New methods for identifying diagnostic indicators of the technical condition of aircraft gas turbine engine reduction gearboxes

A. Y. Sundukov, Ye. V. Shakhmatov
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Abstract

Planetary gearboxes of aviation gas turbine engines are their most stressed units. Control of their technical condition under operating conditions by measuring the oil temperature and the presence of chips in it by a visual endoscopic method does not provide the required completeness of control. High vibration activity of gearboxes, especially in case of development of a widespread defect in the form of wear of tooth flanks, requires additional methods of assessment of their technical condition. The practice of operating such complex and stressed objects shows that vibroacoustic diagnostics is the most effective one. However, for aviation gas-turbine engines its use is connected with certain difficulties. First of all, it is the change of vibration intensity when the engine is relocated from the test bench to the object. At the engine manufacturer's stand, as a rule, the collection of experimental material for the development of methods of vibration-based diagnostics of defects is carried out. To overcome the above-mentioned problem, we suggest new methods for detecting diagnostic signs of tooth flank wear. Both vibration processes and signals of standard tachometric sensors of input and output gearbox shaft rotation frequency are used. A set of diagnostic features on the basis of frequency parameters is proposed. The use of some of them makes it possible to assess the technical condition of the engine gearbox during operation, for example in the performance of routine maintenance work.
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飞机燃气涡轮发动机减速齿轮箱技术状态诊断指标识别新方法
航空燃气涡轮发动机的行星齿轮箱是其受力最大的部件。在操作条件下,通过目视内窥镜方法测量油温和其中是否存在芯片来控制其技术状况,并不能提供所需的控制完整性。齿轮箱的高振动活动,特别是在齿翼磨损形成广泛缺陷的情况下,需要对其技术状况进行额外的评估方法。对这种复杂、有应力物体的操作实践表明,振动声诊断是最有效的诊断方法。然而,对于航空燃气涡轮发动机来说,它的使用有一定的困难。首先是发动机从试验台移到物体上时振动强度的变化。在发动机制造商的展台上,通常进行基于振动的缺陷诊断方法的实验材料收集。为了克服上述问题,我们提出了新的方法来检测牙齿侧面磨损的诊断迹象。采用了齿轮箱轴输入输出转速传感器的振动过程和信号。提出了一套基于频率参数的诊断特征。其中一些的使用使得在运行过程中,例如在日常维护工作的表现中,可以评估发动机齿轮箱的技术状况。
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