The CNC Turning process is a digital manufacturing process that is implemented by computer numerically controlled (CNC) machines. This process is used to produce parts with complex shapes, and the manufacturing process involves multiple steps. The following are the detailed steps of the general CNC Turning process:Design: First, you need to design a CAD model of the parts you want to produce. A CAD model is a three-dimensional image created using computer-aided design software that can describe the shape, size, and features of a part.Programming: Next, you need to convert the CAD model into G-code, which is a type of computer instruction that controls the movement and operation of the CNC machine. G Code can be written manually or generated automatically using CAM software.Prepare the machine: Before you start machining, you need to check and prepare the CNC machine. This includes checking the machine's coordinate system, setting tools and cutters, and setting parameters such as the machine's speed and feed speed.Processing: After the machine is ready, the processing can begin. The machining process usually consists of multiple steps, such as roughing, finishing and drilling. At each step, the CNC machine moves tools and workpieces according to instructions in the G code to achieve the desired cutting operation.Inspection: After processing, the parts need to be inspected to ensure that they meet the design requirements and specifications. Inspection can be carried out by using measuring instruments, templates and other testing tools.Polishing and surface treatment: Parts can be polished and surface treated if needed to improve their surface finish and corrosion resistance. This can be done through the use of abrasives, chemicals and other tools.In short, the CNC Turning process is a high-precision, high-efficiency manufacturing process suitable for the production of parts with complex shapes. Through the control of CAD model and G code, the precise control of machine motion can be realized, so as to achieve high-precision parts processing.
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Looking for Coilers with other Wire Diameter?
Model
Axes
Wire Ø
(mm)Max OD
(mm)Infeed Speed
(m/min)Model Dimensions
W x D x H (mm)Power
(kW)Weight
(kg)Wire Payoff
Capacity (kg)
C416
4
0.15Â -Â 1.60
30
120
840 x 1040 x 1670
5.0
600
100
C435
4
1.20Â -Â 3.50
65
120
1690 x 1040 x 1970
10.5
1250
300
C440
4
1.60Â -Â 4.00
90
90
1690 x 1350 x 1970
15.1
2500
400
C540
5
1.60Â -Â 4.00
90
90
1850 x 1700 x 2000
17.8
2850
400
C560
5
2.50Â -Â 6.00
110
90
2150 x 1400 x 2400
25.1
3800
400
C660
6
2.50Â -Â 6.00
120
90
2350 x 1420 x 2100
27.8
4000
400
C580
5
3.00Â -Â 8.00
120
80
2320 x 1440 x 2400
46.2
7000
1000
C690
6
4.00Â -Â 9.00
140
65
2150 x 1800 x 2450
53.7
7500
1000
C5120
5
6.00 - 12.00
150
65
2690 x 1790 x 2490
62.5
12000
2000
C6200
6
10.00 - 20.00
280
45
4500 x 3000 x 3000
112.5
25000
2000
Visit us @ www.YFS-coilers.com
YFSpring Coilers C416 - 4 Servos Wire Diameter 0.15 - 1.60 mm - Coil Spring Machine
Model NO.: YFS - C416
Axes / Servos: 4
Wire Diameter: 0.15 - 1.60 mm
Trademark: YFSpring Coilers
Transport Package: Fumigated Plywood Crate
Specification: Dimensions (WDH) 840 x 1040 x 1670 mm
Origin: China
HS Code: 84633000