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CNC machining center hardware metal processing
CNC machining centers are widely used in the field of hardware and metal processing....
CNC machining centers are widely used in the field of hardware and metal processing. It combines computer control technology and advanced cutting technology to achieve high-precision and high-efficiency hardware metal processing.
First of all, CNC machining centers have high-precision machining capabilities. By accurately controlling the relative motion of the cutting tool and the workpiece through a computer, high-precision machining of small sizes and shapes of hardware metal parts can be achieved. This high-precision processing can meet the strict requirements for size, tolerance and surface quality of hardware products, ensuring the quality and performance of the product.
Secondly, CNC machining centers have high-efficiency processing characteristics. Automated operations reduce manual intervention, shorten the processing cycle, and improve production efficiency. At the same time, the application of multi-axis linkage and high-speed cutting technology in CNC machining centers makes the processing speed faster and the production efficiency higher.
In addition, CNC machining centers also have high flexibility. CNC machining centers can process parts of different shapes, sizes and quantities according to different hardware and metal processing needs. CNC machining centers can process parts of different shapes, sizes and quantities through simple program modifications. This flexibility enables CNC machining centers to adapt to the diverse and personalized needs of the hardware products market.
In the process of hardware and metal processing, CNC machining centers can also realize various complex processing techniques, such as milling, drilling, tapping, cutting, etc. Whether it is plane processing or three-dimensional processing, whether it is a simple shape or a complex shape, the CNC machining center can handle it.
In addition, the automated operation of CNC machining centers also reduces the risk of human error and improves product consistency and reliability. At the same time, CNC machining centers can also reduce waste and energy consumption, reduce production costs, and improve corporate competitiveness.
It should be noted that when using a CNC machining center for hardware metal processing, the operator needs to have corresponding professional skills and experience to ensure processing quality and safety. At the same time, regular maintenance and upkeep of the CNC machining center is also required to extend its service life and maintain stable performance.
To sum up, CNC machining centers have significant advantages and application value in the field of hardware and metal processing. With the continuous development and advancement of technology, I believe that the application of CNC machining centers in the field of hardware and metal processing will be more extensive and in-depth in the future.
Specifications/model | unit | VW50A | VW63A | VW80A | VW50C | VW63B | VW80B | VW50C | VW63C | VW80C | VW63D | VW80D | VW100D |
Spindle position result | Same side of the cross | Same side of the cross | Same side of the cross | Same side of the cross | Same side of the cross | Same side of the cross | Contralateral simultaneous processing | Contralateral simultaneous processing | Contralateral simultaneous processing | Inverted T-shaped same side | Inverted T-shaped same side | Inverted T-shaped same side | |
Work content | |||||||||||||
Horizontal X (left and right), Y (up and down), Z (front and back) | CM | 80、55、550 | 110、60、60 | 130、80、70 | 80、60、50 | 110、80、70 | 130、90、80 | 80、60、50 | 110、80、70 | 130、90、80 | 105、80、60 | 160、80、70 | 200、90、80 |
Vertical X (left and right), Y (front and back), Z (up and down) | CM | 80、55、550 | 110、60、55 | 130、70、70 | 80、60、60 | 110、70、70 | 130、80、90 | 80、60、60 | 110、70、70 | 130、80、80 | 105、70、70 | 160、80、80 | 200、80、90 |
Workbench area (can be customized) | MM | 500×500 | 630×630 | 800×800 | 500×500 | 630×630 | 800×800 | 500×500 | 630×630 | 800×800 | 630×630 | 800×800 | 1000×1000 |
Maximum load | KG | 600 | 800 | 1500 | 600 | 1100 | 1800 | 600 | 1100 | 1800 | 1200 | 1800 | 2200 |
T-shaped slot (slot width × number of slots) | MM | 18×3 | 20×3 | 22×5 | 18×3 | 22×3 | 22×5 | 18×3 | 22×3 | 22×5 | 22×5 | 28×5 | 28×7 |
Standard dividing angle of workbench | ℃ | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion | any equal portion |
Workbench split angle (customized) | ℃ | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 | 1、5、90 |
Processing range | |||||||||||||
Distance from horizontal spindle center to worktable | -200+500 | -200+600 | -200+800 | +50-650 | +50-850 | +50-950 | +50-650 | +50-850 | +50-950 | -200+600 | -200+700 | -200+800 | |
Horizontal spindle nose to the side of the workbench | MM | +100-450 | +100-500 | +100-600 | +100-500 | +150-550 | +200-600 | +100-50 | +150-550 | +200-600 | +100-500 | +100-600 | +100-700 |
Distance from vertical spindle nose to work surface | MM | +200+750 | +200+800 | +200+900 | +150-750 | +150-850 | +150-1050 | +150-750 | +150-850 | +150-1050 | +200+800 | +200+1000 | +200+1100 |
Maximum height/diameter of workpiece | MM | 500/900 | 600/1300 | 800/1500 | 500/900 | 600/1300 | 800/1500 | 500/900 | 600/1300 | 800/1500 | 700/900 | 800/1300 | 900/1500 |
Spindle content | |||||||||||||
handle form | / | BT40 | BT40 | BT50 | BT40 | BT50 | BT50 | BT40 | BT50 | BT50 | BT50 | BT50 | BT50 |
Maximum speed of vertical and horizontal spindles | RPM | 8000 | 8000 | 6000 | 8000 | 6000 | 6000 | 8000 | 6000 | 6000 | 6000 | 6000 | 6000 |
Maximum speed of vertical and horizontal spindle (optional) | RPM | 12000 | 12000 | 6000 | 12000 | 6000 | 6000 | 12000 | 6000 | 6000 | 6000 | 6000 | 6000 |
Tool magazine content | / | ||||||||||||
horizontal structure | / | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm | Robotic arm |
Maximum tool diameter | MM | 350 | 350 | 350 | 350 | 350 | 350 | 350 | 350 | 350 | 350 | 350 | 350 |
Maximum tool weight | KG | 8 | 8 | 15 | 8 | 15 | 15 | 8 | 15 | 15 | 15 | 15 | 15 |
Number of horizontal and vertical tools | T | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 | 24/24 |
Three-axis rapid traverse speed | M/MIN | 32/32/32 | 32/32/32 | 24/24/24 | 32/32/32 | 32/32/32 | 24/24/24 | 32/32/32 | 32/32/32 | 24/24/24 | 32/32/32 | 24/24/24 | 24/24/24 |
Axis servo motor | |||||||||||||
Spindle motor horizontal/vertical | KW | 11/11 | 11/11 | 18.5/18.5 | 11/11 | 18.5/18.5 | 18.5/18.5 | 11/11 | 18.5/18.5 | 18.5/18.5 | 18.5/18.5 | 18.5/18.5 | 18.5/18.5 |
X, Y, Z axis, B | NM | 22/22/22/12 | 22/22/22/22 | 27/27/27/22 | 22/22/22/22 | 27/27/27/22 | 27/27/27/22 | 22/22/22/22 | 27/27/27/22 | 27/27/27/22 | 27/27/27/22 | 27/27/27/22 | 27/27/27/30 |
X-axis guide rail, screw rod | MM | Roller 45+screw 40 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 45+screw 40 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 45+screw 40 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 55+screw 50 |
Y-axis guide rail, screw rod | MM | Roller 45+screw 40 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 45+screw 40 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 45+screw 40 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 55+screw 50 |
Z-axis guide rail, screw rod | MM | Roller 45+screw 40 | Roller 45+screw 40 | Roller 45+screw 40 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 55+screw 50 | Roller 45+screw 40 | Roller 55+screw 50 | Roller 55+screw 50 | Roller 55+screw 50 | Roller 55+screw 50 | Roller 55+screw 50 |
air pressure | KG | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 | 6.5 |
Lubricating oil capacity | L | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 |
battery capacity | KW | 40 | 40 | 60 | 40 | 60 | 60 | 40 | 60 | 60 | 60 | 60 | 60 |
Cutting system capacity | L | 450 | 550 | 650 | 450 | 550 | 650 | 450 | 550 | 650 | 450 | 550 | 650 |
Machine weight | T | 8.0 | 9.5 | 15.5 | 10.5 | 15 | 19.5 | 22 | 27.5 | 33.5 | 22 | 27.5 | 33.5 |
Machine length (front and rear) | MM | 3600 | 3600 | 4600 | 3600 | 4600 | 4600 | 3900 | 5200 | 5500 | 5200 | 5500 | 6500 |
Machine width (left and right) | MM | 2800 | 3200 | 4200 | 3200 | 5000 | 5000 | 3600 | 5000 | 5000 | 5000 | 5500 | 6000 |
Machine height (maximum) | MM | 3300 | 3300 | 2700 | 3300 | 3700 | 3700 | 3300 | 3700 | 3700 | 4100 | 4300 | 4700 |
Chip removal method (optional) | / | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate | single chain plate |
Chip removal method (optional) | / | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw | Twin screw |
controller system | CNC | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel | multi-channel |