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Dynamic Response of a Simplified Turbine Blade Model with Under-Platform Dry Friction Dampers Considering Normal Load Variation

机译:考虑正常载荷变化的带有平台下干式摩擦阻尼器的简化涡轮叶片模型的动力响应

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Dry friction dampers are widely used to reduce vibration. The forced vibration response of a simplified turbine blade with a new kind of under-platform dry friction dampers is studied in this paper. The model consists of a clamped blade as two rigidly connected beams and two dampers in the form of masses which are allowed to slide along the blade platform in the horizontal direction and vibrate with the blade platform in the vertical direction. The horizontal and vertical vibrations of the two dampers, and the horizontal and transverse platform vibrations are coupled by friction at the contact interfaces which is assumed to follow the classical discontinuous Coulomb’s law of friction. The vertical motion of the dampers leads to time-varying contact forces and can cause horizontal stick-slip motion between the contact surfaces. Due to the relative horizontal motion between the dampers and the blade platform, the vertical contact forces and the resultant friction forces act as moving loads. The Finite Element (FE) method and Modal Superposition (MS) method are applied to solve the dynamic response, together with an algorithm that can capture nonsmooth transitions from stick to slip and slip to stick. Quasi-periodic vibration is found even under harmonic excitation.
机译:干式摩擦阻尼器被广泛用于减少振动。本文研究了带有新型平台下干式摩擦阻尼器的简化涡轮叶片的强迫振动响应。该模型由一个作为两个刚性连接梁的夹紧刀片和两个质量块形式的阻尼器组成,这些阻尼器允许沿着刀片平台在水平方向上滑动并与刀片平台在垂直方向上振动。两个阻尼器的水平和垂直振动以及平台的水平和横向振动在接触界面处通过摩擦耦合,这被认为遵循经典的不连续库仑摩擦定律。阻尼器的垂直运动会导致时变接触力,并可能导致接触面之间的水平粘滑运动。由于减震器和叶片平台之间的相对水平运动,垂直接触力和所产生的摩擦力充当移动负载。有限元(FE)方法和模态叠加(MS)方法用于求解动态响应,以及一种算法,该算法可以捕获从棒到滑移和从棒到滑移的非平滑过渡。即使在谐波激励下,也会发现准周期振动。

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