Title :
About features of dependence - the moment - a corner of turn - for element of the vibro-protecting system mechanism
Author :
Pustovoy, N.V. ; Levin, V.E.
Author_Institution :
Novosibirsk State Tech. Univ., Russia
fDate :
26 June-3 July 2004
Abstract :
The mechanical system serving as a basis of the mechanism of vibro-protecting system [Lee, C-M, et al., 1999] is considered. It represents the rod jammed on one hand which is attached by the other end face to the cylinder rotating on a support. For reduction of a rod into position the support moves on some distance in the direction of closing up. Thus the rod loses stability and deviates the equilibrium rectilinear form. At work vibro-protecting systems loading on a rod is transferred as the moment on the right support. At some value of the enclosed moment the rod can lose stability again. The problem of calculation dependence - a moment - corner of turn - on the right support is put. This dependence is necessary for the adjustment of the vibro-protecting mechanism and for the selection of parameters of the proof-reader of rigidity, and the "falling" site of this dependence is most interesting. In [(Levin, VE, 2000), (Pustovoy, NV, 2003)] the algorithm of calculation of deformation of a curvilinear core resulted on the basis of the nonlinear equations and use of a method of shooting. In the same place, the example calculation of a part of the diagram - the moment - a corner of turn for the real mechanism is shown. In the considered article, results of calculation of such characteristics for a modelling rod are shown. Some important features of the received results which need to be taken into account at designing similar systems are marked.
Keywords :
deformation; nonlinear equations; rods (structures); shear modulus; supports; vibrations; curvilinear core; deformation; equilibrium rectilinear form; mechanical system; nonlinear equations; rigidity; rod; shooting method; support; vibro-protecting system element; Automotive engineering; Automotive materials; Fuels; Laser beams; Laser fusion; Laser modes; Manufacturing; Optical beams; Optical materials; Spot welding;
Conference_Titel :
Science and Technology, 2004. KORUS 2004. Proceedings. The 8th Russian-Korean International Symposium on
Print_ISBN :
0-7803-8383-4
DOI :
10.1109/KORUS.2004.1555274