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Coupled bending-torsion flutter investigation of MRE tapered sandwich blades in a turbomachinery cascade

机译:涡轮机械级联MRE锥形夹层叶片的耦合弯曲扭转颤动调查

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This paper studies the effects of bending-torsion coupling on the flutter stability boundaries of a turbomachinery cascade with Magnetorheological Elastomer (MRE) based sandwich blades. The blade structure is considered as a non-uniform sandwich beam with an embedded MRE core. The governing equations of bending and torsional motions are obtained based on the classical sandwich beam theory and the unsteady Whitehead aerodynamic theory is applied for modeling of the aerodynamic flow. The equations of motion governing on the coupled aemelastic system have been derived in a discrete form by Lagrange's equations and using the assumed modes method. The stability analysis is performed and the effects of various parameters such as coupling, magnetic field, taper ratios and different mistuning patterns on the flutter characteristics have been investigated. The results indicate that the flutter stability is clearly affected by the interaction between the bending and torsional motions which is in agreement with the results previously obtained for a typical cascade. The results also indicate that the change of blade cross sectional area has a significant effect on the flutter boundaries.
机译:本文研究了弯曲扭转耦合对摩托车级联(MRE)夹层叶片的涡轮机械级联涡轮机级联的颤振稳定性边界的影响。刀片结构被认为是具有嵌入式MRE芯的非均匀夹层梁。基于经典的夹层光束理论获得弯曲和扭转运动的控制方程,并且不稳定的白头空气动力学理论用于建模空气动力学。通过Lagrange的方程和使用假定的模式方法,以离散形式导出的耦合耦合的Aemelastic系统上的运动方程。已经研究了稳定性分析,并且已经研究了诸如耦合,磁场,锥度比和不同迷雾模式的各种参数对颤振特性的影响。结果表明,颤振稳定性明显受弯曲和扭转运动之间的相互作用的影响,这与先前获得典型级联的结果是一致的。结果还表明叶片横截面积的变化对颤振界具有显着影响。

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