Fairchild Hiller FH 1100 accident near Lino Lakes, Minnesota, October 6, 2016
On October 6, 2016 at about 9:45 pm local time, a 1982 Fairchild Hiller FH 1100 (helicopter), registered N4035G, was destroyed in an accident during enroute near Lino Lakes, Minnesota. It was a personal flight under general aviation rules (Part 91). 2 people were killed. The weather was visual conditions (good weather).
The NTSB's probable cause their words, unchanged
The separation of the main rotor assembly due to mast bumping.
Source: NTSB aviation accident database, copy made October 5, 2026. Docket and reports at the NTSB.
What the record shows
- Date
- October 6, 2016 · about 9:45 pm local time
- Place
- Lino Lakes, Minnesota · map
- Type
- Accident
- Injuries
- 2 people were killed.
- Weather
- visual conditions (good weather)
- Aircraft
- Fairchild Hiller FH 1100 NO SERIES, built 1982 · all FH 1100s on the register
- Registration
- N4035G · no longer on the register · serial 502
- Damage
- Destroyed
- Flight
- Personal flight · general aviation rules (Part 91)
The NTSB's narrative final · quoted from the NTSB record
The airline transport pilot was conducting a local flight with one passenger. The accident flight was the pilot's third flight in the helicopter on the day of the accident; before that day, he had not flown the helicopter in nearly one year. One witness stated that he saw the helicopter rocking back and forth before it "spun sideways" and "a bunch of parts" departed the airframe. Some reported hearing a "clunk" sound, and others reported hearing a "pop" sound. Another witness saw the main rotor blades "seize," then "snap off," followed by the tail rotor departing the helicopter. The witness stated that the helicopter then "dropped out of the sky." The fuselage impacted in an open field, and a postcrash fire erupted. The separated main rotor blades and hub were found in a pond about 500 ft south of the main wreckage. Examination of the rotor mast showed deformation and fractures consistent with overstress under bending and torsion loads but no evidence of preexisting cracks or corrosion. The observed deformation of the mast was consistent with a mast bumping event. Mast bumping can occur in low acceleration of gravity (G) flight conditions, causing the rotor blade to exceed its flapping limits and resulting in the main rotor hub bumping into the rotor shaft. This often results in structural failure of the rotor shaft and a subsequent separation of the main rotor. Due to the extensive thermal damage to the wreckage, only a limited examination could be conducted; however, no mechanical malfunctions or anomalies were noted that would have precluded normal operation. The pilot had accumulated about 15,000 flight hours in airplanes but only had about 55 hours flight time in helicopters, most of which were accumulated more than 1 year before the accident. Although the pilot had received instruction on how to avoid mast bumping, given his low helicopter experience relative to his airplane experience, it is possible that he made a large, abrupt flight control input that resulted in a low-G flight condition and led to the observed mast bumping. However, the pilot's control inputs are unknown, and the initiating event for the mast bumping could not be determined.
The complete narrative as the NTSB published it. The NTSB's docket holds the report as a PDF and any photographs, statements and other documents from the investigation.
The factual record from the NTSB's investigation tables, in plain English
What happened, in order
- Mast bumping during enroute defining event
- Flight control sys malf/fail during enroute
- Collision with terrain or object (not controlled flight into terrain) during uncontrolled descent
The NTSB's findings
- Personnel issues › Experience/knowledge › Experience/qualifications › Recent experience w/ equipment › Pilot
- Personnel issues › Action/decision › Action › Incorrect action performance › Pilot
- cause Aircraft › Aircraft propeller/rotor › Main rotor system › Main rotor mast/swashplate › Capability exceeded
Pilot
- Certificate: airline transport pilot, flight instructor, commercial pilot, flight engineer
- Ratings: multi-engine land; single-engine land; single-engine sea; instructor: airplane multi-engine; instructor: airplane single-engine; instructor: instrument airplane; instrument: airplane; rotorcraft: helicopter
- Flight time: 15,000 hours in all; 55.5 in this make and model
- Last flight review: September 5, 2015
- Medical certificate: Class 1 (with waivers/limitations)
- Seat: rgt
- Injury: fatal
The aircraft
- Airframe total time: 501.7 hours
- Last inspection: annual inspection, June 18, 2015
- Maximum gross weight: 2,750 lb
- Seats: 5
- Landing gear: fixed
- Engine: Allison C20B (turboshaft); 0 hours total
- Fire on the ground
The flight
- Departed from: ANE Minneapolis MN at 9:20 pm
- Destination: ANE Minneapolis MN
- Flight plan: none
Weather at the time
- Light: daylight
- Wind: from 010° at 6 knots
- Visibility: 10 statute miles
- Sky: overcast at 6,000 ft
- Temperature: 59°F (15°C), dew point 43°F (6°C)
- Altimeter: 29.95 inHg
- Observation at 9:45 pm from KANE, 4 miles away
Injuries
| Fatal | Serious | Minor | None | |
|---|---|---|---|---|
| Flight crew | 1 | |||
| Passengers | 1 |
Documents from the investigation the NTSB's docket: the evidence folder behind the report
The docket, the folder of records gathered during an investigation (maintenance records, photographs, witness statements, examinations), has not been read from the NTSB for this case yet; the list appears here once it has. Open the docket at the NTSB.
Other NTSB records under N4035G the same tail number, which may have belonged to a different aircraft at the time
Everything on this page comes from the NTSB's public records. The narrative, probable cause and findings are the NTSB's own words; the coded tables behind the report are written out in plain English, with pilots' ages, home towns and medical details left out. The documents and photographs are the NTSB's docket, shown as the NTSB released them. This site's own text never names anyone involved. A preliminary report can change; the final report usually follows one to two years later, and the page is refreshed when it does.
