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Full-scale Flight Tests of Aircraft Morphing Structures using SMA Actuators

机译:使用SMA执行器的飞机变形结构的全面飞行测试

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In August of 2005 The Boeing Company conducted a full-scale flight test utilizing Shape Memory Alloy (SMA) actuators to morph an engine's fan exhaust to correlate exhaust geometry with jet noise reduction. The test was conducted on a 777-300ER with GE-115B engines. The presence of chevrons, serrated aerodynamic surfaces mounted at the trailing edge of the thrust reverser, have been shown to greatly reduce jet noise by encouraging advantageous mixing of the free, and fan streams. The morphing, or Variable Geometry Chevrons (VGC), utilized compact, light weight, and robust SMA actuators to morph the chevron shape to optimize the noise reduction or meet acoustic test objectives. The VGC system was designed for two modes of operation. The entirely autonomous operation utilized changes in the ambient temperature from take-off to cruise to activate the chevron shape change. It required no internal heaters, wiring, control system, or sensing. By design this provided one tip immersion at the warmer take-off temperatures to reduce community noise and another during the cooler cruise state for more efficient engine operation, I.e. reduced specific fuel consumption. For the flight tests a powered mode was added where internal heaters were used to individually control the VGC temperatures. This enabled us to vary the immersions and test a variety of chevron configurations. The flight test demonstrated the value of SMA actuators to solve a real world aerospace problem, validated that the technology could be safely integrated into the airplane's structure and flight system, and represented a large step forward in the realization of SMA actuators for production applications, hi this paper the authors describe the development of the actuator system, the steps required to integrate the morphing structure into the thrust reverser, and the analysis and testing that was required to gain approval for flight. Issues related to material strength, thermal environment, vibration, electrical power, controls, data acquisition, and engine operability are discussed. Furthermore the authors layout a road map for the next stage of development of SMA aerospace actuators. A detailed look at the requirements and specifications that may define a production SMA actuator and the technology development required to meet them are presented. A path for meeting production requirements and achieving the next level of technology readiness for both autonomous and controlled SMA actuators is proposed. This path relies strongly on cross functional and organizational teaming including industry, academia, and government.
机译:2005年8月,波音公司使用形状记忆合金(SMA)致动器进行了一次全面的飞行测试,以使发动机的风扇排气变形,从而使排气几何形状与喷气噪声的降低相关联。该测试是在带有GE-115B发动机的777-300ER上进行的。人字形,安装在反推力装置后缘的锯齿形空气动力学表面已被证明可通过促进自由气流和风扇气流的良好混合而大大降低喷射噪声。变形或可变几何人字形(VGC)利用紧凑,轻便且坚固的SMA执行器来使人字形变形,以优化降噪效果或达到声学测试目标。 VGC系统设计用于两种操作模式。完全自主的操作利用从起飞到巡航的环境温度变化来激活人字形形状变化。它不需要内部加热器,接线,控制系统或感测器。通过设计,这可以使一个尖端沉浸在较热的起飞温度中,以减少噪音,而另一个则可以在较冷的巡航状态下浸入,以使发动机更高效地运行,即降低了单位油耗。为了进行飞行测试,添加了动力模式,其中使用内部加热器单独控制VGC温度。这使我们能够改变沉浸度并测试各种人字形配置。飞行测试证明了SMA执行器在解决现实世界中的航空航天问题方面的价值,验证了该技术可以安全地集成到飞机的结构和飞行系统中,并在实现面向生产应用的SMA执行器方面迈出了一大步。本文的作者描述了执行器系统的开发,将变型结构集成到推力反向器中所需的步骤,以及获得飞行许可所需的分析和测试。讨论了与材料强度,热环境,振动,电功率,控制,数据采集和发动机可操作性有关的问题。此外,作者为SMA航空航天执行器的下一阶段开发制定了路线图。本文详细介绍了可能定义生产SMA执行器的要求和规格,以及满足这些要求和要求的技术发展。提出了一种满足生产要求并为自动和受控SMA执行器达到更高水平的技术准备水平的途径。此路径强烈依赖于跨职能和组织的团队合作,包括行业,学术界和政府。

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