|
Item |
Unit |
CW61100 |
CW61125 |
CW61140 |
CW61160 |
|
Max dia.swing over bed |
mm |
1000 |
1250 |
1400 |
1600 |
|
Max dia.swing over cross slide |
mm |
610 |
860 |
1000 |
1200 |
|
Max.length of work-piece |
mm |
1500 |
1500 |
1500 |
1500 |
|
Maximum machining length |
mm |
1200 |
1200 |
1200 |
1200 |
|
Width of bed |
mm |
755 |
755 |
755 |
755 |
|
Spindle bore |
mm |
140 |
140 |
140 |
140 |
|
Spindle bore taper |
mm |
Metric:150/1:20 |
Metric:150/1:20 |
Metric:150/1:20 |
Metric:150/1:20 |
|
Spindle nose |
A2-15 |
A2-15 |
A2-15 |
A2-15 |
|
|
Power of spindle motor |
mm |
22 |
22 |
22 |
22 |
|
Range of spindle speed |
mm |
Three gears frequency conversion L:10-50; M: 50-115; H: 115-300 |
|||
|
Traverse of cross slide |
mm |
520 |
640 |
720 |
820 |
|
Z axis feed grade /range |
mm/r |
32/0.1-1.5 |
32/0.1-1.5 |
32/0.1-1.5 |
32/0.1-1.5 |
|
X axis feed grade /range |
mm/r |
32/0.05-0.75 |
32/0.05-0.75 |
32/0.05-0.75 |
32/0.05-0.75 |
|
Carriage raid traverse speed |
mm/min |
3740 |
3740 |
3740 |
3740 |
|
Cross slid raid traverse speed |
mm/min |
1870 |
1870 |
1870 |
1870 |
|
Metric thread grade/range |
mm |
23/1-15 |
23/1-15 |
23/1-15 |
23/1-15 |
|
Inch thread grade/range |
T.P.I |
22/28-2 |
22/28-2 |
22/28-2 |
22/28-2 |
|
Max. Traverse of turret |
mm |
300 |
300 |
300 |
300 |
|
Tool section size |
mm |
32×32/40×40 |
32×32/40×40 |
32×32/40×40 |
32×32/40×40 |
|
Tailstock quill travel |
mm |
300 |
300 |
300 |
300 |
|
Tailstock quill Dia. |
mm |
160 |
160 |
160 |
160 |
|
Tailstock quill taper |
mm |
Morse NO.6 |
Morse NO.6 |
Morse NO.6 |
Morse NO.6 |
|
Chuck |
Φ400 |
Φ400 |
Φ400 |
Φ400 |
|
|
Overall dimensions(L*W*H) |
mm |
4600×2100×1650 |
4600×2250×1750 |
4600×2300×1900 |
4600×2450×2200 |
|
Machine weight |
T |
10.6 |
11.6 |
12.2 |
14 |



Introduction
The Conventional Lathe is widely used in the machining industry to process various metal and non-metal materials. They can precisely process the shape, size and surface quality of workpieces by rotating the workpiece and removing excess material with cutting tools.
Features
High-precision machining
The machining accuracy of our products can reach ±0.02mm, which can ensure the consistency of workpiece size during turning. The high-rigidity structure of the bed effectively reduces vibration and ensures the stability and precision of machining.
Diverse machining capabilities
The Conventional Lathe have a variety of cutting functions, including turning outer circles, inner circles, end faces, threads and grooving, etc., and can complete machining tasks of various shapes. The adjustable range of its spindle speed is usually between 50-2000 rpm. The appropriate cutting speed can be adjusted according to the requirements of different materials, thereby achieving efficient machining of different materials.
Highly adjustable feed system
Our machine tools are equipped with an adjustable feed system, and the feed speed can be adjusted between 0.05mm/rev and 1mm/rev. In this way, according to the machining requirements of the workpiece, the appropriate feed speed can be selected to optimize the machining effect and improve the machining efficiency.
FAQ
FAQ
Q: What is a conventional lathe?
A: A conventional lathe is a machine tool used for shaping or machining wood, metal, or other material by means of a rotating workpiece and a fixed cutting tool. It is primarily used for turning, facing, and drilling operations.
Q: What are the main components of a conventional lathe?
A: The main components include the bed, headstock, tailstock, carriage, saddle, cross slide, tool post, and lead screw. These components work together to support the workpiece and move the cutting tool along the desired path.
Q: What is turning in the context of a lathe?
A: Turning is a machining process where a cutting tool removes material from a rotating workpiece to create cylindrical shapes, such as shafts, rods, or tubes.
Q: What safety precautions should be followed when using a conventional lathe?
A: Operators should wear protective gear, keep hands away from moving parts, ensure the workpiece is securely clamped, and always follow the manufacturer's instructions. It's also important to keep the lathe clean and well-maintained.
Q: What types of operations can be performed on a conventional lathe?
A: A conventional lathe can perform operations like turning, facing, boring, drilling, threading, and knurling, allowing it to create a variety of shapes and features on the workpiece.
Q: How do you set the speed of a conventional lathe?
A: The speed of a conventional lathe can be adjusted by changing the settings on the headstock, which includes a motor that drives the spindle. The operator can select the appropriate speed based on the material and the type of operation being performed.
Q: What is the role of the tailstock on a conventional lathe?
A: The tailstock supports the workpiece at the opposite end of the headstock. It can also hold tools such as drills or reamers and can be adjusted along the length of the bed to accommodate different workpieces.
Q: What are the advantages of using a conventional lathe?
A: Conventional lathes offer simplicity, affordability, and versatility for a wide range of machining tasks. They are especially suitable for small production runs, prototype work, and simple turning operations, where high precision and automation are not critical.
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