A computer shield

CN224773398UActive Publication Date: 2026-09-18SHANGHAI YINGZHONG INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202522212958.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2026-09-18
Estimated Expiration
2035-10-20

AI Technical Summary

Technical Problem

[0006]本实用新型的目的在于提供一种计算机防护装置,以解决上述背景技术提出现有的防护装置固定方式单一,仅能适配特定规格的机箱和缓冲效果不佳的问题

Benefits of technology

1、该防护装置能为计算机机箱提供全场景、多层次的防护与固定解决方案,有效解决机箱在放置、日常使用及运输移动过程中易晃动、受碰撞损伤,且对不同规格机箱适配性不足、防护结构拆装不便等问题。

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Abstract

The utility model relates to computer protection technical field, and disclose a computer protection device, including the placement seat, is set up in the placement seat and places the groove, the placement seat is connected with the protection box, the protection box installs the clamping assembly, the clamping assembly includes the multiple recesses set up on the placement seat, multiple recesses all are fixed with screw, the protection box outer wall is connected with multiple cards, the card is set up and has the through -hole, the screw is connected with the card through the through -hole, the computer case is placed in the placement groove, the placement groove is equipped with fixed component, the protection box installs the buffer assembly. The utility model can provide the full -scene, multilevel protection and fixed solution for computer case, effectively solve the case in the placement, daily use and transportation movement process and easily shake, be damaged by collision, and the different specifications case adaptability is insufficient, and the protection structure is inconvenient to dismount and so on problem.
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Description

Technical Field

[0001] This utility model relates to the field of computer protection technology, specifically a computer protection device. Background Technology

[0002] A computer is a modern intelligent electronic device capable of receiving and storing information, automatically and rapidly processing massive amounts of data according to programs stored within it, and then outputting the processing results. A computer consists of a hardware system and a software system. The hardware system includes five major components: arithmetic logic unit (ALU), control unit, memory, input devices, and output devices. The software system includes the operating system and application software, which are used to manage the computer's hardware resources and provide a user interface.

[0003] The computer's hardware needs to be installed inside the host. The host does not have corresponding protective devices, resulting in limited protection and making it difficult to transport and carry. The host can still shake inside the packaging box. When the host is hit or bumped, the internal hardware system is easily damaged, affecting the normal use of the computer and causing many inconveniences for subsequent computer assembly and use. Therefore, protective devices are needed to protect the computer during transportation and carrying.

[0004] Currently, most computer chassis protection methods on the market involve simply placing the chassis inside a protective case and securing it using a single method. This single-fixation structure can only fit chassis of a specific size, resulting in poor adaptability to chassis of different sizes and shapes. It is difficult to achieve stable fixation, and the protection performance is relatively limited. It usually only relies on the outer shell of the protective case to block dust or resist minor impacts, lacking the ability to effectively absorb various vibrations and impacts during daily use. Especially in transportation scenarios, when subjected to severe impacts from multiple directions, it cannot form a comprehensive buffer protection system, which can easily lead to scratches and damage to the chassis shell, or even cause failure of internal precision components.

[0005] Therefore, we propose a computer protection device to address the problems mentioned above. Utility Model Content

[0006] The purpose of this utility model is to provide a computer protection device to solve the problems mentioned in the background art, such as the single fixing method of existing protection devices, which can only be adapted to specific specifications of chassis and the poor buffering effect.

[0007] This utility model provides the following technical solution: a computer protection device, including a placement base, a placement slot on the placement base, a protective box snapped onto the placement base, a snap-fit ​​assembly installed on the protective box, the snap-fit ​​assembly including multiple grooves on the placement base, screws fixed in each of the multiple grooves, multiple cards fixed to the outer wall of the protective box, a computer chassis placed in the placement slot, a fixing assembly provided in the placement slot, and a buffer assembly installed inside the protective box.

[0008] Preferably, the card has a through hole, the screw is inserted into the card through the through hole, and a nut is threaded onto the screw, with the bottom surface of the nut fitting against the top surface of the card.

[0009] Preferably, the fixing component includes a telescopic rod fixedly connected to the inner wall of the placement groove, a spring is sleeved on the outer ring of the telescopic rod, one end of the spring is fixedly connected to the inner wall of the placement groove, and a pressure plate is fixed to the other end of the spring, with an inclined surface provided on the pressure plate.

[0010] Preferably, there are two telescopic rods and springs symmetrically arranged about the pressure plate, and two sets of telescopic rods, springs, and pressure plates symmetrically arranged about the placement seat, with the pressure plate fitting against the computer chassis.

[0011] Preferably, the fixing assembly includes multiple L-shaped clamps fixedly connected to the four corners of the inner wall of the placement groove. The inner wall of the multiple L-shaped clamps is provided with a magnet one, a magnet two is attracted to the end side of the magnet one, a filling clamp is fixed to the end side of the magnet two, a magnet three is installed on the inner wall of the filling clamp, a magnet four is attracted to the end side of the magnet three, and a buffer clamp is fixed to the end side of the magnet four.

[0012] Preferably, the buffer assembly includes a support block one fixedly connected to the inner wall of the protective box, an airbag cushion one fixed to one end of the support block one, the support block one and the airbag cushion one being symmetrically arranged about the protective box, a support block two fixed to the inner wall of the protective box, an airbag cushion two fixed to the support block two, the support block two and the airbag cushion two being symmetrically arranged about the protective box.

[0013] Preferably, the first airbag and the second airbag are hollow, and the first airbag and the second airbag are connected by a ventilation tube and a ventilation tube, which are arranged in parallel.

[0014] Preferably, an air inlet pipe is connected to one end of the vent pipe, the air inlet pipe is fixedly connected to the protective box, the air inlet pipe is hollow inside, and a sealing plug is snapped into the end of the air inlet pipe.

[0015] This utility model has the following beneficial effects: 1. This protective device can provide a full-scenario, multi-layered protection and fixation solution for computer chassis, effectively solving problems such as chassis being easily shaken and damaged by collisions during placement, daily use and transportation, as well as insufficient compatibility with different chassis sizes and inconvenient disassembly and assembly of protective structures.

[0016] 2. In terms of fixing and adaptability, this protective device combines two methods: elastic self-adaptive fixing and modular magnetic fixing. It can flexibly adapt to computer cases of different sizes and shapes. Through the elastic fixing structure of telescopic rod and spring, it can automatically adjust the clamping force according to the width of the case, which can not only prevent the case from shaking but also prevent clamping damage. With the magnetic combination of L-shaped clamps, filling clamps and buffer clamps, gaps can be precisely filled by adding or removing clamps to adapt to special-shaped cases. At the same time, the silicone buffer clamps can increase friction and further improve the fixing stability.

[0017] 3. The placement device is assembled with a protective box and a placement base to form a closed structure, which can prevent dust and debris from entering and resist minor impacts. The springs and silicone buffer plates can absorb vibration and impact forces during daily use, while the horizontally and vertically distributed airbags inside the protective box form a three-dimensional buffer network. Through the air circulation, the impact force in multiple directions is dispersed. Combined with the elastic deformation of the airbags themselves, the ability to resist severe impacts during transportation is greatly enhanced, and the outer shell and internal components are fully protected.

[0018] 4. The protective device is easy to assemble, disassemble, and adjust. The protective box can be quickly snapped together with screws, nuts, and clips, and can be disassembled and assembled without complicated tools, which is convenient for the maintenance of the chassis. The magnetic clamp combination does not require additional fasteners and can be assembled and adjusted by magnetic attraction alone, which reduces the difficulty of operation. The airbag cushion can be flexibly adjusted in terms of inflation volume through the air inlet pipe to adapt to different protection needs, which improves the overall ease of use and practicality of the device. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention. Figure 1 .

[0020] Figure 2 This is a schematic diagram of the placement base, computer chassis, and protective case of this utility model.

[0021] Figure 3 This is a schematic diagram of the fixing component structure of this utility model. Figure 1 .

[0022] Figure 4 This is a schematic diagram of the fixing component structure of this utility model. Figure 2 .

[0023] Figure 5 This is a schematic diagram of the installation structure of the buffer assembly and protective box of this utility model.

[0024] Figure 6 This is a schematic diagram of the buffer component structure of this utility model.

[0025] In the diagram: 1. Placement base; 2. Placement slot; 3. Protective box; 4. Snap-fit ​​assembly; 41. Groove; 42. Screw; 43. Nut; 44. Card; 45. Through hole; 5. Computer chassis; 6. Fixing assembly; 61. Telescopic rod; 62. Spring; 63. Pressure plate; 64. Inclined surface; 601. L-shaped clamp; 602. Magnet one; 603. Magnet two; 604. Filler clamp; 605. Magnet three; 606. Magnet four; 607. Buffer clamp; 7. Buffer assembly; 71. Support block one; 72. Airbag cushion one; 73. Support block two; 74. Airbag cushion two; 75. Ventilation pipe one; 76. Ventilation pipe two; 77. Inlet pipe; 78. Sealing plug. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Example 1: This embodiment aims to address the problems of computer chassis 5 being prone to shaking and damage from external impacts due to lack of stable fixing during placement, transportation, and daily use, as well as the inconvenience of disassembling and assembling the protective structure. Please refer to [link to relevant documentation]. Figure 1 - Figure 3 A computer protection device includes a base 1 with a placement slot 2 to provide dedicated support space for a computer chassis 5, ensuring stable placement of the chassis. A protective box 3 is snapped onto the base 1, and a snap-fit ​​assembly 4 is installed on the protective box 3. The protective box 3 is assembled with the base 1 through the snap-fit ​​assembly 4 to form a closed protective shell. The snap-fit ​​assembly 4 includes multiple grooves 41 on the base 1, each groove 41 having a screw 42 fixed inside. Multiple cards 44 are fixed to the outer wall of the protective box 3, each card 44 having a through hole 45. The screws 42 are inserted into the cards 44 through the through holes 45. Nuts 43 are threaded onto the screws 42, and the bottom surface of the nuts 43 is in contact with the top surface of the cards 44.

[0028] A computer case 5 is placed in the placement slot 2. A fixing component 6 is provided in the placement slot 2. The fixing component 6 includes a telescopic rod 61 fixedly connected to the inner wall of the placement slot 2. A spring 62 is sleeved on the outer ring of the telescopic rod 61. One end of the spring 62 is fixedly connected to the inner wall of the placement slot 2. A pressure plate 63 is fixed to the other end of the spring 62. An inclined surface 64 is provided on the pressure plate 63.

[0029] There are two telescopic rods 61 and springs 62 symmetrically arranged about the pressure plate 63. There are two sets of telescopic rods 61, springs 62 and pressure plates 63 symmetrically arranged about the placement seat 1. The pressure plate 63 is attached to the computer case 5.

[0030] In this embodiment: First, the computer chassis 5 is placed in the placement slot 2. During placement, because the pressure plate 63 has an inclined surface 64, the chassis will press against the pressure plate 63 along the inclined surface 64 when it is placed. After the pressure plate 63 is subjected to force, it pushes the telescopic rod 61 to retract, and at the same time compresses the outer spring 62. After the spring 62 is compressed, it generates a reverse elastic force, pushing the pressure plate 63 to return to its original position towards the chassis until the two sets of symmetrically arranged pressure plates 63 are tightly attached to the two side walls of the chassis. During this process, the symmetrically distributed... The telescopic rod 61 provides stable guiding support for the pressure plate 63, preventing the pressure plate 63 from shifting. The elasticity of the spring 62 allows the pressure plate 63 to adaptively adjust the clamping force according to the width of the chassis. For chassis of different sizes, the spring 62 will maintain a suitable clamping force through different degrees of extension and retraction, ensuring that the chassis will not sway left and right in the placement slot 2, and avoiding damage to the chassis shell due to excessive clamping. At the same time, when subjected to external vibration or slight impact, the spring 62 can also absorb part of the impact force through deformation, further protecting the internal components of the chassis.

[0031] When the protective box 3 needs to be assembled after placement, place the protective box 3 on the placement base 1. At the same time, insert the card 44 on the outer wall of the protective box 3 into the groove 41 of the placement base 1, so that the screw 42 in the groove 41 of the placement base 1 passes through the through hole 45 on the card 44. Then screw the nut 43 onto the screw 42 and make it fit against the top surface of the card 44. With the help of the thread tightening force of the screw 42 and the nut 43, a stable connection between the protective box 3 and the placement base 1 is achieved. This can not only prevent external dust and debris from entering the chassis, but also resist minor external impacts. In addition, when disassembling later, you only need to unscrew the nut 43 to separate the protective box 3 from the placement base 1, which is convenient for the inspection and maintenance of the chassis.

[0032] Example 2: This embodiment aims to address the problem of insufficient compatibility with computer chassis 5 of different sizes and shapes. This embodiment is an improvement upon Embodiment 1. For details, please refer to [link to Embodiment 1]. Figure 1 - Figure 4 The fixing component 6 includes multiple L-shaped clamps 601 fixedly connected to the four corners of the inner wall of the placement groove 2. The inner wall of the multiple L-shaped clamps 601 is provided with a magnet 602. A magnet 603 is attracted to the end of the magnet 602. A filling clamp 604 is fixed to the end of the magnet 603. A magnet 605 is installed on the inner wall of the filling clamp 604. A magnet 606 is attracted to the end of the magnet 605. A buffer clamp 607 is fixed to the end of the magnet 606.

[0033] In this embodiment, the L-shaped clamps 601 at the four corners of the inner wall of the placement slot 2 together form a stable fixed base frame. The L-shaped structure can accurately fit the corner contour of the computer chassis 5 and form a reliable initial limit on the chassis from the four diagonal directions, effectively preventing the chassis from tilting or shifting in a large range within the placement slot 2, laying a solid foundation for subsequent flexible adjustment of the fixing structure according to the chassis specifications.

[0034] In practice, first, place the computer chassis 5 stably into the placement slot 2. Then, using the magnetic adsorption properties, add, remove, or combine clamps to adapt and fix chassis of different sizes. If the chassis size is small, a gap will be created between the L-shaped clamp 601 and the corner of the chassis. In this case, the filling clamp 604 with magnet 603 should be taken out and aligned with magnet 602 on the inner wall of the L-shaped clamp 601. Using the adsorption force between the two, the filling clamp 604 is fixed to the L-shaped clamp 601. The installation state of the filling clamp 604 is gradually adjusted according to the size of the gap until it is filled to the appropriate position, completely filling the gap between the L-shaped clamp 601 and the corner of the chassis.

[0035] After adapting the filling clamp 604, finally align the buffer clamp 607 with magnet 606 (magnet four 606) with magnet 605 on the inner wall of the filling clamp 604. Installation is completed through the attraction between magnet 605 and magnet 606, ensuring the buffer clamp 607 fits tightly against the corner of the chassis. It is worth noting that the buffer clamp 607 is made of silicone, a material with excellent cushioning and impact resistance. On one hand, its elastic deformation prevents damage to the chassis; on the other hand, when the device is subjected to vibration or minor impact, it further absorbs and disperses some of the impact force. Combined with the buffer gap naturally formed during the magnetic connection, this doubly reduces the impact of vibration on the chassis.

[0036] This modular magnetic combination method allows for flexible adjustment of the number and combination of clamps according to the actual size and shape of the chassis, enabling precise fixation of chassis of different specifications. At the same time, the silicone buffer clamp 607 increases the friction of the contact surface when it comes into contact with the chassis, effectively preventing the chassis from sliding. While ensuring the stability of the fixation, it greatly improves the protective effect of the device.

[0037] Example 3: This embodiment aims to address the problem of insufficient cushioning capacity of the computer chassis 5 against external impacts during transportation. This embodiment is an improvement upon Embodiment 1. For details, please refer to [link to Embodiment 1]. Figure 5 - Figure 6The protective box 3 is equipped with a buffer assembly 7. The buffer assembly 7 includes a support block 71 fixedly connected to the inner wall of the protective box 3. An airbag pad 72 is fixed to one end of the support block 71. The support block 71 and the airbag pad 72 are symmetrically arranged about the protective box 3. A support block 73 is fixed to the inner wall of the protective box 3. An airbag pad 74 is fixed to the support block 73. The support block 73 and the airbag pad 74 are symmetrically arranged about the protective box 3. The support block 71, which is symmetrically arranged on the inner wall of the protective box 3, fixes the airbag pad 72, and the support block 73 fixes the airbag pad 74. The airbag pad 72 is distributed along the horizontal direction of the protective box 3, and the airbag pad 74 is distributed along the vertical direction of the protective box 3. The two work together to form a wrap-around three-dimensional buffer network, providing surround protection for the computer case 5 in the placement slot 2 from multiple directions, including horizontal and vertical.

[0038] Airbag cushion 1 72 and airbag cushion 2 74 are hollow. Airbag cushion 1 72 and airbag cushion 2 74 are connected by air pipe 1 75 and air pipe 2 76. Air pipe 1 75 and air pipe 2 76 are arranged in parallel. An air inlet pipe 77 is connected to the end of air pipe 1 75. Air inlet pipe 77 is fixedly connected to protective box 3. Air inlet pipe 77 is hollow. A sealing plug 78 is snapped into the end of air inlet pipe 77.

[0039] In this embodiment: Before use, remove the sealing plug 78 at the end of the air inlet pipe 77, and inflate the airbag pad 72 and the second airbag pad 74 through the air inlet pipe 77 (the inflation amount can be adjusted according to factors such as the weight of the chassis and the impact intensity during transportation to control the hardness and cushioning capacity of the airbag pads). During inflation, the gas flows into the first airbag pad 72 and the second airbag pad 74 respectively through the vent pipe 75 connected to the air inlet pipe 77. The second vent pipe 76 is set parallel to the vent pipe 75 to further ensure that the gas can be quickly and evenly distributed into the two airbag pads until the airbag pads inflate to the appropriate state. After inflation is completed, snap the sealing plug 78 into the end of the air inlet pipe 77 to prevent gas leakage and keep the airbag pads in a stable cushioning state.

[0040] When the protective box 3 is subjected to external impact, such as collision with other objects during transportation or the device falling, the impact force first acts on the outer wall of the protective box 3, and then is transmitted to the internal airbags. If the impact comes from the horizontal direction, airbag 72 is compressed, and the internal gas is squeezed out and flows rapidly through vent pipe 75 and vent pipe 76 to airbag 74, which is not under stress or is only under stress, thus dispersing the horizontal impact force to the vertical airbags. If the impact comes from the vertical direction, airbag 74 is compressed, and the gas flows through the vent pipe to airbag 72, thus dispersing the impact force. The airbags disperse across multiple directions. If the impact comes from a complex direction such as an oblique angle, both airbags will be subjected to force simultaneously. The gas flows rapidly between the two, dispersing the concentrated impact force throughout the entire airbag buffer network. Through this gas flow and force dissipation method, the intensity of the local impact force can be effectively weakened, preventing the impact force from acting directly on the computer case 5, thereby protecting the case shell and internal components from collision damage. At the same time, the hollow airbags themselves have good elasticity, and after being compressed, they can further absorb some of the impact force through deformation. Under the dual effect, the buffer protection capability of the protective case 3 is greatly improved.

[0041] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0042] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A computer protection device, comprising a mounting base (1), characterized in that: The placement base (1) is provided with a placement slot (2), a protective box (3) is snapped onto the placement base (1), a snap-fit ​​assembly (4) is installed on the protective box (3), the snap-fit ​​assembly (4) includes multiple grooves (41) opened on the placement base (1), screws (42) are fixed in each of the multiple grooves (41), multiple cards (44) are fixed on the outer wall of the protective box (3), a computer case (5) is placed in the placement slot (2), a fixing assembly (6) is provided in the placement slot (2), and a buffer assembly (7) is installed in the protective box (3). The fixing component (6) includes multiple L-shaped clamps (601) fixedly connected to the four corners of the inner wall of the placement groove (2). The inner wall of the multiple L-shaped clamps (601) is provided with a magnet one (602). A magnet two (603) is attracted to the end side of the magnet one (602). A filling clamp (604) is fixed to the end side of the magnet two (603). A magnet three (605) is installed on the inner wall of the filling clamp (604). A magnet four (606) is attracted to the end side of the magnet three (605). A buffer clamp (607) is fixed to the end side of the magnet four (606).

2. A computer shield according to claim 1, wherein: The card (44) has a through hole (45), and the screw (42) is inserted into the card (44) through the through hole (45). A nut (43) is threaded onto the screw (42), and the bottom surface of the nut (43) is in contact with the top surface of the card (44).

3. A computer shield according to claim 1, wherein: The fixing component (6) includes a telescopic rod (61) fixedly connected to the inner wall of the placement groove (2). A spring (62) is sleeved on the outer ring of the telescopic rod (61). One end of the spring (62) is fixedly connected to the inner wall of the placement groove (2). A pressure plate (63) is fixed to the other end of the spring (62). An inclined surface (64) is provided on the pressure plate (63).

4. A computer shield according to claim 3, wherein: The telescopic rod (61) and spring (62) are symmetrically arranged in two places about the pressure plate (63). The telescopic rod (61), spring (62) and pressure plate (63) are symmetrically arranged in two sets about the placement seat (1). The pressure plate (63) is in contact with the computer case (5).

5. A computer protection device according to claim 1, characterized in that: The buffer assembly (7) includes a support block (71) fixedly connected to the inner wall of the protective box (3), an airbag cushion (72) fixed to the end of the support block (71), the support block (71) and the airbag cushion (72) are symmetrically arranged about the protective box (3), a support block (73) is fixed to the inner wall of the protective box (3), an airbag cushion (74) is fixed to the support block (73), and the support block (73) and the airbag cushion (74) are symmetrically arranged about the protective box (3).

6. A computer protection device according to claim 5, characterized in that: The first airbag (72) and the second airbag (74) are hollow. The first airbag (72) and the second airbag (74) are connected by a first air tube (75) and a second air tube (76), which are arranged in parallel.

7. A computer protection device according to claim 6, characterized in that: The end of the ventilation pipe (75) is connected to an air inlet pipe (77), which is fixedly connected to the protective box (3). The air inlet pipe (77) is hollow inside, and a sealing plug (78) is snapped into the end of the air inlet pipe (77).