Conveying device special for collecting agent production

By designing a special transmission device for collector production, the rubber belt and driving rod gear system can be used to achieve smooth and sequential transportation of the collector tank body, solving the problems of low transmission efficiency and poor safety in the prior art, and improving the transmission efficiency and safety.

CN120207828AActive Publication Date: 2025-06-27SHENGHE RESOURCES (LIANYUNGANG) NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510570786.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-06-27
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

The existing collector transport devices have problems of low efficiency and poor safety when efficiently transporting the collector tank, especially when the car height is high or the number of collectors is large.

Method used

A special transmission device for collector production is designed, using two symmetrically distributed rubber belts and multiple driving rod gear systems to achieve smooth and sequential delivery of collector tanks through the feeding mechanism, and the transmission efficiency and safety of collectors are improved through the material collection and pushing mechanism.

Benefits of technology

The smooth sequential transport of the collector tank is achieved, the transmission efficiency is improved, the collision of the collector during the transmission process is avoided, and the transmission safety is enhanced.

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Abstract

The invention discloses a conveying device special for collecting agent production, relates to the field of collecting agent production, and solves the problem that an existing collecting agent conveying device is low in collecting agent tank conveying efficiency. The conveying device comprises a device shell and a base arranged below the device shell, and two telescopic frames are fixedly installed at the bottom of the device shell; the bottom of the telescopic frame is installed on the top of the base, a visual detector is installed on the outer side of the device shell, and two symmetrically-distributed rubber belts are arranged on the inner side of the device shell. The conveying mechanism is used for enabling the two rubber belts to convey the multiple collecting agent tanks downwards in sequence, and the conveying mechanism is installed on the inner side of the device shell; according to the collecting agent conveying device, through the conveying mechanism, the two rubber belts abut against the outer side of the collecting agent tank body, the rotating movement directions of the two rubber belts are opposite, the collecting agent tank body is stably conveyed downwards through friction force between the rubber belts and the collecting agent tank body, and therefore the stable conveying effect is achieved, and the conveying efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the field of collector production, and specifically to a special transmission device for collector production. Background Technique

[0002] A collector is an organic or inorganic compound that can physically or chemically adsorb on the surface of the target mineral. By changing the wettability of the mineral surface, it selectively adsorbs on the surface of specific minerals, reduces their hydrophilicity, and enables the mineral particles to be carried to the liquid surface by bubbles to achieve separation.

[0003] In the production and transmission process of collectors, the application of visual detection technology can significantly improve safety, accuracy, and efficiency. Especially in scenarios with high automation, complex environments, or high reagent hazards, its role is more crucial. After the collector is produced, it needs to be centrally transported by trucks. The pipeline for transporting the collector tank body transports the collector tank body from the truck carriage to the designated position, and cooperates with the visual detection probe to detect whether there is blockage and count the quantity in the pipeline in real time to ensure the normal transportation of the collector tank body. The existing collector transmission device uses an arc-shaped conveying bin to convey the collector downward, and then cooperates with a tray to push out the collector. Although the arc-shaped conveying bin can provide buffering for the falling collector, only one collector can be placed for each conveying. If the height of the carriage is relatively high or the quantity of the collector is large, it will greatly affect the handling efficiency of the collector. Moreover, as the length of the conveying bin increases, the falling speed of the collector will also increase, and when it contacts the tray, the impact force on the tray will also increase, resulting in poor safety. Summary of the Invention

[0004] The purpose of the present invention is to provide a special transmission device for collector production to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the present invention provides the following technical solutions: A special transmission device for collector production, including: a device housing and a base arranged below the device housing. Two symmetrically distributed telescopic frames are fixedly installed at the bottom of the device housing, and the bottom of the telescopic frames is installed on the top of the base. A visual detector is fixedly installed on the outer side of the device housing, and two symmetrically distributed rubber belts are arranged inside the device housing; further including: a feeding mechanism for sequentially conveying a plurality of collector tank bodies downward by the two rubber belts, and the feeding mechanism is installed inside the device housing; a material taking mechanism for receiving the collector tank body at the bottom of the device housing, and the material taking mechanism is installed at the bottom of the device housing; a material pushing mechanism for smoothly pushing the collector tank body between the two rubber belts, and the material pushing mechanism is installed inside the device housing.

[0006] Preferably, the material feeding mechanism includes two first driving rods symmetrically and rotatably installed inside the device housing. Two second driving rods symmetrically distributed are rotatably installed inside the device housing, and the second driving rods are located below the first driving rods. A toothed belt is installed inside the rubber belt. First gears are fixedly installed on the outer sides of the first driving rods and the second driving rods. The four first gears are respectively engaged with the two toothed belts. A first mounting box is fixedly installed on the outer side of the device housing. One end of the second driving rod extends into the first mounting box and is fixedly installed with a second gear. The two second gears are engaged with each other. Two symmetrically distributed inner support frames are arranged inside the rubber belt. The outer side of the inner support frame is in contact with the inner side of the rubber belt, and the top of the inner support frame is of an inclined structure. The inner support frame is fixedly installed inside the device housing. A plurality of equally spaced receiving rib strips are fixedly installed on the outer side of the rubber belt. A driving motor is fixedly installed on the outer side of the first mounting box. The output end of the driving motor is fixedly connected to one end of the adjacent second driving rod.

[0007] Preferably, the material taking mechanism includes a receiving box arranged below the device housing. A receiving cylinder is fixedly installed on the top of the receiving box. The top end of the receiving cylinder is in contact with the bottom of the device housing. A groove for the receiving rib strips to be limited and slide is formed on the outer side of the receiving cylinder. A turntable is rotatably installed inside the receiving box. A plurality of receiving cavities symmetrically distributed around the center are formed on the outer side of the turntable. A receiving plate is fixedly installed inside the receiving cavity. A receiving frame is fixedly installed on the outer side of the receiving plate. A material taking opening is formed on the outer side of the receiving box. A rotating rod is rotatably installed inside the turntable. The rotating rod extends to the outside of the receiving box. A second mounting box is fixedly installed on the outer side of the device housing. One end of the second driving rod away from the first gear extends into the second mounting box. Transmission rods are rotatably installed on both sides of the second mounting box. A conical gear in cooperation is fixedly installed at one end of each of the transmission rods and the second driving rod. A synchronous belt is rotatably installed between the two ends of the rotating rod and the two transmission rods.

[0008] Preferably, the pushing mechanism includes two pushing rollers symmetrically arranged inside the device housing. The outer side of the pushing roller is made of rubber. A guiding inclined groove for the pushing roller to slide and be limited is formed on the outer side of the device housing. Two adjacent guiding inclined grooves are symmetrically distributed. Sleeve blocks are fixedly installed at both ends of the pushing roller. The sleeve blocks are located outside the device housing. A sliding frame is slidably installed on the outer side of the sleeve block. Two symmetrically distributed sliding rods are fixedly installed on both sides of the device housing. Both ends of the sliding frame are respectively slidably installed on the outer sides of the two sliding rods. Driven disks are fixedly installed at both ends of the first driving rod. A pull rod is hinged and assembled between the outer side of the driven disk and the sliding frame, and the hinged position of the pull rod and the driven disk deviates from the center of the driven disk.

[0009] Preferably, the telescopic frame is butted against the base through a hinge seat, and an electric cylinder is hinged and assembled between the outer side of the telescopic frame and the top of the base.

[0010] Preferably, two symmetrically distributed sleeve plates are fixedly installed on the outer side of the device housing, and the sleeve plates are slidably installed on the outer side of the telescopic frame.

[0011] Preferably, a rubber strip is fixedly installed on the side of the material receiving rib away from the rubber belt.

[0012] Preferably, two symmetrically distributed outer support strips are arranged on the outer side of the rubber belt. The top end of the outer support strip is of an inclined structure, and the outer side of the outer support strip is in contact with the outer side of the rubber belt.

[0013] Preferably, a plurality of rubber sleeves are fixedly installed on the outer side of the material receiving frame at equal intervals.

[0014] Preferably, support frames are fixedly installed between both sides of the material receiving box and the bottom of the device housing.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: Through the feeding mechanism of the present invention, two rubber belts can be made to abut against the outer side of the collector tank, and the rotational movement directions of the two rubber belts are opposite. Then, the friction force between the rubber belt and the collector tank can be utilized to smoothly transport the collector tank to the lower part of the carriage. In this process, the collector tank can be successively put between the two rubber belts to realize the successive transportation of the collector tank, preventing collisions, thereby achieving the effect of smooth transmission and improving the feeding efficiency.

[0016] In the present invention, through the material taking mechanism, two rubber belts can convey the collector tank body into the material receiving cylinder. As the turntable rotates, the collector tank body can fall outside the material receiving rack, and as the turntable rotates, the bottom of the collector tank body contacts the material receiving plate, and the collector tank body can be in a vertical state, facilitating the staff to continuously take the collector tank body at the material taking opening on the material receiving box, thereby achieving the effect of facilitating material taking.

[0017] In the present invention, through the material pushing mechanism, during the rotation of the first driving rod, the driven disk can drive the sliding frame to make left and right reciprocating movements along the outer side of the sliding rod through the pull rod, and the sleeve block on the sliding frame can pull the pushing roller to make inclined reciprocating movements inside the device housing, facilitating the pushing of the collector tank body entering the device housing, preventing the collector tank body from tilting, and facilitating the collector tank body to quickly enter between the two rubber belts, thereby achieving the effect of rapid feeding. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the structure of the device housing and the material receiving box in the present invention; Figure 3 is a schematic diagram of the structure of the first mounting box and the sleeve plate in the present invention; Figure 4 is a schematic diagram of the structure of the rubber belt and the material receiving rib in the present invention; Figure 5 is a schematic diagram of the structure of the support frame and the second mounting box in the present invention; Figure 6 is a schematic diagram of the structure of the turntable and the material receiving rack in the present invention; Figure 7 is a schematic diagram of the structure of the pushing roller and the driven disk in the present invention; Figure 8 is a schematic diagram of the structure of the pushing frame and the sleeve block in the present invention.

[0019] In the figure: 1, device housing; 2, base; 3, telescopic frame; 4, vision detector; 5, rubber belt; 6, first driving rod; 7, second driving rod; 8, toothed belt; 9, first gear; 10, first mounting box; 11, second gear; 12, inner support frame; 13, material receiving rib; 14, material receiving box; 15, material receiving cylinder; 16, turntable; 17, material receiving plate; 18, material receiving rack; 19, rotating rod; 20, second mounting box; 21, transmission rod; 22, bevel gear; 23, synchronous belt; 24, pushing roller; 25, sleeve block; 26, sliding frame; 27, sliding rod; 28, driven disk; 29, pull rod; 30, hinge seat; 31, electric cylinder; 32, sleeve plate; 33, rubber strip; 34, outer support bar; 35, rubber sleeve; 36, support frame; 37, drive motor. DETAILED DESCRIPTION OF THE INVENTION

[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0021] Embodiment 1: Please refer to Figures 1-8 , a special transmission device for the production of a collector, including a device housing 1 and a base 2 disposed below the device housing 1. Two symmetrically distributed telescopic frames 3 are fixedly installed at the bottom of the device housing 1, and the bottom of the telescopic frame 3 is installed on the top of the base 2, enabling the height of the device housing 1 to be adjusted through the telescopic frame 3, facilitating the alignment of the opening at the top of the device housing 1 with the carriage equipped with the collector tank. A visual detector 4 is fixedly installed on the outer side of the device housing 1 for detecting and recording the collector tank entering the device housing 1, facilitating later statistics. Two symmetrically distributed rubber belts 5 are arranged on the inner side of the device housing 1, enabling the two rubber belts 5 to clamp and position the collector tank and convey it downward; further including: a feeding mechanism for enabling the two rubber belts 5 to sequentially convey a plurality of collector tanks downward, the feeding mechanism being installed on the inner side of the device housing 1; a material taking mechanism for receiving the collector tank at the bottom of the device housing 1, the material taking mechanism being installed at the bottom of the device housing 1; and a pushing mechanism for smoothly pushing the collector tank between the two rubber belts 5, the pushing mechanism being installed on the inner side of the device housing 1.

[0022] The feeding mechanism includes two first driving rods 6 symmetrically and rotatably installed inside the device housing 1. Two second driving rods 7 are symmetrically distributed and rotatably installed inside the device housing 1, and the second driving rods 7 are located below the first driving rods 6. A toothed belt 8 is installed inside the rubber belt 5. First gears 9 are fixedly installed on the outer sides of the first driving rods 6 and the second driving rods 7. The four first gears 9 are respectively engaged with the two toothed belts 8. When the first driving rods 6 and the second driving rods 7 rotate, the toothed belts 8 can be driven to rotate and move through the first gears 9, realizing the rotational movement of the rubber belt 5. A first mounting box 10 is fixedly installed on the outer side of the device housing 1. One end of the second driving rod 7 extends to the inside of the first mounting box 10 and a second gear 11 is fixedly installed. The two second gears 11 are engaged with each other. When any one of the second driving rods 7 rotates, the other second driving rod 7 can be driven to rotate synchronously through the two second gears 11. Moreover, the rotation directions of the two second driving rods 7 are opposite, making the two rubber belts 5 rotate in opposite directions, and conveying the collector tank downward. Two symmetrically distributed inner support frames 12 are arranged inside the rubber belt 5. The outer sides of the inner support frames 12 are in contact with the inner side of the rubber belt 5, and the top ends of the inner support frames 12 are of an inclined structure. The inner support frames 12 are fixedly installed inside the device housing 1. Through the inner support frames 12, the top end of the rubber belt 5 is of an inclined structure, facilitating the input of the collector tank between the two rubber belts 5. A plurality of equidistantly distributed receiving rib strips 13 are fixedly installed on the outer side of the rubber belt 5, so that the corresponding two receiving rib strips 13 can abut against the outer side of the collector tank, preventing the collector tank from sliding downward, realizing the sequential conveying of the collector tank, preventing collisions, and providing protection for the collector tank. A driving motor 37 is fixedly installed on the outer side of the first mounting box 10. The output end of the driving motor 37 is fixedly connected to one end of the adjacent second driving rod 7. The driving motor 37 can drive the corresponding second driving rod 7 to rotate. The telescopic frame 3 is docked with the base 2 through the hinge seat 30. An electric cylinder 31 is hinged and assembled between the outer side of the telescopic frame 3 and the top of the base 2, enabling the electric cylinder 31 to push the telescopic frame 3 to swing with the hinge seat 30 as the fulcrum, realizing the angle adjustment of the device housing 1 and improving the convenience of inputting the collector tank. Two symmetrically distributed sleeve plates 32 are fixedly installed on the outer side of the device housing 1. The sleeve plates 32 are slidably installed on the outer side of the telescopic frame 3, enabling the sleeve plates 32 to abut against the outer side of the telescopic frame 3, providing auxiliary support for the device housing 1 and improving the stability of the device housing 1. A rubber strip 33 is fixedly installed on the side of the receiving rib strip 13 away from the rubber belt 5. The receiving rib strip 13 can abut against the outer side of the collector tank through the rubber strip 33, providing protection between the receiving rib strip 13 and the collector tank. Two symmetrically distributed outer support strips 34 are arranged on the outer side of the rubber belt 5. The top ends of the outer support strips 34 are of an inclined structure, and the outer sides of the outer support strips 34 are in contact with the outer side of the rubber belt 5, enabling the outer support strips 34 to provide support for the outer side of the rubber belt 5 and ensuring that the top end of the rubber belt 5 is of an inclined structure.

[0023] Embodiment 2: Please refer to Figures 1-6 , this embodiment further illustrates Embodiment 1. The material taking mechanism in the figure includes a receiving box 14 arranged below the device housing 1. A receiving cylinder 15 is fixedly installed at the top of the receiving box 14, so that the two rubber belts 5 can send the collector tank body into the receiving cylinder 15. The top end of the receiving cylinder 15 is in contact with the bottom of the device housing 1. A groove for the receiving rib 13 to slide in a limited way is opened on the outer side of the receiving cylinder 15. A turntable 16 is rotatably installed inside the receiving box 14. A plurality of receiving cavities distributed in central symmetry are opened on the outer side of the turntable 16. A receiving plate 17 is fixedly installed inside the receiving cavity. A receiving frame 18 is fixedly installed on the outer side of the receiving plate 17, so that the collector tank body in the receiving cylinder 15 can enter the receiving frame 18 in the receiving cavity, and the receiving frame 18 catches the collector tank body. A material taking port is opened on the outer side of the receiving box 14. When the turntable 16 rotates, it can move the collector tank body on the receiving frame 18 to the material taking port of the receiving box 14, so that the bottom of the collector tank body is in contact with the receiving plate 17, and the collector tank body can be in a vertical state, which is convenient for taking. A rotating rod 19 is rotatably installed inside the turntable 16, and the rotating rod 19 extends to the outside of the receiving box 14. A second installation box 20 is fixedly installed on the outer side of the device housing 1. The end of the second driving rod 7 far away from the first gear 9 extends to the inside of the second installation box 20. Transmission rods 21 are rotatably installed on both sides of the second installation box 20. Conical gears 22 which are matched with each other are fixedly installed at one end of each of the transmission rods 21 and one end of the second driving rod 7. Synchronous belts 23 are rotatably installed between the two ends of the rotating rod 19 and the two transmission rods 21, so that the second driving rod 7 can drive the transmission rod 21 to rotate through the conical gear 22, and the transmission rod 21 drives the turntable 16 to rotate through the synchronous belt 23, realizing continuous material receiving and material taking of the turntable 16 for the collector tank body. A plurality of rubber sleeves 35 distributed at equal intervals are fixedly installed on the outer side of the receiving frame 18 to provide buffering for the falling collector tank body. Support frames 36 are fixedly installed between both sides of the receiving box 14 and the bottom of the device housing 1 to provide support for the receiving box 14.

[0024] Embodiment 3: Please refer to Figure 2 , Figure 7 and Figure 8, this embodiment further illustrates other embodiments. The feeding mechanism in the figure includes two push rollers 24 symmetrically arranged inside the device housing 1. The outer side of the push roller 24 is made of rubber. A guiding inclined groove for the push roller 24 to be limited and slide is provided on the outer side of the device housing 1. Two adjacent guiding inclined grooves are symmetrically distributed. Sleeve blocks 25 are fixedly installed at both ends of the push roller 24. The sleeve blocks 25 are located outside the device housing 1. A sliding frame 26 is slidably installed on the outer side of the sleeve block 25. Two symmetrically distributed sliding rods 27 are fixedly installed on both sides of the device housing 1. Both ends of the sliding frame 26 are respectively slidably installed on the outer sides of the two sliding rods 27. When the sliding frame 26 moves, it can move along the outer sides of the sliding rods 27 and can drive the push roller 24 to move along the guiding inclined groove on the device housing 1 through the sleeve block 25, so that the push roller 24 contacts the collector tank body during the falling process in an inclined state, preventing the collector tank body from tilting, ensuring that the collector tank body enters between the two rubber belts 5 along the inclined surface of the rubber belt 5. Driven disks 28 are fixedly installed at both ends of the first driving rod 6. When the first driving rod 6 rotates, it can drive the driven disks 28 to rotate synchronously. A pull rod 29 is hinged and assembled between the outer side of the driven disk 28 and the sliding frame 26, and the hinge point of the pull rod 29 and the driven disk 28 deviates from the center of the driven disk 28. When the driven disk 28 rotates, it can pull the sliding frame 26 to reciprocate along the outer sides of the sliding rods 27 through the pull rod 29, so that the push roller 24 can repeatedly contact the falling collector tank body, facilitating continuous feeding of the collector tank body.

[0025] Working principle: First, the staff place the whole device on the outer side of the carriage equipped with the collector tank body, and start the drive motor 37, so that the drive motor 37 drives the corresponding second drive rod 7 to rotate. The second drive rod 7 can drive another second drive rod 7 to rotate in the opposite direction through two second gears 11. The second drive rod 7 drives the first gear 9 on its outer side to rotate, and cooperates with the first gear 9 on the first drive rod 6 to drive the toothed belt 8 to rotate and move. The toothed belt 8 drives the rubber belt 5 to rotate and move synchronously. Since the two second drive rods 7 rotate in opposite directions, the two rubber belts 5 rotate and move in opposite directions. At the same time, the first drive rod 6 drives the driven disk 28, so that the driven disk 28 pulls the carriage 26 to move reciprocally along the outer side of the slide rod 27 through the pull rod 29. The carriage 26 drives the sleeve block 25 to move synchronously, so that the sleeve block 25 drives the push roller 24 to move along the guiding inclined groove on the device housing 1. The push roller 24 can move in an inclined reciprocating state. Then, the staff sequentially place the collector tank bodies in the carriage into the top of the device housing 1. The push roller 24 contacts the falling collector tank bodies, so that the collector tank bodies are in a vertical state with respect to the rubber belt 5, ensuring that the collector tank bodies enter between the two rubber belts 5 along the inclined surface of the rubber belt 5. At the same time, the material receiving rib strips 13 on the two rubber belts 5 can resist the outer side of the collector tank bodies, and cooperate with the friction force between the two rubber belts 5 to enable the collector tank bodies to be smoothly conveyed downward. The staff can then sequentially load multiple collector tank bodies into the device housing 1. As the rubber belt 5 rotates and moves, the collector tank bodies enter the receiving box 14. At the same time, the second drive rod 7 can drive the transmission rod 21 to rotate through the bevel gear 22, so that the transmission rod 21 drives the rotating rod 19 to rotate through the synchronous belt 23. The rotating rod 19 drives the turntable 16 to rotate, so that the material receiving cavity on the turntable 16 is aligned with the material receiving cylinder 15. The collector tank bodies in the material receiving cylinder 15 can fall onto the material receiving rack 18 in the material receiving cavity. Finally, the turntable 16 moves the collector tank bodies on the material receiving rack 18 to the material taking opening of the receiving box 14, so that the bottom of the collector tank body contacts the material receiving plate 17, and the collector tank body can be in a vertical state. The staff can then take out the collector tank body from the material taking opening. Thus, with the rotation and movement of the rubber belt 5 and the rotation of the turntable 16, the sequential conveyance of the collector tank bodies is realized, preventing the situation of collision during the transmission of the collector tank bodies, thereby improving the conveyance efficiency and safety of the collector tank bodies.

[0026] It should be noted that in this text, relational terms such as first and second are only 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. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or apparatus comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or apparatus.

[0027] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A special transmission device for collector production, characterized in that: include: A device housing (1) and a base (2) arranged below the device housing (1); two telescopic frames (3) are fixedly mounted on the bottom of the device housing (1); the bottom of the telescopic frames (3) is mounted on the top of the base (2); a visual detector (4) is mounted on the outside of the device housing (1); and two symmetrically distributed rubber belts (5) are arranged on the inside of the device housing (1); Also includes: A feeding mechanism, used to enable the two rubber belts (5) to sequentially feed the plurality of collector tanks downward, the feeding mechanism being installed on the inner side of the device housing (1); A material taking mechanism, used for receiving the collector tank at the bottom of the device housing (1), the material taking mechanism being installed at the bottom of the device housing (1); The pushing mechanism is used to smoothly push the collector tank into between the two rubber belts (5), and the pushing mechanism is installed on the inner side of the device housing (1).

2. A collector production dedicated transmission device according to claim 1, characterized in that: The feeding mechanism comprises two first driving rods (6) rotatably mounted on the inner side of the device housing (1); two second driving rods (7) rotatably mounted on the inner side of the device housing (1); a toothed belt (8) is mounted on the inner side of the rubber belt (5); first gears (9) are fixedly mounted on the outer sides of the first driving rods (6) and the second driving rods (7); the four first gears (9) are respectively matched with the two toothed belts (8); a first mounting box (10) is mounted on the outer side of the device housing (1); one end of the second driving rod (7) is A second gear (11) is fixedly installed, and the two second gears (11) are meshed with each other. Two inner support frames (12) are arranged on the inner side of the rubber belt (5), and the top ends of the inner support frames (12) are inclined. The inner support frames (12) are installed on the inner side of the device housing (1). A plurality of material splicing ribs (13) are installed on the outer side of the rubber belt (5). A driving motor (37) is installed on the outer side of the first installation box (10), and the output end of the driving motor (37) is fixedly connected to one end of the adjacent second driving rod (7).

3. A collector production dedicated transmission device according to claim 2, characterized in that: The material taking mechanism comprises a material receiving box (14) arranged below the device housing (1), a material receiving cylinder (15) being fixedly mounted on the top of the material receiving box (14), a turntable (16) being rotatably mounted on the inner side of the material receiving box (14), a plurality of material receiving cavities being provided on the outer side of the turntable (16), a material receiving plate (17) being fixedly mounted on the inner side of the material receiving cavity, a material receiving frame (18) being fixedly mounted on the outer side of the material receiving plate (17), and a material taking opening being provided on the outer side of the material receiving box (14). A rotating rod (19) is rotatably mounted on the inner side of the rotating disk (16), a second mounting box (20) is mounted on the outer side of the device housing (1), transmission rods (21) are rotatably mounted on both sides of the second mounting box (20), one end of the transmission rod (21) and one end of the second driving rod (7) are fixedly mounted with matching bevel gears (22), and synchronous belts (23) are rotatably mounted between the two ends of the rotating rod (19) and the two transmission rods (21).

4. A collector production dedicated transmission device according to claim 3, characterized in that: The pushing mechanism comprises two pushing rollers (24) arranged on the inner side of the device housing (1), the outer side of the device housing (1) is provided with a guiding inclined groove for limiting the sliding of the pushing rollers (24), both ends of the pushing rollers (24) are installed with sleeve blocks (25), the outer side of the sleeve blocks (25) is slidably installed with a slide frame (26), both sides of the device housing (1) are installed with two sliding rods (27), the two ends of the slide frame (26) are slidably installed on the outer sides of the two sliding rods (27), the two ends of the slide frame (26) are respectively slidably installed on the outer sides of the two sliding rods (27), the two ends of the first driving rod (6) are fixedly installed with a driven disk (28), the outer side of the driven disk 28 and the slide frame (26) are hingedly equipped with a pull rod (29), and the hinge between the pull rod (29) and the driven disk (28) deviates from the center of the circle of the driven disk (28).

5. A collector production dedicated transmission device according to claim 1, characterized in that: The telescopic frame (3) is butt-jointed with the base (2) via a hinged seat (30), and an electric cylinder (31) is hingedly mounted between the outer side of the telescopic frame (3) and the top of the base (2).

6. A collector production dedicated transmission device according to claim 1, characterized in that: Two sleeve plates (32) are installed on the outer side of the device housing (1), and the sleeve plates (32) are slidably installed on the outer side of the telescopic frame (3).

7. A collector production dedicated transmission device according to claim 2, characterized in that: A rubber strip (33) is fixedly mounted on one side of the material splicing rib (13).

8. A collector production dedicated transmission device according to claim 2, characterized in that: Two symmetrically distributed outer support bars (34) are arranged on the outer side of the rubber belt (5), and the top ends of the outer support bars (34) are inclined.

9. A collector production dedicated transmission device according to claim 3, characterized in that: A plurality of rubber sleeves (35) are fixedly mounted on the outer side of the material receiving frame (18).

10. A collector production dedicated transmission device according to claim 3, characterized in that: Support frames (36) are fixedly mounted between the two sides of the material receiving box (14) and the bottom of the device housing (1).

Citation Information

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