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CNC Vertical Lathe
CNC vertical lathe occupies a very important position in CNC machine tools, it is one of the main varieties of CNC machine tools, it has the characteristics of high precision and high efficiency, so it plays an important role in the field of automatic processing....
CNC vertical lathe occupies a very important position in CNC machine tools, it is one of the main varieties of CNC machine tools, it has the characteristics of high precision and high efficiency, so it plays an important role in the field of automatic processing. At the same time, CNC vertical lathe also has a wide range of processing capabilities, can achieve linear interpolation, circular interpolation and various compensation functions, so in the mass production of complex parts has shown good economic results.
CNC vertical lathes can meet many different types of machining needs due to their unique structure and design. First of all, its vertical structure makes the center of gravity of the workpiece stable, and it is not easy to vibration and deformation during processing, thus ensuring the accuracy and quality of the processing. Secondly, the vertical lathe has a large working space and can accommodate larger size workpieces to meet the needs of mass production. In addition, vertical lathes can also achieve multi-axis control, with more complex and flexible machining capabilities.
In the processing process, it can accurately control the tool according to the processing path, so as to achieve the processing needs of various shapes. At the same time, the CNC vertical lathe can also correct the machining error through the compensation function, so that the machining result is more accurate. The selection of machine tools should be combined with the product and processing requirements of the factory to choose, CNC machine tools whether vertical or horizontal have great uses.
In practical applications, CNC vertical lathes are widely used in the production and processing of various industries. For example, in the automotive industry, the aerospace industry and so on.
Model | TCK50 | TCK50P | TCK50D |
Maximum turning diameter of bed (mm) | 500 | 500 | 500 |
Maximum cutting length (mm) | 500 | 500 | 500 |
Maximum cutting diameter (mm) | 360 | 500 | 180 |
Spindle end form and code | A2-6 | A2-6 | A2-6 |
Spindle hole diameter (mm) | 65 | 65 | 65 |
Spindle speed range | 50~4500/177 | 50~4500/177 | 50~4500 |
X-axis travel (mm) | 200 | 280 | 200 |
Z-axis travel (mm) | 550 | 550 | 550 |
Tailstock travel (mm) | 450 | 450 | 450 |
Spindle speed series (r/min) | — | — | Infinitely variable transmission |
X/Z rapid movement (m/min) | 30/30 | 30/30 | 30/30 |
Machine weight (Kg) | 3600 | 3600 | 3800 |
Model | TCK50G | TCK56-500 | TCK56-1000 | TCK63-1500 |
Maximum turning diameter of bed (mm) | 500 | 560 | 560 | 720 |
Maximum cutting length (mm) | 500 | 500 | 1000 | 1500 |
Maximum cutting diameter (mm) | 360 | 350 | 350 | 620 |
Spindle end form and code | A2-6 | A2-6 | A2-6 | A2-8 |
Spindle hole diameter (mm) | 65 | 65 | 65 | 80 |
Spindle speed range | 50~4500/143 | 50~4500/177 | 50~4500/177 | 50~3500/145 |
X-axis travel (mm) | 200 | 200 | 200 | 420 |
Z-axis travel (mm) | 550 | 560 | 1050 | 1550 |
Tailstock travel (mm) | 450 | 450 | 900 | 1650 |
Spindle speed series (r/min) | — | — | — | — |
X/Z rapid movement (m/min) | 30/30 | 30/30 | 30/30 | 12/16 |
Machine weight (Kg) | 3600 | 3600 | 4500 | 5000 |