CEN16LA108
2016-02-23 · Grand Junction, Colorado, United States · None · 1 aircraft · Status: Completed
Airport GJT
Current FAA registration · N10580
- Make / Model
- CESSNA LC41-550FG
- Engine
- CONT MOTOR TSIO-550-C (310 hp)
- Seats / Engines
- 5 seats · 1 engine
- Last airworthiness date
- 20090617
- ADS-B equipped
- Yes — Mode-S A01AD0
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
Failure of the right main tire for reasons that could not be determined because the tire was not available for examination.
Factual narrative
On February 23, 2016, about 1810 mountain standard time, the right main tire on a Cessna LC41-550FG, N10580, failed on landing at Grand Junction Regional Airport (GJT), Grand Junction, Colorado. The pilot and pilot-rated passenger were not injured. The airplane was substantially damaged. The airplane was registered to and operated by Grand Junction Aircraft Sales, Inc., of Grand Junction, Colorado, under the provisions of 14 Code of Federal Regulations Part 91 as a test flight. Visual meteorological conditions prevailed at the time of the accident, and a Visual Flight Rules flight plan had been filed. The local flight originated from GJT about 1745. The pilot reported that the landing touchdown was smooth, then the airplane suddenly veered to the right. Opposite braking was applied but to no avail. The airplane struck a taxiway sign at A-3 and collided with a ditch. Post-accident examination revealed the right main tire had blown out. The airplane had just received an annual inspection; no anomalies were noted. Post-accident examination revealed three damage areas to the right wing lower skin. There was a puncture in the skin and access door. The outer face sheet and core was damage. There was also scraping of the lower wing skin. The paint and outer face sheet were damaged. There was a longer scrape with a puncture at the aft end. The paint, outer face sheet and core sustained damage in this area. The damage would affect the structural strength of the one-piece composite wing and would require a major repair. Photos of the tire were sent to the Goodyear Tire Company and the Desser Tire Company for comment. According to Goodyear's Senior Product Support Manager, the tire appeared to be an R3 (retread level = 3). He said Goodyear does not retread tires for Cessna aircraft. A spokesman for Desser Tire Company said "the tire looks beat up, but intact. The area [Desser] works on is on the upper shoulder and tread which, from the picture, looks to be intact." No determination of what caused the tire to fail was made. Since the owner had later discarded the tire, further examination could not be performed. The pilot reported that, during landing following a postmaintenance test flight, the airplane suddenly veered to the right and struck a taxiway sign. Postaccident photographs revealed that the right main tire blew; however, the investigation was unable to determine why the tire failed because the owner discarded the tire before the investigation was complete. Source: NTSB Aviation Accident Database Retrieved: 2026-02-12
NTSB Findings
FAA avdata. C = Cause, F = Factor.
- C Aircraft-Aircraft structures-(general)-(general)-Failure - C
Verbatim from NTSB's published report. Source file
NTSB_2016_CEN16LA108.txt.
Findings + structured fields enriched from FAA avall.mdb.
Full investigation docket on
data.ntsb.gov ↗.
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Related research
Matched on aircraft type or causal vocabulary (maintenance). All research papers
- 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 2026 · Article (Reliability Engineering & System Safety) Understanding human error in military aviation maintenance: The role of Performance shaping factors, cognitive workload and error orientation
- 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.
- Semantic Scholar 2024 · Article (Defence Science Journal) Modelling of Human Factors in Aviation Maintenance Using HFACS ME Human Factors Analysis and Classification System Maintenance Extension and Bayesian Network
Aircraft maintenance is a complex task involving a skilled human workforce, spare parts, and various other resources. Human factors are an inherent element of the human workforce.
- 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 (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…