Irkutsk, Irkutsk region, Russian Federation
Russian Federation
Irkutsk, Russian Federation
Irkutsk, Irkutsk region, Russian Federation
Objective: to perform a comparative analysis of the length of the braking distance of a freight train with a single-pipe and two-pipe brake system supply. Based on the laboratory studies carried out, to identify the effect of the speed and amount of filling of brake cylinders on the calculated braking distance of freight rolling stock when using brake systems with two-pipe and single-pipe supply of a spare tank. These studies are aimed at improving the technical speed and safety of freight trains, as well as improving the efficiency of the braking system during cyclic braking, in order to reduce its depletion. Methods: analysis of the filling rate of the brake cylinders, in order to determine the time of preparation of the brakes for action, depending on the method of organizing the power supply of the brake system; comparison of the length of the preparatory and actual braking distance according to the method of speed intervals proposed in the Rules of traction calculations. It was also assumed that the train was braking to a complete stop on a straight horizontal section of the track, with air leaks from the brake cylinders throughout the train. Results: it was revealed that a two-pipe braking system allows to develop a significantly greater braking effect than a singlepipe braking system with a similar technical condition of the pneumatic train system. As a result, with the new method of powering the reserve tank, there is a significant reduction in the time required to prepare the brakes for action, as well as a reduction in the length of the full braking distance. Practical significance: it has been proven that the use of a new braking system will improve the efficiency of the braking system, which leads to a reduction in braking distance. This, in turn, will improve the safety and speed of trains along the sections, as well as increase the average weight of trains.
valid braking distance, preparatory braking distance, single-pipe braking system, two- braking system, speed interval method, valid pressing brake pad, cast iron brake pad, composite brake pad
1. Povyshenie vesa poezdov [Elektronnyy resurs]. URL: https://company.rzd.ru/ru/9401/page/7831 4?accessible=true&id=157643.
2. Inozemcev V. E., Evseev D. G., Kulikov M. Yu. i dr. Koncepciya al'ternativnoy tormoznoy sistemy dlya podvizhnogo sostava // Transportnoe mashinostroenie. 2022. № 10 (10). S. 42–48. DOI:https://doi.org/10.30987/2782-5957-2022-10-42-48. EDN UFKWXM.
3. Ivanov P. Yu., Dul'skiy E. Yu., Hamnaeva A. A. i dr. Teoreticheskie issledovaniya osobennostey modelirovaniya processa frikcionnogo tormozheniya poezdov // Sovremennye tehnologii. Sistemnyy analiz. Modelirovanie. 2020. № 4 (68). S. 150–158. DOI:https://doi.org/10.26731/1813–9108.2020.4 (68).150–158. EDN ZPBFRK.
4. Reliability analysis of power equipment of traction rolling stock within the Eastern region / A. M. Khudonogov, I. A. Khudonogov, E. Y. Dulskiy // IOP Conference Series: Materials Science and Engineering: International Conference on Transport and Infrastructure of the Siberian Region, SibTrans 2019, Moscow, 21–24 May 2019. Vol. 760. M.: Institute of Physics Publishing, 2020. P. 012018. DOI:https://doi.org/10.1088/1757-899X/760/1/012018. EDN SONODF.
5. Kozlov M. V. Organizaciya obespecheniya bezopasnosti dvizheniya i avtomaticheskie tormoza / M. V. Kozlov, B. V. Smagin. M.: Federal'noe gosudarstvennoe avtonomnoe obrazovatel'noe uchrezhdenie vysshego obrazovaniya «Rossiyskiy universitet transporta», 2020. 96 s. ISBN: 978-5-7473-1045-2. EDN TNEATY.
6. Ablyalimov O. S. Analiz effektivnosti tormoznyh sistem skorostnogo podvizhnogo sostava / O. S. Ablyalimov, Zh. D. Hodzhiev, B. I. Gayratov // Nadezhnost' funkcionirovaniya i informacionnaya bezopasnost' infokommunikacionnyh, telekommunikacionnyh i radiotehnicheskih setey i sistem: Materialy vserossiyskoy nauchno-tehnicheskoy konferencii, Omsk, 25 oktyabrya 2019 goda. Omsk: Omskiy gosudarstvennyy universitet putey soobscheniya, 2019. S. 234–241. EDN NXSQME.
7. Ivanov P. Yu. Snizhenie energopotrebleniya elektrovoza pri upravlenii pnevmaticheskimi tormozami gruzovogo poezda / P. Yu. Ivanov, A. A. Hamnaeva, A. M. Hudonogov // Razrabotka i ekspluataciya elektrotehnicheskih kompleksov i sistem energetiki i nazemnogo transporta : Materialy III Mezhdunarodnoy nauchno-prakticheskoy konferencii, Omsk, 6 dekabrya 2018 goda. Omsk : Omskiy gosudarstvennyy universitet putey soobscheniya, 2018. S. 143–151. EDN PPBPJT.
8. Ivanov P. Yu. Sravnitel'nyy analiz tormoznyh sistem podvizhnogo sostava s odnotrubnym i dvuhtrubnym pitaniem / P. Yu. Ivanov, E. Yu. Dul'skiy, A. A. Hamnaeva i dr. // Vestnik RGUPS. 2020. № 3. S. 35–42. DOI:https://doi.org/10.46973/0201- 727X-2020-3-35.
9. Osipov D. V., Ivanov P. Yu., Dul'skiy E. Yu. i dr. Dvuhtrubnaya tormoznaya sistema na zheleznodorozhnom podvizhnom sostave // Transport Rossiyskoy Federacii. 2022. № 4–5 (101–102). S. 38–41. EDN ZGBZCC.
10. Pravila tyagovyh raschetov dlya poezdnoy raboty, 2016. 510 s.
11. Buynosov A. P. Sovershenstvovanie metoda rascheta dliny tormoznogo puti zheleznodorozhnogo podvizhnogo sostava / A. P. Buynosov, E. V. Fedorov // Izvestiya Transsiba. 2018. № 1 (33). S. 13–22. EDN XQXUXB.
12. Batashov S. I. Nekotorye osobennosti rascheta tormoznoy sily poezda / S. I. Batashov, A. A. Andreev // Problemy bezopasnosti rossiyskogo obschestva. 2016. № 1. S. 131–136. EDN VVWJEH.
13. Asadchenko V. R. Raschet pnevmaticheskih tormozov zheleznodorozhnogo podvizhnogo sostava: uchebnoe posobie dlya vuzov zh.-d. transporta. M.: Marshrut, 2004. 120 s.
14. Asadchenko V. R. Avtomaticheskie tormoza podvizhnogo sostava: uchebnoe posobie dlya vuzov zh.-d. transporta. M.: Marshrut, 2006. 392 s.
15. Krylov V. I. Avtomaticheskie tormoza podvizhnogo sostava: uchebnik dlya uchaschihsya tehnikumov zh.-d. transp. / V. I. Krylov, V. V. Krylov. 4‑e izd., pererab. i dop. M.: Transport, 1983. 360 s.
16. Pravila tehnicheskogo obsluzhivaniya tormoznogo oborudovaniya i upravleniya tormozami zhelez- nodorozhnogo podvizhnogo sostava. 2014.