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Load and stability measurements on a soft-inplane rotor system incorporating elastomeric lead-lag dampersAn experimental investigation was conducted of the dynamic response and inplane stability associated with a new soft-inplane helicopter rotor. The unique feature of this rotor was the use of an internal elastomeric damper to restrain the blade inplane motion about the lead-lag hinge. The properties of the elastomer were selected to provide both a nominal first inplane frequency ratio of 0.65 and sufficient damping to eliminate the need for additional external damping sources to prevent ground resonance on a typical fuselage structure. For this investigation a 1/5-scale aeroelastic model was used to represent the rotor. The four-blade model had a diameter of 3.05 m (10 ft) and a solidity of 0.103. The first out-of-plane frequency ratio was 1.06. The model was tested in hover and in forward flight up to an advance ratio of 0.45. At each forward speed the rotor lift was varied up to simulated maneuver conditions. The measured rotor loads and response were within acceptable limits, and no adverse response qualities were observed. Moderate out-of-plane hub moments were measured, even for zero lift, to indicate the beneficial control power available for this design. Blade inplane stability testing indicated that the rotor system damping remained at moderate levels throughout the operating envelope.
Document ID
19770021168
Acquisition Source
Legacy CDMS
Document Type
Other - NASA Technical Note (TN)
Authors
Weller, W. H.
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
September 3, 2013
Publication Date
July 1, 1977
Subject Category
Aircraft Design, Testing And Performance
Report/Patent Number
NASA-TN-D-8437
L-11315
Report Number: NASA-TN-D-8437
Report Number: L-11315
Accession Number
77N28112
Funding Number(s)
PROJECT: DA PROJ. 1L2-62209-AH-76
PROJECT: RTOP 505-10-26-01
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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