CNC Machining Parts

Custom CNC machining for precision metal and engineering-plastic parts, combining milling, turning, drilling, and finishing in a drawing-led workflow.

CNC Machining Parts

A practical CNC route from material selection to finished part.

CNC manufacturing is most effective when material, geometry, tolerances, and annual quantity are reviewed together. That allows the process to balance fixture access, cycle time, surface finish, and the inspection plan instead of treating them as separate decisions.nnComplex parts may move through multiple operations: roughing, finishing, turning, drilling, threading, deburring, and surface treatment. A single production plan keeps datums and quality checks consistent across those stages.

Common CNC machined products

Housings and enclosures

Brackets and mounting plates

Shafts and pins

Manifolds and valve blocks

Heat sinks

Gears and mechanical interfaces

Fixtures and tooling components

Prototype assemblies

By Material Family

Aluminum alloys

A strong lightweight choice for housings, brackets, heat sinks, and fixtures, with broad finishing options.

Stainless steel

Selected for corrosion resistance, cleanability, and durable structural or fluid-handling components.

Steel alloys

Used when stiffness, wear resistance, or high load capacity is more important than weight.

Copper and brass

Conductive, thermally efficient, or highly machinable options for electrical and fluid components.

Engineering plastics

POM, nylon, and similar grades can reduce weight and provide insulation, wear resistance, or chemical compatibility.

By CNC Process

Milling

3-axis to 5-axis toolpaths create planar features, pockets, contours, and multi-face geometry.

Turning

CNC lathes hold concentric dimensions on shafts, bushings, threaded parts, and rotational profiles.

Drilling and tapping

Controlled hole-making covers simple holes, deep holes, threads, countersinks, and precision reaming.

Multi-axis machining

Indexed or simultaneous axes reduce setups and improve access to compound angles and integrated forms.

By Surface Treatment

Bead blasting

Produces a uniform matte texture and removes light machining marks before coating or final delivery.

Type II anodizing

Adds corrosion resistance and optional color to aluminum while preserving a clean technical appearance.

Type III hardcoat anodizing

Provides a thicker, wear-resistant oxide layer for aluminum parts exposed to friction or abrasion.

Powder coating

A durable protective coating for housings, brackets, and consumer-facing assemblies.

As-machined finish

Keeps the machined surface where appearance, tolerances, or downstream assembly do not require coating.

By Industry Use

Aerospace

Lightweight structures, controls, fixtures, and equipment parts with drawing-controlled critical features.

Automotive

Prototype and production components for powertrain, interiors, test rigs, and electronic systems.

Medical

Instruments, equipment frames, and precision interfaces produced to defined material and inspection requirements.

Electronics

Thermal, protective, and mounting components for devices, enclosures, and power systems.

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