Dry-hanging resin plate structure

Through the dry-hung resin plate structure, including resin plate, skeleton structure, adjustment structure and angle docking structure, the problem of resin plate installation quality and insufficient angle docking accuracy in the prior art is solved, and the stable support and high-precision docking of resin plates are achieved, and the construction efficiency and decorative effect are improved.

CN222909302UActive Publication Date: 2025-05-27BEIJING NO 5 CONSTR ENG GRP
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Patent Information

Application Number
CN202420855721.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-24
Publication Date
2025-05-27
Estimated Expiration
2034-04-24

AI Technical Summary

Technical Problem

The prior art can easily lead to quality problems such as bending and inclination of the board surface, loose pendants, and unstandard joints when installing resin boards. The accuracy of docking of resin boards at the corners of the building is poor, the installation process is time-consuming and labor-intensive, and the wall integrity is not good.

Method used

The dry-hung resin plate structure is adopted, including resin plate, skeleton structure, adjustment structure and angle docking structure. There are multiple sets of mounting holes on the back of the resin plate, and the skeleton structure includes vertical keel and horizontal keel. The adjustment structure realizes stable fixation of the resin plate through sliding groove rod, limit structure and sleeve structure. The angle docking structure achieves high-precision docking through arc-shaped fixing rod, telescopic rod, rotating structure and included angular structure.

Benefits of technology

It realizes stable support and high-precision docking of resin boards, simplifies the installation process, improves construction speed and safety, and beautifies the decorative effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dry-hanging resin plate structure, and relates to the field of building decoration. Comprising a framework structure, the framework structure is arranged on a building wall body and comprises a vertical keel and a transverse keel, and the vertical keel is further provided with a plurality of sets of L-shaped fixing pieces so as to be connected with the building wall body; the adjusting structure comprises a sliding groove rod, a limiting structure and a sleeve structure, the sliding groove rod is provided with a fixing piece to be connected with the vertical keel, and the sleeve structure sleeves the transverse keel to be slidably connected with the sliding groove rod; the corner butt joint structure comprises arc-shaped fixing rods, telescopic rods, a rotating structure and an included angle structure, the arc-shaped fixing rods are arranged on the vertical keels on the two sides of the corner, the telescopic rods are arranged on the arc-shaped fixing rods and connected with the rotating structure and the included angle structure, and the rotating structure can adjust the angle of the included angle structure. The utility model has the advantages of simpler structure, easiness in assembly and disassembly, better support and stability for the resin plates, easiness in butt joint of the resin plates at the corners, higher accuracy and better beautifying and decorating effects.
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Description

Technical Field

[0001] The utility model relates to the field of building decoration, and particularly relates to a dry-hanging resin board structure. Background Art

[0002] The interior wall decoration is the highlight of the entire interior decoration of the building and the main part reflecting the personality. Nowadays, various wall facing materials have been applied to various building constructions, and the construction processes are also different, with both advantages and disadvantages in actual applications. As a building with special usage functions, medical buildings have high requirements for the antibacterial, anti-pollution, and anti-impact properties of the interior wall facing materials; there are special requirements for the construction speed of the interior wall decoration surface, the flatness, safety, reliability of the installation of the facing board, and the independent disassembly of the facing board.

[0003] In the existing technical solutions, the installation method of inserting and connecting the hanging components up and down is adopted to fix the resin board surface. That is, first, a keel system is installed on the building wall, then keel hangers are installed on the keel, and board hangers are correspondingly installed on the resin board surface. Then, the board hangers are hung and fixed on the keel hangers from above. However, this construction method usually has some problems, such as easy to cause quality problems such as bending and tilting of the resin board surface, loosening of the hangers, and non-straight joints. Moreover, the docking of the resin board at the building corner is relatively troublesome, the docking accuracy is poor, and it is necessary to seal the gap with glue, which is time-consuming and laborious and the wall integrity is not good, and the installation and disassembly are relatively difficult. Content of the Utility Model

[0004] Aiming at the deficiencies of the existing technology, the purpose of the utility model is to provide a dry-hanging resin board structure, which has the effects of relatively simple structure, easy disassembly and assembly, good supporting effect on the resin board, good stability, high docking accuracy of the resin board at the building wall corner, and good beautifying and decorative effect.

[0005] The above technical purpose of the utility model is achieved through the following technical solutions: The utility model provides a dry-hanging resin board structure, including:

[0006] A resin board, and a plurality of groups of installation holes are arranged on the back of the resin board;

[0007] A skeleton structure, which is arranged on the building wall and includes vertical keels and horizontal keels. The vertical keels are also provided with a plurality of groups of L-shaped fixing pieces for connecting with the building wall, and the horizontal keels are arranged between the vertical keels;

[0008] An adjusting structure, which includes a sliding groove rod, a limiting structure and a sleeve structure. One side of the sliding groove rod is provided with a fixing part for connecting with the vertical keel. The sleeve structure is sleeved on the horizontal keel and is slidably connected with the sliding groove rod. The limiting structure is arranged on both sides of the sliding groove rod to limit the sliding of the sleeve structure;

[0009] Corner docking structure, the corner docking structure can dock the resin plates at the corners of the building wall, including an arc-shaped fixing rod, a telescopic rod, a rotating structure and an included angle structure. The arc-shaped fixing rod is arranged on the vertical keels on both sides of the corner, the telescopic rod is arranged on the arc-shaped fixing rod and connected to the rotating structure and the included angle structure. The included angle structure can clamp the resin plates on both sides of the corner, and the rotating structure can rotate to adjust the clamping angle of the included angle structure.

[0010] In a specific embodiment, coupling members are provided at both ends of the arc-shaped fixing rod to be connected to the vertical keel at the corner of the building wall, and a slideway is further arranged on the arc-shaped fixing rod to be slidably connected to a sliding member arranged at one end of the telescopic rod.

[0011] In a specific embodiment, limit blocks are arranged at both ends of the slideway to limit the sliding of the sliding member. The sliding member includes a slider structure slidably connected to the slideway and an annular locking member sleeved on the arc-shaped fixing rod. The annular locking member can fix the sliding member and the slideway in an adjusted position as a whole.

[0012] In a specific embodiment, a fixing frame and a support rod are further arranged on the structure at one end of the telescopic rod. The rotating structure is a rotating shaft structure, and at least two groups are provided. The support rod is arranged in the fixing frame, and the support rod passes through the rotating shaft structure to support it. The rotating structure can rotate around the support rod as an axis.

[0013] In a specific embodiment, the included angle structure includes a first clamping part and a second clamping part. The first clamping part is connected to one group of the rotating shaft structures, and the second clamping part is connected to the remaining group of the rotating shaft structures. Both the first clamping part and the second clamping part are U-shaped clamping groove structures.

[0014] In a specific embodiment, the number of the fixing members is multiple groups, a plurality of coupling holes are arranged at the groove of the sliding groove rod, and the fixing members can pass through the coupling holes to form a coupling. The number of the sleeve structures is multiple groups to fix the horizontal keel and the sliding groove rod as a whole. A sliding block is further arranged between the sleeve structure and the sliding groove rod.

[0015] In a specific embodiment, a thread groove and a threaded rod are arranged at the top structure of the sleeve structure to be connected to the horizontal keel. A plurality of groups of coupling rods are further arranged between the sleeve structure and the sliding block. The coupling rods are telescopic structures.

[0016] In a specific embodiment, the sleeve structure is further provided with a fixing plate for fixing with the resin plate, and the mounting hole uses a plug-in member or a clamping member to fix the horizontal keel and the resin plate into a whole.

[0017] In a specific embodiment, the number of the horizontal keels between the vertical keels is multiple groups to adapt to the size of the resin plate, and a reinforcing rod is further provided between the sleeve structures.

[0018] In a specific embodiment, multiple groups of screws are provided on one side structure of the L-shaped fixing piece to be coupled with the vertical keel, and multiple groups of anchor fittings are provided on the other side structure to be coupled with the building wall.

[0019] In summary, the utility model has the following beneficial effects:

[0020] 1. The structure is relatively simple and easy to disassemble and assemble;

[0021] 2. It has a good supporting effect on the resin plate. By sliding the horizontal keel, it is easier to dock the resin plate;

[0022] 3. It is easier to dock the resin plates at the corner of the building wall, with higher docking accuracy and better beautification and decoration effects. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a top view of a dry-hanging resin plate structure;

[0024] Figure 2 is a schematic diagram of the transfer docking structure of a dry-hanging resin plate structure;

[0025] Figure 3 is a schematic diagram of the connection relationship between the sleeve structure and the reinforcing rod of a dry-hanging resin plate structure.

[0026] Reference numerals: 1, resin plate; 101, mounting hole; 2, skeleton structure; 201, vertical keel; 202, horizontal keel; 203, L-shaped fixing piece; 204, screw; 205, anchor fitting; 3, building wall; 4, adjusting structure; 401, sliding groove rod; 402, limiting structure; 403, sleeve structure; 404, fixing piece; 405, coupling hole; 406, sliding block; 407, thread groove; 408, threaded rod; 409, coupling rod; 410, fixing plate; 411, reinforcing rod; 5, corner docking structure; 501, arc-shaped fixing rod; 502, telescopic rod; 503, rotating structure; 504, included angle structure; 505, coupling piece; 506, slideway; 507, sliding piece; 508, limiting block; 509, slider structure; 510, annular locking piece; 511, fixing frame; 512, support rod; 513, first clamping part; 514, second clamping part. Detailed implementation manners

[0027] The present utility model will be further described in detail below with reference to the accompanying drawings.

[0028] In order to more clearly understand the above-mentioned objects, features and advantages of the present utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific implementation manners. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.

[0029] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present utility model is not limited by the specific embodiments disclosed below.

[0030] Next, refer to Figures 1 to 3 to describe what is provided according to some embodiments of the present utility model.

[0031] As Figures 1 to 3 shown, the first embodiment of the present utility model provides a dry-hanging resin board structure, including:

[0032] A resin board 1, and a plurality of groups of mounting holes 101 are provided on the back surface of the resin board 1;

[0033] A skeleton structure 2, the skeleton structure 2 is arranged on a building wall 3, including vertical keels 201 and horizontal keels 202, and a plurality of groups of L-shaped fixing pieces 203 are further provided on the vertical keels 201 to connect with the building wall 3, and the horizontal keels 202 are arranged between the vertical keels 201;

[0034] An adjusting structure 4, the adjusting structure 4 includes a sliding groove rod 401, a limiting structure 402 and a sleeve structure 403. A fixing member 404 is provided on one side structure of the sliding groove rod 401 to connect with the vertical keel 201, the sleeve structure 403 is sleeved on the horizontal keel 202 to slidably connect with the sliding groove rod 401, and the limiting structure 402 is arranged on both sides of the sliding groove rod 401 to limit the sliding of the sleeve structure 403;

[0035] Corner docking structure 5, the corner docking structure 5 can dock the resin plates 1 at the corners of the building wall 3, and includes an arc-shaped fixing rod 501, a telescopic rod 502, a rotating structure 503 and an included angle structure 504. The arc-shaped fixing rod 501 is arranged on the vertical keels 201 on both sides of the corner. The telescopic rod 502 is arranged on the arc-shaped fixing rod 501 and is connected to the rotating structure 503 and the included angle structure 504. The included angle structure 504 can clamp the resin plates 1 on both sides of the corner, and the rotating structure 503 can rotate to adjust the clamping angle of the included angle structure 504.

[0036] In this embodiment, it includes a resin plate 1, a skeleton structure 2, an adjusting structure 4, and a corner docking structure 5. The mounting holes 101 on the back of the resin plate 1 can be drilled according to the installation position, and the front-end structure of the resin plate 1 can perform operations such as drilling and grooving on the structure according to the specific requirements of medical buildings to meet the usage requirements of medical buildings. The number of vertical keels 201 and horizontal keels 202 is multiple groups. The vertical keels 201 can be pre-fixed to the building wall 3 through L-shaped fixing pieces 203. One side structure of the L-shaped fixing piece 203 can be coupled with the vertical keel 201, and the two are connected through threaded or plug-in parts. Multiple mounting holes are provided on the other side structure. The installation position of the L-shaped fixing piece 203 is adapted to the resin plate 1 to improve the stability of its support. The horizontal keels 202 are arranged between the vertical keels 201, and the number is multiple groups. The installation position is adapted to the position of the resin plate 1 to support it. The number of L-shaped fixing pieces 203 on the vertical keels 201 is multiple groups to improve the coupling strength between the vertical keels 201 and the building wall 3, and thus improve the stability of the overall structure. The fixing piece 404 is arranged in the groove structure of the sliding groove rod 401, and at least part of the structure can be connected to the vertical keel 201 through threaded connection or plug-in. The number of fixing pieces 404 is multiple groups to improve the coupling strength between the two. The number of sliding groove rods 401 between the vertical keels 201 is multiple groups to support and fix the horizontal keel 202 and the resin plate 1 connected thereto. An L-shaped support frame is sleeved on the vertical keel 201, and the L-shaped support frame can slide up and down on the vertical keel 201. At least part of the L-shaped support frame can support the bottom structure of the sliding groove rod 401 to assist the fixing piece 404 in fixing the sliding groove rod 401 and the vertical keel 201, and the fixing effect and stability are better. The limiting structure 402 can slide on the sliding groove rod 401 and can clamp the sleeve structure 403. Locking pieces are provided on both sides of the limiting structure 402 and can be connected to the sliding groove rod 401 to lock the position of its own structure, and then lock the position of the sleeve structure 403. An expansion structure is also provided between the sleeve structure 403 and the sliding groove rod 401. The expansion structure is a telescopic rod or a telescopic frame. One end structure of the expansion structure is provided with a sliding component that can be slidably connected to the sliding groove rod 401, and the other end structure is provided with a coupling plate to be connected to the sleeve structure 403. Multiple coupling parts are provided on the coupling plate to be connected to the sleeve structure 403 to improve the stability of the overall structure.The corner docking structure 5 can dock the resin board 1 located at the corner of the building wall 3 to play a role in auxiliary fixation and decoration. The arc-shaped fixing rod 501 has multiple specifications of different sizes for selection to adapt to resin boards 1 of different sizes. Clamping components for clamping the vertical keel 201 are provided on the structures at both ends of the arc-shaped fixing rod 501. The clamping components include a support rod and a clamping piece. The support rod can be telescopic or has multiple specifications of different lengths to be connected to the structure at one end of the arc-shaped fixing rod 501. The two are connected by welding, detachable threaded connection or snap connection. The structure at the other end is connected to the clamping piece. The clamping piece is of a U-shaped structure to clamp the vertical keel 201. Multiple holes are provided on the U-shaped structure to be fixed to the vertical keel 201 through threaded parts or plug-in parts. The number of arc-shaped fixing rods 501 is multiple groups to adapt to the size of the resin board 1. A chute structure is provided on the structure of the resin board 1 located in the inner circle. The telescopic rod 502 is slidably connected to the chute. Limit sliders are provided at both ends of the chute to limit the sliding of the telescopic rod 502. A fixing frame is provided between the telescopic rod 502 and the rotating structure 503. The fixing frame can support the rotating structure 503. The rotating structure 503 is a rotating shaft or a shaft rod structure. A clamping groove is provided on the rotating structure 503 to fix the included angle structure 504. The included angle structure 504 is composed of two clamping plates to clamp the side structures of the resin boards 1 on both sides at the corner. The two clamping plates can rotate independently around the rotating structure 503 to facilitate clamping of the side structures of the resin board 1. Rubber pads are also provided on the clamping plates for flexible clamping. A coating adapted to the color and texture of the resin board 1 is also applied on the structure of the clamping plate located on the outside to play a role in beautifying and decorating.

[0037] Thus, it can be seen that this structure is relatively simple, easy to disassemble and assemble, has a good supporting effect on the resin board 1, better stability, and is relatively easy to dock the resin board 1 at the corner of the building wall 3, with a higher docking accuracy and a better beautifying and decorating effect.

[0038] The second embodiment of the present utility model proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 2 shown, coupling parts 505 are provided at both ends of the arc-shaped fixing rod 501 to be connected to the vertical keel 201 located at the corner of the building wall 3. A slideway 506 is also provided on the arc-shaped fixing rod 501 to be slidably connected to a sliding part 507 provided at one end of the telescopic rod 502.

[0039] In this embodiment, the arc-shaped fixing rod 501 is provided with multiple specifications of different lengths to adapt to the building wall 3. The structures at both ends of the arc-shaped fixing rod 501 are provided with threaded grooves to be threadedly connected with the coupling member 505. The coupling member 505 includes a connecting rod and a clamping member. One end of the connecting rod is provided with a threaded section structure to be connected with the threaded groove, and the other end structure is fixed to the clamping member by welding or detachable connection. The detachable connection is a threaded connection or a snap connection. The clamping member is a U-shaped structure to clamp the vertical keel 201. Multiple holes are provided on the two sides of the U-shaped structure, and the clamping member and the vertical keel 201 can be fixed into a whole through screws or threaded rods. The number of arc-shaped fixing rods 501 between the vertical keels 201 is multiple groups to fix the overall structure of the horizontal keel 202 and the resin board 1, thereby improving the stability of the overall structure.

[0040] The third embodiment of the present invention proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 2 shown, limit blocks 508 are provided at both ends of the slideway 506 to limit the sliding of the sliding member 507. The sliding member 507 includes a slider structure 509 slidably connected to the slideway 506 and an annular locking member 510 sleeved on the arc-shaped fixing rod 501. The annular locking member 510 can fix the adjusted sliding member 507 and the slideway 506 into a whole.

[0041] In this embodiment, the limit block 508 can slide on the slideway 506 to clamp the sliding member 507. A locking member is provided on the limit block 508, and the locking member can be connected to the bottom structure of the slideway 506 to lock the position of the sliding member 507 on the slideway 506. At least part of the slider structure 509 is snap-connected to the slideway 506 to limit its own sliding to prevent slipping. A slot structure is provided on the side structure of the slider structure 509, and a fixing member is provided in the slot structure to fix the annular locking member 510. The fixing member and the two end structures of the annular locking member 510 are both detachably connected. The slider structure 509 slides to adjust the position of the sliding member 507 relative to the slideway 506, and the fixing member can lock the annular locking member 510 to lock the position of the sliding member 507. A rubber pad is also provided on the inner ring structure of the annular locking member 510 to avoid abrasion caused by contact with the arc-shaped fixing rod 501 and improve the service life of the structure.

[0042] The fourth embodiment of the present invention proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 2As shown, a fixing frame 511 and a support rod 512 are further provided on one end of the telescopic rod 502 in terms of structure. The rotating structure 503 is a rotating shaft structure, and at least two groups are provided. The support rod 512 is arranged in the fixing frame 511. The support rod 512 passes through the rotating shaft structure to support it. The rotating structure 503 can rotate with the support rod 512 as the axis.

[0043] In this embodiment, a through hole is provided on one end of the telescopic rod 502 in terms of structure. The through hole can be fixed to the side structure of the fixing frame 511 through a threaded rod or a fixing rod. A locking structure is provided on the telescopic rod 502 to lock the telescopic rod body. Card slots are provided at the top and bottom positions inside the fixing frame 511 to fix the support rod 512. A plurality of annular structures for supporting the rotating structure 503 are provided on the support rod 512. The annular structures are sleeved on the support rod 512 and are arranged at least above and below the rotating shaft structure to clamp it. Rubber pads are provided on the annular structures to flexibly clamp the rotating shaft structure, thereby improving the stability of the rotation of the rotating shaft structure.

[0044] The fifth embodiment of the present invention proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 2 shown, the included angle structure 504 includes a first clamping part 513 and a second clamping part 514. The first clamping part 513 is connected to one group of the rotating shaft structures, and the second clamping part 514 is connected to the remaining group of the rotating shaft structures. Both the first clamping part 513 and the second clamping part 514 are U-shaped clamping groove structures.

[0045] In this embodiment, the rotating shaft structures are arranged vertically, and there is a certain distance between them so that each group of rotating shaft structures can rotate independently. The first clamping part 513 is connected to the rotating shaft structure at the upper position, and the second clamping part 514 is connected to the rotating shaft structure at the lower position. Both the first clamping part 513 and the second clamping part 514 include a clamping component and a connecting rod connected thereto. The connecting rod has a certain curvature so that the two clamping components are on the same horizontal plane to clamp the corresponding position of the resin board 1. The clamping component includes a fixing plate and a telescopic plate. The side structure of the telescopic plate is arranged on the edge structure of the fixing plate. The telescopic plate can be telescoped to adjust the clamping size of the clamping component to adapt to the size of the resin board 1. A rubber structure is also provided on the clamping component to flexibly clamp the resin board 1. Dyes of the same color as the resin board 1 are provided on the structure of the included angle structure 504 located on the outside to decorate between the resin boards 1 at the corner, making it more beautiful.

[0046] The sixth embodiment of the present invention proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 1As shown, there are multiple groups of the fixing members 404. A plurality of coupling holes 405 are provided in the groove of the sliding groove rod 401. The fixing members 404 can pass through the coupling holes 405 to form a coupling. There are multiple groups of the sleeve structures 403 to fix the horizontal keel 202 and the sliding groove rod 401 into a whole. A sliding block 406 is further provided between the sleeve structure 403 and the sliding groove rod 401.

[0047] In this embodiment, the fixing members 404 are arranged at the coupling holes 405, and at least part of the structure is located on the back side of the sliding groove rod 401 for connection with the vertical keel 201. The fixing members 404 can be threaded rods or threaded nails. The installation position of the sliding groove rod 401 is adapted to the size and installation position of the resin board 1. After the position of the sliding groove rod 401 is determined, the structure at the position of the corresponding coupling hole 405 on the vertical keel 201 is drilled, so as to avoid excessive drilling holes affecting the strength of the vertical keel 201 itself. A rubber pad is further provided between the fixing members 404 and the sliding groove rod 401 to improve the seismic resistance and avoid damage to the structure caused by contact friction between the two, thereby affecting the service life of the structure. The number of the sleeve structures 403 is adapted to the size of the resin board 1 to improve the stability of its support and fixation. A plurality of fixing rods are provided on the sliding block 406 to fix the sleeve structure 403. At least part of the structure of the sliding block 406 is located inside the groove of the sliding groove rod 401 to limit the sliding of itself and avoid slipping off.

[0048] The seventh embodiment of the present utility model proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 1 shown, the top structure of the sleeve structure 403 is provided with a threaded groove 407 and a threaded rod 408 for connection with the horizontal keel 202. A plurality of coupling rods 409 are further provided between the sleeve structure 403 and the sliding block 406. The coupling rods 409 are telescopic structures.

[0049] In this embodiment, the threaded groove 407 has a certain height. The threaded rod 408 can be rotated so that part of its own structure is located in the threaded groove 407, so that when fixation is required, the two can be coupled by continuing to rotate. The front-end structure of the threaded rod 408 is rotated so that its own structure presses against the horizontal keel 202, thereby locking the position of the sleeve structure 403 on the horizontal keel 202. A plurality of connecting members are provided on the side structure of the sleeve structure 403 and are connected to one end structure of the coupling rod 409 by threaded connection or snap connection. The other end structure of the coupling rod 409 is a plate-like structure, and a plurality of through holes are provided on the plate-like structure. The sliding block 406 is provided with a fixing rod, and the fixing rod passes through the through hole to fix the two into a whole, thereby improving the stability of the overall structure. The telescopic coupling rod 409 is convenient for adjusting the position of the resin board 1 relative to the building wall 3, so as to facilitate wiring and routing inside the resin board 1.

[0050] The eighth embodiment of the present utility model proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 1 shown, the sleeve structure 403 is further provided with a fixing plate 410 for fixing with the resin board 1, and the mounting hole 101 fixes the horizontal keel 202 and the resin board 1 into a whole through a plug-in member or a snap-in member.

[0051] In this embodiment, a plurality of coupling holes and fixing members are provided on the structure of one side of the sleeve structure 403. The coupling holes can fix the sleeve structure 403 and the fixing plate 410 into a whole through threaded members. The number of fixing members is multiple groups, and at least they are arranged at the four corners of the sleeve structure 403. The fixing members are clamping members. Shallow grooves are provided at the four corners of the fixing plate 410, and the fixing members can clamp the shallow grooves to fix them. A thin rubber pad is provided on the structure of the contact surface between the fixing plate 410 and the resin board 1. The rubber pad can improve the stability of fixing the resin board 1. The fixing plate 410 is provided with multiple specifications of different sizes to match the size of the resin board 1, so as to improve the stability of the overall structure. The position and number of the mounting holes 101 can be drilled according to the size of the resin board 1 and the specific installation position.

[0052] The ninth embodiment of the present utility model proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figures 1 to 3 shown, the number of the horizontal keels 202 between the vertical keels 201 is multiple groups to match the size of the resin board 1, and a reinforcing rod 411 is further provided between the sleeve structures 403.

[0053] In this embodiment, the number of the horizontal keels 202 is set to match the size and weight of the resin board 1. Multiple groups of horizontal keels 202 can improve the stability of fixing the resin board 1, and avoid the separation of the resin board 1 and the horizontal keel 202 during subsequent use, resulting in damage to the structure or causing a safety accident. The reinforcing rod 411 is provided between the horizontally distributed horizontal keels 202. The reinforcing rod 411 is provided with multiple specifications of different lengths to match the size of the resin board 1. Removable connecting members are provided at the top and bottom positions of the sleeve structure 403. The connecting members can be threadedly connected or snap-connected with the reinforcing rod 411. The detachable connecting members facilitate the selection of whether to install the reinforcing rod 411 according to the size of the resin board 1, and avoid adding unnecessary loads.

[0054] The tenth embodiment of the present utility model proposes a dry-hanging resin board structure, and on the basis of any of the above embodiments, as Figure 1 shown, multiple groups of screws 204 are provided on the structure of one side edge of the L-shaped fixing piece 203 for coupling with the vertical keel 201, and multiple groups of anchor bolts 205 are provided on the structure of the other side edge for coupling with the building wall 3.

[0055] In this embodiment, the number of L-shaped fixing pieces 203 is multiple groups. Arranging them on the vertical keel 201 at a certain interval can improve the coupling strength between the two and the building wall 3, thereby enhancing the stability of the overall structure. A rubber pad is also provided on the structure of the contact surface between the L-shaped fixing piece 203 and the building wall 3. The rubber pad can improve the seismic resistance of the overall structure and play a certain buffering role. The L-shaped fixing piece 203 is provided with multiple different specifications to adapt to the size of the vertical keel 201. The L-shaped fixing piece 203 is an integrally formed structure or two steel parts are fixed into a whole by welding or threaded connection. Reinforcing ribs are also provided between the two side structures to improve the strength of the overall structure, thereby enhancing the reinforcement ability for the vertical keel 201 and the building wall 3.

[0056] In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. The specific embodiments are merely explanations of the present invention and not limitations thereof. Those skilled in the art can make modifications to this embodiment without creative contributions according to their needs after reading this specification, but as long as they are within the scope of the claims of the present invention, they are protected by the patent law.

Claims

1. A dry hanging resin board structure, characterized in that: include: A resin plate (1), wherein a plurality of groups of mounting holes (101) are provided on the back side of the resin plate (1); A skeleton structure (2), the skeleton structure (2) being arranged on a building wall (3), comprising a vertical keel (201) and a horizontal keel (202), the vertical keel (201) being further provided with a plurality of groups of L-shaped fixing plates (203) for connection with the building wall (3), and the horizontal keel (202) being arranged between the vertical keels (201); an adjustment structure (4), the adjustment structure (4) comprising a sliding groove rod (401), a limiting structure (402) and a sleeve structure (403), a structure on one side of the sliding groove rod (401) being provided with a fixing member (404) for connecting with the vertical keel (201), the sleeve structure (403) being sleeved on the horizontal keel (202) for sliding connection with the sliding groove rod (401), and the limiting structure (402) being provided on both sides of the sliding groove rod (401) for limiting the sliding of the sleeve structure (403); A corner docking structure (5), the corner docking structure (5) being capable of docking the resin panels (1) at the corners of the building wall (3), comprising an arc-shaped fixing rod (501), a telescopic rod (502), a rotating structure (503) and an angle structure (504), the arc-shaped fixing rod (501) being arranged on the vertical keels (201) at both sides of the corner, the telescopic rod (502) being arranged on the arc-shaped fixing rod (501) and connected to the rotating structure (503) and the angle structure (504), the angle structure (504) being capable of clamping the resin panels (1) at both sides of the corner, and the rotating structure (503) being capable of adjusting the clamping angle of the angle structure (504) by rotating.

2. A dry hanging resin board structure according to claim 1, characterized in that: The arc-shaped fixing rod (501) is provided with coupling pieces (505) at both ends thereof and can be connected to the vertical keel (201) located at the corner of the building wall (3). The arc-shaped fixing rod (501) is also provided with a slideway (506) for slidably connecting with a sliding piece (507) provided at one end of the telescopic rod (502).

3. A dry hanging resin board structure according to claim 2, characterized in that: Limit blocks (508) are provided at both ends of the slideway (506) to limit the sliding of the sliding member (507); the sliding member (507) comprises a slider structure (509) slidably connected to the slideway (506) and an annular locking member (510) sleeved on the arc-shaped fixing rod (501); the annular locking member (510) can fix the sliding member (507) and the slideway (506) as a whole after the position is adjusted.

4. A dry hanging resin board structure according to claim 3, characterized in that: A fixing frame (511) and a support rod (512) are also provided on one end structure of the telescopic rod (502); the rotating structure (503) is a rotating shaft structure, and at least two groups of the rotating shaft structures are provided; the support rod (512) is provided in the fixing frame (511); the support rod (512) passes through the rotating shaft structure to support the rotating shaft structure; and the rotating structure (503) can rotate around the support rod (512) as an axis.

5. A dry hanging resin board structure according to claim 4, characterized in that: The angle structure (504) comprises a first clamping portion (513) and a second clamping portion (514), wherein the first clamping portion (513) is connected to one group of the rotating shaft structures, and the second clamping portion (514) is connected to the remaining group of the rotating shaft structures, and the first clamping portion (513) and the second clamping portion (514) are both U-shaped clamping groove structures.

6. The dry hanging resin board structure according to claim 1, characterized in that: The fixing members (404) are provided in a plurality of groups, a plurality of coupling holes (405) are provided at the groove of the sliding slot rod (401), the fixing members (404) can pass through the coupling holes (405) to form coupling, the sleeve structures (403) are provided in a plurality of groups to fix the transverse keel (202) and the sliding slot rod (401) as a whole, and a sliding block (406) is further provided between the sleeve structure (403) and the sliding slot rod (401).

7. A dry hanging resin board structure according to claim 6, characterized in that: The top structure of the sleeve structure (403) is provided with a threaded groove (407) and a threaded rod (408) for connection with the transverse keel (202), and a plurality of coupling rods (409) are provided between the sleeve structure (403) and the sliding block (406), and the coupling rods (409) are telescopic structures.

8. The dry hanging resin board structure according to claim 1, characterized in that: The sleeve structure (403) is also provided with a fixing plate (410) for fixing with the resin plate (1), and the mounting hole (101) is used to fix the transverse keel (202) and the resin plate (1) into a whole through a plug-in connector or a clamping connector.

9. The dry hanging resin board structure according to claim 1, characterized in that: The number of the transverse keels (202) between the vertical keels (201) is multiple groups to match the size of the resin plate (1), and reinforcing rods (411) are also provided between the sleeve structures (403).

10. The dry hanging resin board structure according to claim 1, characterized in that: One side structure of the L-shaped fixing plate (203) is provided with a plurality of sets of screws (204) for coupling with the vertical keel (201), and the other side structure is provided with a plurality of sets of anchoring pieces (205) for coupling with the building wall (3).