ROBINSON R22 BETA near Del Valle, TX — 2011-06-27
- Date
- 2011-06-27
- Location
- Del Valle, TX, USA
- Aircraft
- ROBINSON R22 BETA
- Registration
- N7779M
- Category
- Helicopter
- Highest injury
- Fatal
- Fatalities
- 1
- Phase of flight
- Cruise
Probable cause
The divergence of the main rotor from its normal plane of rotation for reasons that cannot be determined because the pilot’s control inputs leading up to the event are unknown, resulting in mast bumping and main rotor blade separation.
NTSB narrative
The helicopter was flying across a river when witnesses heard a loud "pop" or "bang" and saw something fall from the helicopter into the river. They heard the helicopter crash, saw smoke, and ran to the crash site. One main rotor blade was found approximately 780 feet from the wreckage. The other main rotor blade was found approximately 975 feet from the wreckage in the opposite direction. Both blades had separated from the main rotor hub at their coning hinges. All components of the helicopter were accounted for with the exception of portions of both coning bolts. The investigation was unable to locate the object observed falling from the helicopter or determine what it was. Examination of the rotor head components, including the recovered portions of the coning bolts, revealed fracture features consistent with overload failure and mechanical damage indicative of mast bumping (contact between the main rotor blades and the mast). The main rotor blade pitch links and attaching hardware displayed compression buckling and bending overload features consistent with an out-of-control main rotor that had diverged from its normal plane of rotation. The helicopter manufacturer reported that the damage signatures were consistent with both low-G mast bumping and low rotor rpm rotor stall. Low-G mast bumping is a phenomenon specific to two-bladed teetering rotor systems in which the rotor disc becomes unloaded, typically due to a cyclic pushover. Low rotor rpm rotor stall is a different phenomenon in which the main rotor blades experience an aerodynamic stall due to low rotor rpm caused either by the pilot raising the collective too much or by a loss of engine power followed by the pilot lowering the collective too slowly. Rotor blade stall can lead to mast bumping. The pilot’s control inputs leading up to the event are unknown, and, therefore, the reason for the main rotor divergence could not be determined.
Analysis
- Primary failure mode
- Loss of control
- First missed decision gate
- Pilot could have avoided low-G conditions leading to mast bumping.
NTSB coding
Evidence available
- ADS-B / radar
- Photos
- 24 docket documents
Docket documents24
- NTSB Form 6120.5, Release of Aircraft Wreckageform
- Pilot/Operator Aircraft Accident Report, NTSB Form 6120.1form
- Record of Interviewinterview
- Annunciator Light Bulb Filament Examinationother
- Certification of Party Representativesother
- E-Mail from Ken Martin, Robinson Helicoptersother
- Map of Accident Areaother
- Record of Conversationother
- Times and Altitudes of Accident Flightother
- Photo 1 - The accident site.photos
- Photo 2 - Main rotor blade A, found approximately 870 feet east of the main wreckage.photos
- Photo 3 - Blade A's grip.photos
- Photo 4 - Main rotor blade B, found approximately 975 feet west of the main wreckage.photos
- Photo 5 - Blade B's grip.photos
- Photo 6 - Main rotor masthead.photos
- Photo 7 - Tail boom and tail rotor assembly.photos
- Photo 8 - View to the east along the south side of the Colorado River where the witnesses stood.photos
- Photo 9 - Texas Department of Public Safety dragging and searching the Colorado River near the accident site.photos
- Ground track of N7779M, from Taylor, TX, to Del Valle, TXradar
- Lateral view of the last 22 radar hits of N7779Mradar
- Materials Laboratory Factual Reportreport
- Toxicology Reportsreport
- Weather Reports and Recordsreport
- Wreckage Distribution, Robinson Helicopterswreckage
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