Injection device for electrolyte production

By designing an injection device for electrolyte production of clamping components and waste liquid recycling components, the problems of inaccurate filling of bottles and corrosion of residual liquid are solved, and stable filling and efficient automated production are achieved.

CN223254889UActive Publication Date: 2025-08-22NINGBO JINGYAN LIANGZAO NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202422310151.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-08-22
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The existing injection device for electrolyte production can easily cause the bottle to fail to reach the filling port accurately during canning, resulting in insufficient filling, and the residual liquid after filling may corrode the workbench and bottle, affecting work efficiency and quality.

Method used

An injection device for automated electrolyte production including clamping components, waste liquid recycling components, handling mechanisms, loading mechanisms and unloading mechanisms is designed. The bottle is stabilized by clamping components, the waste liquid recycling components collect residual liquid, and the handling mechanism is accurately positioned to improve filling efficiency and safety.

Benefits of technology

The stability and accuracy of bottle filling are achieved, the residual liquid corrosion is avoided, the work efficiency is improved, the labor intensity is reduced, and the automation of the device is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an injection device for electrolyte production, which comprises a supporting bracket, a mounting plate fixed at the top of the supporting bracket, a filling assembly arranged at the bottom of the mounting plate, a clamping assembly and a waste liquid recovery assembly arranged in the filling assembly, a carrying mechanism arranged below the filling assembly, and a feeding mechanism arranged on one side of the carrying mechanism, a discharging mechanism is arranged on the side, away from the feeding mechanism, of the carrying mechanism. Through the structural design of the clamping assembly, when a bottle is conveyed to the position below a filling nozzle, a clamping head clamps a bottle body through the clamping assembly, the stability of the bottle body is improved, meanwhile, the output end of the filling nozzle enters the bottle, electrolyte can be fully filled into the bottle, and through the structural design of the waste liquid recycling assembly, the waste liquid recycling efficiency is improved. According to the electrolyte recycling device, electrolyte remaining at the output end of a filling nozzle is collected through a recycling funnel and then recycled into a waste liquid recycling box through a waste liquid recycling pipe, the remaining electrolyte cannot drop on a bottle and a workbench, meanwhile, through the detachable design of a buckle, the waste liquid recycling box can be replaced more conveniently, and the working efficiency is improved. And the working efficiency and the practicability are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of electrolyte production devices, in particular to an injection device for electrolyte production. Background Art

[0002] Electrolyte is primarily composed of organic solvents, conductive salts, and additives. The production process typically involves raw material preparation, melting, stirring, concentration, cooling, canning, and sealing. These steps require precise, rigorous, and standardized operations to ensure the quality and performance of the final product.

[0003] Currently, when filling bottles, injection devices used in electrolyte production usually use a transport device to transport the bottles to the filling port. However, when the bottles are placed at different distances, the programmed transport device may not be able to reach the bottom of the filling port, resulting in insufficient electrolyte filling into the container. At the same time, after filling is completed, electrolyte may still remain at the filling port and may drip onto the bottle or workbench. The residual electrolyte may also corrode the workbench and bottle, thereby affecting work efficiency and quality.

[0004] Based on this, an injection device for electrolyte production is proposed, which provides a new solution to the above technical problems. Utility Model Content

[0005] Based on this, it is necessary to provide an automated electrolyte production injection device to address the technical problems raised in the above background technology.

[0006] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0007] The injection device for electrolyte production specifically includes a support bracket, a mounting plate is fixed on the top of the support bracket, a filling assembly is provided at the bottom of the mounting plate, a clamping assembly and a waste liquid recovery assembly are provided inside the filling assembly, a conveying mechanism is provided below the filling assembly, a loading mechanism is provided on one side of the conveying mechanism, and a unloading mechanism is provided on the side of the conveying mechanism away from the loading mechanism.

[0008] Preferably, a protective cover is fixedly connected to the bottom of the mounting plate, the filling assembly includes a filling head arranged on the inner side of the protective cover, a first cylinder is installed on the top of the mounting plate, the output end of the first cylinder passes through the mounting plate and is fixed with a first fixed plate, the first fixed plate is fixedly connected to the top of the outer side of the filling head, a plurality of limiting support rods are fixedly connected to the top of the first fixed plate, the limiting support rods pass through the mounting plate and are slidably connected thereto, the input end of the filling head is connected to a hose, the bottom of the filling head is connected to a filling nozzle, and a switch valve is provided between the filling head and the filling nozzle.

[0009] Preferably, the clamping assembly includes a first fixed rod arranged on both sides of the filling head, the first fixed rod is fixedly connected to the inner side of the protective cover, and both sides of the filling head are fixedly connected to a driving fixed block, a clamping support rod is rotatably connected to the outer side of the first fixed rod, and a roller is rotatably connected to the inner side of the end of the clamping support rod close to the driving fixed block, and the roller is rollingly connected to the corresponding driving fixed block, the bottom of the clamping support rod is threadedly connected to a threaded rod, and the end of the threaded rod away from the clamping support rod is fixedly connected to the clamping head.

[0010] The transmission gear of the present invention is a gear which is connected to the transmission gear of the present invention and is locked in the locking cam of the gear box, so that the gear box can be locked in the locking cam of the gear box. The second fixed plate is rotatably connected, one side of the first transmission gear is meshed with the first rack, the first rack is fixed to the filling head, the bottom of the second rack is fixed with a fourth fixed rod, a recovery funnel is fixed between the two fourth fixed rods, the recovery funnel is located below the filling nozzle, the bottom of the recovery funnel is connected to a waste liquid recovery pipe, one end of the waste liquid recovery pipe is connected to a recovery pipe, the end of the third fixed plate away from the second rack is fixed with a fifth fixed rod, support rods are fixed on both sides of the bottom of the fifth fixed rod, the recovery pipe passes through the support rod and the support bracket and is connected to a waste liquid recovery box, and the waste liquid recovery box is detachably mounted on one side of the support bracket.

[0011] Preferably, a plurality of clips are fixedly connected to the upper end of the waste liquid recovery box on one side close to the support bracket, and the clips are engaged with the support bracket.

[0012] Preferably, the feeding mechanism includes a first working frame, a first motor and a second motor are installed at the bottom of the first working frame near one end of the supporting bracket, the output end of the first motor is fixedly connected to the first mounting platform, the top of the first mounting platform is fixedly connected to the first air gripper, the output end of the second motor is fixedly connected to the second mounting platform, the periphery of the second mounting platform is fixedly connected to a limiting plate, the first working frame is installed with a feeding and transporting mechanism at the top away from the first mounting platform, the limiting plate is located above the feeding and transporting mechanism, and first baffles are installed on both sides of the top of the feeding and transporting mechanism.

[0013] Preferably, the conveying mechanism includes a second work frame arranged under the protective cover, a third work frame is provided on one side of the second work frame, a second cylinder is installed on the top of the third work frame, the output end of the second cylinder is fixedly connected to a fourth fixed plate, the top of the fourth fixed plate is installed with a third cylinder, the output end of the third cylinder is fixedly connected to a fifth fixed plate, and a plurality of second air claws are installed on the top of the fifth fixed plate.

[0014] Preferably, the unloading mechanism includes a fourth work frame, a third motor is installed at the bottom of the fourth work frame, the output end of the third motor is fixedly connected to the third mounting platform, the top of the third mounting platform is fixedly connected to the third air gripper, and a unloading and transporting mechanism is installed on the top of one end of the fourth work frame away from the third mounting platform, and second baffles are fixedly connected to the tops of both sides of the unloading and transporting mechanism.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. The structural design of the clamping assembly of the utility model enables the clamping head to clamp the bottle body through the clamping assembly when the bottle is transported to the bottom of the filling nozzle, thereby improving the stability of the bottle body. At the same time, the output end of the filling nozzle enters the bottle, so that the electrolyte can be fully filled into the bottle.

[0017] 2. The utility model adopts the structural design of the waste liquid recovery component, so that the electrolyte remaining on the output end of the filling nozzle is collected by the recovery funnel, and then recovered into the waste liquid recovery box through the waste liquid recovery pipe, so that the residual electrolyte will not drip onto the bottle and the workbench. At the same time, the detachable design of the buckle makes it easier to replace the waste liquid recovery box, thereby improving work efficiency and practicality.

[0018] 3. The entire processing process of the utility model has a high degree of automation, which improves work efficiency and reduces manual labor intensity. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the solutions in the present invention, a brief introduction will be given below to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0020] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0021] Figure 2 This is a schematic structural diagram of the filling component of the present utility model;

[0022] Figure 3This is a schematic structural diagram of the clamping assembly of the present utility model;

[0023] Figure 4 This is a schematic structural diagram of the transmission wheel of the present utility model;

[0024] Figure 5 This is a schematic structural diagram of the waste liquid recovery component of the present utility model;

[0025] Figure 6 This is a schematic structural diagram of the recovery pipe of the present utility model;

[0026] Figure 7 This is a schematic diagram of the buckle structure of the utility model;

[0027] Figure 8 This is a schematic structural diagram of the feeding mechanism of the present utility model;

[0028] Figure 9 This is a schematic structural diagram of the transport mechanism of the present utility model;

[0029] Figure 10 It is a structural schematic diagram of the blanking mechanism of the present utility model.

[0030] The markings in the figure are as follows:

[0031] 1. Mounting plate; 2. Support bracket; 3. Protective cover; 4. Hose; 5. Filling head; 6. Filling nozzle; 7. First fixed plate; 8. First cylinder; 9. Limit support rod; 11. First rack; 13. Switch valve; 15. Drive fixed block; 16. First fixed rod; 17. Clamping support rod; 18. Roller; 19. Clamping head; 20. Threaded rod; 21. Second fixed plate; 22. Second fixed rod; 23. First transmission gear; 24. Third fixed rod; 25. Second transmission gear; 26. Second rack; 27. Third fixed plate; 29. ​​Fourth fixed rod; 30. Recovery funnel; 31. Waste liquid recovery pipe; 32. Recovery pipe; 34. Support rod; 35 , fifth fixed rod; 39, waste liquid recovery box; 40, first working frame; 42, first motor; 43, first mounting platform; 44, first air gripper; 45, loading and transporting mechanism; 46, first baffle; 47, second motor; 48, second mounting platform; 49, limit plate; 50, second working frame; 52, third working frame; 54, second cylinder; 55, fourth fixed plate; 56, third cylinder; 57, fifth fixed plate; 58, second air gripper; 59, fourth working frame; 61, third motor; 62, third mounting platform; 63, third air gripper; 64, unloading and transporting mechanism; 65, second baffle; 66, bottle; 67, third transmission gear; 70, buckle. DETAILED DESCRIPTION

[0032] In order to help those skilled in the art better understand the present invention, the following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of the present invention.

[0033] Please refer to Figure 1-10 The utility model proposes an injection device for electrolyte production, including a support bracket 2, a mounting plate 1 fixed on the top of the support bracket 2, a filling component provided at the bottom of the mounting plate 1, a clamping component and a waste liquid recovery component provided in the filling component, a conveying mechanism provided under the filling component, a loading mechanism provided on one side of the conveying mechanism, and a discharge mechanism provided on the side of the conveying mechanism away from the loading mechanism. Specifically, during filling, the structural design of the clamping component can effectively improve the stability of the filling. Through the structural design of the waste liquid recovery component, the electrolyte remaining on the output end of the filling nozzle 6 is discharged after the filling is completed by dripping on the recovery The waste liquid is recovered on the funnel 30, thereby preventing the electrolyte from corroding the bottles and the workbench, and the waste liquid enters the waste liquid recovery box 39 through the pipeline for storage. When the waste liquid recovery box 39 needs to be replaced, the waste liquid recovery box 39 can be moved upward to be removed and replaced. Through the structural design of the loading mechanism, when the bottle is transported to the designated location, it is transported to the second workbench 50 through the first air claw 44. Through the structural design of the transporting mechanism, the same spacing is maintained on each bottle, so that the bottle can be transported to the filling port more accurately. Through the structural design of the unloading mechanism, the bottle after filling can be effectively moved away.

[0034] Please refer to Figure 2 The bottom of the mounting plate 1 is fixedly connected with a protective cover 3. The filling assembly includes a filling head 5 arranged on the inner side of the protective cover 3. A first cylinder 8 is installed on the top of the mounting plate 1. The output end of the first cylinder 8 passes through the mounting plate 1 and is fixed with a first fixing plate 7. The first fixing plate 7 is fixedly connected to the top of the outer side of the filling head 5. A plurality of limiting support rods 9 are fixedly connected to the top of the first fixing plate 7. The limiting support rods 9 pass through the mounting plate 1 and are slidably connected thereto. The output end of the filling head 5 is connected to the hose 4. The bottom of the filling head 5 is connected with a filling nozzle 6. A switch valve 13 is provided between the filling head 5 and the filling nozzle 6. Specifically, the limiting support rod 9 is slidably connected to the mounting plate 1. When filling is required, the first cylinder 8 is started, so that the first fixing plate 7 drives the filling head 5 to move downward, so that the filling head 5 is stably lowered under the limit of the limiting support rod 9, and the electrolyte flows into the filling head 5 through the hose 4 for filling. By starting the switch valve 13, the electrolyte is filled into the bottle through the filling nozzle 6.

[0035] Please refer to Figure 2-3 The clamping assembly includes a first fixed rod 16 provided on both sides of the filling head 5, and both sides of the filling head 5 are fixedly connected to a driving fixed block 15, and a clamping support rod 17 is rotatably connected on the outer side of the first fixed rod 16, and a roller 18 is rotatably connected to the inner side of the clamping support rod 17 close to the driving fixed block 15. The bottom of the clamping support rod 17 is threadedly connected to a threaded rod 20, and the end of the threaded rod 20 away from the clamping support rod 17 is fixedly connected to a clamping head 19. Specifically, the first fixed rod 16 is fixedly connected to the inner side of the protective cover 3. When the first cylinder 8 is started, the filling head 5 moves downward. At the same time, driving fixed blocks 15 are fixed on both sides of the filling head 5, and the rollers 18 are rollingly connected to the corresponding driving fixed blocks 15, so that under the action of the driving fixed block 15, the rollers 18 roll on the driving fixed block 15, thereby causing the clamping support rod 17 to rotate. At the same time, the clamping head 19 is threadedly connected to the clamping support rod 17 through the threaded rod 20, so that the clamping head 19 moves, thereby effectively clamping the bottle body.

[0036] Please refer to Figure 4-7The waste liquid recovery assembly includes a third fixed plate 27, which is fixedly connected to the inner side of the bottom end of the protective cover 3. The filling head 5 is located above the middle of the third fixed plate 27. The second rack 26 is slidably connected to both sides of the top of the third fixed plate 27. A third fixed rod 24 is fixed between the second transmission gears 25 on both sides. The outer ends of the third fixed rod 24 are rotatably connected to the second fixed plate 21. A third transmission gear 67 is fixed to the outer side of the middle of the second fixed plate 21. The second fixed rod 22 is fixed to the inner side of the first transmission gear 23. One side of the first transmission gear 23 is meshed with the first rack 11. The first rack 11 is fixed on the filling head 5. The bottom of the second rack 26 is fixed with a fourth fixed rod 29, and a fourth fixed rod 29 is fixed between the two fourth fixed rods 29. The recovery funnel 30 is located below the filling nozzle 6. A waste liquid recovery pipe 31 is connected to the bottom of the recovery funnel 30. One end of the waste liquid recovery pipe 31 is connected to a recovery pipe 32. A fifth fixing rod 35 is fixed to the end of the third fixing plate 27 away from the second rack 26. Support rods 34 are fixed on both sides of the bottom of the fifth fixing rod 35. The recovery pipe 32 passes through the support rod 34 and the support bracket 2 and is connected to a waste liquid recovery box 39. The waste liquid recovery box 39 is detachably mounted on one side of the support bracket 2. The upper end of the waste liquid recovery box 39 close to the support bracket 2 is fixedly connected with a plurality of buckles 70. Specifically, the second fixing plate 21 is fixedly connected to the protective cover 3. When filling is required, the filling head 5 moves downward, and the first transmission gear 23 is connected to the first rack 11. The meshing connection causes the first rack 11 fixed on the filling head 5 to drive the first transmission gear 23 to rotate, the second fixed rod 22 is rotatably connected to the second fixed plate 21, and the third transmission gear 67 is meshed with the first transmission gear 23, so that the first transmission gear 23 drives the third transmission gear 67 to rotate, thereby causing the third fixed rod 24 to rotate, and the third fixed rod 24 is rotatably connected to the second fixed plate 21, so that the second transmission gear 25 on both ends of the third fixed rod 24 rotates, and at the same time, the second transmission gear 25 is meshed with the second rack 26, so that the second rack 26 moves under the drive of the second transmission gear 25, thereby causing the second rack 26 to slide in the slide groove opened in the third fixed plate 27, thereby causing the fourth fixed rod 29 And the recovery funnel 30 slides. When the filling head 5 moves upward after filling, the recovery funnel 30 is returned to the bottom of the filling nozzle 6 under the sliding of the second rack 26 through the transmission between the transmission wheels. At the same time, the electrolyte remaining on the filling nozzle 6 drops into the recovery funnel 30 and flows into the waste liquid recovery pipe 31 through the recovery funnel 30. One end of the waste liquid recovery pipe 31 is connected to the recovery pipe 32. The recovery pipe 32 passes through and is fixed in the support rod 34, so that it flows along the recovery pipe 32 into the waste liquid recovery box 39 for recovery and storage. When the waste liquid recovery box 39 needs to be replaced, the buckle 70 is engaged with the support bracket 2, and the waste liquid recovery box 39 is moved upward. The connection between the recovery pipe 32 and the waste liquid recovery box 39 can be removed.

[0037] Please refer to Figure 1-8 The feeding mechanism includes a first working frame 40, a first motor 42 and a second motor 47 are installed at the bottom of the first working frame 40 near one end of the supporting bracket 2, the output end of the first motor 42 is fixedly connected to the first mounting platform 43, the top of the first mounting platform 43 is fixedly connected to the first air claw 44, the output end of the second motor 47 is fixedly connected to the second mounting platform 48, the periphery of the second mounting platform 48 is fixedly connected to the limiting plate 49, the top of the first working frame 40 away from the first mounting platform 43 is installed with a feeding and transporting mechanism 45, and first baffles 46 are installed on both sides of the top of the feeding and transporting mechanism 45. Specifically, the limiting plates 49 are located at the first Below an air gripper 44, a limit plate 49 is located above the feeding and transporting mechanism 45. When loading, the feeding and transporting mechanism 45 is started, and the bottle is transported to the limit plate 49 by the feeding and transporting mechanism 45, and the transportation is stopped. Then, the second motor 47 is started, so that the second motor 47 drives the second mounting platform 48 to rotate, thereby rotating the limit plate 49, and starting the first air gripper 44 so that the first air gripper 44 clamps the bottle body. Then, the first motor 42 is started, and the first motor 42 drives the first mounting platform 43 to rotate, and then the first mounting platform 43 drives the first air gripper 44 to rotate, thereby placing the bottle on the second working frame 50.

[0038] Please refer to Figure 1-9 The transport mechanism includes a second working frame 50 provided under the protective cover 3, a third working frame 52 is provided on one side of the second working frame 50, a second air cylinder 54 is installed on the top of the third working frame 52, an output end of the second air cylinder 54 is fixedly connected to a fourth fixing plate 55, a third air cylinder 56 is installed on the top of the fourth fixing plate 55, an output end of the third air cylinder 56 is fixedly connected to a fifth fixing plate 57, a plurality of second air claws 58 are installed on the top of the fifth fixing plate 57, specifically, when it is necessary to transport the bottle to the filling port, the second air cylinder 54 and the third air claw 58 are activated. The third air cylinder 56 causes the fifth fixing plate 57 and the second air claw 58 to slide to one side. When the specified distance is reached, the telescopic length of the second air cylinder 54 is adjusted, and the second air claw 58 is started so that the second air claw 58 clamps the bottle. The telescopic length of the second cylinder 54 is adjusted again, and then the third cylinder 56 causes the fifth fixing plate 57 and the second air claw 58 to slide to the other side so that the second air claw 58 clamps the bottle under the filling nozzle 6. The telescopic length of the second cylinder 54 is adjusted again, and the second air claw 58 places the bottle at the specified position.

[0039] Please refer to Figure 1-10The unloading mechanism includes a fourth working frame 59, a third motor 61 is installed at the bottom of the fourth working frame 59, the output end of the third motor 61 is fixedly connected to the third mounting platform 62, the top of the third mounting platform 62 is fixedly connected to the third air gripper 63, and the top of the fourth working frame 59 away from the third mounting platform 62 is installed with an unloading and transporting mechanism 64. The tops of both sides of the unloading and transporting mechanism 64 are fixedly connected to second baffles 65. Specifically, when the bottles are full and reach the specified position, the third motor 61 is started, so that the third motor 61 drives the third mounting platform 62 to rotate, and at the same time, the third air gripper 63 is started, so that the third air gripper 63 clamps the bottle body, so that the third mounting platform 62 drives the third air gripper 63 to rotate, and the bottle is placed on the unloading and transporting mechanism 64 for transportation.

[0040] The specific working principle of the electrolyte production injection device provided by the utility model is:

[0041] When using this device, first, the feeding and transporting mechanism 45 is started to transport the bottle to the limiting plate 49 and stop. Then, the second motor 47 is started to rotate the second mounting platform 48, driving the limiting plate 49 to rotate toward the side of the first mounting platform 43. The first air gripper 44 is started to clamp the bottle. Then, the first motor 42 is started to drive the first mounting platform 43 to rotate. The first mounting platform 43 then drives the first air gripper 44 to rotate, and the bottle is placed on the second working frame 50.

[0042] The second air cylinder 54 is activated to raise its output end, and the third air cylinder 56 is activated to move the output end of the third air cylinder 56 to one side first. The second air cylinder 54 is then adjusted to lower its output end. The second air gripper 58 is then activated to clamp the bottle. The second air cylinder 54 is then adjusted again to raise its output end. The third air cylinder 56 is then adjusted again to move the third air cylinder 56 to the other side. Finally, the second air cylinder 54 is adjusted to lower its output end to transport the bottle to the designated location.

[0043] Start the first cylinder 8, and the first fixed plate 7 on its output end pushes the filling head 5 down. The design of the limit support rod 9 provides good guidance for the descent of the filling head 5, so that the roller 18 rolls on the driving fixed block 15, thereby moving the clamping support rod 17, so that the clamping head 19 clamps the bottle body for stability, and then starts the switch valve 13, and the electrolyte is filled through the filling nozzle 6. During the descent of the filling head 5, the first rack 11 drives the first transmission gear 23 to rotate, so that the first transmission gear 23 drives the third transmission gear 67 to rotate, so that the third transmission gear 67 drives the second transmission gears at both ends of the third fixed rod 24. The transmission gear 25 rotates, so that the second rack 26 slides to one side, and at the same time, the fourth fixing rod 29 and the recovery funnel 30 also slide to the same side, so that the filling head 5 does not affect the descent of the filling head 5 during the descent process. After the filling is completed, the switch valve 13 is closed, and the filling head 5 moves upward by adjusting the first cylinder 8. At the same time, the transmission between the transmission wheels causes the recovery funnel 30 to slide back to the bottom of the filling nozzle 6, thereby collecting the electrolyte remaining on the filling nozzle 6, and the electrolyte flows into the recovery pipe 32 through the waste liquid recovery pipe 31 at the bottom of the recovery funnel 30, and then flows into the waste liquid recovery tank 39 through the recovery pipe 32 for recovery and storage;

[0044] Then, the third motor 61 is started to rotate the third mounting platform 62, thereby driving the third air gripper 63 to rotate to the specified position, and then the third air gripper 63 is started to clamp the bottle. Then, the third motor 61 is used to rotate the third air gripper 63 to the unloading and transporting mechanism 64. The third air gripper 63 is released, and then the unloading and transporting mechanism 64 is started to transport the bottle away.

[0045] In this utility model, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection, or communication; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

[0046] Obviously, the embodiments described above are only some of the embodiments of the present invention, rather than all of the embodiments. The preferred embodiments of the present invention are given in the accompanying drawings, but they do not limit the patent scope of the present invention. The present invention can be implemented in many different forms. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure of the present invention more thorough and comprehensive. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned specific embodiments, or to make equivalent replacements for some of the technical features therein. Any equivalent structure made using the contents of the present invention specification and the accompanying drawings, directly or indirectly used in other related technical fields, is also within the scope of protection of the present invention patent.

Claims

1. An electrolyte production injection device, characterized in that: The invention comprises a support bracket (2), a mounting plate (1) being fixed on the top of the support bracket (2), a filling assembly being provided at the bottom of the mounting plate (1), a clamping assembly and a waste liquid recovery assembly being provided inside the filling assembly, a conveying mechanism being provided below the filling assembly, a loading mechanism being provided on one side of the conveying mechanism, and a unloading mechanism being provided on the side of the conveying mechanism away from the loading mechanism.

2. The electrolyte production injection device according to claim 1, characterized in that: The bottom of the mounting plate (1) is fixedly connected to a protective cover (3); the filling assembly comprises a filling head (5) arranged inside the protective cover (3); a first cylinder (8) is installed on the top of the mounting plate (1); the output end of the first cylinder (8) passes through the mounting plate (1) and is fixed with a first fixed plate (7); the first fixed plate (7) is fixedly connected to the top of the outer side of the filling head (5); a plurality of limiting support rods (9) are fixedly connected to the top of the first fixed plate (7); the limiting support rods (9) pass through the mounting plate (1) and are slidably connected thereto; the input end of the filling head (5) is connected to a hose (4); the bottom of the filling head (5) is connected to a filling nozzle (6); and a switch valve (13) is provided between the filling head (5) and the filling nozzle (6).

3. The electrolyte production injection device according to claim 1, characterized in that: The clamping assembly comprises a first fixing rod (16) arranged on both sides of the filling head (5), the first fixing rod (16) being fixedly connected to the inner side of the protective cover (3), the driving fixing block (15) being fixedly connected to both sides of the filling head (5), a clamping support rod (17) being rotatably connected on the outer side of the first fixing rod (16), a roller (18) being rotatably connected in one end of the clamping support rod (17) close to the driving fixing block (15), the roller (18) being rollingly connected to the corresponding driving fixing block (15), a threaded rod (20) being threadedly connected to the bottom of the clamping support rod (17), and a clamping head (19) being fixedly connected to one end of the threaded rod (20) away from the clamping support rod (17).

4. The electrolyte production injection device according to claim 1, characterized in that: The waste liquid recovery component includes a third fixed plate (27), the third fixed plate (27) is fixedly connected to the inner side of the bottom end of the protective cover (3), the filling head (5) is located above the middle of the third fixed plate (27), the top of the third fixed plate (27) is slidably connected to the second rack (26), the top of the second rack (26) is meshed with the second transmission gear (25), a third fixed rod (24) is fixed between the second transmission gears (25) on both sides, the outer ends of the third fixed rod (24) are rotatably connected to the second fixed plate (21), the second fixed plate (21) is fixedly connected to the protective cover (3), a third transmission gear (67) is fixed to the outer side of the middle of the second fixed plate (21), the top of the third transmission gear (67) is meshed with the first transmission gear (23), a second fixed rod (22) is fixed to the inner side of the first transmission gear (23), the second fixed rod (22) is connected to the second fixed plate (21) ) is rotatably connected, one side of the first transmission gear (23) is meshedly connected with the first rack (11), the first rack (11) is fixed on the filling head (5), the bottom of the second rack (26) is fixed with a fourth fixed rod (29), a recovery funnel (30) is fixed between the two fourth fixed rods (29), the recovery funnel (30) is located below the filling nozzle (6), the bottom of the recovery funnel (30) is connected with a waste liquid recovery pipe (31), one end of the waste liquid recovery pipe (31) is connected with a recovery pipe (32), the end of the third fixed plate (27) away from the second rack (26) is fixed with a fifth fixed rod (35), support rods (34) are fixed on both sides of the bottom of the fifth fixed rod (35), the recovery pipe (32) passes through the support rod (34) and the support bracket (2) and is connected to a waste liquid recovery box (39), and the waste liquid recovery box (39) is detachably mounted on one side of the support bracket (2).

5. The electrolyte production injection device according to claim 4, characterized in that: A plurality of buckles (70) are fixedly connected to the upper end of the waste liquid recovery box (39) on one side close to the support bracket (2), and the buckles (70) are engaged and connected with the support bracket (2).

6. The electrolyte production injection device according to claim 1, characterized in that: The feeding mechanism comprises a first working frame (40), a first motor (42) and a second motor (47) are installed at the bottom of the first working frame (40) near one end of the supporting bracket (2), the output end of the first motor (42) is fixedly connected to the first mounting platform (43), the top of the first mounting platform (43) is fixedly connected to the first air claw (44), the output end of the second motor (47) is fixedly connected to the second mounting platform (48), the periphery of the second mounting platform (48) is fixedly connected to the limiting plate (49), a feeding and transporting mechanism (45) is installed at the top of the first working frame (40) away from the first mounting platform (43), the limiting plate (49) is located above the feeding and transporting mechanism (45), and first baffles (46) are installed on both sides of the top of the feeding and transporting mechanism (45).

7. The electrolyte production injection device according to claim 1, characterized in that: The transport mechanism comprises a second working frame (50) arranged below the protective cover (3); a third working frame (52) is provided on one side of the second working frame (50); a second air cylinder (54) is installed on the top of the third working frame (52); an output end of the second air cylinder (54) is fixedly connected to a fourth fixed plate (55); a third air cylinder (56) is installed on the top of the fourth fixed plate (55); an output end of the third air cylinder (56) is fixedly connected to a fifth fixed plate (57); and a plurality of second air claws (58) are installed on the top of the fifth fixed plate (57).

8. The electrolyte production injection device according to claim 1, characterized in that: The unloading mechanism comprises a fourth working frame (59), a third motor (61) is installed at the bottom of the fourth working frame (59), an output end of the third motor (61) is fixedly connected to a third mounting platform (62), a third air gripper (63) is fixedly connected to the top of the third mounting platform (62), a unloading transport mechanism (64) is installed at the top of one end of the fourth working frame (59) away from the third mounting platform (62), and second baffles (65) are fixedly connected to the tops of both sides of the unloading transport mechanism (64).