Wall protection plate
By setting a heating core tube in the wall panel and turning on electricity to generate heat, the problem of condensation and moisture caused by warm and humid air flow is solved, the wall panel can be quickly installed and disassembled, and the moisture-proof effect and service life are improved.
Patent Information
- Application Number
- CN202422795545.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-16
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-16
AI Technical Summary
In the spring in southern regions, the condensation and moisture problem caused by the temperature difference between the warm and humid air flow and the surface of the wall panels affects the protective function of the wall panels.
A heating core tube is set in the wall panel. By controlling the power supply of the heating core tube to generate heat, the temperature difference between the warm and humid air flow and the surface of the wall panel is reduced. The heating core tube is fixed by a quick-release mechanism and a supporting plate to achieve quick installation and disassembly.
Effectively reduce condensation and moisture on the surface of the wall panels, improve moisture-proof effect, and extend the service life of the wall panels.
Smart Images

Figure CN223330138U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of interior decoration design, and in particular to a wall panel. Background Art
[0002] Wall paneling, also known as wall skirt or wall paneling, is a type of panel used for interior wall decoration and protection. Wall paneling not only has the advantage of strong decorativeness, but also can protect the building wall and play a role in constant temperature and noise reduction, effectively improving the indoor environment. It is a material that has been widely popular in the decoration market in recent years.
[0003] In the spring in southern regions, the temperature rises due to the rapid counterattack of warm and humid air after the cold air leaves, while the surface temperature of the wall panels is relatively low. When the warm and humid air flows in contact with the surface of the wall panels, it will condense into water droplets on the wall panels, causing the surface of the wall panels to be very moist. After a long time, the wall panels are prone to moisture and deformation, affecting the protective effect of the wall panels on the wall, which needs to be improved. Utility Model Content
[0004] Based on this, the present application provides a wall panel, which can improve the condensation and moisture situation on the wall panel surface by heating the wall panel to reduce the temperature difference between the warm and humid air flow and the wall panel surface.
[0005] The wall panel provided in this application adopts the following technical solution:
[0006] A wall panel comprises an inner panel, a heating core layer and an outer panel arranged in sequence from the inside to the outside, the heating core layer comprising a structural frame plate and a plurality of heating core tubes, the structural frame plate being in a rectangular frame shape, and each heating core tube being mounted on the inner side of the structural frame plate via a quick-release mechanism;
[0007] The quick-release mechanism includes two sets of clamping components symmetrically arranged on two opposite inner side walls of the structural frame plate. The clamping components include a fixed base fixed to the structural frame plate and an anti-slip sleeve movably mounted on the fixed base. The inner diameter of the anti-slip sleeve is adapted to the outer diameter of the heating core tube.
[0008] An elastic member is provided between each anti-drop sleeve and the fixed base, and the elastic member is used to force the anti-drop sleeve to be normally exposed outside the fixed base. In the assembled state, the heating core tube is matched and located between the two anti-drop sleeves.
[0009] By adopting the above-mentioned technical solution, by installing multiple heating core tubes between the inner plate and the outer plate, and by controlling the heating core tubes to be energized and heated, the heating core tubes generate heat and exchange heat with the plate body, so that the temperature of the inner plate and the outer plate is increased, which can reduce the temperature difference between the warm and humid air flow and the surface of the wall panel, and improve the condensation and moisture on the surface of the wall panel. In addition, by setting a quick-release mechanism to fix the heating core tube, when the heating core tube is installed, the anti-slip sleeve is forced to move in the direction close to the fixed base and compress the elastic member, so that the heating core tube can be smoothly installed between the two fixed bases, and then the anti-slip sleeve can be respectively pressed against the two ends of the heating core tube under the elastic reset action of the elastic member, so that the heating core tube is firmly positioned, which has the advantage of quick installation and is also convenient for the subsequent disassembly, maintenance and replacement of the heating core tube.
[0010] Optionally, a concave annular groove is provided on the side of the fixed base near the adjacent clamping component, the elastic part is installed inside the concave annular groove, and the anti-slip sleeve is movably inserted in the concave annular groove and abuts against the elastic part; the side end face of the fixed base is threadedly connected with a stop seat for limiting the anti-slip sleeve from escaping from the concave annular groove.
[0011] By adopting the above-mentioned technical solution, by movably installing the anti-slip sleeve in the concave annular groove and threading the abutment seat to the side end face of the fixed base, the elastic force of the elastic part acting on the anti-slip sleeve can make the anti-slip sleeve normally abut against the abutment seat, and after the heating core tube is installed between the two fixed bases, the anti-slip sleeve can normally be exposed on the fixed base and protect the side of the heating core tube, so that the heating core tube can be firmly fixed inside the wall panel.
[0012] Optionally, each of the fixed bases located on the same inner side of the structural frame plate is provided with a conductive socket, and the end of the heating core tube is provided with a conductive plug. When the heating core tube is placed between the two anti-drop sleeves, the conductive plug is plugged into the conductive socket;
[0013] Each conductive socket is commonly connected to a battery module, which is embedded in the bottom of the structural frame. The battery module is electrically connected to a power lead, and wiring grooves for the power lead are respectively provided on the upper and lower side walls of the structural frame.
[0014] By adopting the above-mentioned technical solution, after the heating core tube is firmly fixed on the inner side of the structural frame plate, the conductive plug of the heating core tube can be plugged into the conductive socket of the fixed base, so that the battery module and the heating core tube are electrically conductive; the battery module is connected to the external power supply equipment through the power wire, and by energizing the battery module, the heating core tube can be energized and heated, thereby generating heat and exchanging heat with the inner and outer panels, thereby improving the condensation and moisture on the surface of the wall panel.
[0015] Optionally, the interior of the wire trough is filled with quicklime powder.
[0016] By adopting the above-mentioned technical solution, by filling the inside of the wiring trough with quicklime powder, the quicklime powder can absorb the moist air entering the wiring trough from the gaps between adjacent wall panels, reducing the possibility of moisture corrosion of the power wires and improving the overall moisture-proof effect of the entire wall panel.
[0017] Optionally, a plurality of support plates are provided on the inner side of the structural frame. In the assembled state, the two opposite sides of the support plates are respectively against the inner plate and the outer plate; each support plate is located between two adjacent heating core tubes, and all support plates divide the inner side of the structural frame into multiple heating chambers.
[0018] By adopting the above-mentioned technical solution, the setting of the support plate can support and shape the inner and outer panels, reducing the possibility of the inner or outer panels deforming inward after being subjected to pressure; in addition, by setting the support plate, the inner side of the structural frame is divided into multiple heating chambers, each heating chamber has a heating core tube, and the heat generated by the heating core tube when it is powered on is stored in the smaller heating chamber, which can have a heat preservation effect, thereby improving the overall moisture-proof effect of the wall panel.
[0019] Optionally, positioning posts are fixed on opposite sides of the inner panel and the outer panel respectively, and positioning slots are provided on two opposite sides of the support panel respectively, and the positioning posts are plugged and fitted into the positioning slots.
[0020] By adopting the above-mentioned technical solution, through the plug-in cooperation between the positioning pins and the positioning slots, the support plate can be firmly positioned after the inner panel and the outer panel are connected to each other, and the position of each support plate on the inner side of the structural frame plate can be determined, so that a heating chamber can be smoothly formed between every two support plates.
[0021] Optionally, the outer panel is located on a side of the wall panel close to the building wall, and a rock wool board is provided between the outer panel and the structural frame panel.
[0022] By adopting the above-mentioned technical solution, the setting of the rock wool board can weaken the heat exchange between the outside of the building wall and the wall panel, so that the heat generated by the heating core tube is transferred more to the inner panel, reducing the temperature difference between the warm and humid air and the inner panel, and reducing the possibility of condensation and moisture on the surface of the inner panel, that is, the indoor surface.
[0023] Optionally, the inner panel, structural frame panel, rock wool board and outer panel are all bonded and fixed in sequence through a waterproof adhesive layer.
[0024] By adopting the above technical solution, the convenience of assembling and fixing the panels can be improved by adhesive fixation, which facilitates the mass production of the wall panels.
[0025] In summary, this application includes at least one of the following beneficial technical effects:
[0026] 1. By installing multiple heating core tubes between the inner and outer panels and controlling the heating core tubes to generate heat, the heating core tubes generate heat and exchange heat with the panels, thereby increasing the temperature of the inner and outer panels. This can reduce the temperature difference between the warm and humid airflow and the wall panel surface, and improve the condensation and moisture on the wall panel surface.
[0027] 2. A quick-release mechanism is provided to fix the heating core tube. When the heating core tube is installed, the anti-drop sleeve is forced to move toward the fixed base and compress the elastic member, so that the heating core tube can be smoothly installed between the two fixed bases. This has the advantage of quick installation and is also convenient for subsequent disassembly, maintenance and replacement of the heating core tube.
[0028] 3. By providing support plates to support and shape the inner and outer plates, the possibility of the inner or outer plates deforming inward after being subjected to pressure can be reduced, and a heating chamber is formed between adjacent support plates. The heat generated by the heating core tube when it is energized exists in the smaller heating chamber, which can have a heat preservation effect, thereby improving the overall moisture-proof effect of the wall panel. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is an exploded view of the overall structure of this embodiment;
[0030] Figure 2 is a partial cross-sectional view of the quick release mechanism in an embodiment of the present application;
[0031] Figure 3 This is a schematic structural diagram of the heating core tube in an embodiment of the present application;
[0032] Figure 4 It is a schematic diagram of the partial structure of the bottom surface of the wall panel in the embodiment of the present application.
[0033] Explanation of the accompanying drawings: 1. Inner panel; 11. Positioning column; 2. Structural frame plate; 21. Embedded groove; 22. Wiring groove; 3. Heating core tube; 31. Conductive plug; 32. Elastic pad; 4. Outer panel; 5. Rock wool board; 51. Avoidance groove; 6. Quick release mechanism; 61. Fixed base; 611. Concave ring groove; 62. Anti-slip sleeve; 621. Limiting ring; 63. Elastic part; 64. Retaining seat; 641. Through area; 65. Conductive socket; 66. Battery module; 67. Power wire; 7. Support plate; 71. Positioning slot. DETAILED DESCRIPTION
[0034] The following is combined with Figure 1-4 This application is described in further detail.
[0035] The embodiment of the present application discloses a wall panel.
[0036] Reference Figure 1A wall panel includes, arranged in order from inside to outside, an inner panel 1, a heating core layer, a rock wool board 5, and an outer panel 4. The inner panel 1 and the outer panel 4 serve as the inner and outer layers of the wall panel. After the wall panel is installed on a building wall, the inner panel 1 can be located on the side of the wall panel away from the building wall, while the outer panel 4 can be located on the side of the wall panel closer to the building wall. In this embodiment, the inner panel 1 and the outer panel 4 can be made of materials such as ceramic, marble, or granite.
[0037] The heating core layer includes a structural frame plate 2 and a heating core tube 3, wherein the structural frame plate 2 is a rectangular frame shape, and the structural frame plate 2 is matched and located between the inner plate 1 and the rock wool board 5; there are multiple heating core tubes 3, and multiple sets of quick-release mechanisms 6 are provided inside the structural frame plate 2. Each heating core tube 3 is installed on the inner side of the structural frame plate 2 through the quick-release mechanism 6, which has the advantage of quick installation and is also convenient for subsequent disassembly and replacement of the heating core tube 3.
[0038] Specifically, the quick-release mechanism 6 includes two sets of clamping components, which are symmetrically arranged on the two opposite inner walls of the structural frame plate 2, specifically the upper and lower inner walls; wherein, referring to Figure 2 The clamping assembly includes a fixed base 61, an anti-slip sleeve 62 and an elastic member 63. The fixed base 61 is fixed to the inner side of the structural frame plate 2. The side of the fixed base 61 close to the adjacent clamping assembly is provided with an inner concave annular groove 611. The elastic member 63 is a spring, and the elastic member 63 is installed inside the inner concave annular groove 611; the end of the anti-slip sleeve 62 is integrally formed with a limiting ring 621, the outer diameter of the limiting ring 621 is larger than the outer diameter of the anti-slip sleeve 62, and the limiting ring 621 is movably installed in the inner concave annular groove 611 and can squeeze the elastic member 63.
[0039] In addition, a stopper 64 is provided on the side end surface of the fixed base 61 near the adjacent clamping assembly. The stopper 64 is threadedly connected to the fixed base 61 and has a through-area 641 for the anti-slip sleeve 62 to pass through. The anti-slip sleeve 62 can normally abut against the stopper 64 under the elastic force of the elastic member 63, thereby normally exposing the anti-slip sleeve 62 on the side of the fixed base 61 near the adjacent clamping assembly. In this embodiment, the inner diameter of the anti-slip sleeve 62 is set to be equal to the outer diameter of the heating core tube 3, so that the heating core tube 3 can be matched and installed between the two anti-slip sleeves 62.
[0040] All the fixed bases 61 located on the lower side wall of the structural frame plate 2 are embedded with a conductive socket 65, which is located at the center of the fixed base 61 and is facing the inside of the anti-drop sleeve 62; Figure 3 A conductive plug 31 is fixed to one end of the heating core tube 3, and an elastic pad 32 is bonded to the other end.
[0041] During installation, the heating core tube 3 can be smoothly installed between the two fixed bases 61 by forcing the anti-slip sleeve 62 to move toward the inner wall of the concave annular groove 611. Then, the anti-slip sleeve 62 is exposed outside the fixed base 61 under the elastic force of the elastic member 63, protecting the outer circumference of the heating core tube 3, thereby firmly fixing the heating core tube 3 between the two fixed bases 61. At this time, the elastic pad 32 at the end of the heating core tube 3 can be located at the upper end of the heating core tube 3, for elastically abutting against the fixed base 61 on the upper side wall; and the conductive plug 31 is located at the lower end of the heating core tube 3, and can be plugged into the conductive socket 65 to provide electrical conduction.
[0042] In addition, refer to Figure 4 Each conductive socket 65 is commonly connected to a battery module 66. An embedding groove 21 is provided on the bottom surface of the structural frame plate 2, and the battery module 66 is embedded in the embedding groove 21. The battery module 66 is electrically connected to a power wire 67, and the power wire 67 is used to connect to an external power supply device, thereby supplying power to the battery module 66 and each heating core tube 3, so that they are energized and generate heat to improve the condensation and moisture on the surface of the wall panel.
[0043] It should be noted that the upper and lower side walls of the structural frame panel 2 each have wiring grooves 22 for power supply wires 67 to pass through, concealing the wiring and enhancing the aesthetics. The wiring grooves 22 located on the lower side wall of the structural frame panel 2 can communicate with the mounting grooves 21. Furthermore, each wiring groove 22 is filled with quicklime powder. The side surfaces of the wiring grooves 22 have through-holes through which quicklime powder can be filled into the wiring grooves 22, thereby absorbing moist air, reducing the possibility of moisture corrosion on the power supply wires 67, and improving the overall moisture-proofing of the entire wall panel.
[0044] Back to Figure 1 The rock wool board 5 is located on the side of the structural frame 2 away from the inner panel 1, while the outer panel 4 is located on the side of the rock wool board 5 away from the structural frame 2. The provision of the rock wool board 5 can reduce the heat exchange between the air outside the building wall and the wall panel, which is conducive to the heat generated by the heating core tube 3 being transferred more to the inner panel 1, thereby reducing the possibility of condensation and moisture on the indoor wall. It should be noted that in this embodiment, the inner panel 1 and the structural frame 2, the structural frame 2 and the rock wool board 5, and the rock wool board 5 and the outer panel 4 are all bonded to each other with strong waterproof glue, thereby forming a waterproof glue layer between adjacent panels and firmly bonding them.
[0045] In addition, a plurality of support panels 7 are provided on the inner side of the structural frame 2. In the assembled state and after the panels are assembled with each other, the two opposite sides of the support panel 7 can respectively rest against the inner panel 1 and the outer panel 4. Here, the rock wool board 5 needs to have an avoidance groove 51 for the support panel 7 to match and pass through; and, the two opposite sides of the support panel 7 are respectively provided with a plurality of positioning slots 71, and the two opposite sides of the inner panel 1 and the outer panel 4 are respectively fixed with a plurality of positioning columns 11, which can be matched and plugged with the positioning slots 71, and then after the panels are assembled and bonded with each other, the support panel 7 can remain firmly positioned on the inner side of the structural frame 2.
[0046] The length of the support plate 7 is set to be equal to the height of the structural frame plate 2, so that the upper and lower side surfaces of the support plate 7 can also be against the inner wall of the structural frame plate 2; at this time, each support plate 7 is located between two adjacent heating core tubes 3, and all support plates 7 divide the inner side of the structural frame plate 2 into multiple heating chambers. The heat generated by a single heating core tube 3 can be stored in a smaller heating chamber, thereby enhancing the thermal insulation effect.
[0047] The implementation principle of a wall panel in the embodiment of the present application is as follows:
[0048] The power wire 67 is connected to an external power supply device. After power is turned on, the heating core tube 3 generates heat, generates heat and exchanges heat with the inner panel 1, which can increase the temperature inside the heating chamber and transfer more heat to the inside of the inner panel 1, thereby reducing the temperature difference between the warm and humid air flow and the surface of the wall panel, improving the condensation and moisture on the surface of the wall panel, and thus reducing the possibility of the wall panel being deformed by moisture after long-term use, so that the wall panel can maintain a good service life.
[0049] The above are preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A wall panel, characterized by: The heating core layer comprises an inner plate (1), a heating core layer and an outer plate (4) arranged in sequence from the inside to the outside, wherein the heating core layer comprises a structural frame plate (2) and a plurality of heating core tubes (3), wherein the structural frame plate (2) is in the shape of a rectangular frame, and each of the heating core tubes (3) is mounted on the inner side of the structural frame plate (2) via a quick-release mechanism (6); The quick-release mechanism (6) comprises two sets of clamping assemblies symmetrically arranged on two opposite inner side walls of the structural frame plate (2), the clamping assemblies comprising a fixed base (61) fixed to the structural frame plate (2) and an anti-slip sleeve (62) movably mounted on the fixed base (61), and the inner diameter of the anti-slip sleeve (62) is adapted to the outer diameter of the heating core tube (3); An elastic member (63) is provided between each anti-slip sleeve (62) and the fixed base (61) where it is located. The elastic member (63) is used to force the anti-slip sleeve (62) to normally be exposed outside the fixed base (61) where it is located. In the assembled state, the heating core tube (3) is matched and located between the two anti-slip sleeves (62).
2. The wall panel according to claim 1, characterized in that: The fixed base (61) is provided with a concave annular groove (611) on a side surface close to the adjacent clamping assembly, the elastic member (63) is installed inside the concave annular groove (611), and the anti-slip sleeve (62) is movably inserted into the concave annular groove (611) and abuts against the elastic member (63); the side end surface of the fixed base (61) is threadedly connected to a stopper (64) for limiting the anti-slip sleeve (62) from escaping from the concave annular groove (611).
3. The wall panel according to claim 1, characterized in that: All the fixed bases (61) located on the same inner side of the structural frame plate (2) are provided with a conductive socket (65), and the end of the heating core tube (3) is provided with a conductive plug (31). When the heating core tube (3) is placed between the two anti-drop sleeves (62), the conductive plug (31) and the conductive socket (65) are plugged in. Each of the conductive sockets (65) is commonly connected to a battery module (66), and the battery module (66) is embedded in the bottom of the structural frame plate (2); the battery module (66) is electrically connected to a power lead (67), and the upper and lower side walls of the structural frame plate (2) are respectively provided with wiring grooves (22) for routing the power lead (67).
4. The wall panel according to claim 3, characterized in that: The interior of the wiring trough (22) is filled with quicklime powder.
5. The wall panel according to claim 1, characterized in that: A plurality of support plates (7) are provided on the inner side of the structural frame plate (2). In the assembled state, two opposite side surfaces of the support plates (7) respectively abut against the inner plate (1) and the outer plate (4); each of the support plates (7) is located between two adjacent heating core tubes (3), and all the support plates (7) divide the inner side of the structural frame plate (2) into a plurality of heating chambers.
6. The wall panel according to claim 5, characterized in that: Positioning pins (11) are fixed to the opposite sides of the inner plate (1) and the outer plate (4), and positioning slots (71) are provided on the two opposite sides of the support plate (7). The positioning pins (11) are plugged and fitted into the positioning slots (71).
7. The wall panel according to claim 1, characterized in that: The outer panel (4) is located on a side of the wall panel close to the building wall, and a rock wool board (5) is provided between the outer panel (4) and the structural frame plate (2).
8. The wall panel according to claim 7, characterized in that: The inner plate (1), the structural frame plate (2), the rock wool board (5) and the outer plate (4) are all bonded and fixed in sequence through a waterproof adhesive layer.