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Brand Name : QIPANG
Model Number : Roll Traverse Drive
Certification : CE
Place of Origin : Shanghai, China
MOQ : 1
Price : RMB/USD
Payment Terms : T/T, Western Union, D/A, D/P, T/T, MoneyGram
Supply Ability : 10 units per month
Delivery Time : 7-15 working days
Packaging Details : wooden boxes
Application : Coiling wire
Wire material : Steel wire
Model : GP30
Weight : 15kg
Product name : Roll Traverse Drive
Keyword : Roll Rings Wire
Length : 300 mm
Roll Rings Wire, Roll Traverse Drive, Rolling Ring Traverse Drive Box, GP30 Traverse Unit
The GP series polished rod cable proves its operation from the front. The high quality materials and assembly quality used in the manufacturing process can compete freely with similar equipment made in Europe.
The Rolling Ring Drive unit on the smooth shaft is designed to evenly lay cables and other winding products on coils and coils on Spools of any width.
The device maintains a constant step when winding the product from the first layer to the last layer. This winding allows you to increase the packing density and improve the display of the finished product.
The device of this type is simple and reliable in operation, does not require special maintenance and has a simple mechanism for adjusting the stages of lamination.

The main advantages of the traverse unit drive principle:
1.Highest possible efficiency due to the fact that the gear and the payload are completely supported by roller bearings
2.Automatic traversing movement
3.Variable traversing speeds ranging from 0 m/s to a maximum of 4.2 m/s; can also be separately set for the two directions with constant rotation of the shaft
4.Variable traversing width and traversing position
5.High dynamics at the points of reversal
6.Can be released from the shaft
7.Low operating costs
8.Low maintenance requirements
The principle of operation of the rolling ring drive is based on the transformation of the rotational movement of the drive shaft into a linear movement of the traverse linear drive on a smooth shaft in two directions using the interaction of friction forces between the drive shaft and the collars of the ball bearing mechanism for switching the stroke of the roll-ring traverse drive.

Rolling ring drive configuration diagram:
| Model | H1 | H4 | H6 | H7 | L1 | L3 | L5 | L6 | Md |
| GP3-15 | 63 | 33 | 12 | 34 | 99 | 53 | - | 36 | 4-M5 |
| GP3-20 | 84 | 42 | 20 | 40 | 120 | 68 | 25-60 | 40 | 4-M6 |
| GP3-22 | 84 | 42 | 20 | 40 | 120 | 68 | 25-60 | 40 | 4-M6 |
| GP3-30 | 104 | 62 | 20 | 46 | 130 | 85 | 25-60 | 60 | 4-M6 |
| GP3-40 | 130 | 80 | 28 | 56 | 182 | 112 | 30-62 | 70 | 4-M8 |
| GP3-50 | 162 | 110 | 35 | 70 | 220 | 132 | 41-95 | 102 | 4-M8 |
| GP3-60 | 182 | 110 | 35 | 70 | 240 | ||||
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Smooth Shaft Steel Coil Wire Roll Traverse Drive , Rolling Ring Drive Images |