scholarly journals Forced Oscillations of a Continuous Rotor with Strong Geometric Nonlinearity. Separation of Resonance Point by Effect of Gravity and Axial Force.

2002 ◽  
Vol 68 (675) ◽  
pp. 3268-3275
Author(s):  
Imao NAGASAKA ◽  
Jun LIU ◽  
Yukio ISHJDA ◽  
Kouta KATOU
Author(s):  
Yukio Ishida ◽  
Imao Nagasaka ◽  
Seongwoo Lee

Abstract Harmonic resonances and subharmonic resonances of order 1/2 and order 1/3 in a continuous rotating shaft with distributed mass are discussed. The restoring force of the shaft has geometric stiffening nonlinearity due to the extension of the shaft center line. It is supposed that a distributed bias force, such as the gravity, works. The possibility of their occurrences, the shapes of resonance curves, and internal resonance phenomena are investigated.


1996 ◽  
Vol 11 (2) ◽  
pp. 107-120 ◽  
Author(s):  
Yukio Ishida ◽  
Imao Nagasaka ◽  
Tsuyoshi Inoue ◽  
Seongwoo Lee

2019 ◽  
Vol 262 ◽  
pp. 09003
Author(s):  
Antoni Biegus ◽  
Dariusz Czepiżak

The aim of this paper is research of the equivalent stabilizing forces of the braced top flange of the truss. The study takes into account the initial bow imperfection e0 of the braced top flange and the im-perfection consisting in a twist of the roof girder’s principal plane by angle ϕ0(x). Moreover, axial force N3(x) in the top flange of the truss is assumed to be longitudinally parabolically variable. The values of the axial forces is: Nsupp in the support zone of the truss and Nspan in the central zone of truss. As part of this study parametric analyses of the equivalent stabilizing forces and the stress of the bracings depending on axial forces Nsupp and Nspan in the braced member were carried out. The results are compared with the results of numerical analyses of 3D models taking the geometric nonlinearity of the structure into account.


2008 ◽  
Vol 130 (3) ◽  
Author(s):  
Imao Nagasaka ◽  
Yukio Ishida ◽  
Jun Liu

Forced oscillations in the vicinities of both the major and the secondary critical speeds of a continuous asymmetrical rotor with the geometric nonlinearity are discussed. When the self-aligning double-row ball bearings support the slender flexible rotor at both ends, the geometric nonlinearity appears due to the stiffening effect in elongation of the shaft if the movements of the bearings in the longitudinal direction are restricted. The nonlinearity is symmetric when the rotor is supported vertically, and is asymmetric when it is supported horizontally. Because the rotor is slender, the natural frequency pfn of a forward whirling mode and pbn of a backward whirling mode have the relation of internal resonance pfn:pbn=1:(−1). Due to the influence of the internal resonance, various phenomena occur, such as Hopf bifurcation, an almost periodic motion, the appearance of new branches, and the diminish of unstable region. These phenomena were clarified theoretically and experimentally. Moreover, this paper focuses on the influences of the nonlinearity, the unbalance, the damping, and the lateral force on the vibration characteristics.


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