Inlet conveying belt structure of rotary type upward pasting lifting belt machine

By using a rubber mesh belt and a thin shaft drive system in the inlet conveyor belt of the belt lifter, combined with a gantry and adjustment rod, free adjustment of the channel width and baffle height is achieved, solving the problems of poor adjustment and bottled water dumping in the prior art, ensuring the stability and adaptability of the conveying.

CN222906095UActive Publication Date: 2025-05-27SHANGHAI QUANZHONG MACHINE
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Patent Information

Application Number
CN202421649597.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-11
Publication Date
2025-05-27
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

The inlet conveyor belts of existing belt conveyors are poorly adjusted when adapting to dual channels, especially when the product conveyed in both channels is different in size, making adjustments more difficult; in addition, the size of bottled water is small and may pour at the conveyor belt connection.

Method used

A rotary upper belt conveyor inlet conveyor structure is designed, using a rubber mesh belt and a drive system with a thin shaft, combined with a gantry assembly and an adjustment rod, free adjustment of the channel width and baffle height is achieved.

Benefits of technology

The dual-channel width and height are freely adjusted, adapted to a variety of different sizes of products, and by reducing the gap between the conveyor belt, preventing bottled water from pouring, ensuring stable delivery.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222906095U_ABST
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Abstract

The utility model discloses an inlet conveying belt structure of a rotary type upward pasting lifting belt machine. According to the technical scheme, the rubber surface mesh belt assembly and the portal frame assembly are arranged on the transverse platform, the rubber surface mesh belt assembly comprises a rubber surface mesh belt, a driving motor, a driving main shaft connected with the driving motor, an upper transmission thin shaft and a lower transmission thin shaft, and the upper transmission thin shaft and the lower transmission thin shaft are arranged at the ends of the transverse platform respectively. The lower transmission shaft is arranged close to the center of the rubber face mesh belt relative to the upper transmission thin shaft, a second fastening screw capable of fixing the transverse adjusting rods is arranged on the vertical fixing sleeve, and all the transverse adjusting rods located on the same side of the transverse platform are jointly connected with an outer baffle. Each transverse rod is sleeved with two transverse fixing sleeves, and all the vertical adjusting rods, located on the same side, of each transverse rod are jointly connected with an inner baffle. According to the scheme, the gap is small, conveying is stable, and the width of the channels and the height of the baffles can be freely adjusted according to the sizes of products in the two channels.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging equipment, and particularly relates to an inlet conveyor belt structure of a rotary upper belt pasting machine for carrying handles. Background Art

[0002] A belt pasting machine for carrying handles is a device for pasting carrying handles onto bottled water or packaged bottled water. The bottled water is conveyed to the inside of the belt pasting machine through an inlet conveyor belt for belt pasting. The main problems existing in the existing inlet conveyor belt are that it is not well applicable to a dual-channel, that is, if two belt pasting mechanisms are arranged on the belt pasting machine, the adjustability of the existing inlet conveyor belt is poor. Especially when the sizes of the products conveyed in the two channels are different, the adjustment is more troublesome; another problem is that if the size of the bottled water is small, the bottled water may fall due to a large gap at the connection between the inner conveyor belt and the inlet conveyor belt. Content of the Utility Model

[0003] Aiming at the deficiencies of the existing technology, the main purpose of the utility model is to provide an inlet conveyor belt structure of a belt pasting machine for carrying handles, which has a small gap, stable conveying, and can freely adjust the width of the channel and the height of the baffle according to the sizes of the products in the two channels.

[0004] To achieve the above purpose, the utility model provides the following technical solutions: An inlet conveyor belt structure of a rotary upper belt pasting machine for carrying handles, comprising a support frame, a horizontal platform, a rubber surface mesh belt assembly arranged on the horizontal platform, and a gantry assembly. The support frame is arranged at the bottom of the horizontal platform. The rubber surface mesh belt assembly comprises a rubber surface mesh belt, a driving motor, a driving main shaft connected to the driving motor, and an upper transmission thin shaft and a lower transmission thin shaft arranged at each end of the horizontal platform. The lower transmission thin shaft is arranged relatively closer to the center of the rubber surface mesh belt than the upper transmission thin shaft. The gantry assembly comprises a plurality of gantries spanning above the rubber surface mesh belt. Each gantry comprises two side rods and a cross bar connecting the two side rods. The side rods are fixedly connected to the side walls of the horizontal platform through bolts. A vertical fixing sleeve is sleeved on each side rod. The vertical fixing sleeve is fixedly connected to the side rod through a first fastening screw. A horizontal adjusting rod parallel to the cross bar is also inserted through each vertical fixing sleeve. The vertical fixing sleeve is provided with a second fastening screw capable of fixing the horizontal adjusting rod. All the horizontal adjusting rods on the same side of the horizontal platform are commonly connected to an outer baffle; Two horizontal fixing sleeves are sleeved on each cross bar. Each horizontal fixing sleeve is fixedly connected to the cross bar through a third fastening screw. A vertical adjusting rod perpendicular to the cross bar is also inserted through each horizontal fixing sleeve. The horizontal fixing sleeve is provided with a fourth fastening screw capable of fixing the vertical adjusting rod. All the vertical adjusting rods on the same side of each cross bar are commonly connected to an inner baffle. The two inner baffles respectively form a product channel with the adjacent outer baffle.

[0005] Preferably, a fixed connecting plate connected to the main body of the sticker and lifter is provided on the horizontally arranged platform.

[0006] Preferably, T-shaped grooves are respectively provided on the outer baffle and the inner baffle, and nuts cooperating with the T-shaped grooves are connected to the ends of the horizontal adjusting rod and the vertical adjusting rod.

[0007] Preferably, buffer strips are embedded on the surfaces of the outer baffle and the inner baffle that contact the product.

[0008] Preferably, a plurality of connection holes are vertically provided at the connection between the side rod and the side wall of the horizontally arranged platform.

[0009] The utility model has the following advantages compared with the prior art. First, it uses a rubber surface mesh belt, which can well adapt to the transportation of bottled water. The upper transmission thin shaft and the lower transmission thin shaft with smaller diameters are used to drive the rubber surface mesh belt, so that the gap between it and the internal conveyor belt is smaller, enabling the bottled water to pass through smoothly. And the lower transmission thin shaft is arranged relatively close to the center of the rubber surface mesh belt of the upper transmission thin shaft. The advantage of this setting is to prevent interference between the rubber surface mesh belt and the internal conveyor belt. Second, it can freely adjust the width of the channel and the height of the baffle according to the product sizes in the two channels. By loosening the first fastening screw, the vertical fixing sleeve can be moved up and down, thereby driving the horizontal adjusting rod and the outer baffle up and down. By loosening the second fastening screw, the extending distance of the horizontal adjusting rod can be adjusted, thereby adjusting the left and right positions of the outer baffle. By loosening the third fastening screw, the left and right movement of each horizontal fixing sleeve can be realized, thereby adjusting the left and right positions of the vertical adjusting rod. By loosening the fourth fastening screw, the height adjustment of the vertical adjusting rod can be realized. After the adjustment is completed, the corresponding fastening screws can be tightened. This solution can realize the free adjustment of the width and height of the double channels and can adapt to various products with different sizes. Description of the Drawings

[0010] Figure 1 It is a schematic structural diagram of the inlet conveyor belt structure of a rotary type upper sticker and lifter of the utility model.

[0011] In the figure: 1, support frame; 2, horizontally arranged platform; 3, rubber surface mesh belt; 4, drive motor; 5, drive main shaft; 6, upper transmission thin shaft; 7, lower transmission thin shaft; 8, gantry; 9, side rod; 10, cross bar; 11, vertical fixing sleeve; 12, first fastening screw; 13, horizontal adjusting rod; 14, second fastening screw; 15, outer baffle; 16, horizontal fixing sleeve; 17, third fastening screw; 18, vertical adjusting rod; 19, fourth fastening screw; 20, inner baffle; 21, T-shaped groove; 22, buffer strip; 23, connection hole; 24, fixed connecting plate. Detailed Embodiment

[0012] The utility model will be further described below with reference to the drawings.

[0013] As Figure 1 shown, an inlet conveyor belt structure of a rotary upper pasting belt machine includes a support frame 1, a horizontal platform 2, a rubber surface mesh belt 3 assembly disposed on the horizontal platform 2, and a gantry 8 assembly. The support frame 1 is disposed at the bottom of the horizontal platform 2. The rubber surface mesh belt 3 assembly includes a rubber surface mesh belt 3, a driving motor 4, a driving main shaft 5 connected to the driving motor 4, and an upper driving thin shaft 6 and a lower driving thin shaft 7 disposed at each end of the horizontal platform 2. The lower driving thin shaft 7 is disposed closer to the center of the rubber surface mesh belt 3 than the upper driving thin shaft 6. The gantry 8 assembly includes a plurality of gantries 8 spanning above the rubber surface mesh belt 3. Each gantry 8 includes two side rods 9 and a cross bar 10 connecting the two side rods 9. The side rods 9 are fixedly connected to the side walls of the horizontal platform 2 by bolts. A vertical fixing sleeve 11 is sleeved on each side rod 9. The vertical fixing sleeve 11 is fixedly connected to the side rod 9 by a first fastening screw 12. A horizontal adjusting rod 13 parallel to the cross bar 10 is also passed through each vertical fixing sleeve 11. A second fastening screw 14 capable of fixing the horizontal adjusting rod 13 is disposed on the vertical fixing sleeve 11. All the horizontal adjusting rods 13 on the same side of the horizontal platform 2 are commonly connected to an outer baffle 15. Two horizontal fixing sleeves 16 are sleeved on each cross bar 10. Each horizontal fixing sleeve 16 is fixedly connected to the cross bar 10 by a third fastening screw 17. A vertical adjusting rod 18 perpendicular to the cross bar 10 is also passed through each horizontal fixing sleeve 16. A fourth fastening screw 19 capable of fixing the vertical adjusting rod 18 is disposed on the horizontal fixing sleeve 16. All the vertical adjusting rods 18 on the same side of each cross bar 10 are commonly connected to an inner baffle 20. The two inner baffles 20 respectively form a product channel with the adjacent outer baffles 15.

[0014] The inlet conveyor belt structure of a rotary upper pasting and lifting belt machine in this solution. First, it uses a rubber surface mesh belt 3 which can well adapt to the conveying of bottled water. The upper driving thin shaft 6 and the lower driving thin shaft 7 with smaller diameters are used to drive the rubber surface mesh belt 3, so that the gap between it and the internal conveyor belt is smaller, enabling the bottled water to pass through smoothly. And the lower driving thin shaft 7 is arranged relatively close to the center of the rubber surface mesh belt 3 of the upper driving thin shaft 6. The advantage of this setting is to prevent interference between the rubber surface mesh belt 3 and the internal conveyor belt. Secondly, it can freely adjust the width of the channel and the height of the baffle according to the product sizes in the two channels. By loosening the first fastening screw 12, the vertical fixing sleeve 11 can be moved up and down, thereby driving the height of the horizontal adjusting rod 13 and the outer baffle 15. By loosening the second fastening screw 14, the extending distance of the horizontal adjusting rod 13 can be adjusted, thereby adjusting the left and right positions of the outer baffle 15. By loosening the third fastening screw 17, the left and right movement of each horizontal fixing sleeve 16 can be realized, thereby adjusting the left and right positions of the vertical adjusting rod 18. By loosening the fourth fastening screw 19, the height adjustment of the vertical adjusting rod 18 can be realized. After the adjustment is completed, then tighten the corresponding fastening screws. This solution can realize the free adjustment of the width and height of the double channels and can adapt to products of various different sizes.

[0015] Preferably, a fixed connecting plate 24 connected to the main body of the pasting and lifting belt machine is arranged on the horizontal platform 2. The fixed connecting plate 24 facilitates the fixed connection of the entire inlet conveyor belt to the main body of the pasting belt machine.

[0016] Preferably, T-shaped grooves 21 are respectively arranged on the outer baffle 15 and the inner baffle 20, and nuts matching with the T-shaped grooves 21 are connected to the ends of the horizontal adjusting rod 13 and the vertical adjusting rod 18. This setting can facilitate the quick fixation of the outer baffle 15, the inner baffle 20, the horizontal adjusting rod 13 and the vertical adjusting rod 18.

[0017] Preferably, buffer strips 22 are embedded on the surfaces of the outer baffle 15 and the inner baffle 20 that contact the product. The buffer strips 22 can contact the product and prevent the product from being bumped and damaged through the rubber buffering function.

[0018] Preferably, a plurality of connecting holes 23 are vertically arranged at the connection of the side rod 9 and the side wall of the horizontal platform 2. The arrangement of the plurality of connecting holes 23 can facilitate the height adjustment of the entire side rod 9 or the gantry 8.

[0019] The above are only the preferred embodiments of the present invention. The protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be pointed out that for those of ordinary skill in the art in this technical field, several improvements and refinements made without departing from the principle of the present invention should also be regarded as the protection scope of the present invention.

Claims

1. An inlet conveyor belt structure of a rotary type laminating and lifting machine, characterized in that: The invention comprises a support frame, a transverse platform, a rubber-surface mesh belt assembly arranged on the transverse platform, and a gantry assembly, wherein the support frame is arranged at the bottom of the transverse platform, the rubber-surface mesh belt assembly comprises a rubber-surface mesh belt, a driving motor, a driving main shaft connected to the driving motor, and an upper transmission fine shaft and a lower transmission fine shaft arranged at each end of the transverse platform, wherein the lower transmission fine shaft is arranged close to the center of the rubber-surface mesh belt relative to the upper transmission fine shaft, and the gantry assembly comprises a plurality of gantries spanning above the rubber-surface mesh belt, the gantry comprises two side rods and a cross rod connecting the two side rods, the side rods are fixedly connected to the side walls of the transverse platform by bolts, and each side rod is respectively provided with a vertical fixing sleeve, and the vertical fixing sleeve is fixedly connected to the side walls of the transverse platform by a first The fastening screws are fixedly connected to the side rods, and each vertical fixing sleeve is also provided with a transverse adjustment rod parallel to the transverse rod, and the vertical fixing sleeve is provided with a second fastening screw capable of fixing the transverse adjustment rod, and all transverse adjustment rods located on the same side of the transverse platform are commonly connected to an outer baffle plate; two transverse fixing sleeves are respectively provided on each transverse rod, and each transverse fixing sleeve is fixedly connected to the transverse rod by a third fastening screw, and each transverse fixing sleeve is also provided with a vertical adjustment rod perpendicular to the transverse rod, and the transverse fixing sleeve is provided with a fourth fastening screw capable of fixing the vertical adjustment rod, and all vertical adjustment rods located on the same side of each transverse rod are commonly connected to an inner baffle plate, and the two inner baffle plates respectively form product channels with adjacent outer baffle plates.

2. The inlet conveyor belt structure of the rotary belt-applying and belt-lifting machine according to claim 1 is characterized in that: The horizontal platform is provided with a fixed connecting plate connected to the main body of the strap sticking machine.

3. The inlet conveyor belt structure of the rotary belt-applying and belt-lifting machine according to claim 1 is characterized in that: The outer baffle plate and the inner baffle plate are respectively provided with T-shaped slots, and the ends of the transverse adjustment rod and the vertical adjustment rod are connected with nuts matched with the T-shaped slots.

4. The inlet conveyor belt structure of the rotary belt-applying and belt-lifting machine according to claim 1 is characterized in that: Buffer strips are embedded on the surfaces of the outer baffle plate and the inner baffle plate that are in contact with the product.

5. The inlet conveyor belt structure of the rotary belt-applying and belt-lifting machine according to claim 1 is characterized in that: A plurality of connection holes are vertically arranged at the connection between the side rod and the side wall of the horizontal platform.