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Vertical Machining Center VMC320U
For a long time, using a vertical lathe with manual control has been the norm of the machining industry. However, with technology advancements, computer numerical control (CNC) has come in to revolutionize the industry. The vertical lathe with CNC comes with immense benefits that make it the go-to tool for many professionals in the machining industry....
CNC Vertical Lathe - Unleashing The Power Of Precision And Speed
For a long time, using a vertical lathe with manual control has been the norm of the machining industry. However, with technology advancements, computer numerical control (CNC) has come in to revolutionize the industry. The vertical lathe with CNC comes with immense benefits that make it the go-to tool for many professionals in the machining industry.
CNC Vertical Lathe - Product Overview
CNC Vertical Lathe is a computer-controlled machine tool that spins a workpiece on a vertical axis. It is typically used for large, heavy parts that cannot be achieved using other machines. The machine is designed to work with various materials, including metal, plastic, and wood to mention a few.
The CNC Vertical Lathe presents a user-friendly interface, making it easy to operate for both novice and expert users. It is equipped with an LCD screen that allows the operator to monitor the machine's status, including temperature, speed, and tool position. The equipment utilizes industry-standard software that may be accessed remotely through remote access.
The machine's primary parts include a base, column, crossbeam, tool holder, tool post, hydraulic system, electrical cabinet, and spindle. The spindle is the most crucial component of the machine, which revolves the workpiece and allows for various machining operations.
CNC Vertical Lathe - Outstanding Benefits
1. Increased Production Speed
One of the primary benefits of using the CNC Vertical Lathe machine is the increased production speed. The device's ability to operate multiple tasks simultaneously and seamlessly produces more parts in less time than conventional machining methods.
2. Precision and Accuracy
One of the most significant advantages of CNC-controlled vertical lathes is their accuracy and precision level. The use of high-end technology in CNC machines ensures that each cut is optimally precise and accurate, with minimal errors.
3. Reduced Scrap and Waste
CNC Vertical Lathes come with advanced software that optimizes material usage. This ensures fewer scraps and wastes and reduces the overall material cost, improving returns on investment.
4. Scalability and Flexibility
CNC Vertical Lathes are entirely programmable and flexible, capable of producing parts quickly, accurately, and cost-effectively. This makes them desirable for various applications, such as prototype production and small-batch production runs.
5. Reduced Labor Cost
CNC machines reduce the need for a highly skilled workforce, as most of the work is automated. This reduces the labor costs associated with conventional machining, increasing cost-effectiveness.
CNC Vertical Lathe - Final Thoughts
In conclusion, CNC Vertical Lathe has transformed the machining industry by increasing production speeds, precision, and accuracy while reducing waste, costs, and labor. The technology behind the CNC Vertical Lathe is constantly improving, with new developments always emerging. With this machine, machinists can handle large, heavy parts with ease and professionalism. CNC machining has become essential in today's fast-paced manufacturing environments, and CNC Vertical Lathes are leading the way.
Model | VMC650 | VMC840 | VMC850 | VMC855 | VMC966 |
Table size (mm) | 1000X400 | 1000X400 | 1000X500 | 1000X550 | 1100X550 |
Allowable maximum load (Kg) | 400 | 300 | 500 | 500 | 600 |
X-axis travel (mm) | 650 | 800 | 800 | 800 | 900 |
Y-axis travel (mm) | 400 | 400 | 500 | 550 | 600 |
Z-axis travel (mm) | 550 | 550 | 500 | 550 | 600 |
T-slot | 3-18-120 | 3-18-140 | 5-18-108 | 5-18-90 | 5-18-100 |
Distance from spindle center to Z-axis rail surface (mm) | 485 | 445 | 552 | 590 | 663 |
Distance from spindle end face to work table (mm) | 100-650 | 100-650 | 110-610 | 120-670 | 100-700 |
Spindle taper | BT40-120 | BT40-120 | BT40-140 | BT40-150 | BT40-150 |
Spindle speed (r/min) | 8000 | 8000 | 8000 | 8000 | 8000 |
X/Y/Z rapid movement (m/min) | 48/48/48 | 30/30/18 | 48/48/48 | 48/48/48 | 48/48/48 |
Machine weight (Kg) | 3800 | 3200 | 5300 | 5500 | 5600 |
Model | VMC1050 | VMC1160 | VMC1165 | VMC1265 | VMC1370 | VMC1580 |
Table size (mm) | 1200X420 | 1200X600 | 1200X600 | 1200X600 | 1400X700 | 1700X800 |
Allowable maximum load (Kg) | 500 | 800 | 800 | 800 | 800 | 1500 |
X-axis travel (mm) | 1000 | 1100 | 1100 | 1200 | 1300 | 1500 |
Y-axis travel (mm) | 500 | 600 | 650 | 650 | 700 | 800 |
Z-axis travel (mm) | 550 | 600 | 650 | 650 | 750 | 700 |
T-slot | 5-18-100 | 5-18-100 | 5-18-100 | 5-18-100 | 5-18-130 | 5-22-135 |
Distance from spindle center to Z-axis rail surface (mm) | 575 | 650 | 710 | 710 | 713 | 855 |
Distance from spindle end face to work table (mm) | 100-650 | 120-720 | 120-720 | 120-770 | 120-870 | 160-860 |
Spindle taper | BT40-150 | BT40-150 | BT40-150 | BT40-150 | BT40-150 | BT50-155 |
Spindle speed (r/min) | 8000 | 8000 | 8000 | 8000 | 8000 | 6000 |
X/Y/Z rapid movement (m/min) | 18/18/18 | 36/36/24 | 36/36/36 | 36/36/36 | 24/24/24 | 24/24/18 |
Machine weight (Kg) | 5500 | 6500 | 6800 | 7000 | 8000 | 12000 |