Physico-mathematical model of motor vehicle of divided weight with unifying energetic element

Authors

  • L.M. Petrov Odessa State Agrarian University
  • T.M. Borisenko Odessa State Agrarian University
  • O.V. Lysyi Odessa Military Academy

DOI:

https://doi.org/10.15276/opu.3.47.2015.06

Keywords:

transmission, torque, circular force, thrust force, angular speed ratio

Abstract

The traction characteristics are important for ensuring of motor vehicle work process. In providing the traction characteristics the average velocity of mobile energetic transport grows, energy costs for work process execution are uprating and operation costs are reducing. The implementation of traction characteristics is performed by transmission of mobile energetic transport. Aim: The aim of the work is improvement of torque transfer technology from the engine to the wheel driving forces through the establishment of new construction of divided weight vehicle transmission. Materials and Methods: Consider a motor vehicle of divided weight with unifying energetic element which performs rotary motions relative to the vehicle frame. Results: It was shown that, the momentum which creates the rotational motion depends on the module and the direction of rotation speed of the unifying energetic element. For the first time, the technology and design of vehicle transmission which differs from previous designs by significant simplifying of the torque transmission from the engine to driving wheels at increased value of efficiency coefficient were proposed.

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Author Biographies

L.M. Petrov, Odessa State Agrarian University

PhD, Assoc.Prof.

T.M. Borisenko, Odessa State Agrarian University

Master

O.V. Lysyi, Odessa Military Academy

PhD, Prof.

References

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Published

2015-10-15

How to Cite

[1]
Petrov, L., Borisenko, T. and Lysyi, O. 2015. Physico-mathematical model of motor vehicle of divided weight with unifying energetic element. Proceedings of Odessa Polytechnic University. 3(47) (Oct. 2015), 35–40. DOI:https://doi.org/10.15276/opu.3.47.2015.06.