VIBRATING TABLES WITH THE SPATIAL OSCILLATIONS OF THE MOVING FRAME TECHNOLOGICAL PROPERTIES FOR FORMING REINFORCED CONCRETE PRODUCTS

Authors

DOI:

https://doi.org/10.26906/znp.2019.53.1881

Keywords:

vibration table, vibration exciter, forming concrete reinforced products

Abstract

A brief description of vibration tables with spatial oscillations of a moving frame and comparison of their technological
possibilities depending on their constructive execution are given. The methodology for evaluating the technological and
structural parameters of the vibration tables is also presented based on the use of a dimensionless complex parameter that enables to evaluate the consumer qualities of the vibrating tables, their technical level and competitiveness during the design
and operation stage. The vibrating machines constructive designs schemes, their characteristics and the description of the
scope of application are presented, which enables designers and manufacturers to orientate themselves in the variety of currently used vibration machines with spatial oscillations of the moving frame for the formation of the same type of reinforced
concrete products.

References

Banfill, P.F.G., Teixeira M.A.O.M. & Craik, R.J.M. (2011). Rheology and vibration of fresh concrete: Predicting the radius of action of poker vibrators from wave propagation. Cement and Concrete Research, 41(9), 932-941. https://doi.org/10.1016/j.cemconres.2011.04.011

Juradian, S., Baloevic, G. & Harapin, A. (2014). Impact of vibrations on the final characteristics of normal and selfcompacting concrete. Mat. Res. [online], 17(1), 178-185.

http://dx.doi.org/10.1590/S1516-14392013005000201.

Nazarenko, I., Ruchynskyi, M. & Delembovskyi, M. (2018). The basic parameters of vibration settings for sealing horizontal surfaces International Journal of Engineering

Technology (UAE), 7(3.2), 255-259. http://dx.doi.org/10.14419/ijet.v7i3.2.14415.

Nesterenko, M., Nazarenko, I. & Molchanov, P. (2018). Cassette installation with active working body in the separating partition. International Journal of Engineering & Technology (UAE), 7(3.2), 265-268. http://dx.doi.org/10.14419/ijet.v7i3.2.14417

Nesterenko, M., Maslov, A. & Salenko, J. (2018). Investigation of vibration machine interaction with compacted concrete mixture. International Journal of Engineering &

Technology (UAE), 7(3.2), 260-264. http://dx.doi.org/10.14419/ijet.v7i3.2.14416.

Shigeyuki, D., Goryozono, Y. & Hashimoto, S. (2012). Study on consolidation of concrete with vibration. Physics Procedia, 25, 325-332. https://doi.org/10.1016/j.phpro.2012.03.091

Nesterenko, M.P. (2017). Progressive development of vibration installations with spatial vibrations for the formation of reinforced concrete products. Academic journal. Series: Industrial Machine Building, Civil Engineering, 2 (44), 16-23.

Svidersky, A.T. & Delembovsky, M.M. (2010). Criteria for assessing the quality of vibrating platforms. Construction Engineering, 24, 24-27.

Sivko, V.Y. & Kuzminets, M.P. (2012). Assessment of the influence of the working environment on vibration

modes of vibrating machines. Construction Theory and Practice, 10, 3-5.

Nesterenko, M.P., Biletsky, V.S. & Semko, O.V. (2017). Assessment of structural and technological parameters and performance of vibrating machines for the formation

of reinforced concrete products. Academic journal. Series: Industrial Machine Building, Civil Engineering, 1 (43), 231- 237.

Nazarenko, I.I. & Nesterenko, M.P. (2015). Research methodology of the general dynamic model «technological

machine for construction industry – processed environment». Construction Engineering, 34, 4-11.

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Published

2019-10-31

How to Cite

Nesterenko, M., Nesterenko, M., Orysenko, O., & Sklyarenko, T. (2019). VIBRATING TABLES WITH THE SPATIAL OSCILLATIONS OF THE MOVING FRAME TECHNOLOGICAL PROPERTIES FOR FORMING REINFORCED CONCRETE PRODUCTS. Збірник наукових праць Галузеве машинобудування будівництво Academic Journal Industrial Machine Building Civil Engineering, 2(53), 13–18. https://doi.org/10.26906/znp.2019.53.1881

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