High-safety energy storage power supply

By designing protection and moisture-proof mechanisms on the energy storage power supply, the safety problem of the energy storage power supply due to moisture when it is idle is solved, and higher safety and reliability of use are achieved.

CN223246337UActive Publication Date: 2025-08-19JIXI TONGDA ELECTRIC POWER SALES CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422442264.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-19
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

Existing energy storage power supplies are easily affected by rainy weather when not in use, resulting in internal overflow and safety.

Method used

Protective mechanisms and moisture-proof mechanisms are designed, including sliding grooves, limit blocks, protective plates, sealing strips and moisture-proof mechanisms, which are used to seal the interface when not in use, prevent external damage, and reduce moisture intrusion through water-absorbing cotton and moisture-proof plates.

Benefits of technology

Effectively prevent external damage and moisture from intruding energy storage power supply when idle, improving the safety and reliability of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223246337U_ABST
    Figure CN223246337U_ABST
Patent Text Reader

Abstract

The utility model relates to the electrical related technical field, and especially relates to a high safety energy storage power supply comprising an energy storage electric box, one side surface of the energy storage electric box is provided with a heat radiation port, the upper surface of the energy storage electric box is fixedly connected with a handle, one side surface of the energy storage electric box is slidably connected with an interface, and the interface is connected with a power supply. A base is installed on the lower surface of the energy storage electric box, a protection mechanism is arranged on the surface of one side of the energy storage electric box, and a damp-proof mechanism is arranged on the lower surface of the base. According to the high-safety energy storage power supply, when the energy storage electric box is not in use, the interface slides in the sliding groove through the limiting block, after the interface is completely plugged into the energy storage electric box, the protection plate slides out of the first storage groove, and then the interface is covered so that the interface cannot be damaged by the outside world; and by extruding the sealing strip, the space can be better sealed, so that the interface is isolated from the outside, and the usability of the energy storage power supply is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of electrical related fields, and in particular to a high-safety energy storage power supply. Background Art

[0002] Electrical engineering is a core and key discipline in the field of modern science and technology. The traditional and broad definition of electrical engineering refers to the sum of related disciplines used to create electrical and electronic systems. With the rapid development of science and technology, the concept of electrical engineering has far exceeded the scope of the above definition. A professor at Stanford University pointed out: Today's electrical engineering covers almost all engineering behaviors related to electronics and photons. It is the tremendous progress in electronic technology that has promoted the advent of the information age based on computer networks and changed all aspects of human life and work patterns. In the process of electrical use, energy storage power supplies are needed to deal with special situations. Therefore, a high-safety energy storage power supply is particularly needed.

[0003] However, most of the existing energy storage power supplies are left idle when not in use. When encountering rainy days, it may cause excessive moisture, resulting in excessive moisture inside the energy storage power supply, which may cause safety problems in the use of the energy storage power supply. Utility Model Content

[0004] The purpose of the present utility model is to provide a high-safety energy storage power supply to solve the problem raised in the above background technology. However, most of the existing energy storage power supplies are left idle when not in use. When encountering rainy days, excessive moisture may occur, resulting in excessive moisture inside the energy storage power supply, which may lead to safety problems in the use of the energy storage power supply.

[0005] To achieve the above objectives, the present invention provides the following technical solutions: a high-safety energy storage power supply, comprising an energy storage box, a heat dissipation vent being provided on one side surface of the energy storage box, a handle being fixedly connected to the upper surface of the energy storage box, an interface being slidably connected to one side surface of the energy storage box, a base being mounted on the lower surface of the energy storage box, a protective mechanism being provided on one side surface of the energy storage box, and a moisture-proof mechanism being provided on the lower surface of the base;

[0006] The protective mechanism includes a sliding groove, a limit block, a first receiving groove, a protective plate, a first installation groove and a sealing strip. The inner surface of the energy storage box is provided with a sliding groove, and one side surface of the interface is fixedly connected to the limit block. The inner surface of the energy storage box is provided with a first receiving groove, and the inner surface of the first receiving groove is slidably connected to the protective plate. The inner surface of the energy storage box is provided with a first installation groove, and the inner surface of the first installation groove is installed with a sealing strip.

[0007] Preferably, the outer surface size of the interface matches the inner surface size of the energy storage box, and the outer surface size of the limit block matches the inner surface size of the sliding groove.

[0008] Preferably, the outer surface size of the protective plate matches the inner surface size of the first receiving groove, and the outer surface size of the sealing strip matches the inner surface size of the first installation groove.

[0009] Preferably, the handle is installed symmetrically with respect to the width center axis of the energy storage box, and the limit block is installed symmetrically with respect to the width center axis of the interface.

[0010] Preferably, the moisture-proof mechanism includes a second storage groove, absorbent cotton, a moisture-proof board, a baffle, a fixed block, a bolt, a second installation groove and an anti-slip groove. The lower surface of the base is provided with a second storage groove, the inner surface of the second storage groove is installed with absorbent cotton, the inner surface of the second storage groove is installed with a moisture-proof board, the lower surface of the moisture-proof board is installed with a baffle, one side surface of the baffle is fixedly connected to a fixed block, one side surface of the fixed block is installed with a bolt, the lower surface of the base is provided with a second installation groove, and the lower surface of the base is provided with an anti-slip groove.

[0011] Preferably, the absorbent cotton is placed above the moisture barrier and has matching sizes, and the outer surface size of the moisture barrier matches the inner surface size of the second receiving groove.

[0012] Preferably, the fixing block is installed symmetrically with respect to the width center axis of the baffle, and the bolt is threadedly connected to the second installation groove.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: this high-safety energy storage power supply, through the arrangement of the sliding groove, the limit block, the first receiving groove, the protective plate, the first installation groove and the sealing strip, when the energy storage box is not in use, the interface is slid in the sliding groove through the limit block, so that it is completely inserted into the energy storage box, and then the protective plate is slid out of the first receiving groove, and then the interface is covered to prevent it from being damaged by the outside world. During the sliding out process, the protective plate moves between the sealing strips, and by squeezing the sealing strips, it can seal a better space, thereby isolating the interface from the outside, increasing the usability of the energy storage power supply, and avoiding the energy storage power supply being affected by environmental factors due to long-term storage. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the overall appearance structure of the utility model;

[0015] Figure 2 This is a schematic diagram of the structure of the first receiving slot and the protective plate cooperating with each other in the present utility model;

[0016] Figure 3 This is a schematic diagram of the structure of the moisture-proof mechanism of the utility model;

[0017] Figure 4 For this utility model Figure 2 A schematic diagram of the enlarged structure.

[0018] In the figure: 1. Energy storage box; 2. Heat dissipation vent; 3. Handle; 4. Interface; 5. Base; 6. Protective mechanism; 601. Sliding groove; 602. Limit block; 603. First storage slot; 604. Protective plate; 605. First installation slot; 606. Sealing strip; 7. Moisture-proof mechanism; 701. Second storage slot; 702. Water-absorbing cotton; 703. Moisture-proof board; 704. Baffle; 705. Fixing block; 706. Bolt; 707. Second installation slot; 708. Anti-slip groove. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] See also Figure 1-4 The utility model provides a technical solution: a high-safety energy storage power supply, including an energy storage box 1, a heat dissipation port 2 is provided on one side surface of the energy storage box 1, a handle 3 is fixedly connected to the upper surface of the energy storage box 1, an interface 4 is slidably connected to one side surface of the energy storage box 1, a base 5 is installed on the lower surface of the energy storage box 1, a protective mechanism 6 is provided on one side surface of the energy storage box 1, and a moisture-proof mechanism 7 is provided on the lower surface of the base 5;

[0021] The protective mechanism 6 includes a sliding groove 601, a limiting block 602, a first receiving groove 603, a protective plate 604, a first installation groove 605 and a sealing strip 606. The inner surface of the energy storage box 1 is provided with a sliding groove 601, and one side surface of the interface 4 is fixedly connected to the limiting block 602. The inner surface of the energy storage box 1 is provided with a first receiving groove 603, and the inner surface of the first receiving groove 603 is slidably connected with the protective plate 604. The inner surface of the energy storage box 1 is provided with a first installation groove 605, and the inner surface of the first installation groove 605 is installed with a sealing strip 606. Through the sliding groove 601, the limiting block 602, The first receiving slot 603, the protective plate 604, the first installation slot 605 and the sealing strip 606 are arranged such that when the energy storage box 1 is not in use, the interface 4 is slid in the sliding slot 601 through the limit block 602, so that it is completely inserted into the energy storage box 1, and then the protective plate 604 is slid out of the first receiving slot 603, and then the interface 4 is covered to prevent it from being damaged by the outside world. During the sliding out process, the protective plate 604 moves between the sealing strips 606, and by squeezing the sealing strips 606, it can seal a better space, thereby isolating the interface 4 from the outside.

[0022] Furthermore, the outer surface size of the interface 4 matches the inner surface size of the energy storage box 1, and the outer surface size of the limit block 602 matches the inner surface size of the sliding groove 601. Through the setting of the interface 4, it can adapt to different power usage environments, thereby improving practicality.

[0023] Furthermore, the outer surface size of the protective plate 604 matches the inner surface size of the first receiving groove 603, and the outer surface size of the sealing strip 606 matches the inner surface size of the first installation groove 605. Through the setting of the sealing strip 606, the internal interface 4 can be protected by the protective plate 604 when placed.

[0024] Furthermore, the handle 3 is installed symmetrically with respect to the width center axis of the energy storage box 1, and the limit block 602 is installed symmetrically with respect to the width center axis of the interface 4. Through the setting of the handle 3, the user can hold the energy storage box 1 more conveniently, thereby improving the stability and safety of the operation.

[0025] Furthermore, the moisture-proof mechanism 7 includes a second receiving groove 701, absorbent cotton 702, a moisture barrier 703, a baffle 704, a fixing block 705, a bolt 706, a second mounting groove 707 and an anti-slip groove 708. The lower surface of the base 5 is provided with a second receiving groove 701, the inner surface of the second receiving groove 701 is provided with absorbent cotton 702, the inner surface of the second receiving groove 701 is provided with a moisture barrier 703, the lower surface of the moisture barrier 703 is provided with a baffle 704, one side surface of the baffle 704 is fixedly connected with a fixing block 705, one side surface of the fixing block 705 is provided with a bolt 706, and the lower surface of the base 5 is provided with a second receiving groove 701. There is a second mounting groove 707, and an anti-slip groove 708 is opened on the lower surface of the base 5. Through the arrangement of the second receiving groove 701, absorbent cotton 702, moisture barrier 703, baffle 704, fixing block 705, bolt 706, second mounting groove 707 and anti-slip groove 708, the absorbent cotton 702 and moisture barrier 703 are stuffed into the second receiving groove 701 under the base 5, and then the baffle 704 is covered thereon, and then the fixing block 705 is aligned with the second mounting groove 707, and the baffle 704 is fixed by bolt 706, thereby reducing the moisture on the bottom, and the anti-slip groove 708 prevents sliding and increases friction.

[0026] Furthermore, the absorbent cotton 702 is placed above the moisture-proof plate 703 and the sizes are matched. The outer surface size of the moisture-proof plate 703 matches the inner surface size of the second storage slot 701. Through the setting of the moisture-proof plate 703, the interior of the energy storage box 1 can be protected to avoid moisture and thus cause usage problems.

[0027] Furthermore, the fixing block 705 is installed symmetrically with respect to the width center axis of the baffle 704, and the bolt 706 is threadedly connected to the second mounting groove 707. Through the setting of the bolt 706, the baffle 704 can be installed and the absorbent cotton 702 can be placed and supported at the same time.

[0028] Working principle: First, when the energy storage box 1 is not in use, slide the interface 4 in the sliding groove 601 through the limit block 602, so that it is completely inserted into the energy storage box 1, and then slide the protective plate 604 out of the first storage groove 603, and then cover the interface 4 to prevent it from being damaged by the outside world. During the sliding out process, the protective plate 604 moves between the sealing strips 606, and by squeezing the sealing strips 606, it can seal a better space, thereby isolating the interface 4 from the outside, and insert the absorbent cotton 702 and the moisture-proof plate 703 into the second storage groove 701 under the base 5, and then cover it with the baffle 704, and then align the fixing block 705 with the second mounting groove 707, and fix the baffle 704 with bolts 706 to reduce the moisture on the bottom, and the anti-slip groove 708 prevents sliding and increases friction.

[0029] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A high-safety energy storage power supply, comprising an energy storage box (1), characterized in that: A heat dissipation port (2) is provided on one side surface of the energy storage box (1); a handle (3) is fixedly connected to the upper surface of the energy storage box (1); an interface (4) is slidably connected to one side surface of the energy storage box (1); a base (5) is installed on the lower surface of the energy storage box (1); a protective mechanism (6) is provided on one side surface of the energy storage box (1); and a moisture-proof mechanism (7) is provided on the lower surface of the base (5); The protective mechanism (6) comprises a sliding groove (601), a limiting block (602), a first receiving groove (603), a protective plate (604), a first installation groove (605) and a sealing strip (606); the inner surface of the energy storage box (1) is provided with a sliding groove (601); a side surface of the interface (4) is fixedly connected to the limiting block (602); the inner surface of the energy storage box (1) is provided with a first receiving groove (603); the inner surface of the first receiving groove (603) is slidably connected to the protective plate (604); the inner surface of the energy storage box (1) is provided with a first installation groove (605); and the inner surface of the first installation groove (605) is installed with a sealing strip (606).

2. A high-safety energy storage power supply according to claim 1, characterized in that: The outer surface size of the interface (4) matches the inner surface size of the energy storage box (1), and the outer surface size of the limit block (602) matches the inner surface size of the sliding groove (601).

3. A high-safety energy storage power supply according to claim 1, characterized in that: The outer surface size of the protective plate (604) matches the inner surface size of the first receiving groove (603), and the outer surface size of the sealing strip (606) matches the inner surface size of the first installation groove (605).

4. A high-safety energy storage power supply according to claim 1, characterized in that: The handle (3) is installed symmetrically with respect to the width center axis of the energy storage box (1), and the limit block (602) is installed symmetrically with respect to the width center axis of the interface (4).

5. The high-safety energy storage power supply according to claim 1, characterized in that: The moisture-proof mechanism (7) comprises a second receiving groove (701), absorbent cotton (702), a moisture-proof plate (703), a baffle (704), a fixing block (705), a bolt (706), a second installation groove (707) and an anti-slip groove (708); the lower surface of the base (5) is provided with a second receiving groove (701); the inner surface of the second receiving groove (701) is provided with absorbent cotton (702); the inner surface of the second receiving groove (701) is provided with a moisture-proof plate (703); the lower surface of the moisture-proof plate (703) is provided with a baffle (704); one side surface of the baffle (704) is fixedly connected to the fixing block (705); one side surface of the fixing block (705) is provided with a bolt (706); the lower surface of the base (5) is provided with a second installation groove (707); and the lower surface of the base (5) is provided with an anti-slip groove (708).

6. A high-safety energy storage power supply according to claim 5, characterized in that: The absorbent cotton (702) is placed above the moisture barrier (703) and has matching sizes. The outer surface size of the moisture barrier (703) matches the inner surface size of the second receiving groove (701).

7. The high-safety energy storage power supply according to claim 5, characterized in that: The fixing block (705) is symmetrically installed with respect to the width center axis of the baffle (704), and the bolt (706) is threadedly connected to the second installation groove (707).