Data storage framework based on Internet of Things
By introducing the design of fans and L-shaped cavity boards into the IoT data storage framework, the problem of difficulty in hard disk heat dissipation is solved, effective heat dissipation of hard disks is achieved, and the reliability and security of data storage are ensured.
Patent Information
- Application Number
- CN202422236878.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-12
AI Technical Summary
In the Internet of Things-based data storage framework, the difficulty of heat dissipation of hard disks causes high temperature to damage the mechanical structure, affecting the reliability of data backup.
A data storage framework is designed to introduce wind power by setting a fan in the frame, and the air holes and frame slots of the L-shaped cavity plate are used to achieve effective heat dissipation of the hard disk, and the wind power takes away the heat from the hard disk and the frame.
It effectively solves the problem of hard disk heat dissipation, ensures the heat dissipation needs of hard disk when running, and improves the reliability and security of data storage.
Smart Images

Figure CN223078862U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage devices, and particularly relates to a data storage framework based on the Internet of Things. Background Technique
[0002] The data storage framework based on the Internet of Things mainly involves several key components and technologies, which together constitute an effective data storage and management system in the Internet of Things system. The core of this framework lies in realizing efficient data exchange and storage between devices, while ensuring the reliability and security of data. The advantage of the Internet of Things technology architecture is that it can achieve seamless connection and information sharing between devices, realizing the integration of the physical world and the digital world. Through the Internet of Things technology, an intelligent living and working environment can be realized, and production efficiency can be improved.
[0003] Solid state drives at the data center level equipped with supporting flash memory, firmware and controllers can be used for data storage backup services of the data storage framework based on the Internet of Things. And the data storage backup hard disk used for this data storage framework is configured with a hard disk storage framework to form the infrastructure to support big data applications. The stacking density of this hard disk is relatively high when assembled at the hard disk framework, making it easy to have heat dissipation difficulties during the operation of the hard disk. And high temperature will cause damage to the mechanical structure inside the hard disk, thus affecting the data backup of the data storage framework based on the Internet of Things. For this reason, we propose a data storage framework based on the Internet of Things. Content of the Utility Model
[0004] The main purpose of the utility model is to provide a data storage framework based on the Internet of Things. By setting a framework for placing the hard disk for Internet of Things data storage, the storage framework can clamp and receive the hard disk after assembly. Then, the single-port box supporting the storage framework introduces the wind force of the fan to blow towards the hard disk, so that the heat of the hard disk is taken away by the wind force, effectively meeting the heat dissipation requirements of the hard disk for Internet of Things data storage. And there are air passing holes on the side plate surface of the L-shaped cavity plate of the framework to discharge the wind force outwards from the frame row groove of the U-shaped surrounding plate, so that there is flowing wind force at the L-shaped cavity plate to take away the heat of its own plate body. And the heat conducted from the hard disk to the L-shaped cavity plate can also be taken away, ensuring good heat dissipation guarantee for the hard disk used for Internet of Things data storage during operation and storage, and effectively solving the problems in the background technique.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0006] A data storage framework based on the Internet of Things, including a base frame board, a U-shaped enclosing board and a cover board. The board surface of the base frame board is welded with the U-shaped enclosing board, and the board heads of the U-shaped enclosing board and the cover board are locked by bolts. An L-shaped cavity board is inserted between the U-shaped enclosing board and the base frame board. On the flat plate surface of the L-shaped cavity board away from its vertical plate body, two sets of strip bodies of ribs are distributed in an L-shape. Rubber abutting strips for abutting against the hard disk are adhesively bonded at equal lengths at the two sets of strip bodies of the ribs. A telescopic hole for embedding a rod is opened on the board surface of the L-shaped cavity board near the outlet on the side of the U-shaped enclosing board. The bottom of the rod is connected with a spring through a connecting pin in the L-shaped cavity board. A pipe embedding groove for clamping the air duct is opened on the vertical board surface of the U-shaped enclosing board near the L-shaped cavity board, and one end nozzle of the air duct is welded and communicated at the vertical board body of the L-shaped cavity board. Air passing grooves are opened on the vertical board body and the flat plate surface of the L-shaped cavity board, and air passing holes are opened on the side board surface of the L-shaped cavity board away from its vertical board body. Frame row grooves are penetrated and opened on the surface of the U-shaped enclosing board outside the air passing holes. The outer pipe body of the air duct away from the L-shaped cavity board is inserted into a side jack opened on the surface of a single-port box, and a fan covering the box opening above itself is locked by bolts at the upper box body of the single-port box. Rectangular fixed feet are distributed in a rectangular shape at the four corners of the bottom board surface of the base frame board away from the U-shaped enclosing board, and U-shaped fixed seats are distributed in a rectangular shape at the four corners of the upper board surface of the cover board away from the U-shaped enclosing board.
[0007] Among them, the block size of the rectangular fixed foot is the same as the cavity size of the U-shaped fixed seat;
[0008] By adopting the above technical solution, the rectangular fixed foot can be clamped with the U-shaped fixed seat, so that the base frame board is clamped with the U-shaped fixed seat of the latter group of cover boards, so that the frame composed of the base frame board, the U-shaped enclosing board and the cover board can be superposed and assembled with the latter group of frames.
[0009] Among them, the long strip body and the short strip body of the rib are respectively fixed at the long side and the wide side of the flat plate body of the L-shaped cavity board, and C-shaped notches are arranged at the rubber abutting strips adhesively bonded on the long strip body and the short strip body of the rib;
[0010] By adopting the above technical solution, the long strip body and the short strip body of the rib can limit the hard disk for Internet of Things data storage at the flat plate body of the L-shaped cavity board, and the rubber abutting strips with C-shaped notches arranged at the long strip body and the short strip body of the rib can be elastically clamped outside the hard disk for flexible contact.
[0011] Among them, a connecting pin is integrally formed at the bottom of the rod body of the rod, and the diameter of the pin disk of the connecting pin is larger than the diameter of the hole body of the telescopic hole. The pin disk of the connecting pin is welded and fixed with the upper spring coil of the spring, and the bottom spring coil of the spring is welded and fixed at the inner cavity wall of the L-shaped cavity board;
[0012] By adopting the above technical solution, after the abutting rod is connected to the spring by a connecting pin, the bottom spring coil of the spring is welded and fixed at the inner cavity wall of the L-shaped cavity plate, so that the abutting rod can press the spring to elastically expand and contract at the telescopic hole after being stressed, thereby cooperating with the support strip and the vertical plate body of the L-shaped cavity plate to limit the hard disk in four directions.
[0013] Wherein, at one end of the plate bodies of the cover plate and the U-shaped surrounding plate, plate heads are symmetrically fixed, and a vertical locking bolt is provided between the plate heads of the cover plate and the U-shaped surrounding plate;
[0014] By adopting the above technical solution, there are plate heads at the plate bodies of the cover plate and the U-shaped surrounding plate that can be locked by screws, thereby realizing the detachable connection between the cover plate and the U-shaped surrounding plate.
[0015] Wherein, a rubber ring is bonded in the hole-shaped cavity of the pipe embedding groove, and an air duct passes through the rubber ring of the pipe embedding groove;
[0016] By adopting the above technical solution, the pipe embedding groove nests the rubber ring outside the air duct, so that the airtightness of the fitting between the air duct and the pipe embedding groove is better.
[0017] Compared with the prior art, the present utility model has the following beneficial effects:
[0018] The present utility model provides a frame for placing a hard disk for storing Internet of Things data. After the storage frame is assembled, it can hold the hard disk. Then, the single-port box supporting the storage frame introduces the wind power of the fan to blow towards the hard disk, so that the heat of the hard disk is carried away by the wind power, effectively meeting the heat dissipation requirements of the hard disk for storing Internet of Things data;
[0019] And there are air passing holes on the side plate surface of the L-shaped cavity plate of the frame to discharge the wind power outwards from the frame row groove of the U-shaped surrounding plate, so that there is a flowing wind power at the L-shaped cavity plate to carry away the heat of its own plate body, and the heat conducted from the hard disk to the L-shaped cavity plate can also be carried away, ensuring good heat dissipation guarantee when the hard disk for storing Internet of Things data is running and stored. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of a data storage frame based on the Internet of Things of the present utility model.
[0021] Figure 2 It is a schematic diagram of the disassembly of the frame and the single-port box of a data storage frame based on the Internet of Things of the present utility model.
[0022] Figure 3 It is an exploded view of a data storage frame based on the Internet of Things of the present utility model.
[0023] Figure 4 It is a schematic diagram of the assembly of the spring, the connecting head and the abutting rod of a data storage frame based on the Internet of Things of the present utility model.
[0024] Figure 5 The sectional view of the L-shaped cavity plate of a data storage framework based on the Internet of Things according to the present utility model.
[0025] Figure 6 The schematic diagram of the splitting of the fan and the single-port box of a data storage framework based on the Internet of Things according to the present utility model.
[0026] In the figure: 1, base frame plate; 2, U-shaped enclosing plate; 3, cover plate; 4, L-shaped cavity plate; 5, support bar; 6, rubber abutting strip; 7, telescopic hole; 8, abutting rod; 9, connecting pin; 10, spring; 11, air duct; 12, pipe embedding groove; 13, air passing groove; 14, air passing hole; 15, frame row groove; 16, single-port box; 17, side jack; 18, fan; 19, U-shaped fixed seat; 20, rectangular fixed foot. Specific embodiments
[0027] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0028] As Figures 1-6 shown, a data storage framework based on the Internet of Things includes a base frame plate 1, a U-shaped enclosing plate 2 and a cover plate 3. The plate surface of the base frame plate 1 is welded with the U-shaped enclosing plate 2, and the plate head of the U-shaped enclosing plate 2 and the plate head of the cover plate 3 are locked by bolts. An L-shaped cavity plate 4 is inserted between the U-shaped enclosing plate 2 and the base frame plate 1. On the flat plate surface of the L-shaped cavity plate 4 away from its vertical plate body, two sets of strips of the support bar 5 are distributed in an L-shape. At the two sets of strips of the support bar 5, rubber abutting strips 6 for abutting against the hard disk are adhesively bonded at equal lengths. On the plate surface of the L-shaped cavity plate 4 near the outlet of the U-shaped enclosing plate 2, a telescopic hole 7 for embedding the abutting rod 8 is opened. At the bottom of the abutting rod 8 in the L-shaped cavity plate 4, it is connected with a spring 10 through a connecting pin 9. On the vertical plate surface of the U-shaped enclosing plate 2 close to the L-shaped cavity plate 4, a pipe embedding groove 12 for clamping the air duct 11 is opened. One end nozzle of the air duct 11 is welded in communication with the vertical plate body of the L-shaped cavity plate 4. Air passing grooves 13 are opened on the vertical plate body and the flat plate surface of the L-shaped cavity plate 4. An air passing hole 14 is opened on the side plate surface of the L-shaped cavity plate 4 away from its vertical plate body. A frame row groove 15 is penetrated and opened on the surface of the U-shaped enclosing plate 2 outside the air passing hole 14. The outer pipe body of the air duct 11 away from the L-shaped cavity plate 4 is inserted into a side jack 17 opened on the surface of the single-port box 16. A fan 18 covering the upper part of its own box opening is locked by bolts at the upper box body of the single-port box 16. Four rectangular fixed feet 20 are distributed in a rectangle at the four corners of the bottom plate surface of the base frame plate 1 away from the U-shaped enclosing plate 2. Four U-shaped fixed seats 19 are distributed in a rectangle at the four corners of the upper plate surface of the cover plate 3 away from the U-shaped enclosing plate 2.
[0029] Among them, the block size of the rectangular fixed foot 20 is the same as the cavity size of the U-shaped fixed seat 19;
[0030] By adopting the above technical solution, the rectangular fixed feet 20 can be clamped with the U-shaped fixed seats 19, so that the base frame plate 1 is clamped with the U-shaped fixed seats 19 of the rectangular fixed feet 20 of the rear set of cover plates 3, so that the frame composed of the base frame plate 1, the U-shaped enclosing plate 2 and the cover plate 3 can be superposed and assembled with the frame of the rear set.
[0031] Wherein, the long strip body and the short strip body of the support strip 5 are respectively fixed at the long side and the wide side of the flat plate body of the L-shaped cavity plate 4, and C-shaped notches are arranged at the rubber abutting strips 6 adhered to the surfaces of the long strip body and the short strip body of the support strip 5;
[0032] By adopting the above technical solution, the long strip body and the short strip body of the support strip 5 can limit the hard disk for storing Internet of Things data at the flat plate body of the L-shaped cavity plate 4, and the rubber abutting strips 6 with C-shaped notches are easily arranged on the long strip body and the short strip body of the support strip 5 and can be elastically clamped outside the hard disk for flexible contact.
[0033] Wherein, a connecting pin 9 is integrally formed at the bottom of the rod body of the abutting rod 8, and the diameter of the pin disc of the connecting pin 9 is larger than the diameter of the hole body of the telescopic hole 7. The pin disc of the connecting pin 9 is welded and fixed to the upper spring coil of the spring 10, and the bottom spring coil of the spring 10 is welded and fixed at the inner cavity wall of the L-shaped cavity plate 4;
[0034] By adopting the above technical solution, after the abutting rod 8 is connected to the spring 10 through the connecting pin 9, the bottom spring coil of the spring 10 is welded and fixed at the inner cavity wall of the L-shaped cavity plate 4, so that the abutting rod 8 can press the spring 10 to elastically expand and contract at the telescopic hole 7 after being stressed, so as to cooperate with the support strip 5 and the vertical plate body of the L-shaped cavity plate 4 to limit the four sides of the hard disk.
[0035] Wherein, plate heads are symmetrically fixed at one ends of the plate bodies of the cover plate 3 and the U-shaped enclosing plate 2, and vertical locking bolts are arranged between the plate heads of the cover plate 3 and the U-shaped enclosing plate 2;
[0036] By adopting the above technical solution, the plate bodies of the cover plate 3 and the U-shaped enclosing plate 2 have plate heads that can be locked by screws, so as to realize the detachable connection between the cover plate 3 and the U-shaped enclosing plate 2.
[0037] Wherein, a rubber ring is adhered in the hole-shaped cavity of the pipe embedding groove 12, and an air pipe 11 passes through the rubber ring of the pipe embedding groove 12;
[0038] By adopting the above technical solution, the pipe embedding groove 12 nests the rubber ring outside the air pipe 11, so that the air pipe 11 and the pipe embedding groove 12 have better fitting sealing performance.
[0039] It should be noted that the present utility model is a data storage framework based on the Internet of Things. When a data storage hard disk based on the Internet of Things needs to be placed using a storage framework, the U-shaped enclosing plate 2 of the base frame plate 1 and the cover plate 3 are assembled into a framework by bolt-locking plate heads. The base frame plate 1 of this framework is clamped with the U-shaped fixed seat 19 of the latter group of cover plates 3 through the rectangular fixed feet 20, so that the framework composed of the base frame plate 1, the U-shaped enclosing plate 2 and the cover plate 3 can be stacked and assembled with the latter group of frameworks. Then, the vertical plate body of the L-shaped cavity plate 4 can be clamped with the support bar 5 provided with the rubber anti-strip 6 and the anti-rod 8 to hold the hard disk for storing Internet of Things data, and the interface of the hard disk is exposed from the plate opening of the U-shaped enclosing plate 2. Then, the L-shaped cavity plate 4 can be inserted into the framework composed of the base frame plate 1, the U-shaped enclosing plate 2 and the cover plate 3 with the hard disk. At this time, the air duct 11 of the L-shaped cavity plate 4 can be clamped into the pipe embedding groove 12 of the U-shaped enclosing plate 2. Then, the pipe embedding groove 12 of the single-port box 16 is nested outside the air duct 11 with a rubber ring, and then the fan 18 is installed outside the upper box of the single-port box 16 for power connection. When the hard disk performs the Internet of Things data storage backup service, the fan 18 can blow wind into the single-port box 16. Then, the wind of the fan 18 enters the chamber of the L-shaped cavity plate 4 through the air duct 11. The wind in the L-shaped cavity plate 4 blows towards the hard disk along the air passing groove 13, and there are air passing holes 14 on the side plate surface of the L-shaped cavity plate 4 to discharge the wind outwards from the frame row groove 15 of the U-shaped enclosing plate 2, so that there is a flowing wind at the L-shaped cavity plate 4 to take away the heat of its own plate body, and the heat conducted by the hard disk to the L-shaped cavity plate 4 can also be taken away, ensuring good heat dissipation for the hard disk used for Internet of Things data storage during operation and storage. The L-shaped cavity plate 4 can be pulled out from the framework composed of the base frame plate 1, the U-shaped enclosing plate 2 and the cover plate 3, and then the hard disk is pulled upwards, and the hard disk can be pulled out and disassembled from the L-shaped cavity plate 4.
[0040] It should be noted that the present utility model is a data storage framework based on the Internet of Things. The components in the present utility model are all components known to those skilled in the art, and their structures and principles can all be known by those skilled in the art through technical manuals or obtained through conventional experimental methods.
[0041] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art of this industry should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A data storage framework based on the Internet of Things, characterized in that: It includes a base frame plate (1), a U-shaped enclosing plate (2) and a cover plate (3). The plate surface of the base frame plate (1) is welded with the U-shaped enclosing plate (2), and the plate heads of the U-shaped enclosing plate (2) and the cover plate (3) are locked by bolts. An L-shaped cavity plate (4) is inserted between the U-shaped enclosing plate (2) and the base frame plate (1). On the flat plate surface of the L-shaped cavity plate (4) away from its vertical plate body, two sets of strips of ribs (5) are distributed in an L-shape. Rubber abutting strips (6) for abutting against the hard disk are adhesively bonded at equal lengths at the two sets of strips of the ribs (5). A telescopic hole (7) for embedding a abutting rod (8) is opened on the plate surface of the L-shaped cavity plate (4) near the outlet on the side of the U-shaped enclosing plate (2). The bottom of the abutting rod (8) is connected with a spring (10) through a connecting pin (9) inside the L-shaped cavity plate (4). A pipe embedding groove (12) for clamping a wind pipe (11) is opened on the vertical plate surface of the U-shaped enclosing plate (2) near the L-shaped cavity plate (4). One end pipe orifice of the wind pipe (11) is welded and communicated at the vertical plate body of the L-shaped cavity plate (4). Air passing grooves (13) are opened on the vertical plate body and the flat plate surface of the L-shaped cavity plate (4), and an air passing hole (14) is opened on the side plate surface of the L-shaped cavity plate (4) away from its vertical plate body. Frame row grooves (15) are penetrated and opened on the surface of the U-shaped enclosing plate (2) outside the air passing hole (14). The outer pipe body of the wind pipe (11) away from the L-shaped cavity plate (4) is inserted into a side jack (17) opened on the surface of a single-port box (16). A fan (18) covering the upper box opening is locked by bolts at the upper box body of the single-port box (16). Four rectangular fixing feet (20) are rectangularly distributed at the four corners of the bottom plate surface of the base frame plate (1) away from the U-shaped enclosing plate (2). Four U-shaped fixing seats (19) are rectangularly distributed at the four corners of the upper plate surface of the cover plate (3) away from the U-shaped enclosing plate (2).
2. The data storage framework based on the Internet of Things according to claim 1, characterized in that: The block size of the rectangular fixing feet (20) is the same as the cavity size of the U-shaped fixing seats (19).
3. The data storage framework based on the Internet of Things according to claim 1, wherein: The long strip and the short strip of the rib (5) are respectively fixed at the long side and the wide side of the flat plate of the L-shaped cavity plate (4), and a C-shaped notch is arranged at the rubber abutting strip (6) adhesively bonded on the surfaces of the long strip and the short strip of the rib (5).
4. A data storage framework based on the Internet of Things according to claim 1, characterized in that: The bottom of the rod body of the abutting rod (8) is integrally formed with a connecting pin (9), and the diameter of the pin disc of the connecting pin (9) is larger than the diameter of the hole body of the telescopic hole (7). The pin disc of the connecting pin (9) is welded and fixed with the upper spring coil of the spring (10), and the bottom spring coil of the spring (10) is welded and fixed at the inner cavity wall of the L-shaped cavity plate (4).
5. The data storage framework based on the Internet of Things according to claim 1, characterized in that: The ends of the plate bodies of the cover plate (3) and the U-shaped enclosing plate (2) are symmetrically fixed with plate heads, and vertical locking bolts are arranged between the plate heads of the cover plate (3) and the U-shaped enclosing plate (2).
6. The data storage framework based on the Internet of Things according to claim 1, wherein: A rubber ring is adhesively bonded in the hole-shaped cavity of the pipe embedding groove (12), and the wind pipe (11) passes through the rubber ring of the pipe embedding groove (12).