Products Description
Aluminum and its alloys, thanks to their low density, excellent thermal conductivity, corrosion resistance, and ease of machining, have become one of the most widely used metal materials in CNC machining. Using computer programs to precisely control the movement of machine tool tools, aluminum CNC machining parts achieve complex shapes and high-precision machining. These parts are widely used in industries such as aerospace, automotive, electronics, and medical devices.
about Us

Xi 'an Hi-Precision Machinery Co., Ltd
Our company specializes in precision parts manufacturing for various industries. Leveraging a strong team, advanced equipment, and rigorous quality control, we manufacture high-quality products that are exported worldwide. Aluminum alloy is a primary material in our portfolio. We specialize in CNC turning, milling, drilling, and grinding processes for various aluminum alloys, allowing us to precisely carve aluminum blanks into the shapes you specify.
If you need aluminum CNC machining parts, contact us for a quote.
core staff
years experience
CNC equipment
Certificates
Core Technology
CNC aluminum manufacturing

CNC lathe processing
CNC lathe processing is suitable for shaft and disc parts (such as aluminum shafts, flanges, and joints). It has high processing efficiency and the surface roughness can be as low as Ra0.8μm.
CNC milling
CNC milling is suitable for complex three-dimensional structures (such as special-shaped brackets and housings), with an accuracy of up to ±0.005mm (high-precision models).

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If you require aluminum CNC machining parts, please contact us for manufacturability feedback.
The core advantages
Why Choose CNC Machining Aluminum?
High processing efficiency
Aluminum has low hardness and its cutting resistance is only 1/3-1/2 of that of steel, which enables "high-speed cutting" and shortens the processing cycle by 30%-50% compared to steel.
Surface quality is easy to control
Aluminum is less prone to burrs after cutting (especially 6061 alloy). With post-treatments such as polishing and anodizing, a mirror finish with a Ra of less than 0.4μm can be achieved.
Lightweight advantage
Aluminum has a density of only 2.7g/cm³ (about 1/3 that of steel). Processed parts can meet "lightweight" requirements (such as reducing the weight of cars and drones) while maintaining a certain strength.
Controllable costs
Aluminum prices are lower than copper and titanium alloys, and tool wear is slow during processing (tool life is 2-3 times longer than that of steel), resulting in lower overall processing costs.
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