Preview

The Russian Automobile and Highway Industry Journal

Advanced search

TO THE QUESTION OF VIBRO-EXCITER’S ENERGY EFFICIENCY INCREASING FOR VIBRATING COMPACTORS IN THE SPHERE OF ROAD CONCTRUCTION

https://doi.org/10.26518/2071-7296-2018-1-46-54

Abstract

Introduction. The article considers the relevance of the subject of using vibratory compactors in the road construction field. Moreover, the shortcomings of existing unbalance exciters are revealed. In order to eliminate the drawbacks, we propose a new design of a crank-rod type vibration exciter. Therefore, the design is a new step in the development of directional oscillators, the use of which in road engineering would increase its productivity and efficiency. The main provisions, which allow to calculate energy efficiency and vibration parameters of a new exciter, are considered. The results of calculations and the dependence of the power exponent for the entire period of oscillatory motion are presented. The article proposes a new principle of designing periodic generators of directed force action. The scheme of the construction and its kinematic scheme are presented. The result of the research is to increase the energy efficiency of using vibrating compactors in road construction.

 Material and methods. A new design of a vibration exciter is presented, the dependence character of the direction of the driving force on time relative to the treated surface is revealed.

Results. Increase energy efficiency of the building materials’ processing by vibrating road rollers are given.

Discussion and conclusion. As can be seen, the proposed technical solution is a new step in the development of oscillators of directional action and their usage in road engineering, which would improve its productivity and efficiency of processing road building materials.

About the Authors

M. K. Shushubaeva
Siberian State Automobile and Highway University
Russian Federation

Shushubaeva Madina Kairgeldinovna  – postgraduate student of the chair “Exploitation of transport and technological machines and complexes”

644080, Omsk, Mira Ave., 5



V. V. Miheev
Omsk State Technical University
Russian Federation

Micheev Vitalii Viktorovich  – Candidate of Physico-mathematical Sciences, Senior Lecturer of the Chair “Quantum computing” 

644077, Omsk, Mira Ave 55 a



S. V. Savelev
Siberian State Automobile and Highway University
Russian Federation

Saveliev Sergei Valerevich  – Candidate of Technical Sciences, Associate Professor of the Chair Exploitation of transport and technological machines and complexes 

644080, Omsk, Mira Ave., 5



References

1. Varganov S.A., Andreev G., Markov And P. Mashiny dlja uplotnenija gruntov i dorozhno – stroitel’nyh materialov [Machines for compaction of soils and road construction materials]. Moscow, Mashinostroenie, 1981. 240 p.

2. Permjakov V.B., Ivanov V.I., Miller S.V. Transportnotehnologicheskie mashiny i kompleksy (proizvodstvennaja i tehnologicheskaja jekspluatacija) [Transport-technological machines and complexes (production and operation)]. Omsk, Publishing house SibADI, 2007. 440 p.

3. Haruta N.I. Dorozhnye mashiny. Teorija, konstrukcija i raschet [Road machines. Theory, design and calculation: a textbook for high schools]. L. Engineering, 1976. 472 p.

4. Dubrovin A. E. Opredelenie jeffektivnyh chastot kolebanij rabochego organa vibrouplotnitelja [Defining the effective frequency of oscillation of the working body of vibroplates]. Issledovanija parametrov i raschety dorozhnostroitel’nyh mashin. Saratov, 1972. Vol. 52. pp. 40 – 43.

5. Permyakov V.B., Zakharenko A.V., Savel’ev S.V. Obosnovanie vybora parametrov vibracionnyh katkov [Justification of the choice of parameters of vibrating rollers], Izv. vuzov. Stroitel’stvo, 2003, no. 2. pp. 100 – 103.

6. Popov G.N., Haruta N.I. Vybor parametrov pricepnyh vibracionnyh katkov [The choice of parameters towed vibrating rollers]. Stroitel’nye i dorozhnye mashiny. 1972. no. 1.

7. Saveliev S.V., Mikheev V.V. Issledovanija naprjazhjonno-deformirovannogo sostojanija uprugo-vjazkoj sredy pri vibracionnom nagruzhenii [Studies of the stressstrain state of elastic-viscous fluid under vibration loading]. Vestnik SibADI, 2012, no. 3 (25), pp. 83 – 87.

8. Birula A. K. Seal four-phase soil/A. Birula//Tr./Khark. automobile.-dorozh.in-t.-Kharkov,1953.-Vol.10.-S. 18-21

9. Savel’ev S.V., Mikheev V.V. Beloded, A.S. Matematicheskaja model’ processa dinamicheskogo deformirovanija uplotnjaemoj uprugo vjazkoj plastichnoj sredy [Mathematical model of the process of dynamic deformation of the sealing elastic viscous plastic medium]. Vestnik SibADI. Omsk, SibADI, 2016.

10. Savel’ev S.V., Mikheev V.V. Issledovanija deformirovanija uprugovjazkoj sredy pri udarnom nagruzhenii [Research of deformation prugovecki medium under impact loading]. Vestnik SibADI. Omsk, SibADI, no. 4 (26), 2012, pp. 100 – 103.

11. Savel’ev S.V., Malyshenko S. A., Lashko A. G. Model’ vzaimodejstvija rabochego organa vibracionnogo katka s uplotnjaemoj sredoj [The Model of interaction of working body of the compactor with the sealing environment]. Mehanizacija stroitel’stva. Moscow, 2013, no. 1 (823), pp. 24 – 28.

12. Kopf, Fritz. Modelling and simulation of heavy tamping dynamic response of the ground / Fritz Kopf, Ivan Paulmichl, Dietmar Adam // From Research to Design in European Practice, Bratislava, Slovak Republic, on June 2-4, 2010 [Electronic resource] – access Mode: https://publik.tuwien.ac.at/files/PubDat_186214.pdf

13. Permyakov V. B. Sovershenstvovanie teorii, metodov raschjota i konstrukcij mashin dlja uplotnenija asfal’tobetonnyh smesej. Doct, Diss. [Improvement of the theory, calculation methods and designs of machines for the compaction of asphalt mixtures. Doct. Diss.]. Omsk, 1990. 485 p.

14. Michael C. Mc Vay, Evaluating thick lift limerock-base course SR-826: Report, Draft Final Report April 2005. Miami, Florida, 2005. 92 p.

15. Ovchinnikov P.F. K teorii vibracionnyh mashin s uchjotom vlijanija obrabatyvaemoj sredy [The theory of vibrating machines with the influence of the processing environment]. Prikladnaja mehanika. 1965.

16. Timoshenko S.P., Jang D.H., Uiver U. Kolebanija v inzhenernom dele [Kolebanija v inzhenernom dele]. pod red. Je. I. Grigoljuka. per. s angl. L. G. Kornejchuka.

17. Saveliev S.V., Mikheev V.V. Dubkov, V.V., Serebrennikov V.S. Kulachkovyj vibracionnyj valec [Cam vibrating drum]. Patent RF, no. 2016125080; 2016.

18. Saveliev S.V., Mikheev V.V. Dubkov, V.V., Serebrennikov V.S. Oscilljatorno-vibracionnyj valec dorozhnogo katka [Oscillator-vibrating drum road roller applicant]. Patent RF, no. 160645 no. 2015141193. 2016.

19. Saveliev S.V., Demidenko A.I., Mikheev V.V. Valec dorozhnogo katka [Drum road roller]. Patent RF, no. 2552364. 2014.

20. Saveliev S.V., Mikheev V.V., Poteryaev, I.K. Beloded, A.S. Dorozhnyj katok [Road roller]. Patent RF, no. 162483. 2016.


Review

For citations:


Shushubaeva M.K., Miheev V.V., Savelev S.V. TO THE QUESTION OF VIBRO-EXCITER’S ENERGY EFFICIENCY INCREASING FOR VIBRATING COMPACTORS IN THE SPHERE OF ROAD CONCTRUCTION. The Russian Automobile and Highway Industry Journal. 2018;15(1):46-54. (In Russ.) https://doi.org/10.26518/2071-7296-2018-1-46-54

Views: 888


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2071-7296 (Print)
ISSN 2658-5626 (Online)