
Cnc 5 Axis Desktop
bed dimension:φ100mm
Maximum payloadof the work table:5kg
speed 0-24000rpm
Windows System Control
Support G code control
CAD or CAM milling
Description
Technical Parameters
Products Description
CNC 5 - Axis Desktop is a desktop 5-axis CNC machine designed for precision machining and offers outstanding performance in the field of small parts machining.
Five-axis linkage machining: With the ability to work together with five motion axes, it can realize complex spatial curved surface machining. Compared with traditional three-axis machine tools, it breaks the limitation of machining angles and can cut workpieces in a more flexible way to complete machining such as complex molds and special-shaped parts.
High-precision mechanical structure: The mechanical structure of the machine tool has been carefully designed and precisely manufactured, and uses high-precision guide rails, screws and other transmission components to ensure that the motion accuracy of each axis is within a very small tolerance range, thereby ensuring the dimensional accuracy and shape accuracy of the machined parts.
Compact desktop design: The unique desktop design makes it occupy a small area, which is convenient for placement in laboratories, small processing workshops or R&D departments with limited space, while not losing its processing capacity and stability.
Advanced control system: Equipped with a powerful CNC system, it supports a variety of programming methods, including manual programming and graphical programming. The system can achieve precise control of the machining process, accurately adjust tool paths, cutting parameters, etc., and has real-time monitoring and feedback functions.

Test video
A five-axis CNC test project purchased by the MIT intelligent robot team.
(Several projects designed by the team, including MIT Mini Cheetah: https://www.youtube.com/watch?v=xNeZWP5Mx9shttps://www.youtube.com/watch?v=G6fMV1UPzkg and the fastest Rubik's Cube solution in the worldRobot question: https://www.youtube.com/watch?v=nt00QzKuNVY uses Pocket NC machines to manufacture parts for similar robot projects.)
Tech Specs
| Packing Size | W800xD600xH800mm | Packing weight | 100-120kg |
| Equipment size | W600xD400x H510mm | weight of equipment | Net weight of 45kg,with sheet metal of 75kg |
| Bed Dimension | φ100mm | Maximum payload of the work table |
5kg |
| XYZ effective travel | X160xY200xZ130mm | AC effective travel | A:-30-120°,C 360° |
| Three axis processing range | X160xY200xZ125mm | Five axisprocessing range | Cylinder:φ 150 H105mm,φ 100 H120mm,cube W125D 125 H110mm |
| Three-axis processing accuracy | Linear axis parallelism & vertical degree of 0.03mm, Travel range is 0.02mm |
Five axis processing accuracy | Linear axis parallelism &vertical degree of 0.05mm, Fve-axis spatial accuracy of<0.05mm |
| XYZ Ball wire rod | X&Z:1204C7,Y:1604 C7,up gradable C5 | AC axis |
1:80 20 Harmonic reducer return<1' |
| The XYZ linear guide rail | X&Z Hiwin MGN12 Y:Hiwin MGN15 | body frame | 6061T6 aviation aluminum+stressed component adjustment of 45 steel |
| Processing speed | 4000mm/min vary by material | ||
| principal axis | φ65mm 800W Water-cooled electric spindle at 24,000r /min |
protect | Organ is dust-proof +oil seal is waterproof and dustproof |
| Tool diameter& length | ER11.0-8mm,≤75mm | Part fixtures | Steel fixture with reserved hole position Can add er50 clip holder,63,80 card |
| work material | Metal:aluminum alloy.copper alloy,gold alloy,silveralloy.*steel,*titanium alloy | Non-metat plastic,wood,wax,jade,glass etc |
Shipping List
| Order Number | Type | Name | Explain | Quantity |
| 7 | Equipment | Main Engine | Naked machine does not contain sheet metal |
1 |
| 2 | Material Fixtures | Type A: self-centering platform pliers |
8-55mm square ping | 1 |
| 3 | Knife Fixture | ERlI clamp cylinder | ER11-4&ER11-6 | 1 |
| 4 | Cutter | Sharp knife,vertical miling cutter,ball knife |
0.2mm sharp knife (for carving)10 2,4,6mm vertical milling cutter 2, R ball knife 2 |
18 |
| 5 | Electrical | power box | Motor control frequengy converter | 1 |
| 6 | power line | Total power supply for equipment | 1 | |
| 7 | USB data wire | Connect the computer to the host machine | 1 | |
| 8 | Electronichand wheel | Operation shaft movement | 1 | |
| 9 | Tool | 1 set of inner agon wrench | 1.5-109PCS | 1 |
| 10 | A set of spindle wrench | 14 &17mm open-wrench | 1 | |
| 1 | Material | Generation wood 4 pieces | Practice with | 1 |
Space saving
The desktop design makes it compact and occupies less space. This is very friendly for work environments with limited space, such as small processing workshops, laboratories, R&D departments, educational institutions, etc. High-precision and complex five-axis processing can be achieved in a limited space, without the need to reserve a lot of space for large machine tools.
Convenience of operation
It is equipped with an intuitive and easy-to-use control system, which supports a variety of programming methods, such as manual programming, graphical programming, etc., which reduces the learning cost and programming difficulty of operators. The control system usually has a friendly human-machine interface, which is convenient for parameter setting, processing process monitoring and adjustment.
High cost-effectiveness
Compared with large five-axis machining centers, desktop five-axis CNC machine tools have certain advantages in procurement costs. For small enterprises, startups or scientific research project teams, it is an economical and efficient choice. It is also generally low in energy consumption, and long-term operation can save energy costs.
Versatile application
It can process a variety of materials, including various metals (such as aluminum alloys, copper alloys, stainless steel, etc.) and non-metallic materials (such as engineering plastics, composite materials, etc.). It is suitable for multiple industries to meet the diverse needs of different users.
FAQ
What materials is this machine suitable for processing?
It can process a variety of materials, including but not limited to non-ferrous metals such as aluminum and copper, and can also process some alloy steels with moderate hardness. For some engineering plastics, such as ABS and PC, it also has good processing effects. However, for super-hard materials, special tools and processing parameters may be required.
What are the advantages of the five-axis linkage function in actual operation?
Five-axis linkage can significantly reduce processing time and cost. In actual operation, it can complete multi-faceted processing of complex parts in one clamping, avoiding errors caused by multiple clamping. For example, processing aviation parts models with complex internal channels and curved surfaces can be more accurately formed, improving processing efficiency and quality.
What are the skill requirements for operators?
Answer: Operators need to have basic CNC programming knowledge and be familiar with G codes and M codes. At the same time, they must understand the principles of mechanical processing and tool knowledge. Because it is a desktop-level device, operators also need to be careful and patient, and be able to accurately set processing parameters and clamp workpieces.
How to ensure long-term stability of processing accuracy?
First of all, the machine tool must be maintained regularly, including cleaning and lubricating transmission components such as guide rails and screws. It is also key to calibrate the machine's axes, using specialized measuring tools and calibration procedures. Also, use high-quality, appropriate tools and set cutting parameters correctly for the material and processing requirements.
How is the noise level of the machine?
Under normal operation, the CNC 5 - Axis Desktop has a low noise level. The high-quality motor and transmission system design it uses effectively reduces operating noise. However, if the tool is severely worn or the processing parameters are not set correctly, it may cause increased noise.
Can it be integrated with other equipment or software?
This machine tool can be integrated with some CAD/CAM software through standard data interfaces, which facilitates the import of design models and the generation of processing codes. At the same time, in an automated production environment, it can cooperate with peripheral equipment such as loading and unloading devices to achieve a more efficient processing process, but additional control system integration work may be required.
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