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Atlas / NTSB / DEN07LA044

NTSB CAROL · Event

Event DEN07LA044

2007-01-03 Baldwin City, Kansas, United States Serious 1 aircraft Status: Completed

Registry · N113JD

FAA Aircraft Registry record.

Make / Model

ECLIPSE AVIATION CORP EA500

Year of manufacture

2007 · 0 years old at event

Engine

P&W CANADA PW610F-A

Seats / Engines

6 seats · 2 engines

Last airworthiness date

20071121

ADS-B equipped

Yes — Mode-S A03824

Registrant of record

ALBERT HALL COMPANY LLC

Source: FAA Aircraft Registry (releasable master file).

Aircraft involved

Probable cause & findings

the failure of the tail rotor drive belt for undetermined reasons. A contributing factor was the lack of suitable terrain for the forced landing.

Factual narrative

On January 3, 2007, at 1505 central standard time, a Marino Exec 162F-1995 single-engine homebuilt helicopter, N113JD, sustained substantial damage when it impacted trees and terrain during a forced landing following a loss of control near Baldwin City, Kansas. The airline transport pilot sustained serious injuries and the passenger sustained minor injuries. The helicopter was registered to and operated by the pilot. Visual meteorological conditions prevailed, and a flight plan was not filed for the Title 14 Code of Federal Regulations Part 91 personal flight. The local flight departed Paola, Kansas, approximately 1500, and was en route to Lawrence, Kansas. According to the pilot, approximately 15 minutes into the flight, the "tail rotor failed," and the helicopter entered an uncommanded turn to the left. The pilot initiated an autorotation to an opening in a wooded area. The pilot flared the helicopter over the trees, and the helicopter settled into the trees. As the pilot increased the collective, the helicopter rolled to the left and came to rest inverted in the trees. The fuselage and tail boom sustained substantial damage and the main rotor blades were destroyed. Examination of the helicopter by the pilot and a mechanic revealed that the tail rotor drive system uses three belts interconnected via pulleys at various points in the tail boom, to drive the tail rotor. The intermediate tail rotor drive belt was shredded and destroyed. The forward and aft tail rotor drive belts were intact and undamaged. At the time of the accident, the tail rotor drive belts had accumulated approximately 80 hours. The tail rotor drive belts had a life limit of 250 hours. The reason for the failure of the tail rotor drive belt could not be determined. Approximately 15 minutes into the flight, the tail rotor failed, and the helicopter entered an uncommanded turn to the left. The pilot initiated an autorotation to an opening in a wooded area. The pilot flared the helicopter over the trees, and the helicopter settled into the trees. As the pilot increased the collective, the helicopter rolled to the left and came to rest inverted in the trees. Examination of the helicopter by the pilot and a mechanic revealed that the tail rotor drive system uses three belts interconnected via pulleys at various points in the tail boom, to drive the tail rotor. The intermediate tail rotor drive belt was shredded and destroyed. The forward and aft tail rotor drive belts were intact and undamaged. At the time of the accident, the tail rotor drive belts had accumulated approximately 80 hours. The tail rotor drive belts had a life limit of 250 hours. The reason for the failure of the tail rotor drive belt could not be determined. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12

Verbatim from NTSB's published report. Source file NTSB_2007_DEN07LA044.txt. Findings + structured fields enriched from FAA avall.mdb. Full investigation docket on data.ntsb.gov ↗.

Related research

What the literature says.

Academic papers and agency reports matching this event's aircraft type or causal vocabulary (loss of control). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.

Browse the full corpus — academia portal ↗