The layout of the TCK50A inclined bed lathe is usually compact, saving floor space. At the same time, it can also be designed with a tool holder and tailstock with a larger stroke, which is suitable for processing larger and more complex workpieces.
The TCK50A inclined bed design has high structural rigidity, which helps to improve the stability and accuracy of processing. The inclined bed layout reduces the vibration of the workpiece and tool during processing, thereby improving the processing quality.
TCK50A has strong chip removal capacity. The inclined bed design allows the chips to slide naturally by gravity, making chip removal smoother, reducing the interference of chip accumulation on the processing process, and improving work efficiency and processing safety.
The TCK50A slant bed design makes the operator's working position more comfortable and convenient for observation and operation. The slant bed is usually lower than the flat bed workbench, making it easier for operators to perform clamping and measurement operations.
TCK50A is easy to automate: The slant bed CNC lathe is easier to integrate with automation devices due to its compact structure and humanized design, and adapts to the automation needs of modern production lines.
These features make the slant bed of CNC lathes have obvious advantages in the fields of precision machining, efficient production and automation.
The TCK50A CNC lathe inclined bed is widely used in modern manufacturing, especially for occasions that require high-precision, high-efficiency and automated processing. Its main application areas include:
1. TCK50A in the automotive industry. Processing engine parts such as crankshafts, camshafts, cylinder blocks, cylinder heads, etc. Manufacturing transmission system parts such as gears, shafts, flanges, etc. Producing parts for suspension systems, brake systems and steering systems.
2. TCK50A in aerospace, processing aircraft engine parts, turbine blades, turbine discs and other high-precision, high-strength materials. Manufacturing body structural parts such as titanium alloy and aluminum alloy frames and support components. Producing parts for aviation hydraulic systems and fuel systems.
3. TCK50A in medical equipment, processing high-precision medical instruments and equipment parts, such as surgical tools, implants, prosthetic parts, etc. Manufacturing complex-shaped orthopedic implants, dental equipment, and other precision parts.
Item | Unit | TCK50A |
Max. swing dia. over bed | mm | Φ560 |
Max. swing dia. over slide | mm | Φ260 |
Max. processing length | mm | 350/500/800 |
Spindle speed | rpm | 3000 |
Spindle hole diameter | mm | 66/66/86 |
Weight | KG | 3200/3600/4500 |
Machine size | mm | 2700/2700/3300×2000×2000 |