Conveyor belt with pressing closing opening

By designing a conveyor belt with a closed clamping end, the movement of the conveyor belt body drives the clamping column to clamp and fix the cable, solving the problems of high cost of electromagnetic adsorption and waste of manpower for manual fixing, and achieving efficient and low-cost cable fixing.

CN223659009UActive Publication Date: 2025-12-12XIAMEN LAIPU ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202520345410.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-12-12
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing technologies for cable production suffer from high costs when using electromagnetic adsorption for fixing, and waste of human resources when using manual fixing.

Method used

Design a conveyor belt with a clamping closure. The movement of the conveyor belt body drives the movement of the clamping column, and the clamping and fixing of the cable is achieved by using the abutment component.

Benefits of technology

It achieves efficient cable fixing, reduces fixing costs, saves manpower, and is suitable for fixing various cable shapes.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223659009U_ABST
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Abstract

The conveying belt comprises a conveying belt body, a plurality of abutting and pressing assemblies and an abutting assembly, the abutting and pressing assemblies are arranged along the peripheral face of the conveying belt body and along a conveying path at equal intervals, and each abutting and pressing assembly comprises a first mounting plate; a limiting plate and a pressing seat are arranged on the first mounting plate in a spaced mode, a pay-off gap is formed between the limiting plate and the pressing seat, a limiting notch is formed in the upper surface of the limiting plate, a mounting notch is formed in the upper surface of the pressing seat, and a pressing column is hinged into the mounting notch; the conveying belt body drives the abutting pressing assembly to move, the pressing column abuts against the abutting assembly, then moves towards one side of the limiting notch and extends into the limiting notch, the conveying belt body moves to drive the pressing column to move, and therefore the pressing column abuts against the abutting assembly and turns over, and the function of pressing the cable is achieved.
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Description

Technical Field

[0001] This utility model belongs to the field of conveying equipment technology, specifically relating to a conveyor belt with a compressed closure. Background Technology

[0002] In the continuous production process of cables (such as data cables and USB cables), it is necessary to first cut the whole roll of wire and then push the cut individual cables into the single-work slot on the conveyor belt. Then, the cables are fixed by electromagnetic adsorption or manual fastening. If electromagnetic adsorption is used, the cost of the entire conveyor belt is too high, and if manual fastening is used, it is a waste of human resources. In view of this, this solution was developed. Utility Model Content

[0003] In view of the shortcomings of the prior art, the technical problem to be solved by this utility model is to provide a conveyor belt with a pressing and closing end, which drives the pressing column to move by moving the conveyor belt body, thereby pressing against the pressing component and causing it to flip, so as to realize the function of pressing the cable.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: a conveyor belt with a clamping closure, including a conveyor belt body, multiple clamping and pressing components, and a clamping component. The multiple clamping and pressing components are equally spaced along the outer circumference of the conveyor belt body and along the conveying path. Each clamping and pressing component includes a first mounting plate. The first mounting plate is provided with a spaced-apart limiting plate and a clamping seat. A wire feeding gap is formed between the limiting plate and the clamping seat. A limiting notch is provided on the upper surface of the limiting plate. An installation notch is provided on the upper surface of the clamping seat. A clamping column is hinged in the installation notch. The conveyor belt body drives the clamping and pressing component to move. After the clamping column abuts against the clamping component, it moves towards the limiting notch and extends into the limiting notch.

[0005] Furthermore, torsion springs are provided on both sides of the clamping column at the hinge positions with the side walls of the mounting notch.

[0006] Furthermore, the abutting component is disposed above the conveyor belt body and the abutting and pressing component. The abutting component includes a guide plate. The lower surface of the guide plate facing the input end of the conveyor belt body has a guide angle. The guide angle gradually slopes from top to bottom in the conveying direction of the conveyor belt body. The lower surface of the guide plate is flush with the upper surface of the pressing seat.

[0007] Furthermore, the abutting component is disposed above the conveyor belt body and the abutting and pressing component. The abutting component includes a guide plate, a push plate and a drive component. A notch is formed on the lower surface of the guide plate, penetrating the side wall and the lower surface of the guide plate. The push plate is located in the notch. The drive component drives the push plate to move closer to or away from the input end of the conveyor belt body. The lower surfaces of the guide plate and the push plate are flush with the upper surface of the pressing seat.

[0008] Further, strip-shaped holes are formed on the two sidewalls of the slot, and guide blocks are formed on the two sides of the pushing plate and are slidably connected in the strip-shaped holes.

[0009] Further, the driving assembly comprises a pushing cylinder, and the guide blocks are outwardly extended and detachably connected with the output end of the pushing cylinder.

[0010] Further, first blocking plates are arranged between the adjacent first mounting plates.

[0011] Further, the outer side of the upper end of the pressing column is chamfered.

[0012] Further, a pressing ring is arranged on the lower surface of the pressing column, and the pressing ring is located in the pay-off gap after the pressing column is turned over.

[0013] Further, the pressing ring is made of rubber or nylon.

[0014] Compared with the prior art, the utility model has the advantages of the following:

[0015] In the utility model, the plurality of pressing columns on the pressing assembly are moved by the conveyor belt body, and when the pressing column is located on the front side of the pressing assembly, the pressing column is in the standing state, the cable is cut off by the cable cutting device and then is pushed into the pay-off gap, and when the pressing column passes through the pressing assembly, the pressing column is pressed by the pressing assembly and is turned over towards the limiting gap, so that the function of the pressing column is realized. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 Fig. 1 is a front view of the structure of the utility model embodiment 1;

[0017] Figure 2 Fig. 2 is a local enlarged structure schematic view of the position of the pressing assembly in the utility model embodiment 1;

[0018] Figure 3 Fig. 4 is a front view of the structure of the utility model embodiment 2;

[0019] Figure 4 Fig. 5 is a local enlarged structure schematic view of the position of the pressing assembly in the utility model embodiment 2;

[0020] Figure 5 Fig. 6 is a three-dimensional structure schematic view of the pressing assembly in the utility model;

[0021] Figure 6 Fig. 7 is a three-dimensional structure schematic view of the pressing column in the utility model in the non-pressing state;

[0022] Figure 7The utility model discloses a three-dimensional structure schematic diagram of the compression column in the compression state.

[0023] Figure 8 The utility model discloses a top view structure schematic diagram of the compression U-shaped cable in the embodiment 2.

[0024] Marked in the drawing: 1, conveying belt body;11, first barrier plate;2, abutting and compression assembly;21, first mounting plate;22, limiting plate;221, limiting notch;23, compression seat;231, mounting notch;24, compression column;241, compression ring;25, pay-off gap;3, abutting assembly;31, guide plate;311, guide bevel;312, strip hole;32, push plate;321, guide block. DETAILED DESCRIPTION

[0025] In order to let the above-mentioned features and advantages of the utility model more obvious and easy to understand, the following specific example is taken, and the detailed description is as follows in cooperation with the drawings.

[0026] Embodiment 1

[0027] As shown in Figures 1-2 and Figures 5-7 , the utility model provides a conveying belt with compression closed mouth, including conveying belt body 1, a plurality of abutting and compression assembly 2 and abutting assembly 3.

[0028] Conveying belt body 1 is composed of two chains and four driving gears, and every two driving gears drive a chain to rotate, and the two chains are arranged at intervals.

[0029] A plurality of abutting and compression assembly 2 are arranged at intervals along the outer circumferential surface of conveying belt body 1 and along the conveying path, and abutting and compression assembly 2 includes first mounting plate 21, specifically, first barrier plate 11 is further arranged between adjacent first mounting plate 21, and first barrier plate 11 is used for adjusting the distance between the two first mounting plate 21. The first mounting plate 21 is provided with the limiting plate 22 and the compression seat 23 arranged at intervals, and the pay-off gap 25 is formed between the limiting plate 22 and the compression seat 23, the limiting notch 221 is arranged on the upper surface of the limiting plate 22, the mounting notch 231 is arranged on the upper surface of the compression seat 23, the compression column 24 is hinged in the mounting notch 231, and specifically, torsional springs are arranged at the hinged positions of the two sides of the compression column 24 and the side wall of the mounting notch 231.

[0030] Preferably, the outer side of the upper end of the compression column 24 is provided with a chamfer, the lower surface of the compression column 24 is provided with a compression ring 241, the compression ring 241 is located in the pay-off gap 25 after the compression column 24 is turned over, the compression ring 241 is made of rubber material or nylon material, the compression ring 241 is made of nylon material in the embodiment, the cable is fixed by the compression ring 241, and the fixing effect is better, because the compression ring 241 has a certain deformation capacity, can perfectly fit the cable and does not damage the outer skin.

[0031] The conveyor belt body 1 drives the pressing assembly 2 to move the pressing column 24 to the pressing assembly 3, and then moves towards the limiting notch 221 and extends into the limiting notch 221. Specifically, the pressing assembly 3 is located above the conveyor belt body 1 and the pressing assembly 2. The pressing assembly 3 includes a guide plate 31. The lower surface of the guide plate 31 facing the input end of the conveyor belt body 1 forms a guide angle 311. The guide angle 311 gradually slopes from top to bottom in the conveying direction of the conveyor belt body 1. The lower surface of the guide plate 31 is flush with the upper surface of the pressing seat 23.

[0032] Working principle: When the cable is fed into the cable feeding gap 25, the conveyor belt body 1 carries multiple first mounting plates 21 and moves towards the guide plate 31. When the chamfer on the clamping column 24 abuts against the guide angle 311 of the guide plate 31, the clamping column 24 begins to flip until it flips to the pressure ring 241 to clamp the cable. When the first mounting plate 21 is in the area covered by the guide plate 31, the clamping column 24 will continue to clamp the cable until it leaves the area covered by the guide plate 31. Under the action of the torsion spring, the clamping column 24 returns to its original position.

[0033] Example 2

[0034] like Figures 3-8 As shown, the difference between this embodiment and embodiment 1 lies in the different structure of the abutment component 3. The abutment component 3 is set above the conveyor belt body 1 and the abutment pressing component 2. The abutment component 3 includes a guide plate 31, a push plate 32 and a drive component. A notch is formed on the lower surface of the guide plate 31, penetrating the side wall and lower surface of the guide plate 31. The push plate 32 is located in the notch. The drive component drives the push plate 32 to approach or move away from the input end of the conveyor belt body 1. Specifically, a strip hole 312 is formed on both sides of the notch. Guide blocks 321 are formed on both sides of the push plate 32. The guide blocks 321 are slidably connected in the strip hole 312. The drive component includes a push cylinder. The push cylinder is a pneumatic cylinder. Each guide block 321 has an outwardly extending connecting block. The output end of the push cylinder is detachably connected to the connecting block. The push plate 32 is pushed out by the push cylinder, first abutting the pressing column 24 and causing it to flip over. It is fixed when the cable just enters the cable feeding gap 25. The lower surfaces of the guide plate 31 and the push plate 32 are flush with the upper surface of the clamping seat 23.

[0035] like Figure 8 As shown, this clamping method is particularly suitable for U-shaped cable laying, that is, when the two ends of the cable need to be processed, the cable is placed in a U-shape. However, when placed in this way, the outer end of the cable is heavier. If it is not fixed in time, it is easy to fall off during the movement of the conveyor belt body 1. Therefore, this solution sets the pusher cylinder to push the pusher plate 32 in advance, so that the clamping column 24 flips in advance to fix the cable.

[0036] Working principle: taking a U-shaped cable as an example, when the cable is clamped by the clamping mechanism and put into the two first mounting seat pay-off gap 25, the push cylinder is pushed out, the push plate 32 is pushed out, the push plate 32 pushes the compression column 24 to overturn to realize the fixation of the cable, then the clamping mechanism releases the cable and resets, the conveying belt body 1 moves so that the cable enters the coverage area of the guide plate 31, and then the push cylinder is retracted.

[0037] The basic principle and main features of the present application and the advantages of the utility model are shown and described above. Those skilled in the art should understand that the utility model is not limited by the above examples. The above examples and descriptions in the specification are only to illustrate the principle of the utility model. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the utility model. These changes and improvements all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. A conveyor belt having a pinch-closed opening, characterized by: The application relates to a conveying belt body, a plurality of abutting and pressing assemblies and an abutting assembly, the plurality of abutting and pressing assemblies are arranged at the outer circumferential surface of the conveying belt body and along the conveying path at equal intervals, the abutting and pressing assembly comprises a first mounting plate, a spacing limiting plate and a pressing seat are arranged on the first mounting plate, a wire releasing gap is formed between the spacing limiting plate and the pressing seat, a limiting notch is arranged on the upper surface of the spacing limiting plate, a mounting notch is arranged on the upper surface of the pressing seat, a pressing column is hingedly connected in the mounting notch, and the conveying belt body drives the abutting and pressing assembly to move, the pressing column is abutted to the abutting assembly, and the abutting and pressing assembly moves to the side of the limiting notch and extends into the limiting notch.

2. A conveyor belt having pinch-closed openings as claimed in claim 1, characterized in that: Torsional springs are arranged at the hinging positions of the side walls of the mounting notch on the two sides of the pressing column.

3. A conveyor belt having pinch-closed openings as defined in claim 1, wherein: The abutting assembly is arranged above the conveying belt body and the abutting and pressing assembly, the abutting assembly comprises a guide plate, a guide inclined angle is formed on the lower surface of the guide plate towards the input end side of the conveying belt body, the guide inclined angle gradually inclines from top to bottom towards the conveying direction of the conveying belt body, and the lower surface of the guide plate is flush with the upper surface of the pressing seat.

4. The conveyor belt having pinch-closed ports of claim 1, wherein: The abutting assembly is arranged above the conveying belt body and the abutting and pressing assembly, the abutting assembly comprises a guide plate, a push plate and a driving assembly, a slot is formed on the lower surface of the guide plate and penetrates through the side wall and the lower surface of the guide plate, the push plate is arranged in the slot, the driving assembly drives the push plate to move close to or away from the input end of the conveying belt body, and the lower surfaces of the guide plate and the push plate are flush with the upper surface of the pressing seat.

5. A conveyor belt having pinch-closed apertures according to claim 4, wherein: Strip-shaped holes are formed on the side walls of the slot, guide blocks are formed on the two sides of the push plate, and the guide blocks are slidably connected in the strip-shaped holes.

6. A conveyor belt having pinch-closed apertures according to claim 5, wherein: The driving assembly comprises a push cylinder, the guide blocks are outwardly extended and connected with the output end of the push cylinder in a detachable mode.

7. A conveyor belt having pinch-closed openings as defined in claim 1, wherein: First blocking plates are further arranged between the adjacent first mounting plates.

8. A conveyor belt having pinch-closed openings as defined in claim 1, wherein: The upper end of the pressing column is outwardly provided with a chamfer.

9. A conveyor belt having pinch-closed openings as defined in claim 1, wherein: A pressing ring is arranged on the lower surface of the pressing column, and the pressing ring is arranged in the wire releasing gap after the pressing column is turned over.

10. A conveyor belt having pinch-closed apertures according to claim 9, wherein: The pressing ring is made of rubber or nylon.