CN105634407A - Battery piece power-up device - Google Patents
Battery piece power-up device Download PDFInfo
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- CN105634407A CN105634407A CN201410605027.3A CN201410605027A CN105634407A CN 105634407 A CN105634407 A CN 105634407A CN 201410605027 A CN201410605027 A CN 201410605027A CN 105634407 A CN105634407 A CN 105634407A
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- location
- plate
- cell piece
- power
- jaw
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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Abstract
The invention discloses a battery piece power-up device, and the device comprises a first power-up assembly and a second power-up assembly. The first power-up assembly comprises a rack, a lifting rack which rises and falls along the rack, and a probe disposed on the lifting rack. The second power-up assembly is disposed below the first power-up assembly, and comprises a positioning plate, a supporting leg and positioning clamping claws. The surface of the positioning plate is provided with a conductive part, and the positioning clamping claws are disposed at two opposite sides of the positioning plate. The positioning clamping claws are connected with positioning clamping claw air cylinders, and the positioning clamping claw air cylinders drive the positioning clamping claws to carry out the positioning of a battery piece. The device is simple in structure, can automatically correct the position of the battery piece and the power-up of the battery piece, guarantees that the battery piece can be electrified effectively, and is high in efficiency.
Description
Technical field
The present invention relates to cell piece detection technique field, be specifically related to a kind of cell piece power-up device.
Background technology
In solar-photovoltaic technology field, cell piece is most important composition core, in order to ensure the quality of cell piece, it is necessary to cell piece carries out EL (electroluminescence, electroluminescent) test, is detected by problematic cell piece. The normal produced problem of cell piece specifically has: hidden split, rubble, rosin joint, disconnected etc.
The principle of EL test is mainly: cell piece is placed on test position, and driving device drives probe to move down on cell piece line, and both positive and negative polarity is energized. Utilizing the image in the camera lower cell piece energising situation of shooting, EL tester image is checked, the luminous degree of image and minority carrier life time, current intensity are relevant.
Committed step accurately is tested it is found that the power-up procedures of cell piece is to ensure that by the test philosophy of EL. Conveyer belt is directly transmitted the cell piece come and is powered up by traditional cell piece power-up device. But, the position of cell piece is likely to have occurred that deviation before powering up, and powers up if being made directly, probe can not linear contact lay well and on cell piece, cause and power up failure, thus affecting the EL detection of cell piece. If before powering up, adopt artificial mode that cell piece is carried out reforming of position, waste time and energy, and effect is not good yet.
Therefore, a kind of simple in construction, efficiency is high, it is possible to the cell piece power-up device automatically carrying out reforming position to cell piece urgently occurs.
Summary of the invention
In order to solve above-mentioned technical problem, the invention provides a kind of cell piece power-up device, this apparatus structure is simple, it is possible to automatically cell piece is carried out position and reforms, it is ensured that cell piece can effectively power up, and adds electrical efficiency height.
In order to achieve the above object, technical scheme is as follows:
Cell piece power-up device includes: the first power-up component, including: frame, along the crane of frame lifting and the probe that is arranged on crane; Second power-up component, it is arranged on the lower section of the first power-up component, including: location-plate, a spike and location jaw, location-plate surface is provided with conductive part, location jaw is arranged on the both sides of location-plate, location jaw is connected with location jaw cylinder, and cell piece is positioned by jaw air cylinder driven location, location jaw.
The specific works flow process of cell piece power-up device of the present invention is:
First, from a upper station, cell piece is sent on location-plate.
Then, the location jaw of jaw air cylinder driven location-plate both sides, location moves forward and backward, thus cell piece is positioned, the cell piece of crooked placement originally is carried out position reform, the line ensured on cell piece is placed in conductive part, ensure that the line on cell piece is corresponding with the line on crane, powers up for cell piece and prepares simultaneously.
Secondly, crane moves down, and the probe on crane is placed on the line of cell piece.
Finally, being initially powered up, have electric current to flow through in each line of cell piece, cell piece powers up successfully.
Cell piece power-up device of the present invention, in terms of existing technologies, it utilizes location jaw automatically cell piece to be carried out position and reforms, it is ensured that the position of cell piece is accurate, it is possible to effectively carries out cell piece and powers up.
As preferred scheme, frame is provided with motor and the cam mechanism being connected with motor, and cam mechanism is connected with crane, and motor driving cam means rotates, thus driving crane to lift along the guide groove in frame.
Adopting above-mentioned preferred scheme, motor driving cam means rotates, thus driving crane to lift along the guide groove in frame, adopts the mode of motor driving cam means, its compact conformation, and reliability is high, and efficiency is fast.
As preferred scheme, crane is provided with the support plate being arranged side by side, and probe is arranged on support plate, and crane is detachable with support to be connected.
Adopting above-mentioned preferred scheme, crane is provided with multiple support plate being arranged side by side, and the number of support plate is identical with the line number on cell piece, and probe is arranged on support plate, firmly installs, it is simple to change. Crane is detachable with support to be connected, and is possible not only to be conveniently replaceable probe, also allows for changing the quantity of support side by side simultaneously so that it is is satisfied with the cell piece to not collinear number and is powered up.
As preferred scheme, in probe, it is provided with elastic layer.
Adopting above-mentioned preferred scheme, elastic layer can play a good buffering, it is ensured that during linear contact lay on probe and cell piece, probe and cell piece will not have damage. Elastic layer in probe can spring or other assemblies.
As preferred scheme, location-plate surface is provided with a word groove, a word groove and location-plate surface circular sliding slopes.
Adopting above-mentioned preferred scheme, the groove on location-plate surface can reduce the overall weight of location-plate. Meanwhile, when cell piece is sent on location-plate by conveyer belt from a upper station, conveyer belt can be placed in groove, it is not necessary to is taken off from conveyer belt by cell piece. When cell piece has been powered up by cell piece power-up device, cell piece directly can be sent to next station by the conveyer belt in groove. Groove and location-plate surface circular sliding slopes, it is ensured that cell piece will not be damaged in the process of taking of cell piece.
As preferred scheme, location-plate is provided with through hole, and through hole is arranged on the outside that conductive part two is relative, and location jaw is vertical with location-plate through through hole.
Adopting above-mentioned preferred scheme, the cell piece on location-plate, through the through hole on location-plate, is positioned and reforms in position by location jaw, its more compact structure, and space availability ratio is big, saves space.
As preferred scheme, location-plate surface is provided with groove, and groove is arranged on conductive part, is provided with sensor in groove.
Adopting above-mentioned preferred scheme, the sensor in groove can detect whether that cell piece transmits from a upper station in real time. Owing to the essential condition that powers up of cell piece is that the line on cell piece is placed on conductive part. Therefore groove is arranged on conductive part, it is more reasonable, even if not so having sensed cell piece outside conductive part, it can not realize successfully powering up.
As preferred scheme, the side of location-plate is provided with at least two location jaw.
Adopt above-mentioned preferred scheme, it is possible to better the cell piece on location-plate is carried out position and reform. Use 2 principles determining straight line to obtain, location-plate side be provided with plural location jaw is reformed in the position of cell piece more effective, more accurate.
As preferred scheme, location-plate includes the first location-plate and the second location-plate, is provided with guide post between the first location-plate and the second location-plate, and the first location-plate is located at the top of the second location-plate, first location-plate is connected with lift cylinder, and lift cylinder drives the first location-plate lifting.
Adopt above-mentioned preferred scheme, it is possible to effectively realize the lifting of the first location-plate. The liftable first location-plate scope of application is bigger, and the transporter being applicable to differing heights transmits the cell piece of coming. Lift cylinder drives the first location-plate to rise along guide post, and crane declines. First location-plate and crane action simultaneously, be greatly saved the time, promote and add electrical efficiency.
As preferred scheme, location jaw surfaces is provided with elastic layer.
Adopting above-mentioned preferred scheme, location jaw when carrying out position and reforming to cell piece, and elastic layer can cushion, it is ensured that location jaw will not damage cell piece.
Accompanying drawing explanation
The overall structure schematic diagram that Fig. 1 provides for the embodiment of the present invention.
One of first power-up component structural representation that Fig. 2 provides for the embodiment of the present invention.
The two of the first power-up component structural representation that Fig. 3 provides for the embodiment of the present invention.
The structural representation of the motor that Fig. 4 provides for the embodiment of the present invention and cam mechanism.
One of second power-up component structural representation that Fig. 5 provides for the embodiment of the present invention.
The two of the second power-up component structural representation that Fig. 6 provides for the embodiment of the present invention. Fig. 7
For A portion enlarged drawing in Fig. 6.
Wherein: 1, frame, 2, crane, 3, probe, 4, stepper drive motors, 5, cam mechanism, 6, guide groove, 7, support plate, 8, spike, 9, location jaw, 10, the first location-plate, the 11, second location-plate, 12, guide post, 13, lift cylinder, 14, location jaw cylinder, 15, conductive part, 16, a word groove, 17, groove, 18, cell piece.
Detailed description of the invention
The preferred embodiment of the present invention is described in detail below in conjunction with accompanying drawing.
In order to reach the purpose of the present invention, as shown in figs. 1-7, in the some of them embodiment of cell piece power-up device of the present invention,
As it is shown in figure 1, cell piece power-up device includes: the first power-up component and the second power-up component, the first power-up component is arranged on above the second power-up component.
As shown in Figure 2, Figure 3 and Figure 4, the first power-up component includes frame 1, crane 2 and probe 3. Frame 1 back side is provided with stepper drive motors 4 and cam mechanism 5, and stepper drive motors 4 is connected with cam mechanism 5, and cam mechanism 5 is connected with crane 2. Stepper drive motors 4 driving cam means 5 rotates, thus driving crane 2 to lift along guide groove 6, adopts the mode of stepper drive motors 4 driving cam means 5, its compact conformation, and reliability is high, and efficiency is fast. Crane 2 is provided with three support plates being set up in parallel 7, and each support plate 7 is provided with 18 probes 3, firmly installs, it is adaptable to the cell piece 18 to three is powered up. Crane 2 is detachable with support 7 to be connected, and is possible not only to be conveniently replaceable probe 3, also allows for changing the quantity of support 7 side by side simultaneously so that it is is satisfied with the cell piece 18 to not collinear number and is powered up. Being provided with elastic layer in probe 3, elastic layer can play cushioning effect, it is ensured that when probe 3 and linear contact lay on cell piece 18, probe 3 and cell piece 18 will not have damage. Elastic layer in probe 3 can spring or other assemblies.
As shown in Fig. 5, Fig. 6 and Fig. 7, the second positioning component includes: first location-plate the 10, second location-plate 11, a spike 8 and four location jaws 9. Wherein, the second positioning component structural representation when Fig. 6 and Fig. 7 is be equipped with cell piece 18 on the first location-plate 10.
Being provided with two guide posts 12 between the first location-plate 10 and the second location-plate 11, the first location-plate 10 is arranged on the top of the second location-plate 11, and the first location-plate 10 is connected with two lift cylinders 13, and lift cylinder 13 drives the first location-plate 10 to lift. Liftable first location-plate 10 scope of application is bigger, and the transporter being applicable to differing heights transmits the cell piece 18 of coming. Lift cylinder 13 drives the first location-plate 10 to rise along guide post 12, and crane 2 declines simultaneously. First location-plate 10 and crane 2 action simultaneously, be greatly saved the time, promote and add electrical efficiency.
Four location jaws 9 are arranged on the opposite sides of the first location-plate 10 between two, use 2 principles determining straight line to obtain, and first location-plate 10 the same side has two to position jaws 9 cell piece 18 can be carried out better position and reform. First location-plate 10 is provided with four through holes, and four through holes arrange conductive part two opposite exterior lateral sides between two. One location jaw 9 is through a through hole, vertical with the first location-plate 10. First location-plate 10 is connected with two location jaw cylinders 14, one location jaw cylinder 14 is connected with two the location jaws 9 being arranged on the first location-plate 10 opposite sides, one location jaw cylinder 14 simultaneously drives two location jaws 9 and cell piece 18 is positioned, save cost, compact conformation, space availability ratio is high.
First location-plate 10 surface is provided with conductive part 15, when cell piece 18 is placed on the first location-plate 10, cell piece 18 is carried out position and reforms by location jaw, and except ensureing that probe 3 is corresponding with the grid line position of cell piece 18, the grid line also ensured on cell piece is in conductive part 15. Only when probe 3 contacts with cell piece grid line, cell piece grid line contacts with conductive part 15, and guarantee cell piece 18 powers up effectively, and it has electric current to pass through. Conductive part 15 can adopt the conductive material such as metallic copper, aluminum to make. As shown in Figure 6 and Figure 7, cell piece 18 is placed on the first location-plate 10, and the grid line of its cell piece is placed in conductive part 15.
First location-plate 10 surface is provided with a word groove 16, and a word groove 16 can reduce the weight of the first location-plate 10, it is simple to lift cylinder 13 drives the first location-plate 10 to lift. Simultaneously, one word groove 16 can effectively place the conveyer belt transmitting cell piece 18, without being taken off from conveyer belt by cell piece 18, after cell piece 18 has been powered up by cell piece power-up device, cell piece 18 directly can be sent to next station by the conveyer belt in a word groove 16. One word groove 16 and the first location-plate 10 surface circular sliding slopes, it is ensured that cell piece 18 will not be damaged in the process of taking of cell piece 18.
First location-plate 10 surface is provided with groove 17, is provided with sensor in groove 17, and the sensor in groove 17 can detect whether that cell piece 18 transmits from a upper station in real time.
The specific works flow process of cell piece power-up device of the present invention is:
First, if the second power-up component is identical with belt heights, then conveyer belt is placed in a word groove 16, is directly sent to by cell piece 18 on first location-plate 10, and when cell piece 18 is placed on the first location-plate 10, conveyer belt quits work. If the height of the second power-up component is lower than the height of conveyer belt, then when conveyer belt transmission cell piece 18 arrives above the first location-plate 10, conveyer belt quits work, lift cylinder 13 drives the first location-plate 10 to be moved upward to correct position along guide post 12, now cell piece 18 is placed on the first location-plate 10, and conveyer belt is placed in a word groove 16.
Then, the sensor sensing in groove 17 is to cell piece 18, and location jaw cylinder 14 drives the location jaw 9 of the first location-plate 10 both sides to move forward and backward, thus cell piece 18 is positioned. The cell piece 18 of crooked placement originally is carried out position reform, it is ensured that the grid line of cell piece 18 is corresponding with the probe 3 being arranged side by side, and ensure that cell piece 18 line is placed in conductive part 15, power up for cell piece 18 and prepare.
Secondly, lift cylinder 13 drives the first location-plate 10 to rise along guide post 12, and stepper drive motors 4 driving cam means 5 rotates, thus driving crane 2 to move down along guide groove 6. Probe 3 on crane 2 is placed on the line of cell piece 18.
Finally, after probe 3, conductive part 15 contact with the line on cell piece 18 respectively, probe 3 and conductive part 15 are energized, have electric current to flow through in each line of cell piece 18, power up successfully.
Cell piece power-up device simple in construction of the present invention, utilizes location jaw 9 to treat the cell piece 18 powered up and carries out position and reform, it is ensured that the position of cell piece 18 is accurate, it is possible to be effectively powered up.
In other embodiment, all the other technical characteristics are identical, are different in that, jaw 9 surface, location is provided with elastic layer. Location jaw 9 when carrying out position and reforming to cell piece 18, and elastic layer can cushion, it is ensured that location jaw 9 will not damage cell piece 18.
Novel preferred implementation, it is noted that for the person of ordinary skill of the art, without departing from the concept of the premise of the invention, it is also possible to making some deformation and improvement, these broadly fall into protection scope of the present invention.
Claims (10)
1. cell piece power-up device, it is characterised in that including:
First power-up component, including: frame, along the crane of frame lifting and the probe that is arranged on crane;
Second power-up component, it is arranged on the lower section of described first power-up component, including: location-plate, a spike and location jaw, described location-plate surface is provided with conductive part, described location jaw is arranged on the opposite sides of described location-plate, described location jaw is connected with location jaw cylinder, positions jaw cell piece is positioned described in the jaw air cylinder driven of described location.
2. cell piece power-up device according to claim 1, it is characterized in that, described frame is provided with motor and the cam mechanism being connected with described motor, described cam mechanism is connected with described crane, described motor drives described cam mechanism to rotate, thus driving crane to lift along the guide groove in frame.
3. cell piece power-up device according to claim 1 and 2, it is characterised in that described crane is provided with the support plate being arranged side by side, described probe is arranged on described support plate, and described crane is detachable with described support to be connected.
4. cell piece power-up device according to claim 1, it is characterised in that be provided with elastic layer in described probe.
5. cell piece power-up device according to claim 1, it is characterised in that described location-plate surface is provided with a word groove, a described word groove and described location-plate surface circular sliding slopes.
6. cell piece power-up device according to claim 1 or 5, it is characterised in that described location-plate is provided with through hole, and described through hole is arranged on the outside that described conductive part two is relative, described location jaw is vertical with described location-plate through described through hole.
7. cell piece power-up device according to claim 1 or 5, it is characterised in that described location-plate surface is provided with groove, and described groove is arranged on described conductive part, is provided with sensor in described groove.
8. cell piece power-up device according to claim 1, it is characterised in that the side of described location-plate is provided with location jaw described at least two.
9. cell piece power-up device according to claim 1, it is characterized in that, described location-plate includes the first location-plate and the second location-plate, it is provided with guide post between described first location-plate and described second location-plate, described first location-plate is located at the top of described second location-plate, described first location-plate is connected with described lift cylinder, and described lift cylinder drives described first location-plate lifting.
10. cell piece power-up device according to claim 1, it is characterised in that described location jaw surfaces is provided with elastic layer.
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CN201410605027.3A CN105634407B (en) | 2014-10-31 | 2014-10-31 | Cell piece power-up device |
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CN201410605027.3A CN105634407B (en) | 2014-10-31 | 2014-10-31 | Cell piece power-up device |
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CN105634407B CN105634407B (en) | 2019-02-26 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN107470179A (en) * | 2017-09-15 | 2017-12-15 | 河北工业大学 | A kind of photovoltaic cell position and attitude detection and positioner and its detection method |
CN108458736A (en) * | 2018-02-10 | 2018-08-28 | 浙江达美智能技术有限公司 | A kind of detent mechanism of on-line measuring device |
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CN101793945A (en) * | 2010-03-12 | 2010-08-04 | 中国电子科技集团公司第四十五研究所 | Solar cell testing device |
CN201852909U (en) * | 2010-10-12 | 2011-06-01 | 东莞市科隆威自动化设备有限公司 | Detection mechanism for solar cell plate |
CN202721114U (en) * | 2012-07-16 | 2013-02-06 | 杭州塞利仕科技有限公司 | A calibrating mechanism used for calibrating a solar energy battery piece |
CN204290878U (en) * | 2014-10-31 | 2015-04-22 | 苏州沃特维自动化系统有限公司 | Cell piece power-up device |
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Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
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CN201497798U (en) * | 2009-07-28 | 2010-06-02 | 天津力神电池股份有限公司 | Full-automatic battery performance testing device |
CN101793945A (en) * | 2010-03-12 | 2010-08-04 | 中国电子科技集团公司第四十五研究所 | Solar cell testing device |
CN201852909U (en) * | 2010-10-12 | 2011-06-01 | 东莞市科隆威自动化设备有限公司 | Detection mechanism for solar cell plate |
CN202721114U (en) * | 2012-07-16 | 2013-02-06 | 杭州塞利仕科技有限公司 | A calibrating mechanism used for calibrating a solar energy battery piece |
CN204290878U (en) * | 2014-10-31 | 2015-04-22 | 苏州沃特维自动化系统有限公司 | Cell piece power-up device |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN107470179A (en) * | 2017-09-15 | 2017-12-15 | 河北工业大学 | A kind of photovoltaic cell position and attitude detection and positioner and its detection method |
CN108458736A (en) * | 2018-02-10 | 2018-08-28 | 浙江达美智能技术有限公司 | A kind of detent mechanism of on-line measuring device |
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