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China Flat Bed CNC Lathe with Linear Guide - Suppliers & Factory for High Precision Metal Processing
Technology Parameter
| Parameter | SPECIFICATIONS | Units | X400 | XG6132 | PG40 |
|---|---|---|---|---|---|
| Machining Capacity | Maximum turning diameter over bed | mm | 300 | 350 | 300 |
| Maximum machining length | mm | 160 | 350 | 150 | |
| Maximum bar machining diameter | mm | 40 | 40 | 40 | |
| Diameter of spindle bore | mm | 48 | 48 | 48 | |
| Maximum stroke of X/Z | mm | 700/350 | 700/350 | 700/410 | |
| Power System | Spindle maximum spindle speed | r/min | 3000 | 3000 | 3000 |
| Spindle Motor | KW | 4 | 4 | 4 | |
| X/Z drive motor | N/M | 4/4 | 4/4 | 4/4 | |
| Feed Velocity | Fast Feed velocity | m/min | X:20/Z:20 | X:20/Z:20 | X:20/Z:20 |
| Tool Post | Height of rectangular tool shank section | mm | 20 | 20 | 20 |
| Diameter of boring bar shank | mm | 20 | 20 | 20 | |
| Tailstock | Sleeve diameter | mm | / | 55 | / |
| Sleeve taper | / | MT 4 | / | ||
| Sleeve travel | mm | / | 100 | / | |
| Precision | Repeat Positioning accuracy | mm | 0.01 | 0.01 | 0.01 |
| Machining accuracy | mm | 0.01 | 0.01 | 0.01 | |
| Spindle beat | mm | 0.01 | 0.01 | 0.01 | |
| Other | Power supply power | KVA | 7.5 | 7.5 | 7.5 |
| Machine weight | kg | 1000 | 1100 | 1100 | |
| Machine Size | mm | 1800x1360x1600 | 2000x1200x1600 | 1600x1400x1600 |
Features
Stable bed structure
The flat bed is usually made of high-quality cast iron, which has good shock resistance and stability, providing a stable working platform for cutting.
The flat bed is usually made of high-quality cast iron, which has good shock resistance and stability, providing a stable working platform for cutting.
Accurate linear rail system
The linear rail adopts an advanced rolling contact method. Compared with traditional sliding guides, this design greatly reduces friction and improves the positioning accuracy and response speed of moving parts.
The linear rail adopts an advanced rolling contact method. Compared with traditional sliding guides, this design greatly reduces friction and improves the positioning accuracy and response speed of moving parts.
Configuration Introduction
1. CNC Control System
The standard configuration for X400, XG6132 and PG40 use GSK928TA2
The standard configuration for PG40B use GSK980TB3i
2. Spindle and Clamping
This series can be customized with double spindles, processing at the same time will have greater processing efficiency.
The clamping for X400, XG6132 and PG40 use pneumatic clamping, PG40B use hydraulic clamping.
The clamping for X400, XG6132 and PG40 use pneumatic clamping, PG40B use hydraulic clamping.
3. Tools
Row Tool Post Configuration
X400, PG40, PG40B standard configuration with row tool post, that installs the tools in a straight line, which has a compact structure and takes up little space. Only need to move the tools to the specified position, which has a fast tool change speed and improves the processing efficiency.
X400, PG40, PG40B standard configuration with row tool post, that installs the tools in a straight line, which has a compact structure and takes up little space. Only need to move the tools to the specified position, which has a fast tool change speed and improves the processing efficiency.
4-Station Electric Tool Post & Manual Tailstock (XG6132)
XG6132 is configured with a 4-station electric tool post and manual tailstock. The 4-station electric tool post is driven by an electric motor. After receiving the tool change command, the motor starts to rotate forward, driving the worm to rotate, thereby lifting the upper tool body and transferring it to the specified tool position. Finally, the tool change action is completed through precise positioning and clamping.
Manual Tailstock can be moved along the bed rail to the desired position to meet the requirements of different workpiece processing. By adjusting the position and angle of the tailstock, the workpiece can be better supported to ensure stability and accuracy during processing.
XG6132 is configured with a 4-station electric tool post and manual tailstock. The 4-station electric tool post is driven by an electric motor. After receiving the tool change command, the motor starts to rotate forward, driving the worm to rotate, thereby lifting the upper tool body and transferring it to the specified tool position. Finally, the tool change action is completed through precise positioning and clamping.
Manual Tailstock can be moved along the bed rail to the desired position to meet the requirements of different workpiece processing. By adjusting the position and angle of the tailstock, the workpiece can be better supported to ensure stability and accuracy during processing.
Frequently Asked Questions (FAQ)
What CNC control systems are configured for these lathe models?
The X400, XG6132, and PG40 models standardly use the GSK928TA2 control system, while the PG40B model is configured with the GSK980TB3i system.
What clamping mechanisms do these CNC lathes utilize?
Pneumatic clamping is standard for the X400, XG6132, and PG40 models, whereas the PG40B model is equipped with hydraulic clamping.
How do the tool posts differ between the models?
The X400, PG40, and PG40B feature a row tool post layout for compact structure and fast tool changes. The XG6132 model uses a 4-station electric tool post combined with a manual tailstock for versatile workpiece support.
What are the benefits of the linear rail system?
The linear rail system uses rolling contact to dramatically reduce friction compared to traditional sliding guides. This increases positioning accuracy and response speed during machining.
Can these machines support double spindle customization?
Yes, this series can be customized with double spindles to allow simultaneous processing, which significantly improves overall processing efficiency.








