Automatic bottom sealing and flushing equipment for tubular positive grid
By designing an automatic bottom sealing and rinsing device for tubular positive plate grids, combining a bottom sealing mechanism and a rinsing mechanism, the problems of inconsistent bottom sealing and incomplete cleaning in traditional equipment are solved, achieving efficient and stable bottom sealing and cleaning results.
Patent Information
- Application Number
- CN202423183597.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Traditional plate grid sealing and flushing equipment lacks positioning functions and effective drainage design, resulting in inconsistent sealing, water waste and pollution. Existing automated equipment is still insufficient in terms of quality control and efficiency.
An automatic bottom sealing and rinsing device for tubular positive plate grids was designed, comprising a bottom sealing mechanism and a rinsing mechanism. It adopts upper and lower sealing plates, a positioning mechanism, a rotatable placement plate, and a moving rinsing guide rail to achieve stable bottom sealing and comprehensive rinsing of the plate grids.
It improves the quality and efficiency of bottom sealing, ensures the consistency of bottom sealing, reduces water waste and pollution, and enables rapid cleaning of the grating surface and gaps.
Smart Images

Figure CN223669774U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the positive plate sealing technology field, concretely relates to tubular positive plate automatic sealing and flushing equipment. BACKGROUND
[0002] In the traditional plate processing technology, the sealing and flushing process of tubular positive plate is essential. The traditional sealing device usually does not have good positioning function, and cannot ensure that the position of the plate is completely consistent every time the sealing is performed, thereby affecting the quality of the sealing. The flushing equipment lacks effective drainage design, causing waste of water resources and pollution of the working environment.
[0003] Although some existing automatic equipment improves work efficiency to some extent, it still has deficiencies in the quality control of sealing and flushing. For example, the positive plate sealing system disclosed in CN117558880A provides a technical solution for automatic sealing and flushing of the plate, but the structure and plate running path are relatively complex, the running time is relatively long, and the efficiency is relatively low. Moreover, only one side of the plate is simply cleaned, and the attached slurry cannot be completely removed, especially in the gaps of the plate, which may affect the battery performance. There are also problems such as inconsistent sealing, which will affect the quality of the final product and the environmental protection standard. SUMMARY
[0004] The utility model solves the technical problems of overcoming the deficiencies of the prior art and providing tubular positive plate automatic sealing and flushing equipment.
[0005] The technical scheme adopted by the present application to solve the technical problems is as follows: the tubular positive plate automatic sealing and flushing equipment comprises an operation table, and a sealing mechanism and a flushing mechanism are arranged on the operation table.
[0006] The sealing mechanism comprises upper and lower sealing plates that can be opened and closed, and a driving device that controls the opening and closing of the upper and lower sealing plates.
[0007] The flushing mechanism comprises a support device for supporting the plate and a flushing device for flushing the plate on the support device.
[0008] In the present application, the upper and lower sealing plates are opened, the plate after extrusion is placed between the upper and lower sealing plates, then the driving device controls the closing of the upper and lower sealing plates, the plate end to be sealed is compacted to realize the sealing operation of the plate after extrusion, then the sealed plate is transferred to the support device of the flushing mechanism, and the slurry attached to the surface of the plate is flushed by the flushing device, thereby realizing the automatic sealing and flushing operation of the plate.
[0009] The upper and lower sealing plates comprise upper and lower sealing plates arranged oppositely.
[0010] The driving device comprises a closing cylinder which is located above the upper sealing plate and the telescopic end of which is fixedly connected with the upper sealing plate. When sealing the bottom, the end of the grid to be sealed after being extruded is placed between the upper and lower sealing plates, and then the upper sealing plate is driven downward by the closing cylinder to press the end of the grid on the lower sealing plate, thereby realizing the sealing operation.
[0011] The lower sealing plate is arranged in an "L" shape, and the bottom surface of the upper sealing plate corresponds to the "L" shaped bottom surface of the lower sealing plate when the upper and lower sealing plates are closed. When sealing the bottom, the end of the grid abuts against the side surface of the "L" shaped lower sealing plate, and then the upper and lower sealing plates are closed to seal the grid, thereby ensuring the consistency of the grid sealing.
[0012] The side of the lower sealing plate facing the grid is provided with a positioning mechanism, which comprises oppositely arranged upper and lower positioning plates, the upper positioning plate is fixedly arranged on the operation table, and the lower positioning plate is connected with a movement control mechanism capable of controlling the opening and closing of the lower positioning plate and the upper positioning plate.
[0013] The side of the upper positioning plate opposite to the lower positioning plate corresponds to the surface of the grid. The positioning mechanism is used for positioning the grid to be sealed, thereby increasing the stability of the structure in operation. After the upper and lower positioning plates are closed, the side of the upper and lower positioning plates facing the grid is correspondingly attached to the grid, thereby avoiding the shaking of the grid.
[0014] The limit mechanism is arranged on the side of the operation table opposite to the sealing mechanism, and the limit mechanism comprises a limit cylinder, and the telescopic end of the limit cylinder is connected with a limit push rod.
[0015] The lower sealing plate is connected with a sealing plate cylinder capable of moving the lower sealing plate close to or away from the limit push rod.
[0016] The telescopic end of the sealing plate cylinder is fixedly connected with the lower sealing plate and the closing cylinder. In order to further ensure the stability of the grid during sealing, the grid to be sealed is arranged between the limit mechanism and the sealing mechanism, one end of the grid abuts against the limit push rod, and the other end abuts against the lower sealing plate, and then the upper sealing plate is pressed downward to seal the grid, thereby further ensuring the stability of the operation.
[0017] The movement control mechanism comprises a fixedly arranged movement cylinder, and the movement cylinder is connected with the upper positioning plate through a connecting assembly.
[0018] The flushing mechanism comprises a placing plate for placing the grid, and the placing plate is provided with a water filtering net.
[0019] One end of the placing plate is hingedly connected with the operation table, and a rotating driving device is hingedly connected to the end of the placing plate extending out of the operation table.
[0020] The other end of the placing plate is provided with a protrusion on the upper surface.
[0021] The flushing device is further arranged on the opposite shelf plate.
[0022] The rotating driving device comprises a connecting frame fixedly connected with the operation table, a rotating cylinder is hinged to the connecting frame, and one end of the rotating cylinder is hinged to one end of the shelf plate.
[0023] The flushing device comprises two oppositely arranged flushing guide rails, the flushing guide rails are obliquely arranged, and a moving frame capable of moving along the flushing guide rails is arranged on the two flushing guide rails.
[0024] The flushing guide rails are arranged corresponding to the oblique state of the shelf plate.
[0025] Compared with the prior art, the present application has the following beneficial effects:
[0026] The present application integrates the bottom sealing mechanism and the flushing mechanism, realizes the bottom sealing and flushing of the grid, has a simpler structure, enhances the reliability and stability of the equipment, simplifies the operation path of the grid, and improves the bottom sealing and flushing efficiency.
[0027] The design of the upper and lower sealing plates combines the "L"-shaped lower sealing plate and the positioning mechanism, ensures the consistency of the pressure and position during the bottom sealing, and improves the bottom sealing quality.
[0028] The rotatable shelf plate and the movable flushing guide rail are adopted, and the synchronous air and water spraying functions of the nozzles are used, so that the surface and the gap of the grid are fully and quickly flushed and dried, and the cleaning effect is ensured.
[0029] The design of the limiting cylinder and the limiting push rod ensures that the grid to be sealed remains stable during the bottom sealing process, and further improves the bottom sealing quality. DETAILED DESCRIPTION
[0030] Fig. 1 It is a structural schematic view of the present application.
[0031] Fig. 2 It is a structural schematic view of the bottom sealing mechanism of the present application.
[0032] Fig. 3 It is a structural schematic view of the flushing mechanism of the present application.
[0033] In the figure: 1, operation table; 2, bottom sealing mechanism; 201, upper sealing plate; 202, lower sealing plate; 203, closing cylinder; 204, upper positioning plate; 205, lower positioning plate; 206, sealing plate cylinder; 207, moving cylinder; 3, flushing mechanism; 301, placing plate; 302, water filter net; 303, protrusion; 304, connecting frame; 305, rotating cylinder; 306, flushing guide rail; 307, moving frame; 308, flushing pipeline; 4, plate grid; 5, limiting push rod; 6, limiting cylinder. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0035] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the utility model are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications will also change accordingly.
[0036] In the utility model, unless otherwise explicitly specified and limited, the terms "connection", "fixing" and the like should be understood broadly, for example, "fixing" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through an intermediate medium; can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0037] Reference Figs. 1 to 3 The tubular positive plate grid automatic bottom sealing and flushing equipment comprises an operation table 1, and the operation table 1 is provided with a bottom sealing mechanism 2 and a flushing mechanism 3;
[0038] The bottom sealing mechanism 2 comprises upper and lower sealing plates capable of being opened and closed and a driving device for controlling the opening and closing of the upper and lower sealing plates;
[0039] The flushing mechanism 3 comprises a supporting device for supporting the plate grid 4 and a flushing device for flushing the plate grid 4 on the supporting device.
[0040] The upper and lower sealing plates comprise oppositely arranged upper and lower sealing plates 201 and 202;
[0041] The driving device comprises a closing cylinder 203 located above the upper sealing plate 201, and the telescopic end of the closing cylinder 203 is fixedly connected with the upper sealing plate 201. When sealing the bottom, the end of the grid 4 after being extruded with slurry is arranged between the upper and lower sealing plates, and then the closing cylinder 203 drives the upper sealing plate 201 to move downward towards the lower sealing plate 202, so as to compact the end of the grid 4 on the lower sealing plate 202, thereby realizing the sealing operation.
[0042] The lower sealing plate 202 is arranged in an "L" shape, and the bottom surface of the upper sealing plate 201 corresponds to the "L" shaped bottom surface of the lower sealing plate 202 when the upper sealing plate 201 is closed with the lower sealing plate 202. When sealing the bottom, the end of the grid 4 abuts against the side surface of the "L" shaped lower sealing plate 202, and then the upper and lower sealing plates are closed to seal the grid 4, so that the consistency of the grid 4 sealing is ensured.
[0043] The side of the lower sealing plate 202 facing the grid 4 is provided with a positioning mechanism, which comprises oppositely arranged upper and lower positioning plates 204 and 205, the upper positioning plate 204 is fixedly arranged on the operation table 1, and the lower positioning plate 205 is connected with a movement control mechanism capable of controlling the opening and closing of the lower positioning plate 205 and the upper positioning plate 204.
[0044] The side of the upper positioning plate 204 opposite to the lower positioning plate 205 corresponds to the surface of the grid 4 and is arranged in a wave shape. The positioning mechanism is used for positioning the grid 4 to be sealed, and the stability of the structure is increased. After the upper and lower positioning plates 204 and 205 are closed, they are fitted with the surface of the grid 4, so as to avoid the shaking of the grid 4.
[0045] Further comprising a limiting mechanism arranged on the side of the operation table 1 opposite to the sealing mechanism 2, the limiting mechanism comprises a limiting cylinder 6, and the telescopic end of the limiting cylinder 6 is connected with a limiting push rod 5.
[0046] The lower sealing plate 202 is connected with a sealing plate cylinder 206 capable of moving the lower sealing plate 202 close to or away from the limiting push rod 5.
[0047] The telescopic end of the sealing plate cylinder 206 is fixedly connected with the lower sealing plate 202 and the closing cylinder 203. In order to further ensure the stability of the grid 4 during sealing, the limiting mechanism is arranged in the present application, the grid 4 to be sealed is arranged between the limiting mechanism and the sealing mechanism 2, one end of the grid 4 abuts against the limiting push rod 5, and the other end abuts against the lower sealing plate 202, and then the upper sealing plate 201 is pressed to seal the grid 4, thereby further ensuring the stability of the operation.
[0048] The movement control mechanism comprises a fixedly arranged movement cylinder 207, and the movement cylinder 207 is connected with the upper positioning plate 204 through a connecting assembly. Fig. 1 and Fig. 2The mobile cylinder 207 is fixedly arranged on the operation table 1, the mobile cylinder 207 is arranged below the sealing plate cylinder 206, the connecting assembly comprises a connecting horizontal plate fixedly connected with the telescopic end of the mobile cylinder 207, two vertical rods are fixedly connected with the two ends of the connecting horizontal plate respectively, and the vertical rods are fixedly connected with the two ends of the upper positioning plate 204 through the horizontal plates respectively. In addition, a limiting block is fixedly arranged on the operation table 1 corresponding to the vertical rod, the vertical rod is slidably connected with the limiting block, so that the vertical rod can only move up and down, and deviation is avoided.
[0049] The flushing mechanism 3 comprises a placing plate 301 for placing the plate grid 4, and a water filtering net 302 is arranged on the placing plate 301;
[0050] One end of the placing plate 301 is hingedly connected with the operation table 1, and a rotating driving device is hingedly connected with one end of the placing plate 301 extending out of the operation table 1;
[0051] A protrusion 303 is arranged on the upper surface of the other end of the placing plate 301;
[0052] The flushing device for flushing the plate grid 4 on the placing plate 301 is further included.
[0053] The rotating driving device comprises a connecting frame 304 fixedly connected with the operation table 1, a rotating cylinder 305 is hingedly connected with the connecting frame 304, and one end of the placing plate 301 is hingedly connected with the telescopic end of the rotating cylinder 305.
[0054] The flushing device comprises two oppositely arranged flushing guide rails 306, the flushing guide rails 306 are obliquely arranged, a moving frame 307 capable of moving along the flushing guide rail 306 is arranged on the two flushing guide rails 306, a flushing pipeline 308 is arranged on the moving frame 307, and a nozzle 309 is arranged on the flushing pipeline 308 and faces the placing plate 301. Fig. 3 The rotating control of the placing plate 301 is realized by the telescopic extension of the rotating cylinder 305, when the one end of the placing plate 301 is moved upward under the driving of the rotating cylinder 305, the other end of the placing plate 301 rotates downward, when the one end of the placing plate 301 is moved downward under the driving of the rotating cylinder 305, the other end of the placing plate 301 rotates upward, and the other end of the placing plate 301 is kept flat with the table top of the operation table 1. When the placing plate 301 is kept flat with the table top of the operation table 1, the plate grid 4 after sealing can be placed on the placing plate 301 through the conveying device, then the one end of the placing plate 301 is moved upward under the driving of the rotating cylinder 305, and the other end of the placing plate 301 rotates downward and is arranged in an inclined manner. Based on the arrangement of the protrusion 303, the plate grid 4 is prevented from moving downward. Then the flushing device is used for flushing operation. Sewage is left through the water filtering net 302, and a drainage port is arranged at the bottom of the operation table 1 and used for discharging sewage. The drainage port can be communicated with an existing sewage treatment system and used for sewage treatment operation.
[0055] The flushing pipeline 308 is provided in two groups, and the two groups of flushing pipelines 308 are oppositely arranged, and a space for the passing of the storage plate 301 is left between the two groups of flushing pipelines 308. The flushing guide rail 306 is arranged when the storage plate 301 is in an inclined state. In this way, the moving frame 307 drives the two groups of flushing pipelines 308 to move along the flushing guide rail 306 back and forth, and the positive and negative surfaces of the grid 4 on the storage plate 301 are synchronously flushed. One group of nozzles can be arranged to spray air, and the other group of nozzles can be arranged to spray water, so that the grid 4 on the storage plate 301 can be quickly flushed and dried.
[0056] The position information of the grid 4 in the operation process can be positioned by using existing photoelectric switches and other electronic components.
[0057] In this way, the automatic sealing and flushing operation of the grid is realized.
[0058] In order to improve the automation of the equipment, the conveying device can use existing grabbing robots or electric guide rails to cooperate with cylinder suction cups to realize the automatic conveying of the grid 4.
[0059] In the present application, two grids 4 are arranged as a group, and one group of grids 4 is sealed and flushed at a time in each operation. Correspondingly, the upper and lower sealing plates and other components are also arranged for one group of grids 4, so that the operation efficiency is improved.
[0060] The above description is only optional embodiments of the present application, and does not limit the patent range of the present application. Any equivalent structural transformation or direct / indirect application in other related technical fields within the concept of the present application is included in the patent protection range of the present application.
Claims
1. A tube positive plate automatic backflushing equipment, characterized in that, The operation table (1) is provided with a sealing mechanism (2) and a flushing mechanism (3); The sealing mechanism (2) comprises an upper and lower sealing plate which can be opened and closed, and a driving device for controlling the opening and closing of the upper and lower sealing plate; The flushing mechanism (3) comprises a support device for supporting the grid (4) and a flushing device for flushing the grid (4) on the support device.
2. The tube positive plate automatic backflushing equipment according to claim 1, characterized in that, The upper and lower sealing plate comprises an upper sealing plate (201) and a lower sealing plate (202) arranged oppositely; The driving device comprises a closing cylinder (203) located above the upper sealing plate (201), and the telescopic end of the closing cylinder (203) is fixedly connected with the upper sealing plate (201).
3. The tube positive plate automatic backflushing equipment according to claim 2, characterized in that, The lower sealing plate (202) is arranged in an "L" shape, and the bottom surface of the upper sealing plate (201) corresponds to the "L" shaped bottom surface of the lower sealing plate (202) when the upper sealing plate (201) and the lower sealing plate (202) are closed.
4. The tube positive plate automatic backflushing equipment according to claim 2, characterized in that, The side of the lower sealing plate (202) facing the grid (4) is provided with a positioning mechanism, the positioning mechanism comprises an upper positioning plate (204) and a lower positioning plate (205) arranged oppositely, the upper positioning plate (204) is fixedly arranged on the operation table (1), and the lower positioning plate (205) is connected with a movement control mechanism capable of controlling the opening and closing of the lower positioning plate (205) and the upper positioning plate (204); The side of the upper positioning plate (204) and the lower positioning plate (205) corresponding to the surface of the grid (4) is provided.
5. The tube positive plate automatic backflushing equipment according to claim 2, characterized in that, It also includes a limiting mechanism arranged on the side opposite to the sealing mechanism (2) of the operation table (1), the limiting mechanism comprises a limiting cylinder (6), and the telescopic end of the limiting cylinder (6) is connected with a limiting push rod (5); The lower sealing plate (202) is connected with a sealing plate cylinder (206) capable of moving the lower sealing plate (202) close to or away from the limiting push rod (5); The telescopic end of the sealing plate cylinder (206) is fixedly connected with the lower sealing plate (202) and the closing cylinder (203).
6. The tube positive plate racker automatic backflushing apparatus of claim 4 wherein, The movement control mechanism comprises a fixedly arranged movement cylinder (207), and the movement cylinder (207) is connected with the upper positioning plate (204) through a connecting assembly.
7. The tube positive plate racker automatic backflushing apparatus of claim 1 wherein, The flushing mechanism (3) comprises a placing plate (301) for placing the grid (4), and the placing plate (301) is provided with a water filtering net (302); One end of the placing plate (301) is hinged to the operation table (1), and the one end of the placing plate (301) extending out of the operation table (1) is hinged with a rotating driving device; The other end of the placing plate (301) is provided with a protrusion (303) on the upper surface; It also includes a flushing device for flushing the grid (4) on the placing plate (301).
8. The tube positive plate racker automatic backflushing and sealing apparatus according to claim 7, characterized in that, The rotating driving device comprises a connecting frame (304) fixedly connected with the operation table (1), the connecting frame (304) is hinged with a rotating cylinder (305), and the telescopic end of the rotating cylinder (305) is hinged with one end of the placing plate (301).
9. The tube positive plate racker automatic backflushing apparatus of claim 8 wherein, The flushing device comprises two oppositely arranged flushing rails (306), the flushing rails (306) are obliquely arranged, and a moving frame (307) capable of moving along the flushing rails (306) is arranged on the two flushing rails (306), a flushing pipeline (308) is arranged on the moving frame (307), and a nozzle (309) is arranged on the flushing pipeline (308) and faces the placing plate (301).
10. The tube positive plate racker automatic backflushing apparatus of claim 9 wherein, The flushing pipeline (308) is provided in two groups, the two groups of flushing pipelines (308) are oppositely arranged, and spaces for the placing plate (301) to pass through are left between the two groups of flushing pipelines (308).
Citation Information
Patent Citations
Positive grid bottom sealing system
CN117558880A