首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >EXPERIMENTAL ANALYSIS OF BLADE-CASING CONTACTS IN A CENTRIFUGAL COMPRESSOR: VIBRATION AND THERMAL ASPECTS
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EXPERIMENTAL ANALYSIS OF BLADE-CASING CONTACTS IN A CENTRIFUGAL COMPRESSOR: VIBRATION AND THERMAL ASPECTS

机译:离心式压缩机叶片壳体触点的实验分析:振动和热方面

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Due to an increasing need for efficiency of turboengines, rotor-stator clearances are being lowered. Therefore, new designs show higher probability for contacts between rotors and casings. When contacts occur, high dynamic excitation levels as well as high temperatures due to dissipative mechanical phenomena may be expected. While numerical investigations have been proposed in the past, experiments are of high interest to fully understand the underlying phenomena behind rotor-stator contact interactions. In order to assess this situation, and based on former work performed by part of the authors, a rotor-stator contact rig has been used to investigate the mechanical and thermal behavior of a centrifugal low-pressure helicopter engine compressor. This rig operates under vacuum conditions to significantly reduce influence of the air surrounding the studied components. A near-zero gap condition is set at rest, then a rotational speed sweep allows to target the specific operating range of interest. Both structures are fitted with strain gauges, and a torquemeter is installed on the shaft to measure resistive phenomena on the bladed disk. A scanning laser Doppler vibrometer is aimed at the casing through a window to provide additional displacement measurements. Temperatures are measured by an array of thermocouples equally spaced around the casing, close to the expected contact area. Also, using temperature-sensitive markings, overall temperature mappings on the impeller are performed. During the tests, multiple contact phases have been identified through increased vibration and temperature levels, as well as torque and rotational speed variations. A comprehensive analysis of the dynamic and thermal phenomena occurring during these experimental tests is proposed in this paper. Dynamic measurements are analyzed in the time and frequency domains, and nodal diameter contents are evaluated as well through full spectrum analyses. As a result, major influences from synchronous excitations in the frequency range of interest but also of higher modal families are highlighted. Post-trial observations indicate severe contact conditions leading to very high temperatures, abradable coating removal and material transfer between blade and casing.
机译:由于涡轮增速率的效率越来越多,转子定子间隙正在降低。因此,新设计表明转子和壳体之间的触点较高概率。当发生接触时,可以预期高动态激发水平以及由于耗散机械现象而导致的高温。虽然过去已经提出了数值调查,但实验很兴趣,以充分了解转子定子接触相互作用背后的潜在现象。为了评估这种情况,并且基于由作者的一部分被执行前的工作,转子 - 定子接触钻机已经用于研究离心低压直升机发动机压缩机的机械和热性能。该钻机在真空条件下运行,以显着降低所研究部件周围的空气的影响。近零间隙条件静置,然后旋转速度扫描允许瞄准特定的兴趣操作范围。两个结构都配有应变仪表,并且托管仪安装在轴上,以测量叶片盘上的电阻现象。扫描激光多普勒振动计旨在通过窗口壳体,以提供额外的位移测量。温度通过围绕壳体围绕壳体均等地间隔开的热电偶阵列测量,接近预期接触区域。此外,使用温度敏感标记,执行叶轮上的整体温度映射。在测试期间,已经通过增加的振动和温度水平以及扭矩和转速变化来识别多个接触阶段。本文提出了在这些实验测试中发生动态和热现象的综合分析。在时间和频率域中分析动态测量,并通过全谱分析评估Nodal直径内容。结果,突出了来自频率范围内的同步激励,而且突出显示更高的模态家族的主要影响。试验后观察结果表明严重的接触条件,导致非常高的温度,可磨损的涂层去除和叶片和壳体之间的材料转移。

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