Wall surface anti-falling structure
By combining the core board, positioning core board, anti-expansion upright board and anti-crack mesh, the problems of material aging, inconsistent construction quality and environmental factors in wall protection measures are solved, thereby improving the stability and service life of the wall.
Patent Information
- Application Number
- CN202520556579.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-26
AI Technical Summary
Existing wall protection measures suffer from problems such as material aging, inconsistent construction quality, environmental factors, and high maintenance costs, leading to a decline in protective effectiveness.
The wall adopts a combined structure of connecting core board, positioning core board, anti-expansion upright board, external facade support board and crack-resistant mesh, which extends the service life of the wall by limiting wall expansion, providing strength support and preventing cracking.
It effectively limits wall expansion, prevents paint cracking and peeling, increases wall stability and strength, and extends service life.
Smart Images

Figure CN223937529U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to wall surface protection technical field relates to a wall surface anti -falling structure. BACKGROUND
[0002] The existing wall surface protection measures have several shortcomings in preventing wall surface from falling, mainly including material aging, inconsistent construction quality, environmental factors and high maintenance cost. The protective material itself will age over time, leading to a decline in its physical and chemical properties, thereby reducing the protection effect. Inconsistency of construction quality can lead to weak links in the protective layer, which are prone to become the starting point of wall surface falling. Environmental factors such as temperature changes, humidity fluctuations, ultraviolet radiation, etc. can accelerate the degradation of protective materials, affecting their long-term stability. Conventional methods include using more durable protective materials, improving construction standards and quality control, and regular inspection and maintenance. However, these methods also have disadvantages. Using more durable materials may increase initial costs, and improving construction quality control requires more professional construction teams and stricter supervision, which also increases costs, so there is an urgent need for a wall surface anti-falling structure to solve the above problems. SUMMARY
[0003] In view of the deficiencies in the prior art, the utility model aims to provide a wall surface anti-falling structure to solve the problems raised in the background art.
[0004] The utility model discloses the following technical scheme realizes: a wall surface anti-falling structure, including: connecting core plate and connecting panel two, the connecting core plate upper end front and back two sides are equipped with a group of inside positioning slot that is used for with same structure splicing inlay above and below position, the inside positioning slot is a strip rectangular structure, the connecting core plate lower end is equipped with a group of positioning core plate that is used for to the inside of wall surface steady fixed position, the most outside of positioning core plate is equipped with a group of for wall surface main body, the wall surface main body is right side view cross section for a concave structure;
[0005] The wall surface main body includes anti-expansion vertical plate, outer facade support plate and anti-cracking net, the outer side of the anti-expansion vertical plate is equipped with a group of outer facade support plates for supporting the wall surface paint, the right side cross section of the outer facade support plate is a concave structure, and the outer side of the outer facade support plate is equipped with a group of anti-cracking nets for preventing wall surface paint from falling and wall surface cracking.
[0006] In a preferred embodiment, the positioning core plate and the connecting core plate are an integral structure. The positioning core plate has a set of inner sandwich panels on its front and rear sides to limit its front and rear positions. Firstly, when this structure is installed indoors and used as a wall, when the indoor air humidity is too high and causes the inner side of the wall to expand, its anti-expansion facade can effectively limit the degree of expansion inside the wall, thereby preventing the paint on the wall surface from expanding and causing changes in flatness, cracking, dusting, and peeling. At the same time, its outer facade support plate can provide strength support on the outer side of the wall, thereby generating a certain external force on the outer facade of the wall and causing deformation of the wall, preventing the paint on the wall surface from cracking, dusting, and peeling. Meanwhile, its anti-crack mesh can effectively prevent wall cracking and increase the overall stability and strength of the wall, thereby extending the service life of the wall.
[0007] In a preferred embodiment, the outer side of the inner sandwich panel is provided with a set of inner support liner plates for supporting it and preventing expansion and breakage, and the front side of the front inner support liner plate is provided with a set of connecting insert plates for connecting with the front inner liner plate.
[0008] In a preferred embodiment, a set of connecting inserts is provided on the rear side of the inner support liner for connecting with the rear inner liner. The first connecting insert and the second connecting insert are of the same specifications and are respectively attached to and connected to the set of inner support liners.
[0009] In a preferred embodiment, the front side of the connecting panel one and the rear side of the connecting panel two are respectively provided with a set of inner lining plates for supporting the inner side of the wall body. The inner lining plates are bonded and fixed to the connecting panel one, the inner support lining plate and the positioning core plate by adhesive. When the connecting core plate and the positioning core plate expand, the inner support lining plate inside can effectively prevent the deformation of the inner side of the inner sandwich panel caused by the expansion tension, thereby effectively limiting the expansion degree of the connecting core plate and the positioning core plate to prevent affecting the wall body. At the same time, the connecting panel one, the connecting panel two and the connecting core plate can facilitate the workers to combine and splice multiple wall structures.
[0010] In a preferred embodiment, the first connecting panel and the second connecting panel are of the same specifications, and the cross-sectional lengths of the first connecting panel and the second connecting panel are greater than the cross-sectional lengths of the positioning core plate and the inner lining plate.
[0011] In a preferred embodiment, the first connecting panel and the second connecting panel each have a set of inner connecting grooves on their left and right sides for splicing and fitting with the same structure in the left and right directions.
[0012] After adopting the above technical solution, the beneficial effects of this utility model are as follows: When the indoor air humidity is too high, causing the inner side of the wall to expand, its anti-expansion facade can effectively limit the degree of expansion inside the wall, thereby preventing the paint on the wall surface from causing changes in flatness due to internal expansion, and preventing cracking, dusting, and peeling. At the same time, its external facade support plate can provide strength support on the outside of the wall, thereby generating a certain external force on the outer facade of the wall and causing deformation of the wall, preventing cracking, dusting, and peeling of the paint on the wall surface. Meanwhile, its anti-crack mesh can effectively prevent wall cracking and cracking, increase the overall stability and strength of the wall, and thus extend the service life of the wall.
[0013] When the connecting core board and the positioning core board expand, the internal support liner can effectively prevent the deformation of the inner side of the inner sandwich panel caused by the expansion tension, thereby effectively limiting the expansion degree of the connecting core board and the positioning core board to prevent it from affecting the main wall structure. At the same time, connecting panel one, connecting panel two and connecting core board can facilitate workers to combine and splice multiple wall structures. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0015] Figure 1 This is a top view of the right oblique front side of the wall anti-fall-off structure of this utility model;
[0016] Figure 2 This is an inverted top view of the positions of the inner lining plate, inner pad plate, and positioning core plate in a wall anti-fall-off structure of this utility model.
[0017] Figure 3 for Figure 1 Enlarged schematic diagram of the structure at point A in the middle;
[0018] Figure 4 This is a top view of the anti-expansion plate and anti-crack mesh in the wall anti-fall-off structure of this utility model;
[0019] In the diagram: 100-connecting core board, 110-inner positioning groove, 120-inner sandwich board, 130-main wall panel, 140-positioning core hole, 150-inner pad board, 160-inner lining board, 170-connecting panel one, 180-positioning core board, 190-connecting panel two;
[0020] 13a-Anti-expansion support plate, 13b-Exterior facade support plate, 13c-Crack-resistant mesh. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figures 1-4 A wall anti-fall-off structure includes: a connecting core board 100, a wall body 130, and a connecting insert 190. The upper end of the connecting core board 100 is provided with a set of inner positioning grooves 110 on the front and rear sides for splicing and fitting with the same structure at the upper and lower positions. The inner positioning grooves 110 are strip-shaped rectangular structures. The lower end of the connecting core board 100 is provided with a set of positioning core boards 180 for stable positioning inside the wall. The outermost side of the positioning core board 180 is provided with a set of positioning core boards for the wall body 130. The wall body 130 has a concave structure when viewed from the right side.
[0023] The main body of the wall 130 includes an anti-expansion support plate 13a, an external facade support plate 13b, and an anti-crack mesh 13c. An external facade support plate 13b is provided on the outside of the anti-expansion support plate 13a to support the wall paint surface. The right side cross-section of the external facade support plate 13b is a concave structure, and an anti-crack mesh 13c is provided on the outside of the external facade support plate 13b to prevent the wall paint from peeling off and the wall surface from cracking.
[0024] The positioning core plate 180 and the connecting core plate 100 are an integral structure. The positioning core plate 180 has a set of inner sandwich plates 120 on its front and rear sides to limit its front and rear positions.
[0025] Please see Figures 1-4 As the first embodiment of this utility model: Firstly, when this structure is installed indoors and used as a wall, when the indoor air humidity is too high and causes the inner side of the wall body 130 to expand, its anti-expansion facade can effectively limit the degree of expansion inside the wall body 130, thereby preventing the paint on the wall surface from causing internal expansion, resulting in changes in flatness, cracking, dusting, and peeling. At the same time, its outer facade support plate 13b can provide strength support on the outer side of the wall body 130, thereby generating a certain external force on the outer facade of the wall body 130 and causing the wall body 130 to deform, preventing the paint on the wall surface from cracking, dusting, and peeling. Meanwhile, its anti-crack mesh 13c can effectively prevent wall cracking and cracking, increase the overall stability and strength of the wall, thereby extending the service life of the wall.
[0026] The inner sandwich panel 120 is provided with a set of inner support liner plates on the outer side for supporting it and preventing expansion and breakage. The front inner support liner plate is provided with a set of connecting insert plate 170 for connecting with the front inner liner plate 160.
[0027] A set of connecting inserts 190 is provided on the rear side of the inner support liner for connecting with the rear inner liner 160. The connecting inserts 170 and the connecting inserts 190 are of the same specifications and are respectively attached to the set of inner support liners.
[0028] A set of inner lining plates 160 for supporting the inner side of the wall body 130 is provided on the front side of the connecting panel 170 and the rear side of the connecting panel 2 190. The inner lining plates 160 are connected and fixed to the connecting panel 170, the inner support lining plate and the positioning core plate 180 by adhesive.
[0029] Please see Figures 1-4 As a second embodiment of this utility model: based on the description in the above embodiments, when the connecting core plate 100 and the positioning core plate 180 expand, the internal support liner can effectively prevent the deformation of the inner side of the inner sandwich panel 120 caused by the expansion tension, thereby effectively limiting the expansion degree of the connecting core plate 100 and the positioning core plate 180, so as to prevent the wall body 130 from being affected. At the same time, the connecting panel 170, the connecting panel 2 190 and the connecting core plate 100 can facilitate the workers to combine and splice multiple wall structures.
[0030] Connecting panel 170 and connecting panel 2190 have the same specifications, and the cross-sectional length of connecting panel 170 and connecting panel 2190 is greater than the cross-sectional length of positioning core plate 180 and inner lining plate 160.
[0031] Connecting panel 170 and connecting panel 2190 are provided with a set of inner connecting grooves on their left and right sides for splicing and fitting with the same structure in the left and right directions.
[0032] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A wall anti-fall-off structure, comprising: The connecting core plate (100), the wall body (130), and the connecting panel two (190) are characterized in that: the upper end of the connecting core plate (100) is provided with a set of inner positioning grooves (110) on the front and rear sides for splicing and fitting with the same structure at the upper and lower positions, the inner positioning grooves (110) are strip-shaped rectangular structures, the lower end of the connecting core plate (100) is provided with a set of positioning core plates (180) for stable positioning inside the wall, the outermost side of the positioning core plate (180) is provided with a set for the wall body (130), the wall body (130) is a concave structure when viewed from the right side; The wall body (130) includes an anti-expansion support plate (13a), an exterior support plate (13b), and an anti-crack mesh (13c). The anti-expansion support plate (13a) has a set of exterior support plates (13b) on its outer side for supporting the wall paint surface. The right side cross-section of the exterior support plate (13b) is a concave structure, and the exterior support plate (13b) has a set of anti-crack mesh (13c) on its outer side for preventing the wall paint from peeling off and the wall surface from cracking.
2. The wall anti-fall-off structure according to claim 1, characterized in that: The positioning core plate (180) and the connecting core plate (100) are an integral structure. The positioning core plate (180) is provided with a set of inner sandwich plates (120) on the front and rear sides for limiting its front and rear positions.
3. The wall anti-fall-off structure according to claim 2, characterized in that: The inner sandwich panel (120) is provided with a set of inner support liner plates on the outer side for supporting it and preventing expansion and breakage. The front side of the inner support liner plate is provided with a set of connecting insert plate (170) for connecting with the front inner liner plate (160).
4. The wall anti-fall-off structure according to claim 3, characterized in that: The rear side of the inner support liner is provided with a set of connecting inserts two (190) for connecting with the rear inner liner (160). The connecting inserts one (170) and the connecting inserts two (190) are of the same specifications and are respectively attached to a set of inner support liners.
5. A wall anti-fall-off structure according to claim 4, characterized in that: The front side of the connecting panel one (170) and the rear side of the connecting panel two (190) are respectively provided with a set of inner lining plates (160) for supporting the inner side of the wall body (130). The inner lining plates (160) are bonded and fixed to the connecting panel one (170), the inner support lining plate and the positioning core plate (180) by adhesive.
6. A wall anti-fall-off structure according to claim 5, characterized in that: The first connecting panel (170) and the second connecting panel (190) have the same specifications, and the cross-sectional lengths of the first connecting panel (170) and the second connecting panel (190) are greater than the cross-sectional lengths of the positioning core plate (180) and the inner lining plate (160).
7. A wall anti-fall-off structure according to claim 6, characterized in that: The connecting panel one (170) and the connecting panel two (190) are respectively provided with a set of inner connecting grooves on the left and right sides for splicing and fitting with the same structure in the left and right directions.