Box type belt conveyor

By designing the support leg assembly, conveying assembly, transition assembly, and drive assembly of the box-type belt conveyor, the problem of efficiently conveying materials from a low position to a high position was solved, ensuring the smoothness and safety of the conveying and preventing belt slippage.

CN223495443UActive Publication Date: 2025-10-31RUIKE LOGISTICS TECH (KUNSHAN) CO LTD
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Patent Information

Application Number
CN202422658373.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-10-31
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

Existing belt conveyors are difficult to efficiently transport materials from low to high places, and belt slippage is a problem.

Method used

A box-type belt conveyor was designed, including a support leg assembly, a conveying assembly, a transition assembly, a drive assembly, and a power transmission assembly. Through the support of the support leg assembly, the linkage of the power transmission assembly, and the power supply of the drive assembly, the belt tension is adjusted by the tensioning system to ensure that the material is stably conveyed from a low position to a high position.

Benefits of technology

It enables smooth material transport from low to high, avoids belt slippage, and improves the safety and reliability of the transport.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of belt conveyors, and particularly relates to a box type belt conveyor which comprises a supporting leg assembly, a conveying assembly, a transition assembly, a driving assembly and a power transmission assembly, the supporting leg assembly is composed of a supporting leg main body, a foot sleeve, a cross beam and an inclined strut, the foot sleeve is installed on a supporting leg, the cross beam is installed on the supporting leg, the inclined strut is installed on the supporting leg, and the conveying assembly is installed on the supporting leg main body. The conveying assembly is composed of an end deviation adjusting roller, a side frame, an anti-clamping hand and a clamping hand fixing plate. According to the conveying device, the conveying assembly can convey materials to a high position from a low position, the supporting leg assembly supports the conveying assembly, so that the conveying assembly can be stably placed from bottom to top, stable feeding is guaranteed, the power transmission assembly can link all parts of the conveying assembly and is matched with the driving assembly, namely, the driving motor, to provide power, and the conveying assembly is driven to rotate. The transition assembly arranged at the high position enables the belt to not slip during conveying, the tensioning system in the driving assembly can adjust the tensioning degree of the belt, and using is safer and more reliable.
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Description

Technical Field

[0001] This utility model relates to a belt conveyor, specifically a box-type belt conveyor. Background Technology

[0002] Belt conveyors, as the name suggests, primarily use a continuously rotating belt as the traction and load-bearing component to transport materials from one end to the other. Their basic principle is simple and efficient, but the underlying technological innovations are constantly evolving. From their initial single-function design to today's intelligent and modular designs, belt conveyors are continuously adapting to the needs of industrial development.

[0003] In view of the above, this application designs a box-type belt conveyor that can transport materials located at a lower position to a higher position. Utility Model Content

[0004] The main objective of this disclosure is to provide a box-type belt conveyor to effectively solve the problems raised by the inventors in the background art mentioned above.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A box-type belt conveyor includes a support leg assembly, a conveying assembly, a transition assembly, a drive assembly, and a power transmission assembly. The support leg assembly consists of a support leg body, foot covers, a crossbeam, and diagonal braces. The foot covers, crossbeams, and diagonal braces are mounted on the support legs. The conveying assembly consists of an end-adjusting roller, side frames, anti-pinch hands, and a hand-clamping fixing plate. The end-adjusting roller is mounted in the middle of the side frames, the hand-clamping fixing plate is mounted on the side frames, and the anti-pinch hands are mounted on the side frames. The anti-pinch hands and the hand-clamping fixing plate are fastened together by bolts. The power transmission assembly is mounted between two sets of side frames, the drive assembly is mounted on the side frames, the transition assembly is mounted between adjacent side frames, and the support leg assembly is mounted at the lower part of the conveying assembly.

[0007] Preferably, the power transmission assembly includes a connecting beam, a vertical support, a transition plate, a side plate, a tensioning seat, a deep groove ball bearing, a bearing housing, a synchronous pulley, a driven roller, and a protective cover. The vertical support and the side plate are both mounted on the connecting beam. Deep groove ball bearings are mounted on both sides of the side plate. The driven roller is mounted on the deep groove ball bearing. The bearing housing is mounted on the side plate. The synchronous pulley is mounted on the bearing housing. The tensioning seat is mounted on the connecting beam. The deep groove ball bearing is mounted on the tensioning seat via a shaft. The protective cover is mounted on the side of the side plate. The transition plate is mounted on the top of the vertical support and is located between the two side plates.

[0008] Preferably, the transition assembly includes a transition plate, a transition unit side plate, a driveless roller, and a roller bracket. The roller bracket is installed between the transition plates on both sides, and the driveless roller is installed on the roller bracket.

[0009] Preferably, the transition unit side plate is installed on the outside of the transition plate.

[0010] Preferably, the drive assembly includes a drive bottom sealing plate, drive side plates, a motor base, a drive motor, a motor fixing plate, a drive roller, a drive pulley, a prismatic flange bearing, a locking plate, a tensioning bracket, a tensioning screw, a protective cover connector, a tensioning cover, and a tensioning roller. The drive bottom sealing plate is installed between the two drive side plates. The tensioning roller and the drive roller are both installed in the middle of the drive side plates. The motor fixing plate is installed on the side plate, and the motor base is installed on the motor fixing plate. The drive motor is installed on the motor base. Drive pulleys are installed on the output end of the drive motor and on the drive roller. A prismatic flange bearing is installed on the drive pulley furthest from the drive motor. The locking plate is installed on the drive side plate. The tensioning bracket is installed on the drive side plate. The tensioning screw is installed on the tensioning bracket. The protective cover connector is installed on the drive side plate. The drive cover is installed on the drive side plate and the protective cover connector bracket. A redirecting roller and a connecting beam are installed between the two drive side plates, and the connecting beam is located below the redirecting roller.

[0011] Preferably, the belt is fitted outside the drive roller, and the idler roller is fitted inside the belt to adjust the belt tension.

[0012] In view of this, compared with the prior art, the beneficial effects of this utility model are:

[0013] In this application, the conveying assembly can transport materials from a low position to a high position, the support leg assembly supports the conveying assembly so that it can be placed stably from bottom to top, ensuring smooth feeding, the power transmission assembly can link the various components of the conveying assembly and work with the drive assembly, i.e., the drive motor, to provide power, the transition assembly set at the high position prevents the belt from slipping, and the tensioning system in the drive assembly can adjust the belt tension, making it safer and more reliable to use. Attached Figure Description

[0014] Figure 1 The diagram shown is a schematic diagram of the box-type belt conveyor provided by this utility model;

[0015] Figure 2 The image shown is a 3D view of the transition component;

[0016] Figure 3 The image shown is a 3D view of the driving component;

[0017] Figure 4The diagram shown is a schematic of the drive assembly after the tension cover has been removed.

[0018] Figure 5 The image shown is a 3D view of the power transmission assembly.

[0019] Figure 6 The diagram shown is a schematic of the power transmission assembly after the protective cover has been removed.

[0020] icon:

[0021] 1-Outrigger assembly;

[0022] 2-Conveying components;

[0023] 3-Transition assembly; 301-Second transition plate; 302-Idler support; 303-Driveless roller; 304-Transition unit side plate;

[0024] 4-Drive assembly; 401-Bottom sealing plate; 402-Drive side plate; 403-Drive motor; 404-Drive roller; 405-Tensioning roller; 406-Cover connector; 407-Drive pulley; 408-Tensioning bracket; 409-Tensioning screw; 410-Redirecting roller; 411-Connecting beam; 412-Tensioning cover;

[0025] 5-Power transmission assembly; 501-Connecting crossbeam; 502-Driven roller; 503-First transition plate; 504-Synchronous pulley; 505-Deep groove ball bearing; 506-Guard cover. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Please see Figure 1-6 The present invention provides the following embodiments:

[0028] A box-type belt conveyor includes a support leg assembly 1, a conveying assembly 2, a transition assembly 3, a drive assembly 4, and a power transmission assembly 5. The support leg assembly 1 consists of a support leg body, foot covers, a crossbeam, and diagonal braces. The foot covers, crossbeams, and diagonal braces are installed on the support legs. The conveying assembly 2 consists of an end-adjusting roller, side frames, anti-pinch hand, and a hand-pinching fixing plate. The end-adjusting roller is installed in the middle of the side frame, the hand-pinching fixing plate is installed on the side frame, and the anti-pinch hand is installed on the side frame. The anti-pinch hand and the hand-pinching fixing plate are fastened together by bolts. The power transmission assembly 5 is installed between two sets of side frames, the drive assembly 4 is installed on the side frames, the transition assembly 3 is installed between adjacent side frames, and the support leg assembly 1 is installed at the lower part of the conveying assembly 2.

[0029] Specifically, the power transmission assembly 5 includes a connecting beam 501, a vertical support, a first transition plate 503, a side plate, a tensioning seat, a deep groove ball bearing 505, a bearing housing, a synchronous pulley 504, a driven roller 502, and a protective cover 506. The vertical support and the side plate are both mounted on the connecting beam 501. Deep groove ball bearings 505 are mounted on both side plates. The driven roller 502 is mounted on the deep groove ball bearing 505. The bearing housing is mounted on the side plate. The synchronous pulley 504 is mounted on the bearing housing. The tensioning seat is mounted on the connecting beam 501. The deep groove ball bearing 505 is mounted on the tensioning seat via a shaft. The protective cover 506 is mounted on the side of the side plate. The first transition plate 503 is mounted on the top of the vertical support and is located between the two side plates.

[0030] Specifically, the transition assembly 3 includes a second transition plate 301, a transition unit side plate 304, a non-drive roller 303, and a roller bracket 302. The roller bracket 302 is installed between the second transition plates 301 on both sides, and the non-drive roller 303 is installed on the roller bracket 302.

[0031] Specifically, the transition unit side plate 304 is installed on the outside of the second transition plate 301.

[0032] Specifically, the drive assembly 4 includes a drive bottom sealing plate 401, a drive side plate 402, a motor base, a drive motor 403, a motor fixing plate, a drive roller, a drive pulley 407, a prismatic flange bearing, a locking plate, a tension bracket 408, a tension screw 409, a protective cover connector 406, a tension protective cover 412, and a tension roller 405. The drive bottom sealing plate 401 is installed between the two drive side plates 402. The tension roller and the drive roller are both installed in the middle of the drive side plates 402. The motor fixing plate is installed on the side plate, and the motor base is installed on the motor. On the fixed plate, the drive motor 403 is mounted on the motor base. Both the output end of the drive motor 403 and the drive roller are equipped with drive pulleys 407. A prismatic flange bearing is mounted on one of the drive pulleys 407 away from the drive motor 403. The locking plate is mounted on the drive side plate 402. The tension bracket 408 is mounted on the drive side plate 402. The tension screw 409 is mounted on the tension bracket 408. The protective cover connector 406 is mounted on the drive side plate 402. The tension protective cover 412 is mounted on the drive side plate 402 and the protective cover connector 406 bracket.

[0033] A redirecting roller 410 and a docking beam 411 are installed between the two drive side plates 402, with the docking beam 411 located below the redirecting roller 410.

[0034] Specifically, the belt is fitted over the drive roller, and the idler roller is fitted over the belt to adjust the belt tension.

[0035] The specific implementation of this embodiment is as follows: the conveying component 2 can transport materials from a low position to a high position, the support leg component 1 supports the conveying component 2 so that the conveying component 2 can be placed stably from bottom to top, ensuring smooth feeding, the power transmission component 5 can link the various components of the conveying component 2 together, and cooperate with the drive component 4, i.e., the drive motor to provide power, the transition component 3 set at the high position prevents the belt from slipping, and the tensioning system in the drive component 5 can adjust the belt tension, making it safer and more reliable to use.

[0036] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0037] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A box-type belt conveyor, characterized in that: The assembly includes a leg assembly (1), a conveying assembly (2), a transition assembly (3), a drive assembly (4), and a power transmission assembly (5). The leg assembly (1) consists of a leg body, foot sleeves, a crossbeam, and a diagonal brace. The foot sleeves are installed on the leg, the crossbeam is installed on the leg, and the diagonal brace is installed on the leg. The conveying assembly (2) consists of an end-adjusting roller, a side frame, an anti-pinch hand, and a hand-clamping fixing plate. The end-adjusting roller is installed in the middle of the side frame, the hand-clamping fixing plate is installed on the side frame, and the anti-pinch hand is installed on the side frame. The anti-pinch hand and the hand-clamping fixing plate are fastened together by bolts. The power transmission assembly (5) is installed between two sets of side frames, the drive assembly (4) is installed on the side frame, the transition assembly (3) is installed between adjacent side frames, and the leg assembly (1) is installed at the lower part of the conveying assembly (2).

2. The box-type belt conveyor according to claim 1, characterized in that: The power transmission assembly (5) includes a connecting beam (501), a vertical support, a first transition plate (503), a side plate, a tensioning seat, a deep groove ball bearing (505), a bearing housing, a synchronous pulley (504), a driven roller (502), and a protective cover (506). The vertical support and the side plate are both mounted on the connecting beam (501). Deep groove ball bearings (505) are mounted on both sides of the side plate. The driven roller (502) is mounted on the deep groove ball bearing (505). The bearing housing is mounted on the side plate. The synchronous pulley (504) is mounted on the bearing housing. The tensioning seat is mounted on the connecting beam (501). The deep groove ball bearing (505) is mounted on the tensioning seat via a shaft. The protective cover (506) is mounted on the side of the side plate. The first transition plate (503) is mounted on the top of the vertical support and is located between the two side plates.

3. A box-type belt conveyor according to claim 1, characterized in that: The transition assembly (3) includes a second transition plate (301), a transition unit side plate (304), a non-drive roller (303), and a roller bracket (302). The roller bracket (302) is installed between the second transition plates (301) on both sides, and the non-drive roller (303) is installed on the roller bracket (302).

4. A box-type belt conveyor according to claim 3, characterized in that: The transition unit side plate (304) is installed on the outside of the second transition plate (301).

5. A box-type belt conveyor according to claim 1, characterized in that: The drive assembly (4) includes a drive bottom sealing plate (401), a drive side plate (402), a motor base, a drive motor (403), a motor fixing plate, a drive roller, a drive pulley (407), a prismatic flange bearing, a locking plate, a tension bracket (408), a tension screw (409), a protective cover connector (406), a tension protective cover (412), and a tension roller (405). The drive bottom sealing plate (401) is installed between the drive side plates (402) on both sides. The tension roller (405) and the drive roller are both installed in the middle of the drive side plates (402). The motor fixing plate is installed on the side plate, and the motor base is installed on the motor fixing plate. The drive motor (403) is mounted on the motor base. Both the output end of the drive motor (403) and the drive roller are equipped with drive pulleys (407). A prismatic flange bearing is mounted on one of the drive pulleys (407) away from the drive motor (403). The locking plate is mounted on the drive side plate (402). The tension bracket (408) is mounted on the drive side plate (402). The tension screw (409) is mounted on the tension bracket (408). The protective cover (506) connector (406) is mounted on the drive side plate (402). The tension protective cover (412) is mounted on the drive side plate (402) and the protective cover connector (406) bracket.

6. A box-type belt conveyor according to claim 5, characterized in that: A redirecting roller (410) and a docking beam (411) are installed between the two drive side plates (402), and the docking beam (411) is located below the redirecting roller (410).

7. A box-type belt conveyor according to claim 6, characterized in that: The belt is fitted over the drive roller, and the idler roller is fitted over the belt. The belt tension is adjusted.