A spliced wall and its assembling method
Through the design of spliced wall structure and adapted connectors, the wall installation process is simplified, and the existing assembled wall structure is complex and the production cost is solved, the installation efficiency is improved and the construction difficulty is reduced.
Patent Information
- Application Number
- CN202210463053.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-29
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2042-04-29
AI Technical Summary
The existing assembled wall structure is complex, the production cost is high, and the installation worker is loaded.
The spliced wall structure is adopted, and the adapter connector is used to connect the wall unit plate through the adapter socket and the adapter fixing port, simplifying the installation process and reducing hole punching and nailing operations.
It improves wall installation efficiency, simplifies assembly methods, and reduces construction difficulty and cost.
Smart Images

Figure CN114703999B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of prefabricated walls, and particularly relates to a spliced wall and an assembling method thereof. Background Art
[0002] Partition walls are used to divide the internal space of buildings. The partition wall structures currently on the market include a light steel skeleton and a rock wool board fixedly connected to the light steel skeleton. The light steel skeleton includes a top track, a bottom track, vertical studs, and horizontal braces. The top track is fixedly connected to the wall at the top of the room; the bottom track is fixedly connected to the floor of the room; one end of the vertical stud is fixedly connected to the top track and the other end is fixedly connected to the bottom track; the horizontal brace is fixedly connected between adjacent vertical studs.
[0003] The currently available prefabricated walls mainly have the following deficiencies: (1) The structure is complex and the production cost is high; (2) Adjusting wall components requires a large number of installation tools, and the workload of workers is heavy. Summary of the Invention
[0004] Aiming at the above deficiencies, the technical problem to be solved by the present invention is to provide a spliced wall and an assembling method thereof to improve the installation efficiency of the spliced wall.
[0005] To solve the above technical problems, the technical solution adopted by the present invention is as follows.
[0006] A spliced wall includes wall unit plates and connecting adapters. Wall transfer slots are formed on the wall unit plates. The wall transfer slots include transfer sockets and transfer fixing ports. The connecting adapters are inserted into the wall unit plates through the transfer sockets, and the connecting adapters cooperate with the transfer fixing ports to connect adjacent wall unit plates.
[0007] Furthermore, the groove width of the transfer socket is greater than the groove width of the transfer fixing port, and the transfer socket and the transfer fixing port are arranged in parallel.
[0008] Furthermore, the transfer socket and the transfer fixing port are connected by an arc transition port.
[0009] Furthermore, the connecting adapter includes a connecting section and a limiting section. The two ends of the connecting section are respectively fixedly connected with the limiting sections, and the height of the limiting section is greater than the height of the connecting section.
[0010] Furthermore, the lower end surfaces of the limiting section and the connecting section are on the same plane, and a mark is provided at the upper end of the connecting section.
[0011] Furthermore, the limiting section is adapted to the transfer socket, the connecting section is adapted to the transfer fixing port, and the height of the arc transition port is greater than the height of the connecting section.
[0012] Further, the wall unit board includes side plates, a bottom plate and end plates. The side plates and the bottom plate are respectively fixedly connected to the edges of the end plates. Wall transfer grooves are formed on the side plates, and insertion grooves are formed on the bottom plate.
[0013] Further, insertion guide columns are fixedly connected in the insertion grooves, and insertion holes are formed in the insertion guide columns.
[0014] Further, a top sliding part is detachably installed in the insertion hole, and sliding slots are formed on the side walls of the top sliding part.
[0015] The splicing method of the above-mentioned spliced wall includes the following steps.
[0016] Step 1: Fix one side of the transfer connecting part on the wall unit board, push another wall unit board, so that the transfer connecting part is inserted into another wall unit board, and an adjustment gap is left between the two unit boards.
[0017] Step 2: Insert an adjustment tool into the adjustment gap and hook the transfer connecting part through the adjustment tool.
[0018] Step 3: Lift the transfer connecting part through the adjustment tool and drop it into the arc transition opening.
[0019] Step 4: Move the transfer connecting part to the transfer fixing opening by moving the adjustment tool, remove the adjustment tool, and complete the splicing of the wall unit board.
[0020] The beneficial effect of the present invention is that the wall unit boards are connected through the transfer connecting part, the structure is simple, the assembly method is convenient, and the installation efficiency of the spliced wall can be greatly improved. Description of the Drawings
[0021] Figure 1 It is a structural schematic diagram of the spliced wall.
[0022] Figure 2 It is a partial enlarged view of A.
[0023] Figure 3 It is a structural schematic diagram of the wall unit board.
[0024] Figure 4 It is a structural schematic diagram of the top sliding part.
[0025] Figure 5 It is a structural schematic diagram of the transfer connecting part.
[0026] Reference signs: wall unit plate 5, adapter connecting member 6, top sliding member 1-13, sliding slot 1-14, wall adapter slot 5-1, adapter socket 5-2, adapter fixing port 5-3, arc transition port 5-4, side plate 5-5, bottom plate 5-6, end plate 5-7, insertion slot 5-8, insertion guiding column 5-9, insertion hole 5-10, connecting section 6-1, limiting section 6-2, mark 6-3. Detailed implementation mode
[0027] The present invention will be further described below with reference to the accompanying drawings.
[0028] A spliced wall includes a wall unit plate 5 and an adapter connecting member 6. A wall adapter slot 5-1 is formed on the wall unit plate 5. The adapter connecting member 6 is adapted to the wall adapter slot 5-1. The wall unit plates 5 are connected through the adapter connecting member 6. The structure is simple and the assembly method is convenient, which can greatly improve the installation efficiency of the spliced wall.
[0029] The wall adapter slot 5-1 includes an adapter socket 5-2, an adapter fixing port 5-3 and an arc transition port 5-4. The adapter socket 5-2 and the adapter fixing port 5-3 are connected through the arc transition port 5-4. The adapter connecting member 6 is inserted into the wall unit plate 5 through the adapter socket 5-2. The adapter connecting member 6 cooperates with the adapter fixing port 5-3 to connect adjacent wall unit plates 5. The adapter connecting member 6 can adjust its position in the wall adapter slot 5-1, and the adapter connecting member 6 is locked with the wall adapter slot 5-1 through position adjustment, without operations such as drilling and nailing, which greatly improves the installation efficiency of the spliced wall.
[0030] The groove width of the adapter socket 5-2 is greater than the groove width of the adapter fixing port 5-3. The height of the adapter socket 5-2 is slightly greater than the height of the limiting section 6-2, which is convenient for inserting the limiting section 6-2 into the wall unit plate 5. The height of the adapter fixing port 5-3 is less than the height of the limiting section 6-2, which is convenient for locking the limiting section 6-2 inside the wall unit plate with the adapter fixing port 5-3. Moreover, the adapter socket 5-2 and the adapter fixing port 5-3 are arranged in parallel to prevent the adapter connecting member 6 from rotating during use, resulting in its failure.
[0031] In this embodiment, the adapter connecting member 6 is a sheet structure, and the adapter socket 5-2 and the adapter fixing port 5-3 are strip-shaped grooves, so that a surface contact is formed between the adapter connecting member 6 and the adapter fixing port 5-3, so that the adapter connecting member 6 provides a certain anti-torsion force for the wall unit plate, preventing adjacent wall unit plates from twisting during installation and ensuring the safety of the assembly process; moreover, the sheet-shaped adapter connecting member 6 can cooperate with the adapter socket 5-2 or the adapter fixing port 5-3 during installation to play a guiding role and further improve the installation efficiency.
[0032] The adapter connector 6 includes a connection section 6-1 and a limit section 6-2. The two ends of the connection section 6-1 are respectively fixedly connected with the limit section 6-2. The height of the limit section 6-2 is greater than that of the connection section 6-1, which facilitates connecting the adapter connector 6 with the wall unit board 5 through the limit section 6-2.
[0033] The lower end faces of the limit section 6-2 and the connection section 6-1 are on the same plane. Similarly, it is convenient to guide through the lower end face of the adapter connector 6 to improve the installation convenience. A mark 6-3 is provided at the upper end of the connection section 6-1. The mark 6-3 is used to show the installation depth of the adapter connector 6 during the installation process, which is convenient for construction personnel to observe the installation position and improve the installation efficiency.
[0034] The limit section 6-2 is adapted to the adapter socket 5-2, that is, the limit section 6-2 is inserted into the wall unit board through the adapter socket 5-2. The connection section 6-1 is adapted to the adapter fixing port 5-3, which is convenient for splicing two adjacent wall unit boards through the limit section 6-2. The height of the arc transition port 5-4 is greater than that of the connection section 6-1.
[0035] The upper end face of the arc transition port 5-4 is arc-shaped, which is convenient for guiding when the adapter connector 6 is hooked, so that the adapter connector 6 can quickly move to the corresponding fixed position of the adapter fixing port 5-3.
[0036] The wall unit board 5 includes a side plate 5-5, a bottom plate 5-6 and an end plate 5-7. The side plate 5-5 and the bottom plate 5-6 are respectively fixedly connected to the edge of the end plate 5-7. A wall adapter groove 5-1 is formed on the side plate 5-5, and a plug-in groove 5-8 is formed on the bottom plate 5-6.
[0037] A plug-in guide post 5-9 is fixedly connected in the plug-in groove 5-8. A plug-in hole 5-10 is formed in the plug-in guide post 5-9. The guide post 5-9 is a square tube. A top sliding part 1-13 is detachably installed in the plug-in hole 5-10. A sliding slot 1-14 is formed on the side wall of the top sliding part 1-13, which is convenient for connecting the wall unit board with the top and bottom profiles.
[0038] The splicing method of the above-mentioned spliced wall includes the following steps.
[0039] Step 1: Fix and install a wall unit board 5 on one side of the adapter connector 6, and push another wall unit board 5 so that the adapter connector 6 is inserted into another wall unit board 5, leaving an adjustment gap between the two unit boards.
[0040] Step 2: Insert the adjusting tool into the adjustment gap and hook the adapter connector 6 through the adjusting tool.
[0041] Step 3: Lift the adapter connector 6 through the adjusting tool and drop it into the arc transition port 5-4.
[0042] Step 4: The moving and adjusting tool moves the adapter connector 6 into the adapter fixing port 5-3, and the adjusting tool is removed to complete the splicing of the wall unit board 5.
[0043] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention; therefore, the present invention will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.
[0044] Although terms corresponding to the reference numerals in the drawings are used more herein, the possibility of using other terms is not excluded; these terms are used only to more conveniently describe and explain the essence of the present invention; interpreting them as any additional limitation is contrary to the spirit of the present invention.
Claims
1. A spliced wall, characterized in that, It includes a wall unit board (5) and an adapter connector (6). A wall transfer groove (5-1) is formed on the wall unit board (5). The wall transfer groove (5-1) includes a transfer socket (5-2) and a transfer fixing port (5-3). The adapter connector (6) is inserted into the wall unit board (5) through the transfer socket (5-2), and the adapter connector (6) cooperates with the transfer fixing port (5-3) to connect adjacent wall unit boards (5). The groove width of the transfer socket (5-2) is greater than the groove width of the transfer fixing port (5-3), and the transfer socket (5-2) and the transfer fixing port (5-3) are arranged in parallel. The transfer socket (5-2) and the transfer fixing port (5-3) are transitionally connected through an arc transition port (5-4). The adapter connector (6) includes a connecting section (6-1) and a limiting section (6-2). The two ends of the connecting section (6-1) are respectively fixedly connected with the limiting section (6-2), and the height of the limiting section (6-2) is greater than the height of the connecting section (6-1). The lower end surfaces of the limiting section (6-2) and the connecting section (6-1) are on the same plane. The limiting section (6-2) is adapted to the transfer socket (5-2), the connecting section (6-1) is adapted to the transfer fixing port (5-3), and the height of the arc transition port (5-4) is greater than the height of the connecting section (6-1). The height of the transfer socket (5-2) is slightly greater than the height of the limiting section (6-2); the height of the transfer fixing port (5-3) is less than the height of the limiting section (6-2).
2. The spliced wall according to claim 1, wherein, A mark is provided at the upper end of the connecting section (6-1).
3. A spliced wall according to claim 1, characterized in that, The wall unit board (5) includes a side plate (5-5), a bottom plate (5-6) and an end plate (5-7). The side plate (5-5) and the bottom plate (5-6) are respectively fixedly connected to the edges of the end plate (5-7). The wall transfer groove (5-1) is formed on the side plate (5-5), and a plug-in groove (5-8) is formed on the bottom plate (5-6).
4. The spliced wall according to claim 3, characterized in that, A plug-in guide post (5-9) is fixedly connected in the plug-in groove (5-8), and a plug-in hole (5-10) is formed in the plug-in guide post (5-9).
5. The spliced wall according to claim 4, wherein A top sliding member (1-13) is detachably installed in the plug-in hole (5-10), and a sliding slot (1-14) is formed on the side wall of the top sliding member (1-13).
6. A splicing method for a spliced wall according to any one of claims 1-5, characterized in that, It includes the following steps Step 1: One side of the adapter connector (6) is fixedly installed on the wall unit board (5), and another wall unit board (5) is pushed so that the adapter connector (6) is inserted into another wall unit board (5), leaving an adjustment gap between the two unit boards. Step 2: An adjustment tool is inserted into the adjustment gap, and the adapter connector (6) is hooked through the adjustment tool. Step 3: The adapter connector (6) is jacked up through the adjustment tool and falls into the arc transition port (5-4). Step 4: The adjustment tool is moved to move the adapter connector (6) into the transfer fixing port (5-3), and the adjustment tool is removed to complete the splicing of the wall unit board (5).
Citation Information
Patent Citations
Spliced wall
CN217439262U