45 Degree inclined tck50 hydraulic chuck servo turret and driven turret slant bed machine
Item | Parameter | TCK50 |
Processing range | Max swing over bed Dia.(mm) | Φ550 |
Max cutting Dia.(mm) | Φ440 | |
Max cutting length(mm) | Φ450 | |
The distance between two centers(mm) | 500 | |
Travel and feed | X axis travel(mm) | 250 |
Z axis travel(mm) | 500 | |
X axis movement speed(mm/min) | 24000 | |
Z axis movement speed(mm/min) | 24000 | |
Hand wheel(mm) | 0.001/0.01/0.1 | |
X,Z axis feed speed(mm/min) | 0~5000 | |
X,Z axis manual feed speed(mm/min) | 0~1260 | |
positional accuracy | X axis repeated positioning accuracy(mm) | 0.005 |
X-axis positioning accuracy(mm) | 0.01 | |
Z axis repeated positioning accuracy (mm) | 0.006 | |
Z-axis positioning accuracy(mm) | 0.015 | |
Spindle | Spindle speed(rpm) | 35-3000 |
Max. spindle torque(N.m) | 48 | |
Spindle nose | A2-6 | |
Spindle bore Dia(mm) | Φ66 | |
Hollow oil chuck through hole Dia.(mm) | Φ50 | |
Chuck | 10”(12 optional) | |
Turret | No.of tool holder | 12 station |
Tool change time(s) | 0.25 | |
Tools size(mm) | 25×25 | |
Boring tool size(mm) | Φ32 | |
Tail stock | Tailstock travel(mm) | 480 |
taper of center | MT-5# | |
Main motor | Main motor(kw) | 7.5(4500rpm) |
Main motor torque(N.m) | 48 | |
Feed motor | X axis feed motor power(kw) | 2.3 |
X-axis feeds motor torque(N.m) | 15 | |
Z axis feed motor power(kw) | 2.3 | |
Z-axis feeds motor torque(N.m) | 15 | |
cooling system | Coolant capacity(L) | 200 |
motor type(1HP)(kw) | 0.18 | |
Dimensions | L*W*H(mm) | 2697*1795*1860 |
weight | Machine weight(kg) | 3600 |
Features:
A slant-bed CNC lathe is a type of numerical control machine tool with the following key features:
Design Structure: The bed is inclined at an angle (usually 30 degrees, 45 degrees, or 60 degrees). This arrangement enhances the flow of cutting fluid, effectively removing chips and reducing heat buildup during machining, thereby improving work piece accuracy.
Stability and Rigidity: The slanted design enhances the machine's stability, as gravity aids in better adherence spindle housing to the guide rails during cutting, increasing the machine's rigidity and vibration resistance.
Maintenance of Precision: With better chip evacuation, the guide ways and worktable of a slant-bed lathe are less prone to wear from chips and coolant, helping maintain long-term machining precision.
Processing Capabilities: Equipped with advanced CNC systems, these lathes can handle complex parts and multi-axis machining tasks such as drilling, tapping, milling, and turning.
Efficiency: Due to their design and automation, slant-bed lathes allow for rapid tool changes and continuous machining, boosting productivity.
Ease of Operation: The tilted design makes it easier for operators to observe and access workpieces, improving efficiency and providing a better working environment.
Cost: While slant-bed lathes may have a slightly higher initial cost in terms of design and manufacturing compared to traditional flat-bed lathes, their increased machining precision and efficiency can lead to a higher return on investment over the long term.
Slant-bed lathes are commonly employed in precision part manufacturing for industries such as automotive, aerospace, medical devices, and precision machinery.
Standard configuration:
1. Gsk controller system