A special bi-directional yarn spouting device for pole and tower winding machines
A winding machine and pole tower technology, which is applied in the field of two-way yarn spouting devices for pole and tower winding machines, and can solve problems such as affecting winding efficiency and uneven yarn distribution
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specific Embodiment approach 1
[0011] Specific implementation mode one: combine Figure 1 to Figure 13 Describe this embodiment, a special two-way yarn delivery device for a tower winding machine in this embodiment includes a drive device 1, a rear yarn gathering device 2, a rotary device 3, a two-way yarn delivery device 4, a box body 6 and a plurality of rotary support devices 5 , the drive device 1 is installed on the upper part of the box body 6, the rotary device 3 is installed on the lower part of the box body 6, and the rotary device 3 is located below the drive device 1, and a plurality of rotary support devices 5 are evenly distributed on the peripheral outer wall of the rotary device 3 And be installed on the box body 6, the rear yarn gathering device 2 and the two-way yarn sending device 4 are all installed on the box body 6, and the rear yarn gathering device 2 and the two-way yarn telling device 4 are distributed at the left and right ends of the rotary device 3, the described The rear yarn gat...
specific Embodiment approach 2
[0012] Specific implementation mode two: combination Figure 1 to Figure 3 and Figure 9 to Figure 11 Describe this embodiment, the two-way spinning nozzle 4-2 of this embodiment comprises spinning arc 4-2-1, groove-shaped connecting frame 4-2-2 and connecting rod 4-2-3, and spinning arc 4-2 The two ends of -1 are connected with the opening end of the trough-shaped connecting frame 4-2-2, and one end of the connecting rod 4-2-3 is connected with the middle position of the silk-spinning arc 4-2-1, and the connecting rod 4-2-3 The other end of the other end is connected with the bottom end of grooved connecting frame 4-2-2. With such arrangement, when the wound yarn piece passes through the spinning arc 4-2-1, the winding fiber will fall on the surface of the mold in the form closest to the outer circle of the mold according to the unique arc of the spinning arc. Because there are spinning arcs 4-2-1 on both sides of the two-way spinning nozzle 4-2, the winding fibers can fall...
specific Embodiment approach 3
[0013] Specific implementation mode three: combination Figure 1 to Figure 5 Describe this embodiment, the driving device 1 of this embodiment includes servomotor 1-1, reducer 1-2, reducer fixed plate 1-3, first synchronous pulley 1-4, bushing 1-5 and synchronous belt 1-6, the reducer fixing plate 1-3 is fixedly installed on the box body 6, the servo motor 1-1 is connected with the reducer 1-2, the reducer motor 1-2 is connected with the reducer fixing plate 1-3, the first synchronization The belt pulley 1-4 is connected on the output shaft of the reduction motor 1-2 through the bushing 1-5, and the synchronous belt 1-6 is installed on the first synchronous pulley 1-4. So set, when the servo motor 1-1 rotates, it drives the output shaft of the reducer 1-2 to rotate accordingly, thereby driving the first synchronous pulley 1-4 of the output shaft installed on the reducer motor 1-2 and the synchronous belt on it 1-6 turns. In addition, the position of the fixed plate of the re...
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