CN219106391U - Protection architecture is strengthened to inside battery support of energy storage container - Google Patents
Protection architecture is strengthened to inside battery support of energy storage container Download PDFInfo
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- CN219106391U CN219106391U CN202223291483.4U CN202223291483U CN219106391U CN 219106391 U CN219106391 U CN 219106391U CN 202223291483 U CN202223291483 U CN 202223291483U CN 219106391 U CN219106391 U CN 219106391U
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- energy storage
- storage container
- battery support
- leather cup
- cross rod
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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
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
Abstract
The utility model discloses an internal battery support reinforcing and protecting structure of an energy storage container, which comprises cross bars and locking pieces, wherein the two cross bars are locked together by the locking pieces and extend in a staggered way, the end part of the cross bar, which is far away from the locking pieces, is provided with a joint leather cup used for being abutted against a plane of the internal battery support of the energy storage container or abutted against the wavy inner wall of the energy storage container, and the edge of the joint leather cup is uniformly provided with a plurality of groove-shaped bowl edge grooves. The utility model focuses on the problem of bumpy and shaking of the battery support in the energy storage container, adopts two ways to strengthen the battery support, firstly, two cross bars locked together through locking pieces are arranged between the battery supports at two sides of the passageway in the energy storage container, and secondly, two cross bars locked together through the locking pieces are erected between the upper parts of the inner walls of the energy storage container, and vertical blocking pieces which are attached to the battery support are locked on the cross bars, so that the problem of shaking of the battery support in the hoisting process of the energy storage container is effectively solved.
Description
Technical Field
The utility model relates to the technical field of energy storage battery supports, in particular to an internal battery support reinforcing and protecting structure of an energy storage container.
Background
Because the energy storage container is generally assembled with internal devices such as a battery pack and a control cabinet in advance and then lifted and arranged at a designated position, and some energy storage containers with good maneuverability are assembled on a truck, the whole energy storage container is easy to swing or jolt in the process of lifting or moving the energy storage container, and before research is carried out on directly supporting the battery pack on a battery support, such as China patent (CN 217387350U, CN217182325U, CN216872154U and the like), the problem that if the battery support swings is found in actual use, the swing of the battery support easily generates collision noise with the inner wall of the energy storage container when the energy storage container swings, and other problems are heard by constructors when the operation is influenced is solved, and two structures for reinforcing and protecting the battery support are specially designed.
Disclosure of Invention
The utility model provides an internal battery support reinforcing and protecting structure of an energy storage container, aiming at the existing problems, and the utility model provides an internal battery support reinforcing and protecting structure of the energy storage container, which adopts two modes to strengthen the battery support, wherein two cross bars locked together through locking pieces are arranged between the battery supports at two sides of an internal passageway of the energy storage container, and two cross bars locked together through the locking pieces are erected between the upper parts of the inner walls of the energy storage container, and vertical blocking pieces attached to the battery support are locked on the cross bars, so that the problem of shaking of the battery support in the lifting process of the energy storage container can be effectively solved.
The technical scheme of the utility model is as follows:
the utility model provides an internal battery support reinforcing and protecting structure of an energy storage container, which comprises a cross rod and a locking piece, wherein the two cross rods are locked together by the locking piece and extend in a staggered way, the end part of the cross rod, which is far away from the locking piece, is provided with a joint leather cup used for being abutted against a plane of the internal battery support of the energy storage container or abutted against the wavy inner wall of the energy storage container, and the edge of the joint leather cup is uniformly provided with a plurality of groove-shaped bowl edge grooves.
Further, a sliding sleeve is nested in the portion, located between the joint leather cup and the locking piece, of the cross rod, a third bolt used for being locked on the corresponding cross rod is embedded in one side of the sliding sleeve in a threaded mode, the end portion, extending into the sliding sleeve, of the third bolt is pressed against the outer wall of the corresponding cross rod, a vertical blocking piece used for being abutted against an internal battery support of the energy storage container is arranged on the sliding sleeve, and the vertical blocking piece extends downwards vertically from the sliding sleeve.
Further, vertical fender piece includes vertical pole setting, vertical box body and pastes and lean on the leather pad, the fixed setting of upper end of vertical pole setting is equipped with vertical box body in the downside of sliding sleeve and the lower part towards the fixed tip that is equipped with of leather cup, vertical box body is the opening form and inside buckle towards the tip of leather cup has the subsides that leans on the leather pad towards the leather cup.
Further, the locking piece comprises a lock sleeve block and a locking bolt, the end part of the cross rod, which is far away from the leather cup, is fixedly provided with the lock sleeve block, the part of the lock sleeve block, which is far away from the cross rod which is correspondingly fixedly connected, is nested on the other cross rod, and the part, which is close to the other cross rod, is embedded with the locking bolt through threads.
Further, a reinforcing rib is arranged between the end part of the cross rod, which is far away from the leather cup, and the lock sleeve block which is correspondingly and fixedly connected.
The utility model adopts the technology, so that compared with the prior art, the utility model has the following specific positive and beneficial effects:
the utility model focuses on the problem of bumpy and shaking of the battery support inside the energy storage container, adopts two modes which are convenient to use to strengthen the stability of the battery support, firstly, two cross bars which are locked together through locking pieces are arranged between the battery supports at two sides of the passageway inside the energy storage container, the utility model has the advantages of simple structure and convenient use, and only a plurality of cross bars are needed to be erected between the battery supports at two sides of the passageway inside the energy storage container, but under the condition of large bumpy, the shaking between the battery supports easily leads the two cross bars to fall off, and secondly, two cross bars which are locked together through the locking pieces are erected above the inner walls of the energy storage container, and vertical baffle pieces which are abutted against the battery supports are locked on the cross bars.
Drawings
FIG. 1 is a schematic view of a first embodiment of the present utility model;
FIG. 2 is an enlarged schematic view of a portion of FIG. 1 at A;
FIG. 3 is an enlarged partial schematic view at B in FIG. 1;
fig. 4 is a schematic structural diagram of a second embodiment of the present utility model.
In the figure: 1-first horizontal rod, 2-first lock sleeve block, 3-second horizontal rod, 4-joint leather cup, 5-second lock sleeve block, 6-first bolt, 7-first thread block, 8-first reinforcing rib, 9-second thread block, 10-second bolt, 11-second reinforcing rib, 12-bowl edge groove, 13-third bolt, 14-vertical box body, 15-vertical upright rod, 16-bearing leather pad and 17-sliding sleeve.
Detailed Description
Embodiment one:
as shown in fig. 1-3, the utility model provides an internal battery support reinforcing and protecting structure of an energy storage container, which comprises a first cross rod 1, a second cross rod 3 and locking pieces, wherein the first cross rod 1 and the second cross rod 3 are locked together by the locking pieces and extend in a staggered manner, and leather cups are respectively embedded in the ends, far away from the locking pieces, of the first cross rod 1 and the second cross rod 3;
in order to improve stability when two cross bars are mutually interlocked, the locking piece comprises a first lock sleeve block 2, a second lock sleeve block 5, a first bolt 6 and a second bolt 10, wherein the first lock sleeve block 2 is fixedly arranged at the end part of the first cross bar 1, which is far away from a corresponding leather cup, the first lock sleeve block 2 is nested on the second cross bar 3, the first bolt 6 is embedded at the part of the first lock sleeve block 2, which is far away from the first cross bar 1, and the first thread block 7 is fixedly arranged on the first lock sleeve block 2, and the first thread block 7 is nested on the first bolt 6 in a threaded manner, so that the first bolt 6 is connected to the first lock sleeve block 2 in a threaded manner;
the end part of the second cross rod 3, which is far away from the corresponding leather cup, is fixedly provided with a second lock sleeve block 5, the part of the second lock sleeve block 5, which is far away from the second cross rod 3, is nested on the first cross rod 1, and the part, which is close to the first cross rod 1, is in threaded embedding with a second bolt 10, the second lock sleeve block 5 is fixedly provided with a second threaded block 9, and the second threaded block 9 is in threaded nesting with the second bolt 10, so that the second bolt 10 is in threaded connection with the second lock sleeve block 5;
the battery support in the energy storage container is generally in a frame shape, if a plane leather pad is adopted between the cross rod and the battery support for being padded, the degree of elastic deformation is not easy to observe, the elastic deformation of the leather cup is large and is easy to observe when the locking piece is operated, the end part of the cross rod, which is far away from the locking piece, is provided with the joint leather cup 4, the joint leather cup 4 is made of insulating rubber, the inner thickness of the joint leather cup 4 is greater than 10mm, and meanwhile, in order to facilitate the elastic deformation when the leather cup contacts, a plurality of groove-shaped bowl edge grooves 12 are uniformly distributed on the edge of the joint leather cup 4;
the transverse rod and the corresponding lock sleeve block which is fixedly connected are welded, the lock sleeve block is nested on the transverse rod firstly and then welded, in order to improve the connection strength, the end part of the transverse rod, which is far away from the leather cup, extends out of the lock sleeve block by about 50-100 mm, and then a plurality of reinforcing ribs are uniformly welded between the end part of the transverse rod, which is far away from the leather cup, and the corresponding lock sleeve block which is fixedly connected.
When the locking device is used, the leather cups of the two cross bars are respectively abutted against the battery supports at the two sides of the passageway in the energy storage container, the two cross bars are forcefully staggered, the two leather cups are observed to generate large elastic deformation, and then the first bolt 6 and the second bolt 10 are adjusted to be locked, so that the locking of the two cross bars between the battery supports can be completed.
Embodiment two:
as shown in fig. 4, the present utility model further provides an internal battery support reinforcing and protecting structure of an energy storage container, on the basis of the first embodiment, a sliding sleeve 17 is nested at a portion, located between a joint leather cup 4 and a locking piece, of a cross rod, a third bolt 13 for locking on a corresponding cross rod is embedded in one side of the sliding sleeve 17 in a threaded manner, an end portion, extending into the sliding sleeve 17, of the third bolt 13 is pressed against an outer wall of the corresponding cross rod, a vertical blocking piece for abutting against an internal battery support of the energy storage container is arranged on the sliding sleeve 17, the vertical blocking piece extends vertically downwards from the sliding sleeve 17, the vertical blocking piece comprises a vertical upright 15, a vertical box 14 and an abutting leather pad 16, the upper end of the vertical upright 15 is fixedly arranged at the lower side of the sliding sleeve 17, the lower portion of the end portion facing the leather cup is fixedly provided with the vertical box 14, the end portion of the vertical box 14 facing the leather cup is open, and the inside of the vertical box 14 is buckled with the abutting leather pad 16 facing the leather cup.
The leather cup can be firmly attached to the wavy inner wall of the energy storage container due to large elastic deformation.
When the device is used, leather cups of the two cross bars are respectively abutted against the upper sides of the inner walls of the energy storage container, namely, the upper sides of the battery supports are forced to move by staggering the two cross bars, the fact that the two leather cups generate large elastic deformation is observed, then the first bolt 6 and the second bolt 10 are adjusted to be locked, locking of the two cross bars between wavy inner walls of the energy storage container can be completed, then the two vertical blocking pieces are respectively abutted against the battery supports on the two sides of an aisle inside the energy storage container, finally, the two third bolts 13 are sequentially locked, and reinforcing protection of the two battery supports can be completed.
Claims (5)
1. The utility model provides an inside battery support reinforcing and protecting structure of energy storage container, includes horizontal pole and closure piece, and two horizontal poles are in the same place by closure piece closure and crisscross extension, its characterized in that: the end part of the cross rod, which is far away from the locking piece, is provided with a joint leather cup which is used for being abutted against a plane of a battery bracket in the energy storage container or abutted against the wavy inner wall of the energy storage container, and the edge of the joint leather cup is uniformly distributed with a plurality of groove-shaped bowl edge grooves.
2. The reinforced protection structure for an internal battery support of an energy storage container of claim 1, wherein: the part between the joint leather cup and the locking piece on the cross rod is nested with a sliding sleeve, one side of the sliding sleeve is embedded with a third bolt which is used for being locked on the corresponding cross rod in a threaded manner, the end part of the third bolt, which stretches into the sliding sleeve, is pressed against the outer wall of the corresponding cross rod, the sliding sleeve is provided with a vertical blocking piece which is used for being abutted against the battery support inside the energy storage container, and the vertical blocking piece extends downwards vertically from the sliding sleeve.
3. The reinforced protection structure for an internal battery support of an energy storage container of claim 2, wherein: the vertical baffle comprises a vertical upright rod, a vertical box body and a pad, wherein the upper end of the vertical upright rod is fixedly arranged on the lower side of the sliding sleeve, the lower part of the vertical upright rod faces towards the end part of the leather cup, the vertical box body faces towards the end part of the leather cup and is in an opening shape, and the pad faces towards the leather cup in a buckling mode.
4. A reinforced protective structure for an internal battery support of an energy storage container as defined in claim 3, wherein: the locking piece comprises a lock sleeve block and a locking bolt, the end part of the cross rod, which is far away from the leather cup, is fixedly provided with the lock sleeve block, and the part of the lock sleeve block, which is far away from the cross rod which is correspondingly fixedly connected, is nested on the other cross rod, and the part of the lock sleeve block, which is close to the other cross rod, is embedded with the locking bolt through threads.
5. The reinforced protection structure for an internal battery support of an energy storage container of claim 4, wherein: and a reinforcing rib is arranged between the end part of the cross rod, which is far away from the leather cup, and the lock sleeve block which is correspondingly and fixedly connected.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223291483.4U CN219106391U (en) | 2022-12-08 | 2022-12-08 | Protection architecture is strengthened to inside battery support of energy storage container |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223291483.4U CN219106391U (en) | 2022-12-08 | 2022-12-08 | Protection architecture is strengthened to inside battery support of energy storage container |
Publications (1)
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CN219106391U true CN219106391U (en) | 2023-05-30 |
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CN202223291483.4U Active CN219106391U (en) | 2022-12-08 | 2022-12-08 | Protection architecture is strengthened to inside battery support of energy storage container |
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2022
- 2022-12-08 CN CN202223291483.4U patent/CN219106391U/en active Active
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