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Fault Detection on a Full-Scale OH-58 A/C Helicopter Transmission.

机译:全尺寸OH-58 A / C直升机变速器的故障检测。

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摘要

Detecting seeded faults on a full-scale helicopter transmission is the focus of this work. Methods to isolate the dynamics of an individual sun gear, in an effort to assess its condition, are developed and validated on an OH-58 helicopter transmission's planetary reduction stage. This area has been shown to be challenging because the planetary system does not allow for direct measurements of the sun gear. Instead, special measurement and data processing techniques are needed to filter out the effects of the planet gears, bearings, input spiral bevel stage, and other components in and around the gearbox. Planetary indexing is used to geometrically synchronize dynamic measurements with the meshing tooth's position along its pressure line. This provides the opportunity for source/signal mapping that can lead to increased sensitivity, allowing faults to be detected early and thus increasing the available time for corrective action.;Accelerometers mounted along the transmission housing, acoustic transducers distributed about the test cell, and an oil debris monitoring system are all used to analyze three seeded fault cases. Transmission components, (two sun gears and a single planet bearing), which were damaged in previous fatigue tests, serve as the focus of this current work. Two vibration separation (VS) algorithms, tailored to the three planet OH-58A, and the four planet, non-sequential OH-58C transmissions, were developed and their resulting signals analyzed. In addition, a geometrically synchronized measurement method to transmission diagnostics is also developed. This non-VS based method uses only the time synchronously averaged data and takes advantage of signal/source mapping required for VS. Eleven commonly used condition indicators are used on both global and separated signals and their results tabulated.;All three damage detection algorithms were successful in identifying the damage on the sun gear with multiple faults. Sun gear damage was confirmed by the presence of sun mesh groups. Detecting the single tooth spall continues to be a challenge. Also demonstrated is the ability for the vibration separation methods developed to isolate components.;Safety and cost are the main motivators for helicopter Health Usage and Monitoring Systems (HUMS). During flight, critical components are subjected to sustained vibratory and impulsive loads requiring the need for frequent inspections. Methods that can reduce this time and effectively detect faults in their infancy are highly sought. Actively monitoring the transmission's health can provide the benefit of detecting damage early and possibly avoid catastrophe. In addition, active monitoring provides an updated assessment of a component's condition which can possibly increase its life when compared to scheduled replacement times. The methods proposed for gear tooth diagnostics can be integrated in an overall helicopter HUMS program with the main objective of cost-effectively improving the safety of both civil and military helicopters while reducing the cost of ownership.
机译:这项工作的重点是在大型直升机传动系统上检测出种子故障。在OH-58直升机变速器的行星减速级上开发并验证了隔离单个太阳轮动力的方法,以评估其状态。由于行星系统不允许直接测量太阳轮,因此该区域已显示出挑战性。取而代之的是,需要特殊的测量和数据处理技术来过滤掉行星齿轮,轴承,输入螺旋锥齿轮级以及变速箱内及其周围部件的影响。行星分度用于将动态测量结果与啮合齿沿其压力线的位置进行几何同步。这为源/信号映射提供了机会,从而可以提高灵敏度,允许及早发现故障,从而增加采取纠正措施的可用时间。沿变速箱安装的加速度计,分布在测试单元周围的声换能器以及油碎屑监测系统全部用于分析三个播种故障案例。在先前的疲劳测试中损坏的变速箱部件(两个太阳轮和一个行星轴承)成为当前工作的重点。针对三种行星OH-58A和四种行星非连续OH-58C变速器量身定制了两种振动分离(VS)算法,并对它们产生的信号进行了分析。另外,还开发了用于变速器诊断的几何同步测量方法。这种非基于VS的方法仅使用时间同步平均数据,并利用了VS所需的信号/源映射。全局和分离信号均使用11种常用状态指示器,并将其结果制成表格。所有三种损坏检测算法均能成功识别出具有多个故障的太阳轮上的损坏。太阳齿轮组的存在证实了太阳齿轮的损坏。检测单颗牙齿剥落仍然是一个挑战。还证明了开发出的振动分离方法能够隔离部件的能力。安全性和成本是直升机健康使用和监视系统(HUMS)的主要推动力。在飞行过程中,关键部件承受持续的振动和脉冲载荷,需要经常检查。极力寻求能够减少这种时间并有效地检测婴儿期故障的方法。主动监控变速箱的健康状况可以提供及早发现损坏的好处,并可以避免灾难。此外,主动监控可提供对组件状况的最新评估,与计划的更换时间相比,可以延长组件的使用寿命。提议用于齿轮齿诊断的方法可以集成到整个直升机HUMS计划中,其主要目标是经济有效地提高民用和军用直升机的安全性,同时降低拥有成本。

著录项

  • 作者

    Hood, Adrian A.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Aerospace.;Transportation.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 279 p.
  • 总页数 279
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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