NTSB CAROL · Event
Event CEN12LA335
Aircraft involved
Probable cause & findings
The pilots’ improper decision to burn fuel during the taxi by operating the engines at a higher-than-normal power setting and using the wheel brakes to control taxi speed, which resulted in a wheel fire.
Factual narrative
On May 17, 2012, about 0715 central daylight time, a Shorts SD3-60, N617FB, registered to ACC Integrated Services Inc., of Milwaukee, Wisconsin, was substantially damaged following a wheel brake fire during taxi at the George Bush Intercontinental Airport, Houston, Texas. The airline transport pilot and commercial co-pilot were not injured. The airplane was being operated by Air Cargo Carriers LLC of Milwaukee, Wisconsin, as an air cargo flight under the provisions of 14 Code of Regulations Part 135. Visual meteorological conditions prevailed and a flight plan was filed. The airplane was taxiing to position for takeoff from runway 8R and its intended destination was Austin, Texas. The flight crew reported that the airplane was about 60 pounds over its maximum weight for takeoff. Since their taxi to the assigned runway was long, they decided to reduce weight by using higher-than-normal engine power settings while maintaining some amount of braking to control speed while taxiing in order to burn fuel prior to takeoff. During the taxi, the right and left main landing gear tires deflated when the fusible plugs in the wheels blew out due to over-heating, and a fire ignited in the right wheel housing. The crew reported that they felt the airplane yaw as the tires deflated and were informed via radio by a following airplane that their right wheel was on fire. The crew brought the airplane to a stop on the taxiway, evacuated, and attempted to extinguish the fire with two hand-held fire extinguishers. Airport fire fighting personnel arrived on scene and extinguished the fire using foam suppressant. The fire resulted in substantial damage to the wing support structures. No injuries were incurred to the flight crew or ground personnel. Although the fire damage was extensive, postaccident examination of the airplane by an FAA inspector, a NTSB investigator, and the operator's maintenance personnel did not show evidence of mechanical malfunction or abnormalities with the wheel and brake system. The Shorts SD3-60 is a twin turbo-prop, strutted, high-wing airplane. Each of the main wheels are equipped with fusible plugs that are designed to blow out in the event of severe wheel overheating. Inspection of the airplane's wheel and brake systems after the accident showed that the plugs on both main wheels blew out as designed. The fire caused severe damage to the right main gear housing, which was part of the stub wing assembly structure and incorporates the attachment fitting for the wing strut. The operator's maintenance department believed that the fire caused substantial structural damage to the extent that repair was not practical. The operator submitted in NTSB Form 6120 that both crew members stated that they had been trained to not ride the brakes while taxiing. Additionally, the Captain stated that he did not realize that he was in danger of blowing the tires much less causing a fire, otherwise he would not have attempted to bum off excess fuel while taxiing. The operator revised its training program to highlight the hazards of excessive brake use during all ground operations, including taxi. Additional emphasis will be placed on the purpose of the fusible plugs and photographs of the event will be used in all future training classes where the brake system is taught. The pilots reported that the cargo airplane was about 60 pounds over its maximum takeoff weight. Because their taxi to the assigned runway was long, they decided to reduce weight by using higher-than-normal engine power settings to burn fuel before takeoff while using the wheel brakes to control the airplane’s speed while taxiing. During the taxi, a fire ignited in the right wheel housing. The pilots brought the airplane to a stop on the taxiway, evacuated, and attempted to extinguish the fire with two handheld fire extinguishers. Airport firefighting personnel arrived on scene and extinguished the fire using foam suppressant. Although the fire damage was extensive, postaccident examination of the airplane did not show evidence of mechanical malfunctions or failures with the wheel and brake system that could have caused the fire. The right and left main landing gear tires deflated when the fusible plugs in the wheels blew due to overheating. The fusible plugs are designed to “fail” if the wheels overheat, and those plugs functioned as designed. The pilots stated that they had been trained to not ride the brakes while taxiing. However, the captain stated that he did not realize that he was in danger of blowing the tires much less causing a fire, otherwise he would not have attempted to bum off excess fuel while taxiing. 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).
- C Personnel issues-Action/decision-Info processing/decision-Decision making/judgment-Flight crew - C
- C Personnel issues-Action/decision-Action-Incorrect action performance-Flight crew - C
- C Aircraft-Aircraft systems-Landing gear system-Brake-Incorrect use/operation - C
Verbatim from NTSB's published report. Source file
NTSB_2012_CEN12LA335.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.
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