首页> 外文期刊>Journal of thermal stresses >DYNAMICS AND ACTIVE BENDING VIBRATION CONTROL OF TURBOMACHINERY ROTATING BLADES FEATURING TEMPERATURE-DEPENDENT MATERIAL PROPERTIES
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DYNAMICS AND ACTIVE BENDING VIBRATION CONTROL OF TURBOMACHINERY ROTATING BLADES FEATURING TEMPERATURE-DEPENDENT MATERIAL PROPERTIES

机译:涡轮旋转叶片动态特性相关的动力学和主动弯曲振动控制

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摘要

The problem of bending vibration, dynamic response, and actively dynamic control of rotating beams of nonuniform cross section, operating in a temperature field and impacted by a blast, is addressed. The structural model is in the form of a thin-walled beam whose material properties are considered to be temperature dependent. The implemented vibration control methodology is based on the piezoelectric strain actuation. In this context, a system of piezo actuators bonded to the structure surface that are spread over the entire span of the beam and actuated out of phase is considered. As a result, a control bending moment is piezoelectrically induced at the beam tip. In the context of this paper, to control the free and forced vibration, velocity feedback control is implemented. The considered control methodology is also useful toward counteracting the deleterious effects induced by the thermal degradation of material properties of blade structure. Results highlighting the effects of the blade taper on bending natural frequencies, as well as of the temperature and time-dependent external excitation on the open/closed-loop bending dynamic response are presented, and pertinent conclusions are drawn.
机译:解决了在温度场中工作并受到爆炸影响的不均匀横截面旋转梁的弯曲振动,动态响应和主动动态控制的问题。结构模型采用薄壁梁的形式,其材料属性被认为与温度有关。实施的振动控制方法基于压电应变致动。在本文中,考虑了一种压电致动器系统,该系统结合到结构表面,该系统分布在梁的整个跨度上,并且异相致动。结果,在梁末端压电地产生控制弯曲力矩。在本文中,为了控制自由振动和强制振动,实现了速度反馈控制。所考虑的控制方法对于抵消由叶片结构的材料特性的热降解引起的有害影响也是有用的。结果突出了叶片锥度对弯曲固有频率的影响,以及温度和时间相关的外部激励对开/闭环弯曲动力响应的影响,并得出了相关的结论。

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