Filling device for conductive coating production

By introducing positioning mechanisms, stretching components and driving components into the conductive coating filling device, the problem of uneven filling quantity caused by the offset of the coating barrel is solved, precise control of the filling quantity and automation of the production process are realized, and coating barrels of different specifications are adapted to coating barrels.

CN120483022AInactive Publication Date: 2025-08-15ANHUI KAILIN ADVANCED MATERIAL CO LTD +1
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Patent Information

Application Number
CN202510945550.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-09
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The paint barrels in existing conductive coating filling devices are prone to deviation, resulting in uneven filling volume and affecting the consistency of product quality.

Method used

A filling device including a positioning mechanism, a propelling assembly and a driving assembly is designed. The central position of the paint bucket is adjusted through the positioning mechanism to align the filling tube with the center of the paint bucket. The coordination between the propelling assembly and the driving assembly ensures that the filling tube is consistent with the center of the paint bucket and avoids position deviation.

Benefits of technology

It realizes accurate control of the filling amount of paint, improves the accuracy and consistency of the production process, improves the working efficiency and automation level of the filling device, and adapts to paint buckets of different sizes and specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of coating filling, in particular to a filling device for conductive coating production, which comprises a storage tank fixedly mounted on a rack and a conveyor arranged on a machine body, the bottom of the storage tank is fixedly communicated with a filling pipe, and a positioning mechanism for adjusting the center position of a coating barrel to align the filling pipe is arranged on the rack. The positioning mechanism comprises a supporting column fixedly arranged on one side of the rack and a connecting frame detachably installed on the supporting column, a disc shell is arranged at the bottom of the connecting frame, and a rotating disc is rotationally arranged at the top of the disc shell through a bearing. According to the coating filling device, it can be guaranteed that the center position of the filling pipe is always kept consistent with the center position of the coating barrel, the coating filling amount can be accurately controlled, uneven coating distribution caused by position deviation is avoided, the precision and consistency in the production process are improved, meanwhile, accurate filling can be automatically completed, and the production efficiency is improved. And unnecessary pause or adjustment in the filling process is avoided, so that the working efficiency of the filling device is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of coating filling, and in particular to a filling device for producing conductive coating. Background Art

[0002] Currently, the finished conductive paint is added to a separate container through a filling device for storage to ensure that the quality of the paint is not affected, so as to facilitate subsequent transportation and use. The existing filling device often uses a conveyor belt to transport the paint bucket to the bottom of the filling port for filling. However, the paint bucket is prone to deviation during the transportation process, resulting in inaccurate positioning of the filling port, which may result in excessive or insufficient paint, resulting in uneven filling of the paint bucket and affecting product quality consistency. Summary of the Invention

[0003] In view of the shortcomings of the prior art, the present invention provides a filling device for conductive paint production, which solves the problem of uneven filling amount caused by the deviation of the paint bucket during filling in the prior art.

[0004] In order to solve the above technical problems, the present invention provides the following technical solutions: a filling device for producing conductive coatings, comprising a storage tank fixedly mounted on a frame and a conveyor arranged on a machine body, the bottom of the storage tank is fixedly connected to a filling pipe, and a positioning mechanism for adjusting the center position of the coating bucket to align it with the filling pipe is provided on the frame, the positioning mechanism comprises a support column fixedly mounted on one side of the frame and a connecting frame detachably mounted on the support column, a disc shell is provided at the bottom of the connecting frame, a rotating disc is rotatably provided on the top of the disc shell through a bearing, and a support assembly for positioning the center position of the coating bucket is provided on the inner side of the disc shell, the positioning mechanism also includes a driving assembly provided on the connecting frame for driving the support assembly to operate.

[0005] Furthermore, the expansion assembly includes two symmetrically arranged sliding grooves 1 and two symmetrically arranged sliding grooves 2 on the disc shell. The two sliding grooves 1 and sliding groove 2 are evenly spaced along the circumference of the disc shell, and sliding groove 1 is located at the bottom of sliding groove 2 in the vertical direction.

[0006] Furthermore, movable blocks 1 are slidably provided on the inner sides of the two sliding grooves 1, and racks 1 that are staggered with each other are provided on the sides of the two movable blocks 1 that are close to each other, and gears 1 are meshed with each other on the ends of the two racks 1 that are away from each other.

[0007] Furthermore, movable blocks 2 are respectively slidably provided on the inner sides of the two sliding grooves 2, and racks 2 that are staggered with each other are respectively provided on the side where the two movable blocks 2 are close to each other. Rack 2 is located on the top of rack 1, and rack 2 and rack 1 are vertically arranged on the inner side of the disc shell. Gears 2 are respectively meshed with each other at the ends of the two racks 2 that are away from each other, and a transmission assembly for synchronously driving the two gears 1 and gear 2 to rotate is provided on the inner side of the disc shell.

[0008] Furthermore, the transmission assembly includes a rotating shaft fixed at the axis of the two gears one and two, and the upper and lower ends of the rotating shaft are rotatably connected to the upper and lower inner walls of the disc shell through bearings, and transmission gears are fixed to the tops of the four rotating shafts.

[0009] Furthermore, a ring gear is provided on the inner top of the disc shell, and the ring gear is meshed with the four transmission gears. A rotating ring body fixed to the bottom of the rotating disc is fixed at the axis of the ring gear.

[0010] Furthermore, the driving assembly includes a cylinder fixedly mounted on a connecting frame, the output end of the cylinder passes through the connecting frame and is fixed with a movable vertical rod, a limit plate is fixed on the movable vertical rod, the bottom ends of the limit plate are respectively fixed with connecting columns fixed to the disc shell, and a threaded shaft is fixed at the bottom end of the movable vertical rod.

[0011] Furthermore, the bottom of the threaded shaft is threadedly connected to a threaded vertical tube, and the top of the threaded vertical tube is provided with a support plate fixed to the connecting frame through a bearing rotation, and a plurality of limiting vertical grooves distributed in a circumferential array are opened on the tube wall of the threaded vertical tube, and a limiting vertical shaft fixed to the rotating disk is slidably provided on the inner side of the limiting vertical groove.

[0012] Furthermore, a limiting block that is engaged with the filling tube is fixedly provided on one side of the bottom of the disc shell.

[0013] By means of the above technical solution, the present invention provides a filling device for conductive coating production, which has at least the following beneficial effects: 1. The present invention adjusts the filling position of the paint bucket by providing a positioning mechanism, so that the filling tube is aligned with the center position of the paint bucket. The center position of the filling tube on the conveyor is adjusted by the mutual cooperation of the driving component and the expansion component, which helps to ensure the consistency of each filling amount, avoid uneven distribution of paint due to position offset, improve the accuracy and consistency of the production process, and automatically complete accurate filling, avoid unnecessary pauses or adjustments during the filling process, thereby improving the working efficiency of the filling device.

[0014] 2. The present invention adjusts the center position of the paint bucket by providing a spreading assembly. When the disc shell is extended into the paint bucket, the two movable blocks 1 and 2 move outward, so that the axis of the paint bucket and the disc shell are on the same vertical axis, thereby ensuring that the center position of the filling tube and the paint bucket are always consistent. This can accurately control the filling amount of the paint, which not only improves production efficiency but also ensures the stability of the paint filling quality.

[0015] 3. The present invention drives the expansion component to adjust the center position of the paint bucket by setting a driving component, avoiding manual intervention and multiple adjustments, thereby greatly improving the automation level of the filling process, reducing downtime, and improving the production efficiency of the filling device. It can also adapt to paint buckets of different sizes and specifications, with greater flexibility, suitable for various production needs, and improving the scope of application of the filling device. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings: Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of the local structure of the present invention; Figure 3 It is a partial cutaway schematic diagram of the present invention; Figure 4 for Figure 3 A schematic diagram of the enlarged structure of part A; Figure 5 This is an exploded schematic diagram of the propping assembly of the present invention; Figure 6 Schematic diagram of the structure of the drive assembly of the present invention.

[0017] In the figure: 1. Frame; 2. Storage tank; 3. Positioning mechanism; 31. Support column; 32. Connecting frame; 33. Disc housing; 34. Limiting block; 35. Rotating disc; 36. Spreading assembly; 361. Sliding slot 1; 362. Sliding slot 2; 363. Movable block 1; 364. Rack 1; 365. Gear 1; 366. Movable block 2; 367. Rack 2; 368. Gear 2; 369, transmission assembly; 3691, rotating shaft; 3692, transmission gear; 3693, ring gear; 3694, rotating ring body; 37. Drive assembly; 371. Cylinder; 372. Movable vertical rod; 373. Limit plate; 374. Connecting column; 375. Threaded shaft; 376. Threaded vertical pipe; 377. Limit vertical shaft; 4. Conveyor; 5. Filling tube. DETAILED DESCRIPTION

[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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 are within the scope of protection of the present invention.

[0019] Example 1 Since the traditional filling device is prone to the situation that the paint bucket deviates from the filling port, which affects the filling amount of the paint bucket, in order to ensure the consistency of each filling amount, avoid uneven distribution of paint due to position deviation, and improve the accuracy and consistency of the production process, such as Figure 1 - Figure 4 The figure shows an embodiment of the present invention: a filling device for producing conductive paint, which consists of a frame 1, a storage tank 2, a conveyor 4, a filling pipe 5 and a positioning mechanism 3. The storage tank 2 is fixedly installed at one end of the frame 1 for storing conductive paint, the conveyor 4 is provided on the body for conveying the paint bucket to the filling station, the filling pipe 5 is fixedly installed at the bottom of the storage tank 2, and the filling pipe 5 is also equipped with a solenoid valve for controlling the filling of the conductive paint.

[0020] The positioning mechanism 3 is provided on the frame 1 for adjusting the center position of the filling tube 5 in the paint bucket so that the filling tube 5 is aligned with the center position of the paint bucket. Specifically, the positioning mechanism 3 includes a support column 31 fixedly provided on one side of the frame 1 and a connecting frame 32 detachably mounted on the support column 31. A disc shell 33 is provided at the bottom of the connecting frame 32. The filling port at the bottom end of the filling tube 5 is on the same axis as the axis of the disc shell 33, and a limiting block 34 is fixedly provided on one side of the bottom of the disc shell 33 for engaging with the filling tube 5. When the disc shell 33 moves downward, there is an excess part in the middle of the filling tube 5, which does not affect the lifting and lowering of the filling port of the filling tube 5. The limiting block 34 fixes the filling port of the filling tube 5 at the axial position of the bottom of the disc shell 33. When the paint bucket and the disc shell 33 are on the same axis, the filling port of the filling tube 5 is on the same axis as the center position of the paint bucket. A rotating disk 35 is provided on the top of the disc shell 33 for rotation through a bearing.

[0021] In order to ensure that the center position of the filling tube 5 is always consistent with that of the paint bucket and the filling amount of the paint is accurately controlled, a support assembly 36 for locating the center position of the paint bucket is provided on the inner side of the disc shell 33. The support assembly 36 includes two symmetrically arranged sliding grooves 1 361 provided on the side wall of the disc shell 33 and two symmetrically arranged sliding grooves 2 362 provided on the side wall of the disc shell 33. The two sliding grooves 1 361 and the sliding groove 2 362 are evenly spaced along the circumference of the disc shell 33, and the sliding groove 1 361 is located at the bottom of the sliding groove 2 362 in the vertical direction. The inner sides of the two sliding grooves 1 361 are respectively slidably provided with a plurality of support members. A movable block 1 363 is provided, and a staggered rack 1 364 is respectively provided on the side where the two movable blocks 1 363 are close to each other, and a gear 1 365 is respectively meshed with the ends of the two rack 1 364 away from each other. A movable block 2 366 is respectively slidably provided on the inner sides of the two sliding grooves 2 362, and a staggered rack 2 367 is respectively provided on the side where the two movable blocks 2 366 are close to each other. The rack 2 367 is located at the top of the rack 1 364, and the rack 2 367 and the rack 1 364 are vertically arranged on the inner side of the disc shell 33, and the ends of the two rack 2 367 away from each other are respectively meshed with the gear 2 368.

[0022] When the two gears 1 365 and gear 2 368 rotate at the same time, the two racks 1 364 are driven to move away from each other, and the two racks 2 367 are driven to move away from each other. The rack 1 364 pushes the movable block 1 363 to move, and the rack 2 367 pushes the movable block 2 366 to move, pushing the paint bucket to move so that the center position of the paint bucket is aligned with the filling port of the filling tube 5.

[0023] Example 2 In order to improve the automation level of the filling process and reduce downtime, such as Figure 6 The figure is an embodiment of the present invention: the positioning mechanism 3 also includes a driving assembly 37 arranged on the connecting frame 32 for driving the expansion assembly 36 to operate, the driving assembly 37 includes a cylinder 371 fixedly mounted on the connecting frame 32, the output end of the cylinder 371 passes through the connecting frame 32 and is fixedly provided with a movable vertical rod 372, a limit plate 373 is fixed on the movable vertical rod 372, the bottom ends of the limit plate 373 are respectively fixed with connecting columns 374 fixed to the disc shell 33, a threaded shaft 375 is fixed to the bottom end of the movable vertical rod 372, the bottom of the threaded shaft 375 is threadedly connected to a threaded vertical pipe 376, and the top of the threaded vertical pipe 376 is rotatably provided with a support plate fixed to the connecting frame 32 through a bearing, a plurality of limit vertical grooves distributed in a circumferential array are opened on the tube wall of the threaded vertical pipe 376, and a limit vertical shaft 377 fixed to the rotating disk 35 is slidably provided on the inner side of the limit vertical groove.

[0024] By starting the cylinder 371, the output end of the cylinder 371 pushes the movable vertical rod 372 and the threaded shaft 375 to move downward, the threaded shaft 375 drives the threaded vertical pipe 376 to rotate, and the threaded vertical pipe 376 drives the rotating disk 35 to rotate through the limiting vertical shaft 377. At the same time, the movable vertical rod 372 drives the limiting disk 373 and the disc shell 33 to move downward, and the disc shell 33 drives the rotating disk 35 to move downward, and then drives the movable block 1 363 and the movable block 2 366 to move through the transmission assembly 369 to adjust the center position of the paint bucket.

[0025] Example 3 In order to make the paint bucket adjustment more convenient and stable, it is on the same vertical axis as the axis of the disc shell 33, and can adapt to paint buckets of different sizes and specifications, such as Figure 5 The figure shows an embodiment of the present invention: a transmission assembly 369 for synchronously driving the two gears 1 365 and the gear 2 368 to rotate is provided on the inner side of the disc shell 33, and the transmission assembly 369 includes a rotating shaft 3691 respectively fixed at the axis of the two gears 1 365 and the gear 2 368, and the upper and lower ends of the rotating shaft 3691 are respectively rotatably connected to the upper and lower inner walls of the disc shell 33 through bearings, and the tops of the four rotating shafts 3691 are respectively fixed with transmission gears 3692, and a ring gear 3693 is provided on the inner top of the disc shell 33, and the ring gear 3693 is meshed with the four transmission gears 3692, and a rotating ring body 3694 fixed to the bottom of the rotating disk 35 is fixed at the axis of the ring gear 3693.

[0026] When the rotating disk 35 rotates, the ring gear 3693 is driven to rotate by rotating the ring body 3694. The ring gear 3693 drives the four transmission gears 3692 to rotate simultaneously, driving the four rotating shafts 3691 to rotate. The four rotating shafts 3691 respectively drive the two gears 1 365 and the gear 2 368 to rotate simultaneously, driving the two racks 1 364 and the rack 2 367 to move, thereby driving the movable block 1 363 and the movable block 2 366 to move, thereby adjusting the center position of the paint bucket.

[0027] The present invention pushes the disc shell 33 downward into the paint bucket through the driving component 37, while driving the rotating ring 3694 of the transmission component 369 to rotate, and at the same time cooperates with the expansion component 36 to adjust the position of the paint bucket, so that the filling tube 5 and the center position of the paint bucket are always consistent, ensuring the uniformity of each filling amount, avoiding uneven distribution of paint due to position offset, and improving the accuracy of the production process.

[0028] When the filling device is in use, the paint bucket is conveyed to the bottom of the filling port of the filling tube 5 by the conveyor 4, and the cylinder 371 is turned on. The output end of the cylinder 371 pushes the movable vertical rod 372 to move downward, and the movable vertical rod 372 drives the limiting plate 373 and the disc shell 33 to move downward. When the disc shell 33 extends downward into the paint bucket, the movable vertical rod 372 pushes the threaded shaft 375 to move downward, and the threaded shaft 375 is inserted downward into the threaded vertical shaft, driving the threaded vertical pipe 376 to rotate, and the threaded vertical pipe 376 drives the limiting vertical shaft 377 to rotate, and the limiting vertical shaft 377 drives the rotating disk 35 to rotate, and the rotating disk 35 drives the rotating ring body 3694 at the bottom thereof to rotate, and the rotating ring body 3694 drives the ring gear 3693 to rotate, and the ring gear 3693 The four transmission gears 3692 are synchronously driven to rotate at the same time. The four transmission gears 3692 respectively drive the rotating shaft 3691 at its axis to rotate. The four rotating shafts 3691 respectively drive the two gears 1 365 and the gear 2 368 to rotate at the same time. The two gears 1 365 respectively drive the rack 1 364 meshing therewith to move away from each other. The two gears 2 368 respectively drive the rack 2 367 meshing therewith to move away from each other. The rack 1 364 pushes the movable block 1 363 at one end thereof to move, and the rack 2 367 pushes the movable block 2 366 at one end thereof to move, thereby driving the movable blocks 1 363 and 2 366 to move, adjusting the center position of the paint bucket and the filling port of the filling tube 5 to be on the same axis, and then accurate filling can be performed.

[0029] It should be noted that, in this article, the terms "comprises", "includes" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or apparatus.

[0030] While embodiments of the present invention have been shown and described, it will be appreciated 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 invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A filling device for producing conductive coatings, comprising a storage tank (2) fixedly mounted on a frame (1) and a conveyor (4) arranged on the body, characterized in that: The bottom of the storage tank (2) is fixedly connected to a filling pipe (5), and a positioning mechanism (3) for adjusting the center position of the paint bucket and aligning it with the filling pipe (5) is provided on the frame (1); The positioning mechanism (3) comprises a support column (31) fixedly arranged on one side of the frame (1) and a connecting frame (32) detachably mounted on the support column (31); a disc housing (33) is arranged at the bottom of the connecting frame (32); a rotating disk (35) is rotatably arranged on the top of the disc housing (33) via a bearing; a spreading assembly (36) for locating the center position of the paint bucket is arranged on the inner side of the disc housing (33); and the positioning mechanism (3) further comprises a driving assembly (37) arranged on the connecting frame (32) for driving the spreading assembly (36) to operate.

2. A conductive coating production filling device according to claim 1, characterized in that: The support assembly (36) includes two symmetrically arranged sliding grooves (361) provided on the disc shell (33) and two symmetrically arranged sliding grooves (362) provided on the disc shell (33). The two sliding grooves (361) and the sliding grooves (362) are evenly spaced along the circumference of the disc shell (33), and the sliding groove (361) is located at the bottom of the sliding groove (362) in the vertical direction.

3. A conductive coating production filling device according to claim 2, characterized in that: A movable block (363) is slidably provided on the inner sides of the two sliding grooves (361), and a rack (364) interlaced with each other is provided on the side where the two movable blocks (363) are close to each other, and a gear (365) is meshed with the end where the two racks (364) are away from each other.

4. A conductive coating production filling device according to claim 3, characterized in that: A movable block 2 (366) is slidably provided on the inner sides of the two sliding grooves 2 (362), and a staggered rack 2 (367) is provided on the side where the two movable blocks 2 (366) are close to each other. The rack 2 (367) is located on the top of the rack 1 (364), and the rack 2 (367) and the rack 1 (364) are vertically arranged on the inner side of the disc shell (33). The ends of the two racks 2 (367) that are away from each other are respectively meshed with a gear 2 (368). A transmission assembly (369) for driving the two gears 1 (365) and the gear 2 (368) to rotate synchronously is provided on the inner side of the disc shell (33).

5. A conductive coating production filling device according to claim 4, characterized in that: The transmission assembly (369) includes a rotating shaft (3691) fixed at the axis of two gears (365) and gear (368), and the upper and lower ends of the rotating shaft (3691) are respectively connected to the upper and lower inner walls of the disc shell (33) through bearings. The tops of the four rotating shafts (3691) are respectively fixed with transmission gears (3692).

6. A conductive coating production filling device according to claim 5, characterized in that: A ring gear (3693) is provided on the inner top of the disc housing (33), and the ring gear (3693) is meshedly connected with the four transmission gears (3692). A rotating ring body (3694) is fixedly provided at the axis of the ring gear (3693), and the rotating ring body (3694) is fixed to the bottom of the rotating disc (35).

7. The conductive coating production filling device according to claim 1, characterized in that: The driving assembly (37) includes a cylinder (371) fixedly mounted on the connecting frame (32), an output end of the cylinder (371) passes through the connecting frame (32) and is fixedly provided with a movable vertical rod (372), a limit plate (373) is fixed on the movable vertical rod (372), and connecting columns (374) fixed to the disc housing (33) are respectively fixed at both ends of the bottom of the limit plate (373), and a threaded shaft (375) is fixed at the bottom end of the movable vertical rod (372).

8. A conductive coating production filling device according to claim 7, characterized in that: The bottom of the threaded shaft (375) is threadedly connected to a threaded vertical tube (376), and a support plate fixed to the connecting frame (32) is rotatably provided on the top of the threaded vertical tube (376) via a bearing. A plurality of limiting vertical grooves distributed in a circumferential array are provided on the wall of the threaded vertical tube (376), and a limiting vertical shaft (377) fixed to the rotating disk (35) is slidably provided inside the limiting vertical groove.

9. The conductive coating production filling device according to claim 1, characterized in that: A limiting block (34) that engages with the filling tube (5) is fixedly provided on one side of the bottom of the disc housing (33).