贝尔525无情-使用尾桨扭矩测量维护信用

B. Tucker, Ankit Patel, Drew Waller, Bell
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引用次数: 0

摘要

在运行过程中,旋翼飞机结构部件会遇到加载周期,这些加载周期通常与主旋翼和尾桨扭矩的漂移有关。旋翼机设计通过设计使用谱来预测这些负载漂移,该谱考虑了每飞行小时一定数量的此类负载条件。一般来说,使用频谱假设最坏情况下的使用,而不管直升机实际如何飞行。因此,无论直升机操作员如何使用飞机,维护间隔都是相同的。如果存在一种方法来检测这些负载周期(每飞行小时)的实际发生,并且测量的发生频率低于设计使用谱中的假设,则可以应用使用信用。这种使用抵免可以延长检查间隔时间和延长某些寿命有限的部件的更换间隔时间,从而降低维修费用。这种方法正在寻求贝尔525,它有一个转速表为基础的尾桨扭矩测量系统。主旋翼扭矩也是可用的,并从已知的发动机扭矩,尾桨扭矩和损失计算。扭矩测量系统有近2000小时的飞行测试结果,表明它是高度精确的。提出了一种利用尾桨扭矩测量和主转子扭矩计算来保证未来使用信用和降低维修成本的方法。最后介绍了该传感器技术在驱动系统故障检测中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bell 525 Relentless - Using Tail Rotor Torque Measurements for Maintenance Credit
In the course of operation, rotorcraft structural components will encounter loading cycles that are often associated with excursions in the main rotor and tail rotor torque. Rotorcraft designs anticipate these load excursions via a design usage spectrum that factors a certain number of such load conditions per flight hour. In general, the usage spectrum assumes worst-case usage regardless of how the helicopter is actually flown. Thus, maintenance intervals are the same regardless of how the helicopter operator uses the aircraft. If a means exists to detect the actual occurrence of these load cycles (per flight hour) and the measured occurrence is less frequent than the assumption in the design usage spectrum, a usage credit could apply. Such a usage credit would reduce maintenance cost by allowing longer intervals between inspections and longer intervals between replacement lives for certain life-limited components. Such a methodology is being sought for the Bell 525, which has a tachometer-based tail rotor torque measurement system. Main rotor torque is also available and is calculated from known engine torque, tail rotor torque, and losses. The torque measurement system has almost two thousand hours of flight test results that show it to be highly accurate. A methodology to use the tail rotor torque measurement and main rotor torque calculation to safely substantiate future usage credits and achieve reduced maintenance cost is put forward. Finally, an application for this sensor technology to detect drive system faults is introduced.
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