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Parametric-primary resonance of current-carrying ferromagnetic beam in coupled magnetic-temperature fields

机译:耦合磁温田电流携带铁磁梁的参数初级谐振

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A differential equation is derived to analyze the current-carrying ferromagnetic beam in coupled magnetic-temperature fields by means of Galerkin method. Melnikov's function is used to get the necessary critical condition for the chaotic motion of the system in primary resonance. In this system, the phenomenon of chaotic motion couldn't be found. Based on the multiple scales method for nonlinear vibration analysis, the first approximation solutions and the stability corresponding to steady state solutions of the parametric-primary resonance system are obtained. Numerical analysis results show that the temperature can change the internal frequency and the value of amplitude obviously.
机译:通过Galerkin方法推导出差动方程以分析耦合磁温场的电流携带的铁磁束。 Melnikov的功能用于获得初级共振中系统的混沌运动的必要临界条件。在该系统中,找不到混沌运动的现象。基于用于非线性振动分析的多个尺度方法,获得了第一近似解和对应于参数谐振系统的稳态解对应的稳定性。数值分析结果表明,温度可以显着改变内部频率和幅度的值。

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