NAS storage server
By incorporating a protective frame and sliding closure plate at the data interface of the NAS storage server, the problem of dust and water mist intrusion on the interface is solved, effectively protecting the data interface and improving the operating efficiency and lifespan of the equipment.
Patent Information
- Application Number
- CN202520408702.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-10
AI Technical Summary
The data cable interface of a NAS storage server is susceptible to dust and water vapor, which can cause abnormal contact and affect the operation and lifespan of the device.
A protective frame is installed at the data interface, forming multiple independent chambers inside. Each interface corresponds to one chamber. Automatic protection is achieved using a sliding closing plate and a return spring to prevent dust and water mist from entering.
It effectively prevents dust and water mist from entering the data interface, improving the operating efficiency and lifespan of the NAS storage server and ensuring the stability and reliability of the interface.
Smart Images

Figure CN223828029U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to data storage server technical field especially relates to a NAS storage server. BACKGROUND
[0002] NAS storage server is a kind of data storage device connected by network, usually called "network storage", it is a kind of special data storage server.
[0003] NAS storage server involves the connection with other devices, so multiple data line interfaces are reserved on its side, and the data line interface exposed outside is not plugged with data line, which is easily disturbed by dust or water mist in the environment, and the data line interface is prone to contact abnormality, which affects the operation and service life of NAS storage server, therefore, provide a kind of NAS storage server. SUMMARY
[0004] The utility model aims at providing a kind of NAS storage server, solves the problem that data line interface is influenced by dust, water mist etc., leads to data interface contact abnormality, affects the operation and service life of NAS storage server.
[0005] To achieve this purpose, the utility model adopts the following technical solutions:
[0006] A kind of NAS storage server, characterized by including storage server body, the side of the storage server body is provided with multiple data interfaces for data line connection;
[0007] The data interface is provided with a protective frame, the inside of the protective frame is provided with multiple partitions, forming multiple independent chambers, and each chamber corresponds to one data interface;
[0008] The left and right sides of the inner wall of each chamber are provided with a sliding slot, the top of the outside of each chamber is slidably connected with a first closure plate, the bottom of the outside of each chamber is slidably connected with a second closure plate, the left and right sides of the first closure plate and second closure plate are both fixed with a sliding block, the sliding block is slidably connected in the sliding slot, the first reset spring is fixed on the inner wall of the sliding slot on the end of the sliding block away from the sliding block.
[0009] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0010] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0011] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0012] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0013] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0014] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0015] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0016] Optionally, the bottom of the first closing plate is provided with a positioning insertion hole, the top of the second closing plate is fixed with a positioning insertion rod, the positioning insertion rod comprises a first end portion which is capable of sliding in a second telescopic slot, the first end portion is connected with a second end portion, the second end portion extends out of the second telescopic slot and is capable of being correspondingly inserted into the positioning insertion hole, wherein a first inclined surface is formed on the side wall of the data interface towards the second end portion, a protruding block is formed on the other side wall of the data interface away from the second end portion, an end of the protruding block close to the positioning insertion hole is provided with a second inclined surface along the insertion direction of the positioning insertion rod, and an end of the protruding block away from the positioning insertion hole is provided with a third inclined surface along the insertion direction of the positioning insertion rod.
[0017] Compared with the prior art, the utility model has the advantages of the following:
[0018] The NAS storage server provided by the utility model, the data interface of the NAS storage server is provided with a protection frame, and multiple partitions are introduced inside the protection frame to form multiple independent chambers, so that each data interface is in an independent chamber, and the inner wall of each chamber is provided with a sliding groove on the left and right sides, a first closing plate and a second closing plate are slidably connected in the sliding groove through a sliding block, and a reset spring is arranged on the sliding block. When the data interface needs to be used, the first closing plate and the second closing plate are separated through the protrusions on the first closing plate and the second closing plate, and the data interface can be exposed for use, when a certain data interface is not used, the first closing plate and the second closing plate are automatically closed under the action of the reset spring, effective protection is formed on the data interface, dust, water mist and other environmental factors are prevented from entering the unused data interface, abnormal interface contact is avoided, and finally the data interface of the NAS storage server is effectively protected, so that the operation efficiency and service life of the NAS storage server are remarkably improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical solutions in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor.
[0020] The structure, proportion, size and the like shown in the drawings of the specification are only used to cooperate with the content disclosed in the specification, to enable those skilled in the art to understand and read, and are not used to limit the limiting conditions of the embodiments of the utility model, so they do not have the technical essence, any modification of structure, change of proportion relationship or adjustment of size, as long as it does not affect the effect and purpose that the utility model can produce, it should still fall within the scope of the technical content disclosed by the utility model.
[0021] Figure 1 It is the overall three-dimensional structure schematic diagram of the utility model;
[0022] Figure 2 It is the partial sectional view structure schematic diagram of the rear view of the utility model;
[0023] Figure 3 It is the partial sectional view structure schematic diagram of the rear view of the utility model; Figure 2
[0024] Figure 4 It is the side sectional view structure schematic diagram of the upper closing plate and the lower closing plate of the utility model;
[0025] Figure 5 It is the three-dimensional structure schematic view of the upper closing plate of the utility model,
[0026] Figure 6 It is the overhead structure schematic view of the clamp plate in the utility model.
[0027] Illustration: 10, storage server body; 11, data interface; 12, power cord; 13, cooling fan; 14, heat dissipation hole; 20, protective frame; 21, partition; 22, chamber; 221, chute; 30, first closing plate; 31, positioning jack; 311, clamping inclined surface; 32, storage groove; 33, protruding block; 34, sliding block; 35, first return spring; 40, second closing plate; 41, positioning plug; 411, first inclined surface; 412, second inclined surface; 413, third inclined surface; 42, first telescopic groove; 43, second return spring; 44, clamp plate; 45, second telescopic groove; 46, silica gel gasket; 50, support cylinder; 51, threaded disc; 52, support rod; 53, cushion block. DETAILED DESCRIPTION
[0028] In order to make the application purpose, features and advantages of the utility model more obvious and easy to understand, the technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model. Obviously, the embodiments described below are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0029] In the description of the utility model, it should be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there can be a component disposed therebetween.
[0030] The technical solutions of the utility model will be further illustrated below in combination with the drawings and through specific embodiments.
[0031] The utility model embodiment provides a kind of NAS storage server.
[0032] As Figures 1 to 6 Indicated, Figure 1 It is the overall three-dimensional structure schematic view of the utility model, Figure 2 It is the partial sectional view structure schematic view of rear view in the utility model,Figure 3 is the enlarged structural schematic view of the A place in the utility model Figure 2 Figure 4 is the side view structural schematic view of the upper closing plate and the lower closing plate in the utility model, Figure 5 is the three-dimensional structural schematic view of the upper closing plate in the utility model, Figure 6 is the overhead structural schematic view of the clamp in the utility model.
[0033] The NAS storage server has the advantages of dustproof and waterproof, adaptation to different placing environments, realization of the individually effective protection of the data interface of the NAS storage server, improvement of the operation efficiency and service life of the NAS storage server and the like.
[0034] As Figures 1 to 6 shown, the NAS storage server in the embodiment includes a storage server body 10, and a plurality of data interfaces 11 for data line connection are arranged on one side of the storage server body 10;
[0035] A protection frame 20 is arranged at the data interface 11, and a plurality of partitions 21 are arranged in the protection frame 20, forming a plurality of independent chambers 22, and each chamber 22 corresponds to one data interface 11;
[0036] Sliding grooves 221 are formed on the left and right inner walls of each chamber 22, and first closing plates 30 and second closing plates 40 are slidably connected to the top and bottom of the outer side of each chamber 22, the left and right sides of the first closing plates 30 and the second closing plates 40 are fixedly provided with sliding blocks 34, the sliding blocks 34 are slidably connected to the sliding grooves 221, and the sliding blocks 34 are fixedly provided with return springs, and one end of the return springs, away from the sliding blocks 34, is fixed to the inner wall of the sliding grooves 221.
[0037] Specifically, a protective frame 20 is provided at the data interface 11 of the NAS storage server, and multiple partitions 21 are introduced inside the protective frame 20 to form multiple independent chambers 22, so that each data interface 11 is in an independent chamber 22. Slide grooves 221 are formed on the left and right sides of the inner wall of each chamber 22. The first closing plate 30 and the second closing plate 40 are slidably connected in the slide grooves 221 by sliders 34, and a first return spring 35 is provided on the sliders 34. When the data interface 11 is needed, the first closing plate 30 and the second closing plate 40 are separated by the protrusions 33 on the first closing plate 30 and the second closing plate 40, and the data interface 11 can be exposed for use. When the data interface 11 is not in use, the first closing plate 30 and the second closing plate 40 automatically close under the action of the first return spring 35, effectively protecting the data interface 11 and preventing environmental factors such as dust and water mist from entering the unused data interface 11, avoiding abnormal interface contact. Ultimately, this achieves individual and effective protection for the data interface 11 of the NAS storage server, thereby significantly improving the operating efficiency and lifespan of the NAS storage server.
[0038] In summary, the NAS storage server provided by this utility model protects the data interface 11 through the first closing plate 30 and the second closing plate 40, and has the advantages of being waterproof and dustproof.
[0039] Furthermore, such as Figures 3 to 4 As shown, positioning holes 31 are provided on both sides of the bottom of the first closing plate 30, and positioning rods 41 are fixed on both sides of the top of the second closing plate 40. The positioning rods 41 include a first end that can slide in the second telescopic groove 45, and a second end connected to the first end. The second end extends outside the second telescopic groove 45 and can be inserted into the positioning holes 31 accordingly. A first inclined surface 411 is formed on the side wall of the second end facing the data interface 11, and a protrusion is formed on the other side wall of the second end away from the data interface 11. A second inclined surface 412 is formed on the end of the protrusion close to the positioning hole 31 along the insertion direction of the positioning rod 41, and a third inclined surface 413 is provided on the end of the protrusion away from the positioning hole 31 along the insertion direction of the positioning rod 41.
[0040] Specifically, when the second closing plate 40 slides upward, the first inclined surface 411 of the positioning plug rod 41 first contacts the clamping inclined surface 311 of the positioning plug hole 31, and by the guiding action of the inclined surfaces, the positioning plug rod 41 can be smoothly inserted into the positioning plug hole 31 to achieve preliminary positioning; then, the second inclined surface 412 and the third inclined surface 413 provided on the positioning plug rod 41 further press the positioning plug hole 31 under the pressure action of the elastic sheet, so as to ensure that the closing plate will not easily fall off or loosen after the plug-in is completed, thereby realizing a more stable closing state, improving the sealing performance and stability of the protection frame 20, further enhancing the protection effect on the data interface 11, improving the protection performance of the data interface 11 of the NAS storage server, effectively preventing external pollutants such as dust and water mist from entering the data interface 11, and avoiding interface contact abnormity; the protruding block provides elasticity and buffering capacity, avoiding wear or damage caused by frequent operation, and further improving the service life and reliability of the equipment.
[0041] Preferably, the protruding block is an elastic sheet.
[0042] Further, as shown in Figures 3 to 6 , the bottom of the first closing plate 30 is provided with a receiving groove 32, and the top of the second closing plate 40 and the position corresponding to the receiving groove 32 are provided with a first telescopic groove 42, the inner bottom wall of the first telescopic groove 42 is provided with a second reset spring 43, the top of the second reset spring 43 is fixed with a clamping plate 44 protruding from the first telescopic groove 42, and the inside of the clamping plate 44 is provided with a silica gel pad 46.
[0043] Specifically, as shown in Figure 1 , when the first closing plate 30 and the second closing plate 40 are in the closed state, the clamping plate 44 can automatically extend and tightly fit with the receiving groove 32 under the action of the second reset spring 43, so as to realize further sealing effect, and the silica gel pad 46 can effectively block the invasion of external pollutants such as dust and water mist, so as to ensure that the data interface 11 is in the best protection state in the non-use state; the elastic force provided by the second reset spring 43 ensures that the clamping plate 44 can automatically adjust the position during the closing process, realizing smooth contact and sealing.
[0044] As shown in Figure 2 and Figure 3 , when the first closing plate 30 and the second closing plate 40 are in the open state, the clamping plate 44 on the second closing plate 40 will be forced to compress, the positioning plug rod 41 slides up and down in the second telescopic groove 45 and extrudes the second reset spring 43, and the rebound force of the second reset spring 43 pushes the clamping plate 44 to further clamp the data line connector, improving the stability of the data line connector after plug-in.
[0045] Further, the side of the first telescopic slot 42 is provided with a second telescopic slot 45, the bottom of the positioning plug rod 41 is slidingly connected in the second telescopic slot 45 and is fixedly connected with the clamping plate 44, and the size of the clamping plate 44 is adapted to the size of the receiving slot 32.
[0046] Specifically, the size of the clamping plate 44 is adapted to the size of the receiving slot 32, when the first closing plate 30 and the second closing plate 40 are closed, the positioning plug rod 41 slides up and down in the second telescopic slot 45, so that the clamping plate 44 accurately enters the receiving slot 32 and is stably embedded in the receiving slot 32 under the action of the second return spring 43, thereby avoiding the problem of sealing failure due to errors; the silica gel gasket 46 inside the clamping plate 44 provides soft buffering and sealing effect, ensures the protection performance of the interface, prevents dust and water mist from the outside, prolongs the service life of the equipment, and enhances the flexibility and reliability of the closing operation.
[0047] Further, the bottom of the outer side of the first closing plate 30 and the top of the outer side of the second closing plate 40 are fixed with the protrusions 33, the top of the first closing plate 30 penetrates out from the top of the protection frame 20, and the bottom of the second closing plate 40 penetrates out from the bottom of the protection frame 20.
[0048] Specifically, the bottom of one side of the first closing plate 30 and the top of one side of the second closing plate 40 are fixed with the protrusions 33, and the top of the first closing plate 30 and the bottom of the second closing plate 40 penetrate out from the top and the bottom of the protection frame 20 respectively, so that the opening and closing of the first closing plate 30 and the second closing plate 40 can be realized outside the protection frame 20, which simplifies the protection and use process of the interface, improves the convenience, thereby better prolongs the service life of the NAS storage server and improves the overall use experience.
[0049] Further, as shown in the drawings, Figure 1 The bottom corners of the storage server body 10 are fixed with support cylinders 50, the interiors of the support cylinders 50 are threadedly connected with threaded discs 51, the bottoms of the threaded discs 51 are fixed with support rods 52, the bottoms of the support rods 52 are movably penetrated out of the support cylinders 50 and are fixed with pad blocks 53, and the bottoms of the pad blocks 53 are provided with anti-skid patterns.
[0050] Specifically, by twisting the support rod 52, the threaded disc 51 can be rotated inside the support cylinder 50, thereby changing the height of the support rod 52, ensuring that the server can maintain a stable horizontal state on uneven surfaces, avoiding uneven force on internal components and potential damage due to tilting, and the cushion block 53 at the bottom of the support rod 52 further enhances the stability of the device. The bottom of the cushion block 53 is provided with anti-skid patterns to increase the friction with the contact surface, preventing the device from sliding or moving due to vibration or external force during use, improving the stability of the cushion block 53 in contact with the ground, thereby reducing the risk of device falling and damage, effectively prolonging the service life of the NAS storage server.
[0051] Further, the chamber 22 is closed when the first closure plate 30 and the second closure plate 40 are close to each other, and is opened when the first closure plate 30 and the second closure plate 40 are away from each other.
[0052] Specifically, when the first closure plate 30 and the second closure plate 40 are close to each other and closed, the chamber 22 can be completely closed, and at this time the corresponding data interface 11 in the chamber 22 is effectively protected. The closed chamber 22 forms an isolation space to prevent dust, moisture and other pollutants in the environment from entering the data interface 11, avoiding problems such as poor contact and short circuit caused by pollutants, thereby ensuring the reliability and stability of the data interface 11. When the first closure plate 30 and the second closure plate 40 are away from each other, the chamber 22 is opened, and the data interface 11 in the chamber 22 is exposed, facilitating the insertion and removal of data lines, making the conversion between protection and use of the data interface 11 easy and convenient, and maintaining the simplicity and efficiency of operation.
[0053] Further, the side of the storage server body 10 is provided with a cooling fan 13, and the bottom of the storage server body 10 is provided with a plurality of cooling holes 14, and the frame of the cooling fan 13 and the cooling holes 14 are both provided with filter screens.
[0054] Specifically, the cooling fan 13 and the cooling holes 14 can effectively improve the air circulation inside the storage server and promote heat dissipation. The cooling fan 13 actively ventilates, quickly discharges hot air inside the server, and cold air enters in time, forming a good heat dissipation cycle, thereby avoiding performance degradation or hardware damage of the server due to overheating, and ensuring that the server still maintains a stable working temperature during efficient and long-time operation. The frame of the cooling fan 13 and the cooling holes 14 are provided with filter screens, effectively blocking dust, impurities and other pollutants from entering the server, slowing down the blockage of the cooling fan 13 and the cooling holes 14, reducing the maintenance frequency, prolonging the service life of the cooling system, and improving the reliability and operation efficiency of the device.
[0055] For the convenience of those skilled in the art to understand, the overall working process of the NAS storage server is explained as follows:
[0056] The protective frame 20 is arranged at the data interface 11 of the NAS storage server, and a plurality of partitions 21 are introduced inside the protective frame 20 to form a plurality of independent chambers 22, so that each data interface 11 is in an independent chamber 22, and a sliding groove 221 is formed on the left and right inner walls of each chamber 22, and the first closing plate 30 and the second closing plate 40 are slidably connected in the sliding groove 221 through the sliding block 34, and the reset spring is arranged on the sliding block 34. When the data interface 11 needs to be used, the first closing plate 30 and the second closing plate 40 are separated by the protrusions 33 on the first closing plate 30 and the second closing plate 40, the clamping plate 44 on the second closing plate 40 is forced to compress, the positioning rod 41 slides up and down in the second extension slot 45, and the second reset spring 43 is extruded, the rebound force of the second reset spring 43 pushes the clamping plate 44 to further clamp the data line connector, improving the stability of the data line connector after plugging; when the data interface 11 is not used, the clamping plate 44 can automatically extend and tightly fit with the storage slot 32 under the action of the second reset spring 43, ensuring the stable plugging of the positioning hole 31 on the first closing plate 30 and the positioning rod 41 on the second closing plate 40, improving the sealing effect, effectively protecting the data interface 11 of the NAS storage server, and improving the running efficiency and service life of the NAS storage server.
[0057] In addition, the height of the supporting rod 52 can be adjusted by the threaded disc 51, so as to realize the horizontal adjustment of the storage server body 10. The height of each supporting rod 52 can be easily adjusted by rotating the threaded disc 51, so as to ensure that the server can maintain a stable horizontal state on an uneven surface, avoid uneven force on internal components and potential damage caused by inclination, and further enhance the stability of the device and the friction with the contact surface by the anti-skid pattern on the bottom of the cushion block 53, so as to prevent the device from sliding or moving due to vibration or external force during use, thereby reducing the risk of falling and damage of the device, effectively prolonging the service life of the NAS storage server, and improving the user experience.
[0058] In summary, the NAS storage server in the embodiment has the advantages of dustproof and waterproof, adaptation to different placement environments, effective protection of the data interface of the NAS storage server, improvement of the running efficiency and service life of the NAS storage server, and the like.
[0059] The above-described above embodiments are only used to illustrate the technical solutions of the present application, and are not limited thereto; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features therein can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A NAS storage server, characterized in that, Includes a storage server body (10), and one side of the storage server body (10) is provided with multiple data interfaces (11) for data cable connection. A protective frame (20) is provided at the data interface (11). The protective frame (20) is provided with multiple partitions (21) to form multiple independent chambers (22), and each chamber (22) corresponds to one data interface (11). Each of the chambers (22) has a sliding groove (221) on the left and right sides of its inner wall. A first closing plate (30) is slidably connected to the top of the outer side of each chamber (22), and a second closing plate (40) is slidably connected to the bottom of the outer side of each chamber (22). A slider (34) is fixed on the left and right sides of the first closing plate (30) and the second closing plate (40). The slider (34) is slidably connected in the sliding groove (221). A first return spring (35) is fixed on each slider (34). The end of the first return spring (35) away from the slider (34) is fixed on the inner wall of the sliding groove (221).
2. A NAS storage server according to claim 1, characterized in that, The bottom of the first closed plate (30) is provided with a positioning insertion hole (31), and the top of the second closed plate (40) is provided with a positioning rod (41). The positioning rod (41) includes a first end that can slide in the second telescopic groove (45). The first end is connected to a second end. The second end extends to the outside of the second telescopic groove (45) and can be inserted into the positioning insertion hole (31) accordingly. A first inclined surface (411) is formed on the side wall of the second end facing the data interface (11), and a protrusion is formed on the other side wall of the second end away from the data interface (11). A second inclined surface (412) is formed on the end of the protrusion close to the positioning insertion hole (31) along the insertion direction of the positioning rod (41), and a third inclined surface (413) is provided on the end of the protrusion away from the positioning insertion hole (31) along the insertion direction of the positioning rod (41).
3. A NAS storage server according to claim 2, characterized in that, The bottom of the first closing plate (30) is provided with a storage groove (32), and the top of the second closing plate (40) and the position corresponding to the storage groove (32) are provided with a first telescopic groove (42). The inner bottom wall of the first telescopic groove (42) is provided with a second return spring (43), and the top of the second return spring (43) is fixed with a clamping plate (44) protruding from the first telescopic groove (42). The inside of the clamping plate (44) is provided with a silicone gasket (46).
4. A NAS storage server according to claim 3, characterized in that, The first telescopic groove (42) has a second telescopic groove (45) on its side. The bottom of the positioning rod (41) is slidably connected in the second telescopic groove (45) and fixedly connected to the clamp (44). The size of the clamp (44) is adapted to the size of the storage groove (32).
5. A NAS storage server according to claim 1, characterized in that, Both the bottom of the outer side of the first closing plate (30) and the top of the outer side of the second closing plate (40) are fixed with protrusions (33). The top of the first closing plate (30) extends through the top of the protective frame (20), and the bottom of the second closing plate (40) extends through the bottom of the protective frame (20).
6. A NAS storage server according to claim 1, characterized in that, The storage server body (10) has a support cylinder (50) fixed at each of the four corners of its bottom. The support cylinder (50) is threaded with a threaded disc (51). The bottom of the threaded disc (51) is fixed with a support rod (52). The bottom of the support rod (52) extends through the support cylinder (50) and is fixed with a pad (53). The bottom of the pad (53) is provided with anti-slip texture.
7. A NAS storage server according to claim 1, characterized in that, When the first closing plate (30) and the second closing plate (40) approach each other and close, the chamber (22) is sealed; when the first closing plate (30) and the second closing plate (40) move away from each other, the chamber (22) is opened.
8. A NAS storage server according to claim 1, characterized in that, A power cord (12) for supplying power to the storage server body (10) is also plugged into one side of the storage server body (10) and near the protective frame (20).
9. A NAS storage server according to claim 1, characterized in that, A cooling fan (13) is installed on the side of the storage server body (10), and several heat dissipation holes (14) are opened at the bottom of the storage server body (10). Filter screens are installed on the frame of the cooling fan (13) and on the heat dissipation holes (14).