Dynamic Stability of Monosymmetrical Thin-Walled Structures

1972 ◽  
Vol 39 (4) ◽  
pp. 1055-1059 ◽  
Author(s):  
A. A. Ghobarah

A study is made on the dynamic stability of thin-walled beams of monosymmetrical cross section. Under the action of axial periodic loads, the parametric excitation of the coupled flexural-torsional type of vibrations is investigated. The nonlinear differential equations and the appropriate boundary conditions used in the analysis of the problem were obtained using the energy formulation. The effect of large angles of rotation and the effect of longitudinal deformations were taken into account. The parametric stability of a thin-walled beam of monosymmetrical split ring section is studied. The study included the establishment of the regions of parametric instability. The steady-state response and the transient growth of the amplitude of oscillations are investigated when the system is parametrically excited. Attention is focused on the response when the coupled flexural-torsional type of vibrations of predominant torsional characteristics is excited. The effect of viscous damping on the steady-state and the transient responses is also included in the analysis.

Author(s):  
Bakhtiyar Khudayarov ◽  
Fozilzhon Turaev ◽  
Valizhon Vakhobov ◽  
Otabek Gulamov ◽  
Sa’dulla Shodiyev

Author(s):  
В.С. Тынченко ◽  
С.О. Курашкин ◽  
Д.В. Рогова

В статье рассматривается проблема оптимизации режима ввода электронного луча при сварке тонкостенных конструкций. Предлагается математическая модель позволяющая формировать технологический режим ввода луча с минимальным временем выхода процесса на установившейся режим и максимально эффективным распределением энергии. Optimization of the electron beam input mode during welding of the thin-walled structures The article deals with the problem of optimizing the mode of electron-beam input when welding thin-walled structures. A mathematical model is proposed that allows the formation of a technological mode of beam input with a minimum time for the process to reach a steady state and the most efficient energy distribution.


2018 ◽  
Vol 762 (8) ◽  
pp. 36-39 ◽  
Author(s):  
B.G. BULATOV ◽  
◽  
R.I. SHIGAPOV ◽  
M.A. IVLEV ◽  
I.V. NEDOSEKO ◽  
...  

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