Pull-off machine with adjustable pressure for rubber conveyor belt production
A technology for conveyor belts and tractors, which is applied in the field of tractors and can solve problems such as non-adjustable pressure
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Embodiment 1
[0030] Embodiment one, see figure 1 , a non-slip traction machine for rubber conveyor belt production, including a frame 1 and a traction roller drive motor 4.
[0031] The frame 1 is provided with two traction rollers 2 . The two traction rollers 2 are respectively a lower traction roller 22 and an upper traction roller 21 . The upper pulling roller 21 is located above the lower pulling roller 22 . Both ends of the upper traction roller 21 are liftably connected on the frame 1 by a lifting seat 6 . Lifting seat 6 is slidably connected with frame 1. The frame 1 is also provided with a lifting seat drive mechanism 7 for driving the lifting seat to go up and down. The frame 1 is also provided with a support seat plate 11 .
[0032] The traction roller driving motor 4 is provided with a speed reducer 5 . The casing of traction roller drive motor 4 is fixed together with the casing of speed reducer 5. The motor shaft of the traction roller drive motor 4 is connected togethe...
Embodiment 2
[0037] Embodiment two, the difference with embodiment one is:
[0038] see Figure 4 , also includes a power display mechanism 9. The power display mechanism 9 includes a light source 92 and a projection board 97 . A light source 92 is installed on the driving side of the chassis 1 through a heat sink 91 . A projection board 97 is mounted on the operating side of the frame. The light source 92 irradiates toward the projection board 97 . The light source 92 is a green laser diode. When the traction roller driving motor 4 has power, the light source 92 emits light and projects onto the projection board 97 .
[0039] see Figure 5 , The power display mechanism 9 also includes a heating structure 93 .
[0040] The radiator 91 is provided with a light source installation hole 911 , a heating structure installation hole 912 , a cooling fin 913 and a radiator installation hole 914 which are connected together. The light source installation hole 911 is a round hole. The heati...
Embodiment 3
[0045] Embodiment three, the difference with embodiment two is:
[0046] see Figure 6 , one end of the heat conducting sleeve 934 and one end of the heat sink 91 are sealed against the sealing plate 94 , that is, both the heat conducting sleeve and the heat sink can slide relative to the sealing plate 94 . The other end of the heat conducting sleeve 934 and the other end of the radiator 91 are sealed and connected together through the annular liquid storage bag 95 . The annular liquid storage bag 95 is filled with heat-insulating liquid, and the heat-insulating liquid makes the annular liquid storage bag 95 in an elastically expanded state. When the temperature is below 25° C., a sealed cavity 96 is formed among the heat conducting sleeve 934 , the sealing plate 94 , the radiator 91 and the annular liquid storage bag 95 . The sealed cavity 96 communicates with the annular liquid storage bag 95 .
[0047] When in use, the annular liquid storage bag 95 is positioned above th...
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