Intelligent storage server based on Internet of Things big data

By designing a dust cover hinged push mechanism and elastic abutment in the storage server, the problems of dust accumulation and cover loosening are solved, making hard drive removal convenient and dust cleaning efficient, and improving heat dissipation efficiency and ease of operation.

CN121807108APending Publication Date: 2026-04-07SHANGHAI DUANZI INFORMATION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-09-09
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Dust tends to accumulate on existing storage servers during the heat dissipation process, making cleaning difficult and affecting heat dissipation efficiency. In addition, hard drive tray covers are prone to loosening, affecting operational efficiency.

Method used

Design an intelligent storage server based on IoT big data, which adopts a dust cover hinged push mechanism to drive the hard drive tray out and clean the dustproof heat dissipation mesh through elastic abutment and dust removal components, ensuring that the hard drive can be easily removed and the dust is cleaned efficiently.

Benefits of technology

It enables easy removal of the hard drive, efficient cleaning of the dustproof and heat dissipation mesh, avoids loosening of the cover, and improves heat dissipation efficiency and ease of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent storage server based on Internet of Things big data, and relates to the technical field of data storage, the intelligent storage server comprises a shell and a plurality of hard disk brackets inserted into the shell, the front end of each hard disk bracket is hinged to a dustproof cover plate, the intelligent storage server further comprises a dustproof heat dissipation net embedded in the bottom of the corresponding hard disk bracket, and a pushing mechanism, the pushing mechanism is hinged to the hard disk bracket and the dustproof cover plate, a dust removal assembly and an elastic abutting piece are installed at the bottom of the pushing mechanism, the pushing mechanism is inserted into the pushing mechanism in a penetrating mode, a limiting rack is installed on the inner side of the hard disk bracket, and when the dustproof cover plate is opened, the pushing mechanism is driven to pull out the hard disk. And the dust removal assembly and the elastic abutting piece are used for dust removal and cleaning of the dustproof heat dissipation net at the same time. By arranging the pushing mechanism, when the dustproof cover plate is turned over and opened, the pushing mechanism can be driven to push out the hard disk in the hard disk bracket, and meanwhile, in the moving process of the pushing mechanism, the dust removing assembly can clean dust attached to the dustproof heat dissipation net.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of data storage, in particular to an intelligent storage server based on Internet of Things big data. BACKGROUND

[0002] The storage server is one of the indispensable devices in modern communication networks. In the prior art, the storage server includes a host and a plurality of hard disk carriers installed with hard disks. In terms of the existing server, the hard disk carriers are generally installed into the server slot of the host in a push-pull manner. When the hard disk carrier is pushed to the locking position, the connector of the hard disk installed on the hard disk carrier is mechanically and electrically connected with the connector of the host, so as to further fix the hard disk and realize data interaction between the hard disk and the host.

[0003] The existing patent application with the patent publication number CN213843979U and the publication date of July 30, 2021 is entitled "Storage server provided with hard disk carriers". The patent includes a storage server body, a pad, a hard disk carrier and a supporting net plate. The pad is fixedly installed at the bottom of both sides of the storage server body. The supporting net plate is fixedly installed inside the storage server body. The hard disk carrier is located at the upper end of the supporting net plate. The supporting net plate and the hard disk carrier are both provided with multiple groups. The hard disk carriers are all connected with the inside of the storage server body through the supporting net plate. A fixed net plate is fixedly installed in the middle of the storage server body. The utility model discloses a longitudinal air bellow which can guide the heat dissipation airflow in the air collecting bellow into the longitudinal air bellow through the air guide pipe and discharge the heat dissipation airflow through the air outlet and blow it to the multiple hard disk carriers to perform heat dissipation work on the hard disks on the hard disk carriers, so as to guarantee good heat dissipation effect. The filter screen and the filter sponge provided on the air collecting bellow can prevent dust from entering the inside of the storage server.

[0004] The above-mentioned application has the following deficiencies. When the fan is used to cool the hard disks in the server, dust will inevitably accumulate on the hard disk carriers and the hard disks in the hard disk carriers. If the accumulated dust is cleaned, the entire hard disk carrier needs to be removed, which is troublesome. If only the hard disks are removed for cleaning, the hard disk carrier is more difficult to clean completely because it is inserted into the server, which will cause the problem of airflow obstruction after cleaning. In addition, the opened cover plate of the hard disk carrier is easy to shake during operation, which affects the cleaning speed and effect. SUMMARY

[0005] The present application aims to provide an intelligent storage server based on Internet of Things big data to solve the above-mentioned deficiencies in the prior art.

[0006] In order to achieve the above-mentioned purpose, the present application provides the following technical solutions: The utility model provides an intelligent storage server based on internet of things big data, including casing and several hard disk carriers inserted casing, the front end of hard disk carrier is hinged with dustproof cover, still includes dustproof heat dissipation net, is embedded in the bottom of hard disk carrier, push mechanism, respectively with hard disk carrier and dustproof cover hinge and its bottom is installed with dust removal subassembly, elastic abutment piece is inserted on push mechanism, the inside of hard disk carrier is installed with limit rack, elastic abut part and limit rack and dustproof heat dissipation net are abutted respectively, when dustproof cover opens, drive push mechanism to pull out hard disk, and make dust removal subassembly and elastic abutment piece simultaneously carry out dust removal cleaning to dustproof heat dissipation net.

[0007] Preferably, the rear end of the hard disk carrier is fixedly connected with a docking back plate, and one end of the limit rack is fixed with the docking back plate.

[0008] Preferably, the push mechanism comprises a first connecting rod hingedly connected between the hard disk carrier and the docking back plate, a second connecting rod hingedly connected between the first connecting rod and the dustproof cover, and a shaft rod connected to the hinged position of the first connecting rod and the second connecting rod, and a hard disk push plate slidably installed in the hard disk carrier and connected to the shaft rod.

[0009] Preferably, the dust removal subassembly comprises an upper cleaning brush installed at the bottom of the hard disk push plate and a transmission belt installed at both sides of the dustproof heat dissipation net, the upper cleaning brush is fixed to the top of the two transmission belts, the bottom of the transmission belt is fixedly connected with a lower cleaning brush, and the upper and lower cleaning brushes are in contact with the two surfaces of the dustproof heat dissipation net, respectively.

[0010] Preferably, the elastic abutment piece comprises a limit pressing rod vertically penetrating the hard disk push plate and an abutting rod, the limit pressing rod is fixed with the abutting rod, a compression spring is sleeved on the limit pressing rod, a clamping tooth engaged with the limit rack is fixedly connected to the bottom of the limit pressing rod, and a pressing block abutting against the dustproof heat dissipation net is fixedly connected to the bottom of the abutting rod.

[0011] Preferably, one side of the hard disk push plate close to the docking back plate is hingedly connected with an elastic pressing piece, and a groove is formed in the limit pressing rod for the elastic pressing piece to enter.

[0012] Preferably, through holes are formed in both sides of the hard disk carrier, limit pieces are hingedly connected in the through holes, limit holes matched with the limit pieces are formed in the casing, and when the hard disk push plate abuts against one end of the limit piece, the other end of the limit piece moves out of the limit hole.

[0013] Preferably, a dust collection groove is formed in the bottom of the inner wall of the hard disk carrier, and a dust blocking cover is hingedly connected in the dust collection groove.

[0014] Preferably, an insertion rod is penetratingly installed on the limit rack, a wedge-shaped stopper is fixedly connected to the top of the insertion rod, the bottom of the insertion rod is hingedly connected with the dust blocking cover, and a tension spring is sleeved on the insertion rod.

[0015] Preferably, the hard disk holder and the shell are both provided with a plug hole matched with the plug rod.

[0016] In the above technical scheme, by setting the pushing mechanism, when the dustproof cover plate is turned open, the pushing mechanism is driven to push out the hard disk in the hard disk holder, facilitating the worker to take the hard disk, and in the process of movement of the pushing mechanism, the dust removal assembly can clean the dust attached to the dustproof heat dissipation net, and due to the elastic abutting piece which is always moved forward against the limiting rack under the elastic force, the dustproof cover plate will not be loose after being loosened, and in the process of repeated lifting of the elastic abutting piece, the dustproof heat dissipation net will be continuously and intermittently impacted, which cooperates with the dust removal assembly to more efficiently clean the dustproof heat dissipation net, ensures the efficiency of ventilation and heat dissipation, and does not need to be specially disassembled and cleaned.

[0017] It should be understood that the foregoing general description and the following detailed description are only exemplary and explanatory, rather than limiting the present disclosure.

[0018] This application file provides an overview of various implementations or examples of the technology described in this disclosure and is not intended to be all inclusive or to provide an exhaustive list of features of the disclosed technology. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0020] Figure 1 It is a whole structure schematic view of the intelligent storage server based on the Internet of Things big data of the present application; Figure 2 It is a connection schematic view of the hard disk holder and the shell in the intelligent storage server based on the Internet of Things big data of the present application; Figure 3 It is a top view of the hard disk holder in the intelligent storage server based on the Internet of Things big data of the present application; Figure 4 It is a bottom view of the hard disk holder in the intelligent storage server based on the Internet of Things big data of the present application; Figure 5 It is an internal structure schematic view of the hard disk holder in the intelligent storage server based on the Internet of Things big data of the present application; Figure 6 It is a front sectional view of the hard disk holder in the intelligent storage server based on the Internet of Things big data of the present application; Figure 7It is a structure schematic view of a pushing mechanism in an intelligent storage server based on Internet of Things big data according to the present application; Figure 8 It is a connection schematic view of a hard disk pushing plate and an elastic abutting piece in an intelligent storage server based on Internet of Things big data according to the present application; Figure 9 It is a structure schematic view of an elastic abutting piece in an intelligent storage server based on Internet of Things big data according to the present application.

[0021] Mark explanation: 1, shell; 101, limiting hole; 2, hard disk bracket; 201, dust cover; 202, limiting rack; 203, butt joint back plate; 204, through hole; 205, dust collection groove; 206, dust cover; 207, plug rod; 208, wedge-shaped stop block; 209, tension spring; 210, plug-in part; 211, jack; 212, storage groove; 3, dustproof heat dissipation net; 4, pushing mechanism; 401, first connecting rod; 402, second connecting rod; 403, shaft; 404, hard disk pushing plate; 405, dust scraping plate; 406, limiting groove; 407, connecting frame; 408, sliding block; 409, sliding groove; 410, slot; 5, dust removal assembly; 501, upper cleaning brush; 502, transmission belt; 503, lower cleaning brush; 504, buckle; 6, elastic abutting piece; 601, limiting pressure rod; 602, abutting rod; 603, compression spring; 604, clamping tooth; 605, pressing block; 606, groove; 607, pressing strip; 7, elastic pressing piece; 8, limiting piece. Embodiment

[0022] In order to make the purpose, technical scheme and advantages of the embodiments of the present disclosure clearer, the technical scheme of the embodiments of the present disclosure will be described clearly and completely below in combination with the drawings of the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all the embodiments. Based on the described embodiments of the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present disclosure.

[0023] Please refer to Figures 1-9The embodiment of the application provides an intelligent storage server based on Internet of Things big data, which comprises a shell 1 and a plurality of hard disk holders 2 inserted into the shell 1, a dustproof cover plate 201 hinged at the front end of the hard disk holder 2, a dustproof and heat dissipation net 3 embedded at the bottom of the hard disk holder 2, a pushing mechanism 4 hinged with the hard disk holder 2 and the dustproof cover plate 201 respectively, and a dust removal assembly 5 installed at the bottom of the pushing mechanism 4, and a resilient abutting piece 6 penetratingly inserted into the pushing mechanism 4, wherein a limiting rack 202 is installed at the inner side of the hard disk holder 2, and the resilient abutting piece 6 is abutted with the limiting rack 202 and the dustproof and heat dissipation net 3 respectively, when the dustproof cover plate 201 is opened, the pushing mechanism 4 is driven to pull out the hard disk, and the dust removal assembly 5 and the resilient abutting piece 6 simultaneously clean the dustproof and heat dissipation net 3.

[0024] Specifically, the hard disk is installed in the shell 1 of the server through the hard disk holder 2, the data storage function of the server is realized through a plurality of hard disks, the shell 1 is provided with an insertion opening for the hard disk holder 2, the dustproof cover plate 201 at the front end of the hard disk holder 2 can reduce the dust entering the shell 1 after being closed, the hard disk holder 2 with the hard disk is inserted into the insertion opening in the shell 1 to complete the connection of the hard disk and the server, or the hard disk holder 2 is first inserted into the shell 1, and then the hard disk is inserted into the hard disk holder 2, the server is generally provided with a heat dissipation fan for cooling and heat dissipation, the dustproof and heat dissipation net 3 can ensure that the cold air enters the hard disk holder 2 and blocks the dust below the hard disk holder 2, when the hard disk needs to be removed, the dustproof cover plate 201 is directly opened, the dustproof cover plate 201 is flipped, the pushing mechanism 4 is driven to move, the hard disk is pushed out, the interface on the hard disk is separated from the insertion piece 210, that is, after the dustproof cover plate 201 is opened, the hard disk can be easily removed, when the pushing mechanism 4 pushes out the hard disk, the dust removal assembly 5 moves on the dustproof and heat dissipation net 3 and cleans the dust attached to the surface of the dustproof and heat dissipation net 3, and since the resilient abutting piece 6 is always abutted against the limiting rack 202 under the action of the elastic force, after the dustproof cover plate 201 is opened, if the bottom of the resilient abutting piece 6 is clamped in the limiting rack 202, the dustproof cover plate 201 can be prevented from loosening, so that the hard disk can be quickly replaced, and when the resilient abutting piece 6 is abutted against the limiting rack 202 and moves forward, the resilient abutting piece 6 is forced to move up and down, so that different positions on the dustproof and heat dissipation net 3 are continuously hit, dust cleaned is shaken off, the mesh holes on the dustproof and heat dissipation net 3 are prevented from being blocked by dust particles, and the heat dissipation efficiency is improved.

[0025] Compared with the prior art, the embodiment of the application sets the pushing mechanism 4, when the dustproof cover plate 201 is turned open, the pushing mechanism 4 is driven to push out the hard disk in the hard disk bracket 2, so that the worker can conveniently take the hard disk, and the dust removal assembly 5 can clean the dust attached to the dustproof heat dissipation net 3 in the process of movement of the pushing mechanism 4, and because the elastic abutting piece 6 is always moved forward against the limiting rack 202 under the elastic force, the cover plate will not be loose after the dustproof cover plate 201 is loosened, and in the process of repeated lifting of the elastic abutting piece 6, the dustproof heat dissipation net 3 is continuously and intermittently impacted, so that the dust removal assembly can more efficiently clean the dustproof heat dissipation net 3, the efficiency of ventilation and heat dissipation is ensured, and special disassembly and cleaning are not needed.

[0026] In a further embodiment of the application, the rear end of the hard disk bracket 2 is fixedly connected with a docking back plate 203, one end of the limiting rack 202 is fixed to the docking back plate 203, the docking back plate 203 is installed with a plug-in piece 210, the interface of the hard disk is inserted into the plug-in piece 210 and fixed to the hard disk bracket 2, and the hard disk bracket 2 is also fixed and plugged together with the shell 1 through the plug-in piece 210, both ends of the plug-in piece 210 correspond to the socket of the server and the socket of the hard disk respectively, and specifically, when the hard disk bracket 2 enters the shell 1, the plug-in piece 210 on the docking back plate 203 is first inserted into the socket of the server, and then the socket of the hard disk is inserted into the hard disk bracket 2, and this separate plugging mode can select to take down the hard disk alone or take down the hard disk bracket 2 together with the hard disk from the server during subsequent maintenance and repair, so that the maintenance work of the server can be more quickly completed.

[0027] In a further embodiment of the present application, the pushing mechanism 4 comprises a first connecting rod 401 hingedly connected between the hard disk holder 2 and the docking back plate 203, a dust scraping plate 405 is mounted at the bottom of the first connecting rod 401, the bottom of the dust scraping plate is in contact with the top surface of the dustproof heat dissipation net 3, a second connecting rod 402 is hingedly connected between the first connecting rod 401 and the dustproof cover plate 201, the hinged connection between the first connecting rod 401 and the second connecting rod 402 is connected through a shaft rod 403, a hard disk pushing plate 404 connected with the shaft rod 403 is slidingly installed in the hard disk holder 2, limiting grooves 406 matched with the limiting rack 202 are formed on both sides of the hard disk pushing plate 404, a connecting frame 407 is rotatably sleeved on the shaft rod 403, a sliding block 408 is fixedly connected to one end of the connecting frame 407, a sliding groove 409 for the sliding block 408 to slide is horizontally formed on the top of the hard disk pushing plate 404, a slot 410 for the plug-in part 210 to pass through is formed at the bottom of the hard disk pushing plate 404, a receiving groove 212 for the first connecting rod 401 and the shaft rod 403 to enter is formed on the docking back plate 203, specifically, after the hard disk is installed in the hard disk holder 2, the hard disk pushing plate 404 will be between the hard disk and the docking back plate 203, when the dustproof pushing plate is completely closed, the first connecting rod 401 and the shaft rod 403 will be turned into the receiving groove 212 of the docking back plate 203 and respectively abut against the two, so as to ensure that the socket on the hard disk can be completely docked with the plug-in part 210, when the dustproof cover plate 201 is flipped open, the second connecting rod 402 will pull the first connecting rod 401, at this time, the included angle between the two connecting rods gradually increases, at the same time, the shaft rod 403 at the hinged connection between the first connecting rod 401 and the second connecting rod 402 will be obliquely moved towards the dustproof cover plate 201, the shaft rod 403 is used to push the hard disk pushing plate 404 installed in the hard disk holder 2, so that the hard disk pushing plate 404 gradually moves away from the docking back plate 203, and the hard disk is pushed out of the hard disk holder 2, without the need to open the dustproof cover plate 201 first and then pull out the hard disk, the hard disk is convenient to take out, and the first connecting rod 401 will also drive the dust scraping plate 405 to further scrape the dust particles on the dustproof heat dissipation net 3 when rotating.

[0028] In the further embodiment of the present application, the dust removal assembly 5 comprises an upper cleaning brush 501 installed at the bottom of the hard disk push plate 404 and a transmission belt 502 installed at both sides of the dustproof heat dissipation net 3, the upper cleaning brush 501 is connected with the top of the two transmission belts 502 respectively, the top of the transmission belt 502 is fixedly connected with a buckle 504 matched with the upper cleaning brush 501, the bottom of the transmission belt 502 is fixedly connected with a lower cleaning brush 503, the upper cleaning brush 501 and the lower cleaning brush 503 are in contact with the two sides of the dustproof heat dissipation net 3 respectively, specifically, when the hard disk push plate 404 moves out with the hard disk, the upper cleaning brush 501 on the hard disk push plate 404 cleans the top surface of the dustproof heat dissipation net 3, and when the upper cleaning brush 501 moves, the lower cleaning brush 503 is driven to move in the opposite direction through the transmission belt 502, so that the lower cleaning brush 503 cleans the dustproof heat dissipation net 3 in the opposite direction, the upper cleaning brush 501 can be separated from the buckle 504 on the conveying belt, after being separated, the dustproof heat dissipation net 3 is convenient to disassemble and clean, and the use effect is good.

[0029] In the further embodiment of the present application, the elastic abutting piece 6 comprises a limiting pressure rod 601 vertically penetrating the hard disk push plate 404 and an abutting rod 602, the limiting pressure rod 601 is fixed with the abutting rod 602, the limiting pressure rod 601 is located above the limiting rack 202, the abutting rod 602 is located above the dustproof heat dissipation net 3, the abutting rod 602 and the limiting pressure rod 601 are lifted together, the limiting pressure rod 601 is externally nested with a compression spring 603, the top of the compression spring 603 abuts against the hard disk push plate 404, the bottom of the limiting pressure rod 601 is fixedly connected with a clamping tooth 604 engaged with the limiting rack 202, the bottom of the abutting rod 602 is fixedly connected with a pressing block 605 abutting against the dustproof heat dissipation net 3, specifically, no matter whether the hard disk push plate 404 moves out or moves in, as long as the clamping tooth 604 at the bottom of the limiting pressure rod 601 is inserted between the two teeth of the limiting rack 202 under the action force of the compression spring 603, the hard disk push plate 404 can be prevented from loosening under the action of no external force, the hard disk push plate 404 can be fixed at a position at any time, and the dustproof cover plate 201 can be fixed by the pushing mechanism 4, so that the dustproof cover plate 201 can be prevented from being accidentally closed after being opened, and repeated opening is not needed, when the entire elastic abutting piece 6 moves out, the limiting pressure rod 601 always abuts against the limiting rack 202 under the action force of the compression spring 603, so that the limiting pressure rod 601 is lifted up and down during movement, drives the abutting rod 602 and the pressing block 605 to continuously impact the dustproof heat dissipation net 3, and shakes off the dust attached to the dustproof heat dissipation net 3.

[0030] In a further embodiment of the present application, the hard disk push plate 404 is hinged with a resilient pressing piece 7 on the side close to the docking back plate 203, and a recess 606 is formed on one side of the limiting pressure rod 601 for the resilient pressing piece 7 to enter, specifically, when the hard disk push plate 404 is attached to the docking back plate 203, the resilient pressing piece 7 is pressed into the hard disk push plate 404, and the limiting pressure rod 601 is pressed tightly by the resilient pressing piece 7, thereby improving the stability of the pushing mechanism 4 during the server operation, and when the hard disk push plate 404 is moved away from the docking back plate 203, the resilient pressing piece 7 rotates outwardly under the elastic force of itself, and no longer contacts the limiting pressure rod 601, thereby ensuring that the limiting pressure rod 601 can be freely lifted and lowered.

[0031] In a further embodiment of the present application, the other side of the limiting pressure rod 601 is fixedly connected with a pressing strip 607, and when the hard disk is inserted into the hard disk holder 2, the pressing strip 607 is located above the hard disk, specifically, after the resilient pressing piece 7 is pressed by the docking back plate 203, the limiting pressure rod 601 is lowered, thereby forcing the pressing strip 607 to press the hard disk in the hard disk holder 2, and preventing the hard disk from being loosened from the hard disk holder 2 due to the vibration during the server operation.

[0032] In a further embodiment of the present application, the hard disk holder 2 is provided with a through hole 204 on both sides, and a limiting piece 8 is hinged in the through hole 204, and a limiting hole 101 is formed in the shell 1 and matched with the limiting piece 8, specifically, when the hard disk push plate 404 abuts against one end of the limiting piece 8, the other end of the limiting piece 8 moves out of the limiting hole 101, the limiting piece 8 includes a lever elastically hinged in the through hole 204, and after the hard disk holder 2 is completely inserted into the shell 1, the lever is clamped into the limiting hole 101 for fixation, thereby preventing the hard disk holder 2 from being accidentally loosened, and if the hard disk holder 2 is to be removed, the dustproof cover 201 needs to be completely opened, the hard disk push plate 404 is pushed out by the shaft 403 on the first connecting rod 401 and the second connecting rod 402, until the hard disk push plate 404 abuts against one end of the lever, and the other end of the lever moves out of the limiting hole 101, and at this time, the hard disk holder 2 can be directly pulled out.

[0033] In a further embodiment of the present application, a dust collecting groove 205 is formed in the inner wall of the hard disk holder 2, and a dust blocking cover 206 is hinged in the dust collecting groove 205, and the height of the dust blocking cover 206 is higher than that of the dustproof and heat dissipation net 3, and a plurality of flow guide grooves are formed in the top surface of the dust blocking cover 206, specifically, the dust collecting groove 205 is used to collect the dust cleaned from the dustproof and heat dissipation net 3, and the dust blocking cover 206 can reduce the direct contact between the dust and the hard disk.

[0034] In a further embodiment of the present invention, a rod 207 is installed through the limiting rack 202, and a wedge-shaped stop 208 is fixedly connected to the top of the rod 207. The wedge-shaped stop 208 is located below the limiting member 8. The bottom of the rod 207 is hinged to the side of the dust cover 206, and a tension spring 209 is sleeved on the rod 207. The tension spring 209 is located between the limiting rack 202 and the wedge-shaped stop 208. Specifically, the tension spring 209 pushes up the wedge-shaped stop 208, thereby causing the rod 207 to lift one side of the dust cover 206, creating a gap between the dust cover 206 and the hard drive tray 2 for dust to enter the dust collection groove 205. With the hard drive removed, continuing to open the dust cover 201 allows the dust removal component 5 to remove the dust. The dust is swept into the dust collection groove 205. When the hard drive is inserted into the hard drive tray 2, the limiting member 8 and the wedge-shaped block 208 cooperate with each other. After the hard drive passes between the wedge-shaped block 208 and the limiting member 8, the limiting member 8 limits the height of the hard drive, so that the bottom surface of the hard drive is always pressed against the wedge-shaped block 208. This ensures that the dust cover 206 completely covers the dust collection groove 205, preventing the dust collected in the dust collection groove 205 from spreading out during the subsequent process of inserting the hard drive into the hard drive tray 2. This also prevents the cleaned dust from adhering to the hard drive. At the same time, the staff does not need to frequently remove the entire hard drive tray 2 to clean the accumulated dust, reducing the intensity of maintenance work. The dustproof heat dissipation mesh 3 is not easily blocked, ensuring the heat dissipation efficiency of the server during long-term operation.

[0035] In a further embodiment of the present invention, both the hard drive tray 2 and the housing 1 are provided with insertion holes 211 that match the insertion rod 207. Specifically, after the hard drive is inserted into the hard drive tray 2 installed in the housing 1, the wedge-shaped stop 208 will be squeezed to lower the insertion rod 207, allowing the insertion rod 207 to pass through the hard drive tray 2 and be inserted into the insertion hole 211 on the housing 1. This ensures that when the hard drive is inserted into the hard drive tray 2, the hard drive tray 2 will not accidentally detach from the server, thereby improving the stability of the server operation.

[0036] The foregoing has only described certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the foregoing drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A smart storage server based on Internet of Things big data, comprising a housing (1) and a plurality of hard disk trays (2) inserted into the housing (1), wherein the front end of each hard disk tray (2) is hinged with a dust cover (201), characterized in that, Also includes: Dustproof heat dissipation mesh (3), which is embedded in the bottom of the hard disk tray (2); The push mechanism (4) is hinged to the hard disk tray (2) and the dust cover (3) respectively, and a dust removal component (5) is installed at its bottom. The elastic abutment (6) is inserted through the push mechanism (4). The inner side of the hard disk tray (2) is equipped with a limiting rack (202). The elastic abutment (6) abuts against the limiting rack (202) and the dustproof heat dissipation mesh (201) respectively. When the dust cover (201) is opened, it drives the pushing mechanism (4) to pull out the hard drive, and the dust removal component (5) and the elastic abutment (6) simultaneously clean the dust removal and heat dissipation mesh (3).

2. The intelligent storage server based on IoT big data according to claim 1, characterized in that, The rear end of the hard disk tray (2) is fixedly connected to a docking backplate (203), and one end of the limiting rack (202) is fixed to the docking backplate (203).

3. The intelligent storage server based on IoT big data according to claim 1, characterized in that, The pushing mechanism (4) includes a first link (401) hinged between the hard disk tray (2) and the docking back plate (203). One end of the first link (401) is hinged to a second link (402) between the dust cover plate (201). The hinge of the first link (401) and the second link (402) is connected by a shaft (403). A hard disk push plate (404) connected to the shaft (403) is slidably installed inside the hard disk tray (2).

4. The intelligent storage server based on IoT big data according to claim 3, characterized in that, The dust removal assembly (5) includes an upper cleaning brush (501) installed at the bottom of the hard disk push plate (404) and a transmission belt (502) installed on both sides of the dustproof heat dissipation mesh (3). The upper cleaning brush (501) is fixed to the top of the two transmission belts (502) respectively, and a lower cleaning brush (503) is fixedly connected to the bottom of the transmission belt (502). The upper cleaning brush (501) and the lower cleaning brush (503) are in contact with the two sides of the dustproof heat dissipation mesh (3) respectively.

5. The intelligent storage server based on IoT big data according to claim 3, characterized in that, The elastic abutment (6) includes a limiting pressure rod (601) and an abutment rod (602) that vertically penetrate the hard disk push plate (404). The limiting pressure rod (601) and the abutment rod (602) are fixed together, and a compression spring (603) is sleeved on the limiting pressure rod (601). The bottom of the limiting pressure rod (601) is fixedly connected to a snap-fit ​​tooth (604) that meshes with the limiting rack (202). The bottom of the abutment rod (602) is fixedly connected to a pressure block (605) that abuts against the dustproof heat dissipation mesh (3).

6. The intelligent storage server based on IoT big data according to claim 5, characterized in that, The hard disk push plate (404) is hinged with an elastic pressure plate (7) on the side near the docking back plate (203), and a groove (606) is provided on one side of the limiting pressure rod (601) for the elastic pressure plate (7) to enter.

7. The intelligent storage server based on IoT big data according to claim 3, characterized in that, The hard disk tray (2) has through holes (204) on both sides. A limiting member (8) is hinged in the through hole (204). A limiting hole (101) matching the limiting member (8) is opened in the housing (1). When the hard disk push plate (404) abuts against one end of the limiting member (8), the other end of the limiting member (8) moves out of the limiting hole (101).

8. The intelligent storage server based on IoT big data according to claim 1, characterized in that, The bottom of the inner wall of the hard disk tray (2) is provided with a dust collection groove (205), and a dustproof cover (206) is hinged inside the dust collection groove (205).

9. A smart storage server based on Internet of Things big data according to claim 8, characterized in that, A rod (207) is installed through the limiting rack (202). A wedge-shaped stop (208) is fixedly connected to the top of the rod (207). The bottom of the rod (207) is hinged to the dust cover (206), and a tension spring (209) is provided on the outer sleeve of the rod (207).

10. A smart storage server based on Internet of Things big data according to claim 9, characterized in that, Both the hard disk tray (2) and the housing (1) are provided with insertion holes (211) that match the insertion rod (207).

Citation Information

Patent Citations

  • Storage server provided with hard disk bracket

    CN213843979U