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Spantax Flight 995

13 Sept 1982 · Málaga Airport, Málaga, Spain

McDonnell Douglas DC-10-30CF · Aborted take-off resulting runway overrun

From Adolfo Suárez Madrid–Barajas Airport (MAD) to John F. Kennedy International Airport (JFK)

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Event

Event typeAccident: someone killed or seriously injured, or the aircraft substantially damaged (NTSB definition). Incident: an occurrence that affected or could have affected safety, short of that. Glossary
Accident
Event fatalities
50 · all aircraft and ground
Ground fatalities
Unknown
Occupants
394
Survivors
344
InjuriesFatal: death within 30 days. Serious: over 48 hours in hospital within a week, most broken bones, severe bleeding, nerve or organ damage, or serious burns. Minor: anything less. Glossary
111 · 1 on the ground
OperationWhat kind of flying it was, grouped by the rules it flew under: airline (US Part 121), air taxi and commuter (Part 135), general aviation (Part 91 and similar), military or government. Glossary
Airline

McDonnell Douglas DC-10-30CF

Flight
BX995
Category
Airplane · from aircraft type
RegistrationThe aircraft's tail number, such as N12345 or G-ABCD. Registrations are reissued, so the same one years apart can be a different aircraft. Glossary
EC-DEG
Operator
Spantax
Onboard fatalities
50
Route
From Adolfo Suárez Madrid–Barajas Airport (MAD)To John F. Kennedy International Airport (JFK)

Cause areas

  • Aircraft › Aircraft handling/service
  • Aircraft › Aircraft systems

From the investigation findings the Wikipedia article reports, sorted into the NTSB's cause areas with AI assistance.

Approximate · Coordinates from the Wikipedia article; not checked against an investigation report.

From the Wikipedia article

Spantax Flight 995 was an international charter flight from Madrid–Barajas Airport to New York via Málaga Airport. On 13 September 1982, when the DC-10 aircraft was rolling for take-off from Malaga, the pilot felt a strong and worsening vibration and aborted the take-off. The aircraft was unable to stop in the runway available and overran the runway, hitting numerous structures, crossing the nearby highway, collided with several vehicles before bursting into flames. A total of 50 people were killed in the accident.

Spanish investigators concluded that the crash was mainly caused by a faulty tire. A failure on one of the tires' treads created worsening vibration on the aircraft during the take-off roll. The crew decided to abort the take-off but due to the aircraft's speed at the time and the lack of remaining runway length, the aircraft eventually overran the runway and crashed. The decision to abort the take-off, however, was deemed as reasonable.

Accident

The flight had begun in Palma de Mallorca earlier in the morning, operating as Iberia Flight 4439 with 121 passengers, 13 crew members and an additional 4 Spantax employees, and made a routine stopover at Madrid–Barajas Airport. In Madrid, a total of 129 passengers boarded the aircraft, heading for Málaga as Spantax Flight 995. It arrived in Málaga at 08:20 local time. By this time, an undisclosed number of passengers had disembarked from the aircraft; however, a total of 251 additional passengers embarked on the flight. The aircraft was almost at full weight, with every seat in the aircraft being booked. The flight's final destination was New York's John F. Kennedy International Airport.

Crash

At 09:58:50 local time, the aircraft was cleared for take-off on Runway 14. The flaps were set to 8 degrees, and the slats were extended. The throttles were fully pushed forward. Just seconds from reaching V1 (162 knots), passengers and crews began to feel vibrations on the aircraft. Both pilots were initially startled by the vibration but chose to continue the takeoff. After reaching VR (169 knots), the nose was pulled, and the vibrations started to get worse. At 175 knots, Captain Pérez, believing that he would lose all control of the aircraft if he continued, decided to abandon the take-off and pushed the nose down, slamming the aircraft's nose gear down and applied full reverse thrust and brakes.

As the aircraft rapidly approached the runway's end, Captain Pérez had to quickly switch his right hand from the control column to the throttle to apply the reversers. Unfortunately, during the panic, his right hand had slipped on the throttle for engine No.3, causing a slight thrust asymmetry as only the No.1 and No.2 engines were put into reverse. This eventually caused the aircraft to sway to the left. Knowing that there was not enough runway length to stop the aircraft, he ordered the engines to be shut down.

An audio-visual specialist at Pace University, Carlton Maloney, was recording audiotape during the take-off as part of a series of recordings of airplane takeoffs and landings. In the recording, passengers could be heard panicking and screaming as the aircraft started to lose control.

The aircraft eventually overshot the runway, striking multiple landing lights. Its engine No.3, which was located on the right wing, then slammed onto an ILS structure, causing it to detach from the wing. The aircraft then struck the airport's metal perimeter fence, passing over the Malaga-Torremolinos Highway and striking a truck and two cars, seriously injuring the truck driver. It eventually collided with a farm building with its right wing. The collision ripped off three quarters of the right wing and the right horizontal stabilizer, sparking the overwing fuel tanks and igniting a huge explosion.

The collision with the structures created gaping holes on the walls of the fuselage, specifically on the top part of the passenger compartment near the emergency door 4R. The holes enabled the fire to immediately enter the cabin, burning 8 people who were seated in the area to their deaths.

The aircraft eventually came to rest in a field about 450 m (1,475 feet) past the runway threshold.

Investigation and cause

Investigation

An investigation team from the Spanish Civil Aviation Accident and Incident Investigation Commission (CIAIAC) and the American National Transportation Safety Board (NTSB) was assembled to investigate the accident. The flight recorders were retrieved and sent to the manufacturer Sundstrand in Charlotte, North Carolina.

Cause of vibration

Following the crash, investigators discovered pieces from the aircraft's tires during a visual inspection of the runway. They were found scattered in torn condition and in fragments. Recovered parts from the wreckage suggested that the pieces originated from tire no. 2 of the front gear. The findings indicated that the tire probably had burst during takeoff. The recovered pieces indicated the separation of several layers' weavings from each other. Examination on the pieces revealed that the rubber thread that had been sticking the layers together had been wearing thin, showing progressive failure. The failure eventually caused a series of holes to appear on the wheels.

Investigators stated that the faulty tire resulted from inadequate maintenance. The wheels were retreaded improperly, in that each layer of the wheels was not using adequate adhesive and the faulty condition of the rubber strip that had banded the layers together caused further deterioration to the tire's structural integrity. Due to the faulty retreading process, "bubbles" began to appear in several areas, further weakening the adhesion of each layer. Exposure to high temperature during the takeoff roll caused the tire to burst, likely happened during the aircraft's rotation. This, in turn, created heavy vibrations that caused the crew to abort the takeoff.

Conclusion

The CIAIAC determined that the crash was caused by a rejected takeoff due to vibrations that had originated from a faulty nose wheel. The nose wheel, specifically tire no. 2, had been retreaded improperly which caused the tire to fail during the takeoff roll. The captain's decision to abort the takeoff was deemed to be reasonable enough considering his inability to identify the failure due to lack of time to identify the source and lack of training of failures during takeoff. Following the crash, the commission recommended crews to be trained on other failures than engine malfunctions on take-off and also called for passengers to be briefed about the dangers of taking their bags along with them and for crews to be in close reach of safety equipment such as megaphones and flashlights.

Text from the Wikipedia article “Spantax Flight 995” (revision 1374710934, retrieved 2026-09-18) by its authors, under CC BY-SA 4.0. Extracted as plain text: references, tables, images and some sections are left out. Read the article

Sources

Wikipedia article: Spantax Flight 995
Article
Spantax Flight 995
Revision
1374710934 · 2026-09-13 · retrieved 2026-09-18
Wikidata
Q2239140
Licence
Text CC BY-SA 4.0, by the article's authors; Wikidata CC0; town positions GeoNames (CC BY 4.0)
Where each value comes from
Record
Wikipedia article "Spantax Flight 995" (page 15559643, revision 1374710934)
Date
Wikipedia infobox: date
Place and country
Wikipedia infobox: site
Map position
Wikipedia article coordinates
Aircraft, operator and route
Wikipedia infobox: aircraft type, registration, operator, origin and destination; route airports from the linked airport articles' Wikidata codes (OurAirports)
Operation
airline flight number in the infobox
Fatalities
Wikipedia infobox: total_fatalities
Ground fatalities
not stated in the Wikipedia infobox
Summary
Wikipedia infobox: summary
Source notes (1)
  • Wikipedia · Facts from the Wikipedia article's infobox and coordinates, not checked against an investigation report. Independent review pending.