Aviation Crash Map

Evolution Air LANCAIR EVOLUTION N846PM

15 May 2017 · Firebaugh, California, United States · Minor injuries

Summary

On 15 May 2017 at about 23:44 local time, a Evolution Air LANCAIR EVOLUTION registered N846PM was involved in an accident near Firebaugh, California, United States. 5 people were on board and 3 had minor injuries. The aircraft was substantially damaged. The NTSB has published a probable cause for this accident; it is quoted in full below.

The record

Date
at 23:44
Classification
Accident
Location
Firebaugh, California, United States
Nearest airport
Firebaugh (F34)
Coordinates
36.8531, -120.4553
Aircraft
Evolution Air LANCAIR EVOLUTION
Registration
N846PM
Category
Airplane
Year built
2016
Engines
1
Operator
Not recorded
Operating rule
Part 91: General Aviation
Purpose of flight
Personal
Phase of flight
Not recorded
Route
Livermore → Marana
Aircraft damage
Substantial
Weather
VMC
Light
Day
NTSB number
WPR17LA104

People

3 people had minor injuries.

On board Died Serious Minor Uninjured
5 0 0 3 2

Probable cause

A failure in the windshield, frame, or windshield-to-frame bond, which resulted in a rapid decompression during cruise flight.  

Quoted verbatim from the NTSB record. This site does not paraphrase or interpret it.

Read the full NTSB narrative

The pilot reported that, while in cruise flight at 25,000 ft, the airplane's windshield shattered, immediately followed by a rapid decompression of the cabin. The pilot shut down the engine, entered an emergency descent, and navigated to a nearby airport. During the approach for landing, the pilot received an anomalous landing gear indication and chose to perform a gear-up landing. The airplane touched down with an 8-knot tailwind and slid along the runway until it impacted a fence, continued across a road, and came to rest in dirt. Both wings were substantially damaged. Postaccident testing showed that the relay modules responsible for opening and closing circuits to the left main landing gear were dislodged when the windshield shattered, resulting in the anomalous gear indication. The landing gear system functioned normally once the modules were reinstalled. A portion of the windshield that remained attached to the frame exhibited a fracture consistent with pure tension loading, likely from internal pressurization. Due to the curvature at that location, the fracture area was likely one of high stress on the windshield. Examination of the windshield fragments and frame did not show any evidence of impact from a foreign object, but showed significant structural flexing of the fuselage due to delaminated wet-layup plies during construction, as evidenced by extensive cracking at the aft engine cowling. However, the absence of an airplane structural analysis from the manufacturer precluded further review of the structural flexing of the fuselage. A material and bond evaluation showed that the windshield frame material did not exceed its glass transition temperature, indicating that the acrylic windshield was likely intact at the time of the failure; however, further analysis of the bond between the windshield and window frame could not be performed, as the manufacturer did not provide bond strength design values for either section. Several other factors in the construction of the windshield may have contributed to increased stresses at the location of a key fracture, which may have caused cracks to initiate and grow. In particular, parallel grinding marks around the edges of the windshield were inconsistent with the use of a dual-action grinder with 40-grit sandpaper as prescribed by the windshield installation instructions. These grinding marks may have introduced stress concentrations at the edge of the windshield and may have contributed to one of the primary windshield fractures. The overall appearance and mechanical behavior of the adhesive during the examination suggests that the bond strength between the windshield and frame was relatively low. Thus, the presence of disbonded areas may have affected the stress state on the windshield and contributed to increased stress at the primary fracture area. Finally, the overall composite layup varied from the specified layup schedule for the fuselage skin at two locations on the windshield frame. Alterations in the material used in the fuselage skin can change the elastic response to a given load. The change in the layup schedule and elastic response may have increased the stress at the location of the primary fracture area.  

Quoted verbatim from the NTSB record.

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