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/ CAPABILITIES

Multi-Axis CNC Machining for Precision-Critical Programs

Precision CNC machining for aerospace and automotive programs requiring documented quality process controls, direct engineering engagement, and material traceability that holds up to your receiving inspection. Stockbridge, Michigan — serving national programs from the Michigan manufacturing corridor.

/ TECHNICAL SPECIFICATIONS

Capabilities at a Glance

Axis capability3-axis, 4-axis, 5-axis simultaneous
Tolerance (standard)±0.005″
Tolerance (achievable)0.0001″ on qualifying geometry
Surface finish (standard)Ra 125 µin as-machined
Surface finish (achievable)Ra 8 µin — confirm per drawing callout
MaterialsTitanium, Inconel, Aluminum, Stainless Steel, Plastics, and more — inquire about your material
InspectionCMM dimensional verification, profilometry on specified features
Program typesStructural, engine hardware, automotive, prototype, LRIP
Quality processDocumented in-house quality controls
LocationStockbridge, MI 49285 — national program support

/ MATERIALS

Precision Materials: Titanium,
Inconel, Aluminum, and more

The alloy determines the machining strategy. Ti-6Al-4V, Inconel 718, aerospace-grade aluminum, and other aerospace-grade alloys each require specific tooling, cutting parameters, process controls, and inspection methods. We machine them for aerospace and automotive programs — with full material traceability and documentation at every stage.

Titanium aerospace machined component — Ti-6Al-4V with machined bore, chamfered edges, and visible surface finish detail under hard-key directional lighting on dark field

/ Ti-6Al-4V · Ti-3Al-2.5V

Titanium Precision Machining

The primary grades for structural aerospace and automotive components, engine hardware, and precision-critical fittings. Titanium's low thermal conductivity means heat stays in the tool and the workpiece. Our cutting parameter strategies, coolant approach, and toolpath logic are built for titanium's specific behavior — not adapted from aluminum practice.

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Inconel aerospace machined component — superalloy hardware with machined surface finish detail showing tool path geometry, photographed with hard directional lighting against graphite background

/ Inconel 718

Inconel Precision Machining

For engine components and high-temperature hardware. Inconel work-hardens rapidly in the cut — a toolpath that dwells creates a hardened surface layer that breaks tools and fails surface finish requirements. We machine Inconel with toolpaths designed to eliminate dwell and profilometry verification on fatigue-critical features.

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Aluminum aerospace structural component — 7075-T6 machined bracket with thin-web geometry, chamfered edges, and fastener pattern, photographed under controlled studio lighting

/ 7075-T6 · 2024-T3

Aluminum Precision CNC Machining

For structural aerospace and automotive components, brackets, and assemblies where strength-to-weight ratio governs the design. High-strength aluminum parts frequently require high material-removal ratios — leaving thin webs that require controlled roughing sequences and finish-pass fixturing strategies.

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Stainless steel aerospace bracket machined on 5-axis CNC — precision bore features and fastener pattern geometry, photographed under hard directional studio lighting on dark field

/ 15-5PH · 17-4PH · 303/304/316

Stainless Steel Precision Machining

Where corrosion resistance and moderate-to-high strength matter more than the extreme strength-to-weight ratio of titanium, stainless steel serves aerospace and automotive programs at lower cost — with precipitation-hardened grades for structural hardware and austenitic grades for fluid system components. Each grade family requires a different machining approach.

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Submit Your RFQ — Engineering Reviews Every Drawing

Your drawing reaches a named Velocity CNC engineer, not a routing queue. Quote returned within 24 hours. Upload STP, IGES, PDF, DXF, or DWG.

/ QUOTE RESPONSE — 24HR AFTER SUBMISSION