CN209886211U - Battery cell blanking defective product assembly line - Google Patents
Battery cell blanking defective product assembly line Download PDFInfo
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- CN209886211U CN209886211U CN201920044331.3U CN201920044331U CN209886211U CN 209886211 U CN209886211 U CN 209886211U CN 201920044331 U CN201920044331 U CN 201920044331U CN 209886211 U CN209886211 U CN 209886211U
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Abstract
The utility model discloses an electricity core unloading defective products assembly line, the assembly line includes: the short-circuit defective product production line is arranged on the workbench and used for outputting the battery cell with the short circuit and unqualified resistance detection through the production line when the battery cell is subjected to hot pressing; the weighing defective product assembly line is arranged at the top of the short-circuit defective product assembly line, the short-circuit defective product assembly line and the weighing defective product assembly line are fixedly connected through a buffer frame support, and the weighing defective product assembly line is used for placing a defective product electric core after weighing is unqualified and outputting the defective product electric core on the assembly line. The utility model provides an use solitary assembly line to lead to the lower technical problem such as production efficiency in the current bad article processing procedure of electric core, have simple structure, characteristics such as easy to carry out.
Description
[ technical field ] A method for producing a semiconductor device
The utility model relates to an electricity core production and processing field, in particular to carry out hot pressing electricity core hot press unit to electric core.
[ background of the invention ]
The lithium battery is a new generation of green high-energy battery with excellent performance, and has the characteristics of high voltage, high capacity, no memory effect, no pollution, small volume, small internal resistance, less self-discharge, more cycle times and the like. The battery is widely applied to various civil and military fields such as automobile energy batteries, mobile power supplies, notebook computers, tablet computers and the like.
Generally need be a production line for the defective products of short circuit and the defective products independent design research and development of weighing on the current electric core processing assembly line, consequently lead to product machining efficiency lower to influence the production quality of battery, often need shut down the reloading at last unloading in-process simultaneously, influence power battery's whole productivity.
[ summary of the invention ]
To sum up, the utility model discloses main purpose is in order to solve and uses solitary assembly line to lead to the lower technical problem of production efficiency in the current bad article processing procedure of electric core, and provides an electric core unloading defective products assembly line.
In order to solve the technical problem, the utility model provides an electricity core unloading defective products assembly line, a serial communication port, the assembly line includes:
the short-circuit defective product production line is arranged on the workbench and used for outputting the battery cell with the short circuit and unqualified resistance detection through the production line when the battery cell is subjected to hot pressing;
the weighing defective product assembly line is arranged at the top of the short-circuit defective product assembly line, the short-circuit defective product assembly line and the weighing defective product assembly line are fixedly connected through a buffer frame support, and the weighing defective product assembly line is used for placing a defective product electric core after weighing is unqualified and outputting the defective product electric core on the assembly line.
The short-circuit defective product production line comprises: two parallel arrangement's first frame body, first drive arrangement, first driving shaft, first driven shaft, first synchronous belt, a plurality of first synchronous wheel axle seats, a plurality of first defective products charging trays, drive belt, first synchronizing wheel and second synchronizing wheel, two liang of settings are in respectively in first synchronous wheel axle seat second driving shaft and second driven shaft both ends, first drive arrangement installs on the first synchronous wheel axle seat that is close to first driven shaft department, first drive arrangement output is connected with first synchronizing wheel drive, first synchronizing wheel passes through drive belt and second synchronizing wheel swing joint, second synchronizing wheel and first driving shaft key-type connection, first driving shaft passes through first synchronous belt and is connected with first driven shaft rotation, a plurality of first defective products charging trays set up respectively at intervals on the second synchronous belt.
And the lower parts of the inner sides of the two first frame bodies are also provided with jacking mechanisms which adsorb and jack up the battery cell upwards.
The climbing mechanism includes: the pneumatic component mounting device comprises a cylinder mounting plate, a pneumatic component, a stop block, a limiting block, two guide pillars, two guide sleeves, a jacking mounting plate, a moving support plate, a suction nozzle mounting block and a suction disc, wherein the pneumatic component is mounted on the cylinder mounting plate, the two guide sleeves are arranged on the cylinder mounting plate and positioned on two sides of the pneumatic component, the guide pillars are in interference connection with the guide sleeves, one ends of the guide pillars are fixedly connected with the stop block, the other ends of the guide pillars are fixedly connected with the jacking mounting plate, the stop block is further provided with the limiting block perpendicular to the stop block, the moving support plate and the suction nozzle mounting block are sequentially arranged at the other end of the jacking mounting plate, and the suction.
The defective product assembly line of weighing includes: a second frame main body, a third driving device, a second driving shaft, a second driven shaft, a second synchronous belt, a plurality of second synchronous wheel shaft seats, a plurality of second defective material trays, a plurality of buffer supports and a mounting plate, one end of each of the plurality of buffer supports is fixedly arranged at two sides of the second frame main body respectively, the other end of each of the plurality of buffer supports is fixedly connected with the short-circuit defective product production line respectively, the second synchronous wheel axle seats are respectively arranged at two ends of the second driving shaft and the second driven shaft in pairs, the mounting plate is fixedly arranged on a second synchronous wheel axle seat positioned on one side of the driving shaft, the third driving device is arranged on the mounting plate, the output end of the third driving device is in driving connection with the second driving shaft, the second driving shaft and the driven shaft are in transmission connection with the second synchronous belt respectively, and the plurality of second defective material trays are arranged on the second synchronous belt at intervals respectively.
The third driving device includes: the first motor is in driving connection with the first planetary reducer and the coupling respectively, and the first planetary reducer is in rotating connection with the second driving shaft through the coupling.
The second defective material tray comprises two symmetrical and oppositely arranged clamp positioning blocks and guide wheels respectively arranged at two ends of each clamp positioning block.
And at least one group of photoelectric switches for detecting whether the defective material discs are in place or not are respectively arranged on the second synchronous wheel shaft seat.
The length of the short-circuit defective product production line is smaller than that of the weighing defective product production line.
Adopt above-mentioned technical scheme, compare with prior art, the utility model discloses produced beneficial effect lies in: the upper layer of the technical scheme of the utility model is a production line for weighing defective products, and after the weighing platform is unqualified in weighing, the robot places an NG battery cell on the production line; the lower floor is short circuit defective products assembly line, carries out short circuit and resistance detection to electric core during hot pressing electric core, appears not to conform to the standard, perhaps unqualified electric core passes through the cylinder jacking, places the anchor clamps on the cylinder, descends the cylinder again and places on the assembly line. The utility model discloses a defective products assembly line of weighing and short circuit defective products assembly line adopt upper and lower layer structure consequently to solve and use solitary assembly line to lead to the lower technical problem of production efficiency in the current electric core defective products processing procedure.
[ description of the drawings ]
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural diagram of the short-circuit defective product production line of the present invention;
fig. 3 is a schematic structural diagram of a jacking mechanism of the present invention;
FIG. 4 is a schematic structural view of the defective product weighing assembly line of the present invention;
fig. 5 is a schematic structural diagram of a third driving device of the present invention;
fig. 6 is a schematic structural diagram of a second defective product tray of the present invention.
[ detailed description ] embodiments
The following examples are further illustrative and supplementary to the present invention and do not constitute any limitation to the present invention.
As shown in fig. 1-6, the utility model discloses a bad product assembly line of electricity core unloading includes: a short circuit defective products assembly line 1, and a defective products assembly line 2 of weighing, short circuit defective products assembly line 1 sets up on the workstation, short circuit defective products assembly line is used for passing through this assembly line output with the unqualified electric core of short circuit and resistance detection when electric core hot pressing. The defective product assembly line 2 of weighing sets up 1 top of short circuit defective products assembly line, just short circuit defective products assembly line 1 and defective product assembly line 2 of weighing pass through 3 looks rigid couplings of buffer memory frame support, defective product assembly line 2 of weighing is used for placing the defective products electricity core after unqualified will weigh and exports on this assembly line.
As shown in fig. 2, the short-circuited defective product line 1 includes: two first frame bodies 11 which are arranged in parallel, a first driving device 12, a first driving shaft 13, a first driven shaft 14, a first synchronous belt 15, a plurality of first synchronous wheel shaft seats 16, a plurality of first defective material trays 17, a driving belt 18, a first synchronous wheel 19 and a second synchronous wheel 120, the first synchronous wheel axle seats 16 are respectively arranged at two ends of the first driving shaft 13 and the second driven shaft 24 in pairs, the first drive means 12 is mounted on a first synchronous pulley seat 16 adjacent a first driven shaft, the output end of the first driving device 12 is in driving connection with a first synchronizing wheel 19, the first synchronizing wheel 19 is movably connected with a second synchronizing wheel 120 through a transmission belt 18, the second synchronizing wheel 120 is in key connection with the first driving shaft 13, the first driving shaft 13 is in rotary connection with the first driven shaft 14 through the first synchronizing belt 15, the first defective product trays 17 are disposed at intervals on the second timing belt 25.
As shown in fig. 2 and fig. 3, a jacking mechanism 3 for adsorbing and jacking up the battery cell is further disposed at the lower part of the inner side of the two first frame bodies 11.
As shown in fig. 3, the jack mechanism 3 includes: the pneumatic component mounting structure comprises an air cylinder mounting plate 31, a pneumatic component 32, a stop block 33, a limiting block 34, two guide columns 35, two guide sleeves 36, a jacking mounting plate 37, a transfer plate 38, a suction nozzle mounting block 39 and a suction disc 310, wherein the pneumatic component 32 is mounted on the air cylinder mounting plate 31, the two guide sleeves 36 are arranged on the air cylinder mounting plate 31 and positioned on two sides of the pneumatic component 32, the guide columns 35 are in interference connection with the guide sleeves 36, one ends of the guide columns 35 are fixedly connected with the stop block 33, the other ends of the guide columns 35 are fixedly connected with the jacking mounting plate 37, the stop block 33 is further provided with the limiting block 34 perpendicular to the stop block, the other ends of the jacking mounting plate 37 are sequentially provided with the transfer plate 38 and the suction nozzle mounting block 39, and the suction.
As shown in fig. 4, the weighing defective product line 2 includes: a second frame main body 21, a third driving device 22, a second driving shaft 23, a second driven shaft 24, a second synchronous belt 25, a plurality of second synchronous pulley shaft seats 26, a plurality of second defective material trays 27, a plurality of buffer memory supports 28 and a mounting plate 29, wherein one ends of the buffer memory supports 28 are respectively fixed at two sides of the second frame main body 21, the other ends of the buffer memory supports 28 are respectively fixedly connected with the short-circuit defective material production line 1, the second synchronous pulley shaft seats 26 are respectively arranged at two ends of the second driving shaft 23 and the second driven shaft 24, the mounting plate 29 is fixedly arranged on the second synchronous pulley shaft seats 26 at one side of the driving shafts, the third driving device 22 is arranged on the mounting plate 29, the output end of the third driving device 22 is in driving connection with the second driving shaft 23, the second driving shaft 23 and the driven shaft are respectively in driving connection with the second synchronous belt 25, the second defective product trays 27 are disposed at intervals on the second timing belt 25.
As shown in fig. 5, the third driving device 22 includes: the first motor 221 is respectively in driving connection with the first planetary reducer 222 and the coupling 223, the first planetary reducer 222 is in rotating connection with the second driving shaft 23 through the coupling 223, and the outer sealing plate 224 is arranged on the outer side of the coupling 223.
As shown in fig. 6, the second defective product tray 27 includes two symmetrical and opposite jig positioning blocks 271, and guide wheels 272 respectively disposed at two ends of each jig positioning block 271.
At least one group of photoelectric switches 261 for detecting whether the defective material tray is in place or not are further respectively arranged on the second synchronous wheel axle seats 26.
The length of the short-circuit defective product assembly line 1 is smaller than that of the weighing defective product assembly line 2.
While the invention has been described with reference to the above embodiments, the scope of the invention is not limited thereto, and the above components may be replaced with similar or equivalent elements known to those skilled in the art without departing from the concept of the invention.
Claims (9)
1. The utility model provides a bad product assembly line of electricity core unloading which characterized in that, the assembly line includes:
the short-circuit defective product production line (1) is arranged on the workbench and is used for outputting the battery cell which is short-circuited and unqualified in resistance detection through the production line when the battery cell is subjected to hot pressing;
the weighing defective product production line (2) is arranged at the top of the short-circuit defective product production line (1), the short-circuit defective product production line (1) and the weighing defective product production line (2) are fixedly connected through a buffer frame support (4), and the weighing defective product production line (2) is used for placing a defective product battery cell after weighing disqualification to be output on the production line.
2. The cell blanking defective product flow line of claim 1, wherein the short-circuit defective product flow line (1) comprises: two first frame bodies (11) arranged in parallel, a first driving device (12), a first driving shaft (13), a first driven shaft (14), a first synchronous belt (15), a plurality of first synchronous shaft seats (16), a plurality of first defective material trays (17), a driving belt (18), a first synchronous wheel (19) and a second synchronous wheel (120), wherein the first synchronous shaft seats (16) are respectively arranged at two ends of the first driving shaft (13) and the second driven shaft (24), the first driving device (12) is arranged on the first synchronous shaft seats (16) close to the first driven shaft, the output end of the first driving device (12) is in driving connection with the first synchronous wheel (19), the first synchronous wheel (19) is movably connected with the second synchronous wheel (120) through the driving belt (18), and the second synchronous wheel (120) is in key connection with the first driving shaft (13), the first driving shaft (13) is rotationally connected with the first driven shaft (14) through a first synchronous belt (15), and the first defective product trays (17) are arranged on the second synchronous belt (25) at intervals.
3. The assembly line of battery cell blanking defective products of claim 2, wherein the lower part of the inner side of the two first frame bodies (11) is further provided with a jacking mechanism (3) for adsorbing and jacking up the battery cell.
4. The battery core blanking defective product production line of claim 3, wherein the jacking mechanism (3) comprises: the pneumatic vacuum cleaner comprises an air cylinder mounting plate (31), a pneumatic element (32), a stop block (33), a limiting block (34), two guide posts (35), two guide sleeves (36), a jacking mounting plate (37), a transfer plate (38), a suction nozzle mounting block (39) and a suction disc (310), wherein the pneumatic element (32) is mounted on the air cylinder mounting plate (31), the two guide sleeves (36) are arranged on the air cylinder mounting plate (31) and positioned at two sides of the pneumatic element (32), the guide posts (35) are in interference connection with the guide sleeves (36), one end of each guide post (35) is fixedly connected with the stop block (33), the other end of each guide post (35) is fixedly connected with the jacking mounting plate (37), the limiting block (34) perpendicular to the stop block (33) is further arranged on the stop block (33), and the other end of the jacking mounting plate (37) is sequentially provided with the transfer support plate (38) and the suction nozzle, the suction disc (310) is embedded in the suction nozzle mounting block (39).
5. The cell blanking defective product flow line of claim 1, wherein the weighing defective product flow line (2) comprises: a second frame main body (21), a third driving device (22), a second driving shaft (23), a second driven shaft (24), a second synchronous belt (25), a plurality of second synchronous wheel shaft seats (26), a plurality of second defective product trays (27), a plurality of buffer memory supports (28) and a mounting plate (29), wherein one ends of the buffer memory supports (28) are fixedly arranged at two sides of the second frame main body (21) respectively, the other ends of the buffer memory supports (28) are fixedly connected with the short-circuit defective product production line (1) respectively, the second synchronous wheel shaft seats (26) are respectively arranged at two ends of the second driving shaft (23) and the second driven shaft (24), the mounting plate (29) is fixedly arranged on the second synchronous wheel shaft seats (26) positioned at one side of the driving shaft, the third driving device (22) is arranged on the mounting plate (29), and the output end of the third driving device (22) is in driving connection with the second driving shaft (23), the second driving shaft (23) and the driven shaft are in transmission connection with a second synchronous belt (25) respectively, and the second defective product trays (27) are arranged on the second synchronous belt (25) at intervals respectively.
6. The cell blanking defective product line of claim 5, wherein the third driving device (22) comprises: the driving device comprises a first motor (221), a first planetary reducer (222), a coupling (223) and an outer sealing plate (224), wherein the first motor (221) is in driving connection with the first planetary reducer (222) and the coupling (223) respectively, the first planetary reducer (222) is in rotating connection with the second driving shaft (23) through the coupling (223), and the outer sealing plate (224) is arranged on the outer side of the coupling (223).
7. The battery cell blanking defective product production line of claim 5, wherein the second defective product tray (27) includes two symmetrical and oppositely disposed clamp positioning blocks (271) and guide wheels (272) respectively disposed at two ends of each clamp positioning block (271).
8. The battery cell blanking defective product assembly line of claim 5, wherein at least one group of photoelectric switches (261) for detecting whether a defective product tray is in place is further respectively arranged on the second synchronous pulley seat (26).
9. The cell blanking defective product line of claim 5, wherein the length of the short-circuit defective product line (1) is less than the length of the weighing defective product line (2).
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CN201920044331.3U CN209886211U (en) | 2019-01-10 | 2019-01-10 | Battery cell blanking defective product assembly line |
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CN201920044331.3U CN209886211U (en) | 2019-01-10 | 2019-01-10 | Battery cell blanking defective product assembly line |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111729869A (en) * | 2020-07-15 | 2020-10-02 | 珠海市精实测控技术有限公司 | Machine vision analysis's car power device detecting system |
CN111929525A (en) * | 2020-06-28 | 2020-11-13 | 大族激光科技产业集团股份有限公司 | Power battery cell detection workbench |
CN114054359A (en) * | 2020-08-03 | 2022-02-18 | 大族激光科技产业集团股份有限公司 | Battery cell detection pairing equipment and detection method |
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2019
- 2019-01-10 CN CN201920044331.3U patent/CN209886211U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111929525A (en) * | 2020-06-28 | 2020-11-13 | 大族激光科技产业集团股份有限公司 | Power battery cell detection workbench |
CN111929525B (en) * | 2020-06-28 | 2023-08-11 | 深圳市大族锂电智能装备有限公司 | Power battery cell detection workbench |
CN111729869A (en) * | 2020-07-15 | 2020-10-02 | 珠海市精实测控技术有限公司 | Machine vision analysis's car power device detecting system |
CN114054359A (en) * | 2020-08-03 | 2022-02-18 | 大族激光科技产业集团股份有限公司 | Battery cell detection pairing equipment and detection method |
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