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An Integrated, Real-time Oil Quality Monitor and Debris Measurement Capability for Drive train and Engine Systems

机译:集成的实时机油质量监控和碎屑测量功能,适用于传动系统和发动机系统

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The health of rotorcraft drive train and engine systems is paramount to providing safe operating, high readiness aircraft to the warfighter. To determine this health, the rotorcraft gearbox, a sub-component of the drive train system, must be continuously monitored. Offline oil analysis and chip detection sensors have been employed in legacy gearboxes to this end. Oil analysis can provide valuable insight into the health and operation of a gearbox as well as a verification that the lubricant itself is within specification and still able to prevent wear. Metallic debris monitoring is the gold standard for fatigue spall detection and is a well accepted method for helping to ensure flightworthiness. The challenges associated with offline oil analysis, to include the complex and high cost logistics trail it incurs for in theater aircraft, make an online sensing technology for gearbox oil quality and debris highly desirable. To this end, Impact Technologies LLC and GasTOPS Inc are collaborating on a US Army RDECOM and AATD program to explore and test the viability of a combined online oil quality and metallic debris monitoring system for rotorcraft gearboxes. Development vision is for a single sensor that integrates real time oil quality monitoring, ferrous and non-ferrous metallic debris detection, and provisions for particle capture and extraction for at-line spectroscopic wear particle identification. The technical merit of each of the included technologies with respect to rotorcraft gearbox applications was evaluated in a laboratory test stand representative of the rotorcraft gearbox environment. Empirical results of this testing indicated that the included sensing technologies could successfully capture the lubricant and gearbox prognostic indicators of primary interest in their current instantiations. The feasibility of mechanical and electrical integration of these existing sensing technologies was explored, and several preliminary designs for the combined sensor that met the system's outlined criteria were successfully created. These concepts were scored with respect to the ultimate goals for the integrated sensor, namely their ability to directly replace legacy chip detectors and to do so without incurring additional weight penalties. The following paper outlines the team's experiences, and the program's progress, in pursuit of an integrated sensor that meets those goals.
机译:旋翼机传动系统和发动机系统的健康状况对于向战斗人员提供安全运行,高准备度的飞机至关重要。为了确定这种状况,旋翼飞机变速箱是传动系统的子组件,必须对其进行连续监控。为此,在传统变速箱中采用了离线油液分析和碎屑检测传感器。机油分析可以为变速箱的健康状况和运行提供有价值的见解,并可以验证润滑剂本身是否在规格范围内,并且仍然能够防止磨损。金属碎片监控是疲劳剥落检测的金标准,并且是有助于确保飞行适航性的公认方法。与离线机油分析相关的挑战,包括其在战机飞机上引起的复杂且高成本的物流跟踪,使得非常需要用于变速箱机油质量和碎屑的在线传感技术。为此,Impact Technologies LLC和GasTOPS Inc正在美国陆军的RDECOM和AATD计划上进行合作,以探索和测试用于旋翼飞机变速箱的在线油质和金属碎片监测系统的可行性。开发愿景是针对单个传感器,该传感器集成了实时油质监测,黑色金属和有色金属碎片检测,以及用于在线光谱磨损颗粒识别的颗粒捕获和提取规定。在代表旋翼飞机变速箱环境的实验室测试台上评估了所包含的每种技术在旋翼飞机变速箱应用方面的技术优势。该测试的经验结果表明,所包含的传感技术可以成功捕获当前实例中最感兴趣的润滑剂和齿轮箱预后指标。探讨了将这些现有传感技术进行机械和电气集成的可行性,并成功创建了满足系统概述标准的组合传感器的几种初步设计。这些概念是针对集成传感器的最终目标进行评分的,即它们直接替换传统芯片检测器的能力,并且无需增加额外的重量损失即可做到这一点。下面的论文概述了团队的经验以及计划的进展,以寻求实现这些目标的集成传感器。

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