ERA15FA254 · Beech A36
Beech A36 · Accident: loss of engine power (total) en route
From Lancaster Airport (LNS) to Norwood Memorial Airport (OWD)
Event
- NTSB case
- ERA15FA254
- 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
- InvestigationHow far the investigation had got when the record was published: preliminary, ongoing, final or completed. Unknown where the source does not say. Glossary
- Completed
- API-reported fatalities
- 3 · all aircraft and ground
- Ground fatalities
- Unknown
- 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
- General aviation
- WeatherVisual meteorological conditions (VMC): good enough to fly by looking outside. Instrument conditions (IMC): cloud or low visibility, flying by instruments. Glossary
- Instrument Meteorological Cond
Beech A36
- Aircraft type
- Beechcraft 36
- Category
- Airplane
- 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
- N5626D
- Operator
- Unknown
- Onboard fatalities
- Unknown
- Route
- From Lancaster Airport (LNS), Lancaster, PATo Norwood Memorial Airport (OWD), Norwood, MA
- Aircraft age
- About 25 years (built 1990)
- Flight rulesThe regulations the flight operated under: in the US, Part 91 (general aviation), Part 121 (airlines), Part 135 (air taxi and commuter) and others; for flights abroad, the NTSB's coarser commercial or non-commercial code. Glossary
- Part 91: General Aviation
- Phase of flightThe stage of the flight when things started to go wrong: standing, taxi, takeoff, initial climb, en route, maneuvering, approach or landing. Glossary
- En route · descent
- Defining eventThe single coded event the NTSB judges best describes what happened (records from 2008 on). Older records name the first occurrence in the sequence instead. Glossary
- Loss of engine power (total)
- DamageDestroyed: beyond practical repair. Substantial: damage that affects the structure, performance or handling and normally needs major repair. Minor: less than that. Glossary
- Destroyed
Cause areas
- Aircraft › Aircraft systems
Approximate · Coordinates from the NTSB case API, which marks them as estimated or does not say; no uncertainty radius is established.
NTSB narrative
The commercial pilot was conducting a cross-country personal flight. About 15 miles from the destination airport, while in instrument meteorological conditions at 3,300 ft mean sea level, the pilot declared an emergency to air traffic control, stating that the airplane was experiencing an "engine problem." The pilot asked the controller about the nearest airport, and the controller provided him with radar vectors to that airport. The pilot then attempted to glide the airplane to the airport, but he reported that he was unable to maintain altitude. The controller then advised that there was a highway right of the airplane's position and about 2.5 miles away, and the pilot responded, "we have no engine we're [in instrument meteorological conditions] I need help." The airplane impacted a house before reaching the highway. It is likely that low cloud ceilings prevented the pilot from locating and navigating to a suitable forced landing site.
An examination of the engine revealed that the alternator drive coupling had failed, which resulted in damage to other internal engine components and ultimately resulted in a catastrophic engine failure due to a lack of oil lubrication. The investigation identified two possible conditions that could result in the coupling failure; but was unable to determine which was more likely. First, it is possible for components of the coupling to progressively move out of tolerance due to repeated "slip testing," which is a procedure the engine manufacturer prescribed to be performed anytime the coupling was removed and installed on an alternator shaft. The purpose of the test is to ensure that the coupling's elastomer section, which was designed to slip in the event of an alternator shaft seizure, will not slip under normal conditions. However, it is possible for certain components within the coupling to shift slightly during this test. If they shift far enough, the coupling will not be properly seated when installed on the alternator shaft. This condition is not readily detectable by direct observation. There are currently no published procedures to inspect or measure the coupling for this out-of-tolerance condition. One engine overhaul facility found two new couplings as received from the manufacturer that were out of tolerance.
The coupling could also have failed due to one or more of the following: insufficient torque applied to the alternator shaft nut, loosening of the nut to align the cotter pin holes, or failure to lubricate the threads before assembly on the shaft. Either an out-of-tolerance coupling or an improperly installed one can result in insufficient clamping force holding the coupling against the alternator. If there is insufficient clamping force, the coupling can rotate on the shaft and cause unusual wear and the ultimate failure of the coupling, which can lead to catastrophic engine failure. Sets of instructions for the installation of the coupling were available from several sources, including alternator manufacturers, the engine manufacturer, and repair and overhaul facilities. Although the sets of instructions were similar, the steps and details varied among them, and some of the instructions omitted critical guidance. The set of instructions provided by the engine manufacturer was the most complete; however, some steps were generalized and located in separate locations within the maintenance manual. None of the instructions advised that the assembly torque procedure was the designed means to prevent the coupling from rotating on the shaft, not the woodruff key. This may be counterintuitive because of how a woodruff key is generally used, and installers or part suppliers may not realize the importance of each step in the engine maintenance manual. Further, none of the instructions advised that a loose or improperly tightened coupling may lead to a catastrophic engine failure.
Probable cause
The total loss of engine power due to the failure of the alternator drive coupling. Contributing to the accident was the pilot's inability to locate and navigate to a suitable forced landing site due to low cloud ceilings.
Verbatim NTSB analysis and probable cause from the NTSB dataset
Sources
NTSB record ERA15FA254
- Event ID
- 20150628X90626
- Case number
- ERA15FA254
- Dataset
- full-current
- Source SHA-256
- 5cf380f0061817c0331a6b2d8cc7e0ee3a79bea469a1001dc5c10e56f35f5ab3
Source notes (4)
- Unreviewed is an editorial label, not an investigation status. API-sourced is not report-checked or human-reviewed. Explicit event totals are used without summing aircraft injury tables; onboard allocation is withheld. Unknown values remain unknown. The operation category is mapped from the NTSB-reported FAR part and has not been reviewed.
- Filled from the NTSB case API where the bulk record had no value: investigation status, coordinates. Values present in the bulk record are kept.
- The date is the local date, which is the same as the UTC date the NTSB stores.
- API snapshot SHA-256: 3c96618d4a8d8e76df7ac789e22be4da398c115de7bc781e7f50636dd8657ad4; retrieved 2026-09-14T19:45:12.003Z.