首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Explicit Finite Element Models of Friction Dampers in Forced Response Analysis of Bladed Disks
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Explicit Finite Element Models of Friction Dampers in Forced Response Analysis of Bladed Disks

机译:叶片盘强迫响应分析中摩擦阻尼器的显式有限元模型。

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摘要

A generic method for analysis of nonlinear forced response for bladed disks with friction dampers of different designs has been developed. The method uses explicit finite element modeling of dampers, which allows accurate description of flexibility and, for the first time, dynamic properties of dampers of different designs in multiharmonic analysis of bladed disks. Large-scale finite element damper and bladed disk models containing 10~4 -10~6 degrees of freedom can be used. These models, together with detailed description of contact interactions over contact interface areas, allow for any level of refinement required for modeling of elastic damper bodies and for modeling of friction contact interactions. Numerical studies of realistic bladed disks have been performed with three different types of underplatform dampers: (ⅰ) a "cottage-roof (also called "wedge") damper, (ⅱ) seal wire damper, and (ⅲ) a strip damper. Effects of contact interface parameters and excitation levels on damping properties of the dampers and forced response are extensively explored.
机译:已经开发了一种通用的方法,用于分析具有不同设计的摩擦阻尼器的叶片盘的非线性力响应。该方法使用阻尼器的显式有限元建模,该模型可精确描述灵活性,并首次在叶片盘的多谐波分析中描述不同设计的阻尼器的动态特性。可以使用包含10〜4 -10〜6自由度的大型有限元阻尼器和叶片盘模型。这些模型以及在接触界面区域上的接触相互作用的详细描述,允许对弹性阻尼器主体进行建模以及对摩擦接触相互作用进行建模所需的任何水平的改进​​。已使用三种不同类型的地下平台阻尼器进行了实用叶片盘的数值研究:(ⅰ)“山寨屋顶(也称为“楔形”)阻尼器,(ⅱ)密封线阻尼器和(ⅲ)条形阻尼器。接触界面参数和激励水平对阻尼器的阻尼特性和强制响应的影响被广泛研究。

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