Aerospace CNC Machining
Precision components for aircraft, spacecraft, and propulsion systems
Aerospace parts demand tight tolerances, full traceability, and zero compromise on quality. Digital Machine delivers precision CNC milling and turning for airframe brackets, hydraulic fittings, sensor mounts, and structural components — held to ±0.0005" on critical features and verified with CMM inspection.
From pre-production first articles to production runs, we help engineers turn drawings into flight-ready hardware on schedules that match aerospace program timelines.
Aerospace Parts We Make
Brackets & Mounts
Lightweight structural brackets, sensor mounts, and equipment housings — milled from 6061 and 7075 aluminum with thin walls and complex pocketing.
Hydraulic & Pneumatic Fittings
Threaded fittings, manifolds, and ports turned and milled to AS-spec geometries. Leak-tight seals achieved through precision bore and surface finish control.
Bushings, Spacers & Pins
CNC-turned cylindrical components held to tenths concentricity. 17-4 PH, 4340 steel, and titanium 6Al-4V are routine.
Housings & Enclosures
Avionics housings, gimbal frames, and instrument enclosures with tight feature alignment across multiple setups.
Aerospace Materials We Machine
Aluminum 6061-T6 & 7075-T6
The aerospace workhorses. 6061 for general structural work, 7075 where strength-to-weight matters most.
Titanium 6Al-4V (Grade 5)
High strength, low weight, and corrosion resistant. Used for fasteners, brackets, and high-temperature components.
Stainless & Tool Steels
17-4 PH, 15-5 PH, 4140, and 4340 for parts requiring high strength and heat resistance.
Engineering Plastics
PEEK, Radel, and Delrin for non-structural parts, insulators, and weight-critical assemblies.
Quality & Tolerances
Inspection-backed precision on every part
Every aerospace part is inspected to print. CMMs, optical comparator inspection and calibrated hand tools verify dimensions before shipment. First-article inspection reports are provided on request.
We routinely hold ±0.001" on critical features and achieve ±0.0005" with CMM verification on the dimensions that matter most.