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MULTIHARMONIC ANALYSIS AND DESIGN OF SHROUD FRICTION JOINTS OF BLADED DISKS SUBJECT TO MICROSLIP

机译:微型刮刀对圆盘摩擦摩擦力的多谐分析与设计

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摘要

Vibration reduction of turbine blades by means of friction damping in shroud joints is a well-established technology in the field of turbomachinery dynamics. Three-dimensional contact constraints in the shroud coupling can induce highly nonlinear dynamics in the bladed disk assembly. Moreover, large normal contact stresses, which are typical for this application, necessitate the consideration of microslip effects. This study focuses on the accurate prediction of the forced response of tuned bladed disks subject to friction joints. In order to account for extended friction interfaces, the contact area is discretized into several contact points. Microslip behavior is explicitly enforced by a non-uniform normal pressure distribution. Local elastic properties of the contact area are accurately captured in the reduced order model of the structure by employing a component mode synthesis method. The steady-state forced response is efficiently computed using a Multi-Harmonic Bal- ance ansatz. Thus, it is possible to study and explain the occurrence of internal resonances. Planar Coulomb friction and unilateral normal contact conditions are considered in terms of the Dynamic Lagrangian formulation. The normal preload of the shroud interface is varied in order to study the effect on vibration amplitude and resonance frequency.
机译:通过护罩接头中的摩擦阻尼来减少涡轮机叶片的振动是涡轮机械动力学领域中的一项成熟技术。护罩联轴器中的三维接触约束会在叶片式磁盘组件中引起高度非线性的动力学。此外,对于该应用而言典型的大法向接触应力需要考虑微滑动效应。这项研究的重点是精确预测受摩擦接头影响的调整后的叶片盘的受力响应。为了解决扩展的摩擦界面,将接触区域离散为几个接触点。微滑动行为是由不均匀的法向压力分布明确地强制执行的。通过采用组件模式合成方法,可以在结构的降阶模型中准确捕获接触区域的局部弹性。使用多谐波平衡ansatz可以有效地计算稳态强制响应。因此,有可能研究和解释内部共振的发生。平面库仑摩擦力和单侧法向接触条件根据动态拉格朗日公式考虑。为了研究对振动幅度和共振频率的影响,改变了罩接口的正常预载。

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