Indoor assembly type inorganic composite capillary network system decorative wallboard

By designing internal heat exchange pipe groups and multi-layer structures in decorative wall panels, combined with detachable installation and sealed connections, the problems of heating and cooling, assembly flexibility, fire and moisture resistance of decorative wall panels are solved, improving aesthetics and practicality.

CN223793807UActive Publication Date: 2026-01-13SHANGHAI LEXIANGZHU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520107917.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-01-13
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Indoor prefabricated inorganic composite capillary network system decorative wall panels are difficult to achieve heating and cooling functions, are not easy to flexibly adjust the assembly area, have a monotonous appearance, and have poor fire and moisture resistance.

Method used

A structure including a first side panel, a modular single panel, and a second side panel is designed. The internal heat exchanger assembly is equipped with a PVC moisture-proof membrane outer layer, a printed decorative surface layer, and a fireproof board base layer. The structure is detachable and can be installed using flanges and positioning rods. Rubber magnetic strips and silicone sealing rings are used to ensure connection and sealing.

Benefits of technology

It enables flexible adjustment of heating and cooling functions, improves the aesthetics and fire and moisture resistance of the device, and enhances the flexibility and robustness of assembly.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an indoor assembly type inorganic composite capillary network system decorative wallboard which comprises a first side plate, a first heat exchange tube set, a second heat exchange tube set and a third heat exchange tube set, a second side plate is installed at one end of the first side plate, and single plates capable of being assembled are evenly installed between the first side plate and the second side plate. By installing the first butt-joint insertion pipe, the second butt-joint insertion pipe and the like, the performance of the device is optimized, and after a user assembles the first side plate, the single plate capable of being spliced and the second side plate on the wall face, the single plate capable of being spliced can be spliced through the butt-joint effect of the first butt-joint insertion pipe and the second butt-joint insertion pipe. In cooperation with the sealing effect of silica gel sealing rings which are connected to the first butt joint insertion pipe and the second butt joint insertion pipe in a vulcanization mode, the splicing and communicating effect among the first heat exchange pipe set, the second heat exchange pipe set and the third heat exchange pipe set is achieved, and the heat exchange mechanism enables the device to achieve the heat supply or cold supply function indoors.
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Description

Technical Field

[0001] This utility model relates to the field of interior decoration technology, specifically to an interior prefabricated inorganic composite capillary network system decorative wall panel. Background Technology

[0002] With the continuous development of the economy, interior decoration is also constantly improving. Interior decorative wall panels are the most common decoration materials. They can enhance the aesthetics of the interior, but there are still some shortcomings in their actual use.

[0003] 1. Indoor prefabricated inorganic composite capillary network system decorative wall panels often lack internal heat exchange mechanisms, making it difficult to achieve heating and cooling functions and resulting in low practicality; 2. Indoor prefabricated inorganic composite capillary network system decorative wall panels are often one-piece structures, making it difficult to assemble according to actual assembly needs and flexibly adjust the assembly area; 3. The appearance of indoor prefabricated inorganic composite capillary network system decorative wall panels is relatively monotonous, making it difficult to customize patterns according to customer needs, and their fireproof and moisture-proof effects are also poor, thus hindering long-term promotion. Utility Model Content

[0004] The purpose of this utility model is to provide an indoor prefabricated inorganic composite capillary network system decorative wall panel to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an indoor prefabricated inorganic composite capillary network system decorative wall panel, comprising a first side panel, a first heat exchange tube group, a second heat exchange tube group, and a third heat exchange tube group. A second side panel is installed at one end of the first side panel. Assembleable single panels are evenly installed between the first and second side panels. The first heat exchange tube group is fixed inside the first side panel, the second heat exchange tube group is fixed inside the assembleable single panel, and the third heat exchange tube group is fixed inside the second side panel. A heat exchange medium inlet pipe connected to the first heat exchange tube group is fixed on the first side panel, and a heat exchange medium outlet pipe connected to the third heat exchange tube group is fixed on the second side panel. A PVC moisture-proof membrane outer layer is provided on the outer walls of the first side panel, the assembleable single panel, and the second side panel. A printed decorative surface layer is provided on the first side panel, the assembleable single panel, and the second side panel inside the PVC moisture-proof membrane outer layer. A fireproof board base layer is provided on the first side panel, the assembleable single panel, and the second side panel inside the printed decorative surface layer.

[0006] Preferably, the first side plate, the modular single plate, and the second side plate constitute a disassembly and installation structure. Flanges are welded to both the heat exchange medium inlet pipe and the heat exchange medium outlet pipe. The first side plate and the second side plate are provided with reserved grooves that match the flanges, which improves the flexibility of the device.

[0007] Preferably, both sides of the first side panel, the modular panel, and the second side panel are inlaid with magnetic rubber strips for adsorption, so that they can be adsorbed and fixed at the connection between the first side panel, the modular panel, and the second side panel.

[0008] Preferably, positioning rods are evenly fixed on one side of the first side plate, the modular single plate, and the second side plate. The positioning rods are made of aluminum alloy, which enables the device to achieve the advantages of positioning and assembly.

[0009] Preferably, a second docking tube is uniformly fixed to one end of both the first heat exchange tube group and the second heat exchange tube group, and a first docking tube that engages with the second docking tube is uniformly fixed to one end of both the third heat exchange tube group and the second heat exchange tube group, thereby optimizing the heat exchange mechanism.

[0010] Preferably, both the first and second mating tubes are vulcanized with silicone sealing rings, and both the second and third heat exchange tube groups are connected to the interior of the first mating tube, and both the second and first heat exchange tube groups are connected to the interior of the second mating tube, so that the first, second, and third heat exchange tube groups can be assembled and connected.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] (1) The indoor prefabricated inorganic composite capillary network system decorative wall panel has optimized its performance by installing the first docking pipe and the second docking pipe. On the one hand, after the user assembles the first side plate, the assembleable single plate and the second side plate on the wall, the first docking pipe and the second docking pipe are docked together, and the silicone sealing rings that are vulcanized and connected on the first docking pipe and the second docking pipe are sealed together to realize the assembly and connection between the first heat exchange tube group, the second heat exchange tube group and the third heat exchange tube group. The heat exchange mechanism enables the device to realize the function of heating or cooling indoors. On the other hand, the user can use the heat exchange medium inlet pipe and the heat exchange medium outlet pipe with flanges to realize the connection between the heat exchange mechanism and the corresponding external cold and hot water heat exchange system, and can embed the connecting hoses of the two in the reserved groove to hide them, thereby improving the aesthetics of the device.

[0013] (2) The indoor prefabricated inorganic composite capillary network system decorative wall panel has optimized its structure by installing a first side panel and a second side panel. On the one hand, the user can pre-drill positioning connection holes on the wall and then use the interlocking connection between the positioning rod and the positioning connection holes to position and assemble the first side panel, the assembleable single panel and the second side panel on the wall. The adhesive coated on the back of the first side panel, the assembleable single panel and the second side panel is used to achieve the adhesion and fixation of the first side panel, the assembleable single panel and the second side panel on the wall, thus realizing the advantage of positioning and assembly. On the other hand, the first side panel, the assembleable single panel and the second side panel form a disassembly and installation structure, which makes it easy to select the first side panel and the second side panel and an appropriate number of assembleable single panels on the corresponding wall according to the actual assembly requirements, thus improving the flexibility of the device. In addition, the user can use the magnetic adsorption of the rubber magnetic strip to achieve the adsorption and fixation of the connection between the first side panel, the assembleable single panel and the second side panel, thus improving the firmness of the device after assembly.

[0014] (3) The indoor prefabricated inorganic composite capillary network system decorative wall panel is equipped with a printed decorative surface layer and a fireproof board base layer. In actual operation, the first side panel, the assembleable single panel and the side wall of the second side panel are all set as a composite material composed of a PVC moisture-proof membrane outer layer, a printed decorative surface layer and a fireproof board base layer. This enables the device to achieve fireproof and moisture-proof effects. In addition, the printed decorative surface layer can be used to customize patterns according to consumer needs, which improves the aesthetics. Attached Figure Description

[0015] Figure 1 This is a front view structural diagram of the present invention;

[0016] Figure 2 This is a partial cross-sectional view of the front view of the assembleable single-panel structure of this utility model;

[0017] Figure 3 This is a side view diagram of the assembleable single-panel structure of this utility model;

[0018] Figure 4 This is a schematic diagram of the cross-sectional structure of the assembleable single-panel sidewall of this utility model.

[0019] In the diagram: 1. First side panel; 2. Assembleable single panel; 3. Second side panel; 4. Heat exchange medium inlet pipe; 5. Reserved groove; 6. First heat exchange tube assembly; 7. First docking pipe; 8. Second heat exchange tube assembly; 9. Second docking pipe; 10. Third heat exchange tube assembly; 11. Heat exchange medium outlet pipe; 12. Adsorption rubber magnetic strip; 13. Positioning rod; 14. PVC moisture-proof membrane outer layer; 15. Printed decorative surface layer; 16. Fireproof board base layer. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0021] Please see Figure 1-4 An embodiment of this utility model is provided: an indoor prefabricated inorganic composite capillary network system decorative wall panel, including a first side plate 1, a first heat exchange tube group 6, a second heat exchange tube group 8 and a third heat exchange tube group 10. A second side plate 3 is installed at one end of the first side plate 1, and a single panel 2 that can be assembled is evenly installed between the first side plate 1 and the second side plate 3.

[0022] The first heat exchange tube assembly 6 is fixed inside the first side plate 1, the second heat exchange tube assembly 8 is fixed inside the assembled single plate 2, and the third heat exchange tube assembly 10 is fixed inside the second side plate 3.

[0023] A heat exchange medium inlet pipe 4 connected to the first heat exchange tube group 6 is fixed on the first side plate 1, and a heat exchange medium outlet pipe 11 connected to the third heat exchange tube group 10 is fixed on the second side plate 3.

[0024] The outer walls of the first side panel 1, the modular single panel 2, and the second side panel 3 are all provided with a PVC moisture-proof membrane outer layer 14, and the first side panel 1, the modular single panel 2, and the second side panel 3 inside the PVC moisture-proof membrane outer layer 14 are all provided with a printed decorative surface layer 15.

[0025] Fireproof board base layer 16 is provided on the first side panel 1, the assembled single panel 2 and the second side panel 3 inside the printed decorative surface layer 15.

[0026] The first side plate 1, the modular single plate 2, and the second side plate 3 constitute a disassembly and installation structure. Flanges are welded to both the heat exchange medium inlet pipe 4 and the heat exchange medium outlet pipe 11. The first side plate 1 and the second side plate 3 are both provided with reserved grooves 5 that match the flanges. This optimizes the structure of the device and makes it easier to select the first side plate 1, the second side plate 3, and an appropriate number of modular single plates 2 on the corresponding wall according to actual assembly requirements, thereby improving the flexibility of the device.

[0027] Both sides of the first side panel 1, the modular single panel 2, and the second side panel 3 are inlaid with rubber magnetic strips 12 for adsorption.

[0028] In use, the user can use the magnetic adsorption of the rubber magnetic strip 12 to achieve adsorption and fixation at the connection between the first side panel 1, the modular single panel 2, and the second side panel 3.

[0029] Positioning rods 13 are evenly fixed on one side of the first side panel 1, the assembleable single panel 2, and the second side panel 3. The positioning rods 13 are made of aluminum alloy.

[0030] In use, the user can pre-drill positioning connection holes on the wall, and then use the interlocking connection between the positioning rod 13 and the positioning connection holes to position and assemble the first side plate 1, the modular single plate 2 and the second side plate 3 on the wall. The adhesive coated on the back of the first side plate 1, the modular single plate 2 and the second side plate 3 is used to achieve adhesion and fixation of the first side plate 1, the modular single plate 2 and the second side plate 3 on the wall, so that the device achieves the advantages of positioning and assembly.

[0031] The first heat exchange tube group 6 and the second heat exchange tube group 8 are both uniformly fixed with a second docking tube 9 at one end, and the third heat exchange tube group 10 and the second heat exchange tube group 8 are both uniformly fixed with a first docking tube 7 that is engaged with the second docking tube 9 at one end; thus optimizing the heat exchange mechanism.

[0032] Silicone sealing rings are vulcanized on the first docking tube 7 and the second docking tube 9. The second heat exchange tube group 8 and the third heat exchange tube group 10 are both connected to the interior of the first docking tube 7. The second heat exchange tube group 8 and the first heat exchange tube group 6 are both connected to the interior of the second docking tube 9.

[0033] In use, after assembling the first side panel 1, the modular single panel 2 and the second side panel 3 on the wall, the user uses the docking action of the first docking pipe 7 and the second docking pipe 9, combined with the sealing action of the silicone sealing rings that are vulcanized and connected on the first docking pipe 7 and the second docking pipe 9, to achieve the assembly and connection between the first heat exchange tube group 6, the second heat exchange tube group 8 and the third heat exchange tube group 10.

[0034] In this embodiment, the user can pre-drill positioning connection holes on the wall, and then use the interlocking connection between the positioning rod 13 and the positioning connection holes to position and assemble the first side plate 1, the modular single plate 2, and the second side plate 3 on the wall. The adhesive applied to the back of the first side plate 1, the modular single plate 2, and the second side plate 3 secures them to the wall, thus achieving the advantage of positioning and assembly. After assembling the first side plate 1, the modular single plate 2, and the second side plate 3 on the wall, the user uses the interlocking action of the first connecting pipe 7 and the second connecting pipe 9, along with the sealing action of the vulcanized silicone sealing rings on both pipes, to achieve the assembly and connection between the first heat exchange tube group 6, the second heat exchange tube group 8, and the third heat exchange tube group 10. This heat exchange mechanism allows the device to provide heating or cooling indoors. Simultaneously, the user can use the heat exchange medium inlet pipe 4 with a flange and the heat exchange... The medium outlet pipe 11 can connect the heat exchange mechanism and the corresponding external cold and hot water heat exchange system, and the connecting hoses can be pre-embedded in the reserved groove 5 to hide them, thereby improving the aesthetics of the device. In addition, by setting the side walls of the first side plate 1, the modular single plate 2 and the second side plate 3 as a composite material consisting of a PVC moisture-proof membrane outer layer 14, a printed decorative surface layer 15 and a fireproof board base layer 16, the device achieves fireproof and moisture-proof effects. Moreover, the printed decorative surface layer 15 can be customized according to consumer needs to improve the aesthetics. On the other hand, the first side plate 1, the modular single plate 2 and the second side plate 3 form a disassembly and installation structure, which makes it easy to select the first side plate 1 and the second side plate 3 and an appropriate number of modular single plates 2 on the corresponding wall according to actual assembly needs, thereby improving the flexibility of the device. Furthermore, the user can use the magnetic adsorption effect of the adsorption rubber magnetic strip 12 to achieve adsorption and fixation at the connection of the first side plate 1, the modular single plate 2 and the second side plate 3, thereby improving the firmness of the device after assembly.

Claims

1. An indoor fabricated inorganic composite capillary tube network system decorative wallboard, characterized in that, The utility model provides a heat exchange device, including first side board (1), first heat exchange pipe group (6), second heat exchange pipe group (8) and third heat exchange pipe group (10), one end of first side board (1) is equipped with second side board (3), even installation can be assembled single board (2) between first side board (1) and second side board (3), first heat exchange pipe group (6) is fixed in the inside of first side board (1), second heat exchange pipe group (8) is fixed in the inside of can be assembled single board (2), third heat exchange pipe group (10) is fixed in the inside of second side board (3), first side board (1) is fixed with the heat exchange medium inlet pipe (4) of first heat exchange pipe group (6) intercommunication, second side board (3) is fixed with the heat exchange medium outlet pipe (11) of third heat exchange pipe group (10) intercommunication, the outer wall of first side board (1), can be assembled single board (2) and second side board (3) all are provided with PVC damp membrane outer layer (14), the first side board (1), can be assembled single board (2) and second side board (3) all are provided with printed decorative surface layer (15) on the inner side of PVC damp membrane outer layer (14), the first side board (1), can be assembled single board (2) and second side board (3) all are provided with fireproof plate base layer (16) on the inner side of printed decorative surface layer (15).

2. The indoor fabricated inorganic composite capillary tube network system decorative wallboard according to claim 1, characterized in that: The first side board (1), can be assembled single board (2) and second side board (3) constitute dismounting installation structure, the flange plate is welded on the heat exchange medium inlet pipe (4) and heat exchange medium outlet pipe (11), the first side board (1) and second side board (3) are provided with the reserved groove (5) matched with the flange plate.

3. The indoor fabricated inorganic composite capillary tube network system decorative wallboard according to claim 1, characterized in that: The first side board (1), can be assembled single board (2) and second side board (3) are inlaid with rubber magnetic strips (12) on both sides.

4. The indoor fabricated inorganic composite capillary tube network system decorative wallboard according to claim 1, characterized in that: The first side board (1), can be assembled single board (2) and second side board (3) are evenly fixed with positioning rods (13) on one side, and the material of the positioning rods (13) is aluminum alloy.

5. The indoor fabricated inorganic composite capillary tube network system decorative wallboard according to claim 1, characterized in that: The first heat exchange pipe group (6) and the second heat exchange pipe group (8) are evenly fixed with second butt joint pipes (9) at one end, and the third heat exchange pipe group (10) and the second heat exchange pipe group (8) are evenly fixed with first butt joint pipes (7) at one end, which are clamped with the second butt joint pipes (9).

6. The indoor fabricated inorganic composite capillary tube network system decorative wallboard according to claim 5, characterized in that: The first butt joint pipes (7) and the second butt joint pipes (9) are vulcanizedly connected with silica gel sealing rings, the second heat exchange pipe group (8) and the third heat exchange pipe group (10) are in communication with the inside of the first butt joint pipes (7), and the second heat exchange pipe group (8) and the first heat exchange pipe group (6) are in communication with the inside of the second butt joint pipes (9).