An interior heating integrated wallboard for decoration
By designing an internally heated integrated wall panel, the problem of not being able to install underfloor heating with integrated wall panels is solved, enabling stable installation and efficient heating of HVAC pipes, improving the integration and aesthetics of the decoration, and simplifying the underfloor heating maintenance process.
Patent Information
- Application Number
- CN202511485886.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2045-10-17
AI Technical Summary
Existing integrated wall panels have limited functionality and cannot be used for underfloor heating installation. Installing underfloor heating after renovation is costly and complicated, and maintenance is inconvenient. Furthermore, underground heating pipes can affect the floor height.
Design an integrated wall panel with internal heating, including a symmetrical surface panel and an insulation back panel, which are fixed by expansion screws. The insulation back panel is equipped with heating and ventilation pipes and fixing connectors, while the surface panel is provided with mounting and dismounting adjustment holes and connection structures to achieve the positioning of the heating and ventilation pipes and uniform heat dissipation.
It enables stable installation and efficient heating of HVAC pipes, saves floor height, facilitates maintenance, improves integration and aesthetics, and avoids heat loss and noise generation.
Smart Images

Figure CN120946060B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of building material technology, specifically relating to an integrated wall panel with internal heating for decoration. Background Technology
[0002] Integrated wall panels, also known as integrated wall surfaces or prefabricated wall panels, are a new type of interior decoration material. Their core concepts are "modularization" and "rapid installation." The wall panels are prefabricated in the factory, typically combining a decorative surface layer (such as wood grain, fabric texture, stone texture, etc.), a substrate layer, and functional layers (such as insulation and soundproofing layers). After being transported to the construction site, they are directly fixed to the wall surface using clips, joists, or adhesives, eliminating the need for complex processes like plastering and painting required in traditional decoration.
[0003] In existing technologies, integrated wall panels have limited functionality, serving only as decoration or for isolation.
[0004] Furthermore, in the current technology, it is well known that underfloor heating requires laying pipes on the ground during the renovation. This renovation method makes it impossible to install underfloor heating in the later stages or after the renovation is completed. Installing underfloor heating after renovation is costly and complicated. Moreover, it is inconvenient to inspect and maintain underfloor heating after installation. If there is a leak, it cannot be detected, inspected, and maintained in time. In addition, the heating and ventilation pipes installed underground will reduce the floor height to some extent. Summary of the Invention
[0005] The technical problem to be solved by the present invention is to overcome the shortcomings of the prior art and provide a heatable integrated wall panel device.
[0006] The technical solution adopted to solve the above technical problems is: an integrated wall panel with internal heating for decoration, including a surface panel and an insulation back panel arranged symmetrically, wherein the insulation back panel is fixedly connected to the wall to be installed by expansion screws.
[0007] Through the above technical solution, the surface panel has the function of isolation and aesthetics, and avoids the equipment installed on the surface of the insulation back panel being directly exposed to the outside. The insulation back panel has the function of supporting the installation of HVAC pipes, and at the same time can prevent heat loss from the wall. It has a good insulation effect, and the expansion screws make it more secure, stable and environmentally friendly, and can be disassembled.
[0008] Four rectangularly distributed fixed connectors are evenly fixedly connected above and below the surface of the thermal insulation back panel. Four rectangularly distributed loading and unloading adjustment holes are evenly opened above and below the surface of the surface panel, and a connection structure is provided between the loading and unloading adjustment holes and the fixed connectors.
[0009] Through the above technical solution, the fixed connector can be fixedly installed on the insulation back plate to limit and support the HVAC pipes, and realize the longitudinal positioning of the HVAC pipes. The surface plate can be assembled through the connection structure of the loading and unloading adjustment hole, which improves the degree of integration. The operator can assemble or separate the surface plate and the insulation back plate through the loading and unloading adjustment hole. The operation is simple, convenient and highly stable.
[0010] The heat-insulating back panel has a heating pipe in the middle of its surface, and the heating pipe is located between two rows of fixed connectors, which hold the heating pipe in place.
[0011] Through the above technical solution, HVAC pipes can transfer heat medium and achieve heat exchange, thereby heating the room. A thin copper sheet is laid on the inside of the surface plate so that the heat is evenly distributed in the room.
[0012] Furthermore, a thin tin foil for heat insulation is attached to the surface of the insulation back panel, and four rectangularly distributed pipe positioning supports are fixedly connected to the surface of the insulation back panel. The surface of the pipe positioning supports is provided with rectangular grooves, and foam cotton is placed in the grooves of the pipe positioning supports. The outer wall of the HVAC pipe is placed in the grooves of the pipe positioning supports.
[0013] The above technical solution effectively prevents heat loss by placing heat-insulating thin tin foil on the surface of the insulation backing plate. The rectangular pipe positioning supports and the grooves on their surfaces can position the pipes horizontally, preventing displacement during installation. They also serve a positioning function, facilitating quick and easy installation of HVAC pipes. The foam cotton installed in the rectangular grooves of the pipe positioning supports can protect the HVAC pipes and increase the friction between them, making the HVAC pipe installation stable and preventing noise.
[0014] Furthermore, the two ends of the HVAC pipe are fixedly connected with connecting flanges for interconnection, and an aesthetically pleasing cover is fixedly connected to the outer side of the loading and unloading adjustment hole. The pattern and color of the aesthetically pleasing cover are consistent with the pattern and color of the surface plate. A rectangular airflow exchange hole is opened through the surface of the surface plate between the two loading and unloading adjustment holes. A guide plate for airflow exchange is embedded and fixedly connected at the position of the airflow exchange hole.
[0015] Through the above technical solutions, the connecting flange can connect the HVAC pipes of two adjacent insulation back panels. The aesthetically pleasing cover at the loading and unloading adjustment hole can seal the loading and unloading adjustment hole, making the insulation back panel more aesthetically pleasing. The guide plate fixedly installed at the airflow exchange hole can allow the flow of hot and cold air and accelerate the indoor temperature rise.
[0016] Furthermore, the fixed connector includes a fixing body that is fixedly connected to the heat insulation back plate. A positioning and fixing groove is provided at the center of the surface of the fixing body. A limiting body is fixedly connected at the center of the bottom wall of the positioning and fixing groove. A sliding slot is provided on the inner side of the upper surface of the limiting body.
[0017] Through the above technical solution, the main body of the fixture can install the components of the fixing connector. The positioning and fixing groove facilitates the insertion and positioning plate on the back of the surface plate, which facilitates the positioning of the surface plate and makes the surface plate aligned with the insulation back plate. The limiting body facilitates the assembly with the connection structure at the position of the surface plate, which enables the surface plate and the insulation back plate to be assembled.
[0018] Furthermore, an attractive magnet is fixedly connected to the bottom wall of the sliding slot, and a insertion groove is provided through the middle of the surface of the limiting body and the sliding slot.
[0019] The above technical solution allows the set magnetic attraction to fix the sliding connecting plate, preventing it from falling off the sliding slot and causing the surface plate to separate from the insulation back plate.
[0020] Furthermore, four rectangularly distributed pressing positioning strips are fixedly connected to the back of the surface plate. The pressing positioning strips are slidably connected to the grooves of the pipe positioning support and are pressed against the outer wall of the HVAC pipe.
[0021] With the above technical solution, when the surface plate and the insulation back plate are assembled, the pressing positioning strip is inserted into the groove of the pipe positioning support to facilitate positioning, so that the insulation back plate and the surface plate can be quickly installed and fixed. In addition, the pressing positioning strip presses the outer wall of the HVAC pipe to prevent the HVAC pipe from vibrating and generating noise when transporting HVAC media.
[0022] Furthermore, the connection structure includes an insertion positioning plate fixedly connected to the back of the surface plate at the loading and unloading adjustment hole position. The size and shape of the insertion positioning plate are consistent with the size and shape of the positioning and fixing groove. The insertion positioning plate is slidably connected to the inner wall of the positioning and fixing groove. The loading and unloading adjustment hole passes through the insertion positioning plate, and two symmetrically arranged limiting and fixing baffles are fixedly connected to the inner wall of the insertion positioning plate near the inner side. A sliding groove plate is provided between the two limiting and fixing baffles.
[0023] Through the above technical solution, the insertion positioning plate can be inserted into the positioning and fixing groove for quick positioning. The limiting and fixing edge fits with the surface of the limiting body, so that the surface plate and the insulation back plate are tightly fitted. The sliding groove plate has a certain length, which makes it convenient to insert the sliding connecting plate into the sliding slot to fix the surface plate and the insulation back plate.
[0024] Furthermore, two symmetrically arranged sliding connecting plates are fixedly connected to both sides of the sliding groove plate. A through adjustment hole is provided through the middle of the sliding connecting plate and the sliding groove plate. The sum of the thickness of the limiting fixing edge and the thickness of the insertion groove is the same as the thickness of the sliding groove plate. The sliding connecting plate is slidably connected to the inner wall of the sliding slot. The sliding groove plate is slidably connected to the inner wall of the insertion groove. The sliding connecting plate is made of cast iron. The sliding connecting plate is attracted to the attracting magnet.
[0025] Through the above technical solution, the surface plate and the insulation back plate can be fixed to each other by the limiting and fixing edge and the insertion groove of the sliding connecting plate. The through adjustment hole can slide and adjust the sliding connecting plate and the sliding groove plate, thereby realizing the separation and combination of the corresponding sliding connecting plate and the sliding slot, controlling the combination or separation of the surface plate and the insulation back plate. The cast iron sliding connecting plate can be attracted and fixed by the magnet, so that the surface plate and the insulation back plate are fully connected.
[0026] The beneficial effects of the present invention are as follows: (1) By setting a fixed connector and connection structure, the two plates can be fixed or separated by adjusting the through adjustment hole of the sliding connection plate when the surface plate and the insulation back plate are horizontal. No other tools are needed. The operation is simple, convenient and quick, and the overall integration of the plates is high. (2) The surface plate of the present invention is provided with guide plates at the top and bottom. Hot air rises and cold air sinks. The exchange of hot and cold air can be realized through the guide plates, which can accelerate the heating of indoor air and make the heating efficiency higher. (3) The present invention sets HVAC pipes between the surface plate and the insulation back plate. There is no need to lay HVAC pipes under the ground, which effectively saves floor height. The surface plate of the present invention can be disassembled at any time, which is convenient for the maintenance or repair of HVAC pipes. The groove of the pipe positioning support of the present invention is set with foam cotton, so that the heat carrier of the HVAC pipe will not generate noise when it flows. Attached Figure Description
[0027] Figure 1 This is a first-view structural diagram of an internally heated integrated wall panel for decoration according to the present invention;
[0028] Figure 2 This is a second-view structural diagram of an internally heated integrated wall panel for decoration according to the present invention;
[0029] Figure 3 This is an unfolded view of an internally heated integrated wall panel for decoration according to the present invention;
[0030] Figure 4 This is an exploded view of the surface panel of an internally heated integrated wall panel for decoration according to the present invention.
[0031] Figure 5This is a rear exploded view of the surface panel of an internally heated integrated wall panel for decoration according to the present invention;
[0032] Figure 6 This is a front view of the heat-insulating back panel of an internally heated integrated wall panel for decoration according to the present invention;
[0033] Figure 7 This is a side sectional view of a fixing connector for an integrated wall panel with internal heating for decoration according to the present invention.
[0034] Figure 8 yes Figure 4 Enlarged view of point A in the middle;
[0035] Figure 9 yes Figure 5 Enlarged view of point B in the middle.
[0036] Reference numerals: 1. Surface plate; 2. Aesthetic cover; 3. Loading / unloading adjustment hole; 4. Airflow exchange hole; 5. Guide plate; 6. Fixed connector; 60. Fixing body; 61. Positioning and fixing groove; 62. Limiting body; 63. Insertion groove; 64. Attracting magnet; 65. Sliding slot; 7. Insulation back plate; 8. HVAC pipe; 9. Limiting and fixing edge; 10. Sliding connecting plate; 11. Through adjustment hole; 12. Pipe positioning support; 13. Connecting flange; 14. Press positioning strip; 15. Insert positioning plate; 16. Sliding groove plate. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0038] like Figure 1-9 As shown in the figure, an integrated wall panel with internal heating for decoration in this embodiment includes a symmetrically arranged surface panel 1 and an insulation back panel 7. The insulation back panel 7 is fixedly connected to the wall to be installed by expansion screws. The surface panel 1 has the function of isolating and aesthetics, and prevents the equipment installed on the surface of the insulation back panel 7 from being directly exposed to the outside. The insulation back panel 7 has the function of supporting the installation of heating and ventilation pipes 8, and at the same time can prevent heat from being lost from the wall. It has a good insulation effect, and the fixing by expansion screws is more firm, stable and environmentally friendly, and can be disassembled.
[0039] Four rectangularly distributed pressing positioning strips 14 are fixedly connected to the back of the surface plate 1. The pressing positioning strips 14 are slidably connected to the grooves of the pipe positioning support 12 and are pressed against the outer wall of the HVAC pipe 8. When the surface plate 1 and the insulation back plate 7 are assembled, the pressing positioning strips 14 are inserted into the grooves of the pipe positioning support 12 to facilitate positioning, so that the insulation back plate 7 and the surface plate 1 can be quickly installed and fixed. The pressing positioning strips 14 also press against the outer wall of the HVAC pipe 8 to prevent the HVAC pipe 8 from vibrating and generating noise when transporting HVAC media.
[0040] The surface of the insulation backing plate 7 is covered with thin tin foil for heat insulation. Four rectangularly distributed pipe positioning supports 12 are fixedly connected to the surface of the insulation backing plate 7. The surface of the pipe positioning supports 12 has rectangular grooves, and foam cotton is placed in the grooves of the pipe positioning supports 12. The outer wall of the HVAC pipe 8 is placed in the grooves of the pipe positioning supports 12. The thin tin foil on the surface of the insulation backing plate 7 can effectively insulate and prevent heat loss. The rectangularly distributed pipe positioning supports 12 and the grooves on their surfaces can position the pipe horizontally to prevent displacement during installation. At the same time, it has a positioning function to facilitate quick and easy installation of the HVAC pipe 8. The foam cotton installed in the rectangular grooves of the pipe positioning supports 12 can protect the HVAC pipe 8 and increase the friction between the support and the pipe, making the HVAC pipe 8 installed stably and preventing noise.
[0041] Four rectangularly distributed fixed connectors 6 are evenly fixedly connected above and below the surface of the insulation back panel 7. Four rectangularly distributed loading and unloading adjustment holes 3 are evenly opened above and below the surface of the surface panel 1. A connection structure is provided between the loading and unloading adjustment holes 3 and the fixed connectors 6. The fixed connectors 6 are fixedly installed on the insulation back panel 7 to limit and support the HVAC pipes 8, thereby achieving the longitudinal positioning of the HVAC pipes 8. The surface panel 1 can be assembled through the connection structure at the loading and unloading adjustment holes 3, which improves the degree of integration. The operator can assemble or separate the surface panel 1 and the insulation back panel 7 through the loading and unloading adjustment holes 3. The operation is simple, convenient and highly stable.
[0042] The connection structure includes an insertion positioning plate 15 fixedly connected to the back of the surface plate 1 at the position of the loading and unloading adjustment hole 3. The size and shape of the insertion positioning plate 15 are the same as the size and shape of the positioning and fixing groove 61. The insertion positioning plate 15 is slidably connected to the inner wall of the positioning and fixing groove 61. The loading and unloading adjustment hole 3 passes through the insertion positioning plate 15, and two symmetrically arranged limiting and fixing baffles 9 are fixedly connected to the inner side of the inner wall of the insertion positioning plate 15 near the inner side. A sliding groove plate 16 is provided between the two limiting and fixing baffles 9. The insertion positioning plate 15 can be inserted into the positioning and fixing groove 61 for quick positioning. The limiting and fixing baffles 9 are in contact with the surface of the limiting body 62, so that the surface plate 1 and the insulation back plate 7 are tightly fitted. The sliding groove plate 16 has a certain length, which facilitates the insertion of the sliding connecting plate 10 into the sliding slot 65 to fix the surface plate 1 and the insulation back plate 7.
[0043] Two symmetrically arranged sliding connecting plates 10 are fixedly connected to both sides of the sliding groove plate 16. A through adjustment hole 11 is provided through the middle of the sliding connecting plate 10 and the sliding groove plate 16. The sum of the thickness of the limiting fixing edge 9 and the thickness of the insertion groove 63 is the same as the thickness of the sliding groove plate 16. The sliding connecting plate 10 is slidably connected to the inner wall of the sliding slot 65, and the sliding groove plate 16 is slidably connected to the inner wall of the insertion groove 63. The sliding connecting plate 10 is made of cast iron and is attracted to the magnet 64. The sliding connecting plate 10 is blocked by the limiting and fixing edge 9 and the insertion slot 63, which can fix the surface plate 1 and the insulation back plate 7 to each other. The through adjustment hole 11 can slide and adjust the sliding connecting plate 10 and the sliding slot plate 16, thereby realizing the separation and engagement of the corresponding sliding connecting plate 10 and the sliding slot 65, controlling the engagement or separation of the surface plate 1 and the insulation back plate 7. The cast iron sliding connecting plate 10 can be attracted and fixed by the attracting magnet 64, so that the surface plate 1 and the insulation back plate 7 are fully connected.
[0044] The fixed connector 6 includes a retainer body 60 fixedly connected to the insulation back plate 7. A positioning and fixing groove 61 is provided in the middle of the surface of the retainer body 60. A limiting body 62 is fixedly connected in the middle of the bottom wall of the positioning and fixing groove 61. A sliding slot 65 is provided on the inner side of the upper surface of the limiting body 62. The retainer body 60 can realize the installation of the components of the fixed connector 6. The positioning and fixing groove 61 is convenient to be inserted into the insertion positioning plate 15 on the back of the surface plate 1, which facilitates the positioning of the surface plate 1 and makes the surface plate 1 aligned with the insulation back plate 7. The limiting body 62 is convenient to be assembled with the connection structure at the position of the surface plate 1, so that the surface plate 1 and the insulation back plate 7 can be assembled.
[0045] A magnet 64 is fixedly connected to the bottom wall of the sliding slot 65. A slot 63 is provided through the middle of the surface of the limiting body 62 and the sliding slot 65. The magnet 64 can attract and fix the sliding connecting plate 10, so as to prevent the sliding connecting plate 10 from falling off the sliding slot 65 and causing the surface plate 1 to separate from the insulation back plate 7.
[0046] A heating pipe 8 for heating is provided in the middle of the surface of the insulation back panel 7. The heating pipe 8 is located between the upper and lower rows of fixed connectors 6 and is supported by the fixed connectors 6. The heating pipe 8 can transfer heat medium and realize heat exchange, thereby heating the room. A thin copper sheet is laid on the inner side of the surface panel 1 so that the heat is evenly distributed in the room at the position of the surface panel 1.
[0047] The HVAC pipes 8 are fixedly connected at both ends with connecting flanges 13 for interconnection. An aesthetically pleasing cover 2 is snapped and fixedly connected to the outer side of the loading and unloading adjustment hole 3, and the pattern and color of the aesthetically pleasing cover 2 are consistent with the pattern and color of the surface plate 1. A rectangular airflow exchange hole 4 is opened through the surface of the surface plate 1 between the two loading and unloading adjustment holes 3. A guide plate 5 for airflow exchange is embedded and fixedly connected at the airflow exchange hole 4. The connecting flanges 13 can connect the HVAC pipes 8 at the positions of two adjacent insulation back plates 7. The aesthetically pleasing cover 2 at the loading and unloading adjustment hole 3 can seal the loading and unloading adjustment hole 3, making the insulation back plate 7 more aesthetically pleasing. The guide plate 5 fixedly installed at the airflow exchange hole 4 can allow the flow of hot and cold air and accelerate the indoor temperature rise.
[0048] The working principle of this embodiment is as follows: during production, a thin copper sheet can be attached to the inside of the surface plate 1, and a thin tin foil can be attached to the surface of the insulation back plate 7. The thin copper sheet can conduct heat, allowing the surface plate 1 to quickly heat up the room. The thin tin foil can effectively block heat dissipation and has a high heat utilization rate. The insulation back plate 7 is laid on the corresponding position of the wall, and the insulation back plate 7 can be fixed to the wall with expansion screws.
[0049] After the insulation backing plate 7 is fixed, the HVAC pipe 8 is inserted into the groove of the pipe positioning support 12. The foam cotton in the groove can hold the HVAC pipe 8 in place, and the connecting flange 13 of the adjacent HVAC pipe 8 is fixedly connected by bolts. The end of the HVAC pipe 8 is sealed by a sealing structure, and the other end is connected to a water source. Water is supplied into the HVAC pipe 8 to test the sealing performance of the connecting flange 13. After the test, it is separated from the water source and connected to the municipal heating interface. When the municipal heating is on, the flowing heat medium in the HVAC pipe 8 can heat the room.
[0050] After the HVAC pipes 8 are connected, a surface plate 1 is placed at the position of each insulation back plate 7. The through adjustment hole 11 is inserted through the pivot structure, and the sliding connecting plate 10 and the sliding groove plate 16 are pushed upwards. The insertion positioning plate 15 of the surface plate 1 is inserted into the positioning fixing groove 61, so that the inner sliding connecting plate 10 is inserted into the upper part of the sliding slot 65. The pivot is released, and the sliding connecting plate 10 and the sliding groove plate 16 fall down under the action of gravity. The inner sliding connecting plate 10 is then inserted into the sliding slot 65 and fixed by the attraction magnet 64, so that the surface plate 1 and the insulation back plate 7 are stably connected. At this time, the pressing positioning strip 14 is inserted into the groove of the pipe positioning support 12, which fully presses the HVAC pipes 8, so that no vibration or noise will occur when the heating carrier flows.
[0051] After the heat insulation back plate 7 and the surface plate 1 are stably connected, the aesthetic cover 2 can be fixedly inserted into the loading and unloading adjustment hole 3. The loading and unloading adjustment hole 3 is sealed in a more aesthetically pleasing manner. Furthermore, the guide plates 5 are set above and below the surface of the surface plate 1 to realize airflow, thereby facilitating heat exchange between the upper and lower air and achieving the purpose of rapid heating.
[0052] If the length of the wall is greater than the length of several whole surface panels 1 combined, the remaining part can be cut and installed with the surface panels 1 and the insulation back panel 7, but the HVAC pipes 8 are not installed on the cut and installed part.
[0053] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention.
Claims
1. An interior heating integrated wall panel for finishing, characterized by, It includes the surface layer board (1) and the thermal insulation backboard (7) which are symmetrically arranged, the thermal insulation backboard (7) is fixedly connected with the wall to be installed through expansion screws; The surface of the thermal insulation backboard (7) is uniformly fixedly connected with four rectangularly distributed fixed connectors (6) above and below, the surface of the surface layer board (1) is uniformly provided with four rectangularly distributed dismounting and adjusting holes (3) above and below, and a connecting structure is arranged between the dismounting and adjusting holes (3) and the fixed connectors (6); A heating warm air pipe (8) is arranged at the middle position of the surface of the thermal insulation backboard (7), and the warm air pipe (8) is arranged between the upper and lower two rows of fixed connectors (6) and is held by the fixed connectors (6). The fixed connector (6) comprises a fixed body (60) fixedly connected with the thermal insulation backboard (7), a positioning fixed groove (61) is formed in the middle position of the surface of the fixed body (60), a limiting body (62) is fixedly connected to the middle position of the inner bottom wall of the positioning fixed groove (61), and a sliding insertion groove (65) is formed in the inner side position of the upper surface of the limiting body (62). A suction magnet (64) is fixedly connected to the inner bottom wall position of the sliding insertion groove (65), and an insertion groove (63) is formed between the middle position of the surface of the limiting body (62) and the sliding insertion groove (65). The connecting structure comprises an insertion positioning plate (15) fixedly connected to the back surface of the surface layer board (1) at the position of the dismounting and adjusting hole (3), the size and shape of the insertion positioning plate (15) are consistent with those of the positioning fixed groove (61), the insertion positioning plate (15) is slidably connected with the inner wall of the positioning fixed groove (61), the dismounting and adjusting hole (3) penetrates the insertion positioning plate (15), and two symmetrically arranged limiting fixed flanges (9) are fixedly connected to the inner wall of the penetration position of the insertion positioning plate (15) close to the inner side, and a sliding groove plate (16) is arranged between the two limiting fixed flanges (9). Two symmetrically arranged sliding connection plates (10) are fixedly connected to the both side positions of the sliding groove plate (16), a penetration adjusting hole (11) is formed in the middle positions of the sliding connection plate (10) and the sliding groove plate (16), the sum of the thickness of the limiting fixed flange (9) and the thickness of the insertion groove (63) is consistent with the thickness of the sliding groove plate (16), the sliding connection plate (10) is slidably connected with the inner wall of the sliding insertion groove (65), the sliding groove plate (16) is slidably connected with the inner wall of the insertion groove (63), the sliding connection plate (10) is made of cast iron, and the sliding connection plate (10) is attracted by the suction magnet (64).
2. The interior heating integrated wall panel for finishing according to claim 1, wherein A thin tin paper for heat insulation is attached to the surface of the thermal insulation backboard (7), four rectangularly distributed pipe positioning support devices (12) are fixedly connected to the surface of the thermal insulation backboard (7), a rectangular groove is formed in the surface of the pipe positioning support device (12), foam cotton is arranged in the groove of the pipe positioning support device (12), and the outer wall of the warm air pipe (8) is arranged in the groove of the pipe positioning support device (12).
3. The interior heating integrated wall panel for finishing according to claim 1, wherein The warm pipeline (8) is fixedly connected with connecting flanges (13) at both ends for mutual connection, the appearance cover (2) is fixedly connected at the outside position of the dismounting adjusting hole (3), the pattern and color of the appearance cover (2) are consistent with the pattern and color of the surface plate (1), the airflow exchange holes (4) in the rectangular setting are provided on the surface of the surface plate (1) above and below and between the two dismounting adjusting holes (3), and the guide plates (5) for airflow exchange are fixedly connected at the positions of the airflow exchange holes (4).
4. The interior heating integrated wall panel for finishing according to claim 2, wherein The surface plate (1) is fixedly connected with four pressing positioning strips (14) in the rectangular distribution at the back position, the pressing positioning strips (14) are slidingly connected with the grooves of the pipeline positioning support (12), and are pressed against the outer wall of the warm pipeline (8).
Citation Information
Patent Citations
Internal heating integrated wallboard for decoration
CN112282205A
Mounting mechanism of heat-insulation and heat-preservation building energy-saving wallboard
CN216109018U