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A new reference tip-timing test bench and simulator for blade synchronous and asynchronous vibrations

机译:一种新的刀片同步和异步振动模拟器

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摘要

The blade tip-timing (BTT) measurement technique is at present the most promising technique for monitoring the blades of axial turbines and aircraft engines in operating conditions. It is generally used as an alternative to strain gauges in turbine testing. By conducting a comparison with the standard methods such as those based on strain gauges, one determines that the technique is not intrusive and does not require a complicated installation process. Despite its superiority to other methods, the experimental performance analysis of a new BTT method needs a test stand that includes a reference measurement system (e.g. strain gauges equipped with telemetry or other complex optical measurement systems, like rotating laser Doppler vibrometers). In this article, a new reliable, low-cost BTT test setup is proposed for simulating and analyzing blade vibrations based on kinematic inversion. In the proposed test bench, instead of the blades vibrating, it is the BTT sensor that vibrates. The vibration of the sensor is generated by a shaker and can therefore be easily controlled in terms of frequency, amplitude and waveform shape. The amplitude of vibration excitation is measured by a simple accelerometer. After introducing the components of the simulator, the proposed test bench is used in practice to simulate both synchronous and asynchronous vibration scenarios. Then two BTT methods are used to evaluate the quality of the acquired data. The results demonstrate that the proposed setup is able to generate simulated pulse sequences which are almost the same as those generated by the conventional BTT systems installed around a bladed disk. Moreover, the test setup enables its users to evaluate BTT methods by using a limited number of sensors. This significantly reduces the total costs of the experiments.
机译:刀片尖端定时(BTT)测量技术目前是用于监测操作条件下的轴向涡轮机和飞机发动机的叶片的最有希望的技术。它通常用作涡轮机测试中的应变计的替代方案。通过与基于应变仪的标准方法进行比较,确定该技术不是侵扰性的,并且不需要复杂的安装过程。尽管其优于其他方法,但新的BTT方法的实验性能分析需要一个测试台,该测试支架包括参考测量系统(例如,配备有遥测或其他复杂光学测量系统的应变计,如旋转激光多普勒振动器)。在本文中,提出了一种新的可靠,低成本的BTT测试设置,用于基于运动反转来模拟和分析叶片振动。在所提出的测试台中,代替振动的刀片,它是振动的BTT传感器。传感器的振动由振动器产生,因此可以在频率,幅度和波形形状方面容易地控制。通过简单的加速度计测量振动激励的幅度。在引入模拟器的组件之后,在实践中使用所提出的测试台来模拟同步和异步振动方案。然后使用两个BTT方法来评估所获取的数据的质量。结果表明,所提出的设置能够生成模拟脉冲序列,这些脉冲序列几乎相同,这些脉冲序列几乎与叶片磁盘周围的传统BTT系统产生的序列。此外,测试设置使其用户能够通过使用有限数量的传感器来评估BTT方法。这显着降低了实验的总成本。

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