一种便携式储能电源

By creating a groove on the side of the portable energy storage power supply box adjacent to the ground, and using a pushing component to push the first plate into contact with the ground, the instability problem of the omnidirectional wheel when stationary is solved, and the stability under different ground conditions is improved.

CN224520712UActive Publication Date: 2026-07-17DONGGUAN ELITE NEW ENERGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN ELITE NEW ENERGY CO LTD
Filing Date
2025-06-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Portable energy storage power supplies are prone to movement and instability when stationary because the stability of the casters cannot be guaranteed.

Method used

A structure including a power supply box, a first plate, and a pushing component is designed. By opening a groove on the side of the power supply box adjacent to the ground, the pushing component pushes the first plate to abut against the ground, hindering the movement of the caster wheels and improving stability.

Benefits of technology

It effectively prevents the casters from moving when stationary, improving the stability of the portable energy storage power supply, especially on uneven ground.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224520712U_ABST
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Abstract

本实用新型属于电源技术领域,尤其涉及一种便携式储能电源,包括电源箱,其用于电能的存储和释放,所述电源箱和地面相邻的一面开设有槽体;第一板体,其转动安装在电源箱和地面相邻的一面;推动组件,其安装在槽体内,所述推动组件能够推动第一板体与地面相抵接,本申请通过第一驱动件带动第一螺纹杆转动,第一螺纹杆带动移动块沿着槽体滑动并完成移动,移动座会跟随移动,此时连接座、移动座之间的距离会发生改变,而调节组件长度固定,因此当移动座靠近连接座时,调节组件会推动第一板体借助转轴进行转动,使得第一板体与地面接触,当第一板体与地面接触时,会阻碍两个车轮和两个万向轮的移动,以此提高电源箱静置时的稳定性。
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Claims

1. A portable energy storage power supply, characterized by, include: A power supply box (100) is used for storing and releasing electrical energy, and a groove (110) is provided on the side of the power supply box (100) adjacent to the ground. The first plate (200) is rotatably mounted on the side of the power supply box (100) adjacent to the ground; A pushing component (300) is installed in the groove (110). When the pushing component (300) pulls the first plate (200), the first plate (200) will rotate into the groove (110). When the pushing component (300) pushes the first plate (200), the first plate (200) will come into contact with the ground.

2. The portable energy storage power source of claim 1, wherein, The first plate (200) includes a rotating shaft (210), which passes through one end of the first plate (200). The rotating shaft (210) and the first plate (200) are rotatably connected. The rotating shaft (210) is fixedly installed on the side of the power supply box (100) adjacent to the ground. The other end of the first plate (200) is fixedly connected to a connecting seat (220).

3. The portable energy storage power source of claim 2, wherein, The actuation component (300) includes: Two second plates (310) are fixedly installed inside the groove (110); A first threaded rod (320) passes through two second plates (310), and the first threaded rod (320) and the two second plates (310) are rotatably connected; The first driving member (330) is capable of driving the first threaded rod (320) to rotate; A movable block (340) is threadedly connected to a first threaded rod (320), and the movable block (340) is capable of sliding along the groove (110); A movable base (350) is fixedly mounted on a movable block (340); Adjustment component (360) is rotatably mounted between connecting seat (220) and movable seat (350).

4. The portable energy storage power source of claim 3, wherein, The first driving component (330) is a knob, which is fixedly installed at the end of the first threaded rod (320).

5. The portable energy storage power source of claim 3, wherein, The first driving component (330) is a first motor. The first motor is fixed to one of the second plates (310). The output end of the first motor is fixed to the first threaded rod (320). The first motor is capable of self-locking and reversing.

6. The portable energy storage power source of claim 3, wherein, The adjustment component (360) is a long rod, and the two ends of the long rod are rotatably connected to the connecting seat (220) and the moving seat (350), respectively.

7. The portable energy storage power source of claim 3, wherein, The adjustment component (360) includes: The first rod (361) is rotatably mounted in the connecting seat (220) or the movable seat (350), and a through groove (3611) is provided inside the first rod (361). The second rod (362) is rotatably mounted in the connecting seat (220) or the movable seat (350), and the interior of the second rod (362) is provided with a threaded groove (3621). The second threaded rod (364) passes through the first rod body (361) and the second rod body (362) in sequence, and a portion of the second threaded rod (364) is disposed in the threaded groove (3621); The second driving member (363) is disposed in the through groove (3611) and can drive the second threaded rod (364) to rotate.

8. The portable energy storage power source of claim 7, wherein, The second driving component (363) is a knob, which is fixed to the second threaded rod (364).

9. The portable energy storage power source of claim 7, wherein, The second driving component (363) is a second motor, which is fixedly installed in the through groove (3611). The output end of the second motor is fixed to the second threaded rod (364). The second motor is capable of self-locking and reversing.