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Laser vibrometry measurements of rotating blade vibrations

机译:旋转叶片振动的激光测振测量

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摘要

One of the most important design factors in modern turbomachinery is the vibration of turbomachinery blading. There is a need for developing an in-service, noncontacting, noninterfering method for the measurement and monitoring of gas turbine, jet engine, and steam turbine blade vibrations and stresses. Such a technique would also be useful for monitoring rotating helicopter blades. In the power generation industry, blade failures can result in millions of dollars of downtime. The measurement ofblade vibrations and dynamic stresses is an important guide for preventive maintenance, which can be a major contributor to the availability of steam turbine, gas turbine, and helicopter operations. An experiment is designed to verify the feasibility ofsuch a vibration monitoring system using the reference beam on-axis laser-Doppler technique. The experimental setup consists of two flat, cantilever blades mounted on a hub attached to the shaft of a dc motor. The motor rests on a linear bearingpermitting motion only in the direction of the motor shaft. The motor and blade assembly is then excited via an electrodynamic shaker at the first natural frequency of the blades. The resulting blade vibration is then detected using a laser vibrometer.The vibration frequencies and amplitudes of the two rotating blades are successfully measured.
机译:现代涡轮机械中最重要的设计因素之一是涡轮机械叶片的振动。需要开发一种在役、非接触、无干扰的方法,用于测量和监测燃气轮机、喷气发动机和蒸汽轮机叶片的振动和应力。这种技术也可用于监测旋转的直升机叶片。在发电行业,叶片故障可能导致数百万美元的停机时间。叶片振动和动态应力的测量是预防性维护的重要指南,是蒸汽轮机、燃气轮机和直升机运行可用性的主要因素。通过实验验证了采用参考波束同轴激光多普勒技术的振动监测系统的可行性。实验装置由两个扁平的悬臂叶片组成,安装在连接到直流电机轴的轮毂上。电机靠在直线轴承上,只允许沿电机轴方向运动。然后,电机和叶片组件通过电动振动台以叶片的第一固有频率激励。然后使用激光测振仪检测由此产生的叶片振动。成功测量了两个旋转叶片的振动频率和振幅。

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