Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 8 SI
Page No. 6398 - 6406

Adjustable Driver of Grain Cleaning Vibro-Machine with Vertical Axis of Eccentric Masses Rotation

Authors : R. Yarullin, R. Aipov, I. Gabitov, A. Linenko, S. Akchurin, R. Safin, S. Mudarisov, E. Khasanov, Z. Rakhimov, Z. Rakhimov and I. Masalimov

References

Aipov, R.S. and R.B. Iarullin, 2017. Mechatronics of grain cleaner’s electric drive with flat vibrating sieve. Bull. Bashkir State Agrar. Univ., 2: 53-57.

Cieplok, G., 2009. Verification of amplitude determination nomogram of resonance oscillations in the run-out phase of the vibrating machine. J. Theor. Appl. Mech., 47: 295-306.

Frolov, K.V., 1985. Many-faceted world of vibration. Sci. Mankind Moscow, 1: 241-259.

Gonzalez-Carbajal, J. and J. Dominguez, 2017. Non-linear vibrating systems excited by a nonideal energy source with a large slope characteristic. Mech. Syst. Signal Process., 96: 366-384.
CrossRef  |  Direct Link  |  

Horgos, M., C.B. Chiver and C. Barz, 2011. Contributions to the study of the dynamic operating regime of an electromagnetic vibrator. Carpathian J. Electr. Eng., 5: 19-27.
Direct Link  |  

Iarullin, R.B. and A.V. Linenko, 2013. On dynamic characteristics of induction motors. Electr. Inf. Complexes Syst., 9: 42-46.

Iarullin, R.B. and R.R. Safin, 2014. On designing self-regulated inertia vibrator for an induction electric drive of vibration machines. Electr. Inf. Complexes Syst., 10: 30-37.

Iarullin, R.B. and R.R. Safin, 2017. Calculating construction parameters of an automatic vibrator with a vertical rotation axis for a vibration grain cleaner. Bull. Bashkir State Agrar. Univ., 4: 84-90.

Iarullin, R.B., 2007. Dynamics of Adjusted Vibration Grain Cleaners (Electric Drive Issues). University of Florida, Gainesville, Florida, USA., Pages: 189.

Iarullin, R.B., 2013. Many sieved induction electric drive of the regulated vibration grain cleaner. Electr. Inf. Complexes Syst., 9: 52-60.

Iarullin, R.B., 2015. Vibration grain cleaner with a vertical rotation axis and regulated construction parameters of a vibrator. Bull. Bashkir State Agrar. Univ., 2: 87-90.

Jiang, X.H., P.J. Zhang and J.M. Peng, 2011. Resonant frequency and resonant amplitude control of a RCPBV. J. Vibr. Shock, 30: 249-253.
Direct Link  |  

Kuang, Y., Y. Jin, S. Cochran and Z. Huang, 2014. Resonance tracking and vibration stablilization for high power ultrasonic transducers. Ultrason., 54: 187-194.
CrossRef  |  PubMed  |  Direct Link  |  

Li, X.P., Y.M. Liang, G.H. Zhao, X. Ju and H.T. Yang et al., 2014. Dynamic characteristics of machine-pile-soil vibration system with interface friction coupling. Mater. Sci. Forum, 773: 632-639.
Direct Link  |  

Michalczyk, J. and G. Cieplok, 2016. Maximal amplitudes of vibrations of the suspended screens, during the transient resonance. Arch. Min. Sci., 61: 537-552.
CrossRef  |  Direct Link  |  

Michalczyk, J. and P. Czubak, 2010. Methods of determination of maximum amplitudes in the transient resonance of vibratory machines. Arch. Metall. Mater., 55: 695-705.
Direct Link  |  

Nikolov, M.I., 2015. Research on the impact of amplitude of vibrations on electrical parameters of vibroarc weld overlay in argon. Acta Technol. Agric., 18: 46-48.
Direct Link  |  

Olaru, R., A. Arcire, C. Petrescu, M.M. Mihai and B. Girtan, 2017. A novel vibration actuator based on active magnetic spring. Sens. Actuators A. Phys., 264: 11-17.
CrossRef  |  Direct Link  |  

Sharapov, R. and V. Vasiliev, 2017. Analysis of the spectrum distribution of oscillation amplitudes of the concrete mix at shock vibration molding. Proceedings of the International Conference on Matec Web Vol. 117, July 24, 2017, EDP Sciences, Les Ulis, France, pp: 236-239.

Sun, Z., L. Jiang and W. Xiao, 2015. The model and experimental study of spiral piezoelectric vibration feeder. Proceedings of the 2015 IEEE 16th International Conference on Communication Technology (ICCT), October 18-20, 2015, IEEE, Hangzhou, China, ISBN:978-1-4673-7004-2, pp: 155-157.

Zaika, P.M., 1977. Dynamics of Vibration Grain Cleaners. Mashinostroenie Publishers, Moscow, Russia, Pages: 144.

Zhang, F., L. Wang, C. Liu, S. Zhan and P. Wu, 2013. Lateral migration of grains in a partitioned container under vertical vibration. J. Phys. Soc. Japan, 83: 72-78.
CrossRef  |  Direct Link  |  

Zorawski, D. and B. Dzikowska, 2015. Modelling of the vibrating dryer drive system. Eng. Mech., 61: 157-161.

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