On the external and internal resonance phenomena of the elastic bodies with the complex oscillations

N. Huzyk, P. Pukach, B. Sokil, M. Sokil, M. Vovk
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引用次数: 2

Abstract

Complex nonlinear oscillations in the elastic bodies are studied using a priori information about the oscillations form and taking into account a refined mathematical model of the second (other) form of oscillations. Application of existing methods or development of the new ones for the analysis of received non-autonomous boundary value problems is proposed. The effectiveness of the practical implementation of the discussed methodology significantly increases in cases where the magnitude of the elastic body displacements due to the one form of oscillations is much higher than the other one. To analyze the problem one can use the well-known tested analytical methods for the systems with the small nonlinearity. Torsional and bending oscillations of the elastic body are shown as the example. It is also demonstrated that especially dangerous resonant processes can be caused not only by the external perturbations but also by the internal influence between some forms of oscillations. The obtained results allow to choose the basic technological and operational parameters of the machine oscillating elements in order to avoid the resonance phenomena.
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复振动弹性体的内外共振现象
利用振动形式的先验信息并考虑第二种(另一种)振动形式的精细数学模型,研究了弹性体中的复杂非线性振动。提出了现有方法的应用或新方法的发展,以分析接收非自治边值问题。在由一种振动形式引起的弹性体位移的幅度远远高于另一种振动形式的情况下,所讨论的方法的实际实施的有效性显着增加。为了分析这个问题,可以使用众所周知的具有小非线性的系统的测试分析方法。以弹性体的扭转振动和弯曲振动为例。还表明,特别危险的谐振过程不仅可以由外部扰动引起,还可以由某些形式的振荡之间的内部影响引起。所得结果可用于选择机床振荡元件的基本工艺参数和操作参数,以避免谐振现象的发生。
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来源期刊
Mathematical Modeling and Computing
Mathematical Modeling and Computing Computer Science-Computational Theory and Mathematics
CiteScore
1.60
自引率
0.00%
发文量
54
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