Conveyor belt guide device

The motor-driven conveyor belt guiding device solves the problems of low efficiency and insufficient safety of manual adjustment of conveyor belt guide plates, realizes automated adjustment and simplified maintenance, and improves the operating efficiency and safety of the conveyor belt.

CN223495388UActive Publication Date: 2025-10-31TIANJIN SANWA IRON-PROD CORP

Patent Information

Application Number
CN202423037625.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-10-31
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing conveyor belt guiding devices require manual operation to adjust the position of the guide plate, which is inefficient, unsafe, and the conveyor belt is easily damaged during operation.

Method used

The system uses a motor-driven lead screw to drive the slider and rotating block, combined with an electric telescopic rod and roller structure, to achieve automatic adjustment of the guide plate and flexible installation and removal of the buffer pad. The rollers reduce friction and abnormal noise.

Benefits of technology

It enables automated adjustment of the guide plate to adapt to different cargo sizes and shapes, improves operational safety and conveyor belt smoothness, and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a conveyor belt guiding device, and belongs to the field of conveyor belts, the conveyor belt guiding device comprises a conveyor belt body and a guiding plate, the outer side of the conveyor belt body is symmetrically provided with two side plates, the outer side of each side plate is fixedly provided with a motor, the power output shaft of each motor is fixedly connected with a screw rod, and the outer edge of each screw rod is in threaded connection with a sliding block; the driving motor drives the lead screw to rotate so as to drive the sliding block to slide on the inner wall of the square groove, then the rotating block and the moving pipe can be used for driving the guide plate to move along with goods until the goods are separated from the top of the conveying belt body, the guide plate can be located at different positions to guide the goods, manual operation and movement are not needed, and operation is convenient. The electric telescopic rod is driven to push the connecting block and the moving pipe to move, then the distance between the two guide plates can be adjusted until the buffer pads on the outer sides of the two guide plates are attached to the two sides of the goods, and then the guide effect on the goods with different widths can be achieved.
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Description

Technical Field

[0001] This application relates to the field of conveyor belt technology, and more particularly to a conveyor belt guiding device. Background Technology

[0002] As a conveying device, conveyor belts have become an indispensable part of the mechanization and automation of material handling systems, and can greatly save labor costs and increase production efficiency in the manufacturing industry.

[0003] The published patent CN217076039U describes a conveyor belt material guiding device, comprising a clamping component, a connecting rod, a sliding rod, and a guide plate. The clamping component is held in place on a side support of the conveyor belt. One end of the connecting rod is fixedly connected to the clamping component, and the other end extends to the upper side of the conveyor belt, with a gap between it and the belt. A groove is formed at the extended end of the connecting rod. The sliding rod slides within the groove, and its outer end face forks to form two clamping rods. The two clamping rods have semi-circular clamping portions with opposing openings, and fastening bolts are provided at the ends of the two clamping rods. A cylindrical rod that mates with the clamping portions of the clamping rods is fixed to one side edge of the guide plate, and a first through groove is formed at the end of this side. The position, height, and angle of the guide plate can be adjusted according to actual needs to facilitate material guidance, and it is easy to disassemble when not in use.

[0004] When the above devices are implemented, the adjustment of the guide plate position cannot be completed automatically and requires manual operation by the staff. Manual operation is inefficient, time-consuming and labor-intensive. Furthermore, the safety of manually adjusting the transmission belt during operation is insufficient and can easily cause hand injuries. Utility Model Content

[0005] In view of the shortcomings of the prior art, this utility model provides a conveyor belt guiding device, which overcomes the shortcomings of the prior art and aims to solve the problems in the background art.

[0006] To achieve the above objectives, this application adopts the following technical solution: a conveyor belt guiding device, comprising a conveyor belt body and a guide plate, two side plates symmetrically installed on the outer side of the conveyor belt body, a motor fixedly mounted on the outer side of the side plates, a lead screw fixedly connected to the power output shaft of the motor, a slider threadedly connected to the outer edge of the lead screw, a rotating groove formed on the side of the slider away from the lead screw, a rotating block rotatably connected to the inner wall of the rotating groove, a fixed rod fixedly mounted on the outer side of the rotating block, a moving tube slidably connected to the outer edge of the fixed rod, a protruding strip fixedly mounted on the outer side of the moving tube, a protruding groove formed on the side of the guide plate near the protruding strip, six rollers rollingly connected to the outer side of the guide plate, a buffer pad adhered to the side of the guide plate away from the six rollers, a vertical plate fixedly mounted on the top of the rotating block, an electric telescopic rod fixedly connected to the outer side of the vertical plate, and a connecting block fixedly connected to the output end of the electric telescopic rod.

[0007] In a preferred embodiment, a motor is fixedly mounted on the top of the slider, and the output end of the motor passes through the slider and is fixedly connected to the rotating block in the inner cavity of the rotating groove.

[0008] By adopting the above technical solution, the drive motor can drive the rotating block to rotate on the inner wall of the rotating groove, thereby adjusting the guide plate and buffer pad to be in an inclined state, which makes it easier to handle goods of different shapes.

[0009] In a preferred embodiment, the connecting block is fixedly installed on the top of the movable tube, and the inner wall of the movable tube has a square hole adapted to the size of the fixed rod, and the fixed rod is slidably connected to the inner wall of the square hole.

[0010] By adopting the above technical solution, the electric telescopic rod can be driven to move the connecting block and the moving tube, thereby adjusting the distance between the two guide plates and thus guiding goods of different widths and sizes.

[0011] In a preferred embodiment, the outer dimension of the protrusion is adapted to the inner wall dimension of the groove, and the protrusion is inserted into the inner wall of the groove.

[0012] By adopting the above technical solution, the convex strip and the guide plate can be quickly connected using the convex groove. No auxiliary tools are needed. The convex strip can be removed from the inner wall of the convex groove by pulling the guide plate upward, which makes it easy to remove the guide plate and the buffer pad for cleaning and maintenance.

[0013] In a preferred embodiment, the bottom of the guide plate and the buffer pad is 1 cm away from the top of the conveyor belt body, and six rollers are rotatably connected to the top of the conveyor belt body.

[0014] By adopting the above technical solution, the bottom of the guide plate and the buffer pad will not rub against the conveyor belt body during operation, thereby avoiding damage to the conveyor belt body. The six rollers ensure that the conveyor belt body will not be interfered with during operation, thus ensuring smooth operation.

[0015] In a preferred embodiment, the inner wall of the side plate is provided with a square groove, the slider is slidably connected to the inner wall of the square groove, a ring is fixedly fitted to the inner wall of the square groove, and the end of the lead screw away from the motor is rotatably connected to the inner wall of the ring.

[0016] By adopting the above technical solution, it is possible to ensure that the lead screw rotates continuously and stably in the same state without wobbling, thereby ensuring that the slider can slide stably on the inner wall of the square groove along the trajectory of the lead screw.

[0017] In a preferred embodiment, the outer edge of the roller is covered with a cushioning pad, and the cushioning pad is made of rubber.

[0018] By adopting the above technical solution, it is possible to ensure that the rollers do not easily produce abnormal noise when rolling above the conveyor belt body, and to ensure the comfort of the workplace.

[0019] In a preferred embodiment, the rotating block is arranged in an arc shape on one side of the inner wall of the rotating groove, and both the upper and lower sides of the rotating block are in contact with the inner wall of the rotating groove, so that the rotating blocks will not interfere with each other when rotating on the inner wall of the rotating groove, thus ensuring the smoothness of rotation.

[0020] The beneficial effects of this application are:

[0021] 1. This conveyor belt guiding device uses a drive motor to rotate a lead screw, which in turn drives a slider to slide on the inner wall of a square groove. A rotating block and a moving tube then move the guide plate along with the goods until the goods are removed from the top of the conveyor belt. The device can guide the goods at different positions without manual operation. An electric telescopic rod is driven to move the connecting block and the moving tube, thereby adjusting the distance between the two guide plates until the buffer pads on the outer sides of the two guide plates are in contact with the sides of the goods. This allows for guiding goods of different widths and sizes.

[0022] 2. This conveyor belt guiding device uses a drive motor to rotate a rotating block on the inner wall of a rotating groove, thereby adjusting the guide plate and buffer pad to be in an inclined state, which facilitates the handling of goods of different shapes. The convex strip can be quickly connected to the guide plate through the convex groove without the use of any auxiliary tools. The convex strip can be removed from the inner wall of the convex groove by pulling the guide plate upward, which makes it easy to remove the guide plate and buffer pad for cleaning and maintenance. Attached Figure Description

[0023] Figure 1 This is a three-dimensional structural diagram of the present application;

[0024] Figure 2 This is a schematic diagram of the cross-sectional structure of the side plate in this application;

[0025] Figure 3 This is a schematic diagram of the unfolded structure of this application;

[0026] Figure 4 This is a partial structural diagram of this application.

[0027] The following are the labels in the diagram: 1. Conveyor belt body; 2. Side plate; 3. Square groove; 4. Motor; 5. Lead screw; 6. Slider; 7. Rotating groove; 8. Rotating block; 9. Fixed rod; 10. Moving tube; 11. Raised strip; 12. Guide plate; 13. Raised groove; 14. Roller; 15. Buffer pad; 16. Motor; 17. Vertical plate; 18. Electric telescopic rod; 19. Connecting block. Detailed Implementation

[0028] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments.

[0029] Reference Figure 1-4 A conveyor belt guiding device includes a conveyor belt body 1 and a guide plate 12. Two side plates 2 are symmetrically installed on the outer side of the conveyor belt body 1. A motor 4 is fixedly mounted on the outer side of the side plate 2. A lead screw 5 is fixedly connected to the power output shaft of the motor 4. A slider 6 is threadedly connected to the outer edge of the lead screw 5. A rotating groove 7 is opened on the side of the slider 6 away from the lead screw 5. A rotating block 8 is rotatably connected to the inner wall of the rotating groove 7. A fixed rod 9 is fixedly mounted on the outer side of the rotating block 8. A moving tube 10 is slidably connected to the outer edge of the fixed rod 9. A protrusion 11 is fixedly mounted on the outer side of the moving tube 10. A protrusion 13 is opened on the side of the guide plate 12 near the protrusion 11. Six rollers 14 are tumblingly connected to the outer side of the guide plate 12. A buffer pad 15 is adhered to the side of the guide plate 12 away from the six rollers 14. A vertical plate 17 is fixedly mounted on the top of the rotating block 8. An electric telescopic rod 18 is fixedly connected to the outer side of the vertical plate 17. A connecting block 19 is fixedly connected to the output end of the electric telescopic rod 18.

[0030] See Figure 3 and Figure 4 A motor 16 is fixedly mounted on the top of the slider 6. The output end of the motor 16 passes through the slider 6 and is fixedly connected to the rotating block 8 in the inner cavity of the rotating groove 7. This allows the drive motor 16 to drive the rotating block 8 to rotate on the inner wall of the rotating groove 7, thereby adjusting the guide plate 12 and the buffer pad 15 to be in an inclined state, which makes it easier to handle goods of different shapes.

[0031] See Figure 3 The connecting block 19 is fixedly installed on the top of the moving tube 10. The inner wall of the moving tube 10 has a square hole that matches the size of the fixed rod 9. The fixed rod 9 is slidably connected to the inner wall of the square hole, so that the electric telescopic rod 18 can push the connecting block 19 and the moving tube 10 to move, thereby adjusting the distance between the two guide plates 12, and thus guiding goods of different widths and sizes.

[0032] See Figure 3 The outer dimensions of the protrusion 11 are adapted to the inner wall dimensions of the groove 13. The protrusion 11 is inserted into the inner wall of the groove 13, so that the protrusion 11 and the guide plate 12 can be quickly connected using the groove 13. Without the use of any auxiliary tools, the protrusion 11 can be removed from the inner wall of the groove 13 by pulling the guide plate 12 upward, which makes it easy to remove the guide plate 12 and the buffer pad 15 for cleaning and maintenance.

[0033] See Figure 1 and Figure 3 The bottom of the guide plate 12 and the buffer pad 15 are 1cm away from the top of the conveyor belt body 1, and the six rollers 14 are rolled and connected to the top of the conveyor belt body 1. This ensures that the bottom of the guide plate 12 and the buffer pad 15 will not rub against the conveyor belt body 1 during operation, thereby avoiding damage to the conveyor belt body 1. The six rollers 14 ensure that the conveyor belt body 1 will not be interfered with during operation, thus ensuring smooth operation.

[0034] See Figure 2 The inner wall of the side plate 2 is provided with a square groove 3. The slider 6 is slidably connected to the inner wall of the square groove 3. A ring is fixedly installed on the inner wall of the square groove 3. The end of the lead screw 5 away from the motor 4 is rotatably connected to the inner wall of the ring, so that the lead screw 5 can be kept in the same state and rotated continuously and stably without swinging. This ensures that the slider 6 can slide stably on the inner wall of the square groove 3 along the trajectory of the lead screw 5.

[0035] See Figure 3 The outer edge of the roller 14 is covered with a cushioning pad, which is made of rubber. This ensures that the roller 14 will not easily produce abnormal noise when it rolls above the conveyor belt body 1, and also ensures workplace comfort.

[0036] See Figure 3 The rotating block 8 is located on one side of the inner wall of the rotating groove 7 in an arc shape. Both the upper and lower sides of the rotating block 8 are in contact with the inner wall of the rotating groove 7, so that the rotating blocks 8 will not interfere with each other when rotating on the inner wall of the rotating groove 7, thus ensuring the smoothness of rotation.

[0037] Working principle: When using this device, the conveyor belt 1 first transports the goods. Then, the electric telescopic rod 18 is driven to move the connecting block 19 and the moving tube 10, thereby adjusting the distance between the two guide plates 12 until the buffer pads 15 on the outer sides of the two guide plates 12 are in contact with the sides of the goods. This guides goods of different widths and sizes. The motor 4 drives the lead screw 5 to rotate, which in turn drives the slider 6 to slide on the inner wall of the square groove 3. The rotating block 8 and the moving tube 10 then drive the guide plates 12 to move with the goods until the goods are in contact with the materials. It detaches from the top of the conveyor belt body 1 and can be positioned in different locations to guide goods without manual operation. It can also drive the motor 16 to rotate the rotating block 8 on the inner wall of the rotating groove 7, thereby adjusting the guide plate 12 and the buffer pad 15 to be in an inclined state, which makes it easier to handle goods of different shapes. The protrusion 11 can be quickly connected to the guide plate 12 through the groove 13. Without the use of any auxiliary tools, the protrusion 11 can be removed from the inner wall of the groove 13 by pulling the guide plate 12 upward, which makes it easy to remove the guide plate 12 and the buffer pad 15 for cleaning and maintenance.

[0038] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this application, based on the technical solution and the inventive concept of this application, should be included within the scope of protection of this application.

Claims

1. A conveyor belt guiding device, comprising a conveyor belt body (1) and a guide plate (12), characterized in that, Two side plates (2) are symmetrically installed on the outer side of the conveyor belt body (1). A motor (4) is fixedly mounted on the outer side of the side plate (2). A lead screw (5) is fixedly connected to the power output shaft of the motor (4). A slider (6) is threadedly connected to the outer edge of the lead screw (5). A rotating groove (7) is opened on the side of the slider (6) away from the lead screw (5). A rotating block (8) is rotatably connected to the inner wall of the rotating groove (7). A fixed rod (9) is fixedly mounted on the outer side of the rotating block (8). A moving tube (10) is slidably connected to the outer edge of the fixed rod (9). The outer side of the moving tube (10) is fixedly fitted with a protrusion (11), and the guide plate (12) is provided with a groove (13) on the side near the protrusion (11). Six rollers (14) are tumblingly connected to the outer side of the guide plate (12), and a buffer pad (15) is glued to the side of the guide plate (12) away from the six rollers (14). The top of the rotating block (8) is fixedly fitted with a vertical plate (17), and an electric telescopic rod (18) is fixedly connected to the outer side of the vertical plate (17). A connecting block (19) is fixedly connected to the output end of the electric telescopic rod (18).

2. The conveyor belt guiding device according to claim 1, characterized in that, A motor (16) is fixedly mounted on the top of the slider (6), and the output end of the motor (16) passes through the slider (6) to the inner cavity of the rotating groove (7) and is fixedly connected to the rotating block (8).

3. A conveyor belt guiding device according to claim 1, characterized in that, The connecting block (19) is fixedly installed on the top of the moving tube (10). The inner wall of the moving tube (10) is provided with a square hole that matches the size of the fixing rod (9). The fixing rod (9) is slidably connected to the inner wall of the square hole.

4. A conveyor belt guiding device according to claim 1, characterized in that, The outer dimensions of the protrusion (11) are adapted to the inner wall dimensions of the groove (13), and the protrusion (11) is inserted into the inner wall of the groove (13).

5. A conveyor belt guiding device according to claim 1, characterized in that, The bottom of the guide plate (12) and the buffer pad (15) are 1 cm away from the top of the conveyor belt body (1), and six rollers (14) are tumbling connected to the top of the conveyor belt body (1).

6. A conveyor belt guiding device according to claim 1, characterized in that, The inner wall of the side plate (2) is provided with a square groove (3), the slider (6) is slidably connected to the inner wall of the square groove (3), the inner wall of the square groove (3) is fixedly fitted with a ring, and the end of the lead screw (5) away from the motor (4) is rotatably connected to the inner wall of the ring.

7. A conveyor belt guiding device according to claim 1, characterized in that, The outer edge of the roller (14) is covered with a cushioning pad, which is made of rubber.

8. A conveyor belt guiding device according to claim 1, characterized in that, The rotating block (8) is located on one side of the inner wall of the rotating groove (7) in an arc shape, and both the upper and lower sides of the rotating block (8) are in contact with the inner wall of the rotating groove (7).

Citation Information

Patent Citations

  • Conveyor belt material guiding device

    CN217076039U

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