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Aeroelastic characteristics of magneto-rheological fluid sandwich beams in supersonic airflow

机译:超音速气流中磁流变流体夹层梁的气弹特性

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Supersonic aeroelastic instability of a three-layered sandwich beam of rectangular cross section with an adaptive magneto-rheological fluid (MRF) core layer is investigated. The panel is excited by an airflow along it's longitudinal direction. The problem formulation is based on classical beam theory for the face layers, magnetic field dependent complex modulus approach for viscoelastic material model and the linear first-order piston theory for aerodynamic pressure. The classical Hamilton's principle and the assumed mode method are used to set up the equations of motion. The validity of the derived formulation is confirmed through comparison with the available results in the literature. The effects of applied magnetic field, core layer thickness and constraining layer thickness on the critical aerodynamic pressure are studied. The onset of instability in terms of the critical value of the nondimensional aerodynamic pressure for the sandwich beam is calculated using the p-method scheme. Simply supported, clamped-clamped and clamped-free boundary conditions are considered. The results show that the magnetic field intensity and thickness ratios have significant effects on the instability bounds. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了具有自适应磁流变流体(MRF)芯层的矩形截面三层夹层梁的超音速气动弹性不稳定性。面板沿其纵向方向的气流被激发。问题表述基于表层的经典射束理论,粘弹性材料模型的磁场相关复数模量方法以及气动压力的线性一阶活塞理论。使用经典的汉密尔顿原理和假定模式方法来建立运动方程。通过与文献中的现有结果进行比较,可以确定衍生制剂的有效性。研究了外加磁场,芯层厚度和约束层厚度对空气动力临界压力的影响。使用p方法方案,根据夹层梁的无量纲气动压力的临界值来计算不稳定性的开始时间。考虑简单支撑,夹紧夹紧和自由夹紧的边界条件。结果表明,磁场强度和厚度比对不稳定性边界有显着影响。 (C)2016 Elsevier Ltd.保留所有权利。

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