coupled vibrations
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10.1142/11717 ◽  
2020 ◽  
Author(s):  
Steve C S Cai ◽  
Lu Deng
Keyword(s):  

2020 ◽  
pp. 108128652097184
Author(s):  
Fabrizio Daví

We study the coupled macroscopic and lattice wave propagation in anisotropic crystals seen as continua with affine microstructure (or micromorphic). In the general case, we obtain qualitative information on the frequencies and the dispersion relations. These results are then specialized to crystals of the tetragonal point group for various propagation directions: exact representation for the acoustic and optic frequencies and for the coupled vibrations modes are obtained for propagation directions along the tetragonal c-axis.


Sensors ◽  
2020 ◽  
Vol 20 (21) ◽  
pp. 6340
Author(s):  
Zhong-Xiang Li ◽  
Chun Hu ◽  
De-Zhi Zheng ◽  
Shang-Chun Fan

Certain nonlinear influences are found in dual-tube Coriolis mass flowmeters (CMFs). According to experimentation, a nonlinearity dominated by frequency-doubling signals can be observed in the measuring signal. In general, such nonlinear effects are simplified as linear systems or neglected through processing. In this paper, a simplified model has been constructed for dual-beam CMFs based on the theory of nonlinear dynamics, with the spring–damper system as the medium for the dual-beam coupled vibrations. Next, the dynamics differential equation of the coupled vibrations is set up on the basis of the Lagrangian equation. Furthermore, numerical solutions are obtained using the Runge–Kutta fourth-order method. The study then fits discrete points of the numerical solutions, which are converted into the frequency domain to observe the existence of frequency-doubling signal components. Our findings show that frequency-doubling components exist in the spectrogram, proving that these nonlinear influences are a result of the motions of coupled vibrations. In this study, non-linear frequency-doubling signal sources are qualitatively analyzed to formulate a theoretical basis for CMFs design.


Author(s):  
Victor M. Ryabov ◽  
◽  
Boris A. Yartsev ◽  
Ludmila V. Parshina ◽  
◽  
...  

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