Aluminium CNC Milling Part
Product specification Product show CNC Design Guidelines A challenge that is often encountered when designing parts for CNC machining is the absence of industry-specific standards. Manufacturers of CNC machine tools and tools are constantly improving their technical capabilities and expanding...
Description
Product specification
Product name | Aluminium CNC Milling Part |
material | Aluminum 6061, Aluminum 6063, Aluminum 7075, etc. |
Surface Treatment | Anodizing, Sandblasting, Painting, Powder coating, Plating, Silk Printing, Brushing, Polishing, Laser Engraving |
Machining Option | Turning, grinding, milling, welding, bending, drilling, swaging, flaring, slot-cutting, stamping, deep-drawing, capping, beveling, etc. |
Custom feature | According to your 2D/3D Drawing or sample provided |
Package | Standard carton or according to customer's requirement |
Certification | ISO9001:2015, SGS |
Product show
CNC Design Guidelines
A challenge that is often encountered when designing parts for CNC machining is the absence of industry-specific standards. Manufacturers of CNC machine tools and tools are constantly improving their technical capabilities and expanding the limits of what is possible.
Recommended cavity depth: 4 times cavity width
End mills have a limited cutting length (usually 3-4 times their diameter). When the depth-to-width ratio of the cavity is small, tool deflection, chip evacuation and vibration become more prominent.
Limiting the depth of the cavity to four times its width ensures good results.
If greater depth is required, consider designing a part with variable cavity depth.
Deep cavity milling: A cavity with a depth greater than six times the tool diameter is considered deep. Using special tools (maximum depth: 35 cm, 1" diameter end mill), tool diameter to cavity depth ratios of up to 30:1 can be achieved.







Our factory

Production equipment
| Equipment List | Brand | Type | Working Track | Tolerance (mm) | Quantity (Set) |
CNC Milling Machine | FANUC | FANUC Machining Center | 500*400*320 | 0.01 | 15 |
Brother | Brother Tapping Center | 500*400*300 | 0.02 | 10 | 1 |
HATEN | Drilling & tapping machine | 0.02 | 5 | 2 | |
| LK | Machining Center | 0.02 | 7 | 2 | |
Harvest Star | CNC Machine | depend on different models | 0.015 | 10 | 1 |
| Mazak | Vertical Machining Center | 910*550*450*+30-(-120)*0-360 | 0.005 | 1 | 2 |
| SYNTEC | Vertical Machining Center | 530*400*300 | 0.01-0.005 | 1 | 2 |
| Tmt | CNC Machine | depend on different models | 0.01 | 8 | 2 |
| Sihai | Machining Center | 0.02 | 2 | 1 | |
| Kangcheng | Machining Center | 0.02 | 2 | 1 | |
| Taikan | Machining Center | depend on different models | 0.01 | 110 | 2 |
| Renishaw | Probe | 0.01 | 80 | 1 | |
| CNC Turning Lathe | Schutte | CNC Lathe | depend on different models | 0.005 | 2 |
| TSUGAMI | CNC High Precision Lathe | depend on different models | depend on different models | 2 | 1 |
HELONG | CNC Lathe | depend on different models | 0.01 | 20 | 2 |
Slotting Machine | YUYI | CNC Slotting Machine | 0.01 | 1 |
Testing equipment
| Equipment Name | Brand | Specification | Tolerance(mm) | QTY |
3D-CMM | Serein | 1.5m*1m | 0.001 | 1 |
| 3D-CMM | Hexagon | 500*500 | 0.001 | 2 |
| Micro-hite | TESA | 1 | ||
| 2D-CMM | Ernst | 3 | ||
| Microscope | 45 Times | 12 |
Surface treatment equipment
| Surface Treatment Equipment List | QTY |
| Sand Blast Machine | 1 |
| Screen Printing Machine | 4 |
| Laser Engraving Machine | 3 |
Our Certification







Aluminium CNC Milling Part
How to design CNC machining parts?
In this complete CNC machining design guide, we've compiled basic and advanced design practices and tips to help you achieve the best results for your custom parts.
You can take some simple steps to optimize your design for computer numerical control (CNC) machining. By following the rules designed for manufacturing, you can get more out of the extensive capabilities of CNC machining. But this can be challenging because no industry-wide specific standards exist.
CNC machining is a subtractive manufacturing technology. In CNC, material is removed from a solid block using a variety of cutting tools that rotate at high speed—thousands of RPM—to produce a part based on a CAD model. Both metals and plastics can be CNC machined.

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