Modelling of suspension components in a rail vehicle dynamics context
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Mazzola L., 2009, Possibilities and challenges for the virtual homologation of the railway rolling stock
Polach O., 2006, Handbook of Railway Vehicle Dynamics, 359
Polach O., 2008, Eur. Railw. Rev., 14, 76
UIC Code 518: Testing and approval of railway vehicles from the point of view of their dynamic behaviour – Safety – Track fatigue – Running behaviour, International Union of Railways, September 2009
EN 14363 Railway Applications – Testing for the Acceptance of Running Characteristics of Railway Vehicles – Testing of Running Behaviour and Stationary Tests, CEN, Brussels, 2005
EN 13906-1:2008.Cylindrical Helical Springs made from Round Wire and Bars. Calculation and Design. Part 1: Compression Springs
Timoshenko S. P., 1961, Theory of Elastic Stability
Haringx J. A., Report 4/1949
Krettek, O. and Sobczak, M. 1988.Zur Berechnung der Quer- und Biegekennung von Schraubenfedern für Schienenfahrzeuge321–326. ZEV-GlasersAnnalen 112 No, 9 September, Aachen
Nishizawa, S., Ikeda, M., Logsdon, J., Enomoto, H., Sato, N. and Hamano, T. “The effect of rubber seats on coil spring force line”. Paper Number: 2002-01-0317, SAE, 2002, doi:10.4271/
Wang C. M., 2000, Shear Deformable Beams and Plates: Relationships with Classical Solutions
Weidemann, C. and Mulski, S. “Modelling Helical Springs”. SIMPACK News 11, 1st issue, July 2007
Xia F., 2003, Veh. Syst. Dyn., 35, 755
Bosso, N., Gugliotta, A. and Somà, A. 2002. Multibody Simulation of Freight Bogie with Friction Dampers. Proc. of the 2002 ASME/IEEE Joint Rail Conference. April23–252002, Washington, DC. pp.47–56.
Harder, R. F. 2000. Dynamic Modelling and Simulation of Three-Piece North American Freight Vehicle Suspensions with Non-linear Frictional Behaviour Using ADAMS/Rail. 5th ADAMS/Rail User's Conference. May10–122000, Haarlem.
Berghuvud A., 2001, Curving performance and nonlinear dynamic behaviour of freight cars with three-piece bogies
Xia, F. and True, H. 2003. On the Dynamics of the Three-piece-freight truck. Proceedings of the 2003 IEEOASME Joint Rail Conference. April22–242003, Chicago, IL.
Jendel, T. “Dynamic analysis of a freight wagon with modified Y25 bogies”. Master thesis, TRITA-FKT Report 1997:48, ISSN1103-470X, Stockholm, 1997
Keudel J., 2002, Modellierung des Güterwagendrehgestells Y25 für das Mehrkörperdynamikprogramm MEDYNA
1986, ORE B12 Rp 25, 2
1988, ORE B12 Rp 43
ORE B56/Rp2. 1967. “Improvement of the running stability of existing RIV wagons required to run under any loading conditions at speeds of 80 km/h”. Utrecht: ORE. March
ORE DT30,Etude de la stabilité transversale d'un véhicule ferroviaire à deux essieux, par M. R. Joly, Technical Document, ORE, Utrecht, January, 1974
Ayasse, J. B. 2001. “Computer simulation of freight vehicles with leaf springs: A comparison between different packages”. Tech. Rep., INRETS, INRETS/RE-01-046-FR
Jönsson, P.A. 2004. “Modelling and laboratory investigations on freight wagon link suspension, with respect to vehicle-track dynamic interaction”. Licentiate thesis, TRITA AVE 2004:48, KTH Railway Technology, Stockholm
Hoffmann M., 2006, Dynamics of European two-axle freight wagons
Lange, H. 1996. “Dynamic analysis of a freight car with standard UIC single-axle running gear”. TRITA – FKT Rep. 1996:34, KTH Railway Technology, Stockholm
Stiepel, M. and Zeipel, S. 2004. Freight wagon running gears with leaf spring and ring suspension. Paper presented at the SIMPACK user group meeting. 2004.
Fancher, P. S., Ervin, R. D., MacAdam, C. C. and Winkler, C. B. 1980. Measurements and representation of the mechanical properties of truck leaf springs. SAE-P 800905. 1980.
Piotrowski J., 2003, Internal Report, Warzaw University of Technology, Institute of Vehicles, Zeszyty Naukowe Institutu Pojazdow, 3
Cheli, F. and Melzi, S. Rheological model of a side buffer for freight trains. 7th EUROMECH Solid Mechanics Conference. Lisbon, Portugal.
Onah H. N., 1996, Viscoelastic Material Damping Technology
Mortel, W. J. and Weston, D. 1994. The development of rubber suspension components on rail vehicles. Paper C478/10/033, Seminar on Railway Division of IMechE, UK. May24–261994.
Freakley P. K., 1978, Theory and Practice of Engineering with Rubber
Ferry J. D., 1980, Viscoelastic Properties of Polymers, 3
Nicolin J., 1985, ZEV-Glas. Ann., 109
Austrell, P. E. 1995. Mechanical Properties of Carbon Black Filled Rubber Vulcanizates. Proc. of Rubbercon ’95. May10–121995, Göteborg, Sweden.
Peeken H., 1994, Konstruktion, 46, 9
Pfeffer P., 2002, ATZ, 104, 442
Presthus, M. 2002. “Derivation of air spring model parameters for train simulation”. Derby, UK: Master's Thesis, Luleå University of Technology, DeltaRail Group.
Vampire. 2009. “User's Manual Version 5.03”.
C. Weidemann,Air-springs in Simpack, Simpack News, 2003, ppp. 10–11. Available athttp://www.simpack.com/fileadmin/simpack/doc/newsletter/2003/sn-3-03-air-springs.pdf
Doquier N., 2010, Multiphysics modelling of multibody systems – application to railway pneumatic suspensions
Docquier, N., Fisette, P. and Jeanmart, H. Influence of heat transfer on railway pneumatic suspension dynamics. 21st International Symposium on Dynamics of Vehicles on Roads and Tracks (IAVSD’09). August17–21, Stockholm, Sweden.
Lang, H. H. 1977.A Study of the Characteristics of Automotive Hydraulic Dampers at High Stroking Frequencies, Mechanical Engineering, 288Ann Arbor: The University of Michigan.
Alonso A., 2010, Proceedings of the Euromech 500 Colloquium, 123
Bruni, S., Belforte, P., Mancini, G., Cera, A., Hartwig, H. and Mazzola, L. 2008. Experimental investigation of yaw damper performances: An improved and harmonised testing methodology developed within ModTrain EU project. WCRR’08 International Conference, Seoul (KR). May18–222008.
Alfi S., 2008, Impact of Suspension Component Modelling on the Accuracy of Rail Vehicle Dynamics Simulation
Sorli, M., Franco, W., Mauro, S., Quaglia, G., Giuzio, R. and Vernillo, G. 1998. Features of the lateral active pneumatic suspensions in the ETR 470 high speed train. 6th UK Mechatronics Forum International Conference Skovde. September9–111998, Sweden.
Resta, F. and Bruni, S. 2001. Active control of railway vehicles to avoid hunting instability. IEEE/ASME Int. Conference on Advanced Intelligent Mechatronics. July8–122001, Como, Italy.
Evans, J. R. The Modelling of Railway Passenger Vehicles, the Dynamics of Vehicles on Roads and Tracks. Proceedings of the 12th IAVSD Symposium held in Lyon. August26–301991, France. pp.144–156. Amsterdam/Lisse: Swets&Zeitlinger.
Polach O., 2004, Veh. Syst. Dyn., 41, 53
Polach O., 2001, Veh. Syst. Dyn., 35, 7
EN 13674-1:2003+A1:2007: ‘Railway Applications. Track. Rail: Part 1: Vignole railway rails 46 kg/m and above’
1989, Report No. 1: Specifications and preliminary studies, 2
Igeland, A. and Oscarsson, J. 1997. Modelling of Railway Track for Computer Simulation of Dynamic Train/track Interaction. Proceedings XVth IMAC (International Modal Analysis Conference). September1997, Tokyo. pp.464–470.
SIMPACK. 2010. “Wheel Rail Element Reference”. Release v.8.904. SIMPACK AG, 31st August
Seco, M., Sanchez, E. and Vinolas, J. 2006. A time domain wheelflat/track FE model. IET International Conference on Railway Condition Monitoring, 29–30 November 2006, Institution of Engineering and Technology. 2006, Birmingham, UK. pp.130–135. ISBN: 0-86341-732-9
Németh, I. and Schleinzer, G. 2007. Assessment of railway track models from dynamical aspects. 7th International Conference on Railway Bogie and running Gears. September3–72007, Budapest. pp.133–142.
Alfi, S., Bruni, S. and Di Gialleonardo, E. The Influence of Track Modelling Options on the Simulation of Train-Track Interaction. Proceedings of the Tenth International Conference on Computational Structures Technology. Stirlingshire, UK. Civil-Comp Press. Paper 12, 2010, doi: 10.4203/ccp.93.12
GM/RT2141 Resistance of Railway Vehicles to Derailment and Roll-OverIssue Three Draft 1m, December, 2004
prEN 15827 Railway applications – Bogies and running gear. Railway applications – Bogies and running gear, Draft, September, 2009
Sandu A., 2006, Multibody Syst. Dyn., 15, 373
