizligini tashkil etish asoslari” ,Toshkent 2009-yil, 49-bet

[7]. Babai,M.Z., Ladhari, T., Lajili, I., 2015. On the inventory performance of multi-criteria classification methods: empirical investigation. International Journal of Production Research 53 (1), 279-290.

[8]. H.A.C. Denier van der Gon, M.E. Gerlofs-Nijland, R. Gehrig, M. Gustafsson, N. Janssen, R.M. Harrison, J. Hulskotte, C. Johansson, M. Jozwicka, M. Keuken, K.

Krijgsheld, L. Ntziachristos, M. Riediker, F.R. Cassee, The policyrelevance of wearemissions fromroad transport, nowand in the future-an internationalworkshop report and consensus statement, J. Air Waste Manag. Assoc. 63 (2) (2013) 136–149, https://doi.org/10.1080/10962247.2012.741055

[9]. ] M. Arman, S. Singhal, P. Chopra, M. Sarkar, A review on material and wear

analysis of automotive Break Pad, Mater. Today Proc. 5 (14) (2018) 28305–28312, https://doi.org/10.1016/j.matpr.2018.10.114

[10]. Kukutschová, V. Roubícˇek, M. Mašlánˇ, D. Jancˇík, V. Slovák, K. Malachová, Z. Pavlícˇková, P. Filip, Wear performance and wear debris of semimetallic automotive brake materials, Wear 268 (1–2) (2010) 86–93, https://doi.org/10.1016/j.wear.2009.06.039

[11]. H. Hagino, M. Oyama, S. Sasaki, Laboratory testing of airborne brake wear particle emissions using a dynamometer system under urban city driving cycles, Atmos. Environ. 131 (2016) 269–278, https://doi.org/10.1016/j. atmosenv.2016.02.014.

[12]. M. Alemani, O. Nosko, I. Metinoz, U. Olofsson, A study on emission of airborne wear particles from car brake friction pairs, SAE Int. J. Mater. Manuf. 9 (1)

(2016) 147–157, https://doi.org/10.4271/2015-01-2665.

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Published

2025-08-31

How to Cite

MODERN BRAKING SYSTEMS AND THEIR APPLICATIONS. (2025). International Journal of Political Sciences and Economics, 4(08), 147-151. https://doi.org/10.55640/

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