CN211350748U - Battery cell arrangement structure of charging product - Google Patents

Battery cell arrangement structure of charging product Download PDF

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Publication number
CN211350748U
CN211350748U CN202020090966.XU CN202020090966U CN211350748U CN 211350748 U CN211350748 U CN 211350748U CN 202020090966 U CN202020090966 U CN 202020090966U CN 211350748 U CN211350748 U CN 211350748U
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battery
cover plate
nickel
bodies
cell arrangement
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王超干
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Suzhou Chunju Electric Co Ltd
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Suzhou Chunju Electric Co Ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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Abstract

The utility model provides a battery cell structure of arranging of charging product, at first set up the casing, a plurality of battery bodies, a plurality of series connection nickel pieces, anodal nickel piece and negative pole nickel piece, the casing includes first apron and second apron, seven constant head tanks have respectively been seted up on first apron and the second apron, one of them constant head tank is located the intermediate position of apron and six constant head tank evenly distributed in addition use the apron center as the circumference that the centre of a circle formed, a plurality of battery bodies are located between two laps, and establish ties together and constitute the group battery through series connection nickel piece between a plurality of battery bodies, anodal nickel piece is connected in the positive pole of group battery, the negative pole nickel piece is connected in the negative pole of group battery. The utility model discloses compare in prior art and make the distance between the adjacent battery body all the same, can general same kind of series connection nickel piece, it is convenient simultaneously to adjust the voltage and the dismouting of group battery through the installation quantity that changes battery body.

Description

Battery cell arrangement structure of charging product
Technical Field
The utility model relates to a group battery of product of charging particularly, relates to a structure of arranging of battery cell of product of charging.
Background
The battery electric core that is used for the group battery of the product of charging on the market at present arranges comparatively irregularly, establish ties through the wire between each battery electric core, a large amount of wires lead to the series structure in disorder, the user often is non-professional crowd, be difficult to the operation when battery electric core goes wrong and need change, consequently, need rearrangement assembled battery electric core, make it establish ties through the nickel piece of same specification, reduce the dismouting degree of difficulty of battery electric core, the voltage of group battery can't be adjusted through the quantity of increase and decrease battery electric core to the group battery on the market simultaneously.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides a battery electricity core structure of arranging of product charges makes the distance between the adjacent battery body all the same in comparison in prior art, can general same kind of series connection nickel piece, and it is convenient simultaneously to adjust the voltage and the dismouting of group battery through the installation quantity that changes battery body.
Therefore, the utility model provides a battery cell arrangement structure of a charging product, which comprises a shell, a plurality of battery bodies, a plurality of series-connected nickel sheets, a positive electrode nickel sheet and a negative electrode nickel sheet, wherein the shell comprises a first cover plate and a second cover plate, seven first positioning grooves are arranged on the first cover plate, one first positioning groove is positioned in the middle position of the first cover plate, the other six first positioning grooves are uniformly distributed on the circumference formed by taking the center of the cover plate as the circle center, seven second positioning grooves are arranged on the second cover plate, one second positioning groove is positioned in the middle position of the second cover plate, the other six second positioning grooves are uniformly distributed on the circumference formed by taking the center of the cover plate as the circle center, the positions of the seven first positioning grooves correspond to the positions of the seven second positioning grooves one by one, the battery bodies are positioned between the first positioning grooves and the second positioning grooves, and the plurality of battery bodies are connected in series through the series-connected nickel sheets to form a battery pack, the positive electrode nickel sheet is connected to the positive electrode of the battery pack, and the negative electrode nickel sheet is connected to the negative electrode of the battery pack.
Further, the distance between any two adjacent battery bodies 3 is the same.
Further, the battery pack comprises seven battery bodies 3, three series nickel sheets 4 and three anode nickel sheets 5 are arranged on the first cover plate 1, and three series nickel sheets 4 and three cathode nickel sheets 6 are arranged on the second cover plate 2.
Further, the battery pack comprises six battery bodies 3, and the six battery bodies 3 are uniformly distributed on a circumference formed by taking the center of the cover plate as a circle center.
Furthermore, the first cover plate 1 is provided with two serial nickel sheets 4, a positive electrode nickel sheet 5 and a negative electrode nickel sheet 6, and the second cover plate 2 is provided with three serial nickel sheets 4.
Further, the battery pack includes five battery bodies 3, and the five battery bodies 3 are distributed on a circumference formed by taking the center of the cover plate as a center.
Further, the first cover plate 1 is provided with two serial nickel sheets 4 and a positive electrode nickel sheet 5, and the second cover plate 2 is provided with two serial nickel sheets 4 and a negative electrode nickel sheet 6.
Further, the battery pack includes four battery bodies 3, and the four battery bodies 3 are distributed on a circumference formed by taking the center of the cover plate as a center.
Furthermore, the first cover plate 1 is provided with a serial nickel sheet 4, a positive electrode nickel sheet 5 and a negative electrode nickel sheet 6, and the second cover plate 2 is provided with two serial nickel sheets 4.
Further, the first cover plate 1 and the second cover plate 2 are clamped together by a connecting plate 7.
The utility model provides a battery electric core structure of arranging of product of charging mainly comprises casing and seven battery bodies to distance between the adjacent battery body is all the same, consequently can use same kind of series connection nickel piece to establish ties, has compared in the wire and has not only reduced the installation degree of difficulty and simplified the structure dismouting and maintenance of being convenient for simultaneously, can also increase and decrease the voltage size that battery body's quantity adjusted the group battery, and following content is for explaining more in detail: the utility model discloses a put a battery body in the middle of, and all the other six battery body evenly distributed use the apron center as the circumference that the centre of a circle was drawn, just so can accomplish, every battery body equals with adjacent battery body distance completely, now in that the distance equals just can do the battery body of any two series connections just, the general one kind of used series connection nickel piece between the negative pole. Just because any battery body is the same with adjacent battery body distance, guaranteed to leave only very little heat dissipation interval (this design adopts adjacent battery body heat dissipation interval 1.5mm), just so guaranteed that battery pack's whole volume is minimum. Because the battery bodies are arranged like a bundle, the anode and the cathode of each battery body are only exposed at two ends, so that when the nickel sheet is welded, only two ends are needed to be welded, and the operation is simple and convenient.
The following is a description of the arrangement of different voltage types: one polarity can be kept unchanged (the design choice is positive), the battery at the tail end of the series connection is the opposite polarity (the design choice is negative), the purpose of different voltages is achieved by reducing one battery at the tail end of the series connection, so that the universality of the assembling parts of a plurality of front series-connected battery cores and the fixity of the welding positions of the plurality of front battery cores are ensured (the front bracket, the rear bracket, the positive nickel sheet, the negative nickel sheet and the series nickel sheet of the four types of batteries can be completely universal). Originally, a small heat dissipation space is designed between batteries, when the model is changed from 7-section 25.2V to 6-section 21.6V, the middle battery is firstly reduced, so that when cooling air passes through the battery assembly, the air can carry heat energy generated by the work of the batteries from the middle, the periphery and the gaps among the batteries, and the model of the batteries smaller than or equal to 6 is better than the model of 7 heat dissipation.
Core point is arranged to electric core: 1. each electric core is equidistant to the centers of the adjacent electric cores; 2. the initial cell position is stipulated, the purpose of achieving different model voltages through increasing and decreasing of the terminal cell is achieved, the consistency of the assembly position of the front-end cell is guaranteed, and parts are universal. 3. When the number of the battery cells with different voltage models is reduced from at most 7, the number of the battery cells is reduced from the middle one, and then the battery cells at the edges are cut off, so that the heat dissipation is best for the models of the battery cells less than or equal to 6.
Therefore, compared with the prior art, the utility model has the following advantages:
1. the arrangement mode is simple, and the size of the battery assembly is small;
2. the parts of the battery components with different voltage models have strong universality;
3. the battery assembly has good heat dissipation;
4. the welding process between the electric cores is simple, and the processing cost is low;
5. the voltage level is adjustable and the whole assembly of the battery is easy to replace.
Drawings
Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The drawings are only for purposes of illustrating the preferred embodiments and are not to be construed as limiting the invention. Also, like reference numerals are used to refer to like parts throughout the drawings. In the drawings:
fig. 1 is a schematic structural diagram of a battery cell arrangement structure of a charging product according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a battery cell arrangement structure of a charging product provided by an embodiment of the present invention, in which 7 batteries are installed;
fig. 3 is a schematic structural diagram of a battery cell arrangement structure of a charging product provided by an embodiment of the present invention, in which 7 batteries are installed;
fig. 4 is a schematic structural diagram of a battery cell arrangement structure of a charging product provided by an embodiment of the present invention, in which 6 batteries are installed;
fig. 5 is a schematic structural diagram of a battery cell arrangement structure of a charging product provided by an embodiment of the present invention, in which 6 batteries are installed;
fig. 6 is a schematic structural diagram of a battery cell arrangement structure of a charging product provided by an embodiment of the present invention, in which 5 batteries are installed;
fig. 7 is a schematic structural diagram of a battery cell arrangement structure of a charging product provided by an embodiment of the present invention, in which 5 batteries are installed;
fig. 8 is a schematic structural diagram of a battery cell arrangement structure of a charging product provided in the embodiment of the present invention, in which 4 batteries are installed;
fig. 9 is a schematic diagram of a structure of a battery cell arrangement structure of a charging product provided by the present invention, in which 4 batteries are installed.
Detailed Description
Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be embodied in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
The first embodiment is as follows:
referring to fig. 1, the present embodiment provides a battery cell arrangement structure of a charging product, which includes a housing, a plurality of battery bodies 3, a plurality of serially connected nickel sheets 4, a positive electrode nickel sheet 5, and a negative electrode nickel sheet 6, wherein the housing includes a first cover plate 1 and a second cover plate 2, the first cover plate 1 is provided with seven first positioning slots 11, one first positioning slot 11 is located in a middle position of the first cover plate 1, and the other six first positioning slots 11 are uniformly distributed on a circumference formed by taking a center of the cover plate as a center of a circle, the second cover plate 2 is provided with seven second positioning slots 21, one second positioning slot 21 is located in a middle position of the second cover plate 2, and the other six second positioning slots 21 are uniformly distributed on a circumference formed by taking the center of the cover plate as a center of a circle, the positions of the seven first positioning slots 11 correspond to the positions of the seven second positioning slots 21 one by one, the battery bodies 3 are located between the first positioning slots 11 and the second positioning slots 21, and a plurality of battery bodies 3 are connected in series through series connection nickel sheets 4 and form a battery pack, a positive electrode nickel sheet 5 is connected to the positive electrode of the battery pack, a negative electrode nickel sheet 6 is connected to the negative electrode of the battery pack, the distance between any two adjacent battery bodies 3 is the same, and the first cover plate 1 and the second cover plate 2 are connected together in a clamping manner through a connecting plate 7.
Referring to fig. 2 to 3, the battery pack includes seven battery bodies 3, three series nickel plates 4 and a positive electrode nickel plate 5 are provided on a first cover plate 1, and three series nickel plates 4 and a negative electrode nickel plate 6 are provided on a second cover plate 2.
Referring to fig. 4 to 5, the battery pack includes six battery bodies 3, the six battery bodies 3 are uniformly distributed on a circumference formed by using the center of the cover plate as the center of a circle, the first cover plate 1 is provided with two serial nickel plates 4, a positive electrode nickel plate 5 and a negative electrode nickel plate 6, and the second cover plate 2 is provided with three serial nickel plates 4.
Referring to fig. 6 to 7, the battery pack includes five battery bodies 3, the five battery bodies 3 are distributed on a circumference formed by using the center of the cover plate as the center of a circle, the first cover plate 1 is provided with two serial nickel plates 4 and a positive electrode nickel plate 5, and the second cover plate 2 is provided with two serial nickel plates 4 and a negative electrode nickel plate 6.
Referring to fig. 8 to 9, the battery pack includes four battery bodies 3, the four battery bodies 3 are distributed on a circumference formed by using the center of the cover plate as the center of a circle, the first cover plate 1 is provided with one serial nickel plate 4, the positive electrode nickel plate 5 and the negative electrode nickel plate 6, and the second cover plate 2 is provided with two serial nickel plates 4.
The utility model provides a battery electric core structure of arranging of product of charging mainly comprises casing and seven battery bodies to distance between the adjacent battery body is all the same, consequently can use same kind of series connection nickel piece to establish ties, has compared in the wire and has not only reduced the installation degree of difficulty and simplified the structure dismouting and maintenance of being convenient for simultaneously, can also increase and decrease the voltage size that battery body's quantity adjusted the group battery, and following content is for explaining more in detail: the utility model discloses a put a battery body in the middle of, and all the other six battery body evenly distributed use the apron center as the circumference that the centre of a circle was drawn, just so can accomplish, every battery body equals with adjacent battery body distance completely, now in that the distance equals just can do the battery body of any two series connections just, the general one kind of used series connection nickel piece between the negative pole. Just because any battery body is the same with adjacent battery body distance, guaranteed to leave only very little heat dissipation interval (this design adopts adjacent battery body heat dissipation interval 1.5mm), just so guaranteed that battery pack's whole volume is minimum. Because the battery bodies are arranged like a bundle, the anode and the cathode of each battery body are only exposed at two ends, so that when the nickel sheet is welded, only two ends are needed to be welded, and the operation is simple and convenient.
The following is a description of the arrangement of different voltage types: one polarity can be kept unchanged (the design choice is positive), the battery at the tail end of the series connection is the opposite polarity (the design choice is negative), the purpose of different voltages is achieved by reducing one battery at the tail end of the series connection, so that the universality of the assembling parts of a plurality of front series-connected battery cores and the fixity of the welding positions of the plurality of front battery cores are ensured (the front bracket, the rear bracket, the positive nickel sheet, the negative nickel sheet and the series nickel sheet of the four types of batteries can be completely universal). Originally, a small heat dissipation space is designed between batteries, when the model is changed from 7-section 25.2V to 6-section 21.6V, the middle battery is firstly reduced, so that when cooling air passes through the battery assembly, the air can carry heat energy generated by the work of the batteries from the middle, the periphery and the gaps among the batteries, and the model of the batteries smaller than or equal to 6 is better than the model of 7 heat dissipation.
During design, a 18650 battery is selected and used, and the voltage is 3.6V. The battery component has 7 batteries at most and 4 batteries at least, so that the whole machine has the following four types: 25.2V for 7 batteries; the 6 batteries are 21.6V; the 5 batteries are 18V; 4 batteries are 14.4V. As can be seen from fig. 2 to 9, each less battery is a new voltage type, and the positions of the front points are always unchanged, so that the front and rear supports, the positive electrode nickel plate, the negative electrode nickel plate and the serial nickel plate of the battery can be used universally, and the assembly positions can be completely consistent as the battery is closer to the positive electrode end.
Core point is arranged to electric core: 1. each electric core is equidistant to the centers of the adjacent electric cores; 2. the initial cell position is stipulated, the purpose of achieving different model voltages through increasing and decreasing of the terminal cell is achieved, the consistency of the assembly position of the front-end cell is guaranteed, and parts are universal. 3. When the number of the battery cells with different voltage models is reduced from at most 7, the number of the battery cells is reduced from the middle one, and then the battery cells at the edges are cut off, so that the heat dissipation is best for the models of the battery cells less than or equal to 6.
Therefore, compared with the prior art, the utility model has the following advantages:
1. the arrangement mode is simple, and the size of the battery assembly is small;
2. the parts of the battery components with different voltage models have strong universality;
3. the battery assembly has good heat dissipation;
4. the welding process between the electric cores is simple, and the processing cost is low;
5. the voltage level is adjustable and the whole assembly of the battery is easy to replace.
Example two:
referring to fig. 1 to fig. 9, the battery cell arrangement structure of a charging product according to a second embodiment of the present invention is shown in the drawings, and the present embodiment further makes the following technical solutions as improvements on the basis of the above embodiments: the utility model provides a positive negative pole terminal of battery and voltage monitoring terminal all connect on battery body 3 through detachable mode (for example joint), and above-mentioned positive negative pole terminal of battery and voltage monitoring terminal all are conventional part. The following are further descriptions: the battery pack is put in an assembly warehouse for a long time, transported by sea for a long time and put in a sales warehouse for a long time before being sold, so that the battery pack is lost, and finally, the battery pack is sold to a terminal customer, so that the battery pack cannot be charged. And the utility model discloses can pull out the positive negative pole terminal of battery and change battery pack with the voltage monitoring terminal through taking apart an apron when meetting such condition.
Example three:
referring to fig. 1 to fig. 9, the battery cell arrangement structure of a charging product according to a third embodiment of the present invention is shown in the drawings, and the present embodiment further makes the following technical solutions as improvements on the basis of the above embodiments: in the above embodiment, only 7 batteries can be placed at most, however, in practice, many charging products need larger electric quantity, and 7 batteries cannot meet the requirement, so that more batteries can be additionally arranged on the outer rings of 7 batteries on the basis of the first embodiment, and further, the electric capacity is improved.
It will be apparent to those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (10)

1. The battery cell arrangement structure of the rechargeable product is characterized by comprising a shell, a plurality of battery bodies (3), a plurality of series-connected nickel sheets (4), an anode nickel sheet (5) and a cathode nickel sheet (6), wherein the shell comprises a first cover plate (1) and a second cover plate (2), seven first positioning grooves (11) are formed in the first cover plate (1), one first positioning groove (11) is located in the middle of the first cover plate (1), the other six first positioning grooves (11) are uniformly distributed on a circumference formed by taking the center of the cover plate as the circle center, seven second positioning grooves (21) are formed in the second cover plate (2), one second positioning groove (21) is located in the middle of the second cover plate (2), and the other six second positioning grooves (21) are uniformly distributed on the circumference formed by taking the center of the cover plate as the circle center, the seven first positioning grooves (11) correspond to the seven second positioning grooves (21) one by one, the battery bodies (3) are positioned between the first positioning grooves (11) and the second positioning grooves (21), the battery bodies (3) are connected in series through the series connection nickel sheets (4) to form a battery pack, the positive electrode nickel sheet (5) is connected to the positive electrode of the battery pack, and the negative electrode nickel sheet (6) is connected to the negative electrode of the battery pack.
2. The battery cell arrangement of a charging product according to claim 1, characterized in that the distance between any two adjacent battery bodies (3) is the same.
3. The battery cell arrangement of a charging product according to claim 1 or 2, wherein the battery pack comprises seven battery bodies (3), wherein the first cover plate (1) is provided with three series-connected nickel plates (4) and the positive nickel plate (5), and the second cover plate (2) is provided with three series-connected nickel plates (4) and the negative nickel plate (6).
4. The battery cell arrangement of a charging product according to claim 1 or 2, characterized in that the battery pack comprises six battery bodies (3), and the six battery bodies (3) are uniformly distributed on a circumference formed by taking the center of the cover plate as a center.
5. The battery cell arrangement of one of the rechargeable products of claim 4, wherein the first cover plate (1) has two of the series nickel plates (4), the positive nickel plate (5) and the negative nickel plate (6) disposed thereon, and the second cover plate (2) has three of the series nickel plates (4) disposed thereon.
6. The battery cell arrangement of a charging product according to claim 1 or 2, characterized in that the battery pack comprises five battery bodies (3), and the five battery bodies (3) are distributed on a circumference formed by taking the center of the cover plate as a center.
7. The battery cell arrangement of one of the rechargeable products of claim 6, wherein the first cover plate (1) has two serial nickel plates (4) and the positive nickel plate (5) disposed thereon, and the second cover plate (2) has two serial nickel plates (4) and the negative nickel plate (6) disposed thereon.
8. The battery cell arrangement of a charging product according to claim 1 or 2, characterized in that the battery pack comprises four battery bodies (3), and the four battery bodies (3) are distributed on a circumference formed by taking the center of the cover plate as a center.
9. The battery cell arrangement of a charging product according to claim 8, wherein the first cover plate (1) is provided with one of the series nickel plates (4), the positive nickel plate (5) and the negative nickel plate (6), and the second cover plate (2) is provided with two of the series nickel plates (4).
10. The battery cell arrangement of a charging product according to claim 1 or 2, characterized in that the first cover plate (1) and the second cover plate (2) are snapped together by means of a connecting plate (7).
CN202020090966.XU 2020-01-16 2020-01-16 Battery cell arrangement structure of charging product Active CN211350748U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112993479A (en) * 2021-02-05 2021-06-18 天津海狸新能源科技有限公司 Adjustable voltage lithium cell based on many electric cores
CN115280587A (en) * 2021-08-05 2022-11-01 广东高标电子科技有限公司 Battery unit and electric power-assisted vehicle

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112993479A (en) * 2021-02-05 2021-06-18 天津海狸新能源科技有限公司 Adjustable voltage lithium cell based on many electric cores
CN115280587A (en) * 2021-08-05 2022-11-01 广东高标电子科技有限公司 Battery unit and electric power-assisted vehicle
CN115280587B (en) * 2021-08-05 2023-11-17 广东高标智能科技股份有限公司 Battery unit and electric power-assisted vehicle

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