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Vertical machining center with high rigidity
CNC vertical machining centers have the characteristics of high rigidity and high precision, and are mainly used for processing metal and other parts....
CNC vertical machining centers have the characteristics of high rigidity and high precision, and are mainly used for processing metal and other parts. Here are some explanations about the high rigidity and high precision features of vertical machining centers:
1. High rigidity: High rigidity refers to the stability and rigidity of the CNC vertical machining center structure. Vertical machining centers usually use high-quality cast iron or steel materials to make machine tool beds and columns, which have high rigidity and stability. The high-rigidity design of CNC vertical machining centers can effectively reduce vibration and deformation of machine tools during processing, ensuring processing accuracy and surface quality.
2. High precision: High precision means that the CNC vertical machining center can maintain high machining accuracy and repeated positioning accuracy during the machining process. Vertical machining centers are usually equipped with high-precision linear guides, ball screws and other transmission components, as well as precision CNC systems and servo drive systems. The combination of these designs and components can ensure that the CNC vertical machining center maintains stable processing accuracy during long-term operation and meets the needs of high-precision parts processing.
3. Scope of application: Vertical machining centers are usually suitable for industries that require high-precision processing and complex parts processing, such as aerospace, automobile manufacturing, mold manufacturing, etc. CNC vertical machining center can process various metal materials, such as aluminum alloy, steel, stainless steel and other materials, and is suitable for precision parts processing, mold processing, parts repair and other fields.
4. Technical features: Vertical machining centers usually have advanced technologies such as multi-axis control, tool magazine changing, automatic lubrication system, cooling system, etc., which can achieve efficient processing of complex parts. At the same time, some CNC vertical machining centers may also have automatic measurement and compensation functions, which can achieve online measurement and automatic compensation, further improving processing accuracy and consistency.
In general, vertical machining centers provide users with high-quality, high-efficiency processing solutions due to their high rigidity and high precision, and are widely used in high-end manufacturing fields.
Specifications | unit | VMC650 | VMC855 | VMC1050 |
Table size | mm | 900x400 | 1000x550 | 1000x530 |
Table maximum load | kg | 350 | 500 | 600 |
X//Z axis travel | mm | 650x400x500 | 800x550x550 | 1000x500x600 |
Distance between spindle centerand column | mm | 476 | 590 | 580 |
Distance between spindle endface and worktable surface | mm | 100-600 | 120-670 | 140-740 |
X//Z Max. feed speed | mm/min | 10000 | 10000 | 10000 |
X//Z Max. Rapid traverse | m/min | 32/32/30 | 32/32/30 | 32/32/24 |
spindle speed | r/min | 8000 | 8000 | 8000 |
spindle taper | type | BT40 | BT40 | BT40 |
Spindle motor power | kW | 5.5/7.5 | 7.5/11 | 7.5/11 |
X//Z axis servo motor power | kW | 2.6/2.6/2.8 | 3.9/3.9/3.6 | 3.9/3.9/3.6 |
X//Z motor connection | Direct | Direct | Direct | |
X/Y/Z Guide way type | Line rail | Line rail | Line rail | |
T slot | mm | 3-18x125 | 5-18x90 | 5-18x90 |
Repeat positioning accuracy | mm | ±0.004 | ±0.004 | ±0.004 |
Tool magazine | Hat type/disc type | disc type | disc type | |
Tool capacity | 16T/16T | 24T | 24T | |
Maximum tool weight | kg | 7 | 8 | 8 |
MMax. tool length | mm | 250/300 | 300 | 250/300 |
Electric capacity | kVA | 10 | 15 | 15 |
Machine dimension(LxWxH) | mm | 2300x2000x2300 | 2600x2380x2700 | 3200x2420x2400 |
Net. weight (about) | kg | 4500 | 5000 | 6000 |