Waterproof anti-aging composite insulation board
The modular design of the composite insulation board solves the problems of poor adhesion, cracking, and unevenness in the whole-house structure, achieving a stable connection between the board and the wall and convenient maintenance, thus reducing replacement costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHANDONG FUSHI NEW MATERIAL TECHNOLOGY CO LTD
- Filing Date
- 2026-04-15
- Publication Date
- 2026-05-29
AI Technical Summary
Existing composite insulation boards have problems such as poor adhesion, surface cracking and poor flatness in interior wall decoration, especially the unstable connection between the back and the wall caused by the integrated structure.
It adopts a modular structure that can be assembled on site, including insulation layer components, board reinforcement components and finishing components. It uses components such as wall panels, limit buckles, sliding plates and buckles to achieve a stable connection of the boards and fixes them to the wall with mortar. Combined with the design of stabilizing inserts and guide rods, it enhances the strength of the boards and facilitates maintenance.
It improves the connection between the board and the wall, reduces the cost of board replacement, enhances the flatness and stability of the decorative layer, and facilitates the maintenance and replacement of the board.
Smart Images

Figure CN122106245A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of composite insulation board technology, specifically a waterproof and anti-aging composite insulation board. Background Technology
[0002] Composite insulation board is a prefabricated board made of a variety of functional materials. Its core structure usually includes insulation core material and inner and outer finishing layers. It is mainly used for energy-saving insulation and decoration of buildings.
[0003] Currently, composite insulation boards have certain defects in interior wall decoration. Most composite insulation boards are now prefabricated. Therefore, after the prefabricated composite insulation boards are fixed to the interior walls with mortar, due to the large surface area and weight of the boards, there are problems such as poor adhesion between the back of the board and the wall, systematic cracking of the surface under pressure, and poor flatness.
[0004] In view of this, a waterproof and anti-aging composite insulation board was designed to solve the above problems. Summary of the Invention
[0005] The present invention aims to solve one of the technical problems existing in the prior art or related technologies.
[0006] Therefore, the technical solution adopted in this invention is as follows: A waterproof and anti-aging composite insulation board includes an insulation layer assembly, a board reinforcement assembly disposed on the insulation layer assembly, and a decorative assembly installed on the board reinforcement assembly. The insulation layer assembly includes a reinforcing back panel and reinforcing side panels, with symmetrically distributed waterproof covers on the reinforcing back panel and reinforcing side panels. Multiple evenly distributed limiting buckles are fixedly installed in the gap between the reinforcing back panel and reinforcing side panels. Two symmetrically distributed insulation pads are installed in the gap between two adjacent waterproof covers, and a rectangular gap is reserved between the insulation pads and the limiting buckles. The board reinforcement assembly includes a wall-mounted panel, with multiple evenly distributed sets of buckle plates on the side of the wall-mounted panel away from the wall. The decorative assembly includes a decorative panel inserted into the gap between two adjacent insulation pads.
[0007] In a preferred embodiment, the present invention may be further configured such that: the insulation layer assembly further includes a sliding plate, one end of which has a triangular bevel structure, and the other end of which is provided with a rectangular plate segment. A rectangular frame is provided outside the rectangular plate segment, and a rod is inserted into the rectangular frame and adapted to pass through the rectangular plate segment. A spring is provided outside the rod and the spring is pressed against the rectangular frame and the rectangular plate segment.
[0008] In a preferred embodiment, the present invention may be further configured such that the limiting buckle has an inwardly recessed rectangular horizontal groove on the side facing the wall panel.
[0009] In a preferred embodiment, the present invention may be further configured such that: a leaf spring is fixedly installed on the inner wall of the waterproof cover, a gasket is movably installed inside the waterproof cover, and two plate segments of the gasket are adapted to extend through to the outside of the waterproof cover, while two symmetrically distributed sealing strips are fixedly installed on the two plate segments of the waterproof cover.
[0010] In a preferred embodiment, the present invention may be further configured such that: a sealing groove is provided on the side of the thermal insulation pad facing the waterproof cover, and a sealing strip is adapted to snap into the sealing groove.
[0011] In a preferred embodiment, the present invention can be further configured such that: the interior of the wall panel has a plurality of pre-installed holes evenly distributed, and the reinforcing nails can be fixed to the interior wall through the pre-installed holes, thereby further enhancing the stability of the wall panel after it is attached to the wall.
[0012] In a preferred embodiment, the present invention may be further configured such that: a plurality of stabilizing inserts are evenly distributed on the side of the wall panel away from the interior wall, and the stabilizing inserts are adapted to penetrate into the waterproof cover.
[0013] In a preferred embodiment, the present invention can be further configured as follows: a slide rail is provided inside the decorative panel, a pressure plate is movably installed inside the slide rail, two guide rods are fixedly installed on the pressure plate, and three sets of buckles are symmetrically distributed on the inner wall of the slide rail, the buckles being adapted to snap onto the buckle plate.
[0014] In a preferred embodiment, the present invention can be further configured such that: a groove is provided in the middle of the front side of the decorative panel, and two through holes are provided in the groove, with the guide rod adapted to pass through the through holes.
[0015] In a preferred embodiment, the present invention can be further configured such that: the inner sides of both ends of the decorative panel are provided with inclined surfaces, and the waterproof cover has beveled angles adapted to the inclined surfaces on both sides away from the wall panel section.
[0016] By adopting the above technical solution, the beneficial effects achieved by the present invention are as follows: 1. This invention transforms existing prefabricated composite insulation boards into modular assembly boards that can be assembled on-site. Wall panels are pre-fixed to selected indoor walls, and then directly fixed to the indoor walls using mortar. The reinforcement components and finishing components of each independent module are then assembled onto the wall panels according to the wall dimensions. As a result, the assembled wall insulation layer structure is lighter and further improves the strength of the panels after they are attached to the wall.
[0017] 2. This invention uses a wall panel pre-fixed on the interior wall as a support carrier for the insulation pad and decorative panel. According to the actual thickness of the interior wall, the insulation pad of appropriate thickness is filled in the gap between the decorative panel and the wall panel. This controls the thickness of the wall decoration layer and facilitates the subsequent installation of sound insulation materials.
[0018] 3. This invention optimizes the decorative panel by using a snap-on plate on the wall panel to secure the snap-on fasteners inside the decorative panel. When individual decorative panels are damaged by human impact, the panels can be automatically detached by simply squeezing the guide rod and the pressure plate with a needle, further improving the ease of maintenance of the panels and reducing the cost of replacing them. Attached Figure Description
[0019] Figure 1 This is a schematic diagram illustrating the use of the present invention; Figure 2 This is a bottom view diagram of the present invention; Figure 3 This is a schematic diagram of the sheet metal reinforcement component of the present invention; Figure 4 This is a schematic diagram of the decorative component of the present invention; Figure 5 This is a schematic diagram of the insulation layer assembly of the present invention; Figure 6 For the present invention Figure 5 An explosion diagram; Figure 7 For the present invention Figure 6 Enlarged view of point A in the middle; Figure 8 This is a cross-sectional schematic diagram of the waterproof cover of the present invention.
[0020] Figure label: 100. Insulation layer assembly; 110. Reinforced back panel; 120. Reinforced side panel; 130. Waterproof cover; 140. Insulation pad; 1401. Sealing groove; 150. Limiting buckle; 160. Slide plate; 170. Rectangular frame; 1701. Insert rod; 1702. Spring; 180. Leaf spring; 190. Gasket; 1901. Sealing strip; 200. Panel reinforcement assembly; 210. Wall panel; 220. Pre-installed holes; 230. Stabilizing insert plate; 240. Clip-on panel; 300. Finishing component; 310. Decorative panel; 3101. Panel groove; 3102. Through hole; 320. Slide rail; 330. Pressure plate; 340. Guide rod; 350. Snap fastener. Detailed Implementation
[0021] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features described herein can be combined with each other.
[0022] It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the invention.
[0023] The following describes, with reference to the accompanying drawings, some embodiments of the present invention, providing a waterproof and anti-aging composite insulation board.
[0024] Example 1: Combination Figures 1 to 8 As shown, the present invention provides a waterproof and anti-aging composite insulation board, comprising an insulation layer assembly 100, a board reinforcement assembly 200 disposed on the insulation layer assembly 100, and a decorative assembly 300 installed on the board reinforcement assembly 200. The insulation layer assembly 100 is used to enhance the support carrier for the modular board reinforcement assembly 200 and the decorative assembly 300. The board reinforcement assembly 200 is used to enhance the insulation performance between the decorative assembly 300 and the insulation layer assembly 100. The decorative assembly 300 is used to enhance the protection of the board reinforcement assembly 200 and the insulation layer assembly 100, facilitating the maintenance and replacement of damaged boards in the future.
[0025] The thermal insulation layer assembly 100 includes a reinforcing back plate 110, a reinforcing side plate 120, and a sliding plate 160. The reinforcing back plate 110 and the reinforcing side plate 120 are provided with symmetrically distributed waterproof covers 130. Multiple evenly distributed limit buckles 150 are fixedly installed in the gap between the reinforcing back plate 110 and the reinforcing side plate 120. Two symmetrically distributed thermal insulation pads 140 are installed in the gap between two adjacent waterproof covers 130. A rectangular gap is reserved between the thermal insulation pads 140 and the limit buckles 150. One end of the skateboard 160 has a triangular bevel structure, and the other end of the skateboard 160 is provided with a rectangular plate segment. A rectangular frame 170 is provided on the outside of the rectangular plate segment. A rod 1701 is inserted into the rectangular frame 170 and is adapted to pass through the rectangular plate segment. A spring 1702 is provided on the outside of the rod 1701 and is pressed against the rectangular frame 170 and the rectangular plate segment. The panel reinforcement component 200 includes a wall panel 210 that is attached to the wall, and multiple sets of snap-on panels 240 are evenly distributed on the side of the wall panel 210 away from the wall. The limiting buckle 150 has an inwardly recessed rectangular horizontal groove on the side facing the wall panel 210. The decorative component 300 includes a decorative panel 310 inserted into the gap between two adjacent insulation pads 140. The interior of the decorative panel 310 has a slide rail 320. A pressure plate 330 is movably installed inside the slide rail 320. Two guide rods 340 are fixedly installed on the pressure plate 330. Three sets of buckles 350 are symmetrically distributed on the inner wall of the slide rail 320. The buckles 350 are adapted to be snapped into the buckle plate 240. A panel groove 3101 is opened in the middle of the front of the decorative panel 310. Two through holes 3102 are symmetrically distributed in the panel groove 3101. The guide rods 340 are adapted to pass through the through holes 3102. The decorative panel 310 has beveled surfaces on the inner sides at both ends, and the waterproof cover 130 has beveled angles on both sides away from the wall panel 210 that are adapted to the beveled surfaces.
[0026] Preferably, a gap is reserved between the two limiting buckles 150 symmetrically distributed in the horizontal direction, and the two sliding plates 160 are movably installed in the gap between the two limiting buckles 150. When the plates need to be assembled, the sliding plates 160 are pressed against the back of the insulation pad 140, and the pressed sliding plates 160 are retracted inward along the gap between the limiting buckles 150 and the insulation pad 140. At this time, the sliding plates 160 can enhance the pressure resistance protection of the limiting buckles 150, and at the same time, they can expose the port on the back of the waterproof cover 130, which facilitates the insertion of the subsequent buckle plate 240. When the slide plate 160 retracts to the inside of the limit buckle 150, the rectangular frame 170 and the slide plate 160, which are subjected to reverse pressure by the spring 1702, will further provide lateral support to the insulation pad 140. When the decorative panel 310 is pressed against the outer surface of the two insulation pads 140, the two insulation pads 140 are pressed in the opposite direction and stick to the back of the decorative panel 310, thereby improving the sealing performance of the assembled panels. In addition, the molded wall panel 210 and the stabilizing insert 230 can enhance the firmness of the assembled panel reinforcement component 200 and the decorative component 300. The outer surfaces of the multiple decorative panels 310 in the snap-fit state will be forcibly aligned. In order to facilitate the maintenance or replacement of the damaged decorative panels 310 in the future, the panel groove 3101 reserved in the middle of the assembled decorative panel 310 can be filled with sealant or sealing strip, so as to facilitate the low-cost replacement of individual damaged decorative panels 310 in the future.
[0027] Example 2: Combination Figures 5 to 8 As shown, based on Embodiment 1, a leaf spring 180 is fixedly installed on the inner wall of the waterproof cover 130, a gasket 190 is movably installed inside the waterproof cover 130, and the two plate segments of the gasket 190 are adapted to extend through to the outside of the waterproof cover 130, while two symmetrically distributed sealing strips 1901 are fixedly installed on the two plate segments of the waterproof cover 130. A sealing groove 1401 is provided on the side of the thermal insulation pad 140 facing the waterproof cover 130, and the sealing strip 1901 is adapted to be snapped into the sealing groove 1401.
[0028] Preferably, the waterproof cover 130 has trapezoidal tracks on both sides facing the indoor panel, and the two panels of the gasket 190 are adapted to pass through the trapezoidal tracks, while the two sealing strips 1901 are located inside the trapezoidal tracks. When the stabilizing insert 230 is inserted into the waterproof cover 130, the gasket 190 squeezed by the waterproof cover 130 will push the two sealing strips 1901 outward along the trapezoidal slide. Finally, the two sealed strips 1901 under pressure will be engaged in the two adjacent sealing grooves 1401, which will further enhance the flatness of the two adjacent insulation pads 140 and enhance the flatness of the subsequent assembly of multiple decorative components 300.
[0029] Example 3: Combination Figures 3 to 6 As shown, in the above embodiment, the wall panel 210 has a plurality of evenly distributed pre-installed holes 220 inside, and the reinforcing nails can be fixed to the interior wall through the pre-installed holes 220, further enhancing the stability of the wall panel 210 after it is attached to the wall. On the side of the wall panel 210 away from the interior wall, there are multiple evenly distributed stabilizing inserts 230, which are adapted to penetrate into the waterproof cover 130.
[0030] Preferably, the wall panel 210 is fitted into the rectangular horizontal groove on the back of the limiting buckle 150, and the wall panel 210 and the stabilizing insert 230 are prefabricated structures made by mold. In order to enhance the firmness of the wall panel 210 after it is attached to the wall, the back of the wall panel 210 can be coated with slurry or adhesive. After the wall panel 210 is pre-fixed to the interior wall, the reinforcing nails are inserted into the pre-installation holes 220 to fix the interior wall, thereby enhancing the firmness of the wall panel 210 after it is attached to the wall, and further enhancing the support carrier for the subsequent assembly of multiple sets of panel reinforcement components 200 and decorative components 300.
[0031] The working principle and usage process of this invention: When using it, first clean the wall of the composite insulation board to be installed indoors with a roller brush until the wall is smooth. Then, use a brush to apply a special slurry to the back of the wall panel 210. Then, evenly stick the wall panel 210 with the adhesive slurry layer on the back of the wall panel 210 onto the wall. Until it is completely adhered to the wall, and the part of the wall panel 210 that exceeds the wall is cut off with a cutter. After the grout is completely cured, the assembled wall panel 210 can provide an effective support carrier for the subsequent assembly of composite panels. Next, the modular insulation layer component 100 and the decorative component 300 are evenly assembled onto the wall panel 210 as needed. At this time, the stabilizing insert 230 will be inserted into the reserved slide 320 inside each independent decorative panel 310, and the guide rod 340 will be adapted and snapped onto the buckle 350. After the individual modular insulation layer components 100 and the decorative components 300 are fully assembled onto the wall panel 210, the assembled decorative panels 310 will form a neat planar structure. In order to improve the sealing of the gaps in the reserved panel grooves 3101 in the middle of the assembled decorative panels 310, the panel grooves 3101 can be filled with sealant or sealing strips. The sealant and sealing strips can further enhance the stability of the multiple decorative panels 310 in the vertical direction. Meanwhile, after prolonged use or damage to the outer surface of the decorative panel 310 caused by human factors, in order to reduce maintenance costs and improve the efficiency of panel replacement, workers can use a flat scraper to remove the sealant or sealing strip in the pre-reserved groove 3101 in the middle of the corresponding damaged decorative panel 310. Then, a needle is inserted into the two through holes 3102 inside the damaged decorative panel 310 until the pressure plate 330 is squeezed by the needle and applies pressure to the corresponding three sets of buckles 350. Finally, the three sets of buckles 350 will detach from the corresponding three sets of buckle plates 240. Workers can then use screwdrivers and other tools to pry outwards along the gaps of the decorative panel 310 until the damaged decorative component 300 and the panel reinforcement component 200 can be completely detached from the insulation layer component 100. Since the decorative component 300 and the panel reinforcement component 200 are assembled structures, the decorative panel 310 provides pressure protection for the panel reinforcement component 200, while the subsequent replacement of the panel can further reduce costs.
[0032] Although embodiments of the invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A waterproof and anti-aging composite insulation board, comprising an insulation layer assembly (100), characterized in that, It also includes a plate reinforcement assembly (200) disposed on the insulation layer assembly (100) and a finishing assembly (300) mounted on the plate reinforcement assembly (200); The insulation layer assembly (100) includes a reinforcing back plate (110) and a reinforcing side plate (120), and symmetrically distributed waterproof covers (130) are provided on the reinforcing back plate (110) and the reinforcing side plate (120). A plurality of evenly distributed limit buckles (150) are fixedly installed in the gap between the reinforcing back plate (110) and the reinforcing side plate (120). Two symmetrically distributed insulation pads (140) are installed in the gap between two adjacent waterproof covers (130), and a rectangular gap is reserved between the insulation pads (140) and the limit buckles (150). The plate reinforcement assembly (200) includes a wall panel (210) that is attached to the wall, and the wall panel (210) has a plurality of evenly distributed snap-on panels (240) on the side away from the wall. The finishing component (300) includes a decorative panel (310) inserted into the gap between two adjacent insulation pads (140).
2. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, The insulation layer assembly (100) also includes a sliding plate (160), one end of which has a triangular bevel structure and the other end of which is provided with a rectangular plate segment. A rectangular frame (170) is provided outside the rectangular plate segment. A rod (1701) is inserted into the rectangular frame (170) and is adapted to pass through the rectangular plate segment. A spring (1702) is provided outside the rod (1701) and is pressed against the rectangular frame (170) and the rectangular plate segment.
3. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, The limiting buckle (150) has an inwardly recessed rectangular horizontal groove on the side facing the wall panel (210).
4. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, A leaf spring (180) is fixedly installed on the inner wall of the waterproof cover (130), and a gasket (190) is movably installed inside the waterproof cover (130). The two plate segments of the gasket (190) are adapted to extend through to the outside of the waterproof cover (130), and two symmetrically distributed sealing strips (1901) are fixedly installed on the two plate segments of the waterproof cover (130).
5. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, The heat insulation pad (140) has a sealing groove (1401) on the side facing the waterproof cover (130), and the sealing strip (1901) is adapted to be snapped into the sealing groove (1401).
6. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, The wall panel (210) has a plurality of evenly distributed pre-installed holes (220) inside, and the reinforcing nails can be fixed to the interior wall through the pre-installed holes (220), further enhancing the stability of the wall panel (210) after it is attached to the wall.
7. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, The wall panel (210) has a plurality of evenly distributed stabilizing inserts (230) on the side away from the interior wall, and the stabilizing inserts (230) are adapted to penetrate into the waterproof cover (130).
8. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, The interior of the decorative panel (310) is provided with a slide (320), and a pressure plate (330) is movably installed inside the slide (320). Two guide rods (340) are fixedly installed on the pressure plate (330), and three sets of buckles (350) are fixedly and symmetrically distributed on the inner wall of the slide (320). The buckles (350) are adapted to be snapped into the buckle plate (240).
9. A waterproof and anti-aging composite insulation board according to claim 8, characterized in that, The decorative panel (310) has a groove (3101) in the middle of its front side, and two through holes (3102) are symmetrically distributed in the groove (3101), and the guide rod (340) is adapted to pass through the through hole (3102).
10. The waterproof and anti-aging composite insulation board according to claim 1, characterized in that, The decorative panel (310) has beveled surfaces on the inner sides of both ends, and the waterproof cover (130) has beveled angles on both sides away from the wall panel (210) section that are adapted to the beveled surfaces.