Secure storage device for file encryption and decryption

By employing a multi-segment heat dissipation structure that utilizes the combined cooling of coolant and airflow, the problem of low heat dissipation efficiency of file storage devices under high load is solved, ensuring stable operation and efficient computing.

CN223986423UActive Publication Date: 2026-03-10TIANJIN JIATANG TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing file storage devices have low heat dissipation efficiency when operating under high load. Heat buildup causes the device to heat up, affecting storage and computing efficiency and potentially causing damage.

Method used

It adopts a multi-stage high-efficiency heat dissipation structure, including heat dissipation fins, heat exchange plates, heat exchange chambers, circulation ducts, compressor cooler, liquid storage tank, booster circulation pump and ventilation heat dissipation components. It ensures effective heat dissipation through the coordinated heat dissipation of coolant and airflow.

Benefits of technology

It achieves efficient heat dissipation, prevents heat buildup in the device, and ensures stable operation and computing efficiency of the storage device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a safe storage device for file encryption and decryption, which comprises a file memory body and a fixed plate, the fixed plate is arranged on the rear wall surface of the file memory body, and the fixed plate and the file memory body are provided with a multi-section efficient heat dissipation structure; the multi-section type efficient heat dissipation structure comprises a pair of heat dissipation fins, a pair of heat exchange plates, a pair of heat exchange cavities, a plurality of adapter pipes, two pairs of circulating guide pipes, a compression refrigerator, a pair of liquid storage tanks, a pair of pressurization circulating pumps and a pair of ventilation heat dissipation assemblies. The utility model relates to the technical field of file storage equipment, and has the beneficial effects that the problems that the internal heat dissipation of the existing file storage equipment is directly performed by adopting a fan, the heat angle and the heat dissipation efficiency generated during high-load operation of the file storage equipment cannot be synchronized, heat accumulation is easily caused, and the heat dissipation efficiency is poor are solved; the storage calculation efficiency of the file storage equipment is further influenced, and the equipment is easily damaged when the temperature of the equipment is increased due to excessive heat accumulation.
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Description

Technical Field

[0001] This utility model relates to the field of file storage device technology, specifically a secure storage device for file encryption and decryption. Background Technology

[0002] File storage devices are hardware devices used to store, manage, and protect digital files. They store data as files on their internal storage media, allowing users or computer systems to access and manage them through specific paths. During storage, data files are decrypted and encrypted using key encoding. Data computation requires high-intensity loads, generating significant heat. Existing file storage devices typically use fans for direct cooling. However, when operating under high load, the heat generated cannot be dissipated efficiently, leading to heat buildup and further impacting the storage and computational efficiency. Excessive heat buildup can cause device overheating and damage. Utility Model Content

[0003] To achieve the above objectives, this utility model is implemented through the following technical solution: a secure storage device for file encryption and decryption, comprising: a file storage body and a fixing plate, the fixing plate being installed on the rear wall of the file storage body, and a multi-segment high-efficiency heat dissipation structure being installed on the fixing plate and the file storage body;

[0004] The multi-stage high-efficiency heat dissipation structure includes: a pair of heat dissipation fins, a pair of heat exchange plates, a pair of heat exchange chambers, several connecting pipes, two pairs of circulation pipes, a compressor cooler, a pair of liquid storage tanks, a pair of booster circulation pumps, and a pair of ventilation and heat dissipation components;

[0005] A pair of heat dissipation fins are mounted on the side walls of the file storage unit. A pair of heat exchange plates are mounted on the fixed plate, with the inner side walls of the heat exchange plates in contact with the file storage unit. A pair of heat exchange chambers are opened inside the heat exchange plates. Several connecting pipes are mounted on the outer side walls of the heat exchange plates. One end of each pair of circulation pipes is connected to several connecting pipes. A compressor cooler is mounted on the rear wall of the fixed plate. A pair of liquid storage tanks are mounted on both sides of the compressor cooler, with the cooling end of the compressor cooler extending through into the liquid storage tanks. A pair of booster circulation pumps are mounted on both sides of the liquid storage tanks and connected to the liquid storage tanks. The other end of each pair of circulation pipes is mounted on the booster circulation pumps. A pair of ventilation and heat dissipation components are mounted on both sides of the heat exchange plates.

[0006] Preferably, the file storage unit is equipped with a grip handle.

[0007] Preferably, a pair of flow guide baffles are installed inside a pair of heat exchange chambers.

[0008] Preferably, the compressor refrigeration unit is equipped with a dustproof air intake grille.

[0009] Preferably, each pair of ventilation and heat dissipation components includes: two pairs of mounting rods, a mounting plate, a pair of fixing slots, and a pair of cooling fans;

[0010] Two pairs of mounting rods are installed at one end on the side wall of a pair of heat exchange plates, and mounting plates are installed on the other end of the two pairs of mounting rods. A pair of fixing slots are opened on the mounting plates, and a pair of cooling fans are installed in a pair of fixing slots.

[0011] Preferably, the two pairs of mounting rods are mounted on a pair of heat exchange plates by two pairs of fixing blocks.

[0012] Beneficial effects

[0013] This utility model provides a secure storage device for file encryption and decryption, which has the following beneficial effects: This solution uses a multi-stage high-efficiency heat dissipation structure, and dissipates the heat generated by the file storage device during operation through a combination of various heat dissipation structures, preventing heat accumulation in the file storage device and ensuring heat dissipation effect. It solves the problem that the heat dissipation of existing file storage devices is directly achieved by fans, and the heat generated by the file storage device under high load cannot be dissipated in a synchronized manner, which can easily cause heat accumulation, further affecting the storage and computing efficiency of the file storage device. When too much heat accumulates, the device temperature rises and is easily damaged. Attached Figure Description

[0014] Figure 1 This is a front-view perspective three-dimensional structural diagram of a secure storage device for file encryption and decryption according to the present invention.

[0015] Figure 2 This is a rear view partial three-dimensional structural diagram of a secure storage device for file encryption and decryption according to the present invention.

[0016] Figure 3 This is a top cross-sectional view of the heat exchange plate of a secure storage device for file encryption and decryption according to the present invention.

[0017] In the diagram: 1-File storage unit; 2-Fixing plate; 3-Heat dissipation fins; 4-Heat exchange plate; 5-Heat exchange chamber; 6-Transfer pipe; 7-Circulation pipe; 8-Compressor; 9-Liquid tank; 10-Booster circulation pump; 11-Holding handle; 12-Baffle; 13-Dustproof air intake grille; 14-Mounting rod; 15-Mounting plate; 16-Fixing groove; 17-Cooling fan; 18-Fixing block. Detailed Implementation

[0018] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0019] Example: Please refer to Figure 1-3 This utility model provides a technical solution: a secure storage device for file encryption and decryption. This solution takes into account that existing file storage devices require frequent encryption and decryption during use, resulting in high workload of internal electronic devices. Long-term high-load operation will cause heat accumulation and easily lead to device damage due to high temperature. Based on the above, this invention sets up the following technical means.

[0020] Specifically, this device includes at least a file storage body 1, a fixing plate 2, a pair of heat dissipation fins 3, a pair of heat exchange plates 4, a pair of heat exchange chambers 5, several transfer pipes 6, two pairs of circulation pipes 7, a compressor cooler 8, a pair of liquid storage tanks 9, a pair of booster circulation pumps 10, and a pair of ventilation and heat dissipation components.

[0021] Each pair of ventilation and heat dissipation components includes: two pairs of mounting rods 14, mounting plates 15, a pair of fixing slots 16, and a pair of heat dissipation fans 17;

[0022] The file storage unit 1 stores files and encrypts the data using electronic encoding. The file storage unit 1 is installed and supported in conjunction with the mounting plate 2. The file storage unit 1 generates a large amount of heat during operation, which is dissipated through the heat dissipation fins 3 installed on both sides. At the same time, the compressor cooler 8 installed behind the mounting plate 2 starts to cool the coolant in the liquid storage tank 9. The coolant is then pressurized and pumped by the booster circulation pump 10 through the circulation pipe 7 and the transfer pipe 6 into the heat exchange chamber 5. The low-temperature cooling water flows through the heat exchange chamber 5 under pressure, carrying away the heat from the file storage unit 1 through heat exchange. It is then pumped back to the liquid storage tank 9 through another circulation pipe 7 installed on the same side and booster circulation pump 10, and cooled again by the compressor cooler 8. The pair of booster circulation pumps 10 work alternately to ensure uninterrupted heat exchange and ensure heat exchange effect. At the same time, the cooling fan 17 installed in the mounting slot 16 starts, accelerating the heat dissipation effect of the heat dissipation fins 3 through high-speed airflow. It also assists in heat dissipation when the coolant flows through the circulation pipe 7, thereby ensuring efficient heat dissipation.

[0023] More specifically, a pair of heat dissipation fins 3 are installed on the two side walls of the file storage body 1, a pair of heat exchange plates 4 are installed on the fixed plate 2 and the inner side walls of the pair of heat exchange plates 4 are in contact with the file storage body 1, a pair of heat exchange chambers 5 are opened inside the pair of heat exchange plates 4, several connecting pipes 6 are installed on the outer side walls of the pair of heat exchange plates 4, one end of two pairs of circulation pipes 7 is connected to several connecting pipes 6, a compressor cooler 8 is installed on the rear wall of the fixed plate 2, a pair of liquid storage tanks 9 are installed on both sides of the compressor cooler 8, the cooling end of the compressor cooler 8 extends through into the pair of liquid storage tanks 9, a pair of booster circulation pumps 10 are installed on both sides of the pair of liquid storage tanks 9, the pair of booster circulation pumps 10 are connected to the pair of liquid storage tanks 9, the other end of the two pairs of circulation pipes 7 is installed on the pair of booster circulation pumps 10, and a pair of ventilation and heat dissipation components are installed on both sides of the pair of heat exchange plates 4;

[0024] Two pairs of mounting rods 14 are mounted on one end of a pair of heat exchange plates 4 on the side wall, and mounting plates 15 are mounted on the other end of the two pairs of mounting rods 14. A pair of fixing slots 16 are opened on the mounting plates 15, and a pair of cooling fans 17 are installed in the pair of fixing slots 16.

[0025] In the specific implementation process, a grip handle 11 is further installed on the file storage body 1.

[0026] In the specific implementation process, a pair of flow guide baffles 12 are further installed inside a pair of heat exchange chambers 5.

[0027] In the specific implementation process, a dustproof air intake grille 13 is further provided on the compressor refrigeration unit 8.

[0028] In the specific implementation process, furthermore, the two pairs of mounting rods 14 are mounted on a pair of heat exchange plates 4 by two pairs of fixing blocks 18.

[0029] Although 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 alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A secure storage device for file encryption and decryption, comprising: The utility model relates to a file storage body (1) and fixed plate (2), its characterized in be, fixed plate (2) is installed on the back wall surface of file storage body (1), and fixed plate (2) and file storage body (1) are installed with multi-section type high -efficient heat dissipation structure, Multi-section type high -efficient heat dissipation structure contains: a pair of heat dissipation fins (3), a pair of heat exchange plates (4), a pair of heat exchange cavities (5), a plurality of adapter pipes (6), two pairs of circulating pipes (7), compression refrigerators (8), a pair of liquid storage tanks (9), a pair of booster circulating pumps (10) and a pair of ventilation and heat dissipation components, A pair of heat dissipation fins (3) are installed on the two side walls of file storage body (1), a pair of heat exchange plates (4) are installed on fixed plate (2), and the inner side walls of the pair of heat exchange plates (4) are attached to file storage body (1), a pair of heat exchange cavities (5) are formed in the pair of heat exchange plates (4), a plurality of adapter pipes (6) are installed on the outer side walls of the pair of heat exchange plates (4), two pairs of circulating pipes (7) are connected to the plurality of adapter pipes (6) at one end, compression refrigerators (8) are installed on the back wall surface of fixed plate (2), a pair of liquid storage tanks (9) are installed on the two sides of compression refrigerators (8), the refrigeration end of compression refrigerators (8) penetrates into the pair of liquid storage tanks (9), a pair of booster circulating pumps (10) are installed on the two sides of the pair of liquid storage tanks (9), the pair of booster circulating pumps (10) are connected to the pair of liquid storage tanks (9), the other ends of the two pairs of circulating pipes (7) are installed on the pair of booster circulating pumps (10), and a pair of ventilation and heat dissipation components are installed on the two sides of the pair of heat exchange plates (4).

2. The secure storage device for file encryption and decryption according to claim 1, wherein, A holding handle (11) is installed on file storage body (1).

3. The secure storage device for file encryption and decryption of claim 1, wherein, A pair of flow guide baffles (12) are installed in the pair of heat exchange cavities (5).

4. The secure storage device for file encryption and decryption of claim 1, wherein, A dustproof air inlet grille (13) is arranged on compression refrigerators (8).

5. The secure storage device for file encryption and decryption of claim 1, wherein, Each of the pair of ventilation and heat dissipation components contains two pairs of mounting rods (14), a mounting plate (15), a pair of fixing grooves (16) and a pair of heat dissipation fans (17); One end of the two pairs of mounting rods (14) is installed on the side walls of the pair of heat exchange plates (4), the mounting plate (15) is installed on the other end of the two pairs of mounting rods (14), the pair of fixing grooves (16) are formed in the mounting plate (15), and the pair of heat dissipation fans (17) are installed in the pair of fixing grooves (16).

6. The secure storage device for file encryption and decryption of claim 5, wherein, The two pairs of mounting rods (14) are installed on the pair of heat exchange plates (4) through the two pairs of fixing blocks (18).