Environment-friendly decorative insulation board for building
The design of environmentally friendly building decorative insulation boards solves the problem of non-replaceable decorative boards, enabling flexible replacement and diversification of decorative boards, reducing maintenance costs, and maintaining insulation performance and lightweight design.
Patent Information
- Application Number
- CN202520544285.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-03-26
AI Technical Summary
The existing decorative insulation panels cannot be replaced, resulting in a fixed decorative style, lack of diversity and personalization, and high maintenance costs.
An environmentally friendly decorative insulation board for buildings has been designed. By connecting the base plate with the raised and supporting parts of the decorative board, combined with the insulation pad core and heat insulation components, the decorative board can be flexibly replaced. The decorative effect can be changed by flashing LED beads. At the same time, the connection stability is improved by using snap-fit and magnetic connection.
It enables flexible replacement of decorative panels, improves the diversity and personalization of decoration, reduces maintenance costs, and maintains the insulation effect and overall lightweight through the combination of thermal insulation core and heat insulation components.
Smart Images

Figure CN223964100U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of insulation board technology, and in particular to an environmentally friendly decorative insulation board for buildings. Background Technology
[0002] Insulation boards are a type of building material mainly used for exterior wall insulation. They effectively isolate heat exchange between indoors and outdoors, thus saving energy and reducing consumption. To further enhance the use of insulation boards, decorative panels can be added to achieve both insulation and aesthetic effects. However, existing decorative insulation boards only have a single decorative panel that cannot be replaced, resulting in a fixed decorative style that cannot be changed according to user preferences or environmental changes. This leads to a lack of diversity and personalization in building facades. Furthermore, if a problem occurs with the decorative panel, the entire insulation board may need to be replaced, increasing maintenance costs. Utility Model Content
[0003] The purpose of this utility model is to provide an environmentally friendly decorative insulation board for buildings in order to solve the above-mentioned problems.
[0004] The technical solution of this application is implemented as follows:
[0005] This application provides an environmentally friendly decorative insulation board for buildings, including a base plate and a decorative board. The base plate has receiving portions on both sides, and the receiving portions have receiving grooves. The decorative board has protrusions on both sides. By embedding the protrusions into the receiving grooves, the base plate and the decorative board are connected and an insulation gap is formed.
[0006] The base plate is provided with a heat-insulating pad core with a hollow section. Several heat-insulating pad cores are provided and evenly distributed on the base plate. When the base plate is connected to the decorative panel, the heat-insulating pad core is located in the heat-insulating gap.
[0007] The core of the thermal pad is filled with heat insulation material;
[0008] A light panel is provided on the side of the decorative panel away from the base plate. The light panel has several LED beads that are evenly distributed on the decorative panel.
[0009] One side of the base plate is provided with a connecting protrusion, and the other side is provided with a recess. When two sets of insulation boards are connected, the connecting protrusion is embedded in the recess.
[0010] In one embodiment, a support pad is provided on the side of the decorative panel facing the base plate, and the support pad is located between two sets of protrusions.
[0011] When the base plate is connected to the decorative panel, the end face of the support pad abuts against the end face of the insulation pad core.
[0012] In one embodiment, a support frame is provided on the base plate. The support frame includes horizontal members and vertical members. Several horizontal members are provided and distributed at intervals along the length direction of the base plate.
[0013] The vertical members are connected to the horizontal members and are vertically distributed. There are several vertical members, which are spaced apart along the width of the base plate.
[0014] Several placement gaps are formed between the horizontal and vertical members, and several thermal pad cores are located in the placement gaps respectively.
[0015] In one embodiment, several spaced-apart grooves are provided on both sides of the protrusion, and several snap-fit blocks that match the grooves are provided on both sides of the receiving groove.
[0016] When the protrusion is located in the receiving groove, several snap-fit blocks are respectively embedded in the recessed part.
[0017] In one embodiment, the connecting bump has a magnetic block and the recess has a magnetic layer. When the connecting bump is embedded in the recess, the connecting bump and the recess are magnetically connected by the cooperation of the magnetic block and the magnetic layer.
[0018] In one embodiment, the crossbar has a through hole extending through it;
[0019] Several through holes are provided and are spaced apart along the length of the crossbar;
[0020] The through hole is located within the placement gap.
[0021] In one embodiment, the insulation element is an insulation felt made of aerogel.
[0022] The advantages or beneficial effects of the above technical solutions include at least the following:
[0023] This application discloses an environmentally friendly decorative insulation board for buildings. The base plate, connected to the wall panel, is linked to the protruding part of the decorative panel via a receiving part. The cooperation between the protruding part and the receiving part allows for the removal of the decorative panel, enabling replacement of the wall panel as needed. The base plate has several evenly distributed insulating cores, each containing a heat-insulating component, providing insulation after the base plate is connected to the decorative panel, while reducing the overall weight of the insulation board. Furthermore, the decorative panel features a light panel with several LEDs installed; the flashing of different LEDs changes the pattern on the light panel, increasing decorative flexibility. The combination of the insulating cores and the heat-insulating component ensures the overall insulation effect of the insulation board. Finally, by using a snap-fit connection between the base plate and the decorative panel, the problem of traditional decorative insulation boards being unable to be replaced and lacking diversity and personalization is solved. Attached Figure Description
[0024] The accompanying drawings illustrate exemplary embodiments of the present application and, together with the description thereof, serve to explain the principles of the present application. These drawings are included to provide a further understanding of the present application and are incorporated in and constitute a part of this specification.
[0025] Figure 1 An exploded structural diagram of the decorative insulation board according to an embodiment of this application is shown;
[0026] Figure 2 A cross-sectional structural diagram of the decorative insulation board according to an embodiment of this application is shown;
[0027] Figure 3 A structural schematic diagram of the base plate according to an embodiment of this application is shown;
[0028] Figure 4 A structural schematic diagram of the decorative panel according to an embodiment of this application is shown;
[0029] Figure 5 A partial structural schematic diagram of the decorative panel according to an embodiment of this application is shown;
[0030] Figure 6 Examples of this application are presented. Figure 1 Enlarged view of point A in the middle;
[0031] Figure 7 Examples of this application are presented. Figure 3 Enlarged view of point B in the middle;
[0032] Reference numerals: 1. Base plate; 11. Receiving part; 111. Receiving groove; 1111. Snap-fit block; 13. Connecting protrusion; 131. Magnetic block; 14. Recessed part; 141. Magnetic layer;
[0033] 2. Decorative panel; 21. Raised portion; 211. Recessed portion; 22. Lamp panel; 221. Lamp bead; 23. Support pad; 24. Opening;
[0034] 3. Thermal pad core; 31. Thermal insulation components;
[0035] 4. Support frame; 41. Horizontal members; 411. Through holes; 42. Vertical members. Detailed Implementation
[0036] Embodiments of this application will now be described in more detail with reference to the accompanying drawings. While some embodiments of this application are shown in the drawings, it should be understood that this application can be implemented in various forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of this application. It should be understood that the drawings and embodiments of this application are for illustrative purposes only and are not intended to limit the scope of protection of this application.
[0037] It should be noted that, where there is no conflict, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.
[0038] It should be understood that the term "comprising" and its variations as used herein are open-ended, meaning "including but not limited to". The term "based on" means "at least partially based on". The term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments". Definitions of other terms will be given in the following description. It should be noted that the concepts of "first", "second", etc., mentioned in this application are used only to distinguish different devices, modules, or units, and are not intended to limit the order of functions performed by these devices, modules, or units or their interdependencies.
[0039] It should be noted that the terms "a" and "a number" used in this application are illustrative rather than restrictive, and those skilled in the art should understand that, unless otherwise expressly indicated in the context, they should be understood as "one or more".
[0040] The names of the messages or information exchanged between multiple devices in the embodiments of this application are for illustrative purposes only and are not intended to limit the scope of these messages or information.
[0041] Reference Figures 1-5 An environmentally friendly building decorative insulation board includes a base plate 1 and a decorative panel 2. The base plate 1 is used to connect with the wall, and the decorative panel 2 is used to achieve a decorative and aesthetic effect. The base plate 1 has a receiving part 11 on both sides, and the receiving part 11 has a receiving groove 111. The decorative panel 2 has a protrusion 21 on both sides. By embedding the protrusion 21 into the receiving groove 111, the base plate 1 and the decorative panel 2 are connected and a heat insulation gap is formed. The decorative panel 2 and the base plate 1 can be connected by snap-fit embedding and can be flexibly disassembled.
[0042] A heat-insulating pad core 3 with a hollow section is provided on the base plate 1. The heat-insulating pad core 3 can be made of polyurethane. Several heat-insulating pad cores 3 are provided and evenly distributed on the base plate 1. When the base plate 1 is connected to the decorative panel 2, the heat-insulating pad core 3 is located in the heat-insulating gap. The arrangement of several heat-insulating pad cores 3 can form a honeycomb structure on the base plate 1, which reduces the amount of material used in the same volume and can disperse the pressure, thereby improving the compressive strength.
[0043] The core of the thermal pad 3 is filled with a thermal insulation component 31, which is made of aerogel. Aerogel is a material with extremely low thermal conductivity, which can effectively prevent heat conduction and provide excellent thermal insulation. It is usually made of environmentally friendly materials and does not contain substances harmful to the human body, which meets the requirements of green building.
[0044] A light panel 22 is provided on the side of the decorative panel 2 away from the base plate 1. The light panel 22 is connected to the controller. The light panel 22 has several LED beads 221, which are evenly distributed on the decorative panel 2. The LED beads 221 are controlled by programming to make different LED beads 221 flash, thereby achieving different pattern displays.
[0045] A connecting protrusion 13 is provided on one side of the base plate 1, and a recess 14 is provided on the other side. When two sets of insulation boards are connected, the connecting protrusion 13 is embedded in the recess 14. The cooperation between the connecting protrusion 13 and the recess 14 enables the interconnection between multiple sets of insulation boards.
[0046] Based on the above structure, after the base plate 1 is installed on the wall, the decorative panel 2 is connected to the base plate 1 by embedding the protrusion 21 on the decorative panel 2 into the receiving groove 111 of the receiving part 11 provided on the base plate 1. Through the cooperation of the protrusion 21 and the receiving part 11, the decorative panel 2 can be flexibly installed on the base plate 1, so that the decorative panel 2 can be replaced according to the actual situation. Since a gap is formed when the decorative panel 2 is installed on the base plate 1, the heat exchange efficiency can be reduced by the formation of the gap. In addition, the base plate 1 is also provided with a uniformly distributed heat-insulating pad core 3 with heat insulation element 31. The setting of the heat-insulating pad core 3 can further reduce heat convection. Furthermore, the insulation effect is improved by filling the insulation element 31, and the setting of several heat insulation pads 3 can reduce the overall weight inside the insulation board. The elastic deformation ability of the heat insulation pads 3 can absorb the impact. The decorative panel 2 is equipped with a light panel 22 with several light beads 221. By flashing the light beads 221, different patterns can be displayed on the decorative panel 2, improving the aesthetics of the decorative panel 2. The decorative panel 2 can be replaced by the cooperation of the receiving part 11 and the protrusion 21. The setting of the heat insulation pads 3 maintains the overall heat insulation effect of the insulation board, improves the overall performance of the insulation board, and solves the problem of the single effect of existing decorative insulation panels.
[0047] In one embodiment, reference is made to Figure 1 , Figure 2 and Figure 5A support pad 23 is provided on the side of the decorative panel 2 facing the base plate 1. The support pad 23 is located between two sets of protrusions 21. When the base plate 1 is connected to the decorative panel 2, the support pad 23 abuts against the end face of the insulation pad core 3. The support pad 23 is made of rubber. The support pad 23 can buffer the installation of the decorative panel 2 and the base plate 1. The presence of the support pad 23 can make the contact pressure distribution between the decorative panel 2 and the base plate 1 more uniform. The rubber material can adaptively deform according to the shape of the contact surface and the pressure. When the decorative panel 2 is subjected to uneven external force, the support pad 23 can adjust the pressure distribution through its own elastic deformation to avoid excessive local pressure that could cause the decorative panel 2 to deform or the insulation pad core 3 to be over-compressed.
[0048] In one embodiment, reference is made to Figure 1 , Figure 2 and Figure 6 A support frame 4 is provided on the base plate 1. The support frame 4 can play a supporting role on the base plate 1. The support frame 4 includes horizontal members 41 and vertical members 42. Several horizontal members 41 are provided and distributed at intervals along the length direction of the base plate 1.
[0049] The vertical members 42 are connected to the horizontal members 41 and are vertically distributed. Several vertical members 42 are provided and spaced apart along the width direction of the base plate 1. Several placement gaps are formed between the horizontal members 41 and the vertical members 42. Several insulation pads 3 are located in the placement gaps. From the perspective of mechanical structure, the support frame 4 composed of the horizontal members 41 and the vertical members 42 forms a stable mesh structure on the base plate 1. The vertical distribution can resist external forces from different directions. Since the insulation pads 3 are located in the placement gaps formed by the horizontal members 41 and the vertical members 42, the insulation pads 3 can be positioned and fixed. Furthermore, the frame structure formed by the horizontal members 41 and the vertical members 42 increases the number of air layers inside the insulation board. Air is a poor conductor of heat, and these air layers can further hinder the transfer of heat, thereby enhancing the heat insulation effect of the insulation board.
[0050] In one embodiment, reference is made to Figure 1 , Figure 3 , Figure 6 and Figure 7The protrusion 21 has several spaced grooves 211 on both sides, and the receiving groove 111 has several locking blocks 1111 on both sides that match the grooves 211. When the protrusion 21 is located within the receiving groove 111, the locking blocks 1111 are respectively embedded in the grooves 211. When the locking blocks 1111 are embedded in the grooves 211, an effective mechanical connection is formed in the direction perpendicular to the splicing surface of the insulation board. This connection method can withstand a certain amount of tension and pressure, preventing the insulation board from easily separating under external force. Compared with a simple flat bonding connection, this structure with grooves 211 and locking blocks 1111 increases the contact area of the connection, making the connection between the insulation boards tighter. From a mechanical point of view, the increased connection area means that external forces can be better dispersed, improving the stability of the overall structure. During installation, this locking structure makes the installation of the insulation board more convenient and quick. The installer only needs to align the protrusion 21 with the receiving groove 111 and apply slight pressure to make the snap-fit block 1111 smoothly insert into the groove 211, thus completing the splicing of the base plate 1 and the decorative panel 2. This method is more efficient than complicated glue or bolt fixing.
[0051] In one embodiment, reference is made to Figure 1 , Figure 3 , Figure 4 and Figure 7 The connecting protrusion 13 has a magnetic block 131, and the recess 14 has a magnetic layer 141. When the connecting protrusion 13 is embedded in the recess 14, the connecting protrusion 13 and the recess 14 are magnetically connected through the cooperation of the magnetic block 131 and the magnetic layer 141. The magnetic connection enables the connecting protrusion 13 and the recess 14 to be quickly positioned, thereby achieving the connection between the connecting protrusion 13 and the recess 14. Furthermore, under the action of magnetic adsorption, the connecting protrusion 13 and the recess 14 can be firmly connected, thereby preventing them from falling off when subjected to external impact and improving the stability of connecting different insulation boards.
[0052] In one embodiment, reference is made to Figure 1 , Figure 2 and Figure 6 The crossbar 41 has through holes 411 that pass through it. Through the cooperation of the through holes 411, several crossbars 41 can be interconnected. Several through holes 411 are provided and distributed at intervals along the length of the crossbar 41. The through holes 411 are located in the placement gap. When the temperature difference between indoor and outdoor is large, condensation is likely to occur at the temperature interface inside the insulation board. The through holes 411 allow some condensate to flow out, thereby preventing condensate from accumulating inside the insulation board.
[0053] In one embodiment, reference is made to Figure 1 , Figure 2 and Figure 5 The bottom of the decorative panel 2 is provided with an opening 24 that communicates with the interior. The opening 24 allows the outside air to communicate with the interior of the decorative panel 2. Since the lamp beads 221 in the lamp panel 22 generate a certain amount of heat when working, the opening 24 can achieve a cooling effect. Furthermore, the cables on the lamp panel 22 can be passed through the opening 24 to connect to the external power supply.
[0054] In the description of this application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0055] Those skilled in the art should understand that the above embodiments are merely for illustrative purposes and are not intended to limit the scope of this application. Those skilled in the art can make other changes or modifications based on the above disclosure, and these changes or modifications still fall within the scope of this application.
Claims
1. An environmentally friendly decorative insulation board for buildings, characterized in that: The device includes a base plate and a decorative panel. The base plate has receiving portions on both sides, and the receiving portions have receiving grooves. The decorative panel has protrusions on both sides. By embedding the protrusions into the receiving grooves, the base plate and the decorative panel are connected and a heat-insulating gap is formed. The base plate is provided with a heat-insulating pad core with a hollow part. Several heat-insulating pad cores are provided and evenly distributed on the base plate. When the base plate is connected to the decorative panel, the heat-insulating pad core is located in the heat-insulating gap. The core of the thermal pad is filled with heat insulation material; A light panel is provided on the side of the decorative panel away from the base plate. The light panel has several LED beads that are evenly distributed on the decorative panel. The base plate has a connecting protrusion on one side and a recess on the other side. When two sets of insulation boards are connected, the connecting protrusion is embedded in the recess.
2. The environmentally friendly building decorative insulation board according to claim 1, characterized in that: A support pad is provided on the side of the decorative panel facing the base plate, and the support pad is located between the two sets of protrusions; When the base plate is connected to the decorative panel, the support pad abuts against the end face of the heat-insulating pad core.
3. The environmentally friendly building decorative insulation board according to claim 1, characterized in that: A support frame is provided on the base plate. The support frame includes horizontal members and vertical members. Several horizontal members are provided and distributed at intervals along the length direction of the base plate. The vertical members are connected to the horizontal members and are vertically distributed. Several vertical members are provided and are spaced apart along the width direction of the base plate. Several placement gaps are formed between the horizontal bar and the vertical bar, and several of the thermal pad cores are located within the placement gaps.
4. The environmentally friendly building decorative insulation board according to claim 1, characterized in that: The protrusion has several spaced grooves on both sides, and the receiving groove has several snap-fit blocks that match the grooves on both sides. When the protrusion is located in the receiving groove, several of the snap-fit blocks are respectively embedded in the recess.
5. The environmentally friendly building decorative insulation board according to claim 1, characterized in that: The connecting protrusion has a magnetic block, and the recess has a magnetic layer. When the connecting protrusion is embedded in the recess, the connecting protrusion and the recess are magnetically connected through the cooperation of the magnetic block and the magnetic layer.
6. The environmentally friendly building decorative insulation board according to claim 3, characterized in that: The crossbar has a through hole penetrating through it; Several through holes are provided and are spaced apart along the length of the crossbar; The through hole is located within the placement gap.
7. The environmentally friendly building decorative insulation board according to claim 1, characterized in that: The insulation component is made of aerogel insulation felt.