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Forced response of rotating bladed disks: Blade Tip-Timing measurements

机译:旋转刀片磁盘的强制响应:刀片尖端定时测量

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摘要

The Blade Tip-Timing is a well-known non-contact measurement technique currently employed for the identification of the dynamic behaviours of rotating bladed disks. Although the measurement system has become a typical industry equipment for bladed disks vibration surveys, the type of sensors, the positioning of the sensors around the bladed disk and the used algorithm for data post-processing are still not standard techniques, and their reliability has to be proved for different operation conditions by the comparison with other well-established measurement techniques used as reference like strain gauges. This paper aims at evaluating the accuracy of a latest generation Tip-Timing system on two dummy blisks characterized by different geometrical, structural and dynamical properties. Both disks are tested into a spin-rig where a fixed number of permanent magnets excite synchronous vibrations with respect to the rotor speed. A new positioning for the Blade Tip-Timing optical sensors is tested in the case of a shrouded bladed disk. Due to the presence of shrouds, the sensors cannot be positioned at the outer radius of the disk pointing radially toward the rotation axis as in the most common applications, since the displacements at the tips are very small and cannot be detected. For this reason a particular placement of optical laser sensors is studied in order to point at the leading and trailing edges' locations where the blades experience the largest vibration amplitudes with the aim of not interfering with the flow path. Besides the typical Blade Tip-Timing application aimed at identifying the dynamical properties of each blade, an original method is here proposed to identify the operative deflection shape of a bladed disk through the experimental determination of the nodal diameters. The method is applicable when a small mistuning pattern perturbs the ideal cyclic symmetry of the bladed disk.
机译:刀片尖端计时技术是一种众所周知的非接触式测量技术,目前已用于识别旋转刀片磁盘的动态行为。尽管测量系统已成为刀片式磁盘振动测量的典型工业设备,但是传感器的类型,传感器在刀片式磁盘周围的位置以及用于数据后处理的算法仍不是标准技术,其可靠性必须通过与作为参考的其他成熟的测量技术(如应变仪)进行比较,证明了在不同的操作条件下的可靠性。本文旨在评估在具有不同几何,结构和动力学特性的两个虚拟叶轮上最新一代尖端定时系统的准确性。将两个磁盘都测试到旋转钻机中,其中固定数量的永磁体会激发相对于转子速度的同步振动。在带刀片的带叶片磁盘的情况下,对刀片尖端定时光学传感器的新位置进行了测试。由于存在护罩,因此无法像大多数常见应用那样将传感器定位在径向指向旋转轴的圆盘的外半径处,因为尖端处的位移非常小且无法检测到。因此,对光学激光传感器的特定位置进行了研究,以指向叶片经受最大振动幅度的前缘和后缘的位置,目的是不干扰流路。除了旨在识别每个叶片动力学特性的典型“叶片尖端定时”应用程序之外,这里还提出了一种原始方法,通过实验确定节点直径来识别叶片盘的有效偏转形状。当小的雾化图案扰动叶片盘的理想循环对称性时,该方法适用。

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  • 来源
    《Mechanical systems and signal processing》 |2017年第2期|912-926|共15页
  • 作者单位

    Dipartimento di Ingegneria Meccanica e Aerospaziale, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129 Torino, Italy;

    Dipartimento di Ingegneria Meccanica e Aerospaziale, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129 Torino, Italy;

    Dipartimento di Ingegneria Meccanica e Aerospaziale, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129 Torino, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Blade Tip-Timing; Vibrations; Bladed Disk; Spinning Tests; Mistuning;

    机译:刀片提示时间;振动;刀片磁盘旋转测试;误调;

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