Use moded bar of variable cross section in vibration analysis of telescopic boom system of truck-mounted cranes
DOI:
https://doi.org/10.31548/machenergy2020.01.141Keywords:
model, rod, variable section, analysis, oscillations, telescopic boom system, truck cranes.Abstract
The discrete-continual model of the rod of variable section for the analysis of oscillations of telescopic rotor systems of cranes is substantiated. As methods for solving the basic equations (for bending type oscillations), the methods of Ritz and Budnov-Galerkin using the Relay formula are used to calculate the proper frequency of oscillations of the considered system using a model with lumped parameters (discrete models) and taking into account the distributed properties of the systems being studied. The approaches used for the thorough analysis of the continual (distributed) properties of telescopic boom systems of mobile cranes and the analysis of variations of oscillations (longitudinal, twisting and bent) of telescopic boom systems of autocranes taking into account the circumstances of mass distribution along the arrow (rod) with a variable section of the rod along its length. Approximate methods of analysis and improvement of methods for calculating various types of oscillations that arise in the rods of a variable section are presented, within the framework of consideration of telescopic boom systems of cranes as having discrete - continual properties. Equations are constructed using the Bubnov- Galerkin method in the problems of longitudinal or steep oscillations of telescopic rotor systems of cranes.References
Lovejkin, V. S. & Pochka, K. I. (2004). The dynamic analysis of roller forming installation with the rekuperativ drive. Dynamics, durability and reliability of farm vehicles. Works of the first International scientific and technical conference (DSR AM-I), 507-514. Ternopil.
Lovejkin, V. S. & Pochka, K. I. (2007). Results of pilot studies of the modes of the movement of roller forming installation with the rekuperativ drive. The bulletin of the Kharkov national university of agriculture of P. Vasilenko, vol. 1, No. 59, 465-474.
Nazarenko, I. I., Smirnov, V. M., Pelevin, L. E., Fomin, A. V., Sviders'kij, A. T., Kostenjuk, O. O., Ruchins'kij, M. M., Djedov, O. P., Garkavenko, O. M. & Martinjuk, I. Ju. (2013). Bases of the theory of the movement of the digging and condensing cars of the construction industry with the optimum parameters operated in time. Kyiv: MP Lesja.
Zaichenko, S., Shalenko, V., Shevchuk, N. & Vapnichna, V. (2017). Development of a geomechanic complex for geotechnical monitoring contour mine groove. Eastern-European Journal of Enterprise Technologies, vol. 3/9 (87), 19-25.
https://doi.org/10.15587/1729-4061.2017.102067
Garnec,' V. M., Chovnjuk, Ju. V., Zajchenko, S. V., Shalenko, V. O. & Prihod'ko, Ja. S. (2014). Theory and practice of creation of units of formation of concrete. Mining, construction, road and meliorative machines, No. 83, 49-54.
Garnec,' V. M., Zajchenko, S. V., Prihod'ko, Ja. S. & Shalenko, V. O. (2012). Development of scientific and practical recommendations about creation of units of formation of concrete. Mining, construction, road and meliorative machines, No. 79, 46-52.
Zajchenko, S. V., Shevchuk, S. P., Garnec,' V. M. (2012). Power analysis of process of roller consolidation. Power: Economy, technology, ecology, No. 1 (30), 77-83.
Zajchenko, S. V., Shevchuk, S. P., Garnec,' V. M. (2012). Three-dimensional modeling of process of roller consolidation of column fastening. Mining, construction, road and meliorative machines, No. 79, 40-45.
Prihod'ko, Ja., S. & Garnec,' V. M. (2012). Interconsistency of operation of mechanisms at roller and extrusive formation of multihollow products. Branch mechanical engineering, construction, No. 1 (31), 305-310.
Lovejkin, V. S. & Pochka, K. I. (2007). Determination of optimum value of a corner of shift of cranks of roller forming installation with the recuperative drive. Automation of productions in mechanical engineering and instrument making, National University "Lvіv Polyequipment", No. 41, 127-134.
Lovejkin, V. S. & Pochka, K. I. (2008). Definition of loadings in elements of roller forming installations. Collection of scientific works of Ukrainian state academy of railway transport, No 88, 15-20.
Lovejkin, V. S. & Pochka, K. I. (2007). Definition of loadings in elements of roller forming installation. Theory and practice of construction, No. 3, 19-23.
Lovejkin, V. S. & Pochka, K. I. (2012). Research of dynamic loadings in elements of roller forming installations. Formation of Modern Science - 2012: Materials VIII of the intern. sci. and pract. conf. Section 18. Technical science. Formation of information technologies, Praha, 20-25.
Lovejkin, V. S. & Pochka, K. I. (2015). Research of loadings in elements of roller forming installation with the balanced drive. Automation of productions in mechanical engineering and instrument making, National University "Lviv Polyequipment", No 49, 73-79
Lovejkin, V. S. & Pochka, K. I. (2016). Analysis of dynamic equilibration of drives of cars of roller formation. MOTROL. Commission of Motorization and Energetics in Agriculture, Lublin-Rzeszow, vol. 18, No 3, 41-52.
Pat. 32838 UA, IPC B28B 13/00, Installation for formation of products from concrete mixes, Lovejkin, V. S., Jaroshenko, V. F., Pochka, K. I., Publ. 10.06.2008.
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