1. The structure of the Electric Punch Press features high rigidity, high precision, and a wide tabletop. It is welded with steel plates and treated with a process to eliminate internal stress in the punch press.
2. The clutch brake device is highly sensitive, coupled with internationally top-notch dual solenoid valves and overload protection devices, to ensure the accuracy and safety of the operation and stop of the punch slider.
3. Designed with a closed electrical circuit, it can be paired with any automation equipment.
4. Electric Punch Press fully intelligent PLC control, electric mold adjustment, overload hydraulic protection; Variable frequency adjustment and automatic oil cut-off alarm device; Electronic digital display module with high memory function, optional hydraulic locking and lifting automatic device.




|
Item |
DPC-110 |
DPC-160 |
|||
|
Model |
V |
H |
V |
H |
|
|
Capacity |
Ton |
110 |
160 |
||
|
Rated Tonnage Point |
mm |
5 |
3 |
6 |
3 |
|
Stroke |
mm |
180 |
110 |
200 |
130 |
|
Stable speed |
s.p.m |
35~65 |
50~100 |
30~55 |
40~85 |
|
Die Height |
mm |
400 |
435 |
450 |
485 |
|
Slide Adjustment |
mm |
100 |
100 |
||
|
Slide Area |
mm |
1400×500×70 |
1600×550×70 |
||
|
Bolster Area |
mm |
1800×650×130 |
2000×760×150 |
||
|
Main Motor |
kw.p |
11×4 |
15×4 |
||
|
Air Pressure |
kg/cm² |
5~6 |
5~6 |
||
|
Presses Precision |
Ton |
CNS(Jls)1class |
|||
|
Die Cushion |
Two plate ﹠two cylinders |
||||
|
Capacity |
Ton |
3.6×2 |
6.3×2 |
||
|
Stroke |
mm |
70 |
70 |
||
|
Die Cushion work part dimension |
mm |
350×235×2 |
410×260×2 |
||
|
Presses Dimension |
mm |
2250×1945×3040 |
2460×2270×3734 |
||
|
Item |
DPC-200 |
DPC-250 |
|||
|
Model |
V |
H |
V |
H |
|
|
Capacity |
Ton |
200 |
250 |
||
|
Rated Tonnage Point |
mm |
6 |
3 |
7 |
3.5 |
|
Stroke |
mm |
250 |
150 |
280 |
170 |
|
Stable speed |
s.p.m |
25~45 |
35~70 |
20~35 |
30~60 |
|
Die Height |
mm |
500 |
550 |
550 |
605 |
|
Slide Adjustment |
mm |
120 |
120 |
||
|
Slide Area |
mm |
1850×650×95 |
2100×700×95 |
||
|
Bolster Area |
mm |
2400×840×170 |
2700×900×170 |
||
|
Main Motor |
kw.p |
18.5×4 |
22×4 |
||
|
Air Pressure |
kg/cm² |
5~6 |
5~6 |
||
|
Presses Precision |
Ton |
CNS(Jls)1class |
|||
|
Die Cushion |
Two plate ﹠two cylinders |
||||
|
Capacity |
Ton |
10×2 |
14×2 |
||
|
Stroke |
mm |
80 |
100 |
||
|
Die Cushion work part dimension |
mm |
540×350×2 |
640×470×2 |
||
|
Presses Dimension |
mm |
2250×1945×3040 |
2460×2270×3734 |
||
|
Item |
DPC-315 |
||
|
Model |
V |
H |
|
|
Capacity |
Ton |
315 |
|
|
Rated Tonnage Point |
mm |
8 |
4 |
|
Stroke |
mm |
282 |
170 |
|
Stable speed |
s.p.m |
20~35 |
30~60 |
|
Die Height |
mm |
550 |
605 |
|
Slide Adjustment |
mm |
120 |
|
|
Slide Area |
mm |
2100×700×95 |
|
|
Bolster Area |
mm |
2700×920×190 |
|
|
Main Motor |
kw.p |
30×4 |
|
|
Air Pressure |
kg/cm² |
5~6 |
|
|
Presses Precision |
Ton |
CNS(Jls)1class |
|
|
Die Cushion |
Two plate ﹠two cylinders |
||
|
Capacity |
Ton |
14×2 |
|
|
Stroke |
mm |
100 |
|
|
Die Cushion work part dimension |
mm |
640×470×2 |
|
|
Presses Dimension |
mm |
3275×2975×4485 |
|
|
Standard Accessories |
● |
|
Hydraulic Over-load Protector |
● |
|
Manual Lubrication System |
● |
|
Frequency Inverter |
● |
|
Slide Adjust Device |
● |
|
Die Height Indicator |
● |
|
Balance Device |
● |
|
Rotary Cam Switch |
● |
|
Crank Angle Indicator |
● |
|
Electric Stroke Counter |
● |
|
Air source Recepatacle |
● |
|
Against Over-run Safety Device |
● |
|
Maintenance Tool Box |
● |
|
Operation Manual |
● |
|
Optional Accessories |
|
|
Standard Accessories |
● |
|
Electrical Automatic Lubrication System |
● |
|
Pneumatic Die Cusion Device |
● |
|
Presrt Counter |
● |
|
Presrt Counter |
● |
|
Foot Switch |
● |
|
Quick Die Change Device (Die Lifter,Clamp And Die Arm shift mode) |
● |
|
Slide Knock-out Device |
● |
|
Misfeed Detection Consent |
● |
|
Power Supply |
● |
|
Anti-vibration Press Mount |
● |
|
Photo-electronic Safety Device |
● |
|
Feeder |
● |
|
Rack |
● |
|
Leveler |
● |
|
Machanism Hand |
● |
|
Die Room Light |
● |
Bending robot under intelligent manufacturing
In the wave of intelligent manufacturing, bending robots, as key equipment on automated production lines, are changing the face of traditional manufacturing at an unprecedented speed. It not only greatly improves production efficiency and accuracy, but also reduces labor costs, providing strong technical support for the transformation and upgrading of enterprises. This article will delve into the technical principles, application advantages, development trends, and profound impact on the future manufacturing industry of robotic bending machines under the background of intelligent manufacturing.



The traditional bending in the sheet metal industry needs to solve the following problems:
(1) Manufacturing problem: unable to achieve multi variety, small batch, and fast switching;
(2) The problem of low precision in parts: The sheet metal industry has low precision in bending high-precision parts, resulting in unstable quality;
(3) The problem of difficult employment for enterprises: the scarcity of sheet metal bending operators and the high labor intensity of workers;
(4) Comprehensive issues: personnel costs, safety hazards, process layout, management and operation.
The above problems can be solved by selecting an intelligent robotic bending unit, including a CNC bending machine, robotic arm and guide rail, supporting loading station, magnetic sheet separation device, centering positioning worktable, sheet flipping mechanism, loading gripper, finished product stacking, offline programming software, parametric programming software, related bending software for secondary development, and extended services.



Factory display

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