Motion stability of railway cars on bogies 18-100
https://doi.org/10.21780/2223-9731-2019-78-3-149-154
Abstract
Stability of the rolling stock in a rail track is determined by the nature of the motion of the wheelsets under the influence of processes in the “wheel — rail” system and connections with the bogie and the carriage body. Factors affecting the motion of wheelsets are the irregularities of rail threads and the interaction forces in the “wheel — rail” system, which cause fluctuations in carriage hunting oscillation even in the absence of external disturbances. Parametric excitation of oscillations in the “carriage — track” system is caused by the difference in the radii of the rolling surfaces of the bevel gears with the transverse displacement of the wheelset in the track. This excitation is damped by the forces of resistance to rotation and displacement on the contact surface, the magnitude of which is inversely proportional to the rolling speed of the wheel. Therefore, with an increase in the speed of motion, the magnitude of resistance forces decreases and the intensity of processes determining hunting oscillations in the “wheel — rail” system increases. The excitatory factors on each of the wheelset of the bogie are of random nature and are not interconnected, therefore their vibrations are limited to the designs of the bogie and its connections with car body, which combine all the elements into a single system. Increasing the connectivity of the wheelsets and sidewalls of the bogie among themselves and with the carriage is the most appropriate solution for reducing hunting intensity. To do this, three-element bogies should reduce wear in the spring suspension, prohibiting the raising of the wedge above the plane of the supports of the bolster. To reduce the rotation of the bogie when hunting, bolster should be equipped with elastic contact bearings.
About the Author
Yu. S. RomenRussian Federation
Dr. Sci. (Eng.), Professor, Chief Researcher, Moscow, 129626, Russia
References
1. Romen Yu. S. Dinamika zheleznodorozhnogo ekipazha v rel'sovoy kolee: metody rascheta i ispytaniy [Dynamics of the railway carriage in the track gauge: methods of calculation and tests]. Moscow, VMG-Print Publ., 2014, 210 p. (Trudy OAO “VNIIZhT” [Proc. of the JSC “VNIIZhT”]).
2. True H. Zur äquivalenten Konizität. ZEVrail Glasers Annalen, 2007, no. 7, pp. 290 – 298.
3. Nirkonen V. T. O vliyanii konusnosti kolesnykh par na dinamiku dvizheniya podvizhnogo sostava [On the effect of the taper of wheelsets on the dynamics of the rolling stock]. Vagony i vagonnoe khozyaystvo, 2015, no. 2, pp. 29 – 31.
4. Polach O. Bertihrgeometrie Rad/Schiene und ahrzeugauslegung im Hinblick auf Stabilitat. ZEVrail Glasers Annalen, 2007, no. 9, pp. 359 – 369.
5. Klingel W. Uber den Lauf der Eisenbahnwagen auf Gerarder Bahn, Organ Fortsch. Eisenb-wes,1883, no. 38, pp. 113 – 123.
6. Kovalev N. A. Bokovye kolebaniya podvizhnogo sostava [Side oscillations of rolling stock]. Moscow, Transzheldorizdat Publ., 1957, 248 p.
7. Kheyman Kh., Korolev K. P. Napravlenie zheleznodorozhnykh ekipazhey rel'sovoy koleyey [Railway track gauge direction]. Moscow, Transzheldorizdat Publ., 1957, 416 p.
8. Verigo M. F., Kogan A. Ya. Vzaimodeystvie puti i podvizhnogo sostava [Interaction of the track and rolling stock]. Moscow, Transport Publ., 1986, 559 p.
9. Vershinskiy S. V., Danilov V. N., Khusidov V. D. Dinamika vagona [Car dynamics]. Moscow, Transport Publ., 1991, 360 p.
10. Verigo M. F., Grachyova L. O., Anisimov P. S. Modernizatsiya ressornogo podveshivaniya telezhek tipa MT-50 [Modernization of the spring suspension of bogies of the type MT-50]. Moscow, Transport Publ., 1968, 112 p. (Trudy TsNII MPS [Proc. of the TsNII MPS], no. 372).
11. Verigo M. F., Grachyova L. O., Romen Yu. S. Issledovanie vliyaniya momenta sil treniya mezhdu kuzovom i telezhkoy na dvizhenie gruzovogo vagona v rel'sovoy kolee [Study of the influence of the moment of friction between the body and the bogie on the motion of freight car in a rail track]. Primenenie analogovykh vychislitel'nykh mashin dlya issledovaniya dinamiki vzaimodeystviya puti i podvizhnogo sostava. Sb. statey [Use of analog computers to study the dynamics of interaction of the track and rolling stock. Coll. of articles]. Moscow, Transport Publ., 1967, p. 54. (Trudy TsNII MPS [Proc. of the TsNII MPS], no. 347).
12. Barteneva L. I., Dolmatov A. A., Kudryavtsev N. N., Sychyov V. A. Trebovaniya k konstruktsii dvukhosnykh telezhek gruzovykh vagonov dlya perspektivnykh usloviy ekspluatatsii [Requirements for the design of two-axle freight car bogies for advanced operating conditions]. Moscow, Transport Publ., 1973, 96 p. (Trudy TsNII MPS [Proc. of the TsNII MPS], no. 483).
13. Punwani S. K. Effect of truck suspension wear on car dynamics. Railway Age, 1989, no. 9, pp. 77 – 78.
14. Urban C. L. Suspension wear and truck performance: a case study. R-785. Association of American Railroads. Transportation Test Center Pueblo. Colorado, 1991, 42 p.
Review
For citations:
Romen Yu.S. Motion stability of railway cars on bogies 18-100. RUSSIAN RAILWAY SCIENCE JOURNAL. 2019;78(3):149-154. (In Russ.) https://doi.org/10.21780/2223-9731-2019-78-3-149-154