Indoor assembly type integrated wallboard

By adopting the nested connection structure of unit panels and the design of edging strips in prefabricated wall panels, the problem of uneven panels is solved, and the stable connection and aesthetic effect of the wall panels are achieved.

CN223386897UActive Publication Date: 2025-09-26HANGZHOU JUNHUI CONSTR CO LTD
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Patent Information

Application Number
CN202422866535.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-09-26
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

During use, existing prefabricated wall panels lack interconnected structures between panels, resulting in uneven wall panels, affecting the structural firmness and aesthetics.

Method used

Multiple identical unit panels are used, connected by the nested structure of front and rear plywood, slide grooves, and convex grooves, combined with the wrapping protection of edging strips to ensure the alignment and stability of the panels.

Benefits of technology

It realizes the smooth connection of multiple unit panels, is durable, maintains good flatness of the wall panel surface, and is easy to install.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an indoor assembly type integrated wallboard, and relates to the technical field of assembly type wallboards. The indoor assembly type integrated wallboard comprises a plurality of same unit boards. A front clamping plate and a rear clamping plate are arranged above the unit plate. A clamping groove is formed between the front clamping plate and the rear clamping plate. A sliding plate is arranged below the unit plate. And the right side of the unit plate is provided with a groove. The sliding plate of one unit plate can slide into the clamping groove of the lower unit plate in a matched mode, and the left edges and the right edges of the two unit plates are aligned and also aligned in the thickness direction. And the raised line of one unit plate can be adaptively inserted into the groove of the left unit plate, so that the upper edges and the lower edges of the two unit plates are aligned and are also aligned in the thickness direction. A plurality of same unit plates can be aligned left and right and up and down, the surfaces of the connected unit plates are flat, durable and not prone to deformation, and even if deformation occurs, synchronous micro-bending deformation is achieved, and therefore good flatness of the surface of the integrated wallboard can be kept for a long time.
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Description

Technical Field

[0001] The present application relates to the technical field of prefabricated wall panels, and in particular to an indoor prefabricated integrated wall panel. Background Art

[0002] Prefabricated wall panels can be used for TV backgrounds, living room decoration, and more. They can be mass-produced, are lightweight, and feature modular assembly, making on-site construction efficient and labor-intensive. However, current prefabricated wall panels typically utilize close-fitting joints, lacking interconnecting structures. Over time, these panels can develop slight warping, and the degree of warping varies between adjacent panels, resulting in uneven wall panels and impacting their structural strength and aesthetics. Utility Model Content

[0003] In view of the lack of interconnected structures between the panels of prefabricated wall panels, the wall panels will become uneven after long-term use, affecting the structural strength and aesthetics. This application proposes the following solution.

[0004] An indoor assembled integrated wall panel comprises a plurality of identical unit panels.

[0005] The upper side of the unit plate has a front plate and a rear plate. A clamping groove is formed between the front plate and the rear plate. The lower side of the unit plate has a slide plate. The left side of the unit plate has a convex strip, and the right side has a groove.

[0006] The slide plate of one unit plate can be adaptively slid into the clamping groove of the lower unit plate, so that the left and right edges of the two unit plates are aligned as well as aligned in the thickness direction.

[0007] The convex strip of one unit plate can be adaptively inserted into the groove of the left unit plate, so that the upper and lower edges of the two unit plates are aligned as well as aligned in the thickness direction.

[0008] By adopting the above technical solution, multiple identical unit panels can be aligned left and right, up and down, and connected through a nested structure. After connection, the surfaces of the multiple unit panels are flat, durable, and not easy to deform. Even if deformation occurs, it is a synchronous slight deformation, so the good flatness of the surface of the integrated wall panel can be maintained for a long time.

[0009] A preferred structure of the indoor prefabricated integrated wall panel is that the inner side surface of the front clamping plate has a linear front groove. The inner side surface of the rear clamping plate has a linear rear groove. The front groove is parallel to the rear groove. The front side surface of the slide plate has a straight front slide bar, and the rear side surface has a straight rear slide bar. When the slide plate of one unit board slides into the clamping groove of the unit board below, the front slide bar can slide into the front groove, and the rear slide bar can slide into the rear groove.

[0010] By adopting the above technical solution, mutually engaging sliding grooves and sliding bars are provided to strengthen the connection firmness between the upper and lower edges of the unit plate, making it less likely to deflect forwards and backwards.

[0011] A preferred structure of the indoor assembled integrated wall panel is that the front clamping plate is higher than the rear clamping plate, and the front chute is higher than the rear chute.

[0012] By adopting the above technical solution, the upper side of one unit board and the lower side of another unit board are slidably spliced ​​and fixed by the front and rear offset sliding grooves and clamping plates, and the connection structure is firm.

[0013] A preferred structure of the indoor assembled integrated wall panel is that the cross section of the front chute is semicircular, the cross section of the front slide is semicircular, the cross section of the rear chute is semicircular, and the cross section of the rear slide is semicircular.

[0014] By adopting the above technical solution, the unit board is easy to process, the front slide groove and the front slide bar are easy to clean, the front slide bar is not easily damaged by bumps, the rear slide groove and the rear slide bar are easy to clean, and the rear slide bar is not easily damaged by bumps.

[0015] A preferred structure of the indoor assembled integrated wall panel is that the left side of the unit panel has two parallel protrusions and the right side of the unit panel has two parallel grooves. The two parallel protrusions can be fitably inserted into the two parallel grooves.

[0016] By adopting the above technical solution, the connection structure in which the double convex strips are inserted into the double grooves is more stable and less likely to deflect.

[0017] A preferred structure of the indoor prefabricated integrated wall panel is that the indoor prefabricated integrated wall panel further includes an upper edging strip, a lower edging strip, a left edging strip, and a right edging strip. The upper edging strip wraps around the upper edges of the plurality of unit panels after being spliced. The lower edging strip wraps around the lower edges of the plurality of unit panels after being spliced. The left edging strip wraps around the left edges of the plurality of unit panels after being spliced. The right edging strip wraps around the right edges of the plurality of unit panels after being spliced.

[0018] By adopting the above technical solution, the upper and lower, left and right irregular edges of the multiple unit panels after splicing are wrapped and protected.

[0019] A preferred structure of the indoor prefabricated integrated wall panel is that the lower edge of the upper edge strip has a sealing plate. The front side of the sealing plate has a straight front sealing strip, and the rear side has a straight rear sealing strip. The sealing plate can slide into the clamping groove, while the front sealing strip slides into the front sliding groove, and the rear sealing strip slides into the rear sliding groove.

[0020] By adopting the above technical solution, the upper edge strip can be slid into the upper edge of the multiple unit boards that are spliced ​​from any end, making installation easy.

[0021] A preferred structure of the indoor assembled integrated wall panel is that the upper edge of the lower edging strip has a front edging plate and a rear edging plate. The front edging plate is parallel to the rear edging plate, and a edging groove is formed between the front edging plate and the rear edging plate. The inner side surface of the front edging plate has a straight front edging groove. The inner side surface of the rear splint has a straight rear edging groove. The front edging groove, the front edging groove and the rear edging groove are connected. The lower edging strip can be adapted to slide on the lower edge of the unit panel so that the slide plate is embedded in the edging groove, and at the same time, the front slide bar is embedded in the front edging groove, and the rear slide bar is embedded in the rear edging groove.

[0022] By adopting the above technical solution, the lower edge strip can be slid into the lower edge of the multiple unit boards that are spliced ​​from any end, making installation easy.

[0023] A preferred structure of the indoor assembled integrated wall panel is that the left edge strip has multiple sets of wrapping grooves that can be adapted to fit over the multiple convex strips on the left side of the multiple unit panels that are spliced ​​together.

[0024] By adopting the above technical solution, the left edging strip can be directly inserted into the left side of the multiple unit boards that are spliced ​​from the left side, which is convenient for installation.

[0025] A preferred structure of the indoor assembled integrated wall panel is that the right edging strip has multiple groups of inserts, and the multiple groups of inserts can be adaptively inserted into the multiple grooves on the right side of the multiple spliced ​​unit panels.

[0026] By adopting the above technical solution, the right edging strip can be directly inserted into the right side of the multiple unit boards that are spliced ​​from the right side, which is convenient for installation.

[0027] In summary, the indoor assembled integrated wall panel of the present application has the following beneficial effects: multiple identical unit panels can be aligned left and right, up and down, and connected through a mutually nested structure. After connection, the surfaces of the multiple unit panels are flat, durable, and not easy to deform. Even if deformation occurs, it is a synchronous slight bend, so the surface flatness of the integrated wall panel can be maintained for a long time. The assembly method of the wall panel is to first align and splice multiple identical unit panels horizontally and vertically to form a large square-shaped wall panel, and then install the edging. The upper edging strip can be slid into the upper edge of the multiple spliced ​​unit panels from any end, and the lower edging strip can be slid into the lower edge of the multiple spliced ​​unit panels from any end. The left edging strip can be directly inserted into the left side of the multiple spliced ​​unit panels from the left, and the right edging strip can be directly inserted into the right side of the multiple spliced ​​unit panels from the right. It is easy to install and an integrated wall panel with edging on all four sides is obtained. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 This is a front structural diagram of an indoor assembled integrated wall panel.

[0029] Figure 2 This is the front structural diagram of the unit board.

[0030] Figure 3 for Figure 2 Left view of .

[0031] Figure 4 This is the left perspective view of the connection between the upper edge strip, multiple unit plates and the lower edge strip.

[0032] Figure 5 for Figure 2 Stereoscopic image.

[0033] Figure 6 It is the structure of the upper edging strip.

[0034] Figure 7 It is the structure of the lower edging strip.

[0035] Figure 8 It is a structure with a left edging strip.

[0036] Figure 9 It is a structure with a right edging strip.

[0037] 1. Unit board; 101. Front splint; 102. Rear splint; 103. Clamping groove; 1011. Front slide; 1021. Rear slide; 111. Slide plate; 1111. Front slide bar; 1112. Rear slide bar; 121. Raised strip; 131. Groove; 2. Upper edging strip; 3. Lower edging strip; 4. Left edging strip; 5. Right edging strip; 201. Closing plate; 2011. Front sealing strip; 2012. Rear sealing strip; 301. Front wrapping plate; 302. Rear wrapping plate; 303. Wrapping groove; 3011. Front side groove; 3021. Rear side groove; 401. Wrapping groove; 501. Insert strip. DETAILED DESCRIPTION

[0038] The following will be combined with the accompanying drawings to clearly and completely describe the technical solutions in the embodiments. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the following embodiments, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0039] like Figure 1 , an indoor assembled integrated wall panel, comprising a plurality of identical unit panels 1. Figure 2 The unit board 1 is square, and the four sides can have special-shaped structures for connection. For example, the integrated wall panel is made up of nine identical unit boards 1, three unit boards 1 in the horizontal direction and three unit boards 1 in the vertical direction.

[0040] like Figure 3 To achieve this, one embodiment features a front plywood 101 and a rear plywood 102 arranged along the upper edge of the unit panel 1. The front plywood 101 is parallel to the rear plywood 102, with a clamping groove 103 between them. The front plywood 101 is higher than the rear plywood 102. This allows the upper edge of the lower unit panel 1 and the lower edge of the upper unit panel 1 to be slid together and secured by the front and rear plywood, resulting in a smaller gap at the joint.

[0041] The inner side of the front clamping plate 101 has a linear front chute 1011. The cross section of the front chute 1011 is semicircular. The inner side of the rear clamping plate 102 has a linear rear chute 1021. The cross section of the rear chute 1021 is semicircular. The front chute 1011 is parallel to the rear chute 1021 and both are perpendicular to the left side of the unit board 1. The clamping groove 103, the front chute 1011 and the rear chute 1021 are connected. The front chute 1011 is higher than the rear chute 1021.

[0042] like Figure 3 , the lower side of the unit board 1 has a slide plate 111 arranged in a straight line along the lower side. The front side of the slide plate 111 has a straight front slide bar 1111, and the cross section of the front slide bar 1111 is semicircular. The front slide bar 1111 with a semicircular cross section is not easily damaged during the alignment and sliding process with the front slide groove 1011. The rear side of the slide plate 111 has a straight rear slide bar 1112. The cross section of the rear slide bar 1112 is semicircular. The semicircular rear slide bar 1112 is not easily damaged during the alignment and sliding process with the rear slide groove 1021. The front slide bar 1111 is parallel to the rear slide bar 1112, and both are perpendicular to the left side of the unit board 1, so that the two unit boards 1 can be connected by relative sliding from the end side.

[0043] By fixing the two adjacent unit boards 1 with the above-mentioned high and low position sliding grooves and sliding bars on the front and rear sides, the connection between the two adjacent unit boards 1 is more stable and the gap at the connection is smaller.

[0044] like Figure 3 The left side of the unit board 1 has two parallel ridges 121 , the length of the ridges 121 is smaller than that of the left side, and the ridges 121 are parallel to the front surface of the unit board.

[0045] like Figure 4 , which is a structural diagram of multiple unit boards 1 spliced ​​together from top to bottom, with an upper edge strip 2 at the top and a lower edge strip 3 at the bottom.

[0046] accomplish Figure 4The connection process of the structure is that the slide plate 111 below the upper unit plate 1 slides from the end into the clamping groove 103 above the lower unit plate 1. At the same time, the front slide bar 1111 slides into the front slide groove 1011, and the rear slide bar 1112 slides into the rear slide groove 1021. After the sliding connection, the two unit plates 1 are aligned in the thickness direction. Figure 1 , the left and right edges of the two unit boards 1 are also aligned.

[0047] like Figure 5 The right side of the unit board 1 has two parallel grooves 131. The two protrusions 121 on the left side of one unit board 1 can be inserted into the two grooves 131 on the right side of the other unit board 1, so that the upper and lower edges of the two unit boards 1 are aligned and the thickness direction is also aligned. The left and right side insertion process is a face-to-face direct insertion, which is simple and efficient.

[0048] In the above embodiment, after a plurality of identical unit panels 1 are connected, the left and right sides, the upper and lower sides are aligned, and the thickness direction is also aligned, that is, the front side and the rear side are also aligned, and the surface of the connected wall panel is flat.

[0049] After the multiple unit boards 1 are spliced, they have irregular shaped bumps or grooves on their upper and lower sides and left and right sides, so they need to be packaged and protected. Figure 1 The indoor prefabricated integrated wall panel also includes an upper edge strip 2, a lower edge strip 3, a left edge strip 4, and a right edge strip 5. The upper edge strip 2 wraps around the upper edge of the assembled unit panels 1. The lower edge strip 3 wraps around the lower edge of the assembled unit panels 1. The left edge strip 4 wraps around the left edge of the assembled unit panels 1. The right edge strip 5 wraps around the right edge of the assembled unit panels 1. In this way, the upper and lower, and left and right irregular edges of the assembled unit panels 1 are all wrapped and protected.

[0050] like Figure 6 , the lower edge of the upper edging strip 2 has a sealing plate 201. The front side of the sealing plate 201 has a straight front seal 2011, and the rear side has a straight rear seal 2012. The cross-sections of the front seal 2011 and the rear seal 2012 are both semicircular. The sealing plate 201 can be adaptively slid into the clamping groove 103 of the uppermost unit board. At the same time, the front seal 2011 is adaptively slid into the front slide 1011, and the rear seal 2012 is adaptively slid into the rear slide 1021. It can be seen that the lower edge structure of the upper edging strip 2 is similar to the lower edge structure of the unit board 1. The upper edging strip 2 can be slid into the upper edge of the multiple unit boards 1 after splicing from either end, which is convenient for installation.

[0051] like Figure 7The upper edge of the lower edging strip 3 has a front edging plate 301 and a rear edging plate 302. The front edging plate 301 is parallel to the rear edging plate 302, and a edging groove 303 is formed between the front edging plate 301 and the rear edging plate 302. The inner side surface of the front edging plate 301 has a linear front edging groove 3011. The inner side surface of the rear splint 102 has a linear rear edging groove 3021. The cross-sections of the front edging groove 3011 and the rear edging groove 3021 are semicircular. The front edging groove 3011 is parallel to the rear edging groove 3021. The edging groove 303, the front edging groove 3011, and the rear edging groove 3021 are connected. The lower edge strip 3 can be slid from either end under the three lowest joined unit panels 1. During this process, the slide plate 111 slides into the three edge grooves 303, the front slide bar 1111 slides into the three front grooves 3011, and the rear slide bar 1112 slides into the three rear grooves 3021. It can be seen that the upper edge structure of the lower edge strip 3 is similar to that of the upper edge of the unit panels 1. Therefore, the lower edge strip 3 can be slid from either end under the joined unit panels 1, making installation easy.

[0052] like Figure 8 The left edge strip 4 has multiple rows of grooves 401 running from top to bottom, with two grooves 401 in each row. These grooves 401 fit snugly over the rows of protrusions 121 on the left side of the assembled unit panels 1. As can be seen, the structure of the inner side of the left edge strip 4 is similar to that on the right side of the unit panels 1. Therefore, the left edge strip 4 can be inserted horizontally from the left side into the left side of the assembled unit panels 1, making installation easy.

[0053] like Figure 9 The right edge strip 5 has multiple rows of inserts 501, with two inserts 501 in each row. These inserts 501 fit snugly into the multiple rows of grooves 131 on the right side of the assembled unit boards 1. As can be seen, the structure of the inner side of the right edge strip 5 is similar to that on the left side of the unit boards 1. Therefore, the right edge strip 5 can be inserted horizontally from the right side into the right side of the assembled unit boards 1, making installation easy.

[0054] In summary of the above embodiments, the indoor assembled integrated wall panel of the present application is formed by sliding and splicing a plurality of identical unit panels 1 up and down and plugging them in left and right. After connection, the surfaces of the plurality of unit panels 1 are flat, durable, and not easily deformed. Even if deformation occurs, it is a synchronous slight bend, so the surface flatness of the integrated wall panel can be maintained. The plurality of unit panels 1 after splicing can also be edged. When installing the edged, the upper edge strip 2 slides from either the left or right end into the upper side of the plurality of spliced ​​unit panels 1, the lower edge strip 3 slides from either the left or right end into the lower side of the plurality of spliced ​​unit panels 1, the left edge strip 4 moves horizontally from the left side and is inserted into the left side of the plurality of spliced ​​unit panels 1, and the right edge strip 5 moves horizontally from the right side and is inserted into the right side of the plurality of spliced ​​unit panels 1, thereby obtaining an integrated wall panel with edged edges on all four sides.

[0055] Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present application should be included in the scope of protection of the present application.

Claims

1. An indoor assembled integrated wall panel, characterized in that: comprising a plurality of identical unit plates (1); The upper side of the unit plate (1) has a front clamping plate (101) and a rear clamping plate (102); a clamping groove (103) is formed between the front clamping plate (101) and the rear clamping plate (102); the lower side of the unit plate (1) has a slide plate (111); the left side of the unit plate (1) has a convex strip (121) and the right side has a groove (131); The slide plate (111) of one unit plate (1) can be adapted to slide into the clamping groove (103) of the lower unit plate (1), so that the left and right edges of the two unit plates (1) are aligned as well as in the thickness direction; The convex strip (121) of one unit plate (1) can be adapted to be inserted into the groove (131) of the left unit plate (1), so that the upper and lower edges of the two unit plates (1) are aligned as well as in the thickness direction.

2. The indoor assembled integrated wall panel according to claim 1, characterized in that: The inner side surface of the front splint (101) has a straight front sliding groove (1011); the inner side surface of the rear splint (102) has a straight rear sliding groove (1021); the front sliding groove (1011) is parallel to the rear sliding groove (1021); The front side of the slide plate (111) has a straight front slide bar (1111), and the rear side has a straight rear slide bar (1112); When the slide plate (111) of one unit plate (1) slides into the clamping groove (103) of the lower unit plate (1), the front slide bar (1111) can adaptively slide into the front slide groove (1011), and the rear slide bar (1112) can adaptively slide into the rear slide groove (1021).

3. The indoor assembled integrated wall panel according to claim 2, characterized in that: The front splint (101) is higher than the rear splint (102); and the front slide groove (1011) is higher than the rear slide groove (1021).

4. The indoor assembled integrated wall panel according to claim 3, characterized in that: The cross section of the front slide groove (1011) is semicircular, and the cross section of the front slide bar (1111) is semicircular; the cross section of the rear slide groove (1021) is semicircular, and the cross section of the rear slide bar (1112) is semicircular.

5. The indoor assembled integrated wall panel according to claim 1, characterized in that: The left side of the unit plate (1) has two parallel protrusions (121); the right side of the unit plate (1) has two parallel grooves (131); the two parallel protrusions (121) can be adaptively inserted into the two parallel grooves (131).

6. The indoor assembled integrated wall panel according to claim 2, characterized in that: The indoor assembled integrated wall panel further comprises an upper edging strip (2), a lower edging strip (3), a left edging strip (4) and a right edging strip (5); the upper edging strip (2) wraps the upper edge of the plurality of unit panels (1) after being spliced; the lower edging strip (3) wraps the lower edge of the plurality of unit panels (1) after being spliced; the left edging strip (4) wraps the left side of the plurality of unit panels (1) after being spliced; and the right edging strip (5) wraps the right side of the plurality of unit panels (1) after being spliced.

7. The indoor assembled integrated wall panel according to claim 6, characterized in that: The lower edge of the upper edging strip (2) has a sealing plate (201); the front side of the sealing plate (201) has a straight front sealing strip (2011), and the rear side has a straight rear sealing strip (2012); the sealing plate (201) can be adaptively slid into the clamping groove (103), and at the same time, the front sealing strip (2011) can be adaptively slid into the front sliding groove (1011), and the rear sealing strip (2012) can be adaptively slid into the rear sliding groove (1021).

8. The indoor assembled integrated wall panel according to claim 6, characterized in that: The upper edge of the lower wrapping strip (3) has a front wrapping plate (301) and a rear wrapping plate (302); the front wrapping plate (301) is parallel to the rear wrapping plate (302), and a wrapping groove (303) is formed between the front wrapping plate (301) and the rear wrapping plate (302); the inner side surface of the front wrapping plate (301) has a straight front edge groove (3011); the inner side surface of the rear splint (102) has a straight rear edge groove (3021); the front edge groove (3011) is parallel to the rear splint ... The rear groove (3021) is connected to the wrapping groove (303), the front groove (3011) and the rear groove (3021); the lower wrapping strip (3) can be adapted to slide on the lower side of the unit plate (1), so that the slide plate (111) is embedded in the wrapping groove (303), and at the same time, the front slide bar (1111) is embedded in the front groove (3011), and the rear slide bar (1112) is embedded in the rear groove (3021).

9. The indoor assembled integrated wall panel according to claim 6, characterized in that: The left edge strip (4) has multiple sets of wrapping grooves (401); the multiple sets of wrapping grooves (401) can be adapted to be sleeved on the multiple protruding strips (121) on the left side of the multiple unit panels (1) that are spliced ​​together.

10. The indoor assembled integrated wall panel according to claim 6, characterized in that: The right edge strip (5) has multiple groups of insert strips (501), and the multiple groups of insert strips (501) can be adaptively inserted into the multiple grooves (131) on the right side of the multiple unit boards (1) that are spliced ​​together.