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The gantry 5-axis CNC machine tool is a high-performance processing equipment that combines gantry structure and five-axis linkage technology, giving it significant advantages in processing complex parts. The rigid steel structure provides a very stable cutting platform. , the design adopts a heavy-duty high-precision swing head and optimized frame structure, and the mobile guard protects the operator from the chip and coolant and keeps the work space clean, ensuring stable processing performance and accuracy under highly dynamic conditions, Even complex and very heavy parts can be machined economically, the gantry design allows maximum utilization of the working area and the drive range can be modularly extended. Its five-axis degree of freedom control capability enables the machine tool to process workpieces from multiple angles, thereby reducing the number of clamping times and improving processing efficiency.
Gantry 5-Axis CNC Machine Feature

1. Gantry design machine for dynamic 5-axis machining of large workpieces
2. Various spindle versions for a wide range of applications
3. Perfect accessibility
4. Fast machining speed, high reliability, good structural rigidity, flexible operation, and high production efficiency.
5. Equipped with a high-precision spindle, it can achieve high-speed and high-precision machining.
6. High-precision servo motors and transmission systems ensure the accuracy of the machine during machining to meet the needs of precision engineering
Feed transmission of each axis
The X-axis adopts a double-sided single drive, that is, both the left and right sides are equipped with a set of dual-motor gear rack drive structures, which can effectively eliminate the transmission gap and improve the positioning accuracy and repeatability of the machine tool.
The Z-axis transmission uses an AC servo motor as the power source and a ball screw as the transmission component. The ball screw is fixedly supported at both ends, supported by imported special precision bearing groups, and pre-stretched in both directions to ensure the screw feed stiffness and life. The Y-axis lead screw is equipped with an advanced auxiliary support structure, which can effectively avoid the precision error caused by the drooping center of gravity of the lead screw with a long stroke. The Z-axis motor has an automatic brake function. In the event of a power outage, the automatic brake will hold the motor shaft tightly to prevent it from rotating.
Gantry 5 Axis CNC Machine Parameters
| Subject | Specification | unit | GMMD-8045-5A |
| Travel | X/Y/Z axis | mm | 8000*3500*2300 |
| Spindle nose to the worktable surface | mm | 500-2800 | |
| Gantry passable width | mm | 4500 | |
| Worktable | worktable(L*W) | mm | 8000*3500 |
| Worktable max load | t/㎡ | 10 | |
| T SLOT | mm | 36*200 | |
| Spindle | Spindle type | mm | HSKA63 |
| Spindle speed | rpm | 18000 | |
| Spindle delivery type | Electric spindle | ||
| Feed Rate | Feed rate ( X/Y/Z ) | m/min | 2010/10/10 |
| The max cutting feed rate | mm/min | 6000 | |
| Motor | Spindle motor | kw | 30 |
| Three-axis servo motor | kw | 5.2*4/5.2/5.2 | |
| Cutting water pump motor | kw | 2.7 | |
| ATC (Optional) | Tool change method | Side Amount | |
| Tool handle specifications | type | HSKA63 | |
| Tool capacity | tools | 30 | |
| Maximum tool diameter (adjacent tool) | mm | 80 | |
| Maximum tool diameter (without adjacent tool) | mm | 120 | |
| Maximum tool length | mm | 350 | |
| Maximum tool weight | kg | 8 | |
| Fastest tool change time | sec | 2.5 | |
| Power Requirement | Power requirement | kva | 60 |
| Air pressure requirement | Kg/cm² | 6^8 | |
| Others | L*W*H | mm | Appr 13300*7430*5950 |
| Weight | T | Appr 89 |
Advantages of Gantry 5-Axis CNC Machine
1. Reduce labor costs: The automated CNC system has the control capability of five axes of freedom, which greatly reduces the need for manual intervention, can complete the efficient and high-precision processing of complex parts, reduces human errors during operation, and improves overall production efficiency. Its advantages include a wider processing range, reduced processing time, high precision, and strong flexibility
2. Strong environmental adaptability: The design takes into account the needs of different working environments and has good dust and splash resistance
3. High precision: The machine tool adopts high-precision processing technology and an advanced control system. The five-axis CNC machining center can realize high-precision processing in multiple angles and directions at the same time. It can complete the processing of various curved surfaces in one clamping, which greatly reduces the number of clamping and auxiliary times of the workpiece, avoids the processing error caused by re-clamping, and thus improves the processing accuracy.
4. Complex shape processing Work: Five-axis machining can easily handle the processing of complex surfaces, milling, drilling, tapping, grinding, and other high-precision molds and artworks, greatly improving the processing flexibility and efficiency, and expanding the application scope of mechanical manufacturing
5. Optimize tool path: Advanced CNC technology makes tool path planning more optimized, improves cutting efficiency and surface quality, and extends the service life of the tool
6. Guarantee of high-quality transmission components: Each axis movement may adopt high-precision ball screw pair transmission or other high-precision transmission methods to ensure the movement accuracy and positioning accuracy of each axis so that the machine tool can still maintain stable processing accuracy during long-term operation
7. Automatic tool changing system: Generally equipped with a large-capacity tool magazine and an efficient automatic tool changing system, it can automatically select the appropriate tool for processing according to processing requirements. The tool-changing action is fast and accurate, which reduces the time and error of manual tool-changing and improves the continuity and efficiency of processing
Application of 5-axis gantry cnc machine
1. Aerospace: used to manufacture aircraft engine blades, fuselage structural parts, wings, fuselage frames, and other complex curved surface parts.
2. Automobile manufacturing: used to produce molds for automobile bodies, chassis, engines, car doors, roofs, hoods, and other covering parts, as well as precision processing of different parts.
3. Shipbuilding: ship hull structural parts, decks, bulkheads, propellers, etc.
4. Mold manufacturing: used to manufacture various plastic molds, die-casting molds, stamping molds, etc.
5. Medical devices: used to manufacture artificial joints, dental implants, surgical instruments, and other precision medical equipment.
6. Energy industry: used to manufacture wind turbine components, turbine blades, hubs, nacelles, nuclear power equipment, etc.
7. Military industry: used to manufacture missiles, satellites, barrels, guns, ships, gun mounts, missile casings, warheads, engines, and other parts.
8. Precision equipment: used to manufacture semiconductor equipment, optical instruments, precision measuring tools, etc.
9. Art creation: used to carve artworks, architectural decorations, etc.
10. Flexible automated production line: Provides a complete turnkey production line covering high-end machine tools, fixtures, tools, process solutions, logistics systems, warehousing systems, production control systems, etc., with a high localization rate.

Working principle of 5-axis gantry machine
The movement of the five-coordinate axes is controlled by the CNC system to achieve high-precision processing of the workpiece. Before processing, it is necessary to compile a CNC processing program according to the part drawing using the specified instruction code and input it into the CNC device through the operation panel or communication interface. After decoding and calculation, the CNC device generates corresponding control signals, including position signals, motion control signals, and logic control signals.
After the position signal and motion control instruction are converted and amplified by the servo system, the servo motor is driven to move precisely, driving the moving parts of the machine tool to automatically process according to the program. The logic control instructions output by the built-in programmable controller controlled by the CNC device are amplified by power and directly drive the solenoid valve, clutch, relay, spindle controller, and other actuators in a predetermined logical sequence to control the start and stop, speed change, reversing of the spindle, tightening or loosening of the workpiece, rotation of the tool holder, selection and replacement of the tool, switching of the cutting fluid and other auxiliary actions to achieve automatic operation of the CNC machine tool.
In addition, the detection device detects the actual position and speed value of the coordinate axis in real-time, and the signal is fed back to the CNC device or servo system after conversion, compared with the command value, and the error is compensated and adjusted to make the moving parts run to the correct position.
Basic parts of machine tools
The bed, columns, beams, spindle box, etc. are all cast using high-strength cast iron materials and resin sand technology. To meet the heavy load cutting of machine tools, the cross beam adopts a large cross-section and has sufficient bending stiffness and torsional stiffness. These large parts are designed optimally with the aid of computer three-dimensional software, and the stiffeners are reasonably arranged to improve the stiffness of the large parts.
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