
CNC Gantry Type Machining Center
Control the number of servo axes axis 3 AXIS
Work surface size mm 1800×3000
door width mm 2200
Workbench load kg 6000
Table T-slot (number-size×spacing) mm 9-28×180
Left and right stroke (X) mm 3000
Front and rear travel (Y) mm 2200
Up and down stroke (Z) mm 1000
Spindle taper hole (specification/installation size) mm SK40
Spindle maximum speed rpm 0-12000rpm


Machine parameter
|
Parameter |
|||
|
Item |
unit |
Specifications |
|
|
system
|
operating system |
set |
FANUC 0I-MF |
|
|
Control the number of servo axes |
axis |
3 AXIS |
|
work table
|
Work surface size |
mm |
1800×3000 |
|
|
door width |
mm |
2200 |
|
|
Workbench load |
kg |
6000 |
|
|
Table T-slot (number-size×spacing) |
mm |
9-28×180 |
|
travel
|
Left and right stroke (X) |
mm |
3000 |
|
|
Front and rear travel (Y) |
mm |
2200 |
|
|
Up and down stroke (Z) |
mm |
1000 |
|
Spindle
|
Spindle taper hole (specification/installation size) |
mm |
SK40 |
|
|
Spindle maximum speed |
rpm |
0-12000rpm |
|
|
Spindle transmission mode |
|
Direct |
|
|
Distance from spindle end face to work table |
mm |
250-1250 |
|
guide
|
X/Y/Z axis roller screw specifications |
|
R8016/6310/5010 |
|
|
X-axis guide/linear guide specification |
|
55 heavy duty roller rail |
|
|
Y-axis guide/linear guide specification |
|
55 heavy duty roller rail |
|
|
Z-axis guide/linear specification |
|
Rectangular slide |
|
motor
|
X.Y.Z motor connection |
|
Direct |
|
|
Spindle motor parameters (power) guide |
kw |
22 |
|
|
X.Y.Z axis motor parameters (power ) |
kw |
7/7/7 |
|
|
Spindle Cooler Capacity (Gear/750) |
|
750 |
|
|
Machining Cooling Pump Horsepower |
w |
750W |
|
feed
|
X. Y. Z-axis machining speed |
m/min |
8/8/8 |
|
|
X.Y.Z axis rapid traverse speed |
m/min |
12/12/10 |
|
Power / Air Pressure
|
air source |
kg/cm² |
6kg/cm² |
|
|
power requirements |
kva |
50KVA |
|
Machine tool accuracy
|
positioning accuracy |
mm |
±0.003/300 |
|
|
Repeatability |
mm |
±0.002/300 |
1. The operator should be familiar with and master the performance and characteristics of the CNC gantry type machining center. Ensure that the emergency stop switch can quickly and effectively play a role in emergency situations to avoid injury accidents.
2. Wear labor protective equipment according to the regulations, and it is strictly forbidden to wear gloves to operate.
3. When the equipment is working, do not touch the electronic switch with wet hands to avoid electric shock. Do not touch any moving parts with your hands. 4. Do not place tools or non-machined workpieces on the gantry machining center or on moving objects.
5. The computer desk or work desk next to the machine must be sturdy and must not be placed on moving parts.
6. When loading and unloading the workpiece, the machine should be stopped first, and an appropriate distance should be kept between the workpiece and the cutting tool. When the machine is running, please do not open the front door and the left and right covers arbitrarily to avoid personal injury.
7. After the tool is set, please run it with DRYRUN first to make sure the program is correct. 8. When shutting down after power failure or emergency stop, the three-axis should be restored to its mechanical original position. 9. Do not dismantle the limit switch or any related parts of the protection switch without authorization.
10. Before finishing work and leaving the machine, turn off the control power switch of the operation panel and the main switch of the electrical box

What software is used for automatic programming of the CNC gantry type machining center ?
When it comes to CNC programming software, I think people who do machining are familiar with it. It is an artifact that can save efficiency and reduce error rates. It is safer and more reliable than manual programming. It is often used in CNC lathes, CNC milling machines and large four-axis , five-axis machining center, Jingke Daheng, as a professional manufacturer of CNC gantry milling machines, faced with the question of what software to use for automatic programming of gantry machining centers put forward by customers, next we will go deep into several automatic programming software check it out!
Which software to use for automatic programming of the CNC gantry machining center should be selected according to your purpose. The commonly used ones are UG, MATER CAM, PRO/E, CAXA, etc.
1. If you do simple mechanical processing, use MasterCAM. It mills two-dimensional parts, and the function of simple curved surfaces is quite powerful. If you want to process complex parts, such as impellers, it is recommended that you use PowerMILL, which is simple and low in efficiency, and its ability to process more than four axes, efficiency, and ease of learning are stronger than MasterCAM.
2. If you want to make moulds, I think everyone is familiar with the famous UG. Because Siemens has acquired the UG team, it is now renamed NX. Generally, UG is commonly used in plastic mold design in the south. In order to prevent errors in exporting and importing models, In addition, UG also has a milling function, and the function is not bad, so the tool path is generated directly in UG, UG can also hang another module, and the simulation can be raised to another level. The price of the genuine software is that MasterCAM is cheap, PowerMILL is average, and UG is expensive.
3. Next, let’s talk about CAXA. CAXA is known as domestically produced. If you have been doing mechanical design for many years, if you have dabbled in software that is widely used in the world and has relatively strong functions, you will find that CAXA is a patchwork, with simple shapes and functions. , can not meet the needs of mold design, can only make some conventional parts. CAXA's direct competitor is MasterCAM. Except that it does not need localization and the tool parameters are relatively simple, it has no advantages. For example, the connection between modeling and simulation modules is not good, the interference between machine tools and fixtures cannot be checked, and the tool path calculation is obviously slower than MasterCAM. Of course, not all of CAXA is bad. The physical design modules in the CAXA series (physical design can create parts, assemble, and simulate, and the simulation is quite bad) are still somewhat innovative. For example, the idea of 3D balls is eye-catching.
In fact, regardless of the various features of these softwares, they can all achieve the effect of improving processing efficiency and reducing the probability of errors in the end, so in the end it is still the sentence "suitable for you, easy to use, and problem-solving. "These software are tools for our production, apart from a professional point of view, there is no good or bad!


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