Airbus A310

19,802 parts applicable to this airframe — widebody

Part NumberStatus
AG0607PMA
AG0609PMA
AG0619PMA
AG0636PMA
AG0638PMA
AG0649PMA
AG0652PMA
AG0655PMA
AG0660PMA
AG0662PMA
AG0665PMA
AG0667PMA
AG0670PMA
AG0671PMA
AG0680PMA
AG0682PMA
AG0691PMA
AG0700PMA
AG0718PMA
AG0723PMA
AG0731PMA
AG0734PMA
AG0737PMA
AG0744PMA
AG0750PMA
AG0757PMA
AG0760PMA
AG0761PMA
AG0764PMA
AG0777PMA
AG0786PMA
AG0791PMA
AG0793PMA
AG0801PMA
AG0817PMA
AG0826PMA
AG0827PMA
AG0836PMA
AG0838PMA
AG0839PMA
AG0850PMA
AG0852PMA
AG0855PMA
AG0863PMA
AG0871PMA
AG0875PMA
AG0876PMA
AG0879PMA
AG0880PMA
AG1913PMA

Utilization & cargo trend(US carriers, 2015–2025)

A310 family rollup — BTS T-100, domestic + international

Cycles per aircraft
12020
2015: 239 cycles/aircraft2016: 153 cycles/aircraft2017: 111 cycles/aircraft2018: 73 cycles/aircraft2019: 66 cycles/aircraft2020: 1 cycles/aircraft2021: no data2022: no data2023: no data2024: no data2025: no data
20152025
2020 trough: 1
Freighter share of departures
100%100%20152020
2015: 100% freighter share2016: 100% freighter share2017: 100% freighter share2018: 100% freighter share2019: 100% freighter share2020: 100% freighter share2021: no data2022: no data2023: no data2024: no data2025: no data
20152025
Est. US-registered fleet
202020
20152025

US carriers only (BTS T-100, domestic + international segments) — foreign-carrier flying is excluded, so global utilization runs higher. Fleet size is reconstructed from the FAA registry (built on or before each year, not yet deregistered) — an approximation. Freighter share counts departures with zero passengers and freight aboard — a proxy for freighter/combi operations, not a tail-by-tail conversion count. Missing years render as gaps.

USM supply — retirements & teardowns(20232026)

A310 family — FAA registry deregistrations

Left the US registry
23aircraft
Stayed domestic
22vs 1 exported
Avg age at retirement
36.8years
Still US-registered
4aircraft
Where this family's parts catalog concentrates — the systems most exposed to incoming teardown supply

FAA registry data. Domestic deregistration is a teardown proxy — it also captures re-registrations and some unflagged exports, so it is not a confirmed part-out count; exported aircraft left the US fleet intact and are not USM supply. ATA shares reflect where this directory's parts for the family concentrate (parts in parentheses) — a coverage signal, not the aircraft's bill of materials or a teardown-yield forecast.

Engine-program supply pressure(since 2023)

FAA registry — US-registered fleet

Engines account for roughly half of all MRO spend, so engine programs shedding aircraft are where retirement supply carries the most value.

Engine modelActive tailsEngine unitsRetired since ’23ExportedAvg age at dereg
GE CF6-80 series23757113236.9 yr
P & W JT9D series13373041.7 yr

FAA registry data, US-registered aircraft only. Counts reflect the engine model as registered — generic “series” rows coexist with thrust-variant rows, so per-variant figures are partial. Retired = domestic deregistrations (a teardown proxy, not a confirmed part-out); exported aircraft left the US fleet intact. Active tails span every family the engine flies on, not just this one.

Airworthiness Directive activity

FAA / EASA public regulatory data

16airworthiness directives affecting this fleet — recurring compliance demand for the parts and shops that serve it
Most recent
  • EASA AD 2024-0092-R1effective Jul 17, 2024Prohibition

    EASA Safety Publications Tool

  • EASA AD 2023-0092effective May 19, 2023Mixed actions

    EASA Safety Publications Tool

  • EASA AD 2023-0018effective Feb 6, 2023Mixed actions

    EASA Safety Publications Tool

  • EASA AD 2022-0195effective Oct 7, 2022Mixed actions

    EASA Safety Publications Tool

  • EASA AD 2022-0193effective Oct 7, 2022Mixed actions

    EASA Safety Publications Tool

Directives linked to this airframe family in the FAA / EASA regulatory corpus we have processed — not a complete historical AD list. An AD is a compliance requirement that drives scheduled work (inspections, replacements, modifications) across the fleet; inspection directives are not replacement directives, and none of this is a prediction that any part will fail.