一种数据管理用便携式机箱

By designing the chassis and heat dissipation structure as separate units, the problem of heat dissipation performance and portability compatibility during operation of the data management chassis is solved, achieving compatibility between portability and heat dissipation performance, and improving the flexibility and maintenance convenience of the equipment.

CN224519231UActive Publication Date: 2026-07-17JIANGXI CHANGLU TRAVEL SERVICE GROUP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI CHANGLU TRAVEL SERVICE GROUP CO LTD
Filing Date
2025-07-07
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Data management chassis generate a lot of heat during operation, which makes structures with good heat dissipation performance complex, increases chassis size and weight, affects portability, and makes it impossible to combine heat dissipation performance and portability.

Method used

The chassis and heat dissipation structure are designed as separate units. The chassis and liquid cooling frame can be disassembled and assembled through connecting components. Liquid cooling is achieved after the liquid cooling frame is electrically connected to the chassis. The expansion board can be adapted to different devices.

Benefits of technology

This achieves the goal of reducing the weight and size of the chassis while ensuring heat dissipation performance, making it easier to carry, and improving the flexibility and compatibility of the equipment, as well as facilitating maintenance.

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Abstract

本实用新型涉及数据管理机箱技术领域,且公开了一种数据管理用便携式机箱,包括机箱和液冷框,连接组件包括有设置在机箱一侧的连接架,连接架外部设置有两个滑槽,两个滑槽内壁均设置有对接孔,液冷框一侧设置有两个滑块,两个滑块内部均设置有孔槽,孔槽内部设置有弹簧和插管,插管一端设置有延伸管,孔槽内壁一端设置有套管;液冷框外壁设置有收纳槽,收纳槽内部设置有安装板,安装板一侧设置有插头,液冷框外部设置有扩展板。本实用新型通过将机箱与散热结构设为分体结构卡将散热器从机箱中分离出来,从而减少机箱和散热结构的整体重量和体积,从而使机箱和散热结构便于进行装载携带,提高设备的便携性,并且便于对机箱和散热器进行独立维护。
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Claims

1. A portable case for data management, comprising a case (1) and a liquid cooling frame (3), the case (1) is externally provided with a connecting assembly connected and assembled with the liquid cooling frame (3), characterized in that: The connecting assembly includes a connecting frame (2) disposed on one side of the chassis (1). The connecting frame (2) has two sliding grooves (201) on its outside. The inner walls of the two sliding grooves (201) are provided with docking holes (202). The liquid cooling frame (3) has two sliders (4) disposed on one side. The two sliders (4) are provided with slots (401) inside their interiors. The slots (401) are provided with springs (402) and inserts (5). One end of the inserts (5) is provided with an extension tube (501). One end of the inner wall of the slots (401) is provided with a sleeve (6). The liquid cooling frame (3) has a storage groove (7) on its outer wall, an installation plate (8) inside the storage groove (7), a plug (801) on one side of the installation plate (8), and an expansion plate (9) on the outside of the liquid cooling frame (3).

2. The portable case for data management according to claim 1, characterized by: The connecting frame (2) is connected to the outer wall of the chassis (1) by bolts. The two slides (201) are arranged in an array outside the connecting frame (2). The docking hole (202) is located inside the slide (201) and is connected to the conveying pipeline inside the chassis (1). A sealing plate is installed inside the docking hole (202).

3. The portable enclosure for data management of claim 1, wherein: The slider (4) is externally connected to the liquid cooling frame (3) and can be embedded in the slide groove (201) and slidably connected to the inner wall of the slide groove (201). The slider (4) is located on the outer wall of the slide groove (201) with the insertion tube (5) corresponding to the docking hole (202).

4. The portable enclosure for data management of claim 3, wherein: The insertion tube (5) and the spring (402) are both located in the groove (401), and the insertion tube (5) is slidably connected to the inner wall of the groove (401). The two ends of the spring (402) are respectively connected to the inner wall of the groove (401) and the insertion tube (5). The spring (402) pushes the insertion tube (5) out of the groove (401) and into the docking hole (202).

5. The portable enclosure for data management according to claim 4, wherein: The sleeve (6) is located inside the slider (4) and is connected to the water circulation pipeline inside the liquid cooling frame (3). One end of the extension tube (501) is connected to the insertion tube (5), and the other end extends into the sleeve (6). A piston is installed on the outside and is slidably connected to the inner wall of the sleeve (6).

6. The portable enclosure for data management of claim 1, wherein: The mounting plate (8) is located inside the storage groove (7), and one end is rotatably connected to the inner wall of the storage groove (7) through a fixed shaft. The plug (801) is located on one side of the mounting plate (8), and the plug (801) is electrically connected to the expansion plate (9) through a wire.