CN219985432U - Sorting device for quality control of battery packs - Google Patents

Sorting device for quality control of battery packs Download PDF

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Publication number
CN219985432U
CN219985432U CN202223483029.9U CN202223483029U CN219985432U CN 219985432 U CN219985432 U CN 219985432U CN 202223483029 U CN202223483029 U CN 202223483029U CN 219985432 U CN219985432 U CN 219985432U
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China
Prior art keywords
quality control
sorting
battery
storage box
sliding
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CN202223483029.9U
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Chinese (zh)
Inventor
任艳
余兵
袁银瑶
郭亚宁
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Jiangsu Weiteng Energy Technology Co ltd
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Jiangsu Weiteng Energy Technology Co ltd
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Abstract

The utility model discloses a sorting device for quality control of battery packs, which comprises a sliding rail bottom plate, wherein a rotating opening for installing a first sliding component is formed in the surface of the sliding rail bottom plate, a second sliding component is arranged on the side wall of the first sliding component, voltage detection devices for detecting battery voltage are arranged at two ends of the second sliding component, the section of the first sliding component is fan-shaped, the lower end of the first sliding component is connected with a first telescopic rod through a connecting component, sorting and detection steps are designed into a whole, one-by-one sliding sorting is carried out, one-by-one detection is carried out, the defect that sorting is carried out manually in the prior art is overcome, manual up-and-down battery transferring is not needed, and meanwhile sorting is carried out, the device is convenient to operate, simple in structure, reduces the physical height of workers, reduces unsafe factors caused by frequent movement, and improves the working efficiency of equipment detection.

Description

Sorting device for quality control of battery packs
Technical Field
The utility model relates to a sorting device for quality control of battery packs.
Background
Cell sorting refers to batch grading according to performance parameters reflected by cells during production and activation. The cells to be sorted are first placed in a cell tray, on which cell holders are arranged in rows and columns, so that the cells are also held in coordinates of the rows and columns. The test circuit then tests the performance of each cell and inputs the data into the computer in accordance with the coordinates of the cell being tested. And finally, the batteries are required to be sorted out according to the grade according to the test data.
The common sorting means is manual sorting, firstly, a computer prints color separation grid paper corresponding to the batteries on a battery tray according to stored data and classified grades, and then, the color separation grid paper is manually sorted out after being compared by workers. Thus, the labor intensity of manual alignment is high, the efficiency is low, and the error picking is easy to cause.
The battery manufacturers improve the battery, a photoelectric sensor board connected with a computer, namely a sorting board is adopted, small holes arranged on the photoelectric sensor board correspond to the positions of batteries on a battery tray, so that the photoelectric sensor board can be sleeved into the whole battery to be sorted, photoelectric sensors are arranged in the small holes, the batteries block light rays of transmitters of the photoelectric sensors, the photoelectric sensors in the small holes are connected to the computer and used for judging whether the batteries are taken away or not and whether the positions of the taken-away batteries are opposite or not, and if the grades of the taken-away batteries are not opposite, the computer immediately gives an alarm. In so doing, there is an increase in the accuracy of picking. However, the photoelectric sensor plate needs to be manually moved up and down, which is inconvenient to operate and consumes more physical power. Moreover, since the photo sensor board is charged, it is frequently moved, and there is an unsafe factor, and also damage to the sorting board, that is, the photo sensor board is easily caused. More inconvenient is that if the battery to be selected is short, the top of the battery cannot emerge from the small hole after the sorting plate is sleeved, and the worker cannot take out the battery to be selected by hand, so that a sorting device for quality control of the battery pack is generated.
Disclosure of Invention
The utility model aims to solve the defects in the prior art and provides a sorting device for quality control of battery packs.
The utility model provides a sorting device for battery package quality control, includes the slide rail bottom plate of slope installation, its characterized in that, the rotation opening that is used for installing first slip subassembly is seted up on the surface of slide rail bottom plate, the lateral wall of first slip subassembly is equipped with the second slip subassembly, the both ends of second slip subassembly all are equipped with the voltage detection device who is used for detecting battery voltage, the cross-section shape of first slip subassembly is fan-shaped, and the lower extreme of first slip subassembly passes through coupling assembling and links to each other with first telescopic link;
a waste storage box is arranged below the sliding rail base plate, a sliding groove for the connecting component to slide is formed in the upper surface of the waste storage box, and the driving end of the first telescopic rod is connected with a first pneumatic telescopic device fixed in the sliding groove;
the inside of waste storage box is the cavity structure, and one side that the spout tank bottom is close to slide rail bottom plate export is the inclined plane design, set up the direction opening on the inclined plane, rotatable deflector is installed to the direction opening part, the lower surface of deflector is equipped with the second telescopic link, the drive end of second telescopic link runs through the diapire of waste storage box and links to each other with the pneumatic telescoping device of second, the pneumatic telescoping device fixed mounting of second is on the fixed plate, the lower surface of waste storage box is equipped with a plurality of pillars, fixed plate fixed mounting is on the lateral wall of pillar, be equipped with inclined plane one end on the waste storage box and install qualified product storage box.
As a further improvement, the two sides of the sliding rail bottom plate are respectively provided with a side jump prevention baffle, so that the batteries are prevented from sliding too fast due to overlarge impact force, sorting one by one is realized when the batteries slide on the sliding rail bottom plate, and automatic detection of battery voltage is performed simultaneously.
As a further improvement, the upper surface of first slip subassembly is equipped with the baffle, the shape of baffle is the arc, prevents that motor slip impact force from too big leading to sliding too fast, avoids the battery to pile up and leads to unable detection, improves the automated inspection efficiency and the rate of accuracy of equipment.
As a further improvement, the edges of the two ends of the guide plate are rounded to realize smoother sliding of the battery, and when the second telescopic rod ascends, one end of the guide plate is driven to ascend, and at the moment, the battery slides into the cavity structure.
As a further improvement, the connecting assembly is rotatably connected with the first sliding assembly.
As a further improvement, the second telescopic link is rotatable with the deflector and is connected, first slip subassembly rotatable mounting is inside rotating the opening, and when the second telescopic link descends, drive deflector other end rises, and at this moment, the battery slides to the conforming article bin, simple structure, convenient operation need not the staff and manually picks, improves detection efficiency.
As a further improvement, the upper surface of the first sliding component is embedded with a gravity detection device.
As a further improvement, the voltage detection device, the gravity detection device, the first pneumatic expansion device and the second pneumatic expansion device are all connected through the remote device and controlled, a worker is not required to manually pick the battery, the detection process is simpler and more flexible, and the detection work efficiency is effectively improved.
As a further improvement, the side wall of the waste storage box is provided with a discharging opening for plugging the side cover, and the waste storage box is taken out through the discharging opening when the unqualified battery inside the waste storage box is full.
The beneficial effects are that:
this device is with letter sorting and detection step design as an organic wholely, detects one by one in the time of sliding letter sorting one by one, solves among the prior art and carries out the shortcoming of choosing through the manual work, need not the manual work and transport the battery from top to bottom to pick simultaneously, convenient operation, simple structure reduces the little height of staff's physical power, reduces the unsafe factor that frequently removes to lead to, improves the work efficiency that equipment detected.
The device is provided with a sorting part, a detecting part and a collecting part, stores waste materials and qualified products, realizes accurate classification of qualified products and unqualified products of batteries, is convenient to operate, high in automation degree and safety, and effectively improves the working efficiency of sorting and detecting.
Drawings
Fig. 1 is a schematic view of the internal structure of a sorting apparatus;
fig. 2 is a schematic perspective view of a sorting apparatus;
fig. 3 is a schematic side view of a sorting apparatus;
fig. 4 is a schematic top view of the sorting apparatus;
fig. 5 is a schematic side overall structure of the sorting apparatus;
1. waste storage bin 2, skid floor 3, first slip joint assembly 4, second slip joint assembly 5, voltage detection device 6, rotary opening 7, guide plate 8, acceptable storage bin 9, cavity structure 10, brace 11, second pneumatic telescoping device 12, second telescoping rod 13, first pneumatic telescoping device 14, first telescoping rod 15, and connecting assembly.
Detailed Description
The present utility model will be further described in detail with reference to the following examples and drawings for the purpose of enhancing the understanding of the present utility model, which examples are provided for the purpose of illustrating the present utility model only and are not to be construed as limiting the scope of the present utility model.
As shown in fig. 1 to 5, as a specific embodiment of the present utility model, a sorting apparatus for quality control of battery packs includes a waste storage box 1, a slide rail base plate 2, a first sliding contact assembly 3, a second sliding contact assembly 4, a voltage detecting device 5, a rotation opening 6, a guide plate 7, a qualified product storage box 8, a cavity structure 9, a pillar 10, a second pneumatic telescoping device 11, a second telescoping rod 12, a first pneumatic telescoping device 13, a first telescoping rod 14, and a connecting assembly 15.
The utility model provides a sorting device for battery package quality control, includes slide rail bottom plate 2 of slope installation, its characterized in that, slide rail bottom plate 2's surface has been seted up and is used for installing the rotation opening 6 of first slip subassembly 3, the lateral wall of first slip subassembly 3 is equipped with second slip subassembly 4, the both ends of second slip subassembly 4 all are equipped with the voltage detection device 5 that is used for detecting battery voltage, the cross-section shape of first slip subassembly 3 is fan-shaped, and the lower extreme of first slip subassembly 3 links to each other with first telescopic link 14 through coupling assembling 15;
a waste storage box 1 is arranged below the sliding rail base plate, a sliding groove for a connecting component 15 to slide is formed in the upper surface of the waste storage box 1, and the driving end of a first telescopic rod 14 is connected with a first pneumatic telescopic device 13 fixed in the sliding groove;
the inside of waste storage box 1 is cavity structure 9, and one side that the spout tank bottom is close to slide rail bottom plate 2 export is the inclined plane design, set up the direction opening on the inclined plane, rotatable deflector 7 is installed to the direction opening part, the lower surface of deflector 7 is equipped with second telescopic link 12, the drive end of second telescopic link 12 runs through the diapire of waste storage box 1 and links to each other with second pneumatic telescoping device 11, second pneumatic telescoping device 11 fixed mounting is on the fixed plate, the lower surface of waste storage box 1 is equipped with a plurality of pillars 10, fixed plate fixed mounting is on the lateral wall of pillar 10, be equipped with inclined plane one end on the waste storage box 1 and install qualified products storage box 8.
The both sides of slide rail bottom plate 2 all are equipped with prevents jumping the side shield, avoid the battery to slide too fast because the impact force is too big, realize sorting one by one when the battery slides on slide rail bottom plate 2 to carry out battery voltage's automated inspection simultaneously.
The upper surface of first slip subassembly 3 is equipped with the baffle, the shape of baffle is the arc, prevents that motor slip impact force from too big leading to sliding too fast, avoids the battery to pile up and leads to unable detection, improves the automated inspection efficiency and the rate of accuracy of equipment.
Rounded corners are formed at the edges of the two ends of the guide plate 7, so that the battery can slide smoothly, and when the second telescopic rod 12 ascends, one end of the guide plate 7 is driven to ascend, and at the moment, the battery slides into the cavity structure 9.
The connecting assembly 15 is rotatably connected to the first slip joint assembly 3.
The second telescopic link 12 is rotatable with deflector 7 and is connected, first slip subassembly 3 rotatable mounting is inside rotating opening 6, and when second telescopic link 12 descends, drive deflector 7 other end rises, and at this moment, the battery slides to qualified products storage box 8, simple structure, convenient operation need not the staff and manually picks, improves detection efficiency.
The first pneumatic telescopic device 13 and the second pneumatic telescopic device 11 are connected through a remote device and are controlled, a worker is not required to manually pick the battery, the detection process is simpler and more flexible, and the detection work efficiency is effectively improved.
The lateral wall of waste storage case 1 has offered the ejection of compact opening that is used for pegging graft the side cap, takes out through ejection of compact opening when the inside unqualified battery of waste storage case 1 is full.
When the battery is used, the battery rolls and slides to the first sliding component through the inlet of the sliding rail bottom plate, the first sliding component is controlled to rotate through the first pneumatic telescopic device, the battery firstly enters the upper surface of the first sliding component in the rotating process, then slides to the outlet through the upper surface of the second sliding component, the battery is detected during sorting, the detected data are sent to the remote device, then the staff controls the second telescopic rod to ascend or descend to realize the rotation of the guide plate, so that the battery is sorted, the unqualified waste battery slides into the waste storage box, the qualified battery slides into the qualified product storage box, the battery performs weight detection when passing through the first sliding component, the battery performs voltage detection through the second sliding component, the detected data are sent to the remote device, when the battery specification does not meet the standard, the second telescopic rod is driven to ascend, the battery slides into the qualified product storage box, and when the battery specification meets the standard, the second telescopic rod is driven to ascend, the battery slides into the qualified product storage box, and the battery slides one by one after the first pneumatic telescopic device performs telescopic movement.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.
The foregoing description is only illustrative of the preferred embodiments of the present utility model, and therefore should not be taken as limiting the scope of the utility model, for all changes and modifications that come within the meaning and range of equivalency of the claims and specification are therefore intended to be embraced therein.
Finally, it is noted that the above embodiments are only for illustrating the technical solution of the present utility model and not for limiting the same, and although the present utility model has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications and equivalents may be made thereto without departing from the spirit and scope of the technical solution of the present utility model, which is intended to be covered by the scope of the claims of the present utility model.

Claims (9)

1. The utility model provides a sorting device for battery package quality control, includes the slide rail bottom plate of slope installation, its characterized in that, the rotation opening that is used for installing first slip subassembly is seted up on the surface of slide rail bottom plate, the lateral wall of first slip subassembly is equipped with the second slip subassembly, the both ends of second slip subassembly all are equipped with the voltage detection device who is used for detecting battery voltage, the cross-section shape of first slip subassembly is fan-shaped, and the lower extreme of first slip subassembly passes through coupling assembling and links to each other with first telescopic link;
a waste storage box is arranged below the sliding rail base plate, a sliding groove for the connecting component to slide is formed in the upper surface of the waste storage box, and the driving end of the first telescopic rod is connected with a first pneumatic telescopic device fixed in the sliding groove;
the inside of waste storage box is the cavity structure, and one side that the spout tank bottom is close to slide rail bottom plate export is the inclined plane design, set up the direction opening on the inclined plane, rotatable deflector is installed to the direction opening part, the lower surface of deflector is equipped with the second telescopic link, the drive end of second telescopic link runs through the diapire of waste storage box and links to each other with the pneumatic telescoping device of second, the pneumatic telescoping device fixed mounting of second is on the fixed plate, the lower surface of waste storage box is equipped with a plurality of pillars, fixed plate fixed mounting is on the lateral wall of pillar, be equipped with inclined plane one end on the waste storage box and install qualified product storage box.
2. The sorting device for quality control of battery packs according to claim 1, wherein both sides of the slide rail base plate are provided with side jump prevention baffles.
3. The sorting device for quality control of battery packs according to claim 1, wherein the upper surface of the first sliding contact assembly is provided with a baffle, and the baffle is arc-shaped.
4. The sorting device for quality control of battery packs according to claim 1, wherein both end edges of the guide plate are rounded.
5. The sorting device for quality control of battery packs of claim 1, wherein the connecting assembly is rotatably connected to the first sliding assembly.
6. The sorting device for quality control of battery packs of claim 1, wherein the second telescoping rod is rotatably connected to the guide plate, and the first sliding assembly is rotatably mounted within the rotary opening.
7. The sorting device for quality control of battery packs of claim 1, wherein the upper surface of the first slip-on assembly is embedded with a gravity detection device.
8. The sorting device for quality control of battery packs according to claim 1, wherein the side wall of the waste storage bin is provided with a discharge opening for plugging in a side cover.
9. The sorting device for quality control of battery packs according to claim 1, wherein the voltage detection device, the gravity detection device, the first pneumatic telescoping device, and the second pneumatic telescoping device are all connected and controlled by a remote device.
CN202223483029.9U 2022-12-27 2022-12-27 Sorting device for quality control of battery packs Active CN219985432U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223483029.9U CN219985432U (en) 2022-12-27 2022-12-27 Sorting device for quality control of battery packs

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223483029.9U CN219985432U (en) 2022-12-27 2022-12-27 Sorting device for quality control of battery packs

Publications (1)

Publication Number Publication Date
CN219985432U true CN219985432U (en) 2023-11-10

Family

ID=88608992

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223483029.9U Active CN219985432U (en) 2022-12-27 2022-12-27 Sorting device for quality control of battery packs

Country Status (1)

Country Link
CN (1) CN219985432U (en)

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