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Numerical investigation of rub-induced composite fan blade vibrations and abradable coating removals

机译:摩擦引起的复合材料风扇叶片振动和耐磨涂层去除的数值研究

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摘要

Composite blade vibrations, removal of abradable coating, and blade stress resulting from blade/casing rubs are investigated. Composite fan blade models with different stacking sequences and a metal blade are created and calculated through a three-dimensional finite element method. Centrifugal stiffness, damping of composite structures, B-spline surfaces, and abradable coating are included in the calculations. The results show that the maximum vibration amplitudes of composite blades at different rotational speeds could be affected by stacking sequences. The responses of metal blade are more sensitive to the natural frequencies of the second to the fifth blade modes than those of the composite blades. Abradable coating removals are highly related to blade vibration amplitudes. Considerably more coatings are removed by the metal blade than by the composite blades at the design speed, particularly in the axial direction. Moreover, according to the stress results, the metal blade is more vulnerable to rub-induced vibrations than the composite blades at the design speed. Larger vibration amplitudes in the composite blades do not necessarily lead to lower failure margins because of the complexity of composite structures. The strategy established can be utilized to aid in the initial designs of state-of-the-art composite blades and reduce potential rub-induced problems.
机译:研究了复合材料叶片的振动,耐磨涂层的去除以及叶片/套管摩擦产生的叶片应力。通过三维有限元方法创建并计算了具有不同堆叠顺序的复合风扇叶片模型和金属叶片。计算中包括离心刚度,复合结构的阻尼,B样条表面和耐磨涂层。结果表明,不同转速下复合材料叶片的最大振动幅值可能受到叠加顺序的影响。金属叶片的响应比复合叶片的响应对第二至第五叶片模式的固有频率更敏感。可去除的涂层去除与叶片振动幅度高度相关。在设计速度下,特别是在轴向方向上,金属刀片去除的涂层比复合材料刀片去除的涂层多得多。而且,根据应力结果,在设计速度下,金属叶片比复合叶片更容易受到摩擦引起的振动的影响。由于复合材料结构的复杂性,复合材料叶片中较大的振动幅度不一定会导致较低的故障裕度。建立的策略可用于协助最先进的复合材料叶片的初始设计并减少潜在的摩擦引起的问题。

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