CN113275293A - New energy battery is based on cleaning device of oxalic acid solution performance - Google Patents

New energy battery is based on cleaning device of oxalic acid solution performance Download PDF

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Publication number
CN113275293A
CN113275293A CN202110359505.7A CN202110359505A CN113275293A CN 113275293 A CN113275293 A CN 113275293A CN 202110359505 A CN202110359505 A CN 202110359505A CN 113275293 A CN113275293 A CN 113275293A
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China
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fixedly connected
support frame
plate
slide rail
guide block
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CN202110359505.7A
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CN113275293B (en
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董光伟
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Hunan Ranxu Energy Technology Co ltd
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Individual
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/02Cleaning by the force of jets or sprays
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/74Feeding, transfer, or discharging devices of particular kinds or types

Abstract

The invention relates to the field of new energy, in particular to a cleaning device for a new energy battery based on oxalic acid solution performance. The invention aims to provide a cleaning device for a new energy battery based on the performance of an oxalic acid solution. The technical scheme is as follows: a cleaning device for a new energy battery based on oxalic acid solution performance comprises a bottom frame, a control screen, a feeding system, a protection limiting system, a shuffling system, a placing frame and a sponge mat; the underframe is rotationally connected with the control screen; the underframe is connected with a feeding system. The battery cap is cleaned by oxalic acid, the body of the battery is wrapped firstly during cleaning, then the oxalic acid can be completely attached to the surface of the cap to react with the stains in a wall hanging mode, and then the battery cap is completely cleaned by water; the surface of the battery is ensured, and meanwhile, the spots on the cap are completely reacted and cleaned.

Description

New energy battery is based on cleaning device of oxalic acid solution performance
Technical Field
The invention relates to the field of new energy, in particular to a cleaning device for a new energy battery based on oxalic acid solution performance.
Background
And (3) new energy: also known as unconventional energy sources. Refers to various forms of energy sources other than traditional energy sources. Energy sources to be popularized, such as solar energy, geothermal energy, wind energy, ocean energy, biomass energy, nuclear fusion energy and the like, which are just developed and utilized or are actively researched;
the production of the lithium battery in the prior art is involved, and after the sealing is carried out during the production, clean water, a sodium carbonate aqueous solution and clean water are required to be circularly cleaned; then soaking in antirust oil;
in the production process, because the cap has a certain modeling design, such as a sunken ring, yellow spots can be generated after the cap is soaked in the anti-rust oil; the spot detection is composed of lithium carbonate and a small amount of organic salt, which not only causes the reduction of the phase selling of the product, but also easily causes the corrosion of a cover cap after long-time residue, and the corrosion of a battery is a very serious phenomenon, so that not only can liquid leakage be generated, but also the fire explosion can be caused;
the cap is cleaned by oxalic acid solution in proportion, the mixed oxalic acid solution is sprayed on the cap by a high-pressure spray head, and the cap is cleaned after staying for a certain time; because the cap of the battery is small, the cap is directly washed by the high-pressure sprayer, the residual points of the cap are difficult to accurately wash, and the solution cannot completely stay on the cap, so that yellow spots cannot be completely removed; and the surfaces of the lithium battery including the shell are easily wetted by the oxalic acid solution spray.
In summary, a cleaning device for a new energy battery based on the performance of oxalic acid solution is needed to solve the above problems.
Disclosure of Invention
In order to overcome the defect that the cap is cleaned by adopting the oxalic acid solution with the proportion, the mixed oxalic acid solution is sprayed on the cap by using a high-pressure spray head and is cleaned after staying for a certain time; because the cap of the battery is small, the cap is directly washed by the high-pressure sprayer, the residual points of the cap are difficult to accurately wash, and the solution cannot completely stay on the cap, so that yellow spots cannot be completely removed; the invention also aims to provide a cleaning device of the new energy battery based on the performance of the oxalic acid solution.
The technical scheme is as follows: a cleaning device for a new energy battery based on oxalic acid solution performance comprises a bottom frame, a control screen, a feeding system, a protection limiting system, a shuffling system, a placing frame and a sponge mat; the underframe is rotationally connected with the control screen; the underframe is connected with a feeding system; the underframe is connected with a protection limiting system; the chassis is connected with the shuffling system; the underframe is fixedly connected with the placing frame; the sponge cushion is placed inside the placing frame.
As an improvement of the scheme, the feeding system comprises a first support frame, a first electric slide rail, a second electric slide rail, a first placing table, a shifting roller, a shifting rod, a second placing table, a limiting rod, a second support frame, an air pipe, a silica gel cover and a cotton ball; one side inside the first support frame is fixedly connected with the first electric slide rail; the other side in the first support frame is fixedly connected with a second electric slide rail; the upper part of the first supporting frame is fixedly connected with the second placing table; a second support frame is arranged on the side surface of the first support frame; the first support frame is fixedly connected with the underframe; the first electric sliding rail is fixedly connected with one side of the first placing table through a sliding block; the second electric sliding rail is fixedly connected with one side of the first placing table through a sliding block; the bottom of the second placing table is contacted with the first placing table; the first placing table is rotatably connected with the shifting roller through a rotating shaft; the side surface of the shifting roller is fixedly connected with a plurality of shifting rods; the upper part of the side surface of the second support frame is fixedly connected with a plurality of limiting rods; the side surface of the second support frame is inserted into the air pipe; the second support frame is fixedly connected with the underframe; the side surface of the air pipe is simultaneously connected with a plurality of silica gel covers and cotton balls; the plurality of shifting rollers can intermittently contact with the plurality of shifting rods when rotating.
As an improvement of the above scheme, the protection limiting system comprises a third electric slide rail, a fourth electric slide rail, a third support frame, a first electric push rod, a second electric push rod, a fourth support frame, a first limiting plate, a fifth support frame and a second limiting plate; the third electric slide rail is fixedly connected with one side of the third support frame through a slide block; the third electric slide rail is fixedly connected with the underframe; the fourth electric slide rail is fixedly connected with the other side of the third support frame through a slide block; the fourth electric sliding rail is fixedly connected with the underframe; one side above the third support frame is fixedly connected with the first electric push rod; the other side above the third support frame is fixedly connected with a second electric push rod; the upper part of the third support frame is rotationally connected with the first limiting plate through a rotating shaft; the upper part of the first electric push rod is fixedly connected with one side of the fourth support frame; the upper part of the second electric push rod is fixedly connected with the other side of the fourth support frame; two sides of the first limiting plate are movably connected with the fourth supporting frame through shaft levers; a fifth support frame is arranged on the upper side face of the third electric slide rail and the upper side face of the fourth electric slide rail; the fifth supporting frame is fixedly connected with the second limiting plate; the fifth support frame is fixedly connected with the underframe.
As an improvement of the above scheme, the shuffling system comprises a sixth support frame, a bidirectional electric slide rail, a first connecting plate, a first spray head, a first steel wire rope, a first guide block, a first support plate, a second guide block, a first elastic member, a second support plate, a second spray head, a second connecting plate, a third spray head, a second steel wire rope, a third guide block, a third support plate, a fourth guide block, a second elastic member, a fourth support plate and a fourth spray head; the sixth supporting frame is fixedly connected with the bidirectional electric sliding rail; the sixth supporting frame is fixedly connected with the underframe; one side of the bidirectional electric slide rail is fixedly connected with the first connecting plate through a slide block; the other side of the bidirectional electric slide rail is fixedly connected with a second connecting plate through a slide block; the first connecting plate is spliced with the first spray head; the second connecting plate is spliced with the third spray head; the first connecting plate is fixedly connected with one side of the first steel wire rope; the outer surface of the first steel wire rope is respectively contacted with the inside of the first guide block and the inside of the second guide block; the first guide block and the second guide block are fixedly connected with the first supporting plate; the first supporting plate is fixedly connected with the underframe; the second guide block is fixedly connected with one side of the first elastic piece; the other side of the first elastic part is fixedly connected with the second supporting plate; the other side of the first steel wire rope is fixedly connected with the second supporting plate; the first supporting plate is rotatably connected with the second supporting plate through a rotating shaft; the second support plate is inserted with the second spray head; the second connecting plate is fixedly connected with one side of the second steel wire rope; the outer surface of the second steel wire rope is respectively contacted with the inside of the third guide block and the inside of the fourth guide block; the inner part of the third guide block and the fourth guide block are fixedly connected with the third support plate; the third supporting plate is fixedly connected with the underframe; the fourth guide block is fixedly connected with one side of the second elastic piece; the other side of the second elastic part is fixedly connected with the fourth supporting plate; the other side of the second steel wire rope is fixedly connected with a fourth supporting plate; the third supporting plate is rotatably connected with the fourth supporting plate through a rotating shaft; the fourth supporting plate is inserted with the fourth nozzle.
As an improvement of the scheme, the poking roller is formed by connecting a plurality of J-shaped plates with the outer surface of a round shaft.
As an improvement of the scheme, the second limiting plate is inclined by twenty degrees when being connected with the fifth supporting frame.
In an improvement of the above, the first head and the third head are inclined at forty-five degrees toward each other.
Compared with the prior art, the invention has the advantages that: firstly, in order to solve the problem that the cap is cleaned by adopting the oxalic acid solution with the proportion, the mixed oxalic acid solution is sprayed on the cap by using a high-pressure spray head, and the cap is cleaned after staying for a certain time; because the cap of the battery is small, the cap is directly washed by the high-pressure sprayer, the residual points of the cap are difficult to accurately wash, and the solution cannot completely stay on the cap, so that yellow spots cannot be completely removed; and the surface of the lithium battery including the shell is easily wetted by the oxalic acid solution spray.
Secondly, designing a feeding system, a protection limiting system and a shuffling system; when in use, the bottom frame is firstly placed in a horizontal position, and then is externally connected with a power supply to control the operation of the screen control device; manually placing the metal head of the battery cap on a feeding system towards one side of an air pipe, then transferring the batteries to a protection limiting system one by one through the feeding system, moving the batteries to the shuffling system for cleaning by the protection limiting system, spraying a layer of water on the surface to wet the cap during cleaning, spraying oxalic acid, and then spraying water; the oxalic acid and the water are mixed to have a wall hanging effect on the cap; after the set time, removing the waste water by water; then moving to one side of the feeding system for surface dry cleaning treatment; and then collected on a sponge pad on which a frame is placed.
Thirdly, the battery cap is cleaned by oxalic acid, the body of the battery is wrapped firstly during cleaning, then the oxalic acid can be completely attached to the surface of the cap to react with the stains in a wall hanging mode, and then the battery cap is completely cleaned by water; the surface of the battery is ensured, and meanwhile, the spots of the cap are completely cleaned by reaction.
Drawings
FIG. 1 is a schematic perspective view of a first embodiment of the present invention;
FIG. 2 is a schematic perspective view of a second embodiment of the present invention;
FIG. 3 is a third perspective view of the present invention;
FIG. 4 is a schematic perspective view of a loading system according to the present invention;
FIG. 5 is a schematic view of a first partially separated body configuration of the feeding system of the present invention;
FIG. 6 is a schematic view of a second partial body configuration of the feeding system of the present invention;
FIG. 7 is a schematic perspective view of a first embodiment of the protective stop system of the present invention;
FIG. 8 is a schematic perspective view of a second embodiment of the protective stop system of the present invention;
FIG. 9 is a schematic perspective view of a shuffling system of the present invention;
FIG. 10 is a schematic diagram of a first partial body configuration of the shuffling system of the present invention;
FIG. 11 is a schematic diagram of a second partial body configuration of the shuffling system of the present invention.
The parts are labeled as follows: 1: chassis, 2: control screen, 3: feeding system, 4: protection limiting system, 5: shuffling system, 6: placing frame, 7: foam-rubber cushion, 301: first support bracket, 302: first electric slide rail, 303: second motorized slide, 304: first placing table, 305: poke roller, 306: deflector rod, 307: second placing table, 308: stop lever, 309: second support, 3010: air duct, 3011: silica gel cover, 3012: cotton ball, 401: third motorized slide, 402: fourth electric slide rail, 403: third support, 404: first electric putter, 405: second electric putter, 406: fourth support, 407: first limiting plate, 408: fifth support frame, 409: second limiting plate, 501: sixth support, 502: bidirectional electric slide rail, 503: first connection plate, 504: first head, 505: first steel cord, 506: first guide block, 507: first support plate, 508: second lead block, 509: first elastic member, 5010: second support plate, 5011: second nozzle, 5012: second connecting plate, 5013: third nozzle, 5014: second steel wire rope, 5015: third guide block, 5016: third support plate, 5017: fourth guide block, 5018: second elastic member, 5019: fourth support plate, 5020: and a fourth spray head.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in further detail with reference to the accompanying drawings. It is only noted that the invention is intended to be limited to the specific forms set forth herein, including any reference to the drawings, as well as any other specific forms of embodiments of the invention.
Example 1
A cleaning device for a new energy battery based on oxalic acid solution performance is shown in figures 1-11 and comprises a bottom frame, a control screen, a feeding system, a protection limiting system, a shuffling system, a placing frame and a sponge cushion; the underframe is rotationally connected with the control screen; the underframe is connected with a feeding system; the underframe is connected with a protection limiting system; the chassis is connected with the shuffling system; the underframe is fixedly connected with the placing frame; the sponge cushion is placed inside the placing frame.
When in use, the bottom frame is firstly placed in a horizontal position, and then is externally connected with a power supply to control the operation of the screen control device; manually placing the metal head of the battery cap on a feeding system towards one side of an air pipe, then transferring the batteries to a protection limiting system one by one through the feeding system, moving the batteries to the shuffling system for cleaning by the protection limiting system, spraying a layer of water on the surface to wet the cap during cleaning, spraying oxalic acid, and then spraying water; the oxalic acid and the water are mixed to have a wall hanging effect on the cap; after the set time, removing the waste water by water; then moving to one side of the feeding system for surface dry cleaning treatment; then collecting the mixture on a sponge cushion of a placing frame; the battery cap is cleaned by oxalic acid, the body of the battery is wrapped firstly during cleaning, then the oxalic acid can be completely attached to the surface of the cap to react with the stains in a wall hanging mode, and then the battery cap is completely cleaned by water; the surface of the battery is ensured, and meanwhile, the spots of the cap are completely cleaned by reaction.
The feeding system comprises a first support frame, a first electric slide rail, a second electric slide rail, a first placing table, a shifting roller, a shifting rod, a second placing table, a limiting rod, a second support frame, an air pipe, a silica gel cover and a cotton ball; one side inside the first support frame is fixedly connected with the first electric slide rail; the other side in the first support frame is fixedly connected with a second electric slide rail; the upper part of the first supporting frame is fixedly connected with the second placing table; a second support frame is arranged on the side surface of the first support frame; the first support frame is fixedly connected with the underframe; the first electric sliding rail is fixedly connected with one side of the first placing table through a sliding block; the second electric sliding rail is fixedly connected with one side of the first placing table through a sliding block; the bottom of the second placing table is contacted with the first placing table; the first placing table is rotatably connected with the shifting roller through a rotating shaft; the side surface of the shifting roller is fixedly connected with a plurality of shifting rods; the upper part of the side surface of the second support frame is fixedly connected with a plurality of limiting rods; the side surface of the second support frame is inserted into the air pipe; the second support frame is fixedly connected with the underframe; the side surface of the air pipe is simultaneously connected with a plurality of silica gel covers and cotton balls; the plurality of shifting rollers can intermittently contact with the plurality of shifting rods when rotating.
During blanking, the metal head of the anode of the battery is manually placed on the second placing table towards one side of the air pipe, the battery slides onto the first placing table, and one side of the first placing table is inclined, so that the battery can be gathered and arranged; then when the first electric slide rail and the second electric slide rail in the first support frame simultaneously drive the first placing table to slide, the plurality of shifting rods are intermittently contacted and shifted by the limiting rods, so that the shifting rods drive the shifting rollers to rotate, and the shifting rollers rotate to shift the batteries to the first limiting plate, so that the batteries are transferred one by one; when the battery needs to be cleaned after cleaning, the first limiting plate drives the battery to move to a position, close to the air pipe, of the second supporting frame, then air is supplied to the air pipe to air-dry the positive metal head of the battery, and the air direction is guided through the silica gel cover cap, so that the positive metal head of the battery can be wrapped and air-dried, and meanwhile, the cotton balls clean attachments on the surface; the system realizes the one-by-one blanking of the batteries, and meanwhile, the batteries are dried and cleaned in a later period in a matching way, so that the wrapping property of the metal head of the positive electrode of the battery can be removed; the battery case and the like are not touched.
The protection limiting system comprises a third electric slide rail, a fourth electric slide rail, a third support frame, a first electric push rod, a second electric push rod, a fourth support frame, a first limiting plate, a fifth support frame and a second limiting plate; the third electric slide rail is fixedly connected with one side of the third support frame through a slide block; the third electric slide rail is fixedly connected with the underframe; the fourth electric slide rail is fixedly connected with the other side of the third support frame through a slide block; the fourth electric sliding rail is fixedly connected with the underframe; one side above the third support frame is fixedly connected with the first electric push rod; the other side above the third support frame is fixedly connected with a second electric push rod; the upper part of the third support frame is rotationally connected with the first limiting plate through a rotating shaft; the upper part of the first electric push rod is fixedly connected with one side of the fourth support frame; the upper part of the second electric push rod is fixedly connected with the other side of the fourth support frame; two sides of the first limiting plate are movably connected with the fourth supporting frame through shaft levers; a fifth support frame is arranged on the upper side face of the third electric slide rail and the upper side face of the fourth electric slide rail; the fifth supporting frame is fixedly connected with the second limiting plate; the fifth support frame is fixedly connected with the underframe.
The falling batteries are placed on the first limiting plate one by one, then the third supporting frame is driven to slide through the third electric sliding rail and the fourth electric sliding rail at the same time, the third supporting frame drives the batteries on the first limiting plate and connected parts to move, and when the second limiting plate is positioned below the fifth supporting frame, the first electric push rod and the second electric push rod stretch and retract at the same time to drive the first limiting plate connected with the fourth supporting frame to turn over on the third supporting frame by an angle, so that the batteries are inclined and limited under the matching of the first limiting plate and the second limiting plate; at the moment, the body of the battery is wrapped, and only the position of the cover cap is leaked for cleaning; after cleaning, the first electric push rod and the second electric push rod contract simultaneously to drive the first limiting plate connected with the fourth support frame to reset; then the third electric slide rail and the fourth electric slide rail simultaneously drive the third support frame to slide, and the third support frame drives the battery on the first limiting plate and the connected components to move and reset, so that the third support frame is positioned at the air pipe position to be matched with the air pipe position for air drying and surface cleaning after cleaning; the system realizes the transfer and protection of the battery, so that the surface of the battery can be wrapped and placed to be sprayed by redundant solution.
The shuffling system comprises a sixth support frame, a bidirectional electric slide rail, a first connecting plate, a first spray head, a first steel wire rope, a first guide block, a first support plate, a second guide block, a first elastic piece, a second support plate, a second spray head, a second connecting plate, a third spray head, a second steel wire rope, a third guide block, a third support plate, a fourth guide block, a second elastic piece, a fourth support plate and a fourth spray head; the sixth supporting frame is fixedly connected with the bidirectional electric sliding rail; the sixth supporting frame is fixedly connected with the underframe; one side of the bidirectional electric slide rail is fixedly connected with the first connecting plate through a slide block; the other side of the bidirectional electric slide rail is fixedly connected with a second connecting plate through a slide block; the first connecting plate is spliced with the first spray head; the second connecting plate is spliced with the third spray head; the first connecting plate is fixedly connected with one side of the first steel wire rope; the outer surface of the first steel wire rope is respectively contacted with the inside of the first guide block and the inside of the second guide block; the first guide block and the second guide block are fixedly connected with the first supporting plate; the first supporting plate is fixedly connected with the underframe; the second guide block is fixedly connected with one side of the first elastic piece; the other side of the first elastic part is fixedly connected with the second supporting plate; the other side of the first steel wire rope is fixedly connected with the second supporting plate; the first supporting plate is rotatably connected with the second supporting plate through a rotating shaft; the second support plate is inserted with the second spray head; the second connecting plate is fixedly connected with one side of the second steel wire rope; the outer surface of the second steel wire rope is respectively contacted with the inside of the third guide block and the inside of the fourth guide block; the inner part of the third guide block and the fourth guide block are fixedly connected with the third support plate; the third supporting plate is fixedly connected with the underframe; the fourth guide block is fixedly connected with one side of the second elastic piece; the other side of the second elastic part is fixedly connected with the fourth supporting plate; the other side of the second steel wire rope is fixedly connected with a fourth supporting plate; the third supporting plate is rotatably connected with the fourth supporting plate through a rotating shaft; the fourth supporting plate is inserted with the fourth nozzle.
When spraying, the spraying device firstly runs through a bidirectional electric slide rail at the bottom of the sixth support frame, the first spray head on the first connecting plate and the third spray head on the second connecting plate are respectively driven by the slide block to slide to be close to the battery, then the surface of the cover cap is sprayed with moisture, and the first limiting plate and the second limiting plate are combined to be in an inclined state so as to protect the battery body from water inflow; then, when the first connecting plate and the second connecting plate of the first nozzle slide, the first steel wire rope and the second steel wire rope are respectively pulled, the first steel wire rope is limited by the first guide block and the second guide block on the first supporting plate, the second supporting plate is pulled to turn over on the first supporting plate, meanwhile, the first elastic piece is matched and stretched, and at the moment, the second nozzle is driven to continuously lift up by an angle; meanwhile, the second steel wire rope is limited by the third guide block and the fourth guide block on the third support plate, the fourth support plate is pulled to turn over on the third support plate, and meanwhile, the second elastic piece is stretched in a matched mode, and the fourth spray head is driven to continuously lift up by an angle; the second sprayer and the fourth sprayer are sprayed with powder at the same time when being lifted continuously, so that oxalic acid powder can uniformly cover the oxalic acid on the cap in a parabolic state, and then the oxalic acid covered on the cap is soaked by the first sprayer and the third sprayer, so that the oxalic acid is dissolved on the cap and can be hung on the cap; after a certain time, cleaning the cap by the first nozzle and the third nozzle; the system realizes the wall-mounted cleaning of the battery, and can ensure that the oxalic acid is uniformly arranged on the cover cap; realizing the spot cleaning without residue.
The poking roller is formed by connecting a plurality of J-shaped plates with the outer surface of a round shaft.
The J-shaped plate can shift the battery when rotating.
The second limiting plate is inclined by twenty degrees when being connected with the fifth supporting frame.
The battery is driven to be in an inclined state when the second limiting plate is contacted with the first limiting plate.
The first nozzle and the third nozzle are oppositely inclined by forty-five degrees.
Can cooperate to make water and battery metal cap position carry out abundant contact, realize high-efficient cleaning performance.
It should be understood that the above description is for exemplary purposes only and is not meant to limit the present invention. Those skilled in the art will appreciate that variations of the present invention are intended to be included within the scope of the claims herein.

Claims (7)

1. A cleaning device for a new energy battery based on oxalic acid solution performance comprises a bottom frame and a control screen, and is characterized by further comprising a feeding system, a protection limiting system, a shuffling system, a placing frame and a sponge mat; the underframe is rotationally connected with the control screen; the underframe is connected with a feeding system; the underframe is connected with a protection limiting system; the chassis is connected with the shuffling system; the underframe is fixedly connected with the placing frame; the sponge cushion is placed inside the placing frame.
2. The cleaning device for the performance of the new energy battery based on the oxalic acid solution as claimed in claim 1, wherein the feeding system comprises a first support frame, a first electric slide rail, a second electric slide rail, a first placing table, a poking roller, a poking rod, a second placing table, a limiting rod, a second support frame, an air pipe, a silica gel cover and a cotton ball; one side inside the first support frame is fixedly connected with the first electric slide rail; the other side in the first support frame is fixedly connected with a second electric slide rail; the upper part of the first supporting frame is fixedly connected with the second placing table; a second support frame is arranged on the side surface of the first support frame; the first support frame is fixedly connected with the underframe; the first electric sliding rail is fixedly connected with one side of the first placing table through a sliding block; the second electric sliding rail is fixedly connected with one side of the first placing table through a sliding block; the bottom of the second placing table is contacted with the first placing table; the first placing table is rotatably connected with the shifting roller through a rotating shaft; the side surface of the shifting roller is fixedly connected with a plurality of shifting rods; the upper part of the side surface of the second support frame is fixedly connected with a plurality of limiting rods; the side surface of the second support frame is inserted into the air pipe; the second support frame is fixedly connected with the underframe; the side surface of the air pipe is simultaneously connected with a plurality of silica gel covers and cotton balls; the plurality of shifting rollers can intermittently contact with the plurality of shifting rods when rotating.
3. The cleaning device for the new energy battery based on the performance of the oxalic acid solution as claimed in claim 2, wherein the protection limiting system comprises a third electric slide rail, a fourth electric slide rail, a third support frame, a first electric push rod, a second electric push rod, a fourth support frame, a first limiting plate, a fifth support frame and a second limiting plate; the third electric slide rail is fixedly connected with one side of the third support frame through a slide block; the third electric slide rail is fixedly connected with the underframe; the fourth electric slide rail is fixedly connected with the other side of the third support frame through a slide block; the fourth electric sliding rail is fixedly connected with the underframe; one side above the third support frame is fixedly connected with the first electric push rod; the other side above the third support frame is fixedly connected with a second electric push rod; the upper part of the third support frame is rotationally connected with the first limiting plate through a rotating shaft; the upper part of the first electric push rod is fixedly connected with one side of the fourth support frame; the upper part of the second electric push rod is fixedly connected with the other side of the fourth support frame; two sides of the first limiting plate are movably connected with the fourth supporting frame through shaft levers; a fifth support frame is arranged on the upper side face of the third electric slide rail and the upper side face of the fourth electric slide rail; the fifth supporting frame is fixedly connected with the second limiting plate; the fifth support frame is fixedly connected with the underframe.
4. The cleaning device for the performance of the new energy battery based on the oxalic acid solution as claimed in claim 3, wherein the shuffling system comprises a sixth support frame, a bidirectional electric slide rail, a first connecting plate, a first spray head, a first steel wire rope, a first guide block, a first support plate, a second guide block, a first elastic member, a second support plate, a second spray head, a second connecting plate, a third spray head, a second steel wire rope, a third guide block, a third support plate, a fourth guide block, a second elastic member, a fourth support plate and a fourth spray head; the sixth supporting frame is fixedly connected with the bidirectional electric sliding rail; the sixth supporting frame is fixedly connected with the underframe; one side of the bidirectional electric slide rail is fixedly connected with the first connecting plate through a slide block; the other side of the bidirectional electric slide rail is fixedly connected with a second connecting plate through a slide block; the first connecting plate is spliced with the first spray head; the second connecting plate is spliced with the third spray head; the first connecting plate is fixedly connected with one side of the first steel wire rope; the outer surface of the first steel wire rope is respectively contacted with the inside of the first guide block and the inside of the second guide block; the first guide block and the second guide block are fixedly connected with the first supporting plate; the first supporting plate is fixedly connected with the underframe; the second guide block is fixedly connected with one side of the first elastic piece; the other side of the first elastic part is fixedly connected with the second supporting plate; the other side of the first steel wire rope is fixedly connected with the second supporting plate; the first supporting plate is rotatably connected with the second supporting plate through a rotating shaft; the second support plate is inserted with the second spray head; the second connecting plate is fixedly connected with one side of the second steel wire rope; the outer surface of the second steel wire rope is respectively contacted with the inside of the third guide block and the inside of the fourth guide block; the inner part of the third guide block and the fourth guide block are fixedly connected with the third support plate; the third supporting plate is fixedly connected with the underframe; the fourth guide block is fixedly connected with one side of the second elastic piece; the other side of the second elastic part is fixedly connected with the fourth supporting plate; the other side of the second steel wire rope is fixedly connected with a fourth supporting plate; the third supporting plate is rotatably connected with the fourth supporting plate through a rotating shaft; the fourth supporting plate is inserted with the fourth nozzle.
5. The cleaning device for the performance of the new energy battery based on the oxalic acid solution as claimed in claim 4, wherein the poking roller is formed by connecting a plurality of J-shaped plates with the outer surface of a round shaft.
6. The cleaning device for the new energy battery based on the performance of the oxalic acid solution as claimed in claim 5, wherein the second limiting plate is inclined twenty degrees when being connected with the fifth supporting frame.
7. The cleaning device for the performance of the new energy battery based on the oxalic acid solution as claimed in claim 6, wherein the first nozzle and the third nozzle are inclined at forty-five degrees in opposite directions.
CN202110359505.7A 2021-04-02 2021-04-02 New energy battery is based on cleaning device of oxalic acid solution performance Active CN113275293B (en)

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