Premium research interface

The modern interface for aviation safety intelligence.

Search investigations, review source evidence, monitor watched reports, and trace long-term patterns from one calm, data-first workspace.

63k+
Reports indexed
1940-2026
Coverage
Recent
Last data refresh
Featured Report

Loading…

Loading featured report…

Loading…
Open Report

Safety trends by operating rule

Track fatal and non-fatal accident patterns across Part 91, Part 135, and Part 121 operations.

Loading trend charts…

Browse the aviation graph

Move quickly by aircraft, airport, operator, and time with indexes built for research, not wandering.

Last Data Update

By Decade

By Month

Aircraft Manufacturer

More manufacturers

Airports

More airports

Operators

More operators

About

Aviation safety reports, made easier to study

NTSB Reports is an independent research and search tool for public aviation accident and incident records. It brings NTSB aviation reports, structured fields, docket files, extracted figures, photos, videos, and update history into one searchable interface.

The goal is practical safety education: make it faster to find relevant investigations, compare similar events, review factual records, and understand the evidence behind probable-cause and preliminary reports.

The investigative work and source records belong to the National Transportation Safety Board and the published investigation record. This site is not affiliated with or endorsed by the NTSB.

FAQs

NTSB Report

April 9, 2023 · Stevens Kelly C RV-7 · N17NK

Morgan, UT

Overview

Report Status
Final with probable cause
Event Type
Accident
Date
April 9, 2023
Injury Outcomes
No injuries (1 uninjured)
Location
Morgan, UT
Aircraft
Stevens Kelly C RV-7 (2021)
Tail Number
N17NK
Injuries
None
Aircraft Damage
Substantial
NTSB Number
WPR23LA149

The pilot reported he noticed an odor of burning oil shortly after takeoff. About a minute later, the airplane began to shake, oil covered the windscreen, and the propeller separated from the crankshaft. The pilot performed a forced landing in a snowy field, and during the landing roll the airplane nosed over and came to rest inverted. The propeller assembly was found in a field about two miles away. The most recent condition inspection was completed by the pilot one week before the accident flight, and the airplane had accrued three flight hours since the inspection. Although brass flakes were observed in the engine oil during the condition inspection, engine data recovered from the airplane’s multi-function display was consistent with normal engine operation. Five of the six propeller bolts were recovered and examined after the accident. The examination revealed fatigue cracks in multiple areas on each bolt that progressed until each bolt failed in overstress. Additionally, two of the recovered bolts displayed more extensive fatigue features than the other three bolts that were examined. The pilot documented that he had removed, inspected, and reinstalled the propeller during the condition inspection. Given this information, it is likely that the pilot/builder had not torqued all the propeller attachment bolts to the correct value, resulting in the progressive fatigue failure of the bolts.

NTSB Probable Cause

The pilot/builder improperly torqued the propeller attachment bolts while reinstalling the propeller, which resulted in the fatigue failure of the bolts and the separation of the propeller assembly.

Full Narrative

On April 8, 2023, at about 1937 mountain daylight time, an experimental amateur-built Van’s RV-7, N17NK, was substantially damaged when it was involved in an accident near Morgan, Utah. The pilot was not injured. The airplane was operated as a Title 14 Code of Federal Regulations Part 91 personal flight. According to the pilot/builder, the airplane departed for a local flight about 1916. About 10 minutes into the flight, the pilot noticed the odor of burning oil when the cabin heater was turned on, so he turned back to the departure airport. About one minute later, the pilot noted “some light but not normal vibration in the airframe.” Seconds later, the airplane shuddered, oil covered the windscreen, and the engine lost all power. The pilot estimated the nearest airport was beyond the glide range of the airplane, so he chose to land in an open field. During the landing roll, the airplane’s main wheels sunk into deep snow, and the airplane nosed over. As a result, the airplane sustained substantial damage to the fuselage and empennage. Photos of the airplane at the accident site revealed the propeller assembly had separated from the engine. The propeller assembly was later recovered from a field about two miles from the accident site. Data retrieved from two panel mounted flight displays revealed the cylinder head temperature, exhaust gas temperature, oil temperature, oil pressure, fuel pressure, and rpm were consistent with normal engine operation until 19:28:15. Between 19:28:15 and 19:28:18, engine rpm increased from about 2,300 rpm to 2,841 rpm before decreasing to 0 rpm 2 seconds later, as seen in Figure 1. Figure 1: A portion of recorded engine data. A National Transportation Safety Board materials laboratory examination showed that five of the six propeller attachment bolts remained connected with safety cable within the bolt holes in the hub. The sixth bolt was missing. The fracture surfaces of all five remaining bolts exhibited features consistent with progressive cracking, crack arrest marks, ratchet marks, and multiple thumbnail shaped cracks. Two bolts displayed multiple fatigue crack initiation sites. Further examination with a scanning electron microscope did not reveal any corrosion pits or voids, and although there were some dissimilar materials observed, they were inconsistent with inclusions during the manufacturing process. Overall, the fracture surfaces were consistent with fatigue that had initiated in multiple sites on each bolt and propagated across the bolt cross sections until the remaining material succumbed to overstress fracture. Two of the five examined bolts displayed more extensive fatigue than observed on the other bolts. Review of the airplane’s maintenance records revealed it had flown three hours since its most recent condition inspection. During the condition inspection, which was performed by the pilot/builder, brass flakes were found in the oil sump and filter. After correspondence with a maintenance consultant, the pilot intended to fly the airplane an additional 10 hours to monitor the engine’s performance. The pilot stated that during the condition inspection, he removed the propeller to clean sludge from the end of the crankshaft. He stated that he did not see any defects when he visually inspected the propeller and attachment bolts. He re-installed the propeller, torqued the attachment bolts with a torque wrench, and used a ratcheting safety cable tool to install .32-inch safety cable in the bolts. The pilot stated he referenced the MT Propellers technical data included with the purchase of the propeller. He could not recall the torque value he used during the installation of the propeller. According to MT Propellers Operation and Installation Manual E-124, torque values for propeller attachment bolts are 63-66 ft/lbs.

Flight

Event TypeAccident
Event Time19:37 MDT
Nearest Airport0nm
Flight Plan FiledNone
Flight Plan ActivatedNo
Aircraft FireNo
Aircraft ExplosionNo

Aircraft

AircraftStevens Kelly C RV-7
Tail NumberN17NK
Aircraft CategoryAir
DamageSubstantial
Operating RulePart 91
Engines1
Engine TypeReciprocating
Engine DetailsTitan · IOX-370-A4D3T · Reciprocating · 187
Seats2

People & Injuries

Injury SummaryNo injuries (1 uninjured)
Fatal0
Serious0
Minor0
Uninjured1
Total1
Crew 1Age 62 · First Class · None

Conditions

ConditionsVMC
LightDaylight
Wind350° @ 5 kt
Visibility10 sm
CeilingNone
Temperature / Dew Point57 F / 37 F
Altimeter30.08 inHg
Observation Time19:54
Weather SourceWFAC

Appendix: Source Data