Engineering Journal: Science and InnovationELECTRONIC SCIENCE AND ENGINEERING PUBLICATION
Certificate of Registration Media number Эл #ФС77-53688 of 17 April 2013. ISSN 2308-6033. DOI 10.18698/2308-6033
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Article

Thermal load evaluation of the tracked vehicle suspension system

Published: 25.11.2016

Authors: Sarach E.B., Tsipilev A.A., Nakaznoi O.A.

Published in issue: #12(60)/2016

DOI: 10.18698/2308-6033-2016-12-1563

Category: Mechanical Engineering and Machine Science | Chapter: Machine Science, Drive Systems, and Machine Components

Thermal load problems of vehicle suspension systems are of particular importance in studying the machine movement dynamics and its smooth running. High thermal load of pneumatic-hydraulic devices results in the suspension system failure risk due to destruction or a quick seal wear. For a more accurate thermal stress assessment it is necessary to use mathematical modeling simulation. The article presents the field trials results of intermediate weight category tracked vehicle and engine traffic simulation for the same harmonic irregularities. The article shows the mathematical model high value, gives recommendations to reduce the suspension system thermal load of the tracked vehicle under study.


References
[1] Smirnov A.A. Matematicheskoe modelirovanie pnevmogidravlicheskikh ustroystv system podressorivaniya transportnykh sredstv. Diss. cand. tekhn. nauk [Mathematical modeling pneumatic/hydraulic devices of vehicle cushioning systems. Cand. Eng. Sci. Diss.]. Moscow, 1999, 179 p.
[2] Zhileykin M.M., Kotiev G.O., Sarach E.B. Nauka i obrazovanie - Science and Education, 2011, no. 12. Available at: http://technomag.bmstu.ru/doc/346642.html
[3] Kotiev G.O., Smirnov A.A., Shilkin V.P. Issledovanie rabochikh protsessov v pnevmogidravlicheskikh sistemakh podressorivaniya gusenechnykh mashin [Research of working processes in pneumatic/hydraulic cushioning systems of tracked vehicles]. Moscow, BMStU Publ., 2001, 80 p.
[4] Sukhorukov A.V. Upravlenie dempfiruyushchimi elementami v sisteme podressorivaniya bystrokhodnoy gusenichnoy mashiny. Diss. cand. tekhn. nauk [Damping element control in the cushioning system of high-speed tracked vehicle. Cand. Eng. Sci. Diss.]. Moscow, 2003, 149 p.
[5] Furunzhiev R.I., Ostanin A.N. Upravlenie kolebaniyami mnogoopornykh mashin [Vibration control in multiple-seated machines]. Moscow, Mashinostroenie Publ., 1984, 206 p.
[6] Pozdeev A.V., Novikov V.V., Dyakov A.S., Pokhlebkin A.V., Ryabov I.M., Chernyshov K.V. Reguliruemye pnevmaticheskie i pnevmogidravlicheskie ressory podvesok avtotransportnykh sredstv [Adjustable pneumatic and hydropneumatic springs of vehicle suspensions]. Volgograd, Volgograd State technical University Publ., 2013, 244 p.
[7] Kotiev G.O. Prognozirovanie ekspluatatsionnykh svoystv system podressorivaniya voennykh gusenechnykh mashin. Diss. dokt. tekhn. nauk [Prediction of operational properties of military tracked vehicle cushioning systems. Dr. Eng. Sci. Diss.]. Moscow, BMSTU Publ., 2000, 265 p.
[8] Kotiev G.O., Sarach E.B. Kompleksnoe podressorivanie vysokopodvizhnykh dvukhzvennykh gusenichnykh mashin [Integrated cushioning of highly mobile articulated tracked vehicle]. Moscow, BMSTU Publ., 2010, 184 p.
[9] Tsipilev A.A. Issledovanie teplonagruzhennosti pnevmogidravlicheskikh ustroystv system podressorivaniya bystrokhodnykh transportnykh mashin [The research of heat load of cushioning system pneumatic/hydraulic devices of high-speed vehicles]. Trudy NAMI [Proceedings of NAMI]. Moscow, 2015, no. 261, pp. 151-172.
[10] Sovremennye tendentsii razvitiya nauki i tekhnologiy [Modern trends in the development of science and technology]. Sbornik dokladov XV Mezhdunarodnoy nauchno-prakticheskoy konferentsii [Coll. rep. of the XV International Scientific and Practical Conference]. Belgorod, June 30, 2016, 151 p.