Double-row bidirectional automatic conveying equipment

By introducing a partition structure and a motor-driven cam system into the double-row, bidirectional automated conveying equipment, the problems of partition damage and material confusion are solved, and safe, flexible, and bidirectional synchronous conveying of materials is achieved.

CN223356552UActive Publication Date: 2025-09-19HUNAN ZONGLIAN AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202422885550.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-09-19
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

Traditional double-row, bidirectional automated conveying equipment lacks buffering and anti-collision effects, resulting in damage to partitions and chaotic rebound of materials, increasing the risk of material damage, and making it difficult to achieve flexible bidirectional conveying and synchronous conveying of different batches of materials.

Method used

A double-row, bidirectional automated conveying equipment with a partition structure was designed. The partition provides buffering and anti-collision protection through a combination of bolts, sliders, springs and guide strips. At the same time, a low-speed motor is used to drive the cam and arc plate, and a flexible belt is used to adjust the material to prevent accumulation.

Benefits of technology

It effectively prevents partition damage, reduces material rebound and accumulation, ensures safe material transportation, and realizes two-way synchronous transportation and flexible adjustment.

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Abstract

The utility model discloses double-row two-way automatic conveying equipment, which belongs to the technical field of material conveying and comprises a support used for supporting a conveying process, a partition plate is welded at the top of the support, four first sliding grooves are symmetrically arranged on two sides of the partition plate, fixing blocks are fixedly mounted in the four first sliding grooves, and the fixing blocks are fixedly connected with the partition plate. The side face of the fixing block is slidably connected with a bolt, one end of the bolt is slidably connected with a sliding block, a hollow column is installed on the side face of the sliding block, a spring is arranged in the hollow column, the end, away from the partition plate, of the spring is connected with a connecting column, and due to the double-row design, more objects or materials can be conveyed in the same space at the same time. Compared with single-row conveying, different types of goods in different flow directions can be processed in parallel, the situation of waiting for conveying in line is avoided, the quantity of goods capable of being conveyed in unit time is greatly increased, and the overall conveying efficiency is effectively improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of material conveying, in particular to a double-row bidirectional automatic conveying device. Background Art

[0002] In the process of modern industrial production and logistics operations, the transportation of materials is an extremely important link. Traditional conveying equipment often has problems such as single function, low conveying efficiency, difficulty in achieving flexible two-way conveying, and inability to simultaneously meet the requirements of separate and synchronous conveying of different batches of materials. For example, some one-way belt conveyors can only transport goods in a fixed direction. When materials need to be returned or transported on multiple lines simultaneously, additional equipment or manual intervention is required for transfer, which not only increases costs but also reduces overall work efficiency. Therefore, it is necessary to design a double-row, two-way automated conveying equipment that can solve the above problems. The existing double-row, two-way automated conveying equipment can meet basic conveying needs, but the partitions do not have a buffering and anti-collision effect, which can easily cause damage to the partitions, resulting in material rebound and chaos, increasing the risk of material damage.

[0003] After searching, the Chinese patent document (authorization announcement number CN220033075U) shows that the utility model discloses a double-row light belt conveyor equipment, including a frame, two rows of conveying frames mounted side by side on the frame, a driving assembly arranged in the middle of the frame and two belts respectively mounted on the conveying frames and connected to the driving assembly; the driving assembly includes a driving motor, a driving roller and a tensioning roller; both ends of the conveying frame are provided with a redirecting roller; the two belts are respectively passed around the two ends of the driving roller; and an empty slot is provided between the two rows of conveying frames. The utility model arranges two rows of side-by-side conveying racks on the frame, with an empty slot for the protrusions to pass through between them, so that the protrusions will not collide with the products during the conveying process, thereby ensuring safe conveying; by arranging a set of driving components spanning the two conveying racks, the belts of the two conveying racks are linked with the driving rollers to achieve synchronous conveying; the utility model has the advantages of being able to safely convey special products with protrusions and ensuring synchronous conveying on both sides, and the equipment can meet basic conveying needs, but the partitions do not have a buffering and anti-collision effect, which can easily cause damage to the partitions, resulting in rebound and chaos of the materials, and increasing the risk of material damage. Utility Model Content

[0004] The purpose of the utility model is to provide a double-row bidirectional automatic conveying device to solve the problems raised in the background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a double-row, bidirectional automated conveying equipment, comprising a bracket for supporting the conveying process, a partition welded on the top of the bracket, four first slide grooves symmetrically arranged on both sides of the partition, and fixed blocks fixedly installed inside the four first slide grooves, the side of the fixed block is slidably connected to a bolt, one end of the bolt is slidably connected to a slider, a hollow column is installed on the side of the slider, a spring is arranged inside the hollow column, the end of the spring away from the partition is connected to a connecting column, the end of the connecting column away from the spring is welded to a guide bar, and the side of the guide bar is connected to a flexible belt.

[0006] Preferably, low-speed motors are symmetrically installed on both sides of the partition, and the output shafts of the low-speed motors are connected to the rotating shafts via couplings.

[0007] Preferably, a cam is installed at the end of the rotating shaft, and an arc plate is installed on the side of the cam.

[0008] Preferably, a forward motor and a reverse motor are installed on the side of the bracket, and the forward motor and the reverse motor are respectively connected to a first conveyor belt and a second conveyor belt for double-row and bidirectional conveying through a coupling.

[0009] Preferably, a baffle is installed on the top of the bracket, and a storage box is installed on the side of the bracket.

[0010] Preferably, two support blocks are installed at one end of the bracket, and a detection platform is welded between the two support blocks.

[0011] Preferably, a second sliding groove for sliding is provided on the surface of the detection platform, a slide plate is slidably connected inside the second sliding groove, and a guide plate is installed on the top of the detection platform.

[0012] Compared with the prior art, the technical effects and advantages of this utility model are:

[0013] Thanks to the structure of the partition, this double-row bidirectional automated conveying equipment allows materials to move on the first conveyor belt and the second conveyor belt by rotating the bolts, which drive the slider to move up and down to the appropriate height. The moving objects come into contact with the guide bars, which squeeze the connecting columns and springs to play a protective role. Compared with the traditional double-row bidirectional automated conveying equipment bracket that directly conveys materials, this structure is equipped with partitions with buffering and anti-collision functions to prevent damage to the partitions, ensure that the materials do not rebound and become chaotic, and reduce the risk of material damage.

[0014] This double-row, bidirectional automated conveying equipment benefits from the cam structure. The low-speed motor drives the rotating shaft and the cam to rotate, and the cam drives the arc plate to rotate. The arc plate slides in contact with the flexible belt. The flexible belt can slightly push the items to prevent excessive contact between the items and the guide strip, and prevent the transported items from piling up. This structure can adjust the distance between the material and the partition to avoid an increase in the contact pressure between the material and the partition, thereby preventing material accumulation and blockage. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0016] Figure 1 It is a structural diagram of the utility model;

[0017] Figure 2 It is a cross-sectional view of the utility model;

[0018] Figure 3 For this utility model Figure 1 Enlarged view of point A in the middle;

[0019] Figure 4 For this utility model Figure 1 Enlarged view of point B in the middle;

[0020] Figure 5 For this utility model Figure 2 Enlarged view of point C in the middle;

[0021] Figure 6 It is a cross-sectional view of the partition of the utility model.

[0022] Description of reference numerals:

[0023] In the figure: 1. bracket; 101. storage box; 102. forward motor; 103. reverse motor; 104. first conveyor belt; 105. second conveyor belt; 106. baffle; 107. partition; 108. first slide; 2. support block; 201. inspection table; 202. second slide; 203. slide plate; 204. guide plate; 3. low-speed motor; 301. rotating shaft; 302. cam; 303. arc plate; 4. fixing block; 401. bolt; 402. slider; 403. hollow column; 404. connecting column; 405. spring; 5. guide bar; 501. flexible belt. DETAILED DESCRIPTION

[0024] In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention can be practiced without one or more of these details. In other instances, certain technical features known in the art are not described to avoid confusion with the present invention.

[0025] The connection method can be bonding, welding, bolt connection, etc., which shall be based on actual needs.

[0026] like Figures 1 to 6 The double-row, bidirectional automated conveying equipment shown includes a bracket 1 for supporting the conveying process, a partition 107 is welded on the top of the bracket 1, and four first slide grooves 108 are symmetrically arranged on both sides of the partition 107, and a fixed block 4 is fixedly installed inside the four first slide grooves 108. The side of the fixed block 4 is slidably connected with a bolt 401, and one end of the bolt 401 is slidably connected with a slider 402. A hollow column 403 is installed on the side of the slider 402, and a spring 405 is arranged inside the hollow column 403. The end of the spring 405 away from the partition 107 is connected to a connecting column 404, and the end of the connecting column 404 away from the spring 405 is welded with a guide bar 5, and the side of the guide bar 5 is connected to a flexible belt 501. When the material moves on the first conveyor belt 104 and the second conveyor belt 105, the bolt 401 can be rotated, and the bolt 401 drives the slider 402 to move up and down to a suitable height. The moving object contacts the guide bar 5, and the guide bar 5 squeezes the connecting column 404 and the spring 405 to play a protective role.

[0027] Low-speed motors 3 are symmetrically installed on both sides of the partition 107. The output shaft of the low-speed motor 3 is connected to the rotating shaft 301 through a coupling. A cam 302 is installed at the end of the rotating shaft 301. An arc plate 303 is installed on the side of the cam 302. When the low-speed motor 3 is turned on, the low-speed motor 3 drives the rotating shaft 301 and the cam 302 to rotate, and the cam 302 drives the arc plate 303 to rotate. The arc plate 303 is in sliding contact with the flexible belt 501. The flexible belt 501 can slightly push the objects to prevent excessive contact between the objects and the guide bar 5, thereby preventing the transported objects from piling up.

[0028] A forward motor 102 and a reverse motor 103 are mounted on the side of the bracket 1. The forward motor 102 and the reverse motor 103 are connected to a transmission device. The working principle of the forward motor 102 and the reverse motor 103, the first conveyor belt 104, and the second conveyor belt 105 can be referred to (the working principle of a belt conveyor). A conveyor belt is used as a traction and load-bearing component. During operation, the driving device drives the roller to rotate. The friction between the roller and the conveyor belt and the tensioning device give the conveyor belt tension, so that the conveyor belt runs. After the material is continuously placed on the conveyor belt, it will move with the conveyor belt, thereby realizing the transportation of the material. The transmission device connection is used to connect the motor, the reducer and the conveying equipment. Common methods include couplings, belt drives, chain drives, etc. For example, the coupling can accurately connect the shafts of the motor and the reducer to ensure the accuracy of power transmission; the belt drive can buffer the impact to a certain extent and realize long-distance transmission; the chain drive has the characteristics of accurate transmission ratio and strong load-bearing capacity. According to the actual situation, a suitable transmission device is selected to effectively transmit power to the conveying equipment. The forward motor 102 and the reverse motor 103 are respectively connected to the first conveyor belt 104 and the second conveyor belt 105 for double-row and bidirectional transportation through the coupling. The material is placed on one end of the first conveyor belt 104, and the forward motor 102 and the reverse motor 103 are turned on. The first conveyor belt 104 transports the material to the other end of the first conveyor belt 104. The equipment can also load materials from both sides at the same time. The first conveyor belt 104 and the second conveyor belt 105 convey the material in double rows and bidirectionally at the same time. The first conveyor belt 104 and the second conveyor belt 105 are made of various materials, such as rubber conveyor belts, PVC conveyor belts, etc., and are selected according to the characteristics of the conveyed items (such as weight, surface roughness, etc.). The conveyor belt is driven by a motor to rotate, and the items are transported by relying on the friction between the conveyor belt and the items. In bidirectional transportation, the conveying direction of the conveyor belt can be adjusted by changing the rotation direction of the motor.

[0029] A baffle 106 is installed on the top of the bracket 1, a storage box 101 is installed on the side of the bracket 1, two support blocks 2 are installed at one end of the bracket 1, and a detection platform 201 is welded between the two support blocks 2. The surface of the detection platform 201 is provided with a second slide groove 202 for sliding, and the inside of the second slide groove 202 is slidably connected with a slide plate 203. A guide plate 204 is installed on the top of the detection platform 201. The material passes through the first conveyor belt 104 until it reaches the slide plate 203, and the material on the slide plate 203 is inspected. The material that passes the inspection is moved off the slide plate 203. The unqualified material is moved in the horizontal direction of the second conveyor belt 105, and the material is pushed from the slide plate 203 to the second conveyor belt 105. The material finally reaches the second conveyor belt 105 along the guide plate 204, and the second conveyor belt 105 moves the material back to the other end.

[0030] How it works

[0031] When the double-row bidirectional automatic conveying equipment is used, the material is placed on one end of the first conveyor belt 104, the forward motor 102 and the reverse motor 103 are turned on, and the first conveyor belt 104 transports the material to the other end of the first conveyor belt 104 until it reaches the slide 203, and the material on the slide 203 is inspected. The qualified material is moved off the slide 203, and the unqualified material is moved in the horizontal direction of the second conveyor belt 105, and the material is pushed from the slide 203 to the second conveyor belt 105. The material finally reaches the second conveyor belt 105 along the guide plate 204, and the second conveyor belt 105 moves the material to the other end. During the return movement, when materials are moving on the first and second conveyor belts 104, 105, the bolt 401 is rotated, driving the slider 402 up and down to the appropriate height. The moving items come into contact with the guide bar 5, which compresses the connecting column 404 and spring 405 to provide protection. The low-speed motor 3 is then turned on, driving the rotating shaft 301 and cam 302 to rotate. The cam 302 then drives the curved plate 303 to rotate, causing the curved plate 303 to slide into contact with the flexible belt 501. The flexible belt 501 can gently push the items, preventing them from excessively contacting the guide bar 5 and thus preventing the transported items from piling up. The equipment can also be loaded from both sides simultaneously, with the first and second conveyor belts 104, 105 simultaneously transporting materials in two rows and in both directions.

[0032] It should be noted that, in this document, relational terms such as one and two are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations.

[0033] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A double-row, bidirectional automated conveying device, comprising a support (1) for supporting a conveying process, characterized in that: A partition (107) is welded to the top of the bracket (1), and four first sliding grooves (108) are symmetrically arranged on both sides of the partition (107), and a fixed block (4) is fixedly installed inside the four first sliding grooves (108), and the side of the fixed block (4) is slidably connected to a bolt (401), and one end of the bolt (401) is slidably connected to a slider (402), and a hollow column (403) is installed on the side of the slider (402), and a spring (405) is arranged inside the hollow column (403), and the end of the spring (405) away from the partition (107) is connected to a connecting column (404), and the end of the connecting column (404) away from the spring (405) is welded to a guide bar (5), and the side of the guide bar (5) is connected to a flexible belt (501).

2. The double-row, bidirectional automated conveying equipment according to claim 1, characterized in that: Low-speed motors (3) are symmetrically mounted on both sides of the partition (107), and the output shaft of the low-speed motor (3) is connected to a rotating shaft (301) via a coupling.

3. The double-row, bidirectional automated conveying equipment according to claim 2, characterized in that: A cam (302) is installed at the end of the rotating shaft (301), and an arc-shaped plate (303) is installed on the side of the cam (302).

4. The double-row, bidirectional automated conveying equipment according to claim 1, characterized in that: A forward motor (102) and a reverse motor (103) are installed on the side of the bracket (1); the forward motor (102) and the reverse motor (103) are respectively connected to a first conveyor belt (104) and a second conveyor belt (105) for double-row bidirectional conveying via couplings.

5. The double-row, bidirectional automated conveying equipment according to claim 4, characterized in that: A baffle (106) is installed on the top of the bracket (1), and a storage box (101) is installed on the side of the bracket (1).

6. The double-row, bidirectional automated conveying equipment according to claim 1, characterized in that: Two support blocks (2) are installed at one end of the bracket (1), and a detection platform (201) is welded between the two support blocks (2).

7. The double-row, bidirectional automated conveying equipment according to claim 6, characterized in that: The surface of the detection platform (201) is provided with a second sliding groove (202) for sliding, the interior of the second sliding groove (202) is slidably connected with a slide plate (203), and the top of the detection platform (201) is installed with a guide plate (204).

Citation Information

Patent Citations

  • Double-row light belt conveying equipment

    CN220033075U