Specification conveying mechanism

By designing the conveying mechanism of the adjustable upper clamping belt group and the lower clamping belt group, the problem that the existing device cannot adapt to instruction manuals of different thicknesses is solved, and a packaging effect with high adaptability and easy operation is achieved.

CN223421017UActive Publication Date: 2025-10-10GUANGZHOU PHARMA INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202422685275.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-10-10
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The existing instruction manual conveying device cannot adapt to instruction manuals of different thicknesses and has low applicability, resulting in the inability to accurately insert the instruction manuals into the packaging box during the packaging process.

Method used

A conveying mechanism is designed, which includes a paper folding machine, an upper conveyor belt, a lower conveyor belt, an upper clamping belt group and a lower clamping belt group. The height of the driven drive module and the distance between the upper clamping belt group and the lower clamping belt group are adjusted by adjusting the adjustment component to accommodate instruction manuals of different thicknesses.

Benefits of technology

The utility model has high adaptability to instruction manuals of different thicknesses, is easy to operate, and can accurately insert the instruction manuals into the packaging box.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223421017U_ABST
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Abstract

The utility model discloses a specification conveying mechanism which comprises a paper folding machine, an upper conveying belt, a lower conveying belt, an upper clamping and conveying belt set, a lower clamping and conveying belt set and an adjusting assembly, the paper folding machine is used for folding specifications into strip shapes, and the upper conveying belt and the lower conveying belt are connected with the paper folding machine. The upper conveying belt and the lower conveying belt are matched with each other to form a vertical conveying path used for clamping strip-shaped specifications, the upper clamping and conveying belt set and the lower clamping and conveying belt set are connected with the upper conveying belt and the lower conveying belt, and the upper clamping and conveying belt set and the lower clamping and conveying belt set are matched with each other to form a transverse conveying path used for clamping the strip-shaped specifications. The upper clamping and conveying belt set is arranged on the driven driving module, the driven driving module is arranged on the adjusting assembly, the lower clamping and conveying belt set is arranged on the driving driving module, and the adjusting assembly is used for adjusting the height of the driven driving module so as to adjust the distance between the upper clamping and conveying belt set and the lower clamping and conveying belt set. The specification conveying device can convey specifications with different thicknesses, and is high in adaptability and convenient to operate.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging equipment, in particular to an instruction manual conveying mechanism. Background Art

[0002] Accurately inserting the instructions into the box is a critical step in the packaging production process. To achieve this, the existing process involves first folding the instructions into strips or small pieces using a paper folding machine. These strips or small pieces are then transported to the boxing station via an instruction sheet conveyor before being inserted into the box. However, the thickness of instructions varies from product to product, and the existing instruction sheet conveyor cannot accommodate instructions of varying thicknesses, resulting in low applicability. Utility Model Content

[0003] The purpose of the utility model is to overcome the shortcomings of the prior art and provide a brochure conveying mechanism which can convey brochures of different thicknesses, has high adaptability and is easy to operate.

[0004] The utility model is realized by the following technical solutions: a manual conveying mechanism, comprising a paper folding machine, an upper conveying belt, a lower conveying belt, an upper clamping belt group, a lower clamping belt group, and an adjusting component;

[0005] The paper folding machine is used to fold the instruction manual into strips;

[0006] The upper conveyor belt and the lower conveyor belt are connected to the paper folding machine, and the upper conveyor belt and the lower conveyor belt cooperate with each other to form a vertical conveying path for clamping strip-shaped instruction manuals;

[0007] The upper pinch belt group and the lower pinch belt group are connected to the upper conveyor belt and the lower conveyor belt, and the upper pinch belt group and the lower pinch belt group cooperate with each other to form a transverse conveying path for clamping strip-shaped instruction manuals;

[0008] The upper entrainment belt group is arranged on the driven drive module, the driven drive module is arranged on the adjustment component, and the lower entrainment belt group is arranged on the active drive module. The adjustment component is used to adjust the height of the driven drive module to adjust the distance between the upper entrainment belt group and the lower entrainment belt group.

[0009] Furthermore: the adjustment component includes an adjustment side plate and an adjustment eccentric shaft, the driven drive module is connected to the side wall of the adjustment side plate, and the adjustment eccentric shaft and the bottom wall of the adjustment side plate are in contact with each other.

[0010] Further: the upper entrainment belt group includes an upper left entrainment belt and an upper right entrainment belt, and the upper left entrainment belt and the upper right entrainment belt are symmetrically distributed on the left and right; the lower entrainment belt group includes a lower left entrainment belt and a lower right entrainment belt, and the lower left entrainment belt and the lower right entrainment belt are symmetrically distributed on the left and right, and the upper left entrainment belt corresponds to the lower left entrainment belt, and the upper right entrainment belt corresponds to the lower right entrainment belt.

[0011] Further: the driven driving module includes a first driven roller shaft, a second driven roller shaft, a driven tensioning roller shaft, a left first pinching roller, a left second pinching roller, a right first pinching roller, a right second pinching roller, an upper left tensioning roller, and an upper right tensioning roller, the upper left pinching belt is wound around the left first pinching roller, the upper left tensioning roller and the left second pinching roller, the upper right pinching belt is wound around the right first pinching roller, the upper right tensioning roller and the right second pinching roller, and the left first pinching roller and the right first pinching roller are arranged on the first driven roller shaft, the left second pinching roller and the right second pinching roller are arranged on the second driven roller shaft, the upper left tensioning roller and the upper right tensioning roller are arranged on the driven tensioning roller shaft, the first driven roller shaft, the second driven roller shaft and the driven tensioning roller shaft are arranged on the adjusting side plate, and the driven tensioning roller shaft is located between the first driven roller shaft and the second driven roller shaft.

[0012] Furthermore: the upper conveying belt is wound around the upper support roller, the upper conveying roller and the upper tensioning roller, the upper support roller is arranged on the first support roller shaft, the upper conveying roller is arranged on the first driven roller shaft, and the upper conveying roller is located between the left pinching roller and the right pinching roller, and the upper tensioning roller is arranged on the first tensioning roller shaft.

[0013] Furthermore: the active drive module includes a driving chain, a driven chain, an active roller shaft, a first transmission roller shaft, a second transmission roller shaft, a third transmission roller shaft, a transmission tensioning roller shaft, a left third pinch roller, a left fourth pinch roller, a right third pinch roller, a right fourth pinch roller, a left lower tensioning roller, and a right lower tensioning roller. The active roller shaft, the first transmission roller shaft, the second transmission roller shaft, and the third transmission roller shaft are distributed in a parallelogram shape. The active chain is wound around the active roller shaft, the first transmission roller shaft, the second transmission roller shaft, and the third transmission roller shaft through a driving sprocket. The driven chain is wound around the active roller shaft through a transmission sprocket. The lower left pinching belt is wound on the left third pinching roller, the lower left tensioning roller and the left fourth pinching roller, and the lower right pinching belt is wound on the right third pinching roller, the lower right tensioning roller and the right fourth pinching roller, and the left third pinching roller and the right third pinching roller are arranged on the first transmission roller shaft, the left fourth pinching roller and the right fourth pinching roller are arranged on the second transmission roller shaft, the left lower tensioning roller and the right lower tensioning roller are arranged on the transmission tensioning roller shaft, and the transmission tensioning roller shaft is located between the first transmission roller shaft and the second transmission roller shaft.

[0014] Furthermore: the active roller is connected to a motor.

[0015] Furthermore: the lower conveying belt is wound around the lower support roller, the lower conveying roller and the lower tensioning roller, the lower support roller is arranged on the second support roller shaft, the lower conveying roller is arranged on the first transmission roller shaft, and the lower support roller is located between the left three pinching rollers and the right three pinching rollers, and the lower tensioning roller is arranged on the second tensioning roller shaft.

[0016] Furthermore: an auxiliary roller is also included, the auxiliary roller is located above between the upper tensioning roller and the lower tensioning roller, and the auxiliary roller is arranged on an auxiliary roller shaft.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] By setting the driven driving module on the adjusting side plate and the upper clamping belt group on the driven driving module, the bottom wall of the adjusting side plate is in contact with the adjusting eccentric shaft, and the adjusting eccentric shaft is rotated to drive the adjusting side plate to drive the upper clamping belt group to rise and fall, thereby adjusting the distance between the upper clamping belt group and the lower clamping belt group so that the spacing between the two is adapted to the thickness of the instruction manual. The operation is simple and the applicability is high. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a structural diagram of the utility model;

[0020] Figure 2 It is a cross-sectional view of the utility model;

[0021] Figure 3 This is a structural diagram of the driven drive module of the present utility model;

[0022] Figure 4 This is a structural diagram of the active drive module of the present utility model.

[0023] Illustrations: 1-paper folding machine, 2-upper conveyor belt, 3-lower conveyor belt, 4-upper pinching belt group, 5-lower pinching belt group, 6-adjusting assembly, 7-driven drive module, 8-active drive module, 9-adjusting side plate, 10-adjusting eccentric shaft, 11-upper left pinching belt, 12-upper right pinching belt, 13-lower left pinching belt, 14-lower right pinching belt, 15-first driven roller, 16-second driven roller, 17-driven tensioning roller, 18-first left pinching roller, 19-second left pinching roller, 20-first right pinching roller, 21-second right pinching roller, 22-upper left tensioning roller, 23-upper right tensioning roller, 24-upper support roller, 25-upper conveyor roller, 26-upper tensioning roller Tightening roller, 27-first support roller shaft, 28-first tensioning roller shaft, 29-driving chain, 30-driven chain, 31-driving roller shaft, 32-first transmission roller shaft, 33-second transmission roller shaft, 34-third transmission roller shaft, 35-transmission tensioning roller shaft, 36-left three pinching rollers, 37-left four pinching rollers, 38-right three pinching rollers, 39-right four pinching rollers, 40-lower left tensioning roller, 41-lower right tensioning roller, 42-driving sprocket, 43-transmission sprocket, 44-motor, 45-lower support roller, 46-lower conveying roller, 47-lower tensioning roller, 48-second support roller shaft, 49-second tensioning roller shaft, 50-auxiliary roller, 51-auxiliary roller shaft, 52-frame. DETAILED DESCRIPTION

[0024] Figures 1 to 4 This is a schematic structural diagram of an embodiment of a manual conveying mechanism provided by the present invention, comprising a paper folding machine 1, an upper conveying belt 2, a lower conveying belt 3, an upper clamping belt group 4, a lower clamping belt group 5, and an adjustment component 6.

[0025] The paper folding machine 1 is used to fold instruction manuals into strips.

[0026] The upper conveyor belt 2 and the lower conveyor belt 3 are connected to the paper folding machine 1, and the upper conveyor belt 2 and the lower conveyor belt 3 cooperate with each other to form a vertical conveying path for clamping strip-shaped instruction manuals.

[0027] The upper pinch belt group 4 and the lower pinch belt group 5 are connected with the upper conveying belt 2 and the lower conveying belt 3, and the upper pinch belt group 4 and the lower pinch belt group 5 cooperate with each other to form a transverse conveying path for clamping strip-shaped instructions.

[0028] The upper entraining belt group 4 is arranged on the driven drive module 7, the driven drive module 7 is arranged on the adjustment component 6, and the lower entraining belt group 5 is arranged on the active drive module 8. The adjustment component 6 is used to adjust the height of the driven drive module 7 to adjust the distance between the upper entraining belt group 4 and the lower entraining belt group 5.

[0029] The adjustment assembly 6 includes an adjustment side plate 9 and an adjustment eccentric shaft 10 . The driven drive module 7 is connected to the side wall of the adjustment side plate 9 . The adjustment eccentric shaft 10 and the bottom wall of the adjustment side plate 9 are in contact with each other.

[0030] The upper entrainment belt group 4 includes an upper left entrainment belt 11 and an upper right entrainment belt 12, and the upper left entrainment belt 11 and the upper right entrainment belt 12 are symmetrically distributed on the left and right. The lower entrainment belt group 5 includes a lower left entrainment belt 13 and a lower right entrainment belt 14, and the lower left entrainment belt 13 and the lower right entrainment belt 14 are symmetrically distributed on the left and right, and the upper left entrainment belt 11 corresponds to the lower left entrainment belt 13, and the upper right entrainment belt 12 corresponds to the lower right entrainment belt 14.

[0031] The driven drive module 7 includes a first driven roller shaft 15, a second driven roller shaft 16, a driven tensioning roller shaft 17, a left first pinch roller 18, a left second pinch roller 19, a right first pinch roller 20, a right second pinch roller 21, a left upper tensioning roller 22, and a right upper tensioning roller 23. The upper left pinch belt 11 is wound around the left first pinch roller 18, the left upper tensioning roller 22, and the left second pinch roller 19. The upper right pinch belt 12 is wound around the right first pinch roller 20, the right upper tensioning roller 23, and the right second pinch roller 21. , and the left first pinching roller 18 and the right first pinching roller 20 are arranged on the first driven roller shaft 15, the left second pinching roller 19 and the right second pinching roller 21 are arranged on the second driven roller shaft 16, the left upper tensioning roller 22 and the right upper tensioning roller 23 are arranged on the driven tensioning roller shaft 17, the first driven roller shaft 15, the second driven roller shaft 16 and the driven tensioning roller shaft 17 are arranged on the adjusting side plate 9, and the driven tensioning roller shaft 17 is located between the first driven roller shaft 15 and the second driven roller shaft 16.

[0032] The upper conveyor belt 2 is wound around the upper support roller 24, the upper conveyor roller 25 and the upper tensioning roller 26. The upper support roller 24 is arranged on the first support roller shaft 27, the upper conveyor roller 25 is arranged on the first driven roller shaft 15, and the upper conveyor roller 25 is located between the left pinch roller 18 and the right pinch roller 20. The upper tensioning roller 26 is arranged on the first tensioning roller shaft 28.

[0033] The active drive module 8 includes a driving chain 29, a driven chain 30, an active roller 31, a first transmission roller 32, a second transmission roller 33, a third transmission roller 34, a transmission tensioning roller 35, a left third pinch roller 36, a left fourth pinch roller 37, a right third pinch roller 38, a right fourth pinch roller 39, a left lower tensioning roller 40, and a right lower tensioning roller 41. The active roller 31, the first transmission roller 32, the second transmission roller 33 and the third transmission roller 34 are distributed in a parallelogram shape. The active chain 29 is wound around the active roller 31, the first transmission roller 32, the second transmission roller 33 and the third transmission roller 34 through the active sprocket 42. The driven chain 30 is wound around the active roller 31, the first transmission roller 32, the second transmission roller 33 and the third transmission roller 34 through the transmission sprocket 43. It is wound on the active roller shaft 31, the first transmission roller shaft 32, the second transmission roller shaft 33 and the third transmission roller shaft 34, the lower left pinching belt 13 is wound on the left third pinching roller 36, the lower left tensioning roller 40 and the left fourth pinching roller 37, the lower right pinching belt 14 is wound on the right third pinching roller 38, the lower right tensioning roller 41 and the right fourth pinching roller 39, and the left third pinching roller 36 and the right third pinching roller 38 are arranged on the first transmission roller shaft 32, the left fourth pinching roller 37 and the right fourth pinching roller 39 are arranged on the second transmission roller shaft 33, the lower left tensioning roller 40 and the lower right tensioning roller 41 are arranged on the transmission tensioning roller shaft 35, and the transmission tensioning roller shaft 35 is located between the first transmission roller shaft 32 and the second transmission roller shaft 33.

[0034] The active roller shaft 31 is connected to the motor 44 .

[0035] The lower left pinch conveyor belt 13 and the lower right pinch conveyor belt 14 are located between the active chain 29 and the driven chain 30. The active chain 29 and the driven chain 30 are provided with paddles, which rotate synchronously with the lower left pinch conveyor belt 13 and the lower right pinch conveyor belt 14 to enable the paddles to dial the instruction manual.

[0036] The lower conveyor belt 3 is wound around the lower support roller 45, the lower conveying roller 46 and the lower tensioning roller 47. The lower support roller 45 is arranged on the second support roller shaft 48, the lower conveying roller 46 is arranged on the first transmission roller shaft 32, and the lower support roller 45 is located between the left three pinching rollers 36 and the right three pinching rollers 38. The lower tensioning roller 47 is arranged on the second tensioning roller shaft 49.

[0037] The auxiliary roller 50 is located above the upper tensioning roller 26 and the lower tensioning roller 47. The auxiliary roller 50 is arranged on an auxiliary roller shaft 51.

[0038] The first support roller 27 , the second support roller 48 , the first tensioning roller 28 , the second tensioning roller 49 , the auxiliary roller 51 , the active roller 31 , the first transmission roller 32 , the second transmission roller 33 , and the third transmission roller 34 are respectively connected to the frame 52 .

[0039] During operation, the paper folding machine 1 folds the instruction manual into strips, and the strip-shaped instruction manual enters between the upper conveyor belt 2 and the lower conveyor belt 3, and is clamped and conveyed between the upper conveyor belt 2 and the lower conveyor belt 3 to the upper clamping belt group 4 and the lower clamping belt group 5, and the upper left clamping belt 11 and the lower left clamping belt 13 cooperate with each other to clamp the left end of the strip instruction manual, and the left end of the instruction manual extends out of the upper left clamping belt 11 and the lower left clamping belt 13, and the upper right clamping belt 12 and the lower right clamping belt 14 cooperate with each other to clamp the right end of the strip instruction manual, and the right end of the instruction manual extends out of the upper right clamping belt 12 and the lower right clamping belt 14. At the same time, the motor 44 drives the active roller 31 to rotate, thereby driving the lower left clamping belt 13 and the lower right clamping belt 14 to rotate, and conveying the strip instruction manual to the boxing station.

[0040] When it is necessary to adjust the spacing between the upper conveying belt group 4 and the lower conveying belt group 5, rotate the adjusting eccentric shaft 10, and the adjusting eccentric shaft 10 drives the adjusting side plate 9 to rise and fall, thereby causing the driven drive module 7 and the upper conveying belt group 4 to rise and fall, thereby adjusting the spacing between the upper conveying belt group 4 and the lower conveying belt group 5, so that the spacing between the upper left conveying belt 11 and the lower left conveying belt 13 and the upper right conveying belt 12 and the lower right conveying belt 14 is adapted to the thickness of the instruction manual. At the same time, by adjusting the first support roller 27 and the upper support roller 24 and the second support roller 48 and the lower support roller 45, the tension between the upper conveyor belt 2 and the lower conveyor belt 3 is adjusted so that the tension between the two is adapted to the thickness of the instruction manual.

[0041] The above detailed description is a specific description of a feasible embodiment of the present invention. The embodiment is not intended to limit the patent scope of the present invention. Any equivalent implementation or modification that does not depart from the present invention should be included in the patent scope of this case.

Claims

1. A manual conveying mechanism, characterized in that: It includes a paper folding machine, an upper conveying belt, a lower conveying belt, an upper clamping belt group, a lower clamping belt group, and an adjustment component; The paper folding machine is used to fold the instruction manual into strips; The upper conveyor belt and the lower conveyor belt are connected to the paper folding machine, and the upper conveyor belt and the lower conveyor belt cooperate with each other to form a vertical conveying path for clamping strip-shaped instruction manuals; The upper pinch belt group and the lower pinch belt group are connected to the upper conveyor belt and the lower conveyor belt, and the upper pinch belt group and the lower pinch belt group cooperate with each other to form a transverse conveying path for clamping strip-shaped instruction manuals; The upper entrainment belt group is arranged on the driven drive module, the driven drive module is arranged on the adjustment component, and the lower entrainment belt group is arranged on the active drive module. The adjustment component is used to adjust the height of the driven drive module to adjust the distance between the upper entrainment belt group and the lower entrainment belt group.

2. The instruction manual conveying mechanism according to claim 1, characterized in that: The adjustment assembly includes an adjustment side plate and an adjustment eccentric shaft. The driven drive module is connected to the side wall of the adjustment side plate. The adjustment eccentric shaft and the bottom wall of the adjustment side plate are in contact with each other.

3. The instruction manual conveying mechanism according to claim 1, characterized in that: The upper entrainment belt group includes an upper left entrainment belt and an upper right entrainment belt, and the upper left entrainment belt and the upper right entrainment belt are symmetrically distributed on the left and right. The lower entrainment belt group includes a lower left entrainment belt and a lower right entrainment belt, and the lower left entrainment belt and the lower right entrainment belt are symmetrically distributed on the left and right. The upper left entrainment belt corresponds to the lower left entrainment belt, and the upper right entrainment belt corresponds to the lower right entrainment belt.

4. The instruction manual conveying mechanism according to claim 2, characterized in that: The driven driving module includes a first driven roller shaft, a second driven roller shaft, a driven tensioning roller shaft, a left first pinching roller, a left second pinching roller, a right first pinching roller, a right second pinching roller, a left upper tensioning roller, and a right upper tensioning roller. The upper left pinching belt is wound around the left first pinching roller, the left upper tensioning roller and the left second pinching roller, and the upper right pinching belt is wound around the right first pinching roller, the right upper tensioning roller and the right second pinching roller, and the left first pinching roller and the right first pinching roller are arranged on the first driven roller shaft, the left second pinching roller and the right second pinching roller are arranged on the second driven roller shaft, the left upper tensioning roller and the right upper tensioning roller are arranged on the driven tensioning roller shaft, the first driven roller shaft, the second driven roller shaft and the driven tensioning roller shaft are arranged on the adjusting side plate, and the driven tensioning roller shaft is located between the first driven roller shaft and the second driven roller shaft.

5. The instruction manual conveying mechanism according to claim 4, characterized in that: The upper conveying belt is wound around the upper support roller, the upper conveying roller and the upper tensioning roller. The upper support roller is arranged on the first support roller shaft. The upper conveying roller is arranged on the first driven roller shaft. The upper conveying roller is located between the left pinching roller and the right pinching roller. The upper tensioning roller is arranged on the first tensioning roller shaft.

6. The instruction manual conveying mechanism according to claim 5, characterized in that: The active drive module includes a driving chain, a driven chain, an active roller shaft, a first transmission roller shaft, a second transmission roller shaft, a third transmission roller shaft, a transmission tensioning roller shaft, a left three-pinch roller, a left four-pinch roller, a right three-pinch roller, a right four-pinch roller, a left lower tensioning roller, and a right lower tensioning roller. The active roller shaft, the first transmission roller shaft, the second transmission roller shaft and the third transmission roller shaft are distributed in a parallelogram shape. The active chain is wound around the active roller shaft, the first transmission roller shaft, the second transmission roller shaft and the third transmission roller shaft through a driving sprocket. The driven chain is wound around the active roller shaft, the first transmission roller shaft, the second transmission roller shaft and the third transmission roller shaft through a transmission sprocket. On the first transmission roller shaft, the second transmission roller shaft and the third transmission roller shaft, the lower left pinching belt is wound on the left third pinching roller, the left lower tensioning roller and the left fourth pinching roller, the lower right pinching belt is wound on the right third pinching roller, the right lower tensioning roller and the right fourth pinching roller, and the left third pinching roller and the right third pinching roller are arranged on the first transmission roller shaft, the left fourth pinching roller and the right fourth pinching roller are arranged on the second transmission roller shaft, the left lower tensioning roller and the right lower tensioning roller are arranged on the transmission tensioning roller shaft, and the transmission tensioning roller shaft is located between the first transmission roller shaft and the second transmission roller shaft.

7. The instruction manual conveying mechanism according to claim 6, characterized in that: The active roller shaft is connected to the motor.

8. The instruction manual conveying mechanism according to claim 6, characterized in that: The lower conveying belt is wound around a lower supporting roller, a lower conveying roller and a lower tensioning roller. The lower supporting roller is arranged on a second supporting roller shaft. The lower conveying roller is arranged on the first transmission roller shaft. The lower supporting roller is located between the left three pinching rollers and the right three pinching rollers. The lower tensioning roller is arranged on the second tensioning roller shaft.

9. The instruction manual conveying mechanism according to claim 8, characterized in that: The utility model further comprises an auxiliary roller, wherein the auxiliary roller is located above the upper tensioning roller and the lower tensioning roller, and the auxiliary roller is arranged on an auxiliary roller shaft.