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NTSB Urges Pilot Qualification Changes for Hawker 800XP and 900XP Safety

NTSB issues urgent recommendations for pilot training and testing procedures on Hawker 800XP and 900XP aircraft after two fatal post-maintenance stall test accidents.

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This article is based on official safety recommendations and accident reports from the National Transportation Safety Board (NTSB).

NTSB Issues Urgent Safety Recommendations for Hawker 800XP and 900XP Post-Maintenance Flights

The National Transportation Safety Board (NTSB) has issued urgent safety recommendations calling for immediate changes to pilot qualifications and testing procedures for Hawker 800XP and 900XP Commercial-Aircraft. The recommendations are directed at Textron Aviation, the Federal Aviation Administration (FAA), and the National Business Aviation Association (NBAA) following two fatal accidents involving post-maintenance stall test flights.

According to the NTSB, the current regulatory framework allows standard line pilots to conduct high-risk functional check flights that require test-pilot-level skills. The agency has identified a critical gap in training and experience that has contributed to the loss of life in recent years.

The urgent action was triggered by investigations into two separate crashes, one in Michigan in October 2025 and another in Utah in February 2024, where crews lost control of their aircraft while attempting to verify stall warning systems after wing maintenance.

Urgent Recommendations for Industry Stakeholders

The NTSB’s report outlines specific actions required from the Manufacturers, the regulator, and industry advocacy groups to prevent further tragedies.

Directives to Textron Aviation

As the manufacturer, Textron Aviation is being urged to establish specific pilot qualification standards. These standards must define the experience, training, and proficiency required to safely conduct post-maintenance stall tests. Furthermore, the NTSB recommends that Textron revise aircraft maintenance and flight manuals to include standardized “stall test plans.” These plans should explicitly outline safe execution procedures, abort criteria, and risk management Strategy.

Directives to the FAA

The NTSB has called upon the FAA to mandate compliance with the new criteria established by Textron. The recommendations suggest that the FAA must increase oversight to ensure that only qualified pilots, potentially those meeting test-pilot-like standards, are authorized to perform these high-risk functional check flights. Currently, operators of Hawker 800XP/900XP aircraft are not strictly required to use specialized test pilots for these specific maintenance checks.

Directives to the NBAA

The NBAA has been tasked with disseminating this urgent safety information to its membership immediately. The NTSB emphasizes the need for collaboration between the NBAA, FAA, and Textron to develop and promote best practices for conducting post-maintenance functional check flights.

The Catalyst: Two Fatal Accidents

The NTSB’s urgent recommendations stem from two accidents where flight crews were unable to recover from stalls induced during mandatory post-maintenance checks.

The Michigan Accident (October 2025)

On October 16, 2025, a Hawker 800XP (Registration XA-JMR) crashed near Bath Township, Michigan, killing all three occupants. The aircraft had just completed seven months of routine maintenance at Duncan Aviation, which included the removal and reinstallation of wing leading edges and TKS ice-protection panels. This maintenance required a mandatory post-maintenance stall test flight.

According to the NTSB investigation, the operator elected to use their regular flight crew rather than professional test pilots, despite the maintenance facility providing a list of qualified test pilots for hire. The crew climbed to 15,000 feet to perform the test, but ADS-B data showed a rapid descent shortly after.

“We are in a stall… recovering… sorry.”

— Final transmission from the crew of XA-JMR, per NTSB records.

Investigators believe the crew likely encountered “aileron snatch,” an uncommanded roll phenomenon, or deep stall characteristics they were not trained to handle.

The Utah Accident (February 2024)

On February 7, 2024, a Hawker 900XP (Registration N900VA) crashed near the Utah-Colorado border, resulting in the deaths of both pilots. The aircraft was on a repositioning flight following maintenance at West Star Aviation. The NTSB Final Report determined that the crew attempted to perform the stall test in icing conditions, which is explicitly prohibited by the flight manual.

The investigation concluded that ice contamination on the wings likely degraded performance, causing the stall to occur earlier than expected and simultaneously with the stick shaker activation. This gave the crew no time to react before the aircraft entered a spin.

Technical Context: The Dangers of the Hawker Stall

The NTSB report highlights specific aerodynamic characteristics of the Hawker 800/900XP series that make these tests particularly hazardous for untrained pilots.

Lack of Natural Warning

Unlike many aircraft that provide a natural aerodynamic buffet (shaking) before stalling, the Hawker 800/900XP relies entirely on mechanical systems, specifically the stick shaker and stick pusher. During these maintenance tests, pilots are required to fly the aircraft to the very edge of its envelope to verify that the stick pusher activates to force the nose down.

Aileron Snatch and Roll

At the point of stall, airflow separation on the Hawker wings can cause the ailerons to “snatch,” leading to a violent, uncommanded roll of up to 80 degrees. Standard pilot training emphasizes using ailerons to correct a bank, but in a stall scenario, this input can worsen the situation and induce a spin.

The Qualification Gap

The NTSB identified a critical “gap” in pilot qualifications. Standard corporate pilot training focuses on avoiding stalls and recovering at the first indication of a stick shaker. However, maintenance tests require pilots to intentionally fly past that safety margin. Most corporate pilots have never performed a full aerodynamic stall in the actual aircraft, as simulators often do not perfectly replicate the violent roll characteristics of the actual jet.

AirPro News Analysis

These recommendations mark a significant shift in how the industry views “routine” maintenance flights. For decades, there has been a gray area regarding who is qualified to return an aircraft to service after major wing maintenance. By pushing for test-pilot-level qualifications, the NTSB is signaling that the era of using line pilots for functional check flights (FCFs) on complex airframes may be ending.

For operators, this will likely result in increased costs and scheduling complexities, as they may need to contract specialized crews for post-maintenance flights. However, the Safety data presented by the NTSB suggests that the cost of convenience, using regular crews for test-pilot work, is unacceptably high.

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Photo Credit: NTSB

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Regulations & Safety

Global Aerospace Issues Hangar Foam Suppression Safety Guidelines

Global Aerospace updates hangar fire suppression guidelines, citing 200+ accidental foam discharges and the shift to PFAS-free alternatives.

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Global Aerospace has issued updated safety and risk mitigation guidelines for aviation hangar fire suppression systems, highlighting the severe financial and environmental toll of accidental foam discharges. The aviation insurer published the comprehensive best practices on August 24, 2026, detailing the industry transition toward alternative fire protection technologies.

The guidance arrives alongside the introduction of the 2026 edition of National Fire Protection Association (NFPA) 409. This updated standard governs hangar fire protection and introduces critical changes to align requirements with modern aircraft design and growing environmental concerns regarding chemical suppressants.

The financial and human cost of accidental discharges

Fire suppression standards established in the mid-1970s heavily prioritized foam systems to combat large fuel-spill fires. However, Global Aerospace reports that these systems frequently cause more damage than the fires they are designed to prevent. Over the last two decades, more than 200 unnecessary foam discharges have occurred in aviation facilities.

These accidental activations have resulted in tens of millions of dollars in total damages, with the average per-incident cost reaching hundreds of thousands of dollars. Beyond property damage to aircraft and hangar infrastructure, accidental discharges pose severe life-safety risks to personnel.

The insurer cited a fatal 2014 incident at Eglin Air Force Base as a primary example of these hazards. Following a broken sprinkler pipe, the hangar filled with approximately 17 feet of foam in minutes, resulting in the death of one contractor.

Shifting standards and environmental-impact liabilities

Aviation insurers are increasingly processing claims that extend beyond immediate property damage to include long-term health risks and environmental restoration. This liability shift is largely driven by the presence of perfluoroalkyl substances (PFAS) in older aqueous film-forming foams (AFFF).

To mitigate these chemical risks, the aviation industry is actively transitioning toward fluorine-free foams and alternative fire suppression technologies. Global Aerospace highlighted the growing adoption of ignitable liquid drainage floor assemblies and optical flame detection systems, such as multi-spectrum infrared detectors. These alternatives eliminate hazardous chemicals and significantly reduce the likelihood of false alarms.

While the 2026 edition of NFPA 409 provides the framework for these modern systems, the updated standards must be adopted by local fire marshals before facilities can implement the changes.

Operational risk mitigation strategies

For facilities still operating legacy high-expansion foam (HEF) or AFFF systems, Global Aerospace recommends strict operational protocols to minimize the risk and impact of an accidental discharge. The insurer advises operators to protect all aircraft openings and secure sensitive electronics during maintenance operations.

In the event of a discharge, the guidelines stress the importance of keeping hangar doors closed to contain the foam and prevent environmental contamination outside the facility. Additionally, Global Aerospace recommends conducting all system testing and maintenance during off-hours to limit personnel exposure and operational disruption.

AirPro News analysis

The publication of these guidelines by a major aviation insurer underscores a broader industry reality: insurance providers are often the primary catalyst for operational safety upgrades. While regulatory bodies like the NFPA set the baseline standards, the financial pressure of uninsurable environmental liabilities tied to PFAS contamination is forcing hangar operators to modernize. We expect the transition to optical flame detection and drainage floor assemblies to accelerate rapidly as insurers begin pricing the risk of legacy foam systems out of the market.

Sources: Global Aerospace

Photo Credit: Global Aerospace

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Regulations & Safety

NTSB Preliminary Report: Ryanair 737-800 Engine Failure

NTSB confirms fan-blade-out on Ryanair 737-800 shattered cabin window, partially ejecting a passenger during climb from Thessaloniki.

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This is a developing story. Information may change as official details are released.

This is original reporting and analysis by AirPro News.

On August 13, 2026, the National Transportation Safety Board (NTSB) issued its preliminary report on a July 10 uncontained engine failure aboard a Ryanair Boeing 737-800, confirming that a fan-blade-out event shattered a cabin window and caused a rapid decompression. The incident resulted in a 61-year-old male passenger being partially pulled through the shattered window before being secured by fellow passengers.

The event occurred during climb out from Thessaloniki International Airport (SKG) in Greece. The flight, operated by Ryanair subsidiary Malta Air, was bound for Memmingen, Germany (FMM). The NTSB is currently investigating potential similarities between this event and a fatal 2018 engine failure, while the agency has also publicly addressed premature speculation regarding the cause by Ryanair leadership.

Flight 1879 rapid decompression

According to the NTSB preliminary report, the Boeing 737-800 was climbing when the right-hand CFM56-7B engine experienced a fan-blade-out event. Debris from the engine struck the fuselage and shattered a window at row 11. The resulting rapid decompression pulled a passenger partially outside the aircraft. The passenger sustained neck and shoulder injuries as well as friction burns, but no fatalities occurred.

Reporting by The Air Current indicates the failure happened at an altitude of approximately 15,000 feet. Passengers described a sudden and violent disruption to the flight. A passenger told AP News that the cabin was quiet before a loud noise resembling a bursting tire occurred, adding that they knew immediately the aircraft had lost pressure due to the sudden loss of altitude.

Initial reports following the July 10 incident suggested the failure occurred in the airspace of the Republic of North Macedonia. However, flight path analysis confirmed the event took place in Greek airspace. The Hellenic Air and Rail Safety Investigation Authority officially delegated the investigation to the NTSB on July 16, 2026.

Maintenance history and preliminary findings

The NTSB preliminary report notes that bird remains were found inside the damaged engine. Flight crews had reported four suspected bird strikes to the aircraft’s number two engine in the 12 months preceding the accident. The report states that bird remains were found in two of those previous cases.

Maintenance records indicate that the fan blades on the failed right engine underwent ultrasonic inspections in November 2025 and May 2026. No damage was found during either inspection. The official cause of the July 10 failure remains under investigation by the NTSB, with participation from the Federal Aviation Administration (FAA), Boeing, and CFM International, a joint venture between GE Aerospace and Safran.

Regulatory protocols and historical precedent

The investigation has generated friction between the NTSB and Ryanair regarding public communications. On August 7, 2026, NTSB Chair Jennifer Homendy issued a letter to Ryanair CEO Michael O’Leary after he told investors the investigation was focused on foreign object damage rather than aircraft age or maintenance. Homendy stated that the NTSB had made no such determination and noted that O’Leary’s comments violated International Civil Aviation Organization (ICAO) Annex 13 protocols governing accident investigations.

The aviation industry is closely monitoring the investigation due to the aircraft and engine types involved. The Air Current reported that the event closely mirrors the April 2018 Southwest Airlines flight 1380 uncontained engine failure, which also involved a Boeing 737-700 and a CFM56-7B engine. That incident resulted in one passenger fatality after a shattered window caused partial ejection, leading the FAA to mandate engine inlet redesigns by July 2028.

The NTSB addressed the historical context directly in its preliminary report:

The investigative team is aware of previous … events with similar engine models that resulted in damage to engine inlets or cowlings and fuselage structures. Determination of any relevant similarities or details between this accident and previous events remains under investigation.

AirPro News analysis

We observe that the public rebuke of a major airline CEO by the NTSB is a rare and significant enforcement of ICAO Annex 13 communication protocols. Operators typically defer entirely to the investigating authority to avoid compromising the integrity of an active probe. The NTSB’s swift correction underscores the agency’s zero-tolerance policy for operator speculation, particularly when an event involves high-profile safety concerns like uncontained engine failures.

The CFM56-7B is one of the most widely used commercial aviation engines in the world. Any investigation involving a fan-blade-out event on this powerplant will naturally draw intense regulatory scrutiny, especially given the precedent set by the 2018 Southwest Airlines accident. While the discovery of bird remains introduces foreign object damage as a variable, we expect investigators will rigorously examine the efficacy of the ultrasonic inspections conducted in November 2025 and May 2026 to understand how the blade failure propagated.

Sources: National Transportation Safety Board

Photo Credit: NTSB

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Regulations & Safety

FAA Installs New Surface Radar at Newark Airport

The FAA unveiled a new SMR-4 radar at Newark Liberty as part of a $30 million infrastructure upgrade targeting runway safety.

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U.S. Transportation Secretary Sean P. Duffy and Federal Aviation Administration (FAA) Administrator Bryan Bedford unveiled a new Surface Movement Radar-Systems Model 4 (SMR-4) at Newark Liberty International Airport (EWR) on August 11, 2026, replacing a 30-year-old legacy system.

The installation is part of a broader $30 million infrastructure upgrade at the New Jersey hub designed to prevent runway incursions and reduce delays. According to the FAA press release, the SMR-4 allows air traffic controllers to track aircraft and ground vehicles across runways and taxiways in all weather and visibility conditions.

Newark’s infrastructure modernization

The $30 million funding allocation for EWR spans a three-year period and targets critical technological vulnerabilities. During the summer of 2025, the Airports experienced severe delays that prompted the FAA to deploy Software patches, expedite fiber deployment, and rebalance flight volumes. To date, 90% of the airport’s legacy copper wiring has been replaced with high-speed fiber.

“Since the start of this administration, we have been working towards building a modern system that will serve America’s skies for generations,” Duffy stated. “From replacing Newark’s ancient copper wire to investing $30 million into new infrastructure and bringing new radar online, we are delivering real safety and efficiency enhancements at one of our nation’s busiest airports.”

The FAA has set a target deadline of summer 2027 for EWR to install new electronic information displays, upgraded voice switches, and a new long-range radar system.

National surface awareness rollout

The EWR installation is one of five SMR-4 systems deployed nationwide to date. The agency has accelerated its broader technological overhaul over the past year, replacing 60% of all copper wires in its national network and converting 363 radio sites. The FAA also transitioned 19 air traffic control towers to electronic flight strips and installed 151 IP voice switches at control towers across the country.

Bedford emphasized the operational volume driving the upgrades. “Newark sees well-over a thousand flights per day, and the new Surface Movement Radar will help controllers keep those flights safe at this major U.S. hub,” Bedford said, describing the deployment as a step toward modernizing the national airspace.

The push for enhanced surface surveillance follows a fatal runway incursion at LaGuardia Airport (LGA) on March 22, 2026. In that event, Air Canada (AC) Express Flight 8646, operated by Jazz Aviation using a Bombardier CRJ900, collided with an airport firefighting vehicle on Runway 4. The National Transportation Safety Board (NTSB) confirmed two pilot fatalities and 39 injuries. The NTSB is leading the ongoing Investigation, and no official cause has been determined.

In response to surface safety concerns, the FAA has installed 96 new Surface Awareness Initiative systems nationwide over the past year to provide controllers with better situational awareness.

AirPro News analysis

The FAA’s rapid deployment of 96 Surface Awareness Initiative systems and the ongoing SMR-4 rollout represent a tangible shift toward proactive technological intervention in ground operations. While the NTSB has not yet concluded its investigation into the March 2026 LaGuardia runway incursion, the agency’s aggressive timeline for replacing legacy copper wiring and installing surface tracking tools indicates that regulators are prioritizing immediate situational awareness upgrades for air traffic controllers. We view the $30 million targeted investment at EWR as a template the FAA is likely to replicate at other high-density hubs where legacy infrastructure limits operational capacity during low-visibility conditions.

Sources: Federal Aviation Administration

Photo Credit: Federal Aviation Administration

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