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FORCED RESPONSE OF SHROUDED BLADED DISC ASSEMBLIES: A JOINTED EXPERIMENTAL NUMERICAL APPROACH

机译:压缩叶片盘组件的强制响应:一种联合的实验数值方法

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The objective of the proposed study is to progress towards a better modeling of bladed assemblies dynamic. Coupling devices are introduced in bladed stages to increase frequencies of resonance above the range of possible excitations. Commonly they are not only used to stiffen flexible structures but also to increase damping by dry friction, reducing the amplitude of vibration. Consequently, the resulting dynamic behavior is complex and highly non linear. In order to improve numerical capabilities used for the design of part span shrouds and to gain a better understanding of the dynamic behavior of shrouded assemblies, a jointed experimental and numerical approach has been conducted. A first experimental test based on a cantilever beam is considered. The beam, excited by a controlled electrodynamic shaker, is associated to a dry friction damper at its free end. A numerical finite element analysis and a macroslip model of contact has been developed. The solution method in time domain allows accurate computations of response levels and gives the main harmonics of the steady state response. Comparison between numerical and experimental results is very good. A second experimental set up is constituted by an assembly of 13 beams, cyclically mounted around a common disk and linked by geometrically simplified shrouds. The set up allows controlling the resultant forces in the contact and is able to exhibit all states of contact from fully slipping to fully stuck. The first results obtained are associated to a single couple of blades brought into contact.
机译:拟议研究的目的是朝着叶片组件动力学的更好建模发展。在叶片阶段引入耦合装置,以将共振频率增加到可能的激发范围之上。通常,它们不仅用于加固柔性结构,还用于通过干摩擦来增加阻尼,从而减小振动幅度。因此,产生的动态行为是复杂的并且高度非线性。为了提高用于零件跨度围带设计的数值能力,并更好地理解围带组件的动态性能,进行了联合实验和数值方法。考虑基于悬臂梁的第一实验测试。由受控的电动振动器激发的梁在其自由端与干式摩擦阻尼器相连。已经开发了接触的数值有限元分析和宏观滑移模型。时域的求解方法可以精确计算响应水平,并给出稳态响应的主要谐波。数值和实验结果之间的比较非常好。第二个实验装置由13个梁的组件组成,这些梁周期性地安装在一个共用的圆盘上,并通过几何简化的护罩进行连接。该设置允许控制接触中的合力,并能够显示从完全滑动到完全卡住的所有接触状态。获得的第一个结果与一对接触的刀片相关。

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