CNC Aluminum Profile Machining and Customization
CNC aluminum profile machining and customization is a high-precision machining service based on computer numerical control(CNC)technology,specifically designed for the customization of aluminum profiles.With advanced CNC equipment and processes,it can meet personalized needs for complex shapes,high-precision dimensions,and diverse surface treatments,widely used in aerospace,automotive,electronics,machinery,and other fields.
- Overview
- Parameter
- Recommended Products
Window and door profiles are essential materials in modern construction.Made from high-strength aluminum alloy,they are manufactured through advanced extrusion processes to ensure structural stability and durability.The surface is treated with anodizing,providing excellent weather resistance and corrosion protection,making them suitable for various harsh environments.The thermal insulation performance is outstanding,with a thermal break technology that effectively reduces heat transfer between the interior and exterior,contributing to energy savings.Additionally,they offer excellent sound insulation,effectively blocking external noise to provide a comfortable indoor environment.The profiles come in a variety of styles and can be customized in color and design to meet different architectural styles.Installation is simple and quick,with low maintenance costs and a long service life.
Parameter
Parameter Name | Value | Unit |
Machining Material | Aluminum Alloys (e.g., 6061, 6063, 7075, etc.) | - |
Machining Processes | Milling, Drilling, Cutting, Engraving, etc. | - |
Machining Accuracy | ±0.01mm (High Precision Mode) | mm |
Surface Treatment | Anodizing, Sandblasting, Painting, E-coating, etc. | - |
Machine Type | 3-axis / 5-axis CNC Machining Centers | - |
Maximum Machining Size | Customizable (Based on Machine Capability) | mm |
Minimum Machining Size | 0.1mm (Feature Size) | mm |
Application Fields | Aerospace, Automotive, Electronics, Machinery, Construction, etc. | - |
Delivery Lead Time | Customizable Based on Order Complexity | Days |