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An optical red green blue sensor for monitoring the degradation of magnetorheological fluids in flow-recirculating high-torque clutch actuators

机译:一种用于监测流动再循环高扭矩离合器致动器中磁流变流体劣化的光学红色绿色蓝色传感器

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摘要

The aerospace industry is gradually moving toward “more electric aircraft” to reduce its environmental footprint. Developing all-electric actuators brings a reliability challenge because conventional geared-motor actuators are susceptible to jamming failures from their metal-to-metal gear contacts. Magnetorheological clutch actuators solve this challenge using a layer of fluid to transmit torque and are not exposed to potential jam failures, making them particularly attractive for high reliability applications such as primary flight controls. A key challenge that must be addressed for a widespread deployment of the magnetorheological fluid technology in aerospace is the ability to monitor magnetorheological fluid condition while it degrades in operation. To date, no such efforts have been reported in the literature. Recent studies on magnetorheological fluid durability have shown that mixing the magnetorheological fluid using a magnetic screw pump principle can significantly increase the life of the fluid by up to 50%. This article presents the design, prototyping, and testing of a proof-of-concept magnetorheological fluid condition monitoring sensor, capitalizing on the flow-recirculating properties of magnetic screw magnetorheological clutches to continuously provide a well-mixed and homogeneous fluid sample to the sensor. The proposed sensing principle uses optical red green blue sensor placed in the fluid circulation path to measure the fluid color during degradation. The sensor has been tested up to fluid failure on a high-torque (60 N m) magnetorheological clutch mounted on a fully instrumented durability test bench. Tests have been performed with two types of fluid: a commercially available fluid, the Lord 140CG, and a homemade fluid based on perfluoropolyether oil, the GPL-103. Results with the Lord fluid demonstrate a strong correlation between the decrease in torque-to-current performance with fluid brightness. The average of three aging tests on Lord 140CG fluid show a 12% ± 1% decrease in brightness at end-of-life regardless of operating conditions such as torque, shear rate, and dissipated power. These results suggest that, for the Lord 140CG fluid, brightness is directly linked to the fluid degradation state and independent of operating conditions, which makes it a more accurate metric to quantify durability than life dissipated energy since the latter can vary significantly depending on operating conditions. Tests made with the GPL-103 based fluid did not show such a strong correlation, which means that optical sensing of magnetorheological fluid condition must be carefully calibrated for each individual fluid and clutch design. Results from this study suggest that optical sensing is a relevant method to measure the magnetorheological fluid condition in flow-recirculating clutches.
机译:航空航天行业逐步走向“更多电机”,以减少其环境足迹。开发的全电动执行器带来可靠性挑战,因为传统的齿轮电动机致动器容易受到金属到金属齿轮触点的干扰故障。磁流变离合器致动器使用一层流体来解决这种挑战以传递扭矩,并且不会暴露于潜在的卡纸故障,使它们特别吸引力,例如主要飞行控制等高可靠性应用。在航空航天中广泛部署磁流变流体技术必须解决的关键挑战是在运行中降低时监测磁流变流体状况的能力。迄今为止,没有在文献中报告这种努力。最近关于磁流变流体耐久性的研究表明,使用磁性螺杆泵原理混合磁流变流体可以显着增加液体的寿命达到50%。本文介绍了概念验证磁流变流体状况监测传感器的设计,原型制作和测试,利用磁螺杆磁流变离合器的流量 - 再循环性能,以连续地向传感器提供良好的混合和均匀的流体样品。所提出的传感原理使用放置在流体循环路径中的光学红色绿色蓝色传感器,以在降解期间测量流体颜色。已经在高扭矩(60 n m)磁流变离合器上安装在安装在完全仪表的耐久性测试台上的传感器。已经用两种类型的流体进行测试:基于全氟聚醚油,GPL-103的市售流体,耶和华140cg和自制流体。主流体的结果展示了扭矩与电流性能的降低与流体亮度之间的强烈相关性。无论扭矩,剪切速率和耗散功率等操作条件,恒温下的三个老化试验的平均亮度下降12%±1%。这些结果表明,对于主140cg流体,亮度与流体劣化状态直接连接并独立于操作条件,这使得它使得量化比寿命散发能量更精确的度量,因为后者可以根据操作条件显着变化。用GPL-103的流体进行的测试没有显示出这样的强相关,这意味着必须为每个单独的流体和离合器设计仔细校准磁流变流体状况的光学感测。本研究的结果表明光学传感是一种测量流动循环离合器中的磁流变流体条件的相关方法。

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