Feeding conveying belt

By designing the loading conveyor belt and using the combination of driving parts and lifting blocks, the automatic transfer of items between the conveyor belts is achieved, which solves the problem that the conveyor belt can only be transported in a straight line, improves convenience and stability, and reduces equipment costs.

CN223188387UActive Publication Date: 2025-08-05SUZHOU WANLONG ELECTRIC GROUP +1
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Patent Information

Application Number
CN202422588906.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-08-05
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

Existing conveyor belts can only be transported in a straight line, and the transfer of items between the two conveyor belts requires manual handling, which is not convenient enough.

Method used

A feeding conveyor belt is designed, through the coordination of the drive member and the lifting block, the automatic transfer of items between the first conveying belt and the second conveying belt is realized, and the coordination of the lifting block and the moving conveyor belt is used to realize the horizontal and longitudinal transportation of items, reducing the demand for manual handling.

Benefits of technology

It realizes automatic transfer of items between conveyor belts, improves convenience of use, saves energy and reduces consumption, reduces equipment costs, and improves transportation stability and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a feeding conveyor belt, which relates to the technical field of conveyor belts, and comprises a frame, a first conveyor belt and a second conveyor belt, the first conveyor belt and the second conveyor belt are both rotatably arranged on the frame, the frame is provided with a first driving part and a second driving component, the first driving part is used for driving the first conveyor belt to operate, and the second driving component is used for driving the second conveyor belt to operate. The second driving assembly is used for driving the second conveying belt to operate, a lifting block is arranged on the rack in a sliding mode, the rack is provided with a lifting piece, the lifting piece is used for driving the lifting block to ascend and descend, a movable conveying belt is rotationally arranged on the lifting piece, and the lifting piece is provided with a moving assembly. The moving assembly is used for driving the moving conveying belt to rotate. The application has the effect of improving the use convenience.
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Description

Technical Field

[0001] The utility model relates to the technical field of conveyor belts, in particular to a feeding conveyor belt. Background Art

[0002] Conveyor belt, also known as conveyor belt, is the transmission medium in the conveyor belt system. The conveyor belt system is a type of transmission system. The system will include two or more pulleys with a conveyor belt on them. The pulleys can rotate the conveyor belt indefinitely. There will be one or more powered pulleys to allow the conveyor belt to move forward and carry the materials transmitted on the conveyor belt. It is often used as a loading and conveying device in industrial production.

[0003] The conveyor belts in the existing technology can only carry out linear transportation, and the transfer of items between two conveyor belts requires manual handling by workers, which is not convenient to use. Utility Model Content

[0004] In order to improve the convenience of use, the present application provides a loading conveyor belt.

[0005] The present application provides a feeding conveyor belt adopting the following technical solution:

[0006] A loading conveyor belt comprises a frame, a first conveyor belt and a second conveyor belt, wherein the first conveyor belt and the second conveyor belt are both rotatably arranged on the frame, the frame is provided with a first driving member and a second driving assembly, the first driving member is used to drive the first conveyor belt to operate, and the second driving assembly is used to drive the second conveyor belt to operate, the frame is slidably provided with a lifting block, the frame is provided with a lifting member, the lifting member is used to drive the lifting block to rise and fall, a moving conveyor belt is rotatably provided on the lifting member, the lifting member is provided with a moving assembly, and the moving assembly is used to drive the moving conveyor belt to rotate.

[0007] By adopting the above technical solution, objects are respectively driven by the first driving member and the second driving assembly to move the first conveyor belt and the second conveyor belt for transportation, and the objects are placed on the first conveyor belt or the second conveyor belt for movement. When the objects move to the lifting block, the lifting member is started to drive the lifting block to rise and support the objects so that the objects are separated from the first conveyor belt or the second conveyor belt, and the moving assembly drives the moving rotating belt to rotate, thereby moving the objects. Thereafter, the lifting member drives the lifting block to descend so that the objects fall back onto the first conveyor belt or the second conveyor belt, realizing the movement of the objects between the first conveyor belt and the second conveyor belt. The conveyor belt can carry out longitudinal transportation while carrying out horizontal transportation, thereby effectively utilizing the space on both sides of the conveyor belt for transporting objects, and can be planned and laid out according to the overall shape of the workshop, reducing the limitations of the workshop layout and making rational use of space. At the same time, the transfer of objects between the two conveyor belts is carried out by the lifting block in cooperation with the moving conveyor belt, without the need for manual handling, thereby improving the convenience of use.

[0008] Preferably, two first conveyor belts and two second conveyor belts are provided, and two lifting blocks are provided, which are respectively arranged between the two first conveyor belts and between the two second conveyor belts.

[0009] By adopting the above technical solution, the lifting block is arranged between the two first conveyor belts and between the two second conveyor belts, thereby improving the stability of lifting objects and reducing the possibility of objects falling during the lifting process.

[0010] Preferably, the lifting member is a first lifting cylinder, which is arranged on a frame. The first lifting cylinder is provided with a connecting rod, which connects two lifting blocks.

[0011] By adopting the above technical solution, the first lifting cylinder drives the two lifting blocks to rise and fall synchronously, which simplifies the operation steps, improves the convenience of use, and at the same time achieves energy saving and consumption reduction, and reduces equipment costs.

[0012] Preferably, the frame is rotatably provided with a moving roller, the moving roller is arranged between the first conveyor belt and the second conveyor belt, and the moving roller is arranged between the two lifting blocks.

[0013] By adopting the above technical solution, the moving roller can provide a transition for the movement of objects between the two lifting block moving conveyor belts, reducing the possibility of objects accidentally slipping during the transfer process, and also reducing the possibility of objects getting stuck during the transfer process, thereby improving the convenience of use.

[0014] Preferably, the first driving member is a driving motor, the driving motor is arranged on a frame, and the driving motor shaft is connected to the roller of the first conveyor belt.

[0015] By adopting the above technical solution, the first conveyor belt roller is rotated by driving the motor, thereby driving the first conveyor belt to run, and the operation is simple and convenient.

[0016] Preferably, the second drive assembly includes a first drive gear and a second drive gear, both of which are rotatably arranged on the frame and mesh with each other, the first drive gear is connected to the drive motor shaft, and the second drive gear is connected to the second conveyor belt roller.

[0017] By adopting the above technical solution, when the driving motor is started, it drives the first driving gear to rotate, thereby driving the second driving gear to rotate through gear meshing, and then driving the second conveyor belt to rotate through the rotating shaft, thereby realizing the operation of the second conveyor belt. The operation is simple and convenient. Two sets of conveyor belts are driven to rotate by one driving motor, which is convenient to use and reduces energy consumption.

[0018] Preferably, the frame is provided with a sliding detection block, the frame is provided with a second lifting cylinder, the piston rod of the second lifting cylinder is connected to the detection block, the frame is provided with a third lifting cylinder, the piston rod of the third lifting cylinder is provided with a baffle, the baffle is provided on the side of the detection block away from the lifting block, the frame is provided with a detection cylinder, and a detection plate is provided on the piston rod of the detection cylinder.

[0019] By adopting the above technical solution, the equipment to be inspected is often transported by a conveyor belt. When the equipment moves on the first conveyor belt or the second conveyor belt, when it moves to the inspection station, the third lifting cylinder is started to drive the baffle to rise to block the equipment, and then the second lifting cylinder is started to drive the inspection block to rise, thereby lifting the equipment so that the equipment is separated from the first conveyor belt or the second conveyor belt. After lifting, the inspection cylinder can be started to push the inspection plate against the equipment, and the equipment circuit is connected through the circuit on the inspection plate to inspect the equipment. After the inspection is completed, the equipment is put back on the conveyor belt through the cylinder operation. The operation is simple, convenient and easy to use.

[0020] Preferably, the rack is provided with a limiting block, and the limiting block is provided with a limiting slot.

[0021] By adopting the above technical solution, the limit block is used to block the items and reduce the possibility of the items falling, and the limit groove is used for the positioning block on the item to be inserted, so that the items can be more orderly when moving on the conveyor belt in cooperation with the limit block.

[0022] In summary, this application includes at least one of the following beneficial technical effects:

[0023] 1. A frame, a first conveyor belt, a second conveyor belt, a first driving member, a second driving assembly, a lifting block, a first lifting cylinder, a mobile conveyor belt and a moving assembly are provided. The first conveyor belt and the second conveyor belt on the frame are driven by the first driving member and the second driving assembly respectively. When it is necessary to transfer items on the first conveyor belt to the second conveyor belt, the first lifting cylinder is driven to drive the lifting block to rise, thereby lifting the items off the first conveyor belt. Then, the mobile conveyor belt is driven by the moving assembly to move the items above the second conveyor belt. Then, the first lifting cylinder drives the lifting block to descend so that the items fall onto the second conveyor belt, thereby realizing the transfer of items between the two conveyor belts, eliminating the need for manual handling and improving the convenience of use.

[0024] 2. By setting up a drive motor, a first drive gear and a second drive gear, the drive motor drives the first conveyor belt to operate after starting, and at the same time drives the first drive gear to rotate. The second drive gear rotates through gear engagement, thereby driving the second conveyor belt to operate, reducing driving parts, achieving energy saving and consumption reduction, and reducing costs;

[0025] 3. By setting the detection block, the second lifting cylinder, the third lifting cylinder, the baffle, the detection cylinder and the detection plate, when the device to be detected moves on the conveyor belt, the third lifting cylinder is started to drive the baffle to rise and then block the device to be detected. At this time, the device to be detected is located above the detection block. The second lifting cylinder is started to drive the detection block to rise, thereby driving the device to be detected to rise. Then the detection cylinder is started to push the detection plate against the device to be detected to perform circuit connectivity detection. It is simple and convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 This is an overall schematic diagram of a loading conveyor belt provided in an embodiment of the present application.

[0027] Figure 2 It is a cross-sectional view used to reflect the structure of the second drive component.

[0028] Figure 3 It is a cross-sectional view used to show the structure of a moving component.

[0029] Figure 4 It is a cross-sectional view used to reflect the connection relationship between the first lifting cylinder and the lifting block.

[0030] Explanation of the accompanying drawings: 1. Frame; 11. Moving track; 12. Protective box; 13. First auxiliary frame; 131. Third lifting cylinder; 132. Baffle; 14. Second auxiliary frame; 141. Detection cylinder; 142. Detection plate; 15. Limit block; 151. Limit groove; 16. Moving roller; 2. Driving motor; 21. First conveyor belt; 22. Second conveyor belt; 3. Second driving assembly; 31. First driving gear; 32. Second driving gear; 4. Lifting block; 41. First lifting cylinder; 411. Connecting rod; 42. Moving conveyor belt; 5. Moving assembly; 51. First moving gear; 52. Second moving gear; 53. Moving motor; 6. Detection block; 61. Second lifting cylinder. DETAILED DESCRIPTION

[0031] The following is combined with Figure 1-4 This application is described in further detail.

[0032] The embodiment of the present application discloses a feeding conveyor belt. Figures 1 to 4The invention comprises a frame 1, two sets of first conveyor belts 21, and two sets of second conveyor belts 22. The first conveyor belts 21 and the second conveyor belts 22 are both provided with rollers for rotation. Four movable rails 11 are fixedly provided in parallel on the frame 1. The first conveyor belts 21 and the second conveyor belts 22 are respectively rotatably provided within the rails and a certain distance above the rails. The top wall of the first conveyor belt 21 and the top wall of the second conveyor belt 22 are fixedly provided. The rollers of two adjacent sets of first conveyor belts 21 are fixedly connected by a rotating shaft, and the rollers of two adjacent sets of second conveyor belts 22 are fixedly connected by a rotating shaft. The frame 1 is fixedly provided with a drive motor 2 as a first drive member. The rotating shaft of the drive motor 2 is coaxially connected to the rollers of the first conveyor belt 21. The frame 1 is provided with a second drive assembly 3 for driving the second conveyor belt 22. A first lifting cylinder 41 is fixedly mounted on the frame 1. A connecting rod 411 is fixedly mounted on the piston rod of the first lifting cylinder 41. A lifting block 4 is fixedly mounted on each end of the connecting rod 411. One lifting block 4 is positioned between the two sets of first conveyor belts 21, and the other is positioned between the two sets of second conveyor belts 22. In another embodiment, multiple first lifting cylinders 41 may be provided to enhance stability. A movable conveyor belt 42 is rotatably mounted on each side of the lifting block 4. The movable conveyor belt 42 is arranged perpendicular to the first and second conveyor belts 21, 22. A moving assembly 5 is mounted within the lifting block 4 to drive the movable conveyor belt 42. When not ascending, the top wall of the movable conveyor belt 42 is lower than the top walls of the first and second conveyor belts 21, 22. Limit blocks 15 are fixedly mounted on the sidewalls of the two outermost movable rails 11. The limit blocks 15 are arranged parallel to the movable rails 11. The sidewalls opposite the limit blocks 15 have limit slots 151 along their length. The inner sidewalls of the limit slots 151 are flush with the sidewalls of the movable conveyor belt 42. By arranging the lifting block 4 to cooperate with the mobile conveyor belt 42 to connect the first conveyor belt 21 and the second conveyor belt 22, the conveyed objects can be transferred between the first conveyor belt 21 and the second conveyor belt 22 without manual handling, thereby improving the convenience of use.

[0033] To improve stability, refer to Figure 1 and Figure 4 Frame 1 is rotatably provided with a plurality of movable rollers 16. These rollers 16 are arranged parallel to and between the first conveyor belt 21 and the second conveyor belt 22. These rollers 16 are positioned between the two lifting blocks 4. The top walls of these rollers are higher than the top walls of the first and second conveyor belts 21, 22, and are flush with the height of the raised conveyor belt 42. These rollers facilitate the movement of items between the first and second conveyor belts 21, 22, reducing the likelihood of items falling or becoming stuck and improving movement stability.

[0034] In order to save energy and reduce consumption, refer to Figure 1 and Figure 2The second drive assembly 3 includes a first drive gear 31 and a second drive gear 32. A protective box 12 is fixedly mounted on the frame 1. The protective box 12 is positioned between the first conveyor belt 21 and the second conveyor belt 22 and is fixedly connected to the movable track 11. The first drive gear 31 and the second drive gear 32 are both rotatably mounted within the protective box 12 and mesh with each other. The first drive gear 31 is coaxially connected to the roller of the first conveyor belt 21, and the second drive gear 32 is connected to the roller of the second conveyor belt 22. The drive motor 2 drives the first conveyor belt 21 and simultaneously drives the second conveyor belt 22 through gear meshing. The first conveyor belt 21 and the second conveyor belt 22 rotate in opposite directions, saving energy and reducing consumption while facilitating ease of use.

[0035] For ease of use, refer to Figure 1 and Figure 3 The moving assembly 5 includes a moving motor 53, a first moving gear 51, and a second moving gear 52. The moving motor 53 is disposed within the lifting block 4. The first and second moving gears 51, 52 are both rotatably disposed within the lifting block 4 and mesh with each other. The first moving gear 51 is coaxially fixedly connected to the rollers of the moving conveyor belt 42 on both sides of the lifting block 4 via a rotating shaft. The second moving gear 52 is fixedly connected to the rotating shaft of the moving motor 53. The motor and gear structure drives the moving conveyor belt 42, providing easy operation and adjustable rotation direction.

[0036] For ease of detection, refer to Figure 1 and Figure 4 The frame 1 is fixedly provided with a second lifting cylinder 61. A detection block 6 is fixedly provided on the piston rod of the second lifting cylinder 61. The detection block 6 is arranged between the two second conveyor belts 22. The top wall of the detection block 6 is lower than the top wall of the second conveyor belt 22. The frame 1 is fixedly provided with a first auxiliary frame 13. The auxiliary frame is arranged between the two second conveyor belts 22 and on the side of the detection block 6 away from the lifting block 4. A third lifting cylinder 131 is fixedly provided on the top wall of the auxiliary frame. A baffle 132 is fixedly provided on the piston rod of the third lifting cylinder 131. When not rising, the top wall of the baffle 132 is lower than the top wall of the second conveyor belt 22. The frame 1 is provided with a second auxiliary frame 14 between the first conveyor belt 21 and the second conveyor belt 22. A detection cylinder 141 is fixedly provided on the top wall of the second auxiliary frame 14. A detection plate 142 is provided on the piston rod of the detection cylinder 141. The bottom wall height of the detection plate 142 is higher than the second conveyor belt 22. When the device to be tested moves on the second conveyor belt 22, the third lifting cylinder 131 is started to drive the baffle 132 to rise and block the device. At this time, the device to be tested is located above the detection block 6. The second lifting cylinder 61 is started to lift the device to be tested up through the detection block 6, and then the detection cylinder 141 is started to push the detection plate 142 against the device to be tested to perform circuit connectivity detection. It is simple and convenient to use.

[0037] The implementation principle of a loading conveyor belt in the embodiment of the present application is as follows: an object is placed on the first conveyor belt 21, and the positioning block of the object is inserted into the limiting groove 151, and the driving motor 2 is started to cooperate with the second driving assembly 3 to drive the first conveyor belt 21 and the second conveyor belt 22 to run. When the object runs above the lifting block 4, the positioning block will rest against the inner wall of the limiting groove 151. At this time, the first lifting cylinder 41 can be started to drive the lifting block 4 to rise, thereby lifting the object off the first conveyor belt 21, and then the moving motor is started to drive the moving conveyor belt 42 to run through the gear, with the assistance of the moving roller 16, so that the object moves to the top of the second conveyor belt 22 and the positioning block at the other end of the object is inserted into the limiting groove 151 of the other limiting block 15, and then the moving motor 53 is stopped and the first lifting cylinder 41 is started to drive the lifting block 4 to descend so that the object falls back onto the second conveyor belt 22 and moves with the second conveyor belt 22, thereby realizing the movement of the object between the two conveyor belts, without the need for manual handling, and improving the convenience of use.

[0038] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A feeding conveyor belt, characterized in that: The invention comprises a frame (1), a first conveyor belt (21) and a second conveyor belt (22), wherein the first conveyor belt (21) and the second conveyor belt (22) are both rotatably arranged on the frame (1), the frame (1) is provided with a first driving member and a second driving assembly (3), the first driving member is used to drive the first conveyor belt (21) to operate, and the second driving assembly (3) is used to drive the second conveyor belt (22) to operate, the frame (1) is slidably provided with a lifting block (4), the frame (1) is provided with a lifting member, the lifting member is used to drive the lifting block (4) to rise and fall, a moving conveyor belt (42) is rotatably arranged on the lifting member, the lifting member is provided with a moving assembly (5), and the moving assembly (5) is used to drive the moving conveyor belt (42) to rotate.

2. A feeding conveyor belt according to claim 1, characterized in that: Two first conveyor belts (21) and two second conveyor belts (22) are provided, and two lifting blocks (4) are provided, which are respectively provided between the two first conveyor belts (21) and between the two second conveyor belts (22).

3. A feeding conveyor belt according to claim 2, characterized in that: The lifting member is a first lifting cylinder (41), which is arranged on a frame (1). The first lifting cylinder (41) is provided with a connecting rod (411), and the connecting rod (411) connects two lifting blocks (4).

4. A feeding conveyor belt according to claim 2, characterized in that: The frame (1) is rotatably provided with a moving roller (16), the moving roller (16) being provided between a first conveyor belt (21) and a second conveyor belt (22), and the moving roller (16) being provided between two lifting blocks (4).

5. The loading conveyor belt according to claim 1, characterized in that: The first driving member is a driving motor (2), which is arranged on the frame (1), and the rotating shaft of the driving motor (2) is connected to the rotating roller of the first conveyor belt (21).

6. A loading conveyor belt according to claim 5, characterized in that: The second drive assembly (3) comprises a first drive gear (31) and a second drive gear (32), wherein the first drive gear (31) and the second drive gear (32) are both rotatably arranged on the frame (1) and meshed with each other, the first drive gear (31) is connected to the rotating shaft of the drive motor (2), and the second drive gear (32) is connected to the rotating roller of the second conveyor belt (22).

7. The loading conveyor belt according to claim 1, characterized in that: The frame (1) is slidably provided with a detection block (6), the frame (1) is provided with a second lifting cylinder (61), the piston rod of the second lifting cylinder (61) is connected to the detection block (6), the frame (1) is provided with a third lifting cylinder (131), the piston rod of the third lifting cylinder (131) is provided with a baffle (132), the baffle (132) is provided on the side of the detection block (6) away from the lifting block (4), the frame (1) is provided with a detection cylinder (141), and the piston rod of the detection cylinder (141) is provided with a detection plate (142).

8. The loading conveyor belt according to claim 1, characterized in that: The frame (1) is provided with a limiting block (15), and the limiting block (15) is provided with a limiting slot (151).