CN209241621U - A kind of recyclable lithium battery pack transport structure - Google Patents
A kind of recyclable lithium battery pack transport structure Download PDFInfo
- Publication number
- CN209241621U CN209241621U CN201821571188.5U CN201821571188U CN209241621U CN 209241621 U CN209241621 U CN 209241621U CN 201821571188 U CN201821571188 U CN 201821571188U CN 209241621 U CN209241621 U CN 209241621U
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- China
- Prior art keywords
- battery pack
- lithium battery
- transport structure
- beam body
- support beam
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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
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W30/00—Technologies for solid waste management
- Y02W30/50—Reuse, recycling or recovery technologies
- Y02W30/80—Packaging reuse or recycling, e.g. of multilayer packaging
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- Battery Mounting, Suspending (AREA)
Abstract
The utility model discloses a kind of recyclable lithium battery pack transport structures, including the multi-layer cell packet location structure being disposed vertically from top to bottom;Every layer of battery pack location structure includes two supporting beams (2) of time interval setting, and described two supporting beams (2) are connected with the front and rear sides of a battery pack (1);It is detachable connection between any two layers adjacent battery pack location structure.A kind of recyclable lithium battery pack transport structure disclosed by the utility model; it can be while satisfaction requires the transport of battery pack; it can be convenient, quickly dismantled; and it can easily recycle and recycle; to be effectively reduced the economic expenditure of user, it is suitble to the production of scale, overall cost is low; be conducive to widely apply, be of great practical significance.
Description
Technical field
The utility model relates to battery pack technical fields, more particularly to a kind of recyclable lithium battery pack transport structure.
Background technique
Currently, lithium battery pack long-distance transportation generally uses wooden-box package, shown in Figure 1, Fig. 1 is existing packing wood
The packaging structure schematic diagram of case.Battery pack is packaged in 8 the inside of wooden case, and the packing cost of this wooden case is very high, not only dismantles
It is relatively difficult, it needs to spend a large amount of take-down time, and will lead to structural failure after dismantling, cannot be recycled again, thus
Increase the economic expenditure of enterprise.
Therefore, at present there is an urgent need to develop a kind of technology out, can meet the transport of battery pack is required while,
It can be convenient, quickly dismantled, and can easily recycle and recycle, to be effectively reduced the economic branch of user
Out.
Utility model content
It, can be in view of this, the purpose of the utility model is to provide a kind of recyclable lithium battery pack transport structure
While satisfaction requires the transport of battery pack, it can be convenient, quickly dismantled, and can easily recycle repeatedly sharp
With, to be effectively reduced the economic expenditure of user, it is suitble to the production of scale, overall cost is low, is conducive to widely apply,
It is of great practical significance.
For this purpose, the utility model provides a kind of recyclable lithium battery pack transport structure, including vertically put from top to bottom
The multi-layer cell packet location structure set;
Every layer of battery pack location structure includes two supporting beams of time interval setting, described two supporting beams and an electricity
The front and rear sides of Chi Bao are connected;
It is detachable connection between any two layers adjacent battery pack location structure.
Wherein, in every layer of battery pack location structure, each supporting beam includes the support beam body of cross direction profiles, the branch
The top left and right ends of support beam body are respectively arranged with the upper connecting rod of a vertical distribution;
The bottom plate left and right ends of the support beam body are respectively arranged with the lower connecting column an of vertical distribution;
The lower connecting column has the intermediate throughholes of bottom opening;
The corresponding matching of the shapes of the intermediate throughholes of the lower connecting column, size and the shape of the upper connecting rod, size.
Wherein, when the surface of a upper connecting rod have a supporting beam when, the upper connecting rod and its right above
Lower connecting column in supporting beam plugs.
Wherein, each the inside of lower connecting column connects by the way that the support arm of a tilt distribution and the support beam body are fixed
It connects.
Wherein, the top left and right ends of each support beam body are respectively arranged with the positioning pin of a vertical distribution, described
Positioning pin is located at the inside of the upper connecting rod.
Wherein, the top left and right ends of each support beam body are further fixedly arranged on the fixed station of a cross direction profiles, institute
Upper connecting rod and positioning pin is stated to be connected after insertion fixed station with support beam body.
Wherein, the left and right ends of each battery pack front and rear sides are respectively arranged with an outside lug hole;
The outside lug hole is correspondingly arranged with the positioning pin in the support beam body;
The positioning pin is inserted into the outside lug hole.
Wherein, the middle part of the battery pack front and rear sides is also respectively provided with two intermediate lifting lug holes;
The supporting beam corresponds in position corresponding with lifting lug hole among two and extends vertically through hole there are two opening;
Two intermediate lifting lug holes and two extend vertically through in hole, the left and right ends inserted with a door shape bolt.
Wherein, the top of the highest one layer of battery pack location structure in position, is also fixedly installed a set of steel pipe combination;
The steel pipe combination includes the welded still pipe of two cross direction profiles, the left end of two welded still pipes and right end respectively with
The rear and front end of one threaded steel pipe is connected.
Wherein, it is connected between the welded still pipe and threaded steel pipe by forging socket weld screwed pipe;
Wherein, one end of the forging socket weld screwed pipe is mutually welded with welded still pipe;
The other end of the forging socket weld screwed pipe is fixedly connected by opening minus screw with threaded steel pipe;
The outside of the lithium battery pack transport structure is also covered with a canopy;
The forging socket weld screwed pipe is used to support canopy, and the quadrangle of the forging socket weld screwed pipe is arc-shaped.
It is provided by the utility model by the above technical solution provided by the utility model as it can be seen that compared with prior art
A kind of recyclable lithium battery pack transport structure can be convenient, fastly while satisfaction requires the transport of battery pack
It is dismantled promptly, and can easily recycle and recycle, to be effectively reduced the economic expenditure of user, be suitble to scale
The production of change, overall cost is low, is conducive to widely apply, be of great practical significance.
Detailed description of the invention
Fig. 1 is the existing packaging structure schematic diagram for being packaged wooden case;
Fig. 2 is a kind of knot of the recyclable lithium battery pack transport structure provided by the utility model when not showing battery pack
Structure schematic diagram;
Fig. 3 is the structural representation of supporting beam in a kind of recyclable lithium battery pack transport structure provided by the utility model
Figure;
Fig. 4 is a kind of schematic perspective view of recyclable lithium battery pack transport structure provided by the utility model;
Fig. 5 is the solid of the canopy covered outside a kind of recyclable lithium battery pack transport structure provided by the utility model
Structural schematic diagram;
Fig. 6 is by any one electricity for transporting in a kind of recyclable lithium battery pack transport structure provided by the utility model
The schematic perspective view of Chi Bao;
In figure: 1, battery pack, 2, supporting beam, 3, door shape bolt, 4, forging socket weld screwed pipe, 5, welded still pipe, 6, spiral shell
Line steel pipe, 7, canopy, 8, wooden case;
11, outside lug hole, 12, intermediate lifting lug hole;
20, beam body, 21, upper connecting rod, 22, lower connecting column, 23, support arm, 24, positioning pin, 25, fixed station are supported.
Specific embodiment
In order to make those skilled in the art better understand the scheme of the utility model, with reference to the accompanying drawing and embodiment
The utility model is described in further detail.
Referring to fig. 2 to Fig. 6, the utility model provides a kind of recyclable lithium battery pack transport structure, including on to
Under the multi-layer cell packet location structure that is disposed vertically;
Every layer of battery pack location structure includes two supporting beams 2 of time interval setting, described two supporting beams 2 and one
The front and rear sides of battery pack 1 are connected;
It is detachable connection between any two layers adjacent battery pack location structure.
It should be noted that the battery pack includes multiple batteries being cascaded.
In the present invention, it in specific implementation, is realized between any two layers adjacent battery pack location structure to allow
Detachable connection, specific structure are as follows:
In every layer of battery pack location structure, each supporting beam 2 includes the support beam body 20 of cross direction profiles, the branch
The top left and right ends of support beam body 20 are respectively arranged with the upper connecting rod 21 of a vertical distribution;
The bottom plate left and right ends of the support beam body 20 are respectively arranged with the lower connecting column 22 an of vertical distribution;
The lower connecting column 22 has the intermediate throughholes of bottom opening;
Shape, the size of the intermediate throughholes of the lower connecting column 22 are corresponding with shape, the size of the upper connecting rod 21
Matching.
In specific implementation, when the surface of a upper connecting rod 21 has a supporting beam 2, the upper connecting rod 21 with
The lower connecting column 22 in supporting beam 2 right above it plugs.
In specific implementation, support arm 23 and the supporting beam of the inside of each lower connecting column 22 by a tilt distribution
Main body 20 is fixedly connected with (such as welding), so as to enhance the secured intensity of lower connecting column 22, prolongs the service life.
In specific implementation, the top left and right ends of each support beam body 20 are respectively arranged with the positioning of a vertical distribution
Pin 24, the positioning pin 24 are located at the inside of the upper connecting rod 21.
In specific implementation, in order to guarantee the structural strength of upper connecting rod 21 and positioning pin 24, so that it is used in long-time
After (such as upper connecting rod 21 is repeatedly carrying out plug operation, and positioning pin 24 is in the outside lug hole of repeatedly insertion battery pack), also
With preferable verticality, the top left and right ends of each support beam body 20 are further fixedly arranged on the fixation of a cross direction profiles
Platform 25, the upper connecting rod 21 and positioning pin 24, which are connected after insertion fixed station 25 with support beam body 20, (such as to be welded
It connects).
In specific implementation, the rigid profile in 2 use side of supporting beam, bearing strength is good.
In the present invention, in specific implementation, in order to allow every layer of battery pack location structure, can to a battery pack into
Row is firmly attached, and in order to transport for long-distance, specific structure is as follows:
The left and right ends of each 1 front and rear sides of battery pack are respectively arranged with an outside lug hole 11;
The outside lug hole 11 is correspondingly arranged with the positioning pin 24 in the support beam body 20;
The positioning pin 24 is inserted into the outside lug hole 11.
Therefore, four positioning pins in two supporting beams 2 the utility model, front and back being arranged, respectively correspond insertion
In four outside lug holes 11 of battery pack 1, thus, it is possible to play good branch to the battery pack 1 between two supporting beams 2
Support and position-limiting action.
In specific implementation, in order to further prevent battery pack during transportation, occur due to external strong vibration
The case where takeofing guarantees that the fixed effect of battery pack, specific structure are as follows:
The middle part of 1 front and rear sides of battery pack is also respectively provided with two intermediate lifting lug holes 12;
The supporting beam 2 corresponds in position corresponding with lifting lug hole 12 among two and extends vertically through hole there are two opening;
Two intermediate lifting lug holes 12 and two extend vertically through in hole, the left and right ends inserted with a door shape bolt 3.
Therefore, pass through the fixed function of door shape bolt 3, it is ensured that secured, reliable between battery pack 1 and supporting beam 2
Connection.
In the present invention, in specific implementation, the top of the highest one layer of battery pack location structure in position, also fixation are set
Set a set of steel pipe combination;
The steel pipe combination includes the welded still pipe 5 of two cross direction profiles, the left end of two welded still pipes 5 and right end difference
It is connected with the rear and front end of a threaded steel pipe 6.
In specific implementation, it is connected between the welded still pipe 5 and threaded steel pipe 6 by forging socket weld screwed pipe 4;
Wherein, one end of the forging socket weld screwed pipe 4 is welded with 5 phase of welded still pipe;
The other end of the forging socket weld screwed pipe 4 is fixedly connected by the minus screw that is open with threaded steel pipe 6, thus
Dismantle threaded steel pipe 6 with can be convenient.
In the present invention, in specific implementation, the outside of the lithium battery pack transport structure is also covered with a canopy
7, therefore, so that the utility model has good water proof and dust proof effect.
In specific implementation, the forging socket weld screwed pipe 4 is used to support canopy 7, the forging socket weld screwed pipe 4
Quadrangle be it is arc-shaped, so as to avoid canopy disassembly when scratched.
For a kind of recyclable lithium battery pack transport structure provided by the utility model, specific assemble flow is as follows:
Battery pack 1 is sling using hanging apparatus, the supporting beam 2 that front and rear sides are distributed is suitably positioned, is put down
Battery pack 1, four diameters that the outside lug hole that four diameters of battery pack are 16mm is correspondingly placed in two supporting beams 2 are
On the positioning pin of 14mm, by vertically passing through in the middle part of the intermediate lifting lug hole of former and later two shape bolts 3 insertion battery pack and supporting beam
At perforation, after installing one layer, supporting beam is stacked on the positioning column in the lower layer of battery pack location structure, according to this side
Battery pack can be stacked to four layers or any other multilayer by method, stack pre-packed steel pipe in maximum layer
It closes (containing forging socket weld screwed pipe 4, welded still pipe 5 and threaded steel pipe 6), finally over the entire structure by the covering of canopy 7.
Based on above technical scheme it is found that the utility model uses stacking provisions, assemble flow is succinct, recycles user
Just, water proof and dust proof, comprehensive use cost is low, and the batch production suitable for lithium battery pack is transported.
Therefore, in conclusion compared with prior art, the utility model provides a kind of recyclable lithium battery pack fortune
Defeated structure can be convenient, quickly be dismantled, and can while satisfaction requires the transport of battery pack
Easily recycling is recycled, to be effectively reduced the economic expenditure of user, is suitble to the production of scale, and overall cost is low,
Be conducive to widely apply, be of great practical significance.
The above is only the preferred embodiment of the utility model, it is noted that for the common skill of the art
For art personnel, without departing from the principle of this utility model, several improvements and modifications can also be made, these improve and
Retouching also should be regarded as the protection scope of the utility model.
Claims (10)
1. a kind of recyclable lithium battery pack transport structure, which is characterized in that including the multi-layer cell being disposed vertically from top to bottom
Packet location structure;
Every layer of battery pack location structure include time interval setting two supporting beams (2), described two supporting beams (2) with one
The front and rear sides of battery pack (1) are connected;
It is detachable connection between any two layers adjacent battery pack location structure.
2. lithium battery pack transport structure as described in claim 1, which is characterized in that in every layer of battery pack location structure, often
A supporting beam (2) includes the support beam body (20) of cross direction profiles, the top left and right ends difference of support beam body (20)
It is provided with the upper connecting rod (21) of a vertical distribution;
The bottom plate left and right ends of support beam body (20) are respectively arranged with the lower connecting column (22) an of vertical distribution;
The lower connecting column (22) has the intermediate throughholes of bottom opening;
Shape, the size of the intermediate throughholes of the lower connecting column (22) are corresponding with shape, the size of the upper connecting rod (21)
Matching.
3. lithium battery pack transport structure as claimed in claim 2, which is characterized in that when the surface of a upper connecting rod (21)
When with supporting beam (2), the upper connecting rod (21) is mutually inserted with the lower connecting column (22) in the supporting beam (2) right above it
It connects.
4. lithium battery pack transport structure as claimed in claim 2, which is characterized in that each descend on the inside of connecting column (22) and pass through
The support arm (23) of one tilt distribution is fixedly connected with the support beam body (20).
5. lithium battery pack transport structure as claimed in claim 2, which is characterized in that the top left of each support beam body (20)
Right both ends are respectively arranged with the positioning pin (24) of a vertical distribution, and the positioning pin (24) is located at the upper connecting rod (21)
Inside.
6. lithium battery pack transport structure as claimed in claim 5, which is characterized in that the top left of each support beam body (20)
Right both ends are further fixedly arranged on the fixed station (25) of a cross direction profiles, the upper connecting rod (21) and positioning pin (24) through slotting
Enter fixed station (25) to be connected with support beam body (20) afterwards.
7. lithium battery pack transport structure as claimed in claim 5, which is characterized in that a left side for each battery pack (1) front and rear sides
Right both ends are respectively arranged with an outside lug hole (11);
The outside lug hole (11) is correspondingly arranged with the positioning pin (24) on support beam body (20);
The positioning pin (24) is inserted into the outside lug hole (11).
8. the lithium battery pack transport structure as described in any one of claims 1 to 7, which is characterized in that before the battery pack (1)
The middle part of two sides is also respectively provided with two intermediate lifting lug holes (12) afterwards;
The supporting beam (2) corresponds in position corresponding with two intermediate lifting lug hole (12) and extends vertically through hole there are two opening;
Two intermediate lifting lug holes (12) and two extend vertically through in hole, the left and right ends inserted with a door shape bolt (3).
9. lithium battery pack transport structure as claimed in claim 8, which is characterized in that the highest one layer of battery pack positioning knot in position
A set of steel pipe combination is also fixedly installed in the top of structure;
The steel pipe combination includes the welded still pipe (5) of two cross direction profiles, the left end of two welded still pipes (5) and right end difference
It is connected with the rear and front end of a threaded steel pipe (6).
10. lithium battery pack transport structure as claimed in claim 9, which is characterized in that the welded still pipe (5) and threaded steel pipe
(6) it is connected between by forging socket weld screwed pipe (4);
Wherein, one end of the forging socket weld screwed pipe (4) is mutually welded with welded still pipe (5);
The other end of the forging socket weld screwed pipe (4) is fixedly connected by the minus screw that is open with threaded steel pipe (6);
The outside of the lithium battery pack transport structure is also covered with a canopy (7);
The forging socket weld screwed pipe (4) is used to support canopy (7), and the quadrangle of the forging socket weld screwed pipe (4) is circle
Arc.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821571188.5U CN209241621U (en) | 2018-09-26 | 2018-09-26 | A kind of recyclable lithium battery pack transport structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821571188.5U CN209241621U (en) | 2018-09-26 | 2018-09-26 | A kind of recyclable lithium battery pack transport structure |
Publications (1)
Publication Number | Publication Date |
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CN209241621U true CN209241621U (en) | 2019-08-13 |
Family
ID=67518389
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201821571188.5U Active CN209241621U (en) | 2018-09-26 | 2018-09-26 | A kind of recyclable lithium battery pack transport structure |
Country Status (1)
Country | Link |
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CN (1) | CN209241621U (en) |
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2018
- 2018-09-26 CN CN201821571188.5U patent/CN209241621U/en active Active
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20210125 Address after: Hongan Lishen power battery system Co., Ltd., No. 7, Zhonghong Avenue, Mier Economic Development Zone, Hong'an County, Huanggang City, Hubei Province, 438400 Patentee after: Hong'an power God power battery system Co.,Ltd. Address before: 430200 Shanhu Road, industrial park, Daqiao New District, Jiangxia District, Wuhan City, Hubei Province Patentee before: WUHAN LISHEN POWER CELL SYSTEM TECHNOLOGY Co.,Ltd. |
|
TR01 | Transfer of patent right |