Storage device supporting physical connection and wireless connection of multiple household devices

By designing a storage device that supports the connection of multiple devices in the home, and using telescopic assembly and kinetic energy-driven dust removal technology, the shortcomings of traditional NAS equipment in space utilization and dust cleaning are solved, and efficient space optimization and dust removal effects are achieved.

CN119993219AInactive Publication Date: 2025-05-13WUHAN XIANYU ZHILIAN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510171927.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional NAS equipment is designed to ignore the special needs of home users for space utilization and internal dust cleaning, making it difficult for products to integrate into modern home environments.

Method used

A storage device that supports physical connection and wireless connection of home devices is designed, and a telescopic assembly structure of the main box and the auxiliary box is adopted. The hard disk can be arrayed and detachable and stored, and the dust removal function is achieved through the kinetic energy between the main box and the auxiliary box.

Benefits of technology

It realizes the effect of optimizing the footprint while meeting multiple hard disks, and solves the problem of dust cleaning through a kinetic energy-driven dust removal system, which is convenient to operate and does not require additional power equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of storage devices, and particularly relates to a storage device supporting household multi-device physical connection and wireless connection, the storage device comprises a main box body, an auxiliary box body and hard disks, the main box body and the auxiliary box body are assembled in a telescopic mode, and the hard disks are detachably stored in the auxiliary box body in an array mode. Storage assemblies used for storing hard disks are arranged in the auxiliary box body at intervals in an adjustable mode, a dust outlet is formed in the bottom of the end, away from the main box body, of the auxiliary box body in a penetrating mode, and a dust removal pipe used for blowing dust out of the dust outlet is fixedly installed at the bottom of the auxiliary box body. And an energy storage part for providing power for the dust removal pipe is arranged at the bottom of the main box body. According to the invention, a plurality of hard disks can be assembled, meanwhile, the advantage of optimizing the occupied space is also achieved, and the work of inflating the inside of the air tank can be realized by utilizing the kinetic energy of mutual movement between the main box body and the auxiliary box body, so that power is stored for dust removal work.
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Description

Technical Field

[0001] The present invention belongs to the technical field of storage devices, and in particular relates to a storage device that supports physical and wireless connections of multiple devices in a home. Background Art

[0002] NAS chassis is an important component of network attached storage devices. Home-grade NAS chassis: generally small in size, simple in design, easy to install and use, suitable for home users to perform data backup, multimedia file storage and sharing, etc. NAS chassis is a key component for building a network attached storage system, which provides a convenient and efficient data storage and management solution.

[0003] Problems with existing technologies: The design of traditional NAS devices often ignores the special needs of home users for space utilization and internal dust cleaning, making it difficult for the products to integrate into the modern home environment. First, the problem of space utilization. For newly purchased NAS chassis for home use, there is a situation where all the disk slots in the NAS chassis are not fully utilized in the early stage of purchase, resulting in some disk slots being empty for a long time. In view of the empty slots, they will occupy additional space, making it impossible for the NAS chassis to be selectively placed in the ideal placement space; second, the problem of internal dust deposition. All electronic products will have internal dust deposition during the long-term static process, but due to space and structural limitations, it is more difficult to clean. Summary of the invention

[0004] The purpose of the present invention is to provide a storage device that supports physical and wireless connections of multiple devices in the home. It can not only meet the needs of assembling multiple hard disks, but also has the advantage of optimizing the floor space. It can also utilize the kinetic energy of the mutual movement between the main box and the auxiliary box to inflate the inside of the gas tank, thereby storing power for dust removal.

[0005] The technical solution adopted by the present invention is as follows: A storage device supporting physical and wireless connection of multiple devices in a home comprises a main box, an auxiliary box and a hard disk, wherein the main box and the auxiliary box are assembled in a telescopic manner, and the hard disk is detachably stored in an array inside the auxiliary box, and a storage assembly for storing hard disks is provided in an adjustable manner inside the auxiliary box, a dust outlet is provided through the bottom of the auxiliary box at one end away from the main box, and a dust removal pipe for blowing dust out of the dust outlet is fixedly installed at the bottom of the auxiliary box, and an energy storage component for providing power to the dust removal pipe is provided at the bottom of the main box; The main box and the auxiliary box adopt a telescopic assembly structure design to selectively compress the unused disk bins; The kinetic energy of the mutual movement between the main box body and the auxiliary box body is utilized to store power for the dust removal work of the dust removal pipe.

[0006] A functional room is fixedly arranged in the middle of the main box body, and a power supply and a mainboard are fixedly installed inside the functional room. Anti-slip pads are fixedly arranged at the four corners of the bottom of the main box body, and a cooling fan is fixedly installed on the inner wall of one side of the auxiliary box body.

[0007] A push rod is fixedly provided in the middle of the bottom of the main box body, a through shell is fixedly provided in the middle of the bottom of the auxiliary box body, and the push rod is telescopically inserted into the interior of the through shell, track 1 is assembled on both sides of the interior of the through shell, guide rollers inside one end of the two track 1s extend to one end outside the through shell and a gear 1 is fixedly installed, gear 2 is rotatably installed on both sides of the outer wall of one end of the through shell, and gear 1 is meshed with adjacent gear 2, track 2 is assembled on both sides of the bottom of the auxiliary box body, gear 2 is connected to the guide roller corresponding to track 2 through a sleeved track 3 transmission, belt blocks are fixedly installed on one end of the two track 2s facing each other, and ball groove 1 and ball groove 2 are respectively provided on both sides of the belt block, and limit blocks for limiting the movement limit of the belt block are fixedly provided on the inner wall of the bottom of the auxiliary box body.

[0008] The storage assembly is composed of an end plate, a middle plate and a tail plate. The inner walls on both sides of the auxiliary box are fixedly provided with guide rails. The end plate is fixedly installed inside the auxiliary box on the side close to the main box, and the tail plate is fixedly installed on the inner wall of the auxiliary box away from the main box. The middle plate is arranged between the end plate and the tail plate in an array with adjustable spacing, and the middle plate and the guide rail form a sliding assembly relationship. The inner sides of the end plate, middle plate and tail plate are all telescopically slidably assembled with lock plates, and the ends of the lock plates are hinged with cover plates, and the side walls of the ends of the cover plates are embedded with magnets, and one side of the end plate, middle plate and tail plate are all embedded and hinged with baffles through coil springs, and the inner sides of the bottoms of the end plate, middle plate and tail plate are fixedly provided with sockets for connecting hard disks, the two sides of the bottom of the end plate are fixedly provided with end back bodies, the two sides of the bottom of the middle plate are fixedly provided with middle back bodies, and the two sides of the bottom of the tail plate are fixedly provided with tail back bodies, and the end back bodies, middle back bodies and tail back bodies located on the same side are all connected with SATA cables connected to the corresponding sockets.

[0009] The two sides of the bottom of the middle material plate closest to the tail material plate are fixedly connected with sealing hook plates, which are used to hook the tail back body. The other middle material plates and the two sides of the bottom of the end material plates are fixedly connected with hole hook plates, which are used to hook the middle back body. The inner walls of one end of all the hole hook plates are provided with release holes, and both ends of the bottom of all the middle material plates are provided with release cavities. The release cavities are located inside the corresponding middle back bodies and are slidably assembled with release rods. One end of the release rod is movably embedded in the corresponding release hole. The other side of the release cavity is slidably assembled with a ball club. A seesaw is rotatably installed inside the release cavity, and one end of the seesaw is connected to the inner wall of the release cavity with a spring.

[0010] Rows of balls are installed on both sides of the bottom of the auxiliary box body, and side rails are fixedly arranged on both sides of the top opening of the auxiliary box body. The auxiliary box body is assembled with a sealing cloth for covering the top opening by sliding around the side rails.

[0011] The main box body is internally provided with storage chambers at positions corresponding to the guide rail, the second crawler track and the cooling fan, and a partition is integrally provided on one side of the main box body close to the auxiliary box body.

[0012] The energy storage component includes a wall-attached wheel, an air injector and an air tank. The two wall-attached wheels are rotatably installed on the inner walls on both sides of the bottom of the partition, and the wall-attached wheels are used to roll when they are in contact with the outer wall of the shell. The two air injectors and the air tank are fixedly installed on the bottom side of the main box body. The top ends of the axles of the two wall-attached wheels are fixedly connected to a curved rod. The interior of one end of the air injector is telescopically assembled with a piston part, and the end of the piston part located outside the air injector is fixedly connected to a transverse groove rod. The end of the curved rod away from the center of rotation passes through the corresponding transverse groove rod, and the other end of the air injector is fixedly connected to an air injection pipe and an air supply pipe, respectively.

[0013] Air plugs are symmetrically slidably assembled at both ends of the gas tank, and two springs are connected between the opposite sides of the two air plugs and the inner wall of the gas tank. The ends of the two air plugs extending out of the gas tank are fixedly connected to divert rods, and the middle and ends of the divert rods are integrally provided with hook blocks. The two divert rods are arranged obliquely symmetrically up and down, and a connecting pipe end is fixedly provided on the outer wall of the middle part of the gas tank, and one end of the connecting pipe end is connected to the end of the gas injection pipe, and the other end of the connecting pipe end is fixedly connected to the gas outlet pipe, and a one-way valve is installed inside the connecting pipe end and at the positions of the gas injection pipe and the gas outlet pipe.

[0014] An air valve is fixedly installed at the end of the air outlet pipe, and a valve core is rotatably installed inside the air valve, one end of the valve core extending out of the air valve is fixedly connected to a valve core rod, and the valve core rod is used to rotate when it contacts the hook block, and an air connecting pipe is fixedly connected to the other interface of the air valve, and the end of the air connecting pipe is connected to the dust removal pipe, and the dust removal pipe is arrayed with jet pipes on one side facing the dust outlet.

[0015] The technical effects achieved by the present invention are: The present invention has a retractable structural design of the main box and the auxiliary box, which can not only meet the needs of assembling multiple hard disks, but also optimize the occupied space. The user can selectively compress the unused disk bins to reduce the occupied space of the storage device.

[0016] Each bin can be expanded from one end to the other in sequence, and can also be compressed from one end to the other. The expansion and compression process of the device only requires the movement of the auxiliary box, and no additional power equipment is required for control. The operation is convenient and responsive.

[0017] The present invention utilizes the kinetic energy of the mutual movement between the main box and the auxiliary box to achieve the work of inflating the inside of the gas tank, thereby storing power for dust removal work. It also does not require additional power equipment for control, fully utilizes the internal space of the main box, and does not generate additional power consumption.

[0018] When the air pressure inside the gas tank reaches a certain level, the air outlet pipe and the air connecting pipe are automatically connected, and the dust removal work is immediately started. When the gas inside the gas tank is exhausted, the air outlet pipe and the air connecting pipe can automatically resume the closure, and the inflation work is resumed. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a structural diagram of a storage device provided by an embodiment of the present invention; Figure 2 is a cross-sectional view of a storage device provided by an embodiment of the present invention; Figure 3 is a combined cross-sectional view of a main box body and an auxiliary box body provided by an embodiment of the present invention; Figure 4 is a cross-sectional structural diagram of an auxiliary box provided by an embodiment of the present invention; Figure 5 is a disassembled diagram of the internal structure of the auxiliary box provided by an embodiment of the present invention; Figure 6 yes Figure 5 The local enlarged structure diagram at A in the middle; Figure 7 It is a combined diagram of an end plate and a middle plate provided by an embodiment of the present invention; Figure 8 is a structural diagram of a middle material board provided by an embodiment of the present invention; Fig. 9 yes Figure 8 The local enlarged structure diagram at B in the middle; Fig.10 is a cross-sectional view of a main box provided by an embodiment of the present invention; Fig.11is a combined cross-sectional view of the bottom of the main box body and the auxiliary box body provided by an embodiment of the present invention; Fig.12 It is a combined diagram of an energy storage component and a dust removal pipe provided in an embodiment of the present invention; Fig.13 It is a cross-sectional view of a gas tank provided by an embodiment of the present invention.

[0020] In the accompanying drawings, the components represented by the reference numerals are listed as follows: 1. Main box; 101. Functional room; 102. Storage chamber; 103. Push rod; 104. Partition; 105. Anti-skid pad; 2. Auxiliary box; 201. Guide rail; 202. End plate; 203. Middle plate; 204. Tail plate; 205. Lock plate; 206. Cover plate; 207. End back body; 208. Middle back body; 209. Tail back body; 210. Hole hook plate; 211. Hook plate; 212. Baffle plate; 213. Sealing seat; 214. Limit block; 215. Shell; 216. Track 1; 217. Gear 1; 218. Gear 2; 219. Track 2; 220. Track 3; 221. Belt block; 222. Ball slot 1; 223. Ball slot 2; 224. Release hole; 225. Release chamber ; 226, seesaw; 227, release lever; 228, ball bar; 229, spring one; 230, ball row; 231, dust outlet; 232, side rail; 233, sealing cloth; 3, hard disk; 4, power supply; 5, motherboard; 6, cooling fan; 7, energy storage component; 701, wall wheel; 702, curved rod; 703, gas injector; 704, piston; 705, horizontal groove rod; 706, gas injection pipe; 707, gas supply pipe; 708, gas tank; 709, connecting pipe end; 710, gas plug; 711, spring two; 712, diversion rod; 713, hook block; 714, air outlet pipe; 715, air valve; 716, valve core; 717, valve core rod; 718, air connecting pipe; 8, dust removal pipe; 801, jet pipe. DETAILED DESCRIPTION

[0021] In order to make the purpose and advantages of the present invention more clearly understood, the present invention is specifically described below in conjunction with embodiments. It should be understood that the following text is only used to describe one or several specific embodiments of the present invention, and does not strictly limit the scope of protection of the specific claims of the present invention.

[0022] like Figure 1-Figure 13As shown, a storage device that supports physical and wireless connection of multiple devices in the home includes a main box 1, an auxiliary box 2 and a hard disk 3. The main box 1 and the auxiliary box 2 are assembled in a telescopic manner, and the hard disk 3 is detachably stored in an array inside the auxiliary box 2. The auxiliary box 2 is provided with a storage component for accommodating the hard disk 3 in an adjustable internal spacing. A dust outlet 231 is penetrated through the bottom of the auxiliary box 2 at one end away from the main box 1, and a dust removal pipe 8 for blowing dust out of the dust outlet 231 is fixedly installed at the bottom of the auxiliary box 2, and an energy storage component 7 for providing power to the dust removal pipe 8 is provided at the bottom of the main box 1.

[0023] Refer to the attached Figure 2-Figure 3 A function room 101 is fixedly arranged in the middle of the main box body 1, and a power supply 4 and a mainboard 5 are fixedly installed inside the function room 101. Anti-slip pads 105 are fixedly arranged at the four corners of the bottom of the main box body 1, and a cooling fan 6 is fixedly installed on the inner wall of one side of the auxiliary box body 2.

[0024] According to the above structure, the mainboard 5 is installed with a processor, memory, storage controller, power management chip, clock generator, network interface chip and wireless network card, wherein the network interface chip is used to realize the wired connection of the storage device, and the wireless network card is used to realize the wireless connection of the storage device. The above structures are all existing technologies and will not be elaborated here.

[0025] Embodiment 1: Refer to the attached Figure 3-Figure 6 A push rod 103 is fixedly arranged in the middle of the bottom of the main box body 1, and a through shell 215 is fixedly arranged in the middle of the bottom of the auxiliary box body 2, and the push rod 103 is telescopically inserted into the inside of the through shell 215, and crawler tracks 216 are assembled on both sides of the inside of the through shell 215, and the guide rollers inside one end of the two crawler tracks 216 extend to one end outside the through shell 215 and a gear 217 is fixedly installed, and gears 218 are rotatably installed on both sides of the outer wall of one end of the through shell 215, and the gear 1 217 is meshed with the adjacent gear 2 218 Track 2 219 is assembled on both sides of the bottom of the auxiliary box body 2, and gear 218 is connected to the guide roller of the corresponding track 219 through the sleeve track 3 220. Belt blocks 221 are fixedly installed on one end of the two tracks 219 facing each other, and ball grooves 1 222 and ball grooves 223 are respectively provided on both sides of the belt blocks 221. Limit blocks 214 for limiting the movement limit of the belt blocks 221 are fixedly provided on the inner wall of the bottom of the auxiliary box body 2, and row balls 230 are installed on both sides of the bottom of the auxiliary box body 2.

[0026] According to the above structure, the main case 1 and the auxiliary case 2 are assembled in a telescopic manner. When more hard disks 3 need to be placed in the auxiliary case 2, the auxiliary case 2 is pulled away from the main case 1 and moved. The arrangement of the ball row 230 is used to achieve smooth movement of the auxiliary case 2, and the main case 1 and the auxiliary case 2 are extended. The push rod 103 will extend from the inside of the through shell 215, and the two crawler tracks 216 fitted with the push rod 103 will start to operate immediately, and the gear 1 217 assembled with the guide roller of the crawler track 1 216 will rotate immediately, and then through the meshing of the gear 1 217 and the gear 2 218 and the transmission of the crawler track 3 220, the crawler track 2 219 is driven to operate at the same time. At this time, the two belt blocks 221 will move away from the main case 1 from the position close to the main case 1, and the distance of a single movement of the belt block 221 will be greater than the distance of a single movement of the auxiliary case 2.

[0027] See attached Figure 5-Figure 9 The storage assembly consists of an end plate 202, a middle plate 203 and a tail plate 204. The inner walls on both sides of the auxiliary box body 2 are fixedly provided with guide rails 201. The end plate 202 is fixedly installed inside the auxiliary box body 2 on the side close to the main box body 1, and the tail plate 204 is fixedly installed on the inner wall of the auxiliary box body 2 away from the main box body 1. The middle plate 203 is arranged between the end plate 202 and the tail plate 204 in an array with adjustable spacing, and the middle plates 203 form a sliding assembly relationship with the guide rails 201.

[0028] See attached Figure 5-Figure 9 The inner sides of the end material plate 202, the middle material plate 203 and the tail material plate 204 are all telescopically slidably assembled with a lock plate 205, and the ends of the lock plates 205 are hinged with cover plates 206, and the side walls of the ends of the cover plates 206 are embedded with magnets. One side of the end material plate 202, the middle material plate 203 and the tail material plate 204 is embedded and hinged with a baffle 212 through a coil spring. The inner sides of the bottoms of the end material plate 202, the middle material plate 203 and the tail material plate 204 are fixedly provided with a socket 213 for connecting the hard disk 3. The two sides of the bottom of the end material plate 202 are fixedly provided with an end back body 207, the two sides of the bottom of the middle material plate 203 are fixedly provided with a middle back body 208, and the two sides of the bottom of the tail material plate 204 are fixedly provided with a tail back body 209, and the end back body 207, the middle back body 208 and the tail back body 209 located on the same side are connected with SATA lines connected to the corresponding sockets 213.

[0029] See attached Figure 5-Figure 9, the two sides of the bottom of the middle material plate 203 closest to the tail material plate 204 are fixedly connected with sealing hook plates 211, and the sealing hook plates 211 are used to hook the tail back body 209, and the other middle material plates 203 and the two sides of the bottom of the end material plate 202 are fixedly connected with hole hook plates 210, and the hole hook plates 210 are used to hook the middle back body 208. The inner wall of one end of all hole hook plates 210 is provided with a release hole 224, and both ends of the bottom of all middle material plates 203 are provided with a release cavity 225. The release cavity 225 is located in the corresponding middle back body 208 and is slidably assembled with a release rod 227. One end of the release rod 227 is movably embedded in the corresponding release hole 224. The other side of the release cavity 225 is slidably assembled with a ball rod 228. The interior of the release cavity 225 is rotatably installed with a seesaw 226, and one end of the seesaw 226 is connected to the inner wall of the release cavity 225 with a spring 229.

[0030] According to the above structure, when the main box body 1 and the auxiliary box body 2 are combined with the minimum space occupied, the middle material plate 203 is fitted with the end material plate 202, each middle material plate 203 is fitted with each other, and the tail material plate 204 is fitted with the middle material plate 203. At this time, each release rod 227 cannot be extended due to the obstruction of the corresponding hole hook plate 210, and the release rod 227 limits the rotation of the seesaw 226, and the ball rod 228 cannot be retracted due to the restriction of the seesaw 226. The spherical end of the ball rod 228 will extend to the outside of the middle material plate 203. In the process of extending the main box body 1 and the auxiliary box body 2, the belt block 221 first moves from the end material plate 202 to the middle material plate 203 adjacent to it, and the ball rod 228 protruding from the edge of the middle material plate 203 will be placed in the ball groove 222. The ball rod 228 at the edge cannot be retracted, so that the belt block 221 will carry the middle material board 203 away from the end material board 202 and move. When the middle material board 203 moves to the extreme position, that is, the middle back body 208 at the bottom of the middle material board 203 moves to the end of the hole hook plate 210 at the bottom of the end material board 202, the limit release rod 227 at the bottom of the middle material board 203 is just placed in the limit release hole 224 of the hole hook plate 210 at the bottom of the end material board 202, and the limit release rod 227 extends under the elastic force of the spring 1 229 and the ball rod 228 just retracts. At this time, the belt block 221 will be separated from the middle material board 203. By analogy, the belt block 221 will carry the next middle material board 203 one by one to move. According to the number of hard disks 3 to be installed, the corresponding number of middle material boards 203 can be controlled to extend and move; As attached Figure 7 As shown, after extending the corresponding middle material board 203 or the tail material board 204, the locking plate 205 inside is pulled out, and the hard disk 3 is placed inside the corresponding material board, and finally the cover plate 206 is flipped over to cover the opening of the main box body 1. After the two adjacent material boards are unfolded, the distance between them is just the thickness of a standard hard disk 3. In addition, the baffle 212 is provided to fix the hard disk 3 of other sizes to connect with the socket 213. The above structure, the structural design of the telescopic assembly of the main box 1 and the auxiliary box 2, can meet the needs of assembling multiple hard disks 3 while also having the advantage of optimizing the occupied space. The user can selectively compress the unused disk bins to reduce the occupied space of the storage device. In addition, each disk bin can be unfolded from one end to the other end in turn, and can also be compressed from one end to the other end. The unfolding and compression processes of the device only require the movement of the auxiliary box 2, and do not require additional power equipment for control. The operation is convenient and responsive.

[0031] Refer to the attached Figure 1-Figure 3 Side rails 232 are fixedly provided on both sides of the top opening of the auxiliary box body 2, and the auxiliary box body 2 is slidably assembled with a sealing cloth 233 for covering the top opening through the side rails 232.

[0032] According to the above structure, when the main box body 1 and the auxiliary box body 2 are combined with the minimum space occupied, since the locking plate 205 and the cover plate 206 are both stored inside the corresponding plates, the opening of the main box body 1 is not completely covered. At this time, the opening of the main box body 1 can be covered by moving the sealing cloth 233 along the side rail 232.

[0033] The working principle of the present invention is as follows: when it is necessary to place more hard disks 3 in the auxiliary box 2, the auxiliary box 2 is pulled away from the main box 1 and moved, the main box 1 and the auxiliary box 2 are extended, the push rod 103 is extended from the inside of the shell 215, and the two crawler tracks 216 that are in contact with the push rod 103 are immediately put into operation, and the gear 1 217 assembled with the guide roller of the crawler track 1 216 is immediately rotated, and then through the meshing of the gear 1 217 and the gear 2 218 and the transmission of the crawler track 3 220, the crawler track 2 219 is driven to operate at the same time, and at this time, the two belt blocks 221 will move away from the position close to the main box 1, and the belt blocks 221 will first move from the end plate 202 to the middle plate 203 adjacent to it, and the ball rod 228 protruding from the edge of the middle plate 203 will just be placed in the ball groove 1 222 The ball rod 228 at the edge of the middle plate 203 cannot be retracted, causing the belt block 221 to carry the middle plate 203 away from the end plate 202 and move. When the middle plate 203 moves to the limit position, that is, the middle back body 208 at the bottom of the middle plate 203 moves to the end of the hole hook plate 210 at the bottom of the end plate 202, the limit release rod 227 at the bottom of the middle plate 203 is just placed in the limit release hole 224 of the hole hook plate 210 at the bottom of the end plate 202, and the limit release rod 227 extends under the elastic force of the spring 229 and the ball rod 228 just retracts, and the belt block 221 at this time will be separated from the middle plate 203, and so on, the belt block 221 will carry the next middle plate 203 one by one to move, and according to the number of hard disks 3 to be installed, the corresponding number of middle plates 203 can be controlled to extend and move; When it is necessary to compress the main box body 1 and the auxiliary box body 2, the auxiliary box body 2 is moved, and the belt block 221 will first pass through the middle plate 203 adjacent to the tail plate 204, and then the middle plate 203 will contact the tail plate 204 and move closer to the middle plate 203 on the other side under the push of the tail plate 204, and so on, the compression work of the main box body 1 and the auxiliary box body 2 will be completed.

[0034] Embodiment 2: Refer to the attached Figure 10-11 A storage cavity 102 is provided inside the main box body 1 at the positions corresponding to the guide rail 201, the second track 219 and the cooling fan 6, and a partition plate 104 is integrally provided on one side of the main box body 1 close to the auxiliary box body 2.

[0035] Refer to the attached Figure 11-13 The energy storage component 7 includes a wall-attached wheel 701, an air injector 703 and an air tank 708. The two wall-attached wheels 701 are rotatably installed on the inner walls on both sides of the bottom of the partition 104, and the wall-attached wheels 701 are used to roll when they are in contact with the outer wall of the shell 215. The two air injectors 703 and the air tank 708 are fixedly installed on the bottom side of the main box body 1. The top ends of the axles of the two wall-attached wheels 701 are fixedly connected with a curved rod 702. The interior of one end of the air injector 703 is telescopically assembled with a piston member 704, and the end of the piston member 704 located outside the air injector 703 is fixedly connected with a transverse groove rod 705. The end of the curved rod 702 away from the center of rotation passes through the corresponding transverse groove rod 705, and the other end of the air injector 703 is fixedly connected with an air injection pipe 706 and an air supply pipe 707.

[0036] Refer to the attached Figure 11-13 , gas plugs 710 are symmetrically slidably assembled at both ends of the gas tank 708, and springs 711 are connected between the opposite sides of the two gas plugs 710 and the inner wall of the gas tank 708, and the ends of the two gas plugs 710 extending out of the gas tank 708 are fixedly connected to diversion rods 712, and the middle and ends of the diversion rods 712 are integrally provided with hook blocks 713, and the two diversion rods 712 are symmetrically arranged in an upper and lower oblique manner, and a connecting pipe end 709 is fixedly provided on the outer wall of the middle part of the gas tank 708, and one end of the connecting pipe end 709 is connected to the end of the gas injection pipe 706, and the other end of the connecting pipe end 709 is fixedly connected to the gas outlet pipe 714, and one-way valves are installed inside the connecting pipe end 709 and at the positions of the gas injection pipe 706 and the gas outlet pipe 714.

[0037] Refer to the attached Figure 11-13An air valve 715 is fixedly installed at the end of the air outlet pipe 714, and a valve core 716 is rotatably installed inside the air valve 715. One end of the valve core 716 extending out of the air valve 715 is fixedly connected to a valve core rod 717, and the valve core rod 717 is used to rotate when it contacts the hook block 713. An air connecting pipe 718 is fixedly connected to the other interface of the air valve 715, and the end of the air connecting pipe 718 is connected to the dust removal pipe 8. The dust removal pipe 8 is arrayed on one side facing the dust outlet 231.

[0038] According to the above structure, when the main box body 1 and the auxiliary box body 2 are continuously extended or compressed, the through shell 215 will reciprocate through the partition 104. At this time, the wall-adhering wheel 701 will adhere to and roll with the outer wall of the through shell 215, and the axle of the wall-adhering wheel 701 will drive the crankshaft 702 to rotate together. Since the end of the crankshaft 702 away from the center of rotation passes through the transverse groove rod 705, the corresponding piston member 704 continuously retracts and contracts in the gas injector 703, thereby continuously forming positive and negative pressures in the gas injector 703. At this time, the outside air can be sucked into the gas injector 703 through the gas supply pipe 707, and then injected into the gas tank 708 through the gas injection pipe 706; When the air pressure in the gas tank 708 increases, the two gas plugs 710 continuously move away from each other and squeeze the corresponding spring 2 711, and the redirection rod 712 moves with the gas plug 710. When the two gas plugs 710 move to the limit position, the hook block 713 at the end of the two redirection rods 712 will simultaneously toggle the valve core rod 717 to rotate. At this time, the valve core 716 in the gas valve 715 will rotate, and the air outlet pipe 714 will be connected with the connecting pipe 718. The gas in the gas tank 708 will be quickly pushed to the dust removal pipe 8 under the elastic force of the spring 2 711, and finally sprayed out through each injection pipe 801, and the dust deposited at the bottom of the main box 1 will be blown out through the dust outlet 231. When the gas in the gas tank 708 is exhausted, as the redirection rod 712 is reset, the hook block 713 located in the middle of the redirection rod 712 will toggle the valve core rod 717 to reverse, thereby disconnecting the air outlet pipe 714 and the connecting pipe 718. The above process utilizes the kinetic energy of the mutual movement between the main box body 1 and the auxiliary box body 2 to realize the work of inflating the inside of the gas tank 708, thereby storing power for the dust removal work. It also does not require additional power equipment to control, fully utilizes the internal space of the main box body 1, and does not generate additional power consumption. In addition, when the internal air pressure of the gas tank 708 reaches a certain level, the air outlet pipe 714 and the air connecting pipe 718 are automatically connected, and the dust removal work is immediately started. When the gas inside the gas tank 708 is exhausted, the air outlet pipe 714 and the air connecting pipe 718 can automatically resume the closure, and the inflation work is resumed.

[0039] The working principle of the present invention is as follows: when the main box body 1 and the auxiliary box body 2 are continuously extended or compressed, the through shell 215 will reciprocate through the partition 104. At this time, the wall-adhering wheel 701 will adhere to and roll with the outer wall of the through shell 215, and the axle of the wall-adhering wheel 701 will drive the crankshaft 702 to rotate together. Since the end of the crankshaft 702 away from the center of rotation passes through the transverse groove rod 705, the corresponding piston member 704 will continuously extend and retract in the gas injector 703, thereby continuously forming positive and negative pressures in the gas injector 703. At this time, the outside air can be sucked into the gas injector 703 through the gas supply pipe 707, and then injected into the gas tank 708 through the gas injection pipe 706; As the air pressure inside the gas tank 708 increases, the two gas plugs 710 continue to move away from each other and squeeze the corresponding spring 2 711, and the redirection rod 712 moves with the gas plug 710. When the two gas plugs 710 move to the extreme position, the hook block 713 located at the end of the two redirection rods 712 will simultaneously drive the valve core rod 717 to rotate. At this time, the valve core 716 in the gas valve 715 will rotate, and the air outlet pipe 714 will be connected to the air connecting pipe 718. The gas inside the gas tank 708 will be quickly pushed to the dust removal pipe 8 under the elastic force of the spring 2 711, and finally sprayed out through the injection pipes 801, and the dust deposited at the bottom of the main box body 1 will be blown out through the dust outlet 231, thereby achieving the dust removal effect.

[0040] The above is only a preferred embodiment of the present invention. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principles of the present invention, and these improvements and modifications should also be considered as the protection scope of the present invention. The structures, devices and operating methods not specifically described and explained in the present invention shall be implemented according to the conventional means in the art unless otherwise specified and limited.

Claims

1. A storage device that supports physical and wireless connections of multiple devices in a home, characterized in that: The invention comprises a main box (1), an auxiliary box (2) and a hard disk (3), wherein the main box (1) and the auxiliary box (2) are assembled in a telescopic manner, and the hard disk (3) is detachably stored in an array inside the auxiliary box (2), and a storage component for storing the hard disk (3) is provided in an adjustable manner inside the auxiliary box (2), a dust outlet (231) is provided through the bottom of the auxiliary box (2) at one end away from the main box (1), and a dust removal pipe (8) for blowing dust out of the dust outlet (231) is fixedly installed at the bottom of the auxiliary box (2), and an energy storage component (7) for providing power to the dust removal pipe (8) is provided at the bottom of the main box (1); A telescopic assembly structure design is adopted between the main box (1) and the auxiliary box (2) to selectively compress the unused disk bin; The kinetic energy of the mutual movement between the main box body (1) and the auxiliary box body (2) is utilized to store power for the dust removal work of the dust removal pipe (8).

2. A storage device supporting physical and wireless connection of multiple devices in a home according to claim 1, characterized in that: A function chamber (101) is fixedly arranged in an integrated manner in the middle of the main box (1), and a power supply (4) and a mainboard (5) are fixedly installed inside the function chamber (101); anti-slip pads (105) are fixedly arranged at the four corners of the bottom of the main box (1); and a cooling fan (6) is fixedly installed on the inner wall of one side of the auxiliary box (2).

3. A storage device supporting physical and wireless connection of multiple devices in a home according to claim 2, characterized in that: A push rod (103) is fixedly arranged in the middle of the bottom of the main box (1), a through shell (215) is fixedly arranged in the middle of the bottom of the auxiliary box (2), and the push rod (103) is telescopically inserted into the inside of the through shell (215), and crawler tracks (216) are assembled on both sides of the inside of the through shell (215), and the guide rollers inside one end of the crawler tracks (216) extend to one end outside the through shell (215) and are fixedly installed with gears (217), and gears (218) are rotatably installed on both sides of the outer wall of one end of the through shell (215), and the gears (217) and the corresponding gears (218) are rotatably installed. The adjacent gears (218) are meshed with each other, and crawler tracks (219) are assembled on both sides of the bottom of the auxiliary box (2). The gears (218) are connected to the guide rollers of the corresponding crawler tracks (219) through the sleeved crawler tracks (220). The ends of the two crawler tracks (219) facing each other are fixedly mounted with belt blocks (221), and the two sides of the belt blocks (221) are respectively provided with ball grooves (222) and ball grooves (223). The inner wall of the bottom of the auxiliary box (2) is fixedly provided with limit blocks (214) for limiting the movement limit of the belt blocks (221).

4. A storage device supporting physical and wireless connection of multiple devices in a home according to claim 3, characterized in that: The storage assembly is composed of an end plate (202), a middle plate (203) and a tail plate (204); the inner walls on both sides of the auxiliary box (2) are fixedly provided with guide rails (201); the end plate (202) is fixedly installed inside the auxiliary box (2) on the side close to the main box (1); the tail plate (204) is fixedly installed on the inner wall of the auxiliary box (2) on the side away from the main box (1); the middle plates (203) are arranged between the end plates (202) and the tail plates (204) in an array with adjustable spacing, and the middle plates (203) are all in a sliding assembly relationship with the guide rails (201); The inner sides of the end plate (202), the middle plate (203) and the tail plate (204) are all telescopically slidably assembled with a lock plate (205), and the ends of the lock plates (205) are hinged with a cover plate (206), and a magnet is embedded in the side wall of the end of the cover plate (206). The end plate (202), the middle plate (203) and the tail plate (204) are all hinged with a baffle plate (212) through a coil spring. ) are fixedly provided with a socket (213) for connecting a hard disk (3) on the inner side of the bottom, the end plate (202) is fixedly provided with an end back body (207) on both sides of the bottom, the middle plate (203) is fixedly provided with a middle back body (208) on both sides of the bottom, and the tail plate (204) is fixedly provided with a tail back body (209) on both sides of the bottom, and the end back body (207), the middle back body (208) and the tail back body (209) located on the same side are all connected with a SATA cable connected to the corresponding socket (213).

5. A storage device supporting physical and wireless connection of multiple devices in a home according to claim 4, characterized in that: The bottom of the middle material plate (203) closest to the tail material plate (204) is fixedly connected with a sealing hook plate (211) on both sides, and the sealing hook plate (211) is used to hook the tail back body (209). The bottoms of the other middle material plates (203) and the end material plates (202) are fixedly connected with a hole hook plate (210) on both sides, and the hole hook plate (210) is used to hook the middle back body (208). The inner wall of one end of all the hole hook plates (210) is provided with a release hole (224). The bottoms of all the middle material plates (203) are fixedly connected with a sealing hook plate (211) on both sides. A release cavity (225) is provided, and a release rod (227) is slidably assembled inside the release cavity (225) and located in the corresponding middle back body (208). One end of the release rod (227) is movably embedded in the corresponding release hole (224), and a ball rod (228) is slidably assembled on the other side of the release cavity (225). A seesaw (226) is rotatably installed inside the release cavity (225), and one end of the seesaw (226) is connected to the inner wall of the release cavity (225) by a spring 1 (229).

6. A storage device supporting physical and wireless connection of multiple devices in a home according to claim 5, characterized in that: Rows of balls (230) are installed on both sides of the bottom of the auxiliary box (2), side rails (232) are fixedly arranged on both sides of the top opening of the auxiliary box (2), and the auxiliary box (2) is slidably assembled with a sealing cloth (233) for covering the top opening via the side rails (232).

7. A storage device supporting physical and wireless connection of multiple devices in a home according to claim 6, characterized in that: A storage cavity (102) is provided inside the main box (1) and at positions corresponding to the guide rail (201), the second track (219) and the cooling fan (6), and a partition plate (104) is integrally provided on one side of the main box (1) close to the auxiliary box (2).

8. The storage device supporting physical and wireless connection of multiple devices in a home according to claim 7, characterized in that: The energy storage member (7) comprises a wall-attaching wheel (701), an air injector (703) and an air tank (708); the two wall-attaching wheels (701) are rotatably mounted on the inner walls of both sides of the bottom of the partition (104); and the wall-attaching wheels (701) are used to roll when in contact with the outer wall of the penetration shell (215); the two air injectors (703) and the air tank (708) are fixedly mounted on the bottom side of the main box (1); the top ends of the wheel shafts of the two wall-attaching wheels (701) are They are fixedly connected with a curved rod (702), one end of the gas injector (703) is telescopically assembled with a piston member (704), and the end of the piston member (704) located outside the gas injector (703) is fixedly connected with a transverse groove rod (705), the end of the curved rod (702) away from the center of rotation passes through the corresponding transverse groove rod (705), and the other end of the gas injector (703) is respectively fixedly connected with a gas injection pipe (706) and a gas replenishment pipe (707).

9. A storage device supporting physical and wireless connection of multiple devices in a home according to claim 8, characterized in that: The two ends of the gas tank (708) are symmetrically slidably assembled with gas plugs (710), and a spring 2 (711) is connected between the opposite sides of the two gas plugs (710) and the inner wall of the gas tank (708). The ends of the two gas plugs (710) extending out of the gas tank (708) are fixedly connected to a redirecting rod (712), and the middle and ends of the redirecting rod (712) are integrally provided with a hook block (713). The two redirecting rods (712) are arranged in an obliquely symmetrical manner up and down. A connecting pipe end (709) is fixedly provided on the outer wall of the middle part of the gas tank (708), and one end of the connecting pipe end (709) is connected to the end of the gas injection pipe (706), and the other end of the connecting pipe end (709) is fixedly connected to an outlet pipe (714). One-way valves are installed inside the connecting pipe end (709) and at the positions of the gas injection pipe (706) and the outlet pipe (714).

10. A storage device supporting physical and wireless connections of multiple home devices according to claim 9, characterized in that: An air valve (715) is fixedly mounted at the end of the air outlet pipe (714), and a valve core (716) is rotatably mounted inside the air valve (715); one end of the valve core (716) extending outside the air valve (715) is fixedly connected to a valve core rod (717), and the valve core rod (717) is used to rotate when in contact with the hook block (713); an air connection pipe (718) is fixedly connected to the other interface of the air valve (715), and the end of the air connection pipe (718) is connected to and communicates with a dust removal pipe (8); and an array of air jet pipes (801) are arranged on one side of the dust removal pipe (8) facing the dust outlet (231).