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Thermal Effects on Nonlinear Vibrations of an Axially Moving Beam with an Intermediate Spring-Mass Support

机译:具有中间弹簧-质量支撑的轴向运动梁的非线性振动的热效应

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摘要

The thermo-mechanical nonlinear vibrations and stability of a hinged-hinged axially moving beam, additionally supported by a nonlinear spring-mass support are examined via two numerical techniques. The system is subjected to a transverse harmonic excitation force as well as a thermal loading. Hamilton's principle is employed to derive the equations of motion; it is discretized into a multi-degree-freedom system by means of the Galerkin method. The steady state resonant response of the system for both cases with and without an internal resonance between the first two modes is examined via the pseudo-arclength continuation technique. In the second method, direct time integration is employed to construct bifurcation diagrams of Poincaré maps of the system.
机译:通过两种数值技术研究了附加有非线性弹簧质量支撑的铰接铰接轴向移动梁的热机械非线性振动和稳定性。该系统承受横向谐波激励力以及热负荷。汉密尔顿原理被用来推导运动方程。它通过Galerkin方法离散为一个多自由度系统。通过伪弧长连续技术检查了在前两种模式之间有内部谐振和没有内部谐振的两种情况下系统的稳态谐振响应。在第二种方法中,采用直接时间积分来构造系统的庞加莱图的分歧图。

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