CNC Machine: Automated Precision Machining with Multi-Axis Control

All Categories

Get a Free Quote

Our representative will contact you soon.
Email
Name
Company Name
Message
0/1000

CNC Machine: Types, Applications, Programming, Maintenance & Safety Tips for Precision Machining

A machine tool based on computer numerical control (CNC) technology that achieves automated machining through programming tool paths. It has multi axis functional linkage, high precision (tolerance ± 0.005mm), high efficiency, and is widely used in the mass production of precision molds, aerospace parts, and complex mechanical structures.
Get A Quote

Advantages of the product

Modular Tooling System

Features 12-120 station tool changers and live tooling capabilities, allowing multi-process machining (milling, drilling, tapping) in a single setup. Reduces tool change times to <3 seconds, enhancing productivity in high-mix environments.

Related products

Operating at adjustable speeds from 0.1 to 5m per min, this trolley supports MIG, TIG, and SAW processes. It can perform automated arc-welding operations thanks to the motorized platform it is mounted on. The TIG and MIG processes are fed wires to a diameter of 2-20m/min, which facilitates the consistent formation of welds. The developed welds on the longitudinal seams of pipelines and pressure vessels have a width of ±1mm, which ensures high quality. With the incorporation of remote control panels, advanced laser tracking, and multitude of flux recovery systems, this system improves the accuracy for positioning and safety to operators, which decreased the defects of welds by nearly 25%.

Frequently Asked Questions

How do CNC machines enhance productivity?

With spindle speeds up to 40,000rpm and rapid feed rates (60m/min), they reduce cycle times by 50% and support lights-out manufacturing with automatic tool changers (ATC).
They handle steel, aluminum, titanium, and composites, with heavy-duty models suitable for Inconel and aerospace alloys, achieving volumetric accuracy ≤±0.05mm/m.

Related Articles

Enhancing Quality Control with Digital Calipers

16

Apr

Enhancing Quality Control with Digital Calipers

View More
Innovations in Laser Cutting Machines for Modern Industries

16

Apr

Innovations in Laser Cutting Machines for Modern Industries

View More
Exploring the Benefits of Friction Welding Machines

16

Apr

Exploring the Benefits of Friction Welding Machines

View More
Maximizing Efficiency with Advanced CNC Machines

16

Apr

Maximizing Efficiency with Advanced CNC Machines

View More

Customer Reviews

Remington

Integrated IoT sensors reduced unplanned downtime by 40% through predictive maintenance. In automotive powertrain production, its 60m/min feed rate and 40,000rpm spindle cut cycle times by 50% while maintaining ±0.002mm repeatability.

Get a Free Quote

Our representative will contact you soon.
Email
Mobile/WhatsApp
Name
Company Name
Message
0/1000
Thermal Stability Design

Thermal Stability Design

Incorporates liquid-cooled spindles and heat-resistant alloys, maintaining dimensional stability (thermal drift ≤±0.003mm/h) during prolonged operations. Critical for 24/7 production in automotive and electronics industries.
Heavy-Duty Construction

Heavy-Duty Construction

Built with cast iron or granite bases (rigidity ≥50N·m/μm) and linear motors for high acceleration (1g), handling heavy cuts in steel and Inconel. Suitable for large-scale machining of aerospace structural parts and industrial equipment.
Industry 4.0 Compatibility

Industry 4.0 Compatibility

Integrates with IoT sensors and ERP systems for real-time performance monitoring and predictive maintenance. Reduces unplanned downtime by 40% through vibration and temperature analytics, supporting smart factory initiatives.