CAPABILITIES

Custom CNC
Machining Service

Get precise and complex machined parts from ProleanTech. Our Custom CNC Machining Service offers quick prototypes to full-scale production tailored to your needs.

We have the capability of CNC Milling, Turning, Drilling, and many other processes.

  • Tolerances down to ±0.0002” (0.005mm)
  • Parts as Fast as one day
  • 50+ Material Options
ISO 9001:2015, ISO 13485, IATF 16949:2016 Certified
Custom CNC Machined Part
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CNC Milling

Precision milling for complex surfaces, cavities, holes, and contours. Available in 3-axis, 4-axis, and 5-axis machining.

CNC Turning

Ideal for shafts, bushings, and rotational parts, delivering consistent dimensions, smooth finishes, and reliable precision.

Turn-Mill Machining

Combines turning and milling in one setup, improving accuracy and efficiency for complex, high-precision components

EDM Machining

Suitable for hard materials, deep grooves, sharp corners, and complex details that are difficult to machine conventionally

Wire Cutting

High-precision wire EDM for complex contours, narrow slots, and mold components with excellent accuracy and edge

CNC MACHINING CAPABILITIES

Xproto CNC Machining Capabilities

Explore our CNC machining specifications for precision prototypes, complex components and production parts.

Parameter Specification
Machining Processes CNC Milling, Turning, Turn-Milling, and Swiss Turning
Part Size 2000 mm × 1500 mm × 600 mm
Minimum Wall Thickness 0.8 mm for metals; 1.5 mm for plastics
Linear Tolerances ±0.0002 in (±0.005 mm)
Minimum Feature Size 0.5 mm or Ø 0.50 mm
Minimum Cutting Depth 0.3 mm
Cavity Depth Up to 4× cavity width (W)
As-Machined Finish Ra 125 µin or better
Undercut Width (T-Slot) 3–40 mm
Complex Features Curved surfaces, undercuts, deep cavities, grooves, complex contours, asymmetrical features, and more.

Why Choose Our CNC Machining Services?

Precision, flexibility, and efficient production for prototypes, low-volume runs, and repeat orders.

Consistent Precision

Automated CNC machining and controlled processes help maintain repeatable dimensions and consistent part quality from prototypes to repeat production.

Flexible Production Volumes

From one-off prototypes and small batches to repeat orders, our machining services can scale with your project requirements.

Fast Turnaround

Efficient programming, optimized setups, and automated tool changes help shorten production cycles and keep your project moving.

Complex Geometry Machining

Multi-axis machining and versatile tooling enable pockets, threads, grooves, undercuts, curved surfaces, and other complex features.

Cost-Efficient Manufacturing

Once the machining process is established, repeat production becomes more efficient, helping reduce per-part costs while maintaining consistent quality.

Have a CNC Project in Mind?

Send us your drawings and requirements. Our engineering team will review your project and provide a clear, competitive quote.

Materials for CNC Machining

Choose from a wide range of metals and engineering plastics to meet your performance, appearance, and production requirements

Aluminum

Lightweight, corrosion-resistant and highly machinable, aluminum is ideal for prototypes, housings, brackets and functional production parts

Common Grades

6061, 7075, 5052, 2024

Key Benefits

Lightweight Corrosion resistant Easy to machine

Applications

Housings Brackets Frames Structural parts

Finishes

Anodizing Sandblasting Polishing Powder coating

Stainless Steel

Strong, durable and corrosion resistant, stainless steel is widely used for demanding mechanical and industrial components.

Common Grades

304, 316, 17-4 PH

Key Benefits

High strength Corrosion resistant Durable

Applications

Shafts Fixtures Medical parts Industrial parts

Finishes

Polishing Passivation Brushing Electropolishing

Steel

Steel provides excellent strength, durability and wear resistance for structural and mechanical applications.

Common Grades

1018, 1045, 4140

Key Benefits

High strength Wear resistant Cost effective

Applications

Fixtures Shafts Frames Machine parts

Finishes

Black oxide Plating Powder coating Polishing

Brass

Brass offers excellent machinability, corrosion resistance and attractive appearance for precision components.

Common Grades

C360, C260

Key Benefits

Easy to machine Corrosion resistant Decorative finish

Applications

Fittings Valves Connectors Hardware

Finishes

Polishing Plating Brushing As machined

Copper

Copper combines excellent electrical and thermal conductivity with good machinability.

Common Grades

C101, C110

Key Benefits

Conductive Thermal performance Corrosion resistant

Applications

Busbars Heat sinks Contacts Electrical parts

Finishes

Polishing Plating Brushing As machined

Titanium

Titanium provides a high strength-to-weight ratio, excellent corrosion resistance and dependable performance.

Common Grades

Grade 2, Grade 5

Key Benefits

High strength Lightweight Corrosion resistant

Applications

Aerospace parts Medical parts High-performance components

Finishes

Polishing Blasting Anodizing As machined

Plastic CNC Machining

ABS CNC Machining

Acrylic CNC Machining

PC CNC Machining

PEEK CNC Machining

PP CNC Machining

Have a CNC Project in Mind?

Send us your drawings and requirements. Our engineering team will review your project and provide a clear, competitive quote.

HOW IT WORKS

From Design to Finished Parts

Upload your CAD files and receive a fast manufacturing quote. Once approved, we handle production, quality inspection, and delivery.

01

Get a Quote

Upload your CAD files and project requirements. Our engineers review your design and provide a fast, accurate quote.

02

Start Production

Once your order is confirmed, production begins. We manage machining, inspection, and manufacturing progress throughout the process.

03

Receive Your Parts

After final quality inspection, your parts are securely packed and shipped directly to your location.

SURFACE FINISHING OPTIONS

CNC Machining Surface Finishes

A variety of surface finishing options to enhance the appearance, performance and durability of your parts.

As-Machined Deburred
01

As-Machined / Deburred

Removes burrs and sharp edges while maintaining the original machined surface. Typical roughness: Ra 3.2 μm.

Sandblasting
02

Sandblasting

Creates a consistent matte texture and reduces visible machining marks for a clean, uniform appearance.

Anodizing
03

Anodizing

Adds a protective oxide layer to aluminum parts for improved durability, corrosion resistance and appearance.

Powder Coating
04

Powder Coating

Provides a durable coated surface with excellent wear resistance, corrosion resistance and multiple color options.

Polishing
05

Polishing

Creates a smooth, glossy metal surface with improved appearance while maintaining dimensional accuracy.

Brushing
06

Brushing

Produces a uniform directional texture on metal surfaces for a clean and consistent finish.

Smooth Machining
07

Smooth Machining

Reduces visible tool marks through optimized machining parameters for a smoother surface finish.

Black Oxide
08

Black Oxide

Creates a thin black protective layer that reduces reflectivity and provides mild corrosion resistance.

Electroless Nickel Plating
09

Electroless Nickel Plating

Deposits a uniform nickel layer without electrolysis, providing excellent corrosion and wear resistance.

Alodine Chem Film
10

Alodine / Chem Film

Creates a thin conversion coating on aluminum for improved corrosion resistance and electrical conductivity.

Electroplating
11

Electroplating

Applies a protective metal coating to improve surface hardness, wear resistance and overall durability.

Nickel Plating
12

Nickel Plating

Adds a durable nickel layer that improves corrosion resistance, surface hardness, wear resistance and appearance.

Laser Cladding
13

Laser Cladding

Provides excellent wear and corrosion resistance while repairing small surface defects such as pores, microcracks and casting imperfections.

Tumbling
14

Tumbling

Creates a smooth, bright surface with a random, non-directional finish. Ideal for deburring and polishing.

More Finishing Options
15

More Finishing Options

Explore additional surface finishing options to meet your specific requirements for appearance, performance and durability.

Precision Machining Tolerances

Standard machining tolerances for parts without specified drawing requirements.

Type Tolerance Default Standard
Linear Dimensions
±0.025 mm ±0.001 in
ISO 2768 Medium
Hole Diameter (Unreamed)
±0.025 mm ±0.001 in
ISO 2768 Medium
Shaft Diameter
±0.025 mm ±0.001 in
ISO 2768 Medium
Part Size Limit 2000 mm × 1500 mm × 300 mm ISO 2768 Medium

CNC Machining vs. Other Manufacturing Processes

CNC Machining vs. Conventional Machining

Unlike CNC machining, conventional machining relies on operators to manually control cutting tools using levers and handwheels. It offers less precision and consistency because cutting speed, feed rate, and depth are manually controlled. For simple parts and small production runs, conventional machining can be a cost-effective option.

CNC Machining vs. 3D Printing

3D printing is an additive manufacturing process that builds parts layer by layer from CAD designs. It requires minimal tooling and setup, making it ideal for rapid prototyping and complex geometries. CNC machining, however, typically provides higher dimensional accuracy, better surface finishes, and stronger parts for demanding applications.

Feature CNC Machining Traditional Machining
Precision & Complexity Complex geometries with high precision (±0.127 mm) Precision and complexity are limited by operator skill
Time Efficiency Highly automated with automatic tool changes and machine setup Requires manual adjustments and tool changes
Repeatability Highly repeatable with consistent parts across production batches Quality may vary depending on operator experience
Material Range Wide range of materials, including hard metals More suitable for relatively softer materials
Flexibility Programmable and efficient for design changes and revisions Suitable for prototypes and small production runs
Setup Time Initial setup and programming can take more time Simple and quick setup
Production Volume Suitable from prototyping to large-scale production Better suited for low-volume production
Feature CNC Machining 3D Printing
Precision & Complexity High precision for complex geometries (±0.127 mm) Moderate precision and well suited for complex designs
Time Efficiency Highly automated with automatic tool changes and machine setup Fully automated with minimal operator intervention
Repeatability Excellent repeatability with consistent parts across production batches Highly repeatable and ideal for rapid prototyping
Material Range Wide range of materials, including hard metals and plastics Limited to materials compatible with specific printing technologies
Flexibility Programmable and efficient for design changes and revisions Highly flexible and easy to switch between designs
Setup Time Initial machine setup and programming can require more time Minimal setup with primarily digital preparation
Production Volume Suitable from prototyping to large-scale production Best suited for prototypes and low-volume production

Technical Overview

What CNC machines does ProleanTech have?

Our CNC facility is equipped with a wide range of machines, including 3-axis to 5-axis CNC mills, CNC lathes, CNC turning centers, laser cutting machines, and CNC grinders. These machines also support a variety of tooling options.

Our CNC machines can achieve tolerances as tight as ±0.0002 in (0.005 mm). For critical applications, we can further tighten the tolerances depending on your part requirements.

Our maximum CNC machining capacity is 2000 mm × 1500 mm × 300 mm, which is suitable for large components such as furniture and architectural parts. We also support the prototyping and production of large machined parts made from metals and plastics.

We have in-house quality control facilities equipped with advanced inspection equipment, including digital gauges, coordinate measuring machines (CMMs), calipers, micrometers, X-ray analyzers, and hardness testers. We can also provide a First Article Inspection Report (FAIR) for your parts upon request.

CNC milling uses rotating cutting tools to remove material from a stationary workpiece, while CNC turning rotates the workpiece against a cutting tool. Milling is well suited for flat surfaces and complex geometries, while turning is ideal for cylindrical parts.

Compared with traditional machining, CNC machining offers several advantages. It provides high precision, enables the production of complex geometries, and significantly reduces production time.

Industries such as automotive, aerospace, medical, energy, defense, transportation, marine, and many others rely on CNC machining to produce precision components.

We have in-house quality control facilities equipped with advanced inspection equipment, including digital gauges, coordinate measuring machines (CMMs), calipers, micrometers, X-ray analyzers, and hardness testers. We can also provide a First Article Inspection Report (FAIR) for your parts upon request.

Why Customers Choose Us

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