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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >Prediction of resonant response of shrouded blades with three-dimensional shroud constraint
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Prediction of resonant response of shrouded blades with three-dimensional shroud constraint

机译:基于三维护罩约束的护罩叶片谐振响应预测

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In this paper, the three-dimensional shroud contact kinematics of a shrouded blade system is studied. The assumed blade motion has three components, namely axial, tangential, and radial components, which result in a three dimensional relativemotion across the shroud interface. The resulting relative motion can be decomposed into two components. The first one is on the contact plane and can induce stick-slip friction. The other component is perpendicular to the contact plane and can causevariation of the contact normal load and, in extreme circumstances, separation of the two contacting surfaces. In order to estimate the equivalent stiffness and damping of the shroud contact an approach is proposed. In this approach, the in-plane slipmotion is assumed to be elliptical and is decomposed into two linear motions along the principal major and minor axes of the ellipse. A variable normal load friction force model (Yang and Menq, 1996) is then applied separately to each individual linearmotion, and the equivalent stiffness and damping of the shroud contact can be approximately estimated. With the estimated stiffness and damping, the developed shroud contact model is applied to the prediction of the resonant response of a shrouded bladesystem. The effects of two different shroud constraint conditions, namely two-dimensional constraint and three-dimensional constraint, on the resonant response of a shrouded blade system are compared and the results are discussed.
机译:本文研究了护罩叶片系统的三维护罩接触运动学。假设的叶片运动有三个分量,即轴向分量、切向分量和径向分量,这导致在护罩界面上产生三维相对运动。由此产生的相对运动可以分解为两个分量。第一个在接触面上,会引起粘滑摩擦。另一个组件垂直于接触面,可能导致接触法向载荷的变化,在极端情况下,会导致两个接触面分离。为了估计护罩接触的等效刚度和阻尼,提出了一种方法。在这种方法中,假设面内滑移运动是椭圆的,并沿椭圆的主长轴和短轴分解为两个直线运动。然后将可变法向载荷摩擦力模型(Yang 和 Menq,1996 年)分别应用于每个单独的线性运动,并且可以近似估计护罩接触的等效刚度和阻尼。在估计刚度和阻尼的基础上,将所建立的护罩接触模型应用于护罩叶片系统的谐振响应预测。比较了两种不同的护罩约束条件(二维约束和三维约束)对护罩叶片系统谐振响应的影响,并讨论了结果。

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