CN217075178U - Cylindrical battery tray - Google Patents
Cylindrical battery tray Download PDFInfo
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- CN217075178U CN217075178U CN202123364174.0U CN202123364174U CN217075178U CN 217075178 U CN217075178 U CN 217075178U CN 202123364174 U CN202123364174 U CN 202123364174U CN 217075178 U CN217075178 U CN 217075178U
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- tray
- cylindrical battery
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- shell
- groove
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Abstract
The utility model relates to a battery technology field, concretely relates to cylinder battery tray, include: a housing having a hollow structure with an open upper end; the sliding chutes are arranged on the two opposite inner walls of the shell, the number of the sliding chutes on the two opposite inner walls is equal and the sliding chutes are correspondingly arranged, and the sliding chutes are obliquely arranged from the upper end part to the lower end part of the inner wall of the shell; the tray body, including a plurality of magnetic insulation recesses of connecting side by side, the length of recess equals the length of cylinder battery, and the indent radian of recess equals the radian of cylinder battery side, and the recess that is located both ends outwards extends the picture peg so that the horizontal length of tray body equals with the distance between two corresponding spouts, picture peg and spout sliding connection. The structure only needs to manufacture the tray bodies with different sizes for replacement, and does not need to manufacture various sizes of the whole tray structure, thereby saving the cost. And because tray body slope sets up and casing upper end opening for the heat of tray body bottom distributes away easily, makes things convenient for the cylinder battery heat dissipation.
Description
Technical Field
The utility model relates to a battery technology field, concretely relates to cylinder battery tray.
Background
The automatic logistics transportation and storage of the cylindrical batteries are very important production and transportation processes, but at present, trays specially used for the cylindrical batteries in the market, such as magnetic battery trays disclosed in patent document CN201621144296.5 and used for chemical composition container cabinets, are fixed in size of installation sections for placing the batteries, can only place cylindrical batteries of one size, and the storage of the cylindrical batteries of different sizes requires replacement of battery trays of different sizes, so that the cost is high; the cylindrical battery needs to be cooled to room temperature before a cycle test and a chemical composition and capacity test, and a sealing structure is arranged below the installation interval of CN201621144296.5, so that the heat dissipation of the battery is not facilitated.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a not enough to prior art, provide one kind and conveniently deposit not unidimensional cylinder battery and be convenient for radiating tray.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a cylindrical battery tray, comprising:
the shell is of a hollow structure with an opening at the upper end;
the sliding chutes are arranged on the two opposite inner walls of the shell, the number of the sliding chutes on the two opposite inner walls is equal and the sliding chutes are correspondingly arranged, and the sliding chutes are obliquely arranged from the upper end part to the lower end part of the inner wall of the shell;
the tray body, including a plurality of magnetic insulation recesses of connecting side by side, the length of recess equals the length of cylinder battery, the indent radian of recess equals the radian of cylinder battery side, is located both ends the recess outwards extends the picture peg so that the horizontal length of tray body equals with the distance between two corresponding spouts, the picture peg with spout sliding connection.
In the technical scheme, the included angle between the sliding groove and the bottom of the shell is 30-60 degrees.
Among the above-mentioned technical scheme, be equipped with the connecting plate between two adjacent recesses.
In the above technical scheme, the distance between two adjacent sliding grooves is greater than the depth of the groove.
In the above technical solution, the groove includes a magnetic groove and an insulating layer coated on an upper surface of the magnetic groove.
In the technical scheme, supporting legs are arranged at four corners of the bottom of the shell.
In the above technical scheme, the length of the insertion plate is equal to that of the groove, and the length of the insertion plate is not greater than that of the sliding groove.
In the technical scheme, the four corners of the top of the shell are provided with fixing grooves matched with the supporting legs.
The utility model has the advantages that:
the utility model discloses a tray, because tray body and spout sliding connection, can change the tray body of different models according to not unidimensional cylinder battery to the realization corresponds depositing of size cylinder battery. The structure only needs to manufacture the tray bodies with different sizes for replacement, and does not need to manufacture various sizes of the whole tray structure, thereby saving the cost. And because tray body slope sets up and casing upper end opening for the heat of tray body bottom distributes away easily, makes things convenient for the cylinder battery heat dissipation.
Drawings
Fig. 1 is a schematic structural diagram of a cylindrical battery tray in an embodiment.
Fig. 2 is a schematic structural diagram of a tray body in the embodiment.
Reference numerals:
the device comprises a shell 1, a sliding groove 2, a groove 3, an inserting plate 4, a connecting plate 5, supporting legs 6 and fixing grooves 7.
Detailed Description
In order to make the technical problem, technical scheme and the beneficial effect that the utility model solved understand more clearly, combine the embodiment below, it is right to the utility model discloses further detailed description goes on. It should be understood, however, that the description herein of specific embodiments is for the purpose of illustration only and is not intended to limit the invention.
In this embodiment, "up", "down", "left" and "right" are based on the directions of FIGS. 1-2.
The cylinder battery tray of this embodiment, as shown in fig. 1, including upper end opening, inside hollow casing 1, many spouts 2 have been seted up at the equal interval on casing 1's the left side inner wall and the right side inner wall to 2 equal and corresponding settings of spout of left side inner wall and right side inner wall in quantity, spout 2 sets up to the lower tip slope of inner wall from the upper end of inner wall, is equipped with tray body between two spouts 2 that left side inner wall and right side inner wall correspond the setting.
As shown in fig. 2, the tray body includes a plurality of magnetic insulation grooves 3 connected side by side, the length of the groove 3 is equal to the length of the cylindrical battery, the concave radian of the groove 3 is equal to the radian of the side surface of the cylindrical battery, the groove 3 at the left end extends the inserting plate 4 leftwards, the groove 3 at the right end extends the inserting plate 4 rightwards, the total transverse length of the left inserting plate 4, the right inserting plate 4 and the middle groove 3 is equal to the distance between the two corresponding sliding grooves 2, namely, the transverse length of the tray body is equal to the distance between the two corresponding sliding grooves 2, so that the inserting plate 4 can be slidably inserted into the sliding grooves 2, and the sliding connection between the tray body and the sliding grooves 2 is realized. When the distance between two adjacent sliding grooves 2 is smaller than the depth of the groove 3, two adjacent tray bodies are arranged at intervals of a plurality of sliding grooves 2, and the cylindrical battery cannot be arranged when the distance between two adjacent tray bodies is too small; if the tray body can be placed in each sliding groove 2, the distance between two adjacent sliding grooves 2 is larger than the depth of the groove 3, or the diameter of the cylindrical battery.
The tray structure of this embodiment because tray body and 2 sliding connection of spout, can change the tray body of different models according to the cylinder battery of unidimensional to the realization corresponds depositing of size cylinder battery. The structure only needs to manufacture the tray bodies with different sizes for replacement, and does not need to manufacture various sizes of the whole tray structure, thereby saving the cost. And because the tray body slope sets up and 1 upper end opening of casing for the heat of tray body bottom distributes away easily, makes things convenient for the cylinder battery heat dissipation.
In order to guarantee when convenient heat dissipation that the cylinder battery can not the landing by magnetic adsorption in recess 3, this embodiment establishes the contained angle of spout 2 and 1 bottom of casing into 30 ~ 60. Specifically, the structure of recess 3 of this embodiment includes the magnetism recess and coats the insulating layer at magnetism recess upper surface, has both reached the magnetic adsorption effect, has avoided the electrified performance that influences the cylinder battery of magnetism recess simultaneously.
In order to avoid the situation that the positions between the grooves 3 are too close to influence heat dissipation, the connecting plate 5 is arranged between the two adjacent grooves 3, so that a gap exists between the two adjacent grooves 3, and the heat dissipation efficiency is improved.
As shown in fig. 1, supporting legs 6 are provided at four corners of the bottom of the housing 1. In order to save space and stack a plurality of trays, fixing grooves 7 matched with the supporting feet 6 are arranged at four corners of the top of the shell 1. In order to ensure the stability of the stacking structure, it is required to ensure that the lengths of the inserting plate 4 and the groove 3 are not greater than the length of the sliding groove 2, and the lengths of the inserting plate 4, the groove 3 and the sliding groove 2 are equal in this embodiment.
It should be finally noted that the above embodiments are only intended to illustrate the technical solutions of the present invention, and not to limit the scope of the present invention, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present invention can be modified or replaced with equivalents without departing from the spirit and scope of the technical solutions of the present invention.
Claims (8)
1. A cylindrical battery tray, comprising:
the shell is of a hollow structure with an opening at the upper end;
the sliding chutes are arranged on the two opposite inner walls of the shell, the number of the sliding chutes on the two opposite inner walls is equal and the sliding chutes are correspondingly arranged, and the sliding chutes are obliquely arranged from the upper end part to the lower end part of the inner wall of the shell;
the tray body, including a plurality of magnetic insulation recesses of connecting side by side, the length of recess equals the length of cylinder battery, the indent radian of recess equals the radian of cylinder battery side, is located both ends the recess outwards extends the picture peg so that the horizontal length of tray body equals with the distance between two corresponding spouts, the picture peg with spout sliding connection.
2. The cylindrical battery tray as defined in claim 1, wherein: the spout is 30 ~ 60 with the contained angle of casing bottom.
3. The cylindrical battery tray as defined in claim 1, wherein: a connecting plate is arranged between two adjacent grooves.
4. The cylindrical battery tray as defined in claim 1, wherein: the distance between two adjacent sliding grooves is larger than the depth of the groove.
5. The cylindrical battery tray as defined in claim 1, wherein: the groove comprises a magnetic groove and an insulating layer coated on the upper surface of the magnetic groove.
6. The cylindrical battery tray as defined in claim 1, wherein: supporting legs are arranged at four corners of the bottom of the shell.
7. The cylindrical battery tray as defined in claim 6, wherein: the length of the inserting plate is equal to that of the groove, and the length of the inserting plate is not greater than that of the sliding groove.
8. The cylindrical battery tray as defined in claim 7, wherein: four corners of the top of the shell are provided with fixing grooves matched with the supporting legs.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123364174.0U CN217075178U (en) | 2021-12-28 | 2021-12-28 | Cylindrical battery tray |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123364174.0U CN217075178U (en) | 2021-12-28 | 2021-12-28 | Cylindrical battery tray |
Publications (1)
Publication Number | Publication Date |
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CN217075178U true CN217075178U (en) | 2022-07-29 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202123364174.0U Active CN217075178U (en) | 2021-12-28 | 2021-12-28 | Cylindrical battery tray |
Country Status (1)
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CN (1) | CN217075178U (en) |
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2021
- 2021-12-28 CN CN202123364174.0U patent/CN217075178U/en active Active
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