A detachable indoor assembly type wallboard and a construction method thereof

By simplifying the component structure of prefabricated wall panels and using detachable connectors, the problem of time-consuming on-site sorting was solved, and efficient construction and convenient maintenance were achieved.

CN118911320BActive Publication Date: 2025-10-10THE SECOND CONSTR OF CHINA CONSTR EIGHTH ENG DIV
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Patent Information

Application Number
CN202411332758.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-10-10
Estimated Expiration
2044-09-24

AI Technical Summary

Technical Problem

The existing prefabricated partition walls take a long time to sort various components on site, resulting in low construction efficiency.

Method used

The detachable indoor prefabricated wall panels are used, and the component structure is simplified. Connectors a and b are used to realize detachable connection of the wall panel components, thereby simplifying the construction process.

Benefits of technology

It improves construction efficiency, facilitates later maintenance and partial replacement, reduces sorting operation time, and enhances construction flexibility and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a detachable indoor assembly type wallboard and a construction method, and relates to the technical field of assembly type buildings. The detachable indoor assembly type wallboard comprises a wallboard assembly and a connecting assembly; the connecting assembly comprises a connecting piece, and the connecting piece comprises an L-shaped connecting piece a and a straight-line-shaped connecting piece b. Two side end faces of the wallboard assembly are respectively provided with adaptive jacks, and the first connecting end and the second connecting end can be respectively and adaptively inserted into the adaptive jacks. Therefore, the wallboard assemblies with the same size specifications can be replaced for installation, the defect that the wallboard assemblies need to be numbered one by one and then sequentially installed in the traditional technology is avoided, a more flexible construction form is provided, the time consumption of sorting operation is reduced, and the overall construction efficiency is improved; meanwhile, the wall can be easily removed and partially replaced in the later maintenance process, and the technical effect of convenient assembly and disassembly is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of prefabricated buildings, and in particular to a detachable indoor prefabricated wall panel and a construction method. Background Art

[0002] In modern buildings, high-rise offices are mostly large flat structures, and building space planning requires later decoration design planning. Prefabricated wall technology has been widely used, especially in interior decoration and partition projects.

[0003] Although existing technologies have met the needs of rapid installation and disassembly to a certain extent, the following problems still exist: due to the large number of components used in prefabricated partition walls with different specifications and models, they need to be numbered in the factory and then constructed on-site according to the numbers. Sorting various components on-site takes a lot of time, resulting in reduced overall construction efficiency. Summary of the Invention

[0004] In order to overcome the problem in the above-mentioned background technology that "on-site sorting of various components of prefabricated partition walls requires a lot of time, resulting in reduced overall construction efficiency", the present invention provides a detachable indoor prefabricated wall panel and construction method, which improves the interchangeability between components by simplifying the structure of various components, avoids the problem of special use of special parts, thereby reducing the time spent on sorting operations and improving work efficiency.

[0005] The technical solution adopted by the present invention to solve the above technical problems is:

[0006] A detachable indoor assembled wall panel, comprising a wall panel assembly and a connecting assembly arranged between adjacent wall panel assemblies to serve as a connection; the connecting assembly comprises a connecting piece, the connecting piece comprising a first connecting rod and a second connecting rod fixedly connected to each other, the first connecting rod being provided with a first connecting end at an end away from the second connecting rod, and the second connecting rod being provided with a second connecting end at an end away from the first connecting rod; the connecting piece comprises an L-shaped connecting piece a and a straight-line connecting piece b; the end surfaces on both sides of the wall panel assembly are respectively provided with adapting sockets, and the first connecting end and the second connecting end can be respectively adapted and inserted into the adapting sockets.

[0007] As a further optimization scheme of the present invention, the wall panel assembly includes a supporting keel, a plate body detachably installed on the side of the supporting keel, a top support line detachably plugged into the top of the supporting keel, and a bottom support line detachably plugged into the bottom of the supporting keel; the supporting keel includes a vertical keel and a horizontal keel respectively installed on both sides of the vertical keel, and the plate body is arranged to fit the horizontal keel; the adapter socket is arranged at the end position of the horizontal keel.

[0008] As a further optimization solution of the present invention, the vertical keels are placed upright; a single supporting keel includes a plurality of the vertical keels, and the vertical keels are arranged at equal intervals along the horizontal direction.

[0009] As a further optimization solution of the present invention, the transverse keel is placed horizontally; a single supporting keel includes a plurality of transverse keels, and the transverse keels are arranged at equal intervals along the vertical direction.

[0010] As a further optimization scheme of the present invention, the top support line is provided with a first main body with an N-shaped cross-section, the two inner walls of the first main body are respectively provided with first inner support ribs, the two inner walls of the first main body are respectively provided with second inner support ribs, and the first inner support ribs are located below the second inner support ribs; a first plug-in gap is provided between the first inner support ribs and the second inner support ribs on the same side; the top of the vertical keel is square tube-shaped, and the two opposite side walls of the top of the vertical keel are respectively provided with first wing plates, and the first wing plates can be bent outward to form a first clamping portion adapted to the first plug-in gap.

[0011] As a further optimization scheme of the present invention, the first wing plate includes a first bending portion and a second bending portion located below the first bending portion, a first groove is provided between the first bending portion and the second bending portion, and a second groove is provided at the bottom end of the second bending portion; the first wing plate can be bent outward at the positions of the first groove and the second groove.

[0012] As a further optimization solution of the present invention, the first clamping portion is in a 7-shape; the width of the first bending portion is adapted to the height of the first insertion gap, and the width of the second bending portion is adapted to the depth of the first insertion gap.

[0013] As a further optimization scheme of the present invention, the bottom support line is provided with a second U-shaped main body, the two inner walls of the second main body are respectively provided with third inner support ribs, the two inner walls of the second main body are respectively provided with fourth inner support ribs, and the third inner support ribs are located below the fourth inner support ribs; a second plug-in gap is provided between the third inner support ribs and the fourth inner support ribs on the same side; the bottom end of the vertical keel is square tube-shaped, and second wing plates are respectively provided at the two opposite side walls of the bottom end of the vertical keel, and the first wing plate can be bent outward to form a second clamping portion that adapts to the second plug-in gap, and the thickness of the second clamping portion is adapted to the height of the second plug-in gap.

[0014] As a further optimization solution of the present invention, mounting holes adapted for expansion bolts are respectively provided on the top of the first main body and the bottom of the second main body.

[0015] A wall panel construction method for assembling detachable indoor prefabricated wall panels, comprising the following steps: S1, using expansion bolts to install the bottom support line on the top surface of the current floor slab, and using expansion bolts to install the top support line on the bottom surface of the upper floor slab, and the top support line is adapted to be installed directly above the bottom support line; S2, using a bending device to bend the first wing plate to form the first clamping portion, and the second wing plate to be bent to form the second clamping portion; S3, pre-assembling the vertical keels and the horizontal keels that are in direct contact to form a plurality of keel modules; S4, The blocks are inserted one by one between the bottom support line and the top support line, so that the first clamping part is inserted into the first plug-in gap and the second clamping part is inserted into the second plug-in gap; the adjacent positions of the keel modules form a right angle, a negative angle or a positive angle structure, and the adjacent keel modules at the right angle position are connected using the connecting piece b, and the adjacent keel modules at the negative angle and positive angle positions are connected using the connecting piece a; S5, filling the keel module with sound insulation cotton; S6, installing the plate body on both sides of the keel module; S7, using the end plate to cover the exposed surface of the end of the keel module.

[0016] In summary, the present invention is beneficial in that:

[0017] (1) The present invention has a simple structure and reliable functions. It utilizes connectors a and b to provide detachable connections between adjacent wall panel components, and is used for convenient installation of target partition walls at flat corners, inner corners, and outer corners. It also facilitates the removal and partial replacement of partition walls during subsequent maintenance, thereby achieving the technical effect of convenient loading and unloading.

[0018] (2) The first connecting end and the second connecting end of the connector a can be independently adapted and inserted into the adapting socket at the end of the wall panel assembly, and the first connecting end and the second connecting end of the connector b can be independently adapted and inserted into the adapting socket at the end of the wall panel assembly, so that the wall panel assemblies of the same size and specification in the present invention can be replaced with each other for installation, avoiding the defect of the traditional technology that the wall panel assemblies need to be numbered one by one and then installed in sequence, thereby having a more flexible construction form.

[0019] (3) After the first wing plate and the second wing plate are cut and formed in the factory, they are transported in a non-bent state. Then, the first wing plate and the second wing plate can be arranged in the same plane as the side wall of the vertical keel, so that the vertical keel can be transported in a square and regular shape as much as possible, which makes it easier to bundle and stack, and avoids the difficulty of bundling and stacking caused by the protruding first clamping part and the second clamping part formed after bending.

[0020] (4) The first groove, the second groove and the third groove can reduce the thickness of the vertical keel side wall at the position, so as to facilitate the bending of the first wing plate at the positions of the first groove and the second groove, and facilitate the bending of the second wing plate at the position of the third groove; at the same time, the first groove, the second groove and the third groove can mark the bending position for the construction personnel, so as to increase the convenience and accuracy of construction operation. BRIEF DESCRIPTION OF DRAWINGS

[0021] The present application will be further described below in conjunction with the drawings:

[0022] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0023] Figure 2 It is a schematic diagram of the structure of the connecting piece a;

[0024] Figure 3 It is a schematic diagram of the structure of the connecting piece b;

[0025] Figure 4 It is a schematic diagram of the structure of the supporting keel;

[0026] Figure 5 It is a schematic diagram of the installation structure of the external corner position;

[0027] Figure 6 It is a schematic diagram of the installation position and structure of the top support line and the bottom support line;

[0028] Figure 7 It is a schematic diagram of the installation structure of the internal corner position;

[0029] Figure 8 It is a schematic diagram of the vertical section structure of the wallboard assembly;

[0030] Figure 9 It is a schematic diagram of the vertical section structure of the top support line;

[0031] Figure 10 It is a schematic diagram of the position and structure of the first wing plate;

[0032] Figure 11 It is a schematic diagram of the vertical section structure of the first clamping part adapting to the first plug-in gap;

[0033] Figure 12 It is a schematic diagram of the position and structure of the second wing plate;

[0034] Figure 13 It is a schematic diagram of the vertical section structure of the bottom support line;

[0035] Figure 14 It is a schematic diagram of the vertical section structure of the second clamping part adapting to the second plug-in gap;

[0036] Figure 15 It is a schematic diagram of the position and structure of the installation end.

[0037] BRIEF DESCRIPTION OF DRAWINGS

[0038] In the drawings,

[0039] 1, connecting assembly; 1a, connecting piece a; 1b, connecting piece b; 11, first connecting rod; 12, second connecting rod; 13, first connecting end; 14, second connecting end;

[0040] 2, wallboard assembly; 21, support joist; 211, vertical joist; 2111, first clamping portion; 2112, first wing plate; 21121, first bending portion; 21122, second bending portion; 2113, first groove; 2114, second groove; 2115, second wing plate; 2116, third groove; 212, horizontal joist; 2121, mounting end; 2122, self-tapping screw; 2123, end plate; 22, plate body; 23, bracing strip; 231, first main body; 232, first inner bracing rib plate; 2321, first fitting portion; 233, second inner bracing rib plate; 234, first outer bracing rib plate; 235, first decorative rib plate; 24, bottom bracing strip; 241, second main body; 242, third inner bracing rib plate; 243, fourth inner bracing rib plate; 2431, second fitting portion; 244, second outer bracing rib plate; 245, second decorative rib plate. DETAILED DESCRIPTION

[0041] According to the above structural features of the present application, the embodiments of the present application are further described:

[0042] With reference to Figure 1 The present embodiment provides a detachable indoor assembly type wallboard, which comprises a wallboard assembly 2 and a connecting assembly 1 arranged between adjacent wallboard assemblies 2 to play a connecting role. The connecting assembly 1 can realize detachable connection between adjacent wallboard assemblies 2, thereby facilitating the assembly and disassembly and partial replacement of the present application during later maintenance and repair.

[0043] With reference to Figure 2 With Figure 3The connecting assembly 1 comprises a connecting piece, the connecting piece comprises a first connecting rod 11 and a second connecting rod 12 fixedly connected with each other (for example, fixedly connected in an integrated manner or fixedly connected by bolts). The end of the first connecting rod 11 away from the second connecting rod 12 is provided with a first connecting end 13 (for example, fixedly connected by bolts or fixedly connected in an integrated manner), and the end of the second connecting rod 12 away from the first connecting rod 11 is provided with a second connecting end 14 (for example, fixedly connected by bolts or fixedly connected in an integrated manner). The connecting piece comprises a connecting piece a1a in the shape of an L and a connecting piece b1b in the shape of a straight line. The connecting piece a1a is pre-manufactured in multiple pieces according to requirements and transported to the construction site, and the connecting piece b1b is pre-manufactured in multiple pieces according to requirements and transported to the construction site. In the connecting piece a1a, the included angle between the first connecting rod 11 and the second connecting rod 12 is set according to the modeling of the target partition wall; the target partition wall is pre-generated by a computer to generate a three-dimensional model to clearly define the specific angle of the included angle of the connecting piece a1a at each position.

[0044] With reference to Figure 5 With Figure 7 , the two side end faces of the wallboard assembly 2 are provided with adaptive insertion holes, and the first connecting end 13 and the second connecting end 14 can be respectively and adaptively inserted into the adaptive insertion holes, so as to realize connection.

[0045] With reference to Figure 4 , the wallboard assembly 2 comprises a support joist 21, a plate body 22 detachably mounted on the side of the support joist 21, a top support line 23 detachably inserted into the top of the support joist 21, and a bottom support line 24 detachably inserted into the bottom of the support joist 21. The support joist 21 comprises a vertical joist 211 and a horizontal joist 212 mounted on the two sides of the vertical joist 211, and the plate body 22 is arranged in abutment with the horizontal joist 212. The vertical joist 211 and the horizontal joist 212 are detachably connected by bolts, the plate body 22 and the horizontal joist 212 are detachably connected by bolts, the top end of the vertical joist 211 is detachably inserted into the top support line 23, and the bottom end of the vertical joist 211 is detachably inserted into the bottom support line 24.

[0046] With reference to Figure 1 , Figure 2 , Figure 5 With Figure 7The transverse keel 212 is in a quadrangular tube structure, and the adaptive jack is arranged at the end of the transverse keel 212, and the end of the inner cavity of the transverse keel 212 in the quadrangular tube structure is the adaptive jack. The first jack hole is arranged in the side wall of each end of the transverse keel 212, the second jack hole is arranged in the side wall of the first connecting end 13, and the third jack hole is arranged in the side wall of the second connecting end 14. When the first connecting end 13 is inserted into the adaptive jack, the second jack hole is aligned with the first jack hole, at this time, the mounting bolt is inserted into the first jack hole and screwed with the second jack hole, and the installation is realized; when the second connecting end 14 is inserted into the adaptive jack, the third jack hole is aligned with the first jack hole, at this time, the mounting bolt is inserted into the first jack hole and screwed with the third jack hole, and the installation is realized.

[0047] With reference to Figure 4 , Figure 6 and Figure 8 , the vertical keel 211 is vertically arranged; the single supporting keel 21 includes a plurality of vertical keels 211, and the vertical keels 211 are arranged at equal intervals along the horizontal direction, so that uniform force bearing is realized. The transverse keel 212 is horizontally arranged; the single supporting keel 21 includes a plurality of transverse keels 212, and the transverse keels 212 are arranged at equal intervals along the vertical direction, so that uniform force bearing is realized.

[0048] With reference to Figure 6 , Figure 8 , Figure 9 and Figure 10 , the top support line 23 is integrally formed by extrusion. The top support line 23 is provided with a first body 231 in an n-shaped cross section, two inner walls of the first body 231 are respectively provided with first inner support rib plates 232, two inner walls of the first body 231 are respectively provided with second inner support rib plates 233, and the first inner support rib plates 232 are located below the second inner support rib plates 233; a first jack gap is arranged between the first inner support rib plates 232 and the second inner support rib plates 233 on the same side; the top end of the vertical keel 211 is in a square tube shape, and the first wing plate 2112 is arranged at the positions of the two opposite side walls of the top end of the vertical keel 211 (pre-cut and formed in the factory), and the first wing plate 2112 can be bent outward to form a first clamping part 2111 which is adapted to limit and support the first jack gap.

[0049] With reference to Figure 9 , Figure 10 and Figure 11, the first wing plate 2112 includes a first bending part 21121 and a second bending part 21122 located below the first bending part 21121, a first groove 2113 is arranged between the first bending part 21121 and the second bending part 21122, and a second groove 2114 is arranged at the bottom end of the second bending part 21122; the first groove 2113 and the second groove 2114 are both horizontally arranged; the first wing plate 2112 can be bent outwardly and downwardly at the positions of the first groove 2113 and the second groove 2114, so as to form a first clamping part 2111. The first groove 2113 and the second groove 2114 are pre-cut and formed in the factory.

[0050] The first groove 2113, the second groove 2114 and the third groove 2116 can reduce the thickness of the side wall of the vertical keel 211 at the positions, so as to facilitate the bending of the first wing plate 2112 at the positions of the first groove 2113 and the second groove 2114 and the bending of the second wing plate 2115 at the position of the third groove 2116; at the same time, the first groove 2113, the second groove 2114 and the third groove 2116 can mark the bending positions for the construction personnel, so as to increase the convenience and accuracy of construction operation.

[0051] Referring to 10 and Figure 11 , the first clamping part 2111 is in the shape of a 7; the width of the first bending part 21121 is adapted to the height A of the first insertion gap, and the width of the second bending part 21122 is adapted to the depth B of the first insertion gap, so as to realize the stable clamping of the vertical keel 211 and the bracing line 23.

[0052] Referring to Figure 10 and Figure 11 , the unbent part of the top end of the vertical keel 211 abuts against the top surface of the inner cavity of the bracing line 23.

[0053] Referring to Figures 12 to 14 , the bottom bracing line 24 is integrally formed by extrusion. The bottom bracing line 24 is provided with a second main body 241 in the shape of a U, two inner walls of the second main body 241 are respectively provided with third inner support rib plates 242, two inner walls of the second main body 241 are respectively provided with fourth inner support rib plates 243, the third inner support rib plates 242 are located below the fourth inner support rib plates 243; a second insertion gap is arranged between the third inner support rib plates 242 and the fourth inner support rib plates 243 on the same side; the bottom end of the vertical keel 211 is in the shape of a square tube, the second wing plate 2115 is arranged at the positions of two opposite side walls of the bottom end of the vertical keel 211, the first wing plate 2112 can be bent outwardly to form a second clamping part adapted to the second insertion gap, the thickness of the second clamping part is adapted to the height C of the second insertion gap, and the width of the second clamping part is adapted to the depth D of the second insertion gap, so as to realize the stable clamping.

[0054] Referring to Figure 13 and Figure 14The unbent portion of the bottom end of the vertical keel 211 abuts against the top surface of the inner cavity of the bottom support line 24.

[0055] The top of the first body 231 and the bottom of the second body 241 are respectively provided with mounting holes adapted for expansion bolts. During installation, the top support line 23 and the bottom support line 24 are installed at the floor position by inserting the expansion bolts into the mounting holes.

[0056] Reference Figure 10 After the first wing plate 2112 and the second wing plate 2115 are cut and formed in the factory, they are transported in a non-bent state. Then, the first wing plate 2112 and the second wing plate 2115 can be arranged in a coplanar form with the side wall of the vertical keel 211, so that the vertical keel 211 can be transported in a square and regular shape as much as possible, which is easier to bundle and stack, and avoids the difficulties in bundling and stacking caused by the protruding first clamping part 2111 and the second clamping part formed after bending.

[0057] Reference Figure 9 The outer wall of the first main body 231 is provided with a first external supporting rib 234, and a first right-angled adapter slot is formed between the lower end of the outer wall of the first main body 231 and the first external supporting rib 234; the first adapter slot is used to accommodate the top edge of the plate body 22, thereby reducing the external visibility of the supporting keel 21 and improving the aesthetics of the present invention.

[0058] Reference Figure 13 The outer wall of the second main body 241 is provided with a second external supporting rib 244, and a second right-angled adapter slot is formed between the lower end of the outer wall of the second main body 241 and the second external supporting rib 244; the second adapter slot is used to accommodate the bottom edge of the plate body 22, thereby reducing the external visibility of the support keel 21 and improving the aesthetics of the present invention.

[0059] Reference Figure 9 The outer side wall of the first main body 231 is provided with a first decorative rib 235 , and the first decorative rib 235 is located above the first outer support rib 234 to improve the aesthetics of the top support line 23 .

[0060] Reference Figure 13 The outer side wall of the second main body 241 is provided with a second decorative rib 245 , and the second decorative rib 245 is located below the second outer support rib 244 to improve the aesthetics of the top support line 23 .

[0061] Reference Figure 5 Since horizontal keels 212 are provided on both sides of the vertical keel 211, two pairs of mutually perpendicular horizontal keels 212 are formed at the inner corner and the outer corner, and two connecting members a1a are required for connection to ensure sufficient stability.

[0062] Reference Figure 9The bottom surface of the first inner supporting rib 232 is vertically provided with a first fitting portion 2321 away from the edge of the first outer supporting rib 234. The first fitting portion 2321 is fitted with the outer wall of the vertical keel 211 to reduce the wear of the first inner supporting rib 232 during installation and improve the installation stability of the top supporting line 23. Similarly, referring to Figure 13 A second fitting portion 2431 is vertically provided on the top surface of the fourth inner supporting rib 243 away from the edge of the first outer supporting rib 234. The second fitting portion 2431 is fitted with the outer wall of the vertical keel 211 to reduce the wear of the fourth inner supporting rib 243 during installation, while improving the installation stability of the bottom support line 24.

[0063] A wall panel construction method for assembling detachable indoor prefabricated wall panels, comprising the following steps:

[0064] S1. Use expansion bolts to install the bottom support line 24 on the top surface of the current floor slab, and use expansion bolts to install the top support line 23 on the bottom surface of the upper floor slab, and the top support line 23 is adapted to be installed directly above the bottom support line 24.

[0065] S2. Use a bending device (such as a tool such as pliers) to bend the first wing plate 2112 outward along the first groove 2113 and the second groove 2114 to form a first clamping portion 2111, and bend the second wing plate 2115 outward along the third groove 2116 to form a second clamping portion.

[0066] S3. Pre-assemble the vertical keels 211 and the horizontal keels 212 that are in direct contact to form a plurality of keel modules.

[0067] S4. Insert the keel modules one by one between the bottom support line 24 and the top support line 23, so that the first clamping part 2111 is inserted into the first plug-in gap and the second clamping part is inserted into the second plug-in gap; the adjacent keel module positions form a right angle, a negative angle or a positive angle structure, and the adjacent keel modules at the right angle position are connected using the connector b1b, and the adjacent keel modules at the negative angle and positive angle positions are connected using the connector a1a.

[0068] S5. Fill the keel module with sound insulation cotton, and bond the sound insulation cotton to the vertical keel 211 and / or the horizontal keel 212 or snap-fit ​​them together.

[0069] S6. Use bolts to install the plate 22 on both sides of the keel module so that the top edge of the plate 22 is placed in the first adapter slot and the bottom edge is placed in the second adapter slot.

[0070] S7. Use the end plate 2123 to cover the exposed end surface installed on the keel module.

[0071] Step S7 further includes the following sub-steps:

[0072] S71. Insert the mounting end 2121 into the adapter socket at the end of the transverse keel 212 at the exposed surface of the end of the keel module, align the fourth plugging screw hole on the mounting end 2121 with the first plugging hole on the transverse keel 212, and then insert the mounting screw through the first plugging hole and tighten it with the fourth plugging screw hole to complete the installation of the mounting end 2121.

[0073] S72. Use a marking tool to removably mark the position of the end plate 2123 corresponding to the installation end head 2121;

[0074] S73. Fit the end plate 2123 onto the end surface of the keel module, and drive the self-tapping screw 2122 into the marked position until the self-tapping screw 2122 bites the installation end 2121 tightly.

[0075] The marking tool is, for example, chalk, and the mark that can be removed (for example, by brushing it off) is the chalk coating. The mounting end 2121 is a wooden structure, thereby facilitating the installation of the self-tapping screw 2122.

[0076] The plate body 22 and the end plate 2123 are both calcium silicate boards.

[0077] Reference Figure 9 and Figure 13 Since most of the weight of the vertical keel 211 is on the bottom support line 24, the bottom end of the vertical keel 211 is more stable and less likely to shake; the top end of the vertical keel 211 is only limited by the top support line 23, and the probability of shaking is greater, especially after the keel module is disassembled and assembled many times, the first fitting part 2321 and the second inner support rib 233 are worn, and the shaking amplitude will be further increased. Figure 9 and Figure 11 The user uses a bending tool to bend the bottom end of the second bending portion 21122 of the first clamping portion 2111 outward, thereby increasing the longitudinal projection area of ​​the second bending portion 21122, and then inserts the keel module so that the second bending portion 21122 fits the first plug-in gap as closely as possible to solve the problem of shaking at the top of the vertical keel 211.

[0078] Figure 1 In order to increase the visibility of the supporting keel 21, the plate 22 is reduced in size.

[0079] In the description of the present invention, it should be noted that the terms "up", "down", "left", "right", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the present invention.

[0080] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "arrange", "mount", "connect" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integrally connected, it can be mechanical connection, or electrical connection, it can be direct connection, or connection through intermediate medium, it can be internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0081] In summary, for those skilled in the art, according to the guidance of the present application, the changes, modifications, replacements, deformations made to the present application without departing from the principles and spirits of the present application still fall within the protection scope of the present application.

Claims

1. A detachable indoor assembled wall panel, characterized by: It comprises a wall panel assembly (2) and a connecting assembly (1) provided between adjacent wall panel assemblies (2) and having a connecting function; The connecting assembly (1) comprises a connecting member, wherein the connecting member comprises a first connecting rod (11) and a second connecting rod (12) fixedly connected to each other, wherein the end of the first connecting rod (11) away from the second connecting rod (12) is provided with a first connecting end (13), and the end of the second connecting rod (12) away from the first connecting rod (11) is provided with a second connecting end (14); the connecting member comprises an L-shaped connecting member a (1a) and a straight-line-shaped connecting member b (1b); Adaptation sockets are respectively provided on both side end surfaces of the wall panel assembly (2), and the first connection end (13) and the second connection end (14) can be respectively adapted and plugged into the adaptation sockets; The wall panel assembly (2) comprises a supporting keel (21), a plate body (22) detachably mounted on a side of the supporting keel (21), a top support line (23) detachably plugged into the top of the supporting keel (21), and a bottom support line (24) detachably plugged into the bottom of the supporting keel; the supporting keel (21) comprises a vertical keel (211) and horizontal keels (212) respectively mounted on both sides of the vertical keel (211); the plate body (22) is arranged to fit the horizontal keel (212); the adapting socket is arranged at an end position of the horizontal keel (212); The top support line (23) is provided with a first main body (231) with an N-shaped cross-section, the two inner walls of the first main body (231) are respectively provided with a first inner support rib (232), the two inner walls of the first main body (231) are respectively provided with a second inner support rib (233), and the first inner support rib (232) is located below the second inner support rib (233); a first plug-in gap is provided between the first inner support rib (232) and the second inner support rib (233) on the same side; the top end of the vertical keel (211) is in the shape of a square tube, and the two opposite side walls of the top end of the vertical keel (211) are respectively provided with a first wing plate (2112), and the first wing plate (2112) can be bent outward to form a first clamping portion (2111) adapted to the first plug-in gap.

2. The detachable indoor assembled wall panel according to claim 1, characterized in that: The vertical keels (211) are arranged upright; a single supporting keel (21) comprises a plurality of vertical keels (211), and the vertical keels (211) are arranged at equal intervals along the horizontal direction.

3. The detachable indoor assembled wall panel according to claim 2, characterized in that: The transverse keels (212) are arranged transversely; a single supporting keel (21) includes a plurality of transverse keels (212), and the transverse keels (212) are arranged at equal intervals along the vertical direction.

4. The detachable indoor assembled wall panel according to claim 3, characterized in that: The first wing plate (2112) comprises a first bending portion (21121) and a second bending portion (21122) located below the first bending portion (21121); a first groove (2113) is provided between the first bending portion (21121) and the second bending portion (21122); and a second groove (2114) is provided at the bottom end of the second bending portion (21122); the first wing plate (2112) is capable of bending outward at the positions of the first groove (2113) and the second groove (2114).

5. The detachable indoor assembled wall panel according to claim 4, characterized in that: The first clamping portion (2111) is in the shape of a figure 7; the width of the first bending portion (21121) is adapted to the height of the first plug-in gap, and the width of the second bending portion (21122) is adapted to the depth of the first plug-in gap.

6. The detachable indoor assembled wall panel according to claim 5, characterized in that: The bottom support line (24) is provided with a second main body (241) in a U-shape, and the two inner walls of the second main body (241) are respectively provided with a third inner support rib (242), and the two inner walls of the second main body (241) are respectively provided with a fourth inner support rib (243), and the third inner support rib (242) is located below the fourth inner support rib (243); a second plug-in gap is provided between the third inner support rib (242) and the fourth inner support rib (243) on the same side; the bottom end of the vertical keel (211) is in a square tube shape, and the two opposite side walls of the bottom end of the vertical keel (211) are respectively provided with a second wing plate (2115), and the first wing plate (2112) can be bent outward to form a second clamping portion adapted to the second plug-in gap, and the thickness of the second clamping portion is adapted to the height of the second plug-in gap.

7. The detachable indoor assembled wall panel according to claim 6, characterized in that: The top of the first main body (231) and the bottom of the second main body (241) are respectively provided with mounting holes adapted for expansion bolts.

8. A wall panel construction method, characterized in that: The steps of assembling the detachable indoor assembled wall panel according to claim 7 include: S1. Use expansion bolts to install the bottom support line (24) on the top surface of the current floor slab, and use expansion bolts to install the top support line (23) on the bottom surface of the upper floor slab, and the top support line (23) is adapted to be installed directly above the bottom support line (24); S2, using a bending device to bend the first wing plate (2112) to form the first clamping portion (2111), and to bend the second wing plate (2115) to form the second clamping portion; S3, pre-assembling the vertical keels (211) and the transverse keels (212) that are in direct contact to form a plurality of keel modules; S4, inserting the keel modules one by one between the bottom support line (24) and the top support line (23), so that the first clamping portion (2111) is inserted into the first plug-in gap and the second clamping portion is inserted into the second plug-in gap; adjacent keel module positions form a straight angle, a negative angle or a positive angle structure, and adjacent keel modules at the straight angle position are connected using the connecting piece b (1b), and adjacent keel modules at the negative angle and positive angle positions are connected using the connecting piece a (1a); S5, filling the keel module with sound insulation cotton; S6, installing the plate (22) on both sides of the keel module; S7. Use end plates (2123) to cover the exposed end surfaces installed on the keel modules.

Citation Information

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