1. The bed structure is optimized through finite element analysis to effectively balance the running speed and processing rigidity of the machine tool.
2. The whole machine structure is a cross slide column structure, which adopts an ultra-large and stable base and a large-span and high-rigidity herringbone column, which can maintain stability and high precision during high-speed cutting.
3. The main components are all well-known imported brands, which can improve the processing efficiency while ensuring the high quality of the product.
4. The 24-station mechanical arm tool magazine is equipped, which not only has high tool change efficiency, but also can meet the processing technology of complex parts.
5. The sheet metal adopts a fully enclosed protection design to prevent the leakage of cutting fluid, and the water spray device at the chip outlet effectively solves the chip accumulation problem.
6. After one clamping, it can continuously complete the processing of milling, drilling, boring, expanding, reaming, countersinking, tapping and other processes. It can be equipped with a fourth-axis rotary table to realize multi-axis linkage processing.
7. It is suitable for mass production and processing, and is widely used in various industries.
The advanced configuration of the machining centre VMC1165 allows the machine to perform a wide range of milling, drilling, boring, reaming, reaming, countersinking, tapping and other processes continuously in a single clamping, which greatly improves machining efficiency.
At the same time, fast stability and high accuracy during operation ensure consistent and reliable machining quality, which is especially important for aerospace, automotive manufacturing and other high-precision industries that seek extreme precision. Further, the machine's highly rigid structural design and stability at high cutting speeds ensures no vibration or deformation during complex machining processes, which is achieved through the use of a cross slide fixed column structure and an oversized stable base. This design optimises force distribution, reduces accuracy problems caused by thermal extension and extends the life of the machine.
In terms of maintenance, the use of a pre-drawn structure for the screws to eliminate some of the effects of thermal stretching, and the use of oil-filled lubrication for the screw bearings, not only extends bearing life, but also improves overall operating efficiency. The optimisation of these details may seem to increase costs at the initial stage, but in the long run, it actually reduces operation and maintenance costs and improves the overall economic efficiency of the equipment. In response to the demand for batch processing, the machine offers a wide range of applications and excellent after-sales service, including a one-year warranty. This service commitment not only demonstrates the manufacturer's confidence in the quality of its products, but also provides an extra layer of security for users.
This machine with quick tool change function, high precision and stable machining capability and excellent after-sales service is undoubtedly an ideal choice for the modern manufacturing industry. It not only enhances productivity and machining accuracy, but also ensures long-term stable production output through its high rigidity design and long-term stability, bringing considerable economic benefits and competitive advantages to enterprises.
1. The bed structure is optimized through finite element analysis to effectively balance the running speed and processing rigidity of the machine tool.
2. The whole machine structure is a cross slide column structure, which adopts an ultra-large and stable base and a large-span and high-rigidity herringbone column, which can maintain stability and high precision during high-speed cutting.
3. The main components are all well-known imported brands, which can improve the processing efficiency while ensuring the high quality of the product.
4. The 24-station mechanical arm tool magazine is equipped, which not only has high tool change efficiency, but also can meet the processing technology of complex parts.
5. The sheet metal adopts a fully enclosed protection design to prevent the leakage of cutting fluid, and the water spray device at the chip outlet effectively solves the chip accumulation problem.
6. After one clamping, it can continuously complete the processing of milling, drilling, boring, expanding, reaming, countersinking, tapping and other processes. It can be equipped with a fourth-axis rotary table to realize multi-axis linkage processing.
7. It is suitable for mass production and processing, and is widely used in various industries.
The advanced configuration of the machining centre VMC1165 allows the machine to perform a wide range of milling, drilling, boring, reaming, reaming, countersinking, tapping and other processes continuously in a single clamping, which greatly improves machining efficiency.
At the same time, fast stability and high accuracy during operation ensure consistent and reliable machining quality, which is especially important for aerospace, automotive manufacturing and other high-precision industries that seek extreme precision. Further, the machine's highly rigid structural design and stability at high cutting speeds ensures no vibration or deformation during complex machining processes, which is achieved through the use of a cross slide fixed column structure and an oversized stable base. This design optimises force distribution, reduces accuracy problems caused by thermal extension and extends the life of the machine.
In terms of maintenance, the use of a pre-drawn structure for the screws to eliminate some of the effects of thermal stretching, and the use of oil-filled lubrication for the screw bearings, not only extends bearing life, but also improves overall operating efficiency. The optimisation of these details may seem to increase costs at the initial stage, but in the long run, it actually reduces operation and maintenance costs and improves the overall economic efficiency of the equipment. In response to the demand for batch processing, the machine offers a wide range of applications and excellent after-sales service, including a one-year warranty. This service commitment not only demonstrates the manufacturer's confidence in the quality of its products, but also provides an extra layer of security for users.
This machine with quick tool change function, high precision and stable machining capability and excellent after-sales service is undoubtedly an ideal choice for the modern manufacturing industry. It not only enhances productivity and machining accuracy, but also ensures long-term stable production output through its high rigidity design and long-term stability, bringing considerable economic benefits and competitive advantages to enterprises.
Item | Name | VMC1160 |
Processing range | X/Y/Z-axis travel (mm) | 1100*600*650 |
Table size (mm) | 1200*600 | |
Table load (KG) | 800 | |
Distance from spindle nose to worktable surface(mm) | 120-720 | |
Distance from spindle center to column guide rail (mm) | 710 | |
T-slot (Number of slots - slot width × pitch) (mm) | 18T*5*110 | |
Spindle | Spindle motor Power (Kw) | 11-15 |
Spindle speed (r/min) | 8000 (direct connection 12000) | |
Spindle diameter (mm) | 150 | |
Spindle taper | BT40 | |
Feed | X/Y/Z axis feed motor Power (Kw) | 3.9/3.9/5.9 |
X/Y/Z axis guide (mm) | 35/45/45 | |
X/Y/Z axis screw (mm) | Φ40*16 | |
X/Y/Z rapid feed speed (m/min) | 36/36/36 | |
Tool magazine | Tool magazine Capacity (pic) | 24 |
Maximum tool weight (KG) | 10 | |
Maximum tool length (mm) | 350 | |
Primary accuracy | Positioning accuracy (mm) | ±0.005 |
Repeated positioning accuracy (mm) | ±0.003 | |
Other | Operating system | Mitsubishi, Fanuc, SYNTEC |
Power Capacity (KVA) | 26 | |
Air Source (MPa) | 0.5-0.8 | |
Machine weight (KG) | 6500 | |
Floor area (length × width × height) (mm) | 2800×2500×2800 |
Item | Name | VMC1160 |
Processing range | X/Y/Z-axis travel (mm) | 1100*600*650 |
Table size (mm) | 1200*600 | |
Table load (KG) | 800 | |
Distance from spindle nose to worktable surface(mm) | 120-720 | |
Distance from spindle center to column guide rail (mm) | 710 | |
T-slot (Number of slots - slot width × pitch) (mm) | 18T*5*110 | |
Spindle | Spindle motor Power (Kw) | 11-15 |
Spindle speed (r/min) | 8000 (direct connection 12000) | |
Spindle diameter (mm) | 150 | |
Spindle taper | BT40 | |
Feed | X/Y/Z axis feed motor Power (Kw) | 3.9/3.9/5.9 |
X/Y/Z axis guide (mm) | 35/45/45 | |
X/Y/Z axis screw (mm) | Φ40*16 | |
X/Y/Z rapid feed speed (m/min) | 36/36/36 | |
Tool magazine | Tool magazine Capacity (pic) | 24 |
Maximum tool weight (KG) | 10 | |
Maximum tool length (mm) | 350 | |
Primary accuracy | Positioning accuracy (mm) | ±0.005 |
Repeated positioning accuracy (mm) | ±0.003 | |
Other | Operating system | Mitsubishi, Fanuc, SYNTEC |
Power Capacity (KVA) | 26 | |
Air Source (MPa) | 0.5-0.8 | |
Machine weight (KG) | 6500 | |
Floor area (length × width × height) (mm) | 2800×2500×2800 |