CN212238460U - Power battery flexible connection sheetmetal dry ice washs assembly line - Google Patents

Power battery flexible connection sheetmetal dry ice washs assembly line Download PDF

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Publication number
CN212238460U
CN212238460U CN201821144006.6U CN201821144006U CN212238460U CN 212238460 U CN212238460 U CN 212238460U CN 201821144006 U CN201821144006 U CN 201821144006U CN 212238460 U CN212238460 U CN 212238460U
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CN
China
Prior art keywords
dry ice
carrier
rotary
cylinder
assembly
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Expired - Fee Related
Application number
CN201821144006.6U
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Chinese (zh)
Inventor
邓星星
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Dongguan Huoxing Automation Equipment Co ltd
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Dongguan Huoxing Automation Equipment Co ltd
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Priority to CN201821144006.6U priority Critical patent/CN212238460U/en
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Publication of CN212238460U publication Critical patent/CN212238460U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a power battery flexible coupling sheetmetal dry ice washs assembly line, including a board, set up a positive dry ice wiper mechanism on the board, set up a reverse side dry ice wiper mechanism on the board, set up on the board and connect the one gas-liquid booster between positive dry ice wiper mechanism and reverse side dry ice wiper mechanism, set up on the board and be located a tilting mechanism between positive dry ice wiper mechanism and the reverse side dry ice wiper mechanism, and set up on the board and be located a transport mechanism on positive dry ice wiper mechanism and the tilting mechanism side. The utility model provides a power battery flexible coupling sheetmetal dry ice washs assembly line can realize wasing the full aspect of sheetmetal, and whole process action is accurate smooth and easy, and degree of automation is high, and production efficiency is high, and the cleaning performance is good, does benefit to follow-up processing production to the sheetmetal.

Description

Power battery flexible connection sheetmetal dry ice washs assembly line
Technical Field
The utility model relates to a belt cleaning device especially relates to a power battery flexible coupling sheetmetal dry ice washs assembly line.
Background
Because the electric quantity provided by a single power battery is very limited, the existing power battery using scheme is realized by adopting a power battery module, in the power battery module, the power battery and the power battery are connected in series or in parallel, so that a connecting sheet is required to be connected and fixed, and a metal copper sheet or a metal aluminum sheet is usually adopted as the connecting sheet.
Before the metal copper sheet or the metal aluminum sheet is processed and produced, the metal copper sheet or the metal aluminum sheet needs to be cleaned, and the metal sheet is put into a water tank, soaked and cleaned in a traditional mode and operated by workers. The cleaning mode can not completely clean the front and back surfaces of the product, has poor cleaning effect and extremely low cleaning efficiency, and influences subsequent processing production.
SUMMERY OF THE UTILITY MODEL
To the aforesaid not enough, the utility model aims at providing a power battery flexible coupling sheetmetal dry ice washs assembly line, can realize wasing the full aspect of sheetmetal, and whole process action is accurate smooth and easy, and degree of automation is high, and production efficiency is high, and the cleaning performance is good, does benefit to the follow-up processing production to the sheetmetal.
The utility model discloses a reach the technical scheme that above-mentioned purpose adopted and be:
the utility model provides a power battery flexible coupling sheetmetal dry ice washs assembly line, includes a board, its characterized in that still includes and sets up a front dry ice wiper mechanism on the board, set up a reverse side dry ice wiper mechanism on the board, set up on the board and connect the one gas-liquid booster between front dry ice wiper mechanism and reverse side dry ice wiper mechanism, set up on the board and be located a tilting mechanism between front dry ice wiper mechanism and the reverse side dry ice wiper mechanism, and set up on the board and be located a transport mechanism on front dry ice wiper mechanism and the reverse side dry ice wiper mechanism side.
As a further improvement, front dry ice wiper mechanism is the same with reverse dry ice wiper mechanism structure, include a dry ice spray rinsing cover respectively, connect in gas-liquid booster tip and by last insert a washing shower nozzle in the dry ice spray rinsing cover, set up in a horizontal rotation subassembly in dry ice spray rinsing cover the place ahead, and set up on horizontal rotation subassembly and the activity inserts a rotatory carrier in the dry ice spray rinsing cover, wherein, cover the upper end at this dry ice spray rinsing and offer and supply to wash shower nozzle level swing back and forth's an activity opening, and offer on this dry ice spray rinsing cover leading flank and supply rotatory carrier tip activity male one side activity opening.
As a further improvement, the rotary carrier includes a rotary connection plate disposed on the upper end surface of the horizontal rotary component, a front carrier disposed on one end of the rotary connection plate and used for placing the metal sheet, and a rear carrier disposed on the other end of the rotary connection plate and used for placing the metal sheet.
As a further improvement, the front carrier is identical to the rear carrier in structure, and includes a plurality of rotary limiting posts connected to a rotary carrier block of the rotary connecting plate and protruding on the rotary carrier block, and a plurality of through holes are provided on the rotary carrier block.
As a further improvement, the dry ice spray rinsing cover is internally provided with a carrier limiting assembly, the carrier limiting assembly comprises a limiting block, a lifting driving motor arranged at the upper end of the limiting block and a driving shaft connected between the lifting driving motor and the limiting block, wherein a bayonet used for limiting the rotating carrier is arranged at the lower end of the limiting block in an upward concave manner.
As a further improvement, the horizontal rotating assembly is a revolving cylinder.
As a further improvement of the present invention, the turnover mechanism comprises a mounting base disposed on the machine platform and located between the front dry ice cleaning mechanism and the back dry ice cleaning mechanism, a longitudinal mounting plate disposed on the mounting base, a rotary cylinder disposed on the rear side of the longitudinal mounting plate, a plurality of rotary assemblies disposed on the mounting base and connected to the rotary cylinder, and a lifting assembly disposed in front of the mounting base, wherein the rotary assemblies comprise a pneumatic finger cylinder and a grabbing finger set disposed on the front end surface of the pneumatic finger cylinder; the rear end part of the pneumatic finger cylinder is connected with the rotary cylinder through a transmission assembly, and the transmission assembly comprises a driving wheel connected with the end part of the rotary cylinder, a driven wheel connected with the rear end part of the pneumatic finger cylinder and a synchronous transmission belt connected between the driving wheel and the driven wheel; the lifting assembly comprises a lifting cylinder arranged on the machine table and a turnover carrier arranged on the lifting cylinder and positioned in front of the grabbing finger group for placing the metal sheet, and the turnover carrier comprises a turnover carrier block arranged on the lifting cylinder and a plurality of turnover limiting columns arranged on the turnover carrier block.
As a further improvement of the present invention, the conveying mechanism comprises a fixed seat disposed on the machine platform, a plurality of sliders disposed on the fixed seat, a slide rail slidably disposed on the sliders, a translational driving component connected to the slide rail, and a plurality of conveying adsorption components disposed on the slide rail, wherein the conveying adsorption components comprise a connecting block disposed on the slide rail, a magnetic double-shaft cylinder disposed on a side surface of the connecting block, a suction nozzle mounting substrate disposed at a lower end of the magnetic double-shaft cylinder, and a plurality of suction nozzles longitudinally mounted on the suction nozzle mounting substrate; the translation driving assembly comprises a translation driving motor fixed on the fixed seat, a driving screw rod connected to the translation driving motor, and a plurality of translation driving blocks connected between the driving screw rod and the slide rail.
The utility model has the advantages that: by openly dry ice wiper mechanism, tilting mechanism and reverse side dry ice wiper mechanism three combine together, can accomplish openly dry ice in proper order to the sheetmetal and wash, turn-over, reverse side dry ice and wash the action, realize wasing the full aspect of sheetmetal, whole process action is accurate smooth and easy, degree of automation is high, production efficiency is high, and the cleaning performance is good, does benefit to follow-up processing production to the sheetmetal.
The above is an overview of the technical solution of the present invention, and the present invention is further explained with reference to the accompanying drawings and the detailed description.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of a part of the structure of the present invention;
fig. 3 is a schematic view of the overall structure of the front dry ice cleaning mechanism of the utility model;
fig. 4 is a schematic structural view of a part of the front dry ice cleaning mechanism of the utility model;
fig. 5 is another schematic structural diagram of the front dry ice cleaning mechanism of the present invention;
fig. 6 is a schematic structural view of the rotary carrier of the present invention;
fig. 7 is a schematic structural view of the turnover mechanism of the present invention;
fig. 8 is a schematic view of the overall structure of the conveying mechanism of the present invention;
fig. 9 is a schematic view of a part of the structure of the conveying mechanism of the present invention;
fig. 10 is a schematic structural view of the conveying adsorption assembly of the present invention.
Detailed Description
To further illustrate the technical means and effects of the present invention adopted to achieve the intended purpose, the following detailed description of the embodiments of the present invention is provided in conjunction with the accompanying drawings and preferred embodiments.
Please refer to fig. 1 and 2, an embodiment of the present invention provides a power battery flexible connection metal sheet dry ice cleaning assembly line, which includes a machine table 1, a front dry ice cleaning mechanism 2 disposed on the machine table 1, a back dry ice cleaning mechanism 3 disposed on the machine table 1, an air-liquid supercharger 4 disposed on the machine table 1 and connected between the front dry ice cleaning mechanism 2 and the back dry ice cleaning mechanism 3, a turnover mechanism 5 disposed on the machine table 1 and located between the front dry ice cleaning mechanism 2 and the back dry ice cleaning mechanism 3, and a conveying mechanism 6 disposed on the machine table 1 and located on the side of the front dry ice cleaning mechanism 2 and the back dry ice cleaning mechanism 3.
The embodiment is that the conveying mechanism 6 conveys the metal sheet, so that the metal sheet sequentially passes through the front dry ice cleaning mechanism 2, the turnover mechanism 5 and the back dry ice cleaning mechanism 3, and the metal sheet of the embodiment can be an aluminum sheet or a copper sheet. Specifically, the front side of the metal sheet is cleaned by the front side dry ice cleaning mechanism 2 through dry ice, the front side of the metal sheet is conveyed to the turnover mechanism 5 after being cleaned, the metal sheet is turned over through the turnover mechanism 5 and then conveyed to the back side dry ice cleaning mechanism 3, the back side of the metal sheet is cleaned by the back side dry ice cleaning mechanism 3 through dry ice, and finally the metal sheet is conveyed to the next station through the conveying mechanism 6.
In the present embodiment, the front dry ice cleaning mechanism 2 and the back dry ice cleaning mechanism 3 have the same structure, and the front dry ice cleaning mechanism 2 is described below by taking the front dry ice cleaning mechanism 2 as an example, as shown in fig. 3 to 6, the front dry ice cleaning mechanism 2 respectively includes a dry ice spraying cover 21, a cleaning nozzle 22 connected to an end of the gas-liquid supercharger 4 and inserted into the dry ice spraying cover 21 from above, a horizontal rotating assembly 23 disposed in front of the dry ice spraying cover 21, and a rotating carrier 24 disposed on the horizontal rotating assembly 23 and movably inserted into the dry ice spraying cover 21, wherein an upper movable opening 211 for the cleaning nozzle 22 to swing horizontally back and forth is disposed at an upper end of the dry ice spraying cover 21, and a side movable opening 212 for the end of the rotating carrier 24 to be movably inserted is disposed on a front side surface of the dry ice spraying cover 21; the horizontal rotary member 23 is a rotary cylinder.
Specifically, the rotary carrier 24 includes a rotary connecting plate 241 disposed on the upper end surface of the horizontal rotary component 23, a front carrier 242 disposed at one end of the rotary connecting plate 241 and used for placing the metal sheet, and a rear carrier 243 disposed at the other end of the rotary connecting plate 241 and used for placing the metal sheet. In the present embodiment, the front carrier 242 and the rear carrier 243 have the same structure, and the front carrier 242 is described as an example below, as shown in fig. 6, the front carrier 242 respectively includes a rotary carrier 2421 connected to the rotary connecting plate 241 and a plurality of rotary limiting columns 2422 protruding from the rotary carrier 2421, and the rotary limiting columns 2422 limit the metal sheets placed on the rotary carrier 2421 to prevent the metal sheets from sliding; and a plurality of through holes 24211 are formed in the rotary carrier 2421, so that dry ice particles can fall from the through holes 24211 conveniently in the dry ice cleaning process.
When the metal sheet is conveyed onto the front carrier 242 by the conveying mechanism 6, the horizontal rotating assembly 23 drives the rotating carrier 24 to horizontally rotate 180 degrees, so that the positions of the front carrier 242 and the rear carrier 243 are changed, the front carrier 242 with the metal sheet enters the dry ice spray cover 21, and the rear carrier 243 rotates to the front; then, the cleaning nozzle 22 performs dry ice cleaning on the metal sheet on the front carrier 242, and the conveying mechanism 6 conveys other metal sheets to the rear carrier 243; then, the horizontal rotation assembly 23 drives the rotation carrier 24 to horizontally rotate 180 degrees again, so that the front carrier 242 and the rear carrier 243 are replaced again, and the actions are repeated, thereby continuously cleaning the front surfaces of different metal sheets by dry ice.
As shown in fig. 4, a carrier limiting assembly 25 is disposed in the dry ice spray cover 21, the carrier limiting assembly 25 includes a limiting block 251, a lifting driving motor 252 disposed at an upper end of the limiting block 251, and a driving shaft 253 connecting the lifting driving motor 252 and the limiting block 251, wherein a bayonet 2511 for limiting the rotation of the carrier 24 is recessed upward at a lower end of the limiting block 251. When the cleaning nozzle 22 sprays dry ice particles to the metal sheet, in order to prevent the rotary carrier 24 from moving, the limiting block 251 of the carrier limiting assembly 25 is adopted to limit the front carrier 242 or the rear carrier 243 in the embodiment, so as to ensure that the position of the front carrier 242 or the rear carrier 243 is stable and fixed when the dry ice particles are sprayed, so that the completeness and thoroughness of dry ice cleaning are improved, and the effect of dry ice cleaning is improved.
In this embodiment, after the front surface of the metal sheet is cleaned, the back surface of the metal sheet needs to be cleaned after being turned over, as shown in fig. 7, the turnover mechanism 5 includes a mounting base 51 disposed on the machine platform 1 and located between the front dry ice cleaning mechanism 2 and the back dry ice cleaning mechanism 3, a longitudinal mounting plate 52 disposed on the mounting base 51, a rotating cylinder 53 disposed on the back side surface of the longitudinal mounting plate 52, a plurality of rotating assemblies 54 disposed on the mounting base 51 and connected to the rotating cylinder 53, and a lifting assembly 55 disposed in front of the mounting base 51, where the rotating assemblies 54 include a pneumatic finger cylinder 541 and a grabbing finger group 542 disposed on the front end surface of the pneumatic finger cylinder 541; the rear end part of the pneumatic finger cylinder 541 is connected with the rotating cylinder 53 through a transmission assembly 56, and the transmission assembly 56 comprises a driving wheel 561 connected with the end part of the rotating cylinder 53, a driven wheel 562 connected with the rear end part of the pneumatic finger cylinder 541, and a synchronous transmission belt 563 connected between the driving wheel 561 and the driven wheel 562; the lifting assembly 55 includes a lifting cylinder 551 disposed on the machine platform 1, and a turning carrier 552 disposed on the lifting cylinder 551 and located in front of the grabbing finger set 542 for placing the metal sheet, wherein the turning carrier 552 includes a turning carrier 5521 disposed on the lifting cylinder 551, and a plurality of turning limiting columns 5522 disposed on the turning carrier 5521.
After the front of the metal sheet is cleaned, the conveying mechanism 6 conveys the metal sheet to the overturning carrying block 5521 of the overturning mechanism 5, the grabbing finger group 542 clamps and takes the metal sheet, and the rotating assembly 54 is driven by the driving action of the rotating cylinder 53 to overturn 180 degrees together with the metal sheet, so that the back of the metal sheet faces upwards. And then, the metal sheet is conveyed to the back-side dry ice cleaning mechanism 3 by the conveying mechanism 6, the back side of the metal sheet is cleaned by the back-side dry ice cleaning mechanism 3, and the process of cleaning the reverse side of the metal sheet by the back-side dry ice cleaning mechanism 3 is the same as the process of cleaning the front side of the metal sheet by the front-side dry ice cleaning mechanism 2.
In the present embodiment, as shown in fig. 8 to 10, the conveying mechanism 6 includes a fixed seat 61 disposed on the machine platform 1, a plurality of sliders 62 disposed on the fixed seat 61, a slide rail 63 slidably disposed on the slider 62, a translation driving component 64 connected to the slide rail 63, and a plurality of conveying suction components 65 disposed on the slide rail 63. Specifically, as shown in fig. 10, the transfer and suction assembly 65 includes a connection block 651 disposed on the slide rail 63, a magnetized biaxial cylinder 652 disposed on a side surface of the connection block 651, a nozzle mounting substrate 653 disposed at a lower end of the magnetized biaxial cylinder 652, and a plurality of nozzles 654 longitudinally mounted on the nozzle mounting substrate 653. As shown in fig. 9, the translational driving assembly 64 includes a translational driving motor 641 fixed on the fixing base 61, a driving screw 642 connected to the translational driving motor 641, and a plurality of translational driving blocks 643 connected between the driving screw 642 and the sliding rail 63.
In the embodiment, the translation driving assembly 64 drives the sliding rail 63 to horizontally and linearly move, so that the metal sheet sequentially passes through the front dry ice cleaning mechanism 2, the turnover mechanism 5 and the back dry ice cleaning mechanism 3, and the processes of metal sheet front cleaning, metal sheet turnover and metal sheet back cleaning are sequentially completed.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that other structures obtained by adopting the same or similar technical features as the above embodiments of the present invention are all within the protection scope of the present invention.

Claims (8)

1. The utility model provides a power battery flexible coupling sheetmetal dry ice washs assembly line, includes a board, its characterized in that still includes and sets up a front dry ice wiper mechanism on the board, set up a reverse side dry ice wiper mechanism on the board, set up on the board and connect the one gas-liquid booster between front dry ice wiper mechanism and reverse side dry ice wiper mechanism, set up on the board and be located a tilting mechanism between front dry ice wiper mechanism and the reverse side dry ice wiper mechanism, and set up on the board and be located a transport mechanism on front dry ice wiper mechanism and the reverse side dry ice wiper mechanism side.
2. The assembly line for cleaning the soft-connection metal sheet and the dry ice of the power battery as claimed in claim 1, wherein the front dry ice cleaning mechanism and the back dry ice cleaning mechanism have the same structure and respectively comprise a dry ice spraying cover, a cleaning spray head connected to the end of the gas-liquid supercharger and inserted into the dry ice spraying cover from the top, a horizontal rotating assembly arranged in front of the dry ice spraying cover, and a rotating carrier arranged on the horizontal rotating assembly and movably inserted into the dry ice spraying cover, wherein an upper movable opening for the cleaning spray head to swing horizontally back and forth is formed at the upper end of the dry ice spraying cover, and a side movable opening for the end of the rotating carrier to movably insert is formed on the front side surface of the dry ice spraying cover.
3. The dry ice cleaning line for soft-connected metal sheets of power batteries as claimed in claim 2, wherein the rotary carrier comprises a rotary connecting plate disposed on the upper end face of the horizontal rotary component, a front carrier disposed at one end of the rotary connecting plate for placing the metal sheets, and a rear carrier disposed at the other end of the rotary connecting plate for placing the metal sheets.
4. The assembly line for cleaning the soft connection metal piece and the dry ice of the power battery as claimed in claim 3, wherein the front carrier and the rear carrier have the same structure, and respectively comprise a rotary carrier connected to the rotary connecting plate and a plurality of rotary limiting columns protruding from the rotary carrier, and the rotary carrier is provided with a plurality of through holes.
5. The power battery flexible connection metal piece dry ice cleaning assembly line as claimed in claim 2, wherein a carrier limiting assembly is arranged in the dry ice spray cover, the carrier limiting assembly comprises a limiting block, a lifting driving motor arranged at the upper end of the limiting block, and a driving shaft connected between the lifting driving motor and the limiting block, wherein a bayonet used for limiting the rotating carrier is arranged at the lower end of the limiting block in an upward concave manner.
6. The power battery flexible connection metal sheet dry ice cleaning assembly line of claim 2, wherein the horizontal rotating assembly is a rotary cylinder.
7. The dry ice cleaning assembly line for the power battery flexible connection metal sheet as claimed in claim 1, wherein the turnover mechanism comprises a mounting base arranged on the machine table and located between the front dry ice cleaning mechanism and the back dry ice cleaning mechanism, a longitudinal mounting plate arranged on the mounting base, a rotary cylinder arranged on the rear side surface of the longitudinal mounting plate, a plurality of rotary assemblies arranged on the mounting base and connected to the rotary cylinder, and a lifting assembly arranged in front of the mounting base, wherein the rotary assemblies comprise a pneumatic finger cylinder and a grabbing finger group arranged on the front end surface of the pneumatic finger cylinder; the rear end part of the pneumatic finger cylinder is connected with the rotary cylinder through a transmission assembly, and the transmission assembly comprises a driving wheel connected with the end part of the rotary cylinder, a driven wheel connected with the rear end part of the pneumatic finger cylinder and a synchronous transmission belt connected between the driving wheel and the driven wheel; the lifting assembly comprises a lifting cylinder arranged on the machine table and a turnover carrier arranged on the lifting cylinder and positioned in front of the grabbing finger group for placing the metal sheet, and the turnover carrier comprises a turnover carrier block arranged on the lifting cylinder and a plurality of turnover limiting columns arranged on the turnover carrier block.
8. The power battery flexible connection metal sheet dry ice cleaning assembly line as claimed in claim 1, wherein the conveying mechanism comprises a fixed seat arranged on the machine table, a plurality of sliding blocks arranged on the fixed seat, a sliding rail arranged on the sliding blocks in a sliding manner, a translation driving assembly connected to the sliding rail, and a plurality of conveying adsorption assemblies arranged on the sliding rail, wherein the conveying adsorption assemblies comprise a connecting block arranged on the sliding rail, a magnetic double-shaft cylinder arranged on the side surface of the connecting block, a suction nozzle mounting substrate arranged at the lower end of the magnetic double-shaft cylinder, and a plurality of suction nozzles longitudinally arranged on the suction nozzle mounting substrate; the translation driving assembly comprises a translation driving motor fixed on the fixed seat, a driving screw rod connected to the translation driving motor, and a plurality of translation driving blocks connected between the driving screw rod and the slide rail.
CN201821144006.6U 2018-07-18 2018-07-18 Power battery flexible connection sheetmetal dry ice washs assembly line Expired - Fee Related CN212238460U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821144006.6U CN212238460U (en) 2018-07-18 2018-07-18 Power battery flexible connection sheetmetal dry ice washs assembly line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821144006.6U CN212238460U (en) 2018-07-18 2018-07-18 Power battery flexible connection sheetmetal dry ice washs assembly line

Publications (1)

Publication Number Publication Date
CN212238460U true CN212238460U (en) 2020-12-29

Family

ID=73971119

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821144006.6U Expired - Fee Related CN212238460U (en) 2018-07-18 2018-07-18 Power battery flexible connection sheetmetal dry ice washs assembly line

Country Status (1)

Country Link
CN (1) CN212238460U (en)

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201229

Termination date: 20210718

CF01 Termination of patent right due to non-payment of annual fee