Storage equipment protection device for information security

By introducing an inflatable airbag structure into the data hard disk, the problem of insufficient hard disk protection is solved, and all-round buffer protection is achieved to prevent the hard disk from being damaged by collision.

CN223413862UActive Publication Date: 2025-10-03ZHUHAI ZHILIAN SIXUN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422871226.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-10-03
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

Existing data hard disk protection measures are insufficient. If the hard disk is accidentally dropped, the hard disk's hard external structure may easily cause the internal chip to become desoldered and cause damage.

Method used

A storage device protection device is designed, which includes a protective compartment, an airbag and a placement frame. Due to the expandable characteristics of the airbag, when the hard disk is placed in the placement frame, the airbag is inflated to expand and wrap the hard disk, providing all-round buffering protection.

Benefits of technology

It realizes buffer protection without dead angles when the hard disk is hit, preventing the hard disk from being damaged and improving the safety of the hard disk.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a storage equipment protection device for information safety, and relates to the technical field of storage equipment protection, the storage equipment protection device comprises a protection bin, an air bag and a placing frame, the protection bin, the air bag and the placing frame are sequentially arranged from outside to inside, and empty cavities are formed among the two ends of the placing frame, the protection bin and the inner wall of the air bag; the top cover is rotationally connected to the protection bin and is attached to the protection bin; the air inflation structure is arranged on the inner side of the top cover, one end of the air inflation structure is connected with the air pipe and then is in butt joint with the air inlet structure, the air inlet structure is connected with the air bag and arranged on the protection bin, and the air inflation structure sends air in the air inflation structure into the air bag in a one-way mode through the air pipe and the air inlet structure so that the air inflation structure can expand; according to the protection cabin, the air bags are inflated to expand, all-dimensional wrapping is achieved through the air bags, when information safety storage devices such as hard disks stored in the containing frames make contact with the outside and are collided in the protection cabin, dead-corner-free buffering can be achieved, and the comprehensive protection effect is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of storage device protection, in particular to a storage device protection device for information security. Background Art

[0002] Mobile data hard drives contain a large amount of private information and files. To protect users, they often incorporate software protection passwords or hardware fingerprint recognition modules to ensure data security. Existing hard drive modules are typically encased in a hard protective case, with the internal memory chip secured within. If the hard drive is accidentally dropped, the rigid exterior can easily cause the internal chip to become desoldered, damaging the drive and requiring repair. To better protect the hard drive, better protective devices are needed. Utility Model Content

[0003] The purpose of the utility model is to provide a storage device protection device for information security, which solves the problem of insufficient protection measures for existing data hard disks.

[0004] The utility model solves the above technical problems through the following technical solutions. The utility model includes a protective chamber, an airbag and a placement frame. The protective chamber, the airbag and the placement frame are arranged in sequence from the outside to the inside, and an empty cavity is formed between the two ends of the placement frame and the inner walls of the protective chamber and the airbag;

[0005] The top cover is rotated and connected to the protective compartment and fits tightly;

[0006] The inflatable structure, the trachea and the air intake structure, the inflatable structure is arranged on the inner side of the top cover and one end is connected to the trachea and then docked with the air intake structure, the air intake structure is connected to the airbag and arranged on the protective compartment, the inflatable structure sends the air inside it into the airbag through the trachea and the air intake structure in a unidirectional manner to cause expansion.

[0007] Preferably, the protective compartment includes a shell and a notch, wherein the notch is opened at the top of the shell and a distance is set between the outer periphery and the edge of the shell.

[0008] Preferably, the airbag includes an airbag body and a hanging piece, the airbag body is in a ring tube shape, and the hanging piece is arranged on the inner surface of the airbag body.

[0009] Preferably, the placement frame includes a frame body and hanging ears, the frame body is in a slot shape, and the hanging ears are fixed on the frame body and hung with the hanging pieces.

[0010] Preferably, the inflation structure includes a cylinder fixed inside the top cover, a piston is slidably arranged in the cylinder, a pull hole is opened at one end of the cylinder, a cross rod is connected to the piston and one end passes through the pull hole and is connected to the shift rod, one end of the shift rod passes through the top cover and is slidably arranged on the top cover.

[0011] Preferably, the piston is provided with a plurality of air inlet holes, one of which is provided with a connecting column, the two ends of the connecting column are respectively connected to a blocking piece 1 and a connecting piece, the blocking piece 1 is used to block the plurality of air inlet holes, and a spring 1 is provided between the connecting piece and the piston.

[0012] Preferably, the diameters of the blocking piece 1 and the connecting piece are both smaller than the inner diameter of the cylinder.

[0013] Preferably, the air pipe includes a butt joint pipe and a ring piece, one end of the butt joint pipe is communicated with the cylinder, and the ring piece is fixedly sleeved on the other end of the butt joint pipe.

[0014] Preferably, the air intake structure includes a connecting short tube connected and fixed to the airbag, a hollow block is fixed at one end of the connecting short tube, a socket is provided on the hollow block for docking with the docking tube, a flow hole is provided on the hollow block and connected to the fixed position of the connecting short tube, an insertion strip is inserted in the flow hole, a sealing piece 2 is fixed at one end of the insertion strip close to the airbag, the other end of the insertion strip passes through the connecting short tube and extends outward, a fixing plate is fixed on the connecting short tube, and a spring 2 is provided between the fixing plate and the inner wall of the connecting short tube.

[0015] Preferably, a limiting piece is slidably provided on the connecting short pipe, and the limiting piece is used to keep the ring piece and the connecting short pipe plugged in.

[0016] Compared with the prior art, the beneficial effects of the present invention are:

[0017] A placement frame is used as a structure for loading mobile hard disks. Due to the expandable characteristics of the airbag, when the hard disk is installed in the placement frame, the airbag can be inflated by inflating the airbag, and the vacant cavities at both ends of the airbag can be invaded by the expanded airbag, thereby achieving all-round wrapping in the placement frame. When the hard disk stored in the placement frame is exposed to external collisions in the protective compartment, the elastic characteristics of the airbag itself and the compressed air inside it can achieve a buffer without dead angles, thereby achieving a comprehensive protection effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a structural diagram of the utility model;

[0019] Figure 2 for Figure 1 Schematic diagram of structural explosion;

[0020] Figure 3 for Figure 1 Schematic diagram of the cross-sectional structure;

[0021] Figure 4 for Figure 3 A schematic diagram of the enlarged structure at point A;

[0022] Figure 5 for Figure 3 A schematic diagram of the enlarged structure at point B;

[0023] Figure 6 for Figure 1 A structural diagram from another perspective;

[0024] The numbers in the figure represent:

[0025] 1. Protective compartment; 11. Outer shell; 12. Notch; 2. Airbag; 21. Airbag body; 22. Hanging piece; 3. Placement frame; 31. Frame; 32. Hanging ear; 4. Top cover; 5. Inflatable structure; 51. Cylinder; 52. Piston; 53. Cross rod; 54. Air inlet; 55. Connecting column; 56. Sealing piece 1; 57. Connecting piece; 58. Spring 1; 59. Push rod; 6. Air pipe; 61. Butt joint; 62. Ring piece; 7. Air inlet structure; 71. Connecting short pipe; 72. Hollow block; 73. Socket; 74. Flow hole; 75. Insert; 76. Sealing piece 2; 77. Fixing piece; 78. Spring 2; 79. Limiting piece. DETAILED DESCRIPTION

[0026] The above and other technical features and advantages of the present invention are described in more detail below with reference to the accompanying drawings.

[0027] This embodiment provides a technical solution: a storage device protection device for information security, such as Figure 1-6 As shown, it includes a protective bin 1, an airbag 2 and a placement frame 3, and an empty cavity is formed between the two ends of the placement frame 3 and the inner walls of the protective bin 1 and the airbag 2; the protective bin 1 includes an outer shell 11 and a notch 12, the notch 12 is opened at the top of the outer shell 11 and the outer periphery is spaced apart from the edge of the outer shell 11. The airbag 2 includes an airbag body 21 and a hanging piece 22, the airbag body 21 is arranged in the outer shell 11 in an annular tube shape, and the hanging piece 22 is arranged on the inner surface of the airbag body 21. The placement frame 3 includes a frame body 31 and a hanging ear 32, the frame body 31 is arranged in the airbag body 21 in a slot shape, and the hanging ear 32 is fixed on the frame body 31 and hung with the hanging piece 22. The top of the protective bin 1 is rotatably connected to the top cover 4 and fits with the protective bin 1;

[0028] The opening of the notch 12 matches the cross-section of the placement frame 3, allowing the placement frame 3 to freely enter and exit the housing 11, thus facilitating assembly. Furthermore, the vacant cavity formed by the frame 31, the airbag 21, and the housing 11 at both ends of the frame 31 can be intruded upon by the airbag 21 when it expands, thereby compressing the size of the vacant cavity and preventing the frame 31 from moving relative to the airbag 21, thereby achieving a protective effect. The hollow design of the airbag 21 ensures that the airbag 21 has sufficient area to restrict the movement of the frame 31, thereby maintaining stability.

[0029] An inflatable structure 5 is provided inside the top cover 4. The inflatable structure 5 includes a cylinder 51 fixed inside the top cover 4. A piston 52 is slidably provided inside the cylinder 51. A pull hole is provided at one end of the cylinder 51. A cross rod 53 is connected to the piston 52, and one end of the cross rod passes through the pull hole and is connected to a lever 59. One end of the lever 59 passes through the top cover 4 and is slidably provided on the top cover 4. A movable long slot is provided on the top cover 4, and the lever 59 is disposed therein.

[0030] The air in the cylinder 51 is compressed by pushing to obtain air with a certain pressure, and air below the pressure can be filled with air.

[0031] Optionally, the piston 52 is provided with a plurality of air inlet holes 54, one of which is provided with a connecting post 55. A blocking piece 56 and a connecting piece 57 are connected to both ends of the connecting post 55. The blocking piece 56 is used to block the plurality of air inlet holes 54. A spring 58 is provided between the connecting piece 57 and the piston 52. The diameters of the blocking piece 56 and the connecting piece 57 are both smaller than the inner diameter of the cylinder 51.

[0032] Among them, through the blocking of the blocking piece 56 and the elastic effect of the spring 58, when the air pressure inside the cylinder 51 decreases, the external atmospheric pressure overcomes the elastic force of the spring 58 and enters the cylinder 51.

[0033] The end of the inflatable structure 5 is connected to the air pipe 6, which includes a butt joint pipe 61 and a ring piece 62. One end of the butt joint pipe 61 is connected to the cylinder 51, and the ring piece 62 is fixedly sleeved on the other end of the butt joint pipe 61.

[0034] The airbag 2 is connected to an air intake structure 7, which is docked with the trachea 6. The inflatable structure 5 sends the air inside it into the airbag 2 through the trachea 6 and the air intake structure 7 in a unidirectional manner to cause it to expand; the air intake structure 7 includes a connecting short tube 71 that is connected and fixed to the airbag 2, and a hollow block 72 is fixed at one end of the connecting short tube 71. The hollow block 72 is provided with a socket 73 for docking with the docking tube 61, and a flow hole 74 is provided on the hollow block 72 to be connected to the fixed position of the connecting short tube 71. An insertion strip 75 is inserted in the flow hole 74, and a sealing piece 76 is fixed to one end of the insertion strip 75 close to the airbag 2. The other end of the insertion strip 75 passes through the connecting short tube 71 and extends outward. A fixing piece 77 is fixed on the connecting short tube 71, and a spring 78 is provided between the fixing piece 77 and the inner wall of the connecting short tube 71.

[0035] Among them, since the air compressed by the cylinder 51 can be transported to the connecting short tube 71 through the trachea 6, the air overcomes the elastic force of the spring 2 78 under the action of the pressure of the compressed air and enters the airbag 2, and the blocking piece 2 76 prevents the air entering the airbag 2 from flowing out without external force intervention, thereby completing the accumulation of air and achieving the purpose of filling air to increase the internal pressure of the airbag 2.

[0036] Optionally, a restrictor 79 is slidably mounted on the connecting short tube 71 to maintain the connection between the ring 62 and the connecting short tube 71. The restrictor 79 has a sliding slot and a fixed block mounted on the connecting short tube 71. The fixed block slides with the restrictor 79, and the restrictor 79 has a notch that allows it to engage with the butt joint 61 and create an interference fit, effectively preventing separation. Thus, the restrictor 79 prevents separation between the air pipe 6 and the intake structure 7, achieving a stable connection without external force.

[0037] In this embodiment, in the safety protection of the information storage hard disk, the sliding limiter 79 is opened so that the limiter 79 releases the limiter from the docking restriction of the docking tube 61 and the connecting short tube 71, and then the top cover 4 is rotated to open, and the information storage hard disk is placed in the frame 31, and then the top cover 4 is closed, and the limiter 79 is pushed up; at this time, the lever 59 is slid back and forth, and the lever 59 drives the cross rod 53 to pull the piston 52 to slide in the cylinder 51, so that the air in the cylinder 51 is compressed through the air pipe 6 and enters the connecting short tube 71, and then overcomes the spring 78 The elastic force of spring 1 58 causes the compressed gas in connecting short tube 71 to enter airbag 21 through flow hole 74, increasing the internal pressure of airbag 21 and causing it to expand. After the lever 59 pushes in the compressed air, the air on one side of cylinder 51 enters the airbag 21 and is prevented from flowing back due to blocking piece 2 76. At this point, the air in cylinder 51 on the side of the lever 59 that is pulled is at a negative pressure. The external atmospheric pressure overcomes the elastic force of spring 1 58 and enters cylinder 51, completing the inflation process. This back-and-forth process repeatedly inflates the airbag 21, causing it to expand. Empty cavities are provided at both ends of frame 31 for the expansion of the airbag 21, allowing the vacant cavities to be filled, providing all-round protection for the information storage hard drive within frame 31. When it is necessary to open, slide the lever 59 open, and then press the connecting piece 57 to exhaust the air inside the airbag body 21. Then the air pipe 6 and the top cover 4 will be opened by rotating the protective compartment 1 under the pressure of the air pressure, making it easy to open and take out.

[0038] The above description is merely a preferred embodiment of the present invention and is intended to be illustrative rather than restrictive of the present invention. Those skilled in the art will appreciate that many changes, modifications, and even equivalents may be made to the present invention within the spirit and scope of the claims, and all of these changes will fall within the scope of protection of the present invention.

Claims

1. A storage device protection device for information security, characterized in that: include: A protective chamber (1), an airbag (2) and a placement frame (3), wherein the protective chamber (1), the airbag (2) and the placement frame (3) are arranged in sequence from the outside to the inside, and an empty cavity is formed between the two ends of the placement frame (3) and the inner walls of the protective chamber (1) and the airbag (2); The top cover (4) is rotatably connected to the protective chamber (1) and fits tightly; An inflatable structure (5), an air pipe (6) and an air intake structure (7), wherein the inflatable structure (5) is arranged on the inner side of the top cover (4) and one end of the inflatable structure (5) is connected to the air pipe (6) and then docked with the air intake structure (7), and the air intake structure (7) is connected to the airbag (2) and arranged on the protective chamber (1). The inflatable structure (5) sends the air inside the airbag (2) through the air pipe (6) and the air intake structure (7) in a unidirectional manner to cause the airbag to expand.

2. The information security storage device protection device according to claim 1, wherein: The protective bin (1) comprises an outer shell (11) and a notch (12); the notch (12) is provided at the top of the outer shell (11) and a distance is set between the outer periphery of the notch and the edge of the outer shell (11).

3. The information security storage device protection device according to claim 1, wherein: The airbag (2) comprises an airbag body (21) and a hanging piece (22); the airbag body (21) is in the shape of a ring tube; and the hanging piece (22) is arranged on the inner surface of the airbag body (21).

4. The information security storage device protection device according to claim 3, wherein: The placement frame (3) comprises a frame body (31) and a hanging ear (32). The frame body (31) is in the shape of a slot. The hanging ear (32) is fixed on the frame body (31) and is hung on the hanging piece (22).

5. The information security storage device protection device according to claim 1, wherein: The inflatable structure (5) comprises a cylinder (51) fixed inside the top cover (4), a piston (52) being slidably arranged in the cylinder (51), a pulling hole being opened at one end of the cylinder (51), a cross rod (53) being connected to the piston (52), one end of which passes through the pulling hole and is connected to a shifting rod (59), one end of which passes through the top cover (4) and is slidably arranged on the top cover (4).

6. The information security storage device protection device according to claim 5, characterized in that: The piston (52) is provided with a plurality of air inlet holes (54), one of which is provided with a connecting column (55), and both ends of the connecting column (55) are respectively connected to a blocking piece (56) and a connecting piece (57), the blocking piece (56) being used to block the plurality of air inlet holes (54), and a spring (58) being provided between the connecting piece (57) and the piston (52).

7. The information security storage device protection device according to claim 6, wherein: The diameters of the blocking piece 1 (56) and the connecting piece (57) are both smaller than the inner diameter of the cylinder (51).

8. The information security storage device protection device according to claim 5, wherein: The air pipe (6) comprises a butt-joint pipe (61) and a ring piece (62), one end of the butt-joint pipe (61) is in communication with the cylinder (51), and the ring piece (62) is fixedly sleeved on the other end of the butt-joint pipe (61).

9. The information security storage device protection device according to claim 8, wherein: The air intake structure (7) includes a connecting short tube (71) connected and fixed to the airbag (2), a hollow block (72) is fixed to one end of the connecting short tube (71), a socket (73) is provided on the hollow block (72) for docking with the docking tube (61), a flow hole (74) is provided on the hollow block (72) and is connected to the fixed position of the connecting short tube (71), a plug (75) is inserted into the flow hole (74), a sealing piece (76) is fixed to one end of the plug (75) close to the airbag (2), the other end of the plug (75) passes through the connecting short tube (71) and extends outward, a fixing piece (77) is fixedly sleeved on the connecting short tube (71), and a spring (78) is provided between the fixing piece (77) and the inner wall of the connecting short tube (71).

10. The information security storage device protection device according to claim 9, wherein: A limiting member (79) is slidably provided on the connecting short tube (71), and the limiting member (79) is used to keep the ring piece (62) plugged into the connecting short tube (71).