FOB Price
Obtenir le dernier prix0 ~ 200000
|Minimum Order
Localité:
-
Prix de commande minimale:
-
Commande minimale:
1 Set
Packaging Detail:
seaworthy packing
Delivery Time:
60 Days
Supplying Ability:
100 Set per Year
Payment Type:
T/T, L/C
Personne àcontacter Mr. Steven
25F,Building3,NO.277,Zheqiao Road,Shanghai,China, Shanghai, Shanghai
Â
1.The application and usage OF Slipping Horizontal Copper Wire Drawing Machine (heavy-duty):
The machine is used for drawing copper rod from Φ8.*0mm to Φ1.**4mm,which can be continuous annealed before the outlet wire is wound by the dual take-up device or coil machine.
Â
2.Main features OF Slipping Horizontal Copper Wire Drawing Machine (heavy-duty):
1)The drawing blocks rank in a horizontal row, and the cantilevels of all die holders are very short and in equall length.
2) The surface of drawing blocks is coated with tungsten carbide powder, which is strong in hardness and wear proof, having long working life.
3) Main drawing machine and finish capstan are driven separately, and all the diescan be changed conveniently and easily.
4) Continuously dual takeup, automatic reel-change can be done at more than *9% efficiency.
5) Driven by DC motor, the imported PLC and touch screen(Siemens or Preface),which is convenient for the operator to set and display the parameter on the touch screen.
Â
3.Main technical parameter OF Slipping Horizontal Copper Wire Drawing Machine (heavy-duty) LHD**0/*1:
Â
Inlet wire |
Φ8mm |
Outlet wire |
Φ1.**4.0mm |
Max speed of drawing |
*2m/s |
Drawing block size |
Φ**0mm |
Max number of passes |
*1 |
Die dimension |
Φ*8×*5 |
Capacity of the accumulator |
7m |
Dual-reel spooling bobbin size |
PND***-PND**0 |
Main motor power |
**0KW(DC) |
Power for dual take-up |
*0KW(DC 2) |
Total powder |
**0kw |
annealing type |
online annealing |
Â
4.OTher models of Slipping Horizontal Copper Wire Drawing Machine (heavy-duty):
Â
 Model |
Max. drawing dies |
Inlet wire Dia. (mm) |
Outlet wire Dia. (mm) |
Max. line speed(m/s) |
Drawing capstan Dia. (mm) |
Main motor power (KW) |
Total power (KW) |
LHD**0/*3 |
*3 |
8.0 |
1.**4.0 |
*5 |
**0 |
**0 |
**0 |
LHD**0/*1 |
*1 |
8.0 |
1.**4.0 |
*2 |
**0 |
**0 |
**0 |
LHD**0/9 |
9 |
8.0 |
2.**4.0 |
*8 |
**0 |
**0 |
**5 |
Â