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An automatic car license plate stamping line refers to a specialized production system designed to automatically manufacture car license plates. This line typically includes various machines and processes to efficiently stamp, shape, and finish metal plates that are used for vehicle registration. Here are the key components and processes involved in such a system:
Material Handling: The line often starts with the feeding of raw material, usually metal sheets (such as aluminum or steel), which are used to create the license plates.
The decoiler straightener is used to unwind and straighten the metal sheets before they enter the stamping process. This is an essential step to ensure that the metal sheets are flat and free from any bends or twists, which can affect the quality and accuracy of the stamped license plates.
The servo feeder is responsible for accurately feeding the straightened metal sheets into the stamping press at precise intervals. This ensures that each plate is stamped correctly and consistently.
Stamping Presses: These machines are responsible for stamping the license plate design, including numbers, letters, and any other required markings. This can be done through various methods, such as hydraulic or mechanical stamping.
Die Sets: Specialized dies are used to create the specific shapes and designs of the license plates. These dies can be customized for different plate formats based on regional regulations.
Cutting and Trimming: After stamping, the plates may need to be cut to size and trimmed to ensure they meet specific dimensions.
Surface Treatment: This may involve processes like coating, painting, or anodizing to enhance the durability and appearance of the license plates.
Quality Control: Automated systems often include inspection stations to ensure the quality and accuracy of the stamped plates, checking for defects or errors in printing.
Packaging and Delivery: Once manufactured, the plates are typically packaged for distribution to vehicle registration authorities or directly to customers.
Such stamping lines are primarily used by government agencies, private manufacturers, or companies involved in vehicle registration and licensing systems. They are integral to the automotive industry, ensuring that vehicles are properly identified and registered.
Overall, an automatic car license plate stamping line is a critical piece of infrastructure that supports vehicle regulation and identification in many countries.
Application
Stamping includes a variety of sheet-metal forming manufacturing processes, such as punching using a machine press or stamping press, blanking, embossing, bending, flanging, and coining. This could be a single stage operation where every stroke of the press produce the desired form on the sheet metal part, or could occur through a series of stages. The process is usually carried out on sheet metal.
The configuration of metal sheet stamping line.
Step-1: Uncoiler straightener machine, Loading coil and uncoilling coil and level the strips.
Step-2: Nc Servo Feeder machine, Feed coil to press machine.
Step-3: Power press machine with the moulds,pressing to the end product.
High precision power press machine is suitable for all kinds of metal sheet stamping, including the hardware parts, home appliances, furniture hardware, motorcycle accessories, mobile phone accessories, computer accessories and so on.
Model
|
APA-15B
|
APA-25B
|
APA-35B
|
APA-45B
|
APA-60B
|
APA-110B
|
|||||
Type
|
V
|
V
|
H
|
V
|
H
|
V
|
H
|
V
|
H
|
V
|
H
|
Capacity(ton)
|
15
|
25
|
35
|
45
|
60
|
110
|
|||||
Rated Tonnage point (mm)
|
1
|
3.2
|
1.6
|
3.2
|
1.6
|
3.2
|
1.6
|
4
|
2
|
6
|
3
|
Stroke per minute(spm)
|
120-180
|
60-140
|
130-200
|
40-120
|
110-180
|
40-100
|
110-150
|
35~90
|
80~120
|
35~60
|
60~90
|
Stable speed(spm)
|
130
|
110
|
85
|
75
|
65
|
50
|
|||||
Stroke(mm)
|
60
|
70
|
30
|
70
|
40
|
80
|
50
|
120
|
60
|
180
|
80
|
Die height(mm)
|
200
|
195
|
215
|
220
|
235
|
250
|
265
|
310
|
340
|
360
|
410
|
Slide adjustment(mm)
|
50
|
50
|
55
|
60
|
75
|
80
|
|||||
Slide area(mm)
|
300*230*50
|
300*230*50
|
360*250*50
|
400*300*60
|
500*360*70
|
650*470*80
|
|||||
Bolster area(mm)
|
680*300*70
|
680*300*70
|
800*400*70
|
850*440*80
|
900*500*80
|
1150*600*110
|
|||||
Shank hole(mm)
|
Ф38.1
|
Ф38.1
|
Ф38.1
|
Ф38.1
|
Ф50
|
Ф50
|
|||||
Main motor(KW*P)
|
2.2*6
|
VS3.7*4
|
VS3.7*4
|
VS 5.5*4
|
VS 5.5*4
|
VS 11*4
|
|||||
Slide adjusting device
|
Manual
|
||||||||||
Air pressure(kg/cm2)
|
6
|
||||||||||
Press precision
|
GB/JIS first class
|
||||||||||
Press dimension
|
1236*820*1920
|
1280*850*2200
|
1600*950*2500
|
1600*1000*2800
|
1900*1300*3200
|
||||||
Press weight(ton)
|
1.8
|
2.1
|
3
|
3.8
|
5.6
|
9.6
|
|||||
Die cushion capacity(ton)
|
-
|
-
|
2.3
|
2.3
|
3.6
|
6.3
|
|||||
Stroke of die cushion(mm)
|
-
|
-
|
50
|
50
|
70
|
80
|
|||||
Effective area of die cushion(mm)
|
-
|
-
|
300*230
|
300*230
|
350*300
|
500*350
|
Model
|
APA-160B
|
APA-200B
|
APA-260B
|
|||
Type
|
V
|
H
|
V
|
H
|
V
|
H
|
Capacity(ton)
|
160
|
200
|
260
|
|||
Rated Tonnage point (mm)
|
6
|
3
|
6
|
3
|
7
|
3.5
|
Stroke per minute(spm)
|
20~50
|
40~70
|
20-50
|
50-70
|
20-40
|
40-50
|
Stable speed(spm)
|
35
|
35
|
30
|
|||
Stroke(mm)
|
200
|
90
|
200
|
100
|
250
|
150
|
Die height(mm)
|
460
|
510
|
460
|
510
|
500
|
550
|
Slide adjustment(mm)
|
100
|
110
|
120
|
|||
Slide area(mm)
|
700 *550*90
|
850*630*90
|
950*700*100
|
|||
Bolster area(mm)
|
1250*800*140
|
1400*820*160
|
1500*840*180
|
|||
Shank hole(mm)
|
Ф65
|
Ф65
|
Ф65
|
|||
Main motor(KW*P)
|
VS 15*4
|
VS18.5*4
|
VS22*4
|
|||
Slide adjusting device
|
Electrical driving
|
|||||
Air pressure(kg/cm2)
|
6
|
|||||
Press precision
|
GB/JIS first class
|
|||||
Press dimension
|
2300*1400*3800
|
2615*1690*4075
|
2780*1850*4470
|
|||
Press weight(ton)
|
16
|
23
|
32
|
|||
Die cushion capacity(ton)
|
10
|
14
|
14
|
|||
Stroke of die cushion(mm)
|
80
|
100
|
100
|
|||
Effective area of die cushion(mm)
|
650*420
|
710*480
|
810*810*480480 |