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Accidents · NTSB ERA16LA209 · Final report

Wsk Pzl Mielec M 18A accident near Brunswick, North Carolina, June 10, 2016

On June 10, 2016 at about 1:00 pm local time, a 1994 Wsk Pzl Mielec M 18A, registered N2283M, was destroyed in an accident during maneuvering (low-alt flying) near Brunswick, North Carolina. It was an aerial application (crop spraying) flight under agricultural flying rules (Part 137). 1 person was killed. The weather was visual conditions (good weather).

The NTSB's probable cause their words, unchanged

The failure of the right wing due to a fatigue fracture of the right outboard wing forward spar lower fitting. Contributing to the accident was the routine operation of the airplane over its certificated maximum gross weight and the operator's improper or inadequate maintenance practices, which failed to apply a service life factor to the airplane to account for its overweight operation and also failed to detect the extensive corrosion throughout the airplane.

Source: NTSB aviation accident database, copy made October 5, 2026. Docket and reports at the NTSB.

What the record shows

Date
June 10, 2016 · about 1:00 pm local time
Place
Brunswick, North Carolina · map
Type
Accident
Injuries
1 person was killed.
Weather
visual conditions (good weather)
Aircraft
Wsk Pzl Mielec M 18A B, built 1994
Registration
N2283M · no longer on the register · serial 1Z024-25
Damage
Destroyed
Flight
Aerial application (crop spraying) flight · agricultural flying rules (Part 137)

The NTSB's narrative final · quoted from the NTSB record

The experimental, restricted-category airplane impacted wooded terrain after a separation of the right wing during an aerial application flight. The right wing separated under normal loading conditions due to extensive pre-existing fatigue cracking in the right outboard wing forward spar lower fitting as the result of corrosion in the hole bores. In addition, the outboard half of the right aileron separated during the accident sequence due to fatigue cracking in the right outboard aileron bracket. Examination revealed evidence of moderate to severe corrosion throughout the airplane. Given the amount of fatigue cracking and the individual crack features of the spar fitting, it is likely that the cracking was present for an extended period of time before the final separation and also likely would have been visible during previous inspections. Maintenance records indicated that the airplane received an annual inspection about 6 months before the accident and inspection of the wing fittings in accordance with a Federal Aviation Administration airworthiness directive; however, these inspections failed to detect the pending failure of the right wing, indicating that they were performed inadequately or improperly. The maintenance records also indicated that the wing fittings on the accident airplane had been replaced on three occasions in the 15 years before the accident, indicating that proper cleaning and corrosion prevention procedures were not being performed. The airplane was operated over its certificated maximum gross weight on the accident flight and likely had been operated overweight for much of its lifetime. About 11 years before the accident, the airplane was outfitted with a larger hopper, increasing its capacity from 660 gallons to 800 gallons. While the increased hopper volume is beneficial for operation with lower-density solid or dry chemicals, it could easily be loaded with up to twice the certificated weight of liquid chemicals. Although the manufacturer published provisions for increasing the operating weight of the airplane, it required that the airframe service life limit of 10,000 hours be reduced by a factor of 1.35. Review of maintenance records indicated that not only did the operator not apply any service life limit factors to account for the overweight operation but that a reduction in overall airframe time was annotated several years before the accident; this reduction could not be reconciled based on the information presented in the records. Given the lack of information about its operating history, the actual service life of the airplane could not be determined; however, it is likely that the airplane was close to or had exceeded its service life, particularly given the overweight operation. Although the failed wing fittings had not accumulated the service life limit due to their replacement, the corrosion found throughout the airplane and its routine overweight operation would have reduced the true service life of the fittings. In addition to the increased airframe stress imposed by continuous overweight operation, the airplane was modified to install a turbine engine many years before the accident. The engine conversion likely caused more severe flight loads than accounted for in the design of the original radial piston engine-equipped airplane, further rendering the manufacturer-published service limits inadequate.

The complete narrative as the NTSB published it. The NTSB's docket holds the report as a PDF and any photographs, statements and other documents from the investigation.

The factual record from the NTSB's investigation tables, in plain English

What happened, in order

  1. Aircraft structural failure during maneuvering (low-alt flying) defining event
  2. Part(s) separation from AC during maneuvering (low-alt flying)
  3. Collision with terrain or object (not controlled flight into terrain) during uncontrolled descent

The NTSB's findings

  • cause Aircraft › Aircraft structures › Wing structure › Attach fittings (on wing) › Fatigue/wear/corrosion
  • factor Personnel issues › Task performance › Maintenance › Scheduled/routine maintenance › Maintenance personnel
  • factor Organizational issues › Support/oversight/monitoring › Oversight › Oversight of maintenance › Operator
  • factor Organizational issues › Support/oversight/monitoring › Oversight › Oversight of operation › Operator
  • factor Aircraft › Aircraft oper/perf/capability › Aircraft capability › Maximum weight › Capability exceeded
  • factor Aircraft › Aircraft structures › (general) › (general) › Fatigue/wear/corrosion

Pilot

  • Certificate: commercial pilot
  • Ratings: multi-engine land; single-engine land; instructor: airplane single-engine; instructor: instrument airplane; instrument: airplane; instrument: helicopter; rotorcraft: helicopter
  • Flight time: 30,576 hours in all; 99,999 in this make and model
  • Medical certificate: Class 2 (with waivers/limitations)
  • Seat: sngl
  • Injury: fatal

The aircraft

  • Airframe total time: 8,567.9 hours
  • Last inspection: annual inspection, January 15, 2016; 350 hours since
  • Maximum gross weight: 9,260 lb
  • Seats: 1
  • Landing gear: fixed
  • Engine: Honeywell TPE 331-11UA- (turboprop); 0 hours total
  • Operator: Canam Aviators INC

The flight

  • Departed from: NC43 Supply NC at 12:45 pm
  • Destination: NC43 Supply NC
  • Flight plan: none

Weather at the time

  • Light: daylight
  • Wind: from 310° at 6 knots
  • Visibility: 10 statute miles
  • Sky: clear
  • Temperature: 79°F (26°C), dew point 70°F (21°C)
  • Altimeter: 30.10 inHg
  • Observation at 12:50 pm from KSUT, 18 miles away

Injuries

FatalSeriousMinorNone
Flight crew1

Documents from the investigation the NTSB's docket: the evidence folder behind the report

11 documents, released by the NTSB on March 22, 2018. View them here, or download them; the NTSB redacts some personal details before release, and this site shows the NTSB's own titles rather than its file names.

The same docket at the NTSB · documents without a copy here are fetched from the NTSB when you open them.

Everything on this page comes from the NTSB's public records. The narrative, probable cause and findings are the NTSB's own words; the coded tables behind the report are written out in plain English, with pilots' ages, home towns and medical details left out. The documents and photographs are the NTSB's docket, shown as the NTSB released them. This site's own text never names anyone involved. A preliminary report can change; the final report usually follows one to two years later, and the page is refreshed when it does.