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CNC vertical lathe with high efficiency
The high efficiency of CNC vertical lathes is mainly due to its advanced electronic control system, CNC technology and mechanical engineering technology....
The high efficiency of CNC vertical lathes is mainly due to its advanced electronic control system, CNC technology and mechanical engineering technology. These technologies enable CNC vertical lathes to achieve high-speed, high-precision, and high-quality processing of workpieces, thereby greatly improving production efficiency.
Specifically, CNC vertical lathes use computer programs to control machine tools for automatic processing, reducing human factors and errors in traditional manual operations and improving processing accuracy and consistency. At the same time, CNC vertical lathes have the capability of continuous processing and can run stably for a long time, reducing the operator's time to start and stop the machine tool, further improving production efficiency.
In addition, the CNC vertical lathe also has the functions of flexibly setting the tool stopping reference point and reducing the tool idle travel. These functions can effectively shorten the non-processing time during CNC vertical lathe processing, reduce the idling and waiting time of CNC vertical lathes, and further improve production efficiency.
To sum up, the high efficiency of CNC vertical lathe is one of the key reasons why it has become an important production tool in modern machinery manufacturing industry. With the continuous advancement and application of technology, CNC vertical lathes will continue to take advantage of their high efficiency and make greater contributions to the development of the manufacturing industry.
Specification | unit | VTC80A | Specification | unit | VTC80A |
X axis | mm | 670 | Turret station | Four stations/eight stations | |
Z axis | mm | 200-1050 | X-axis rolling linear guide | 2 pieces, width 45mm | |
Maximum turning diameter | mm | Φ1000 | Z axis rolling linear guide | 2 pieces, width 55mm | |
turning diameter | mm | Φ800 | cooling motor | W | 450+750 |
turning height | mm | 850 | Pump output | m³/h | 4m³/h |
Spindle speed | rpm | 100-800 | Repeatability | mm | ±0.005 |
Spindle motor power | Kw | 22 | positioning accuracy | mm | ±0.008 |
Spindle diameter | mm | Φ180 | smallest positioning unit | mm | 0.001 |
Chuck model | hydraulic chuck | Dimensions (approx.) | mm | 2400*2100*3600mm | |
diameter | inch | 24″ | Gross weight (approx.) | kg | 9000 |