EXPERIMENTAL STUDY OF THE DYNAMICS OF CENTRIFUGAL CASTING MACHINES FOR PRODUCTION OF MILL ROLLS
DOI:
https://doi.org/10.15802/stp2017/104555Keywords:
centrifugal casting machine, production of double-layer mill rolls, experimental studies of fluctuations, vibration parametersAbstract
Purpose. The main purpose of experimental studies is to establish the adequacy of the developed mathematical models of machine fluctuations and the actual parameters of machine vibration. Almost all casting machines for the production of mill rolls have a unique design and performances. The additional aim of this work is to compare the vibration level of the casting machine with the requirements of the current vibration standards for new technological machines. Frequency analysis of the oscillations allows establishing defects in workmanship, errors of rotating parts installation and their influence on the dynamics of the machine. Methodology. Measurement of vibration parameters was performed on the moving parts of roller bearings of the machine. To measure the amplitudes of accelerations in three mutually perpendicular directions piezoelectric sensors with magnetic mount were used. Electrical signals from the sensors were recorded on magnetic tape. Further analysis of the oscillations was carried out and visualized using specialized frequency analyzer. The frequency analyzer implements the algorithm of fast Fourier transformation and/or integration of sensor input signal. After the first integration the data for plotting the vibration velocity spectrogram were obtained and as a result of the second integration there are the data of vibration displacements spectrogram of the machine supports. Findings. The results of experimental studies of centrifugal casting machine vibrations for the production of two-layer rolls were presented. There were obtained and analyzed the spectrograms of accelerations, velocities and displacements of moving parts of the upper and lower roller supports. The work of the machine is associated with the calculated values passing of critical frequencies and the short-term development of resonance oscillations of the rotor and roller bearings. Originality. For the first time the author obtained the frequency spectra of vibration of an industrial sample of a casting machine. The oscillations with frequencies that differ from the basic rotor frequency were detected. Practical value. Based on the results of the experiment, the actual vibration parameters of the machine in steady state when testing without die-casting the metal were determined. The adequacy of mathematical models of the dynamics of the machine and its industrial model was established. Using the method of one tone the coefficients of vibration velocity distortion of the rotor harmonic, indicating the nonlinear transformations in the system "rotor - bearings" were obtained. It was experimentally established that the vibration parameters of the machine are within the acceptable ranges, regulated by standards for vibroactive machines.
References
Anofriev, P. G., & Smirnov, G. F. (2008). Issledovaniye perekhodnykh rezhimov dvizheniya tsentrobezhnoy mashiny dlya litya valkov. Hebezeuge und Fördermittel, 1, 22-31.
Anofriev, P. G., & Smirnov, G. F. (2006). Razrabotka i issledovaniye matematicheskoy modeli dinamiki vertikalnoy liteynoy mashiny s individualnoy uprugoy podveskoy rolikoopor. Hebezeuge und Fördermittel, 3, 54-64.
Anofriev, P. G., & Smirnov, G. F. (2006). Razrabotka i issledovaniye matematicheskoy modeli dinamiki vynuzhdennykh kolebaniy vertikalnoy liteynoy mashiny s individualnoy podveskoy rolikoopor. Hebezeuge und Fördermittel, 4, 34-44.
Barkov, A. V., & Barkova, N. A. (2004). Vibratsionnaya diagnostika mashin i oborudovaniya. Analiz vibratsii. St. Petersburg: GMTU.
Chelomey, V. N. (Ed.). (1981). Izmereniya i ispytaniya (Vol. 5). In Vibratsii v tekhnike: spravochnik (Vol. 1-6). Moscow: Mashinostroenie.
Vibration. Evaluation of machine vibration by measurements on non-rotating parts. Part 3. Industrial machines with nominal power above 15 kW and nominal speeds between 120 r/min and 15000 r/min, ISO 10816-3:1998 (2007).
Zryumov, P. A., & Seleznyova, Y. V. (2014). State-of-the-art review of methods of vibration measurements. Polzunovsky vestnik, 1, 185-187.
Profos, P. (Ed.). (1990). Sposoby izmereniya i apparatura (Vol. 2). In Izmereniya v promyshlennosti: spravochnik (Vol. 1-3). (2nd ed.). Moscow: Metallurgiya.
Izmereniye i analiz mekhanicheskikh kolebaniy. (1995). Glostrup: Larsen and Son.
Kostromin, M. A., Titov, A. A., & Garipov, V. K. (2015). A Heterodyne-based Method for Measuring Object Movement Speed and Vibration Parameters. Science and Education: Scientific Publication of BMSTU, 12, 110-118. doi: 10.7463/1215.0828437
Levshina, Y. S., & Novitskiy, P. V. (1983). Elektricheskiye izmereniya fizicheskikh velichin (izmeritelnyye preobrazovateli). Leningrad: Energoatomizdat.
Maksimov, V. P., Yegorov, I. V., & Karasev, V. A. (1987). Izmereniye, obrabotka i analiz bystroperemennykh protsessov v mashinakh. Moscow: Mashinostroeniye.
Malov, V. V. (1989). Pezorezonansnyye datchiki. (2nd ed.). Moscow: Energoatomizdat.
Safarbakov, A. M., Lukyanov, A. V., & Pakhomov, S. V. (2006). Osnovy tekhnicheskoy diagnostiki. Irkutsk: IrGUPS.
Serridzh, M., & Likht, T. R. (1987). Spravochnik po pezoelektricheskim akselerometram i predusilitelyam. Glostrup: Larsen and Son.
Yurin A. I., Zlodeev, G. Y. (2016). Izmeritelnaya sistema dlya kontrolya parametrov vibratsii. In S. U. Uvaysov (Ed.), Proceedings of the XIII International Conference on Innovatsionnye, informatsionnye i kommunikatsionnye tekhnologii, October, 1-10, 2016, Sochi. 245-247. Moscow: Assotsiatsiya vypusknikov i sotrudnikov VVIA imeni professora N. Ye. Zhukovskogo. Retrieved from https://www.hse.ru/mirror/pubs/lib/data/access/ram/ticket/29/1496311497de864d668186654dfb7120626feb2266/INFO2016_Yurin.pdf
Jayaswal, P., Wadhwani, A. K., & Mulchandani, K. B. (2008). Machine Fault Signature Analysis. International Journal of Rotating Machinery, 2008, 1-10. doi: 10.1155/2008/583982
Suteu, M., Indrie, L., & Prichici, M. A. (2015). Systems proposed for measuring, monitoring and analysis vibration of machines from textile industry. Economics Management Information Technology, 4 (2), 34-41.
Downloads
Published
How to Cite
Issue
Section
License
Copyright and Licensing
This journal provides open access to all of its content.
As such, copyright for articles published in this journal is retained by the authors, under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0). The CC BY license permits commercial and non-commercial reuse. Such access is associated with increased readership and increased citation of an author's work. For more information on this approach, see the Public Knowledge Project, the Directory of Open Access Journals, or the Budapest Open Access Initiative.
The CC BY 4.0 license allows users to copy, distribute and adapt the work in any way, provided that they properly point to the author. Therefore, the editorial board of the journal does not prevent from placing published materials in third-party repositories. In order to protect manuscripts from misappropriation by unscrupulous authors, reference should be made to the original version of the work.