Wrapping anchoring type insulation board and insulation decorative board
By wrapping and anchoring the insulation board structure, the safety issues of existing insulation decorative boards and the air leakage problems of vacuum insulation boards are solved, achieving a high level of safety and stable connection insulation effect, which is suitable for exterior wall construction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-04-03
AI Technical Summary
Existing thermal insulation decorative panels have poor safety. Vacuum insulation panels are easily punctured and leak air during construction and transportation, affecting their thermal insulation performance. Furthermore, it is difficult to balance the cost and safety of existing materials.
The structure adopts a wrap-anchor type insulation board, including an insulation layer, a wrap-anchor plate, and a protective layer. The combination of the adhesive layer and the anchor plate ensures that the vacuum insulation board will not be punctured, and it is fixed by sealing grooves and screws to enhance connection stability and sealing.
It improves the safety performance and flatness of the thermal insulation decorative panel, ensures the thermal insulation performance of the vacuum insulation panel during construction and transportation, provides stable mechanical connection and corrosion resistance, and enhances the sealing and protection of the connection.
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Figure CN224078426U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of external wall insulation technology, and relates to a wrapping anchoring type insulation board and an insulation decorative board. Background Technology
[0002] Insulated decorative panels are insulation panels that integrate decorative and insulation functions. They have advantages such as aesthetics, insulation, convenient construction, and safety performance, and are currently used in many construction projects.
[0003] However, existing thermal insulation decorative panels typically use metal panels, fiber cement boards, or thin ceramic panels as decorative panels. While thermal insulation decorative panels using metal panels are aesthetically pleasing, lightweight, and safe, they are also more expensive. On the other hand, thermal insulation decorative panels using fiber cement boards and thin ceramic panels are aesthetically pleasing and less expensive, but these panels are heavier and have lower safety performance than metal panels, and are generally only suitable for use in building projects under 50 meters in height.
[0004] Meanwhile, with the promotion of ultra-low energy consumption buildings, the requirements for thermal insulation of building exterior walls are becoming increasingly stringent. Although vacuum insulation panels have excellent thermal insulation performance, if they are punctured and leak air during construction, transportation, or anchoring to the exterior wall, the thermal insulation effect will be greatly reduced. Although some companies have achieved the anchoring of vacuum insulation panels to the exterior wall by pre-drilling holes in the panels, drilling during construction can easily cause the vacuum insulation panels to puncture and leak air, which needs to be improved. Summary of the Invention
[0005] This utility model addresses the problems existing in the prior art by proposing a wrapping anchoring type insulation board and insulation decorative board, aiming to overcome the defect of poor safety of existing insulation decorative boards.
[0006] This utility model is implemented as follows:
[0007] An anchored insulation board is characterized by comprising an insulation layer, at least two first anchored plates, and two protective layers respectively disposed on the upper and lower sides of the insulation layer. The first anchored plate includes a horizontal plate, a folded edge portion located on one side of the insulation layer, and a fixing portion disposed perpendicular to the folded edge portion. The fixing portion is provided with mounting holes, and the horizontal plate is provided with multiple through holes. The protective layer includes an adhesive layer, which passes through the through holes and is bonded to the insulation layer.
[0008] The bonding layer is a polymer mortar layer, and a first mesh cloth is provided inside the polymer mortar layer;
[0009] Alternatively, the bonding layer is a polymer mortar layer, and the protective layer includes a crack-resistant protective layer on the outside of the polymer mortar layer, with a second mesh fabric inside the crack-resistant protective layer;
[0010] Alternatively, the adhesive layer may be a first adhesive, and the protective layer may further include a protective fabric layer bonded to the outside of the first adhesive.
[0011] The upper surface of the insulation layer is provided with at least two first grooves, the horizontal plate is embedded in the first grooves, and the first grooves and through holes are filled with adhesive layers and integrally formed with the adhesive layer on the upper side of the insulation plate.
[0012] A reinforcing anchor plate is provided below the insulation layer. The two ends of the reinforcing anchor plate are fixed to the folded edge. The reinforcing anchor plate has multiple through holes. The adhesive layer below the insulation layer passes through the through holes of the reinforcing anchor plate and is bonded to the lower side of the insulation layer.
[0013] The folded edge is provided with a fixing hole, and both ends of the reinforcing anchor plate are respectively provided with a plug-in part that matches the shape of the fixing hole, and the plug-in part is inserted into the fixing hole.
[0014] The upper surface of the insulation layer is provided with at least two second wrapping anchor plates perpendicular to the first groove. The second wrapping anchor plate includes a horizontal plate disposed in the protective layer. One end of the horizontal plate has a folded edge located on one side of the insulation layer and a fixing part disposed perpendicular to the folded edge. The other end is fixedly connected to the first wrapping anchor plate. The fixing part is provided with mounting holes. The horizontal plate is provided with multiple through holes. The through holes are filled with an adhesive layer and are integrally formed with the adhesive layer on the upper side of the insulation layer.
[0015] The insulation layer includes a vacuum insulation panel and an outer insulation panel that wraps the vacuum insulation panel inside. A horizontal panel is located above the insulation layer and is situated within an adhesive layer.
[0016] The external insulation board completely encloses the vacuum insulation board;
[0017] Alternatively, the external insulation board has a downward-facing mounting groove, and the vacuum insulation board is embedded in the mounting groove and bonded to the external insulation board with a second adhesive.
[0018] The protective layer has a decorative surface layer on the outside.
[0019] The protective layer and the decorative surface layer are provided with a sealant groove, and the first wrapping anchor plate is provided with an anchoring hole in the area of the sealant groove for screws to pass through. The sealant groove is filled with sealant after the thermal insulation decorative panel is installed on the exterior wall.
[0020] The present invention has the following beneficial effects:
[0021] (1) By setting a first wrapping anchor plate with multiple through holes on the upper side of the insulation layer, and setting an adhesive layer on the upper side of the insulation layer and the first wrapping anchor plate, the first wrapping anchor plate is firmly embedded in the insulation layer by using the adhesive layer and the insulation layer; at the same time, the fixing parts on both sides of the first wrapping anchor plate are anchored to the outer wall, so as to realize the reliable anchoring of the insulation layer and the main body of the building, which greatly improves the safety performance of the insulation decorative panel.
[0022] (2) By setting wrapping anchor plates and reinforcing anchor plates on the upper and lower sides of the insulation layer respectively, and fixing the two ends of the reinforcing anchor plates to the folded edge of the wrapping anchor plates, the insulation layer is sandwiched between the wrapping anchor plates and the reinforcing anchor plates with high rigidity and good flatness, thereby improving the flatness of the insulation board surface.
[0023] (3) In view of the defect that the vacuum insulation board has good thermal insulation performance but is easily punctured and leaks air during transportation and construction, the insulation layer structure of the vacuum insulation board is wrapped with an external insulation board, and the installation holes of the insulation board are set on both sides of the insulation board by wrapping the anchor plate. This ensures that the vacuum insulation board will not be punctured and leak air during transportation and construction because of the protection of the external insulation board. When the insulation board is anchored to the external wall, the installation holes on the insulation board will not puncture the vacuum insulation board, thus ensuring the thermal insulation performance of the vacuum insulation board in engineering applications.
[0024] (4) Sealing grooves are provided on the protective layer and the decorative surface layer to provide space for the filling of sealant. Anchoring holes are opened in the sealing groove area of the first wrapping anchor plate, so that screws can pass through the holes to fix the thermal insulation decorative panel to the exterior wall. After installation, sealant is filled. On the one hand, the sealant fills the sealing groove, forming a sealing barrier between the protective layer, the decorative surface layer and the exterior wall to prevent the intrusion of external moisture, dust and other substances; on the other hand, the screws fix the thermal insulation decorative panel through the anchoring holes, providing a stable mechanical connection, and the sealant wrapping the screws further enhances the sealing and corrosion resistance of the connection. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the first angle cross-sectional structure of the insulation board in Embodiment 1;
[0026] Figure 2 This is a partial cross-sectional view of the insulation board from a second angle in Embodiment 1;
[0027] Figure 3 This is a schematic diagram of a first partial structure of the insulation board in Embodiment 1;
[0028] Figure 4 This is a schematic diagram of the second partial structure of the insulation board in Embodiment 1;
[0029] Figure 5 This is a schematic diagram of the structure of the first package anchor plate in Embodiment 1;
[0030] Figure 6 This is a schematic diagram of the structure of the first package anchor plate and the reinforced anchor plate in Embodiment 1.
[0031] Figure 7 This is a cross-sectional view of the insulation board in Example 2;
[0032] Figure 8 This is a cross-sectional view of the insulation board in Example 3;
[0033] Figure 9 This is a partial structural diagram of the insulation board in Example 4;
[0034] Figure 10 This is a schematic diagram of the second partial structure of the insulation board in Example 4;
[0035] Figure 11 This is a schematic diagram of the insulation board in Example 5;
[0036] Figure 12 This is a schematic diagram of the first angle cross-sectional structure of the insulation board in Example 6;
[0037] Figure 13 This is a schematic diagram of the second-angle cross-sectional structure of the insulation board in Example 6;
[0038] Figure 14 This is a cross-sectional view of the insulation board in Example 7;
[0039] Figure 15 This is a cross-sectional view of the insulation board installed on the exterior wall in Example 7.
[0040] Figure 16 This is a partial cross-sectional view of the insulation board in Example 8;
[0041] Figure 17 This is a cross-sectional structural diagram of the insulation layer in Example 8;
[0042] Figure 18 This is a cross-sectional structural diagram of the insulation layer in Example 9;
[0043] Figure 19 This is a schematic diagram of the external insulation board in Example 9;
[0044] Figure 20 This is a schematic diagram of the external insulation board in Example 10.
[0045] Figure labeling: 100, insulation layer; 110, first groove; 120, second groove; 130, vacuum insulation board; 131, second adhesive; 140, external insulation board; 141, mounting groove; 150, third groove; 160, fourth groove; 200, first wrapping anchor plate; 210, horizontal plate; 211, through hole; 220, folded edge; 221, fixing hole; 230, fixing part; 2 31. Mounting hole; 240. Second wrapping anchor plate; 310. Polymer mortar layer; 311. First mesh fabric; 320. Crack-resistant protective layer; 321. Second mesh fabric; 330. Adhesive layer; 340. Protective fabric layer; 350. Glue; 400. Reinforcing anchor plate; 410. Insertion part; 500. Decorative surface layer; 510. Sealant groove; 520. Screw; 530. Sealant; 600. Exterior wall. Detailed Implementation
[0046] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, so as to make the technical solution of this utility model easier to understand and master. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0047] Example 1
[0048] This embodiment provides a wrap-anchored insulation board. In specific applications, the insulation board is first fixed to the exterior wall 600, and then a decorative surface layer 500 is installed on the insulation board. Figure 1-6 As shown, the insulation board includes an insulation layer 100, at least two first wrapping anchor plates 200, and two protective layers respectively disposed on the upper and lower sides of the insulation layer 100. The upper surface of the insulation layer 100 has at least two first grooves 110. Each first wrapping anchor plate 200 includes a horizontal plate 210 disposed within a first groove 110, a folded edge portion 220 located on one side of the insulation layer 100, and a fixing portion 230 disposed perpendicular to the folded edge portion 220. The fixing portion 230 has mounting holes 231, and the horizontal plate 210 has multiple through holes 211. The protective layer includes an adhesive layer. The first grooves 110 and through holes 211 are filled with the adhesive layer, which is integrally formed with the adhesive layer on the upper side of the insulation board. The insulation layer 100 can be a vacuum insulation board, a thermosetting composite polystyrene foam insulation board, a graphene insulation board, or a graphene insulation board, etc. (Reference keywords: above and below) Figure 1 Perspective, but not limited by this in specific applications.
[0049] In this embodiment, the adhesive layer is a polymer mortar layer 310, and a first mesh fabric 311 is provided inside the polymer mortar layer 310. That is, the protective layer is a polymer mortar layer 310 with a built-in first mesh fabric 311, and the thickness of the polymer mortar layer 310 is 0.3-5mm.
[0050] like Figure 1-6 As shown, the lower surface of the insulation layer 100 is provided with at least two second grooves 120, and a reinforcing anchor plate 400 is provided in the second groove 120. The two ends of the reinforcing anchor plate 400 are fixed to the folded edge portion 220. The reinforcing anchor plate 400 is provided with multiple through holes 211. The second grooves 120 and through holes 211 on the lower surface of the insulation layer 100 are filled with an adhesive layer, which is integrally formed with the adhesive layer on the upper side of the insulation layer 100. This can enhance the flatness of the insulation board.
[0051] like Figure 5 , 6 As shown, the folded edge portion 220 is provided with a fixing hole 221, and both ends of the reinforcing anchor plate 400 are respectively provided with insertion portions 410 that match the shape of the fixing hole 221. The insertion portions 410 are inserted into the fixing hole 221. In other optional embodiments, the two ends of the reinforcing anchor plate 400 and the folded edge portion 220 can be directly fixed by welding.
[0052] Example 2
[0053] The protective layer in Embodiment 1 consists only of a polymer mortar layer 310 with a built-in first mesh fabric 311. The protective layer in this embodiment also includes a crack-resistant protective layer 320.
[0054] Specifically, such as Figure 7 As shown, the protective layer also includes a crack-resistant protective layer 320 outside the polymer mortar layer 310, and a second mesh fabric 321 is provided inside the crack-resistant protective layer 320. This enhances the crack resistance of the insulation board. The crack-resistant protective layer is a crack-resistant mortar layer, a high-performance concrete layer, or a high-ductility concrete layer.
[0055] The other structures in this embodiment are the same as in Embodiment 1.
[0056] Example 3
[0057] In Example 1, the adhesive layer was a polymer mortar layer 310; in this example, the adhesive layer is an adhesive layer 330. For example... Figure 8 As shown, the protective layer also includes a protective fabric layer 340 bonded to the outside of the first adhesive. Protective fabric layers 340 are provided on the adhesive layers on both the upper and lower sides of the insulation layer 100. The protective fabric layer 340 is cement cloth or fiber cloth, etc. Adhesive 350 is also provided on the surrounding sides of the insulation layer 100. Through this structure, the upper, lower, and surrounding sides of the vacuum insulation panel 130 are completely wrapped, preventing the vacuum insulation panel 130 from being punctured and leaking air during construction.
[0058] The other structures in this embodiment are the same as in Embodiment 1.
[0059] Example 4
[0060] This embodiment adds a second wrapping anchor plate 240 to the first embodiment.
[0061] Specifically, such as Figure 9 , 10 As shown, the upper surface of the insulation layer 100 is provided with at least two third grooves 150 perpendicular to the first groove 110. The depth of the third groove 150 is greater than that of the first groove 110. A second wrapping anchor plate 240 is provided in the third groove 150. The second wrapping anchor plate 240 includes a horizontal plate 210 disposed in the second groove 120. Both ends of the horizontal plate 210 have a folded edge portion 220 located on one side of the insulation layer 100 and a fixing portion 230 disposed perpendicular to the folded edge portion 220. The fixing portion 230 is provided with an installation hole 231. The horizontal plate 210 is provided with multiple through holes 211. The third groove 150 and the through holes 211 are filled with an adhesive layer and are integrally formed with the adhesive layer on the upper side of the insulation layer 100. The first wrapping anchor plate 200 and the second wrapping anchor plate 240 are staggered vertically and intersected, which makes the connection between the insulation board and the outer wall 600 more secure.
[0062] Simultaneously, at least two fourth grooves 160 can also be provided on the lower surface of the insulation layer 100. The fourth grooves 160 correspond to the second wrapping anchor plate 240, and reinforcing anchor plates 400 are provided thereon. The two ends of the reinforcing anchor plates 400 are fixed to the two folded edges 220 of the second wrapping anchor plate 240. By adding the second wrapping anchor plate 240 and the corresponding reinforcing anchor plate 400 to the insulation board, the connection performance between the insulation board and the wall is enhanced. The depth of the fourth groove 160 is greater than that of the second groove 120, allowing the mutually perpendicular reinforcing anchor plates 400 to be staggered vertically.
[0063] The other structures in this embodiment are the same as in Embodiment 1.
[0064] Example 5
[0065] In this embodiment, the third groove 150 has the same depth as the first groove 110, and the second wrapping anchor plate 240 has the same height as the first wrapping anchor plate 200. The difference from embodiment four is that the second wrapping anchor plate 240 in this embodiment does not penetrate the entire insulation board and is shorter than that in embodiment four.
[0066] Specifically, such as Figure 11As shown, the upper surface of the insulation layer 100 is provided with at least two third grooves 150 perpendicular to the first groove 110. A second wrapping anchor plate 240 is provided in the third groove 150. The second wrapping anchor plate 240 includes a horizontal plate 210 disposed in the third groove 150. One end of the horizontal plate 210 has a folded edge portion 220 located on one side of the insulation layer 100 and a fixing portion 230 disposed perpendicular to the folded edge portion 220. The other end is fixedly connected to the first wrapping anchor plate 200. The fixing portion 230 is provided with an installation hole 231. The horizontal plate 210 is provided with a plurality of through holes 211. The third groove 150 and the through holes 211 are filled with an adhesive layer and are integrally formed with the adhesive layer on the upper side of the insulation layer 100.
[0067] The other structures in this embodiment are the same as in Embodiment 5.
[0068] Example 6
[0069] like Figure 12 , 13 As shown, this embodiment provides a thermal insulation decorative panel, which adds a decorative surface layer 500 to the first embodiment. The decorative surface layer 500 is fixed to the thermal insulation panel before being installed as a whole onto the exterior wall 600. The decorative surface layer 500 is fixed to the outside of the protective layer, as shown in the reference. Figure 13 From a perspective, a decorative surface layer 500 is set above the insulation board.
[0070] The decorative surface layer 500 can be a paint surface layer, a thin ceramic slab surface layer, a real stone paint surface layer, a soft porcelain surface layer, a metal surface layer, or a thin metal surface layer. Among them, the thin ceramic slab surface layer, the soft porcelain surface layer, the metal surface layer, and the thin metal surface layer are fixed to the polymer mortar layer 310 by adhesive.
[0071] In other optional embodiments, the two opposite sides of the insulation layer 100 are respectively provided with a protective layer and a decorative surface layer 500, and the first mesh fabric 311 of the protective layer on the side of the insulation layer 100 is integrally connected with the first mesh fabric 311 of the protective layer on the upper side of the insulation layer 100.
[0072] The other structures in this embodiment are the same as in Embodiment 1.
[0073] Example 7
[0074] This embodiment adds a sealing groove 510 based on embodiment six.
[0075] Specifically, such as Figure 14 , 15As shown, the protective layer and decorative surface layer 500 are provided with a sealing groove 510. The first wrapping anchor plate has an anchoring hole in the area of the sealing groove for screws 520 to pass through. The sealing groove 510 is filled with sealant 530 after the thermal insulation decorative panel is installed on the exterior wall 600. This makes the connection between the thermal insulation decorative panel and the exterior wall 600 more secure.
[0076] When this type of thermal insulation decorative panel is installed on the exterior wall 600, the side of the thermal insulation decorative panel can be fixed to the exterior wall 600 by wrapping the anchor plate. Alternatively, screws 520 can be drilled at the anchor holes of the sealant groove to fix the panel to the exterior wall 600. The tail of the screw 520 is fixed to the outside of the wrapping anchor plate. After the screws 520 are fixed, sealant is applied to the gaps between adjacent thermal insulation decorative panels and at the sealant groove to ensure that the appearance of the thermal insulation decorative panel is not affected.
[0077] Example 8
[0078] The insulation layer 100 in Embodiment 1 is a single material structure and has a first groove 110, while the insulation layer 100 in this embodiment is a composite structure and does not have a first groove 110.
[0079] Specifically, such as Figure 16 , 17 As shown, the insulation board includes an insulation layer 100, at least two first wrapping anchor plates 200, and two protective layers respectively disposed on the upper and lower sides of the insulation layer 100. The insulation layer 100 includes a vacuum insulation board 130 and an outer insulation board 140 that wraps the vacuum insulation board 130 inside. The first wrapping anchor plate 200 includes a horizontal plate 210, a folded edge portion 220 located on one side of the insulation layer 100, and a fixing portion 230 disposed perpendicular to the folded edge portion 220. The fixing portion 230 is provided with mounting holes 231, and the horizontal plate 210 is provided with multiple through holes 211. The protective layer includes an adhesive layer, and the horizontal plate 210 is located within the adhesive layer. (See reference...) Figure 16 From a viewing angle, the horizontal plate 210 is located in the middle of the adhesive layer in the vertical direction, that is, the adhesive layer is provided above and below the horizontal plate 210 and inside the through hole 211. In this embodiment, the adhesive layer is a polymer mortar layer 310. The external insulation board 140 is a foamed ceramic insulation board. In other optional embodiments, the insulation layer 100 may also be a vacuum insulation board without the first groove 110.
[0080] A reinforcing anchor plate 400 is provided below the insulation layer 100. The two ends of the reinforcing anchor plate 400 are fixed to the folded edge portion 220. The reinforcing anchor plate 400 has multiple through holes 211. The adhesive layer below the insulation layer passes through the through holes on the reinforcing anchor plate and is bonded to the lower side of the insulation layer 100. The reinforcing anchor plate 400 is located in the middle of the polymer mortar layer 310 below the insulation layer 100 in the vertical direction. That is, there is a polymer mortar layer 310 above and below the reinforcing anchor plate 400 and inside the through holes 211.
[0081] The insulation layer 100 includes a vacuum insulation panel 130 and an external insulation panel 140 that completely encloses the vacuum insulation panel 130. The vacuum insulation panel 130 and the external insulation panel 140 are preferably integrally pressed and formed, and the external insulation panel 140 is a thermosetting composite polystyrene foam insulation board, a silicon graphene insulation board, or a graphene insulation board, etc.
[0082] Example 9
[0083] The difference between this embodiment and embodiment eight lies in the structure of the insulation layer 100. In embodiment eight, the external insulation board 140 completely encloses the vacuum insulation board 130, while in this embodiment, the installation space of the vacuum insulation board 130 has an opening.
[0084] Specifically, such as Figure 18 , 19 As shown, the external insulation board 140 has a downward-facing mounting groove 141, and the vacuum insulation board 130 is embedded in the mounting groove 141 and bonded to the external insulation board 140 by a second adhesive 131. The mounting groove 141 is a horizontal through groove; in other optional embodiments, the mounting groove 141 can also be a vertical through groove.
[0085] The other structures in this embodiment are the same as those in Embodiment 8.
[0086] Example 10
[0087] The mounting slot 141 in Embodiment 9 is a transverse through slot, such as... Figure 20 As shown, the mounting groove 141 in this embodiment is a closed groove on all four sides, and the other structures are the same as those in Embodiment Nine.
[0088] The above description is merely a specific embodiment of the utility model, but the scope of protection of the utility model is not limited thereto. Those skilled in the art should understand that the utility model includes, but is not limited to, the content described in the accompanying drawings and the specific embodiments above. Any modifications that do not depart from the functional and structural principles of the utility model will be included within the scope of the claims.
Claims
1. A type of wrapped and anchored insulation board, characterized in that, The device includes an insulation layer (100), at least two first wrapping anchor plates (200), and two protective layers respectively disposed on the upper and lower sides of the insulation layer (100). The first wrapping anchor plate (200) includes a horizontal plate (210), a folded edge portion (220) located on one side of the insulation layer (100), and a fixing portion (230) disposed perpendicular to the folded edge portion (220). The fixing portion (230) is provided with mounting holes (231), and the horizontal plate (210) is provided with multiple through holes (211). The protective layer includes an adhesive layer, which passes through the through holes and is bonded to the insulation layer (100).
2. The wrapping and anchoring type insulation board according to claim 1, characterized in that, The bonding layer is a polymer mortar layer (310), and a first mesh cloth (311) is provided inside the polymer mortar layer (310); Alternatively, the bonding layer is a polymer mortar layer (310), and the protective layer includes a crack-resistant protective layer (320) on the outside of the polymer mortar layer (310), and a second mesh cloth (321) is provided inside the crack-resistant protective layer (320); Alternatively, the adhesive layer is a first adhesive, and the protective layer further includes a protective fabric layer (340) bonded to the outside of the first adhesive.
3. The wrapping and anchoring type insulation board according to claim 1, characterized in that, The upper surface of the insulation layer (100) is provided with at least two first grooves (110), the horizontal plate (210) is embedded in the first grooves (110), the first grooves (110) and the through holes (211) are filled with adhesive layers and are integrally formed with the adhesive layer on the upper side of the insulation plate.
4. The wrapping and anchoring type insulation board according to claim 1, characterized in that, A reinforcing anchor plate (400) is provided below the insulation layer (100). Both ends of the reinforcing anchor plate (400) are fixed to the folded edge (220). The reinforcing anchor plate (400) is provided with multiple through holes (211). The adhesive layer below the insulation layer passes through the through holes on the reinforcing anchor plate (400) and is bonded to the lower side of the insulation layer (100).
5. The wrapping and anchoring type insulation board according to claim 4, characterized in that, The folded edge (220) is provided with a fixing hole (221), and the two ends of the reinforcing anchor plate (400) are respectively provided with a plug-in part (410) that matches the shape of the fixing hole (221), and the plug-in part (410) is inserted into the fixing hole (221).
6. The wrapping anchoring type insulation board according to claim 1, characterized in that, The upper surface of the insulation layer (100) is provided with at least two second wrapping anchor plates (240) perpendicular to the first groove (110). The second wrapping anchor plate (240) includes a horizontal plate (210) disposed in the protective layer. One end of the horizontal plate (210) has a folded edge (220) located on one side of the insulation layer (100) and a fixing part (230) disposed perpendicular to the folded edge (220). The other end is fixedly connected to the first wrapping anchor plate (200). The fixing part (230) is provided with an installation hole (231). The horizontal plate (210) is provided with a plurality of through holes (211). The through holes (211) are filled with an adhesive layer and are integrally formed with the adhesive layer on the upper side of the insulation layer (100).
7. The wrapping and anchoring type insulation board according to claim 1, characterized in that, The insulation layer (100) includes a vacuum insulation panel (130) and an external insulation panel (140) that wraps the vacuum insulation panel (130) inside. A horizontal plate (210) is located above the insulation layer (100) and is located within the adhesive layer.
8. The wrapping and anchoring type insulation board according to claim 7, characterized in that, The external insulation board (140) completely encloses the vacuum insulation board (130); Alternatively, the external insulation board (140) has a downward-facing mounting groove (141), and the vacuum insulation board (130) is embedded in the mounting groove (141) and bonded to the external insulation board (140) by a second adhesive (131).
9. A thermal insulation decorative panel, characterized in that, The insulation board as described in claim 1 is provided with a decorative surface layer (500) on the outer side of the protective layer.
10. A thermal insulation decorative panel according to claim 9, characterized in that, The protective layer and decorative surface layer (500) are provided with a sealant groove (510), and the first wrapping anchor plate (200) is provided with an anchoring hole for screws (520) to pass through in the area of the sealant groove. The sealant groove is filled with sealant (530) after the thermal insulation decorative panel is installed on the exterior wall (600).