|
Item |
Unit |
CW6180 |
CW61100 |
CW61125 |
CW61140 |
CW61160 |
|
Max dia.swing over bed |
mm |
800 |
1000 |
1250 |
1400 |
1600 |
|
Max dia.swing over cross slide |
mm |
480 |
680 |
800 |
1080 |
1250 |
|
Max.length of work-piece |
mm |
1500 |
1500 |
1500 |
1500 |
1500 |
|
Maximum machining length |
mm |
1250 |
1250 |
1250 |
1250 |
1250 |
|
Width of bed |
mm |
600/650 |
600/650 |
600/650 |
600/650 |
600/650 |
|
Spindle bore |
mm |
104 |
104 |
104 |
104 |
104 |
|
Spindle bore taper |
mm |
Metric:120/1:20 |
Metric:120/1:20 |
Metric:120/1:20 |
Metric:120/1:20 |
Metric:120/1:20 |
|
Spindle nose |
C11 |
C11 |
C11 |
C11 |
C11 |
|
|
Power of spindle motor |
mm |
15 |
15 |
15 |
22 |
22 |
|
Range of spindle speed |
mm |
Three gears frequency conversion L: 25-100; M: 80-260; H: 240-700 |
||||
|
Traverse of cross slide |
mm |
420 |
520 |
650 |
720 |
820 |
|
Z axis feed grade /range |
mm/r |
32/0.095-1.4 |
32/0.095-1.4 |
32/0.095-1.4 |
32/0.095-1.4 |
32/0.095-1.4 |
|
X axis feed grade /range |
mm/r |
32/0.042-0.7 |
32/0.042-0.7 |
32/0.042-0.7 |
32/0.042-0.7 |
32/0.042-0.7 |
|
Carriage raid traverse speed |
mm/min |
3740 |
3740 |
3740 |
3740 |
3740 |
|
Cross slid raid traverse speed |
mm/min |
1870 |
1870 |
1870 |
1870 |
1870 |
|
Metric thread grade/range |
mm |
22/1-15 |
22/1-15 |
22/1-15 |
22/1-15 |
22/1-15 |
|
Inch thread grade/range |
T.P.I |
26/14-1 |
26/14-1 |
26/14-1 |
26/14-1 |
26/14-1 |
|
Max. Traverse of turret |
mm |
205 |
205 |
205 |
205 |
205 |
|
Tool section size |
mm |
32×32/40×40 |
32×32/40×40 |
32×32/40×40 |
32×32/40×40 |
32×32/40×40 |
|
Tailstock quill travel |
mm |
250 |
250 |
250 |
250 |
250 |
|
Tailstock quill Dia. |
mm |
100 |
100 |
100 |
100 |
100 |
|
Tailstock quill taper |
mm |
Morse NO.6 |
Morse NO.6 |
Morse NO.6 |
Morse NO.6 |
Morse NO.6 |
|
Chuck |
Φ400 |
Φ400 |
Φ400 |
Φ400 |
Φ400 |
|
|
Overall dimensions(L*W*H) |
mm |
3700×1750×1500 |
3700×1800×1600 |
3700×1850×1650 |
3700×1900×1800 |
3700×2050×1900 |
|
Machine weight |
T |
5.2/5.9 |
5.5/6.2 |
5.8/6.5 |
6.1/7 |
6.5/7.2 |


Introduction
The Conventional Lathe CW61100 600mm is a basic equipment widely used in metal processing, machinery manufacturing and other industries. Its main function is to complete turning, milling, drilling, threading and other processes through the relative movement of the rotating workpiece and the cutting tool.
Parts
Spindle system
The spindle is one of the core components of a traditional lathe, responsible for driving the workpiece to rotate. The high-precision spindle structure can ensure a stable and uniform rotation speed during the processing, thereby improving the processing accuracy and efficiency. The spindle is usually made of high-quality steel, has high strength and wear resistance, and can withstand high-speed rotation at high speeds. The spindle of a lathe generally supports a speed range of 600 to 3000 rpm, and users can adjust the rotation speed according to different processing requirements. Its structural design ensures low noise and vibration, further enhancing the processing accuracy.
Guide rail system
The guide rail is another key component of a traditional lathe, which supports the movement of the worktable. The guide rail is designed with high-strength alloy steel, which has strong wear resistance and corrosion resistance after precision machining and surface treatment. The surface of the guide rail is usually precision ground or nitrided to give it a very high surface hardness, ensuring that it can maintain accuracy during long-term use. In a high-load working environment, the guide rail system can effectively reduce the motion error and precision loss of the machine tool and extend its service life.
Tool holder system
The tool holder system is a part of a traditional lathe used to install and adjust the tool. It is usually made of high-strength cast iron, ensuring that it has sufficient stability and durability during high-speed cutting. The tool holder system has a multi-position cutting tool installation function, which can quickly replace different types of tools according to processing needs. In addition, the angle and height of the tool holder can also be precisely adjusted to meet the processing needs of workpieces of different shapes and sizes. The precise adjustment of the tool holder can improve the stability of tool cutting and reduce the error during workpiece processing.
Workbench and bed
The workbench is the part used to fix the workpiece and support the movement of the tool during the entire processing process. The workbench of a traditional lathe is usually made of high-rigidity cast iron material, and the surface is treated to reduce friction and improve stability. The workbench is connected to the bed through a precision sliding device, supporting precise lateral and longitudinal movement.
Feed system
The feed system is an important component that determines the cutting depth and feed speed of the tool. It achieves precise processing of the workpiece by controlling the longitudinal, lateral or vertical movement of the workbench or tool holder. The feed system is driven by a servo motor and a precision screw, which can maintain a steady feed rate under a variety of processing conditions. A high-quality feed system can ensure a stable machining process, reduce vibration and errors, and improve machining accuracy.
Control system
The control system is an important part of a traditional lathe, responsible for precise adjustment and automatic control of various functions of the lathe.
FAQ
Q: What is the maximum swing diameter of the CW61100 lathe?
A: The maximum swing diameter of the CW61100 lathe is 600mm, which refers to the largest diameter of the workpiece that can be accommodated when mounted on the machine.
Q: What is the maximum machining length of the CW61100 lathe?
A: The CW61100 lathe has a 1000mm maximum machining length, allowing for the turning of longer workpieces. This length makes it ideal for various medium-sized machining tasks.
Q: What is the spindle bore diameter of the CW61100 lathe?
A: The CW61100 lathe is equipped with a 52mm spindle bore, providing enough space for larger workpieces and ensuring stable cutting operations with sufficient tool clearance.
Q: What kind of drive system does the CW61100 lathe use?
A: The CW61100 lathe uses a gear drive system, which provides stable power transmission and allows for better torque, improving cutting efficiency, especially when handling larger workpieces.
Q: What materials is the CW61100 lathe bed made of?
A: The bed of the CW61100 lathe is made of high-quality cast iron, known for its excellent vibration damping properties and superior stability, ensuring high-precision machining even during heavy-duty operations.
Q: What is the feed rate range of the CW61100 lathe?
A: The CW61100 lathe offers a variable feed rate range from 0.1mm/min to 2mm/min, allowing for precise and versatile control of the cutting process based on the requirements of different materials and operations.
Q: Does the CW61100 lathe support both manual and automatic operation?
A: Yes, the CW61100 lathe supports both manual and automatic operation, making it versatile for various production environments. The operator can manually control the movements for precision work or use automatic controls for higher efficiency in repetitive tasks.
Q: What is the power rating of the CW61100 lathe motor?
A: The CW61100 lathe is equipped with a 7.5 kW motor, providing sufficient power for medium to heavy-duty machining tasks. This motor power ensures reliable and stable performance during high-speed and high-load operations.
Q: What safety features are included in the CW61100 lathe?
A: The CW61100 lathe includes several safety features such as emergency stop buttons, safety covers, and overload protection to prevent accidents and enhance the safety of operators during use.
Q: What types of tooling can be used with the CW61100 lathe?
A: The CW61100 lathe is compatible with a wide variety of tooling options, including turning tools, drill bits, and threading tools. This versatility allows the lathe to handle various types of workpieces and machining processes like facing, turning, and threading.
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