Precision parts from prototype to production+86 130 7766 5241[email protected]
Custom CNC Turning Parts Manufacturer

Precision CNC turning.Round parts made consistently.

CNC turning, live-tool turning, multi-axis turning and Swiss machining for custom shafts, bushings, sleeves, fittings, connectors and small precision components.

2-Axis TurningLive ToolingSwiss Machining±0.005 mm Available
Custom precision CNC turned parts
Prototype to ProductionTurning, secondary features and dimensional inspection
Ø 300 mmMaximum Diameter
1000 mmMaximum Length
±0.005 mmAvailable Tolerance
Ra 0.8Surface Roughness
3–10 DaysTypical Lead Time
1–100,000Flexible Volume
Metal and plastic precision turned components
CNC Turning Solutions

Accurate diameters, threads and concentric features.

JC Precision Craft manufactures custom turned parts from customer CAD files and drawings. CNC turning is ideal for rotational components requiring controlled diameter, concentricity, runout, threads, grooves, bores and surface finish.

Live tooling and multi-axis machines can add milled flats, cross holes, slots and off-center features in fewer setups, helping improve feature relationship and production efficiency.

Shafts and cylindrical partsInternal and external threadsConcentric precision featuresPrototype and production volumes
View Manufacturing Process
CNC Turning Capabilities

Turning processes matched to part complexity.

Machine configuration is selected according to diameter, length, feature access, tolerance, production quantity and setup efficiency.

2-Axis CNC Turning

Efficient turning for standard rotational geometry and accessible axial features.

  • Shafts and bushings
  • Sleeves and spacers
  • Threads and grooves

Live-Tool Turning

Turning combined with drilling, tapping and milling in a coordinated setup.

  • Cross holes and flats
  • Slots and bolt patterns
  • Reduced secondary setups

Multi-Axis Turning

Advanced turning centers for complex geometry and multi-operation components.

  • Off-center features
  • Complex profiles
  • Improved feature accuracy

Swiss CNC Turning

Precision machining for small, slender and complex parts with length-to-diameter challenges.

  • Miniature shafts and pins
  • Medical and electronic parts
  • High repeatability
Typical Turned Parts

Rotational components built to drawing.

CNC turning supports both simple cylindrical parts and complex components combining axial, radial and milled features.

Precision CNC turned shafts and pins

Shafts & Pins

Bearing journals, steps, grooves, threads and controlled runout.

CNC turned bushings sleeves and spacers

Bushings & Sleeves

Accurate bores, wall thickness, concentricity and mating diameters.

Small precision turned medical connector

Fittings & Connectors

Internal passages, sealing faces, threads and wrench flats.

Precision turned electronics and automation parts

Miniature Components

Small pins, terminals, nozzles and instrument components.

CNC Turning Materials

Materials for mechanical, thermal and electrical performance.

Material selection considers machinability, strength, corrosion, temperature, conductivity, wear and production cost.

Aluminum

Lightweight and machinable for housings, spacers, fittings and automotive parts.

6061 · 7075 · 2024

Stainless Steel

Strength and corrosion resistance for medical, industrial and fluid applications.

304 · 316 · 17-4PH

Brass & Copper

Excellent machinability and conductivity for connectors, valves and terminals.

Brass C360 · Copper C110 · Bronze

Titanium

High strength-to-weight ratio for aerospace and medical precision components.

Grade 2 · Grade 5 / Ti-6Al-4V

Carbon & Alloy Steel

Durability and load capacity for shafts, hardware and machinery parts.

1018 · 1045 · 4140

Engineering Plastics

Low friction, insulation and chemical resistance for functional turned parts.

PEEK · POM · PTFE · Nylon · PC
Turning DFM Support

Design decisions that improve turning efficiency.

A practical DFM review can reduce setups, stabilize slender features and prevent unnecessary cost.

Diameter & Length Ratio

Slender parts may need Swiss machining, support tooling or revised geometry.

Threads & Grooves

Define thread standards, reliefs, runouts, groove widths and inspection method.

Wall Thickness & Bores

Deep bores and thin walls require tool-access and deflection review.

Tolerance & Runout

Apply critical tolerances to functional interfaces and define clear datums.

Engineering planning for complex CNC turned parts
Dimensional inspection of precision CNC turned parts
Turning Quality Control

Critical diameters and relationships verified.

Inspection is planned around part function, drawing requirements and production quantity.

Material & Drawing Review

Material, threads, datums and critical characteristics are confirmed.

In-Process Checks

Diameter, length, runout and tool-wear risks are monitored.

Dimensional Inspection

CMM, optical systems, gauges, micrometers and calipers support measurement.

Final Documentation

Inspection reports and certificates can be provided when specified.

CNC Turning Workflow

From drawing to inspected turned parts.

A connected workflow supports stable machining and clear project communication.

STEP 01

Submit Files

CAD, drawing, material and quantity.

STEP 02

DFM Review

Geometry, tolerance and tool access.

STEP 03

Process Plan

Machine, stock, tooling and inspection.

STEP 04

CNC Turning

Setup and controlled production.

STEP 05

Inspection

Dimensions, runout and finish.

STEP 06

Delivery

Protected packing and shipment.

CNC Turning FAQ

Common turning project questions.

Send your 3D model and drawing for a specific manufacturability and quotation review.

What is the maximum CNC turning size?

The published turning capacity is approximately 300 mm maximum diameter and 1000 mm maximum length. Actual workable size depends on part geometry, chucking, tooling, support, material and tolerance.

What is live-tool CNC turning?

Live-tool turning combines lathe operations with driven milling, drilling and tapping tools. It can add flats, cross holes, slots and other non-rotational features without transferring the part to a separate milling setup.

When should Swiss CNC turning be used?

Swiss machining is useful for small, slender or complex components that need close support near the cutting zone. Typical applications include medical pins, electronic connectors, miniature shafts and precision fittings.

What CNC turning tolerances are available?

Standard tolerances can follow ISO 2768-m. Selected critical dimensions may be produced to tighter tolerances such as ±0.005 mm after review of material, size, geometry and inspection access.

Which materials can be CNC turned?

Common materials include aluminum, stainless steel, carbon and alloy steel, titanium, brass, copper, bronze and engineering plastics such as PEEK, POM, PTFE, nylon and polycarbonate.

Can prototypes and high-volume turned parts be produced?

Yes. JC Precision Craft supports one-off prototypes, validation builds, low-volume batches and repeat production. The appropriate machine and stock form depend on geometry and quantity.

Which files are required for a CNC turning quote?

Send a STEP or STP model plus a dimensioned PDF or DWG drawing. Include material, quantity, threads, surface finish, critical tolerances, inspection documentation and delivery requirements.

Ready to manufacture your custom turned parts?

Send your CAD files, drawings, material, quantity, tolerance and finish requirements for engineering review.

Scroll to Top