NTSB CAROL · Event
Event ERA23LA073
Registry · N8006A
FAA Aircraft Registry record.
Make / Model
ROTORWAY INTL EXEC 162F
Engine
AMA/EXPR UNKNOWN ENG
Seats / Engines
2 seats · 1 engine
Last airworthiness date
20031124
ADS-B equipped
Yes — Mode-S AAE508
Registrant of record
PRILOL JOSEPH
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
A failure of the No. 4 exhaust valve spring retainer, which resulted in a partial loss of engine power.
Factual narrative
On November 27, 2022, about 1130 eastern standard time, an experimental amateur-built Rotorway Exec 162-F helicopter, N8006A, was substantially damaged when it was involved in an accident near the Space Coast Regional Airport (TIX), Titusville, Florida. The flight instructor and the pilot trainee were not injured. The airplane was operated as a Title 14 Code of Federal Regulations Part 91 instructional flight. The flight instructor, who also owned the helicopter, stated that shortly after takeoff, while about 150 ft above ground level, the engine lost partial power with “severe backfiring.” He declared an emergency, turned back to the airport, and landed on a grassy area. Upon touchdown, with a ground speed of 5-10 mph, the helicopter’s front left skid dug into the grass. The helicopter entered a dynamic rollover and came to rest on its left side, resulting in substantial damage to the tail boom and main rotor blades. Postaccident examination of the engine revealed the No. 4 exhaust valve spring retainer was missing. Review of the engine maintenance manual revealed the valve train system including the spring retainer, was to be inspected every 25 hours. The manual stated, “Note the relative depth of the keeper set in each spring retainer. You may notice a slight variance on different valves, but no keeper set should be sunk deeply into a retainer. The important thing to look for is any change in the relative position of each keeper set. If you determine that a keeper set seems to be sinking deeper into its retainer, DO NOT continue to operate the engine.” A review of the engine logbook revealed that the instructor/owner performed the 25-hour inspection on October 11, 2022, about 8.8 hours before the accident. The flight instructor, who was also the owner of the experimental amateur-built helicopter, said that shortly after takeoff, while about 150 ft above ground level, the helicopter’s engine lost partial power with “severe backfiring.” He declared an emergency, turned back to the airport, and landed on a grassy area. Upon touchdown, the helicopter’s front left skid dug into the grass and the helicopter rolled over. Postaccident examination of the engine revealed the No. 4 exhaust valve spring retainer was missing. The engine maintenance manual required inspection of the valve train system, including the spring retainer, every 25 hours. A review of the engine maintenance logbook revealed that the flight instructor/owner had performed the 25-hour inspection about 8.8 hours before the accident. The reason for the separation of the valve spring retainer was not determined. Source: NTSB Aviation Accident Database Retrieved: 2026-02-12
NTSB Findings
Hierarchical cause / factor breakdown from the FAA bulk avdata database. Each finding tagged C (Cause) or F (Factor).
- — Aircraft-Aircraft power plant-Engine (reciprocating)-Recip eng cyl section-Failure
Verbatim from NTSB's published report. Source file
NTSB_2022_ERA23LA073.txt.
Findings + structured fields enriched from FAA avall.mdb.
Full investigation docket on
data.ntsb.gov ↗.
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Related research
What the literature says.
Academic papers and agency reports matching this event's aircraft type or causal vocabulary (maintenance). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
- Embry-Riddle Scholarly Commons 2026 · Journal article (IJAAA)
From Reactive to Predictive: A hybrid Trust-Mediated Adoption Framework for Data-Driven Maintenance in Distributed-Authority Aviation Environments
Modern aviation maintenance operates within increasingly data-intensive technological environments, yet the operational integration of predictive maintenance into routine decision-making remains incon…
- Semantic Scholar 2025 · Article (Applied Sciences)
Decision-Making Framework for Aviation Safety in Predictive Maintenance Strategies
The implementation of predictive maintenance (PM) in aviation presents unique challenges due to strict safety requirements, complex operational environments, and regulatory constraints.
- Embry-Riddle Scholarly Commons 2024 · Journal article (JAAER)
Low-Resource Automatic Speech Recognition Domain Adaptation – A Case-Study in Aviation Maintenance
With timeliness and efficiency being critical in the aviation maintenance industry, the need has been growing for smart technological solutions that optimize and streamline the different underlying ta…
- Embry-Riddle Scholarly Commons 2024 · Journal article (JAAER)
A New Trajectory in UAV Safety: Leveraging Reinforcement Learning for Distance Maintenance Under Wind Variations
In the field of aviation, safety is a critical cornerstone, and the operation of Unmanned Aerial Vehicle (UAV) systems is deeply connected with this principle.
- Embry-Riddle Scholarly Commons 2024 · Journal article (IJAAA)
Just Culture in Aviation: A Metaphorical Study on Aircraft Maintenance Students
Just Culture, a sub-dimension of safety culture, has been a prominent and debated topic in aviation safety in recent years.
- Embry-Riddle Scholarly Commons 2024 · Journal article (IJAAA)
Performance PRISM: A Comprehensive Framework For Performance Measurement In Aircraft Maintenance
Aircraft maintenance is governed by rigorous safety requirements and high operational complexity, demanding robust performance measurement frameworks to ensure optimal maintenance practices.
Browse the full corpus — academia portal ↗