Prefabricated building wallboard rapid positioning installation device

CN224741815UActive Publication Date: 2026-09-11DAYUAN BUILDING MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202522254648.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2026-09-11
Estimated Expiration
2035-10-24

AI Technical Summary

Technical Problem

[0003]针对现有技术的不足,本实用新型提供了一种装配式建筑墙板快速定位安装装置,以解决背景技术中提出的墙板之间拼接定位时的稳定性较差的问题

Benefits of technology

1.本实用新型中,通过多个插接板和多个插接槽,便于对相邻的两个墙板体初步拼接,同时通过插接口,便于将插接杆插入墙板体和插接板之间,对相邻的多个插接板稳定连接,通过多个限位转块和多个限位转槽,便于在墙板体上对多个插接板固定,从而便于提高相邻的两个墙板体之间拼接的稳定性;

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Abstract

This utility model discloses a rapid positioning and installation device for prefabricated building wall panels, including a rapid positioning and installation assembly installed between two wall panels. The assembly includes plug-in plates, plug-in rods, limiting rotating blocks, and splicing groups. Multiple plug-in plates are equidistantly connected to both sides of the wall panel. Multiple plug-in slots matching the plug-in plates are formed on the wall panel. The plug-in plates on both sides of the wall panel are staggered to facilitate stable splicing of adjacent wall panels from all directions. The plug-in rods connect each wall panel to the multiple plug-in plates on the same side. Both the wall panel and the plug-in plates have plug interfaces matching the plug-in rods. This rapid positioning and installation device for prefabricated building wall panels improves the stability of splicing and positioning two wall panels and, compared to existing technologies, facilitates rapid positioning and installation of adjacent wall panels.
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Description

Technical Field

[0001] This utility model relates to the field of installation device technology, specifically to a quick positioning and installation device for prefabricated building wall panels. Background Technology

[0002] Prefabricated building wall panels are modular wall products that are prefabricated in a factory and then assembled on the construction site. They adopt a modular design and can be directly installed on site. They can also be customized according to space requirements and are suitable for various scenarios such as residences, hotels, and offices. Currently, the installation of prefabricated building wall panels involves transporting the processed building components and accessories to the construction site for on-site installation. However, prefabricated building wall panels are mostly fixed with cement and expansion bolts during installation, which is relatively slow. To address this issue, a utility model patent with publication number CN220666773U discloses a prefabricated building wall panel installation structure. It consists of a slot, installation block, fixing rod, rotating rod, locking bar, spring, limiting rotating block, limiting groove, locking block and torsion spring, etc., which enables installers to quickly install the wall panels. Although it facilitates the rapid installation of wall panels, the installation range is limited and the stability when splicing and positioning two adjacent wall panels is poor, which can easily affect the installation effect. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a rapid positioning and installation device for prefabricated building wall panels, thereby solving the problem of poor stability during the splicing and positioning of wall panels mentioned in the background technology.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a quick positioning and installation device for prefabricated building wall panels, comprising a quick positioning and installation component, wherein the quick positioning and installation component is installed between two wall panels, and the quick positioning and installation component includes a plug-in plate, a plug-in rod, a limiting rotating block, and a splicing component; The plug-in plates are configured in multiple ways, and the multiple plug-in plates are respectively connected to both sides of the wall panel at equal intervals. The wall panel is provided with multiple plug-in slots that match the plug-in plates. The plug rod connects each wall panel to multiple plug plates located on the same side, and both the wall panel and the plug plates are provided with plug interfaces that match the plug rod. The limiting rotating block is configured as a plurality of such blocks, which are equidistantly arranged on each of the plug-in rods. The plug-in plate is provided with a limiting rotating groove that matches the limiting rotating block. The splicing component can be detachably installed between the two wall panels.

[0005] Furthermore, the splicing component includes: A splicing panel, which can be detachably installed between two wall panels, and each wall panel has a splicing interface at its top that matches the splicing panel; The wall panel has multiple splicing columns, which are arrayed and connected to the bottom end of the splicing panel. The wall panel also has multiple splicing slots that match the splicing columns. A positioning plate is detachably connected to the bottom end of the two wall panels, and the bottom end of the wall panel is provided with a positioning groove that matches the positioning plate. The positioning limit block is provided in two parts, which are symmetrically connected to the top of the positioning plate. The wall panel is provided with a positioning groove that matches the positioning limit block. A connecting component, which is detachably connected between the splicing plate and the positioning plate.

[0006] Furthermore, the connection component includes: The connecting frame is provided in two, and the two connecting frames are symmetrically and detachably connected to the two wall panels. The wall panels are provided with multiple connection ports that match the connecting frames, and the splicing plate and the positioning plate are provided with two connection slots that match the connecting frames. A connecting plate, which is detachably connected to the two connecting frames; A pad block is detachably connected between two wall panels, and the wall panels have grooves that match the pad block. Two connecting screws are provided, and the two connecting screws are threadedly connected between the connecting plate, the pad block and the two wall panels.

[0007] Furthermore, each of the two plug-in rods is fixedly connected to a plug-in rotating plate, which has multiple plug-in slots. The splicing plate has a groove, in which two plug-in blocks are fixedly connected. The two plug-in blocks are detachably engaged with the two plug-in slots respectively.

[0008] Furthermore, the multiple plug-in plates located on both sides of the wall panel are staggered.

[0009] Compared with the prior art, this utility model provides a quick positioning and installation device for prefabricated building wall panels, which has the following advantages: 1. In this utility model, multiple plug-in plates and multiple plug-in slots facilitate the initial splicing of two adjacent wall panels. At the same time, the plug-in interface facilitates the insertion of plug-in rods between the wall panel and the plug-in plate, ensuring a stable connection between multiple adjacent plug-in plates. Multiple limiting rotating blocks and multiple limiting rotating slots facilitate the fixing of multiple plug-in plates on the wall panel, thereby improving the stability of the splicing between two adjacent wall panels. 2. In this utility model, the splicing components facilitate the stable connection and fixation of the splicing plates and positioning plates, which in turn facilitates the positioning of the plug-in plates, plug-in rods, and limiting rotating blocks, thereby improving the stability of the splicing and positioning of the two wall panels. At the same time, compared with the prior art, it facilitates the rapid positioning and installation of two adjacent wall panels. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the overall structure of this application; Figure 2 This is an exploded structural diagram showing the assembly of the wall panel, splicing panel, and positioning plate in this application; Figure 3 This is a cross-sectional structural diagram showing the mating of the plug-in plate, plug-in rod, and limiting rotating block in this application; Figure 4 This is a structural diagram showing the connection frame, connecting plate, and pad block of this application. Figure 5 This is a disassembled structural diagram showing the interaction of the limit switch block, splicing plate, and plug-in card block in this application.

[0011] In the diagram: 1. Wall panel; 2. Insert plate; 3. Insert rod; 4. Limiting block; 5. Splicing plate; 6. Splicing column; 7. Positioning plate; 8. Positioning limit block; 9. Connecting frame; 10. Connecting plate; 11. Pad; 12. Connecting screw; 13. Inserting rotating plate; 14. Inserting clip. Detailed Implementation

[0012] 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.

[0013] Please see Figures 1 to 5A rapid positioning and installation device for prefabricated building wall panels includes a rapid positioning and installation assembly installed between two wall panels 1. The assembly includes interlocking plates 2, interlocking rods 3, limiting rotating blocks 4, and splicing groups. Multiple interlocking plates 2 are equidistantly connected to both sides of the wall panel 1. Multiple interlocking slots matching the interlocking plates 2 are provided on the wall panel 1. When the two wall panels 1 approach each other, the multiple interlocking plates 2 are inserted into the interlocking slots, allowing for initial splicing of the two wall panels 1. The multiple interlocking plates 2 located on both sides of the wall panel 1 are staggered to facilitate stable splicing of adjacent wall panels 1 from all directions. The interlocking rods 3 penetrate through the wall panel. Each wall panel 1 is connected to multiple plug-in plates 2 located on the same side. Both the wall panel 1 and the plug-in plates 2 are provided with plug-in interfaces that match the plug-in rods 3. When the plug-in rods 3 are inserted into the multiple plug-in interfaces, the multiple plug-in plates 2 can be fixed on the wall panel 1. Multiple limiting rotating blocks 4 are provided, and the multiple limiting rotating blocks 4 are equidistantly arranged on each plug-in rod 3. The plug-in plates 2 are provided with limiting rotating grooves that match the limiting rotating blocks 4. When the plug-in rod 3 rotates the limiting rotating blocks 4 into the limiting rotating grooves, the plug-in rods 3 and plug-in plates 2 can be fixed, preventing the plug-in rods 3 and plug-in plates 2 from moving on the wall panel 1, which increases the stability of the splicing of the two wall panels 1. The splicing components can be detachably installed between the two wall panels 1.

[0014] refer to Figure 1 as well as Figure 2 The splicing assembly includes splicing plate 5, splicing column 6, positioning plate 7, positioning limit block 8, and connecting assembly. The splicing plate 5 is detachably installed between two wall panels 1. Each wall panel 1 has a splicing interface that matches the splicing plate 5 at its top. Multiple splicing columns 6 are arranged in an array and connected to the bottom of the splicing plate 5. Multiple splicing slots that match the splicing columns 6 are opened on the wall panel 1. The positioning plate 7 is detachably connected to the bottom of the two wall panels 1. The bottom of the wall panel 1 has a positioning slot that matches the positioning plate 7. Two positioning limit blocks 8 are arranged and symmetrically connected to the top of the positioning plate 7. The wall panel 1 has a positioning limit slot that matches the positioning limit block 8. The connecting assembly is detachably connected between the splicing plate 5 and the positioning plate 7. After the two wall panels 1 are initially spliced, the splicing plate 5 is placed in the splicing interface, and at the same time, multiple splicing columns 6 are moved into multiple splicing slots to splice the tops of the two wall panels 1. The positioning plate 7 is placed in the positioning slot, and two positioning limit blocks 8 are inserted into the two positioning limit slots to position and limit the bottoms of the two wall panels 1. Thus, the two adjacent wall panels 1 can be positioned and spliced ​​in all directions.

[0015] refer to Figure 1 as well as Figure 4The connecting components include a connecting frame 9, a connecting plate 10, a pad 11, and connecting screws 12. There are two connecting frames 9, which are symmetrically and detachably connected to two wall panels 1. The wall panels 1 have multiple connecting ports that match the connecting frames 9, and the splicing plate 5 and the positioning plate 7 each have two connecting slots that match the connecting frames 9. The connecting plate 10 is detachably connected to the two connecting frames 9. The pad 11 is detachably connected between the two wall panels 1. The wall panels 1 have slots that match the pad 11, which can be quickly installed and removed between the two slots. There are two connecting screws 12, which are threadedly connected between the connecting plate 10, the pad 11, and the two wall panels 1. After the splicing plate 5 and the positioning plate 7 are moved to the appropriate positions, the two connecting brackets 9 are inserted into the multiple connecting ports and multiple connecting slots respectively, so that the splicing plate 5, the positioning plate 7 and the wall panel 1 are re-connected stably. After the connecting plate 10 is snapped between the two connecting brackets 9, the two connecting screws 12 are tightened between the connecting plate 10, the pad 11 and the two wall panels 1, so that the connecting plate 10 and the connecting brackets 9 can be fixed on the wall panel 1 (compared to the existing technology, only the two connecting screws 12 need to be tightened, which reduces the tightening and installation time, improves the splicing efficiency of the wall panel 1, and thus allows for quick positioning and splicing of the two wall panels 1), thereby increasing the stability of the splicing plate 5 and the positioning plate 7 on the two wall panels 1, and further improving the stability of the splicing of the two wall panels 1.

[0016] refer to Figure 3 as well as Figure 5 The top of each of the two plug-in rods 3 is fixedly connected to a plug-in rotating plate 13. The plug-in rotating plate 13 has multiple plug-in slots. The splicing plate 5 has a groove. Two plug-in blocks 14 are fixedly connected in the groove. The two plug-in blocks 14 are detachably connected to the two plug-in slots respectively. Applying force to the plug-in rotating plate 13 causes the plug-in rod 3 to rotate the limiting rotating block 4 into the limiting slot, and then the splicing plate 5 is placed in the splicing interface. At the same time, the two plug-in rotating plates 13 will enter the groove, and the two plug-in locking blocks 14 will be inserted into the two plug-in locking slots respectively. This can fix the position of the plug-in gripper plate, plug-in rod 3 and limiting rotating block 4, etc., and increase the stability of the two wall panels 1 in positioning and splicing.

[0017] In summary, when two wall panels 1 approach each other, multiple plug-in plates 2 move into multiple plug-in slots on the two wall panels 1 respectively. Then, two plug-in rods 3 are inserted between the two wall panels 1 and the multiple plug-in plates 2 respectively. After the plug-in rods 3 pass through the multiple plug-in plates 2, force is applied to the two plug-in rotating plates 13, causing the two plug-in rods 3 to drive multiple limiting rotating blocks 4 to rotate, rotating the multiple limiting rotating blocks 4 into multiple limiting rotating slots respectively. This allows for the adjustment of the plug-in rods 3, the plug-in rods 3, and the wall panels. The connection limit between the two wall panels 1 increases the stability of the insertion plate 2 and splicing rod on the wall panel 1, thereby increasing the stability of the splicing and positioning of the two wall panels 1. Then, the splicing plate 5 and positioning plate 7 are respectively placed in the splicing interface and positioning groove. When the splicing plate 5 is placed in the splicing interface, both insertion rotating plates 13 will move into the groove, so that the two insertion locking blocks 14 are respectively locked into the two corresponding insertion locking slots, fixing the insertion rotating plate 13, insertion rod 3 and limiting rotating block 4, etc., increasing the stability of the wall panel 13. Multiple plug-in plates 2 and multiple plug-in rods 3 enhance the stability of the splicing of the two wall panels 1. Multiple splicing columns 6 move into multiple splicing slots to position the upper part of the two wall panels 1. Simultaneously, when two positioning limit blocks 8 move into two positioning limit slots, the bottom of the two wall panels 1 can be positioned. Finally, pads 11 are inserted into two pad slots, and two connecting brackets 9 are inserted into multiple connecting ports and multiple connecting slots. At the same time, connecting plates 10 are placed between two connecting brackets 9. After connecting plates 10 are placed in the appropriate position, two connecting screws 12 are tightened between connecting plates 10, pads 11, and the two wall panels 1. This increases the stability of the installation of pads 11, connecting plates 10, and connecting brackets 9 on the wall panels 1, thereby improving the stability of the splicing of the wall panels 1 by splicing plates 5, splicing columns 6, positioning plates 7, positioning limit blocks 8, plug-in rods 3, and plug-in plates 2. This allows for rapid positioning and installation of the two wall panels 1 from all directions.

[0018] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A rapid positioning and installation device for prefabricated building wall panels, characterized in that, The quick-positioning installation assembly is installed between two wall panels (1). The quick-positioning installation assembly includes: The plug-in plate (2) is provided in multiple ways. The multiple plug-in plates (2) are connected to both sides of the wall panel (1) at equal intervals. The wall panel (1) is provided with multiple plug-in slots that match the plug-in plates (2). A plug rod (3) is provided, which connects each wall panel (1) to a plurality of plug plates (2) located on the same side. Both the wall panel (1) and the plug plates (2) are provided with plug interfaces that match the plug rod (3). Limiting rotating block (4), the limiting rotating block (4) is configured in multiple ways, the multiple limiting rotating blocks (4) are equally spaced on each of the plug rods (3), and the plug plate (2) is provided with a limiting rotating groove that matches the limiting rotating block (4); A splicing assembly, which is detachably installed between the two wall panels (1).

2. The prefabricated building wall panel rapid positioning and installation device according to claim 1, characterized in that, The splicing components include: The splicing plate (5) is detachably installed between two wall panels (1), and each wall panel (1) has a splicing interface at its top that matches the splicing plate (5). Splicing column (6), the splicing column (6) is configured in multiple ways, the multiple splicing columns (6) are arrayed and connected to the bottom end of the splicing plate (5), and the wall panel (1) is provided with multiple splicing grooves that match the splicing column (6); Positioning plate (7), the positioning plate (7) is detachably connected to the bottom end of the two wall panels (1), and the bottom end of the wall panel (1) is provided with a positioning groove that matches the positioning plate (7); Positioning limit block (8), the positioning limit block (8) is set to two, the two positioning limit blocks (8) are symmetrically connected to the top of the positioning plate (7), and the wall panel (1) is provided with a positioning limit groove that matches the positioning limit block (8); A connecting component is detachably connected between the splicing plate (5) and the positioning plate (7).

3. The prefabricated building wall panel rapid positioning and installation device according to claim 2, characterized in that, The connection component includes: Connecting frame (9), the connecting frame (9) is set to two, the two connecting frames (9) are symmetrically and detachably connected to the two wall panels (1), the wall panels (1) are provided with multiple connection ports that match the connecting frame (9), and the splicing plate (5) and the positioning plate (7) are each provided with two connection slots that match the connecting frame (9); A connecting plate (10) is detachably connected to two connecting frames (9); A pad (11) is detachably connected between two wall panels (1), and a groove matching the pad (11) is provided on the wall panel (1). Two connecting screws (12) are provided, and the two connecting screws (12) are threadedly connected between the connecting plate (10), the pad (11) and the two wall panels (1).

4. The prefabricated building wall panel rapid positioning and installation device according to claim 3, characterized in that, The top ends of the two plug rods (3) are fixedly connected to plug rotating plates (13). Multiple plug slots are provided on the plug rotating plates (13). A groove is provided on the splicing plate (5). Two plug blocks (14) are fixedly connected in the groove. The two plug blocks (14) are detachably connected to the two plug slots respectively.

5. The prefabricated building wall panel rapid positioning and installation device according to claim 4, characterized in that, The multiple plug-in plates (2) located on both sides of the wall panel (1) are staggered.