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CNC machining center parts processing
CNC machining centers are highly professional and flexible in processing spare parts, and can process various complex spare parts accurately and efficiently....
CNC machining centers are highly professional and flexible in processing spare parts, and can process various complex spare parts accurately and efficiently. The following are several key aspects specific to CNC machining centers for machining spare parts:
1. High-precision processing capabilities: CNC machining centers adopt advanced CNC technology, which can accurately control the movement trajectory and cutting parameters of the tool to achieve high-precision processing of spare parts. Whether it is hole machining, milling, turning or other complex processes, high machining accuracy and surface quality can be achieved.
2. Multi-axis processing capability: CNC machining centers are usually equipped with multi-axis control systems, which can realize multi-axis linkage processing. This enables the machining center to complete more complex parts processing tasks, including curved surface processing, special-shaped hole processing, etc., improving processing efficiency and processing quality.
3. Wide applicability: CNC machining centers are suitable for processing spare parts of various materials, including metals, non-metals, composite materials, etc. By replacing different tools and fixtures, it can easily adapt to the processing needs of parts of different specifications and shapes.
4. Automation and intelligence: Modern CNC machining centers have a high level of automation and intelligence, and can realize functions such as automatic tool change, automatic measurement, and automatic compensation. This not only improves processing efficiency, but also reduces the labor intensity of operators and improves production safety.
5. Flexible manufacturing capabilities: CNC machining centers have the characteristics of flexible manufacturing and can flexibly adjust processing tasks according to market demand and production plans. Through programming and parameter settings, different processing programs and processes can be quickly switched to meet diverse parts processing needs.
In the process of processing spare parts in CNC machining center, you also need to pay attention to the following points:
1. Reasonable selection of tools and fixtures: The CNC machining center selects appropriate tools and fixtures based on the material, shape and processing requirements of the parts to ensure the stability and processing quality of the processing process.
2. Optimize processing parameters: The CNC machining center optimizes processing parameters such as cutting speed and feed amount based on the characteristics and processing requirements of parts to improve processing efficiency and processing quality.
3. Regular maintenance and upkeep: Carry out regular maintenance and upkeep on the CNC machining center to ensure the normal operation and processing accuracy of the equipment.
To sum up, CNC machining centers have significant advantages and broad application prospects in processing spare parts. By rationally selecting equipment, optimizing processing parameters and strengthening equipment maintenance, processing efficiency and processing quality can be further improved to meet the market's demand for high-quality spare parts.
Specifications/model | unit | VS650 | VS950 |
Work content | |||
working desk size | MM | 650*500 | 900*500 |
Number of workbenches | N | 2 | 2 |
X-axis travel (left and right) | MM | 1600 | 2200 |
Y-axis travel (front and rear) | MM | 550 | 550 |
Z-axis travel (up and down) | MM | 500 | 500 |
Distance from spindle nose to work surface | MM | 150-650 | 150-650 |
Distance from spindle center to column track surface | MM | 700 | 700 |
Maximum load-bearing capacity of workbench | KG | 500 | 1000 |
Spindle specifications | |||
Spindle transmission structure (standard configuration) | / | Belt type | Belt type |
Spindle speed | RPM | 8000 | 8000 |
Spindle transmission structure (standard configuration) | / | direct connection | direct connection |
Spindle speed | RPM | 12000 | 12000 |
Spindle power | KW | 11 | 11 |
Spindle bore taper | BT | BT10 | BT40 |
Feed content | |||
G00 rapid traverse (three axes) | M/MIN | 32/48/32 | 32/48/32 |
G01 cutting feed | MM/MIN | 1-10000 | 1-10000 |
Servo motor specifications | NM | 22/12/22B | 22/12/22B |
Servo motor speed | RPM | 3000 | 3000 |
XYZ motor connection method | / | Direct | 直联 |
Ball screw specifications | MM | 4016/5012 | 4016/5012 |
X-axis rail specifications | MM | 45 roller | 45 roller |
Y axis rail specifications | MM | 35 roller | 45 roller |
Z axis rail specifications | MM | 35 roller | 45 roller |
Precise shaft positioning | MM | ±0.005/300 | ±0.005/300 |
Repeatable positioning precision | MM | ±0.003/300 | ±0.003/300 |
Minimum move value | MM | 0.001 | 0.001 |
Tool magazine system | |||
Tool magazine structure | / | Knife arm type | Knife arm type |
Tool magazine capacity | PCS | 24 | 24 |
Tool changing time | MIN | 2.2 | 2.2 |
Maximum tool weight | KG | 8 | 8 |
Oil and gas pressure system | |||
air pressure | KG/MM | 6.5 | 6.5 |
Lubricating oil capacity | L | 4 | 4 |
battery capacity | KW | 30 | 40 |
coolant capacity | L | 250 | 350 |
Form factor | |||
Machine weight (approx.) | T | 9 | 11 |
Machine length (front and rear) | MM | 2700 | 2700 |
Machine width (left and right) | MM | 3800 | 4200 |
Machine height (maximum) | MM | 2900 | 2900 |
Machine height (minimum) | MM | 2300 | 2300 |
Chip removal method (optional) | / | single chain plate | single chain plate |
Chip removal method (optional) | / | Twin screw | Twin screw |