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首页> 外文期刊>International journal of non-linear mechanics >The effect of underplatform dampers on the forced response of bladed disks by a coupled static/dynamic harmonic balance method
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The effect of underplatform dampers on the forced response of bladed disks by a coupled static/dynamic harmonic balance method

机译:平台下阻尼器通过静态/动态谐波平衡法对叶片盘的强制响应的影响

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摘要

Friction contacts are often used in turbomachinery design as passive damping systems. In particular, underplatform dampers are mechanical devices used to decrease the vibration amplitudes of bladed disks. Numerical codes are used to optimize during designing the underplatform damper effectiveness in order to limit the resonant stress level of the blades. In such codes, the contact model plays the most relevant role in calculation of the dissipated energy at friction interfaces. One of the most important contact parameters to consider in order to calculate the forced response of blades assembly is the static normal load acting at the contact, since its value strongly affects the area of the hysteresis loop of the tangential force, and therefore the amount of dissipation. A common procedure to estimate the static normal loads acting on underplatform dampers consists in decoupling the static and the dynamic balance of the damper. A preliminary static analysis of the contact is performed in order to get the static contact/gap status to use in the calculation, assuming that it does not change when vibration occurs. In this paper, a novel approach is proposed. The static and the dynamic displacements of the system (biaded disk+underplatform dampers) are coupled together during the forced response calculation. Static loads acting at the contacts follow from static displacements and no preliminary static analysis of the system is necessary. The proposed method is applied to a numerical test case representing a simplified bladed disk with underplatform dampers. Results are compared with those obtained with the classical approach.
机译:摩擦触点通常在涡轮机械设计中用作被动阻尼系统。特别地,平台下阻尼器是用于减小带叶片的盘的振动幅度的机械装置。为了限制叶片的共振应力水平,在设计平台下阻尼器的效率时使用了数字代码进行优化。在这样的代码中,接触模型在计算摩擦界面的耗散能量时起着最重要的作用。为了计算叶片组件的强制响应,要考虑的最重要的接触参数之一是作用在接触上的静态法向载荷,因为其值会强烈影响切向力的磁滞回线的面积,从而影响切向力的大小。耗散。估算作用在平台下阻尼器上的静态法向载荷的常用程序是将阻尼器的静态和动态平衡解耦。进行接触的初步静态分析,以获取要在计算中使用的静态接触/间隙状态,并假设在发生振动时该状态不变。本文提出了一种新颖的方法。在强制响应计算过程中,系统的静态和动态位移(偏斜盘+平台下阻尼器)耦合在一起。作用在触点上的静载荷来自静位移,因此无需对系统进行初步的静力分析。所提出的方法被应用于数值测试案例,该案例代表了带有平台下阻尼器的简化叶片盘。将结果与经典方法获得的结果进行比较。

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