首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >EXCITED BLADE VIBRATION FOR AEROELASTIC INVESTIGATIONS OF A ROTATING BLISK USING PIEZO-ELECTRIC MACRO FIBER COMPOSITES
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EXCITED BLADE VIBRATION FOR AEROELASTIC INVESTIGATIONS OF A ROTATING BLISK USING PIEZO-ELECTRIC MACRO FIBER COMPOSITES

机译:使用压电宏观光纤复合材料的旋转闪烁的气动调查激发刀片振动

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Experimental investigations of the aerodynamic damping of compressor blades are usually performed by forcing the blades externally to a motion that is similar to a given mode shape and inter-blade phase angle (IBPA) while measuring the motion-induced unsteady pressure distribution. Evaluating this to an aerodynamic work entry from the fluid to the blade, at least a local contribution to the flutter (in-)stability can be determined. Test rigs are usually non-rotating linear or rotating annular cascade wind tunnels. In the latter case, besides measuring in and transmitting data out of the rotating system, the excitation of the blades themselves is still a challenge.In the present case a blisk rotor with realistic fan blade geometries and flow conditions was investigated aeroelastically.For the excitation of the 1st bending (1F) mode shape of the blading a sector of five blades was chosen. In this sector the natural vibration of the blading, represented by constant vibration amplitudes and a given IBPA should be simulated. Therefore the blades were equipped with Macro Fiber Composites (MFC). These foils of piezoelectric material expand and contract due to the applied high voltage. A control system was developed to adjust the amplitude and the IBPA of the blade vibration. For the transmission of the high voltage, a separate data transmission system on the base of liquid metals was chosen. The blade vibration was measured by strain gauges and additionally monitored by a specific rig system.The aeroelastic investigations were carried out in the compressor test facility M2VP of the DLR Institute of Propulsion Technology in Cologne. During the measurement, the MFCs were able to excite the blades to a certain extent. The paper will present the technique to excite the blades of a compressor blisk by means of MFCs as well as achieved vibration amplitudes and limitations under engine-like operating conditions.
机译:压缩机叶片的空气动力学阻尼的实验研究通常是通过在外部施加到类似于给定模式形状和叶片相位角(IBPA)的运动中的运动来执行,同时测量运动引起的不稳定压力分布。从流体到刀片的空气动力学工作条目评估这一点,可以确定至少对颤振(In-)稳定性的局部贡献。试验台通常是非旋转的线性或旋转环形级联风隧道。在后一种情况下,除了在测量和发送数据从旋转系统的,叶片本身的激励仍challenge.In本情况下的整体叶盘转子具有现实风扇叶片的几何形状和流动条件进行了研究aeroelastically.For激发叶片装置的五个叶片的扇区的第一弯曲(1F)模式形状的选择。在该扇区中,应模拟由恒定振动振动幅度和给定IBPA表示的叶片的自然振动。因此,叶片配备有宏观纤维复合材料(MFC)。由于施加的高压,这些压电材料的箔膨胀和收缩。开发了一种控制系统以调整叶片振动的幅度和IBPA。为了使高电压的传输,选择在液体金属基部的单独数据传输系统。叶片振动是由应变仪测量的,并通过一个特定的系统。钻机气动弹性调查另外监视在压缩机测试设施推进技术科隆DLR研究所M2VP中进行。在测量过程中,MFC能够在一定程度上激发刀片。本文将借助MFCS将压缩机闪烁的刀片展示该技术,以及在发动机的操作条件下实现振动幅度和限制。

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