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Optical Tip Clearance Measurements as a Tool for Rotating Disk Characterization

机译:光学尖端间隙测量作为旋转圆盘表征的工具

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An experimental investigation on the vibrational behavior of a rotating disk by means of three optical fiber sensors is presented. The disk, which is a scale model of the real disk of an aircraft engine, was assembled in a wind tunnel in order to simulate real operation conditions. The pressure difference between the upstream and downstream sides of the disk causes an airflow that might force the disk to vibrate. To characterize this vibration, a set of parameters was determined by measuring the tip clearance of the disk: the amplitude, the frequency and the number of nodal diameters in the disk. All this information allowed the design of an upgraded prototype of the disk, whose performance was also characterized by the same method. An optical system was employed for the measurements, in combination with a strain gauge mounted on the disk surface, which served to confirm the results obtained. The data of the strain gauge coincided closely with those provided by the optical fiber sensors, thus demonstrating the suitability of this innovative technique to evaluate the vibrational behavior of rotating disks.
机译:通过三个光纤传感器对转盘的振动行为进行了实验研究。该盘是飞机发动机真实盘的比例模型,被组装在风洞中以模拟实际运行条件。磁盘上游和下游侧之间的压力差会导致气流,可能会迫使磁盘振动。为了表征这种振动,通过测量磁盘的尖端间隙来确定一组参数:磁盘中的振幅,频率和节点直径的数量。所有这些信息允许设计磁盘的升级原型,其性能也可以通过相同的方法来表征。将光学系统与安装在磁盘表面上的应变仪组合用于测量,以确认获得的结果。应变仪的数据与光纤传感器提供的数据非常吻合,从而证明了这种创新技术适用于评估转盘的振动性能。

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