Novel network panel

By creating grooves on both sides of the network panel interface and using hooked connecting feet and telescopic straight springs, the problem of displacement during existing network panel assembly is solved, improving installation efficiency and reducing production costs, while also enhancing the smoothness and service life of the sliding door.

CN223680455UActive Publication Date: 2025-12-16浙江超联电子有限公司
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Patent Information

Application Number
CN202423194476.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-16
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

The existing network panel requires the simultaneous assembly of the dust cover, torsion spring, and module mounting bracket when installing the dust cover, which leads to frequent assembly misalignment problems, affecting installation efficiency and increasing production costs.

Method used

Through-slide grooves are opened on both sides of the insertion interface of the panel body, and connecting feet with barbs are set on both sides of the sliding door. The barbs lock the slide groove to achieve a direct sliding connection between the sliding door and the panel body, and a telescopic straight spring is used to provide a return force, reducing assembly steps.

Benefits of technology

This achieves a stable connection between the sliding door and the main panel, avoiding assembly displacement, improving installation efficiency, reducing production costs, and enhancing the smoothness and lifespan of the sliding door.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel network panel, and belongs to the technical field of network panels. The through sliding grooves are formed in the two sides of the inserting opening of the panel body, the connecting feet with the clamping feet are arranged on the two sides of the push door, and the two connecting feet penetrate through the two sliding grooves respectively and abut against the groove opening walls of the corresponding sliding grooves through the clamping feet, so that direct and reliable connection between the push door and the panel body is achieved, the structure is simpler, assembly links are fewer, and cost is reduced. The problem of assembly displacement is avoided, the mounting efficiency is improved, and the production cost is reduced; meanwhile, a telescopic straight spring connected between the groove wall of the sliding groove and the connecting foot in an abutting mode is arranged in each sliding groove, so that the two sides of the sliding door are stressed, the stress uniformity and the stress point stability of the sliding door in the movement process are maintained, the use requirements of balanced stretching and simultaneous pushing and pulling are met, the problem of movement blocking is solved compared with an existing structure adopting a torsional spring and the like, and the service life of the sliding door is prolonged. The sliding smoothness of the push door is improved, the deformation frequency can be increased, the service life is prolonged, and the use cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to network panel technical field, concretely relates to a novel network panel. BACKGROUND

[0002] As a network cable connection switching structure, the network panel is usually installed on a carrier such as a wall, and a network module is installed thereon. When subsequent connection is needed, a connector (such as a crystal head) is inserted into the socket of the network module on the network panel to realize pin connection, thereby meeting the network connection requirement.

[0003] Currently, the existing network panel on the market usually comprises a base, a fixing frame and a push door. The base is provided with an insertion port, the fixing frame is installed on the insertion port of the base through buckling structure, and the fixing frame is provided with an installation opening corresponding to the insertion port. The network module is clamped on the installation opening of the fixing frame. In addition, in order to realize external protection, the push door structure is usually arranged at the insertion port of the base, and the opening or closing of the insertion port is realized by the up-down movement of the push door in the push door structure. Although the above structure can meet the conventional network connection requirement, the installation of the push door structure usually needs to be matched with the synchronous installation of the fixing frame, that is, the push door needs to be installed on the base through the fixing frame to form a sliding groove, so as to realize the stable installation of the push door and spring structure of the push door structure. For example, the patent CN206293690U discloses a network panel, which is provided with an insertion port on the panel body, and a dust cover that can be moved up and down is arranged on the insertion port. The panel body is provided with a fixing groove at the back, and the fixing groove corresponds to the insertion port. A pair of clamping hooks are arranged in the middle of the upper and lower ends of the fixing groove. A module fixing seat is clamped on the fixing groove, and a pair of clamping grooves are arranged at the upper and lower ends of the module fixing seat. The clamping grooves are matched with the clamping hooks, so as to realize the detachable installation of the module fixing seat on the panel body. In addition, a containing space is formed between the module fixing seat and the panel body, the dust cover is slidably arranged in the containing space, and a torsion spring is arranged between the upper end of the dust cover and the corresponding side wall of the containing space. As can be seen, the panel body of the existing network panel needs to be matched with the module fixing seat to form a containing space, and then the dust cover and the torsion spring are slidably installed in the containing space. In this structure, the dust cover itself is not connected with the panel body or the module fixing seat, which leads to the problem that the dust cover, the torsion spring and the module fixing seat need to be simultaneously limited during installation. Since many structures need to be limited, the assembly displacement problem is prone to occur, which affects the installation efficiency. In addition, there are many installation links in the whole process, which leads to the increase of production cost and is not conducive to large-scale production and manufacturing. SUMMARY

[0004] In view of the above problems existing in the prior art, the present application provides a novel network panel, which is characterized in that a through sliding groove is formed on both sides of the plug-in interface of the panel body, and a connecting leg with a barb is arranged on both sides of the push door, and the two connecting legs are clamped by the barbs after penetrating through the corresponding two sliding grooves, so that the push door and the panel body are directly connected by sliding, thereby eliminating the need for a module fixing seat for compression, reducing the assembly steps, and directly realizing the connection and limitation of the push door and the panel body, avoiding the assembly displacement problem, improving the installation efficiency, reducing the production cost, and being beneficial to large-scale production and manufacturing.

[0005] The specific technical solutions are as follows:

[0006] The novel network panel comprises a panel body and a push door, and is characterized in that it further comprises: a telescopic straight spring, a plurality of plug-in interfaces are formed on the panel body, a sliding groove parallel to each other is formed on both sides of each plug-in interface, and each sliding groove penetrates through the panel body, the push door is attached to the panel body and located at the plug-in interface, a connecting leg extending towards the same side is arranged on both sides of the push door, a clamping leg is arranged on the side of each connecting leg away from the push door, the two connecting legs are respectively arranged in the two sliding grooves, the clamping leg of each connecting leg abuts against the groove wall of the corresponding sliding groove, and a telescopic straight spring is arranged in each sliding groove, and the two ends of the telescopic straight spring respectively abut against the connecting leg and the groove wall of the sliding groove.

[0007] The novel network panel, wherein, further comprises a cover, the cover is arranged on the side of the panel body provided with the push door, the cover comprises a cover body and a surrounding edge, a plurality of avoiding openings corresponding to the plug-in interfaces are formed on the cover body, the surrounding edge is arranged on the outer side of the cover body along the side extending towards the cover body, the cover body is attached to the surface of the panel body, and the surrounding edge is arranged outside the side wall of the panel body.

[0008] The novel network panel, wherein, a plurality of first label grooves are formed on the panel body, each plug-in interface corresponds to a first label groove, a plurality of second label grooves corresponding to the first label grooves are formed on the cover, and a label cover plate is arranged in each second label groove.

[0009] The novel network panel, wherein, each sliding groove comprises a front side groove and a rear side through groove, one side of the front side groove is communicated with the plug-in interface, the front side groove is located on the side of the panel body provided with the push door, the rear side through groove is arranged on the groove bottom of the corresponding front side groove and penetrates through the panel body, the two sides of the push door are slidingly arranged in the front side grooves of the two sliding grooves, the two connecting legs of the push door penetrate through the rear side through grooves of the two sliding grooves, and the clamping leg of the connecting leg abuts against the groove wall of the corresponding rear side through groove.

[0010] The new network panel, wherein, along the moving direction of the push door, one end of the sliding groove is provided with a first clamping block, the connecting leg of the push door is provided with a second clamping block corresponding to the first clamping block, and the two ends of the telescopic straight spring are respectively sleeved on the first clamping block and the second clamping block.

[0011] The new network panel, wherein the width of the avoiding opening of the cover is less than or equal to the interval between the opposite sides of the two front side grooves.

[0012] The new network panel, wherein the push door is provided with a protruding knob, the knob is a long strip structure, and the length of the knob is consistent with the width of the avoiding opening on the cover.

[0013] The new network panel, wherein the top of the panel body is provided with a plurality of clamping holes, the inner wall of the surrounding edge of the cover is provided with a plurality of protrusions corresponding to the clamping holes, and the bottom of the panel body is provided with a recessed avoiding groove, the avoiding groove is provided with a first connecting structure, and the inner wall of the surrounding edge of the panel is provided with a second connecting structure detachably connected with the first connecting structure.

[0014] The new network panel, wherein the first connecting structure includes a slot and a first limiting block, the second connecting structure includes an embedded block and a second limiting block, the slot is recessed on the groove bottom of the avoiding groove, the two sides of the slot opening are provided with first limiting blocks protruding into the slot, and the embedded block is provided on the inner wall of the surrounding edge and extends towards the slot, the two sides of the embedded block are provided with second limiting blocks corresponding to the first limiting blocks.

[0015] The new network panel, wherein the first limiting block is provided with a first guide slope on the side close to the groove bottom and close to the side edge of the cover, and the second limiting block is provided with a second guide arc surface on the side close to the surrounding edge and close to the side edge of the panel body.

[0016] The technical scheme has the following positive effects:

[0017] The novel network panel has the advantages that the sliding grooves are arranged on both sides of the plug-in interface of the panel body, the connecting feet extending to the same side are arranged on both sides of the push door, each connecting foot is provided with a clamping foot, the connecting feet with the clamping feet are inserted into the sliding grooves and abut against the sliding grooves in the direction, the push door is directly connected with the panel body, the opening and closing of the push door are realized by sliding the connecting feet in the sliding grooves, the elastic force of the push door is provided by the elastic force of the elastic straight springs, the push door and the elastic straight springs are directly connected and installed on the panel body, no additional module fixing seat is needed for limiting, the structure is simpler, the assembly steps are less, the assembly displacement problem is avoided, the installation efficiency is improved, the production cost is reduced, large-scale production and manufacturing are facilitated, the elastic force of the push door is provided by the elastic force of the elastic straight springs on both sides, the uniformity of the force during the movement of the push door is maintained, the stability of the force point is maintained, the balance extension is realized, the push door is pushed and pulled, the jamming problem caused by the change of the force point and the force direction during the movement of the existing torsional spring structure is avoided, the smoothness of the movement of the push door is improved, the deformation times of the axial extension are increased compared with the torsional deformation, the service life is longer, and the use cost is lower. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 Structure diagram of one view angle of an embodiment of a novel network panel of the utility model;

[0019] Figure 2 Structure diagram of another view angle of an embodiment of a novel network panel of the utility model;

[0020] Figure 3 Exploded view of a novel network panel of the utility model;

[0021] Figure 4 Structure diagram of a panel body of a novel network panel of the utility model;

[0022] Figure 5 Structure diagram of a push door of a novel network panel of the utility model;

[0023] Figure 6 Structure diagram of a cover of a novel network panel of the utility model.

[0024] In the drawings: 1, panel main body; 11, plug interface; 12, sliding groove; 13, first label slot; 14, card hole; 15, avoiding groove; 16, embedding groove; 17, first limiting block; 121, front side groove; 122, rear side through groove; 123, first clamping block; 171, first guide inclined surface; 2, push door; 21, connecting leg; 22, clamping leg; 23, second clamping block; 24, pushing block; 3, telescopic straight spring; 4, face cover; 41, cover body; 42, surrounding edge; 43, protruding block; 44, embedding block; 45, second limiting block; 411, avoiding opening; 412, second label slot; 451, second guide curved surface; 5, label cover plate; 51, label. DETAILED DESCRIPTION

[0025] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the following embodiments are combined with the accompanying drawings to illustrate the utility model. Figure 1 to the accompanying drawings Figure 6 The technical solutions of the utility model are described in detail, but the following content is not a limitation of the utility model.

[0026] Figure 1 A perspective view of an embodiment of the novel network panel of the utility model; Figure 2 Another perspective view of an embodiment of the novel network panel of the utility model; Figure 3 An exploded view of the novel network panel of the utility model. Figure 1 , Figure 2 and Figure 3 As shown in the drawings, the novel network panel provided by the embodiment comprises a panel main body 1, a push door 2, a telescopic straight spring 3 and a face cover 4, at this time, the push door 2 and the telescopic straight spring 3 are installed on the panel main body 1, and the face cover 4 is covered on the outside of the panel main body 1, realizing external decoration and outside protection.

[0027] Figure 4 A structural view of the panel main body of the novel network panel of the utility model; Figure 5 A structural view of the push door of the novel network panel of the utility model. Figures 1 to 5As shown, a plurality of plug interfaces 11 are formed on the panel body 1, and the number of plug interfaces 11 can be selected according to actual wiring requirements, such as single-port structure, double-port structure, four-port structure, etc. In addition, a sliding groove 12 parallel to each other is formed on both sides of each plug interface 11, and the arrangement direction of the sliding groove 12 is consistent with the length direction of the plug interface 11. In addition, each sliding groove 12 penetrates the panel body 1, thereby providing conditions for directly limiting and installing the connecting feet 21 of the push door 2 on the panel body 1. At this time, the push door 2 is attached to the panel body 1 and located at the plug interface 11, and the opening or closing of the plug interface 11 is realized by sliding the push door 2 on the panel body 1. In addition, the connecting feet 21 extending towards the same side are arranged on both sides of the push door 2, and the connecting feet 21 on both sides of the push door 2 are provided with the clamping feet 22, that is, the connecting feet 21 with the clamping feet 22 at the end are arranged on both sides of the push door 2. During installation, the two connecting feet 21 are respectively arranged in the two sliding grooves 12, and the clamping feet 22 of each connecting foot 21 abut against the groove wall of the corresponding sliding groove 12, that is, the connecting feet 21 are inserted into the sliding grooves 12 to realize the sliding of the connecting feet 21 in the sliding grooves 12, and the clamping feet 22 prevent the connecting feet 21 from being pulled out of the corresponding sliding grooves 12, that is, the connecting feet 21 of the push door 2 are directly and stably connected on the panel body 1, and the sliding of the push door 2 on the panel body 1 can be maintained, without the need for additional installation limiting of the existing market setting module fixed seat, the structure is simpler, and the installation process only needs to be connected with the connecting feet 21, thereby reducing the assembly link, effectively avoiding the assembly displacement problem, improving the installation efficiency, reducing the production cost, and being beneficial to large-scale production and manufacturing. In addition, a telescopic straight spring 3 is arranged in each sliding groove 12, and the two ends of the telescopic straight spring 3 abut against the connecting feet 21 and the groove wall of the sliding groove 12, that is, the two sides of the push door 2 are pushed by the telescopic straight spring 3, the two sides of the push door 2 are provided with the elastic force of the telescopic straight spring 3 for resetting, the automatic resetting of the push door 2 after movement is realized, and the uniformity of the force and the invariability of the force point during the movement of the push door 2 are also maintained, the telescopic straight spring 3 is balanced and stretched, and is pushed and pulled, thereby maintaining the stability of the push door 2 during movement, effectively avoiding the jamming problem caused by the change of the force point and the force direction during movement of the existing torsional spring structure, improving the smooth effect of the push door 2 during movement, and making the use more smooth. In addition, compared with the torsional deformation mode of the existing torsional spring structure, the telescopic straight spring 3 has better deformation durability, more deformation times, and longer service life, thereby reducing the use cost.

[0028] Figure 6 A structural diagram of a face cover of a novel network panel. Figure 1 , Figure 2 and Figure 6As shown, the panel body 1 is provided with a side of the push door 2 is also provided with a face cover 4, at this time, the face cover 4 comprises a cover body 41 and a surrounding edge 42, preferably, the cover body 41 and the surrounding edge 42 are integrated structure, better integrity, higher structural strength. And, a plurality of escape ports 411 corresponding to the plug-in port 11 are formed on the cover body 41, so that the plug-in port 11 is not covered by the face cover 4. In addition, the surrounding edge 42 extends along the outer side of the cover body 41 and towards the side of the cover plate, and the cover body 41 is attached to the surface of the panel body 1, which covers the front of the panel body 1 through the cover body 41, and covers the side of the panel body 1 through the surrounding edge 42, which meets the decoration and protection requirements.

[0029] More specifically, a plurality of first label grooves 13 are formed on the panel body 1, each plug-in port 11 corresponds to a first label groove 13, ensuring that each plug-in port 11 can have corresponding label 51 information subsequently. At the same time, a plurality of second label grooves 412 corresponding to the first label grooves 13 are formed on the face cover 4, during installation, the second label grooves 412 are stacked in the first label grooves 13, and the label 51 placement space corresponding to the plug-in port 11 is formed by combination, which meets the label 51 placement requirements. In addition, a label cover plate 5 is installed in each second label groove 412, preferably, the label cover plate 5 is made of transparent material, such as acrylic material, which can clearly and conveniently identify the label 51. And, the upper end or lower end of the label cover plate 5 is hinged to the two side walls of the second label groove 412, and the opening or closing of the second label groove 412 is realized by turning the label cover plate 5, so as to facilitate the replacement and placement of the label 51, and the structure design is more reasonable.

[0030] More specifically, each sliding groove 12 on the panel body 1 further comprises a front side groove 121 and a rear side through groove 122, at this time, one side of the front side groove 121 is communicated with the plug-in port 11, that is, the space expansion of both sides of the plug-in port 11 is realized through the front side groove 121, and the front side groove 121 is located on the side of the panel body 1 where the push door 2 is arranged, that is, the space expanded by the front side groove 121 on both sides of the plug-in port 11 can cooperate with the push door 2. At the same time, the rear side through groove 122 is arranged on the groove bottom of the corresponding front side groove 121 and penetrates the panel body 1, that is, the penetration of the sliding groove 12 on the panel body 1 is realized through the rear side through groove 122, which provides conditions for the installation of the connecting feet 21 on the push door 2. During installation, the two sides of the push door 2 are slidingly arranged in the front side groove 121 of the two sliding grooves 12, realizing the embedded installation of the push door 2 on the panel body 1, avoiding the problem that the push door 2 protrudes from the front of the panel body 1, causing the face cover 4 to be unable to be closely attached, and also providing a guide for the sliding of the push door 2 through the front side groove 121, maintaining the stability of the movement of the push door 2, so that the movement of the push door 2 is smoother. In addition, the two connecting feet 21 of the push door 2 respectively penetrate the rear side through groove 122 of the two sliding grooves 12, and the clamping leg 22 of the connecting feet 21 is abutted against the groove mouth along of the corresponding rear side through groove 122, that is, the penetration of the connecting feet 21 through the panel body 1 is provided through the rear side through groove 122, and also provides a cooperation basis for the clamping leg 22, meeting the use requirement that the push door 2 is directly connected to the panel body 1 and will not fall off.

[0031] More specifically, in the moving direction of the push door 2, a first clamping block 123 is further arranged at one end of the sliding groove 12, the first clamping block 123 extends towards the connecting feet 21 of the push door 2, and a second clamping block 23 corresponding to the first clamping block 123 is further arranged on the connecting feet 21 of the push door 2, and when the connecting feet 21 are installed in place in the sliding groove, the second clamping block 23 extends towards the first clamping block 123 and the two are coaxially arranged. During installation, the two ends of the telescopic straight spring 3 are respectively sleeved on the first clamping block 123 and the second clamping block 23, that is, the stable installation of the telescopic straight spring 3 in the sliding groove is realized through the first clamping block 123 and the second clamping block 23, preventing the telescopic straight spring 3 from falling out of the sliding groove during use, and improving the structural stability.

[0032] More specifically, the width of the avoiding opening 411 of the face cover 4 is less than or equal to the distance between the opposite sides of the two front side grooves 121, so that after the two sides of the push door 2 are slidingly arranged in the front side groove 121, and when the face cover 4 is covered on the panel body 1, the face cover 4 can cover the part of the push door 2 located in the front side groove 121, further preventing the push door 2 from falling off the panel body 1, and also improving the aesthetic appearance.

[0033] More specifically, a protruding knob 24 is arranged on the push door 2, so that when the user needs to plug the connector, the knob 24 can be pushed by the finger to move the push door 2, thereby opening the plug-in port 11, making the use more convenient. In addition, the knob 24 is arranged in a long strip structure, and the length of the knob 24 is consistent with the width of the avoiding hole 411 on the cover 4, which increases the contact surface between the knob 24 and the user's finger, improves the convenience of use, and also guides the movement of the knob 24 through the wall of the avoiding hole 411, further improves the stability of the push door 2 when moving, and improves the smoothness of the movement.

[0034] More specifically, a plurality of clamping holes 14 are arranged on the top of the panel body 1, and a plurality of protrusions 43 corresponding to the clamping holes 14 are arranged on the inner wall of the surrounding edge 42 of the cover 4. When the cover 4 is installed on the panel body 1, the protrusions 43 are clamped into the corresponding clamping holes 14 to realize the clamping connection of the top of the panel and the panel body 1. At the same time, a recessed avoiding groove 15 is arranged on the bottom of the panel body 1, which provides a deformation space for the deformation of the bottom of the surrounding edge 42. At this time, the first connecting structure is arranged in the avoiding groove 15, and the second connecting structure is arranged on the inner wall of the surrounding edge 42 of the panel, which is detachably connected with the first connecting structure. The first connecting structure and the second connecting structure realize the detachable connection of the bottom of the cover 4 and the bottom of the panel body 1, thereby facilitating the disassembly and assembly of the cover 4 on the panel body 1.

[0035] More specifically, the first connecting structure arranged on the panel body 1 further comprises the embedding groove 16 and the first limiting block 17, and the second connecting structure arranged on the surrounding edge 42 of the cover 4 further comprises the embedding block 44 and the second limiting block 45. At this time, the embedding groove 16 is recessed on the groove bottom of the avoiding groove 15, that is, the embedding groove 16 is further recessed on the groove bottom of the avoiding groove 15, and the first limiting block 17 protruding into the groove is arranged on both sides of the groove opening of the embedding groove 16. The embedding groove 16 provides the embedding space for subsequent cooperation with the embedding block 44, and the limiting structure is formed at the groove opening of the embedding groove 16 through the first limiting block 17. At the same time, the embedding block 44 is arranged on the inner wall of the surrounding edge 42 and extends towards one side of the embedding groove 16, and the second limiting block 45 corresponding to the first limiting block 17 is arranged on both sides of the embedding block 44, so that when the cover 4 is installed on the panel body 1, the top of the two is clamped through the cooperation of the clamping hole 14 and the protruding block 43, and the bottom of the two is connected by embedding the embedding block 44 into the embedding groove 16 and preventing the embedding block 44 from being taken out of the embedding groove 16 by the first limiting block 17 pressing the second limiting block 45, thereby realizing the connection of the bottom of the two and meeting the use requirement of the cover 4 installed on the panel body 1. In addition, when it is needed to take the cover 4 off the panel body 1, only the surrounding edge 42 of the cover 4 needs to be squeezed upward from the bottom, the avoiding groove 15 provides space for the deformation of the surrounding edge 42, so that the embedding block 44 can drive the second limiting block 45 to move upward, so that the second limiting block 45 and the first limiting block 17 are staggered and no longer limited by the first limiting block 17, so that the embedding block 44 can be taken out of the embedding groove 16, that is, the separation of the bottom of the cover 4 and the panel body 1 is realized, and then the cover 4 is lifted as a whole, so that the protruding block 43 is taken out of the corresponding clamping hole 14, the separation of the top of the cover 4 and the panel body 1 is realized, and the disassembly and assembly can be realized without the aid of tools, which is more convenient to use.

[0036] More specifically, the first limiting block 17 is provided with a first guide inclined surface 171 on the side edge close to the face cover 4 and close to the groove bottom of the slot 16, that is, the first guide inclined surface 171 guides the first time contact position of the first limiting block 17 with the second limiting block 45, and the second limiting block 45 is provided with a second guide arc surface 451 on the side edge close to the panel body 1 and close to the surrounding edge 42, so that the second guide arc surface 451 guides the first time contact position of the second limiting block 45 with the first limiting block 17, so that when the embedded block 44 is embedded into the slot 16, the second guide arc surface 451 can be attached to the first guide inclined surface 171, and the embedded block 44 and the two side second limiting blocks 45 can be deformed by extruding the embedded block 44, so that the second limiting block 45 can pass the first limiting block 17, and restore to the original shape after passing completely, so that the first limiting block 17 can block the reverse movement of the second limiting block 45, thereby limiting the embedded block 44 from being pulled out of the slot 16, improving the reliability of the face cover 4 after installation, and facilitating the pressing assembly of the face cover 4 through the cooperation of the first guide inclined surface 171 and the second guide arc surface 451, so that the embedded block 44 can accurately and smoothly enter the slot 16, and the structure design is more reasonable.

[0037] The novel network panel provided by the embodiment comprises a panel body 1, a push door 2 and a telescopic straight spring 3. The push door 2 is attached to the front surface of the panel body 1 and is provided with connecting feet 21 extending in the same direction on both sides thereof, and each connecting foot 21 is provided with a clamping foot 22. After the two connecting feet 21 pass through the two sliding grooves 12 respectively and abut against the groove wall of the corresponding sliding groove 12 through the clamping foot 22, the push door 2 and the panel body 1 are directly and reliably connected, without the need of additionally arranging a module fixing seat for limiting, so that the structure is simpler, the assembly link is fewer, the assembly displacement problem is effectively avoided, the installation efficiency is improved, and the production cost is reduced. Meanwhile, the telescopic straight spring 3 is arranged in each sliding groove 12 and abuts between the groove wall of the sliding groove 12 and the connecting foot 21, so that both sides of the push door 2 are stressed, the uniformity of stress and the stability of stress point during the movement of the push door 2 are maintained, the balanced telescopic and simultaneous push-pull use requirements are met, the moving jamming problem is reduced compared with the existing torsional spring structure, the smoothness of the movement of the push door 2 is improved, the number of deformation times is increased, the service life is prolonged, and the use cost is reduced.

[0038] The above is only the preferred embodiment of the present application, and does not limit the implementation and protection scope of the present application. For those skilled in the art, it should be realized that any equivalent replacement and obvious change obtained by applying the content of the present application can be included in the protection scope of the present application.

Claims

1. A new type of network panel comprising a panel body and a push door, characterized in that, Also include: The panel body is provided with a plurality of insertion interfaces, each of the insertion interfaces is provided with a sliding groove which is parallel to each other and penetrates the panel body, the push door is attached to the panel body and located at the insertion interface, the push door is provided with a connecting leg which extends to the same side, the connecting leg is provided with a clamping leg which is away from the push door, the connecting leg is penetrated into the sliding groove, and the clamping leg is attached to the groove wall of the sliding groove.

2. The novel network panel as claimed in claim 1, wherein, Also include a cover, the cover is provided on the side of the panel body which is provided with the push door, the cover includes a cover body and a surrounding edge, the cover body is provided with a plurality of avoiding openings which correspond to the insertion interfaces respectively, the surrounding edge extends to the side of the cover body which is away from the cover body, the cover body is attached to the surface of the panel body, and the surrounding edge is surrounded by the side wall of the panel body.

3. The new network panel according to claim 2, wherein, The panel body is provided with a plurality of first label grooves, each of the insertion interfaces is provided with a first label groove, and the cover is provided with a plurality of second label grooves which correspond to the first label grooves respectively, and each of the second label grooves is provided with a label cover plate.

4. The new network panel of claim 2, wherein, Each of the sliding grooves includes a front side groove and a rear side through groove, one side of the front side groove is communicated with the insertion interface, the front side groove is located on the side of the panel body which is provided with the push door, the rear side through groove is provided on the groove bottom of the corresponding front side groove and penetrates the panel body, the push door is slidably arranged in the front side groove of the sliding groove, the connecting leg of the push door is penetrated through the rear side through groove of the sliding groove, and the clamping leg of the connecting leg is attached to the groove wall of the corresponding rear side through groove.

5. The novel network panel as claimed in claim 1, wherein, In the moving direction of the push door, one end of the sliding groove is provided with a first clamping block, the connecting leg of the push door is provided with a second clamping block which corresponds to the first clamping block, and the two ends of the telescopic straight spring are sleeved on the first clamping block and the second clamping block respectively.

6. The novel network panel as claimed in claim 4, wherein, The width of the avoiding opening of the cover is less than or equal to the distance between the opposite sides of the two front side grooves.

7. The new network panel according to claim 2, wherein, The push door is provided with a protruding knob, the knob is a long strip structure, and the length of the knob is consistent with the width of the avoiding opening on the cover.

8. The new network panel of claim 2, wherein, The top of the panel body is provided with a plurality of clamping holes, the inner wall of the surrounding edge of the cover is provided with a plurality of protrusions which correspond to the clamping holes respectively, the bottom of the panel body is provided with a recessed avoiding groove, the avoiding groove is provided with a first connecting structure, and the inner wall of the surrounding edge of the panel is provided with a second connecting structure which is detachably connected with the first connecting structure.

9. The novel network panel of claim 8, wherein, The first connecting structure comprises a slot and a first limiting block, and the second connecting structure comprises a block and a second limiting block; the slot is recessed on the bottom of the avoiding groove, and the two sides of the slot opening are provided with the first limiting blocks protruding into the slot; meanwhile, the block is arranged on the inner wall of the surrounding edge and extends towards one side of the slot, and the two sides of the block are provided with the second limiting blocks corresponding to the first limiting blocks one by one.

10. The novel network panel as claimed in claim 9, wherein, The first limiting block is provided with a first guide inclined surface on the side close to the bottom of the slot and the side edge close to the face cover, and the second limiting block is provided with a second guide arc surface on the side close to the surrounding edge and the side edge close to the panel body.

Citation Information

Patent Citations

  • Network panel

    CN206293690U