Network storage device convenient to assemble
By incorporating shock-absorbing components and mounting parts into the network storage device, combined with a heat dissipation structure featuring fans and air guides, the problem of equipment damage in vibrating environments has been solved, achieving stable operation and convenient maintenance, and expanding the scope of application.
Patent Information
- Application Number
- CN202422873380.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Existing network storage devices are easily damaged by vibration in harsh environments and cannot operate stably for a long time, which limits their applicable working scenarios.
The network storage device adopts convenient assembly. By setting shock absorbers and mounting parts on the housing, the shock absorbers are fixed to the predetermined parts with fasteners. The storage medium can be detachably installed on the shock absorbers. The shock absorbers can absorb vibration energy. Combined with fans and air guides, the heat dissipation efficiency is improved, and the buffer pad reduces the impact of vibration.
It effectively reduces the probability of storage media being damaged by vibration, extends the stable operating time of equipment, expands the applicable scenarios, and facilitates the disassembly and maintenance of storage media.
Smart Images

Figure CN223526870U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to network storage technical field especially relates to a network storage device of convenient assembly. BACKGROUND
[0002] The network storage device is a kind of data storage device based on network, and the existing network storage device is usually directly fixed in the shell inside by screwing hard disk, and this kind of network storage device is mainly applicable to family or environmentally friendly enterprise office environment, and network storage device can be placed directly on desktop or cabinet surface, however, industrial site environment is relatively harsh, and network storage device is easily damaged by vibration in environment, difficult to long-term stable operation, resulting in limited working scene of network storage device. SUMMARY
[0003] The utility model embodiment provides a network storage device of convenient assembly, to reduce the influence of vibration to storage medium, expand the working scene range of storage device.
[0004] In the first aspect, the utility model provides a network storage device of convenient assembly, comprising:
[0005] Shell, the shell is equipped with first installation slot, the shell periphery is equipped with installation part, and the installation part is used for fastening to predetermined component by fastener;
[0006] Damping part, detachable installation is in the first installation slot;And
[0007] Storage medium, detachable installation is in the damping part.
[0008] Optionally, the damping part has net structure.
[0009] Optionally, a plurality of the storage medium and a plurality of the damping part one-to-one, the storage medium detachable installation is in corresponding damping part.
[0010] Optionally, damping part includes main body part and cover body part, the main body part detachable connection is in the first installation slot, and the main body part is equipped with second installation slot, and the storage medium is equipped in the second installation slot;
[0011] The cover body part is movably covered in the slot mouth of the second installation slot.
[0012] Optionally, the damping part is equipped with first installation hole, and the storage medium is equipped with second installation hole, and fastener is sequentially arranged in the first installation hole and the second installation hole, to connect the damping part and the storage medium.
[0013] Optionally, the outer periphery of the damping member or the groove wall surface of the first mounting groove is provided with a protrusion to make the damping member and the groove wall surface of the first mounting groove in interference fit.
[0014] Optionally, the shell is provided with an inner cavity, the shell has a first side and a second side arranged oppositely, the first side is concave to form a first mounting groove, and the groove wall surface of the first mounting groove is provided with a heat dissipation hole communicating with the inner cavity.
[0015] The second side is provided with an air inlet and an air outlet communicating with the inner cavity, and at least one fan is arranged in the inner cavity and arranged close to the air inlet or the air outlet.
[0016] Optionally, the inner cavity is provided with a wind guide, and the wind guide is arranged between the air inlet and the air outlet and extends to the first side.
[0017] Optionally, the outer periphery of the shell is further provided with a handle.
[0018] Optionally, the outer periphery of the shell is further provided with a buffer pad.
[0019] The network storage device provided by the embodiment of the utility model is convenient to assemble, the storage medium is detachably mounted on the damping member, the damping member can absorb the vibration energy in the external environment and the vibration energy generated in the running process of the storage medium, the probability of damage of the storage medium due to vibration is reduced, the damping member is detachably mounted on the first mounting groove of the shell, the outer periphery of the shell is provided with a mounting part, the mounting part can be fastened to a predetermined part by a fastener, the network storage device is conveniently and stably mounted, vibration of the network storage device under the vibration energy in the external environment is prevented, the probability of damage of the storage medium due to vibration is further reduced, the use time of stable operation of the storage medium is prolonged as a whole, the range of applicable working scenes of the network storage device is expanded, in addition, the storage medium is detachably mounted on the damping member, the damping member is detachably mounted on the shell, even if the storage medium fails, the damping member can also be detached from the shell, and the storage medium is conveniently detached and maintained. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0021] Figure 1 The structure schematic view of the network storage device provided by the embodiment of the utility model in one view;
[0022] Figure 2The structural schematic view of the network storage device provided by the embodiment of the present application under another view angle is shown in the figure.
[0023] Figure 3 The structural schematic view of the network storage device (omitting partial structure) provided by the embodiment of the present application is shown in the figure.
[0024] Figure 4 The structural schematic view of the damping member provided by the embodiment of the present application is shown in the figure.
[0025] Main figure mark explanation:
[0026] 10, shell; 10a, first installation groove; 10b, inner cavity; 10c, heat dissipation hole; 10d, air inlet; 10e, air outlet; 11, installation part; 11a, first installation hole; 20, damping member; 21, main body part; 21a, second installation groove; 211, net structure; 212, protruding part; 22, cover part; 30, fan; 40, air guide member; 50, handle; 60, buffer pad. Specific implementation
[0027] The technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by the ordinary skilled in the art without creative labor fall within the protection scope of the present application.
[0028] Please refer to Figures 1 to 4 The embodiment of the present application provides a network storage device convenient to assemble, which comprises a shell 10, a damping member 20 and a storage medium. The shell 10 is provided with a first installation groove 10a, and the outer periphery of the shell 10 is provided with an installation part 11, which is used to be fastened to a predetermined component through a fastener. The damping member 20 can be detachably installed in the first installation groove 10a. The storage medium can be detachably installed in the damping member 20.
[0029] It can be understood that the storage medium is detachably mounted on the damping member 20, and the damping member 20 can absorb the vibration energy in the external environment and the vibration energy generated during the operation of the storage medium, thereby reducing the probability of damage of the storage medium due to vibration. The damping member 20 is detachably mounted on the first mounting groove 10a of the shell 10, and the outer periphery of the shell 10 is provided with a mounting portion 11, which can be fastened to a predetermined component by a fastener. This facilitates stable installation of the network storage device and prevents the network storage device from being shaken by the vibration energy in the external environment, thereby further reducing the probability of damage of the storage medium due to vibration. Thus, it is overall beneficial to prolong the time length of stable operation of the storage medium and expand the range of applicable working scenarios of the network storage device. In addition, the storage medium is detachably mounted on the damping member 20, and the damping member 20 is detachably mounted on the shell 10. Even if the storage medium fails, the damping member 20 can be detached from the shell 10, facilitating disassembly and maintenance of the storage medium.
[0030] Illustratively, the storage medium includes but is not limited to a mechanical hard disk, a solid state disk.
[0031] Illustratively, the network storage device can include one or more storage media.
[0032] Illustratively, the predetermined component can be a support plate of a mobile device, and the mounting portion 11 can be fastened to the mobile device by a fastener, so that the network storage device is stably installed on the mobile device and can also prevent the network storage device from falling during movement of the mobile device.
[0033] As shown in Figure 1 and Figure 2 , in some embodiments, the network storage device is provided with mounting portions 11 on opposite sides in a first direction, so that the network storage device is stressed on both sides, and the connection between the network storage device and the predetermined component is more stable. The mounting portions 11 on opposite sides in a second direction are fastened to the predetermined component by fasteners, and the first direction and the second direction are different, so that the network storage device is uniformly stressed as a whole, and the stress of the fastener can be dispersed, so that the fastener can stably connect the mounting portion 11 and the predetermined component. Wherein, the first direction can be as shown by the Y direction in Figure 2 , and the second direction can be as shown by the X direction in Figure 2 .
[0034] Illustratively, as shown in Figure 1 , the mounting portion 11 is provided with a first mounting hole 11a, and the mounting hole penetrates through opposite sides of the mounting portion 11. The predetermined component is provided with a second mounting hole, and the fastener can be sequentially arranged in the first mounting hole 11a and the second mounting hole to fasten the mounting portion 11 to the predetermined component.
[0035] Illustratively, the fastener includes but is not limited to a screw, a screw, a bolt, etc.
[0036] Exemplarily, the damping member 20 can be made of silica gel, rubber, fluororubber or the like.
[0037] Exemplarily, the network storage device can comprise one or more damping members 20.
[0038] In some embodiments, the number of damping members 20 is greater than or equal to the number of storage media. Any one damping member 20 corresponds to one storage medium, which can be detachably installed on the corresponding damping member(s) 20. When one storage medium fails, the corresponding damping member(s) 20 of the storage medium can be removed from the shell to facilitate the removal and maintenance of the storage medium, thereby avoiding interference with the damping members 20 on which other storage media are installed.
[0039] In some embodiments, the network storage device comprises a plurality of damping members 20 and a plurality of storage media, the plurality of storage media and the plurality of damping members 20 correspond to each other, and the storage media can be detachably installed on the corresponding damping members 20.
[0040] In some embodiments, two adjacent storage media are spaced apart by a damping member 20 to avoid mutual interference between the storage media and ensure that any one storage medium is less affected by vibration.
[0041] As shown in Figure 1 and Figure 4 In some embodiments, the damping member 20 comprises a main body portion 21 and a cover portion 22, the main body portion 21 is detachably connected to the first mounting groove 10a, the main body portion 21 is provided with a second mounting groove 21a, and the storage medium is arranged in the second mounting groove 21a. The cover portion 22 is movably arranged on the opening of the second mounting groove 21a. It can be understood that the main body portion 21 is provided with the second mounting groove 21a, and the storage medium can be inserted into the second mounting groove 21a, and then the cover portion is moved to cover the opening of the second mounting groove 21a, so that the main body portion 21 and the cover portion 22 can be enclosed around the outer periphery of the storage medium, absorbing vibration energy in multiple directions and reducing the probability of damage to the storage medium due to vibration.
[0042] Exemplarily, one end of the cover portion 22 is rotatably connected to the main body portion 21, and the cover portion 22 can be rotated relative to the main body portion 21 to completely cover the opening of the second mounting groove 21a.
[0043] Exemplarily, when the damping member 20 is detachably installed on the shell 10, the cover portion 22 also covers the opening of the first mounting groove 10a, thereby preventing impurities in the external environment from entering the network storage device and causing damage to the storage medium.
[0044] As shown in Figure 4As shown, the shock-absorbing piece 20 has a mesh structure 211 in some embodiments. It can be understood that the shock-absorbing piece 20 has the mesh structure 211, which improves the deformation ability of the shock-absorbing piece 20, improves the shockproof performance of the shock-absorbing piece 20, and is more convenient for installing the storage medium to dissipate heat through the hollow parts of the mesh structure 211.
[0045] As shown, the shock-absorbing piece 20 has a mesh structure 211, and the mesh structure 211 has a plurality of uniformly distributed hollow parts. Figure 4
[0046] As shown, the mesh structure 211 of the shock-absorbing piece 20 has a plurality of uniformly distributed hollow parts. Figure 4
[0047] As shown, the shock-absorbing piece 20 has a mesh structure 211, and the mesh structure 211 has a plurality of uniformly distributed hollow parts.
[0048] As shown, the shock-absorbing piece 20 has a mesh structure 211, and the mesh structure 211 has a plurality of uniformly distributed hollow parts.
[0049] As shown, the shock-absorbing piece 20 has a mesh structure 211, and the mesh structure 211 has a plurality of uniformly distributed hollow parts. Figure 4 As shown, the shock-absorbing piece 20 has a mesh structure 211, and the mesh structure 211 has a plurality of uniformly distributed hollow parts.
[0050] As shown, the shock-absorbing piece 20 has a mesh structure 211, and the mesh structure 211 has a plurality of uniformly distributed hollow parts.
[0051] As shown, the shock-absorbing piece 20 has a mesh structure 211, and the mesh structure 211 has a plurality of uniformly distributed hollow parts.
[0052] In some embodiments, the outer periphery of the shock-absorbing member 20 or the groove wall surface of the first mounting groove 10a is provided with a protrusion 212 to allow the shock-absorbing member 20 and the groove wall surface of the first mounting groove 10a to be in interference fit. It can be understood that the relative position between the shock-absorbing member 20 and the housing 10 can be positioned by the interference fit between the protrusion 212 and the groove wall surface of the first mounting groove 10a, which facilitates the detachable installation of the shock-absorbing member 20 on the housing 10, and helps to prevent the shock-absorbing member 20 from being shaken and reduces the probability of damage to the storage medium during operation.
[0053] As shown in FIG. 1, the outer periphery of the main body portion 21 is provided with a protrusion 212 to allow the main body portion 21 and the groove wall surface of the first mounting groove 10a to be in interference fit. Figure 4
[0054] As shown in FIG. 1, the outer periphery of the main body portion 21 is provided with a protrusion 212 to allow the main body portion 21 and the groove wall surface of the first mounting groove 10a to be in interference fit. Figure 4
[0055] As shown in FIG. 1, the outer periphery of the main body portion 21 is provided with a protrusion 212 to allow the main body portion 21 and the groove wall surface of the first mounting groove 10a to be in interference fit. Figure 4
[0056] As shown in FIG. 1, the outer periphery of the main body portion 21 is provided with a protrusion 212 to allow the main body portion 21 and the groove wall surface of the first mounting groove 10a to be in interference fit. Figure 2 Figure 3 As shown in FIG. 1, the outer periphery of the main body portion 21 is provided with a protrusion 212 to allow the main body portion 21 and the groove wall surface of the first mounting groove 10a to be in interference fit.
[0057] As shown in FIG. 1, the outer periphery of the main body portion 21 is provided with a protrusion 212 to allow the main body portion 21 and the groove wall surface of the first mounting groove 10a to be in interference fit. Figure 3
[0058] As shown in FIG. 1, the outer periphery of the main body portion 21 is provided with a protrusion 212 to allow the main body portion 21 and the groove wall surface of the first mounting groove 10a to be in interference fit. Figure 3 The circular hole is shown.
[0059] As shown in Figure 2 and Figure 3 two fans 30 are arranged in the inner cavity 10b, one of the fans 30 is arranged close to the air inlet 10d, and the other fan 30 is arranged close to the air outlet 10e. It can be understood that the fan 30 arranged close to the air inlet 10d can guide the air outside the shell 10 to flow into the inner cavity 10b of the shell 10, and the fan 30 arranged close to the air outlet 10e can guide the air in the inner cavity 10b of the shell 10 to flow outside the shell 10.
[0060] As shown in Figure 2 the air inlet 10d and the air outlet 10e are each provided with a filter screen to filter impurities in the air outside the shell 10, so as to prevent the impurities from entering the inner cavity 10b and damaging the devices in the shell 10.
[0061] Further, the inner cavity 10b is further provided with a wind guide 40, the wind guide 40 is arranged between the air inlet 10d and the air outlet 10e, and the wind guide 40 extends to the first side. It can be understood that the wind guide 40 is arranged between the air inlet 10d and the air outlet 10e to guide more air to flow to the storage medium on the first side, thereby improving the heat dissipation efficiency.
[0062] In some embodiments, the outer periphery of the shell 10 is further provided with a handle 50, so that the network storage device can be conveniently carried by grabbing the handle 50.
[0063] As an example, the handle 50 can be made of a non-slip material, such as silicone, rubber, etc.
[0064] In some embodiments, the outer periphery of the shell 10 is further provided with a buffer pad 60. It can be understood that the buffer pad 60 is arranged on the outer periphery of the shell 10, so that when the network storage device is placed on a predetermined component or the ground, the buffer pad 60 can reduce the vibration received by the shell 10, thereby reducing the probability of damage to the storage medium due to vibration.
[0065] As an example, the buffer pad 60 can be supported by a material such as silicone, rubber, etc.
[0066] As shown in Figure 2 the same side of the shell 10 is provided with a plurality of buffer pads 60, and the plurality of buffer pads 60 are arranged at intervals.
[0067] In some embodiments, the shell 10 is further provided with an indicator light, the indicator light is electrically connected to the storage medium, and the indicator light is used to indicate the working state of the storage medium. It can be understood that the user can determine the working state of the storage medium according to the state of the indicator light, so as to facilitate the user to quickly locate the fault of the storage medium and perform disassembly and maintenance.
[0068] For example, the indicator light can be switched on and off to indicate different working states of the storage medium. For example, the indicator light is kept on when the storage medium is in normal operation, and the indicator light is kept off when the storage medium is not in operation. Alternatively, the indicator light can be switched in different colors to indicate different working states of the storage medium. For example, the indicator light is green when the storage medium is in normal operation, and the indicator light is red when the storage medium is not in operation.
[0069] The above merely illustrates the specific embodiments of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical range disclosed by the present application, and these modifications or replacements should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A network storage device that is easy to assemble, characterized by comprising: The application relates to a shell, a damping piece and a storage medium. The shell is provided with a first mounting groove, and the outer periphery of the shell is provided with a mounting part for fastening to a predetermined component through a fastener. The damping piece is detachably mounted in the first mounting groove. The storage medium is detachably mounted in the damping piece. The damping piece has a net structure.
2. The network storage device of claim 1, wherein, A plurality of storage mediums and a plurality of damping pieces are in one-to-one correspondence, and the storage medium is detachably mounted in the corresponding damping piece.
3. The network storage device of claim 1, wherein, The damping piece comprises a main body part and a cover part, the main body part is detachably connected to the first mounting groove, the main body part is provided with a second mounting groove, and the storage medium is arranged in the second mounting groove.
4. The network storage device of claim 1, wherein, The cover part is movably arranged on the opening of the second mounting groove. The damping piece is provided with a first mounting hole, the storage medium is provided with a second mounting hole, and a fastener is sequentially arranged in the first mounting hole and the second mounting hole, so that the damping piece and the storage medium are connected.
5. The network storage device of any of claims 1-4, wherein, The outer periphery of the damping piece or the groove wall surface of the first mounting groove is provided with a protruding part, so that the damping piece and the groove wall surface of the first mounting groove are in interference fit.
6. The network storage device of any of claims 1-4, wherein, The shell is provided with an inner cavity, the shell has a first side and a second side arranged oppositely, the first side is concave to form a first mounting groove, the groove wall surface of the first mounting groove is provided with a heat dissipation hole communicating with the inner cavity and the first mounting groove.
7. The network storage device of any of claims 1-4, wherein, The second side is provided with an air inlet and an air outlet communicating with the inner cavity, at least one fan is arranged in the inner cavity, and the fan is arranged close to the air inlet or the air outlet. The inner cavity is provided with a wind guide part, the wind guide part is arranged between the air inlet and the air outlet, and the wind guide part extends to the first side.
8. The network storage device of claim 7, wherein, The outer periphery of the shell is further provided with a handle.
9. The network storage device of any of claims 1-4, wherein, The outer periphery of the shell is further provided with a buffer pad.
10. The network storage device of any of claims 1-4, wherein,