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Flight Evaluation of a Flexible Fabric Stabilizer for Sling Loads

Marc Tardiff, Daniel Nyren, Natick Research Development Engineering Center
Luigi Cicolani, US Army ADD

May 8, 2017

https://doi.org/10.4050/F-0073-2017-12182

Abstract:
Helicopter Sling Load is the most accurate form of aerial delivery in the military due to the ability to air land materiel in an exact location; however, some missions have a tendency for the payloads to become unstable due to both pilot-in-the-loop and aerodynamic effects. Past research demonstrated that allowing the container to rotate freely in yaw stabilizes pendulum motions. Other research utilized rigid fins affixed to the rear of the container. These methods work during tests; however, they become difficult to use in an operational environment. This paper discusses tests using a flexible fabric stabilizer that can be temporarily added to any payload. The flight tests were conducted Moffett Field, CA using the same payload as the previously mentioned research. Tests showed the flexible stabilizer provided an intermediate level of performance eliminating sling wind up and stabilizing pendulum motions out to the aircrafts’ power limit in exchange for very little operational overhead.


Flight Evaluation of a Flexible Fabric Stabilizer for Sling Loads

  • Presented at Forum 73
  • 17 pages
  • SKU # : F-0073-2017-12182
  • Test and Evaluation

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Flight Evaluation of a Flexible Fabric Stabilizer for Sling Loads

Authors / Details:
Marc Tardiff, Daniel Nyren, Natick Research Development Engineering Center
Luigi Cicolani, US Army ADD