An ultra-high ALC wallboard mounting structure
Patent Information
- Application Number
- CN202522238671.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-23
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-23
AI Technical Summary
[0004]本实用新型提供了一种超高ALC墙板安装结构,具有在进行超高ALC墙板安装时,墙板稳固性强的优点,以解决现有的ALC墙板安装结构稳定性较差,难以在超高ALC墙板安装时保持稳定的问题
本实用新型通过卡接在墙板本体之间的连接座可以使墙板的上下连接更加稳固,使顶部的墙板在高处可以配合砂浆稳定的与底部的墙板连接,卡接槽可以卡接在横梁上并通过螺栓从侧面对相邻的墙板进行固定,且卡接槽稳定性好,相较于角铁与钩头螺栓更加稳定,提高了超高墙板拼接后整体的稳固性。
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Figure CN224755236U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of ALC wall panel installation, specifically to an ultra-high ALC wall panel installation structure. Background Technology
[0002] ALC wall panels (autoclaved lightweight concrete wall panels) are a new type of building material. They are porous concrete panels made from fly ash, cement, lime and other main raw materials, and cured under high temperature and high pressure steam. They can be directly hoisted to the installation location for assembly and are widely used in various scenarios such as building exterior walls, interior walls, and partitions.
[0003] During assembly, angle irons are typically fixed to the indoor steel frame beams, and then hook bolts are used to secure the ALC wall panels. There are interlocking tongue and groove joints between the upper and lower ALC wall panels. Before splicing, adhesive mortar is applied for connection. When installing ultra-high ALC wall panels, multiple wall panels need to be spliced together. In the existing wall panel fixing methods, the angle iron has low strength and poor stability. The wall panels are only connected by adhesive mortar, which poses a risk of displacement. The existing method has good stability when installing a single wall panel of normal height, but the stability of the wall panel fixing is poor when ultra-high ALC wall panels are stacked and fixed. Utility Model Content
[0004] This utility model provides an ultra-high ALC wall panel installation structure, which has the advantage of strong stability of the wall panel during ultra-high ALC wall panel installation, thus solving the problem that the existing ALC wall panel installation structure has poor stability and is difficult to maintain stability during ultra-high ALC wall panel installation.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an ultra-high ALC wall panel installation structure, comprising a ground, a steel frame, and a wall panel body, and further comprising installation components, fixing components, and connecting components, wherein: The steel frame includes a crossbeam between supports that can be detachably installed on the ground, and the mounting component is fixed to the upper end of the ground for connecting the bottom wall panel body; Preferably, the top of the ground is symmetrically provided with fixing grooves, the brackets are symmetrically arranged and each of them is equipped with a frame plate that fits into the fixing groove at the bottom, and the frame plate is fixed in the fixing groove by bolts.
[0006] Preferably, the mounting component includes a mounting base, with fixed wing plates symmetrically mounted on the bottom of the mounting base. The fixed wing plates are fixed to the ground by bolts. The top of the mounting base fits into the splicing groove at the bottom of the wall panel body, and the top is also equipped with a plug pin that fits into the plug hole.
[0007] The wall panel body is spliced longitudinally along the steel frame, and the fastener includes a snap-fit bracket that can be detachably installed on the crossbeam. The snap-fit bracket is connected to the wall panel body by bolts. Preferably, the crossbeam is located at the connection point of the wall panel body, the snap-fit bracket is opened and fastened to the crossbeam in the direction of the wall panel body, the snap-fit bracket is fixed to the crossbeam by the second bolt, the snap-fit bracket is symmetrically installed with mounting wing plates on the side of the snap-fit bracket close to the wall panel body, and multiple fixing holes are provided at both the upper and lower ends of the inner side of the wall panel body, and the symmetrically arranged mounting wing plates are fixed to the adjacent wall panel body by the first bolts corresponding to the fixing holes respectively.
[0008] The connector includes a connector seat that snaps into the connection of the wall panel body, used to connect adjacent wall panel bodies.
[0009] Preferably, the wall panel body has symmetrical snap-fit grooves on both sides of the top, and a splicing groove on the bottom. The top and bottom of the connecting seat are movably connected to and fit into the snap-fit groove and the splicing groove, respectively.
[0010] Preferably, the top of the connector is equipped with a plurality of equally spaced plug pins, the top surface of the center of the splicing groove is provided with an upwardly recessed plug hole, the plug pins are movably connected to and fit into the plug hole, and the top surface of the connector is provided with a plurality of horizontally arranged adhesive grooves.
[0011] Preferably, the two sides of the joint of the upper and lower wall panel bodies fit together, and the connecting seat fits between the wall panel bodies and its outer side is parallel to the surface of the wall panel body.
[0012] Compared with the prior art, this utility model provides an ultra-high ALC wall panel installation structure, which has the following beneficial effects: This utility model uses a connecting seat that snaps between the wall panel bodies to make the upper and lower connections of the wall panels more stable. The top wall panel can be stably connected to the bottom wall panel with mortar at a high position. The snap-fit groove can be snapped onto the crossbeam and fixed to the adjacent wall panels from the side with bolts. The snap-fit groove has good stability and is more stable than angle iron and hook bolts, thus improving the overall stability of the ultra-high wall panels after splicing. Attached Figure Description
[0013] Figure 1 This is an assembly drawing of the overall structure of this utility model; Figure 2 This is a schematic diagram of the stacking of the wall panel body in this practical application; Figure 3 This is a schematic diagram of the structure of the installation component. Figure 4 This is a schematic diagram of the structure of the utility model fastener; Figure 5 This is a schematic diagram showing the location of the connector in this utility model; Figure 6 This is a schematic diagram of the bottom structure of the wall panel body.
[0014] In the diagram: 1. Ground; 11. Fixing groove; 2. Steel frame; 21. Bracket; 22. Crossbeam; 23. Frame plate; 3. Wall panel body; 31. Clip groove; 32. Fixing hole; 33. Splicing groove; 34. Insertion hole; 4. Mounting component; 41. Mounting base; 42. Fixing wing plate; 43. Adhesive groove; 5. Fixing component; 51. Clip frame; 52. Mounting wing plate; 53. First bolt; 54. Second bolt; 6. Connecting component; 61. Insertion pin; 62. Connecting base. Detailed Implementation
[0015] 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. Example
[0016] An ultra-high ALC wall panel installation structure includes a ground 1, a steel frame 2, and a wall panel body 3, as well as mounting components 4, fixing components 5, and connecting components 6, wherein: The steel frame 2 includes a bracket 21 that can be detachably installed on the ground 1 and a crossbeam 22 between the brackets 21. The mounting piece 4 is fixed to the upper end of the ground 1 for connecting the bottom wall panel body 3. The wall panel body 3 is spliced along the longitudinal direction of the steel frame 2. The fastener 5 includes a snap-fit bracket 51 that can be detachably installed on the crossbeam 22. The snap-fit bracket 51 is connected to the wall panel body 3 by bolts. The connector 6 includes a connector 62 that snaps into the connection of the wall panel body 3, for connecting adjacent wall panel bodies 3.
[0017] Please refer to the appendix. Figure 5 , Figure 6 The wall panel body 3 has symmetrical snap-fit grooves 31 on both sides of the top, and a splicing groove 33 on the bottom. The top and bottom of the connecting seat 62 are movably connected to and fit with the snap-fit groove 31 and the splicing groove 33, respectively.
[0018] Furthermore, the top of the connector 62 is equipped with a plurality of equally spaced insertion pins 61, and the top surface of the center of the splicing groove 33 is provided with an upwardly recessed insertion hole 34. The insertion pins 61 are movably connected to and fit into the insertion hole 34, and the top surface of the connector 62 is provided with a plurality of horizontally arranged adhesive grooves 43.
[0019] Specifically, the connecting seat 62 is placed on the upper end of the bottom wall panel body 3, so that the bottom of the connecting seat 62 is engaged in the engaging groove 31 on the bottom wall panel body 3. After the adhesive mortar is evenly applied to the connecting seat 62, the second wall panel body 3 is lifted up and placed on the connecting seat 62, so that the top of the connecting seat 62 is engaged in the splicing groove 33 at the bottom of the second wall panel body 3. The adhesive mortar is then used to bond the wall panel bodies 3 together.
[0020] Please refer to the appendix. Figure 1 The two sides of the splicing joint of the upper and lower wall panel bodies 3 fit together, and the connecting seat 62 fits between the wall panel bodies 3 and its outer side is parallel to the surface of the wall panel body 3.
[0021] In this embodiment, the above design allows the wall panel and the connecting seat 62 to form a flat wall surface, which is not only more aesthetically pleasing, but also eliminates the possibility of the connecting seat 62 falling off, thus improving the stability of the connection of the wall panel body 3.
[0022] Please refer to the appendix. Figure 4 The crossbeam 22 is located at the connection of the wall panel body 3. The snap-fit bracket 51 is opened in the direction of the wall panel body 3 and snaps onto the crossbeam 22. The snap-fit bracket 51 is fixed to the crossbeam 22 by the second bolt 54. The snap-fit bracket 51 is symmetrically installed with mounting wing plates 52 on the side of the wall panel body 3 close to the wall panel body 3. Multiple fixing holes 32 are provided at both the upper and lower ends of the inner side of the wall panel body 3. The symmetrically arranged mounting wing plates 52 are fixed to the adjacent wall panel body 3 by the first bolt 53 corresponding to the fixing holes 32.
[0023] Specifically, the snap-fit groove 31 is fixed to the crossbeam 22 by the second bolt 54. At this time, the mounting wing plates 52 symmetrically arranged on the snap-fit bracket 51 are respectively attached to the top of the bottom wall panel body 3 and the bottom of the second wall panel body 3. Then, the first bolt 53 is inserted through the fixing wing plate 42 into the fixing holes 32 of the two wall panel bodies 3 to connect and fix the wall panel bodies 3. Example
[0024] Based on the above embodiment one, this embodiment provides the connection method between the bottom of the steel frame 2 and the bottom of the wall panel body 3 and the ground 1. Please refer to the appendix. Figure 3 The top of the ground 1 is symmetrically provided with fixing grooves 11, and the brackets 21 are symmetrically arranged and each of them is equipped with a frame plate 23 that fits into the fixing groove 11. The frame plate 23 is fixed in the fixing groove 11 by bolts.
[0025] Furthermore, the mounting component 4 includes a mounting base 41, with fixed wing plates 42 symmetrically mounted on the bottom of the mounting base 41. The fixed wing plates 42 are fixed to the ground 1 by bolts. The top of the mounting base 41 fits into the splicing groove 33 at the bottom of the wall panel body 3, and the top is also equipped with a plug pin 61 that fits into the plug hole 34.
[0026] In this embodiment, the mounting base 41 is exactly the same in appearance as the connecting base 62 in the first embodiment, and it also has a plug pin 61. The only difference is that the mounting base 41 has a fixed wing plate 42 that is fixed to the ground 1 by bolts at the bottom.
[0027] In this embodiment, the frame plate 23 at the bottom of the steel frame 2 is snapped into the fixing groove 11 of the ground 1 and fixed with bolts, which can keep the steel frame 2 stable. The mounting base 41 and the insertion pin 61 at the top of the mounting base 41 are inserted into the splicing groove 33 and insertion hole 34 of the bottom wall panel body 3, so that the bottom wall panel body 3 can remain stable and will not shake or shift, making the bottom foundation of the wall panel body 3 solid.
[0028] The working principle and usage process of this utility model are as follows: After the steel frame 2 is installed on the ground 1 with bolts, holes are drilled in the ground 1, and then the mounting base 41 is placed on the ground 1 at equal intervals according to the arrangement. The mounting base 41 is connected to the ground 1 by bolts passing through the fixing wing plate 42 and inserting it into the ground 1. After the adhesive mortar is evenly applied to the mounting base 41, the wall panel body 3 is lifted up so that the side of the wall panel body 3 with the snap-fit groove 31 is facing upward. The bottom of the wall panel body 3 is placed on the mounting base 41 so that the mounting base 41 is embedded in the splicing groove 33 at the bottom of the wall panel body 3. At this time, the insertion pin 61 on the mounting base 41 is inserted into the insertion hole 34 in the splicing groove 33 of the wall panel body 3, thus completing the installation of the bottom wall panel body 3. Then, place the connecting seat 62 on the upper end of the bottom wall panel body 3, so that the bottom of the connecting seat 62 is engaged in the engaging groove 31 on the bottom wall panel body 3. After evenly applying adhesive mortar to the connecting seat 62, lift the second wall panel body 3 and place it on the connecting seat 62, so that the top of the connecting seat 62 is engaged in the splicing groove 33 at the bottom of the second wall panel body 3. Then, fix the engaging groove 31 to the crossbeam 22 with the second bolt 54. At this time, the mounting wing plates 52 symmetrically arranged on the engaging bracket 51 are respectively engaged with the second wall panel body 3. The top of the bottom wall panel body 3 and the bottom of the second wall panel body 3 are attached together. At this time, the first bolt 53 is inserted into the fixing holes 32 of the two wall panel bodies 3 through the fixing wing plate 42 to connect and fix the wall panel bodies 3, thus completing the splicing of the wall panel bodies 3. Then, the above steps are repeated to install the third wall panel body 3, thus completing the longitudinal splicing of the wall panel bodies 3. Finally, the spliced wall panel bodies 3 are attached together, and the installation and splicing steps of the wall panel bodies 3 are repeated to lay the wall panel bodies 3 horizontally, thus completing the installation of the ultra-high ALC wall panel.
Claims
1. An ultra-high ALC wall panel installation structure, comprising a ground (1), a steel frame (2), and a wall panel body (3), characterized in that, It also includes mounting parts (4), fasteners (5), and connectors (6), wherein: The steel frame (2) includes a crossbeam (22) between a bracket (21) that can be detachably installed on the ground (1) and the bracket (21). The mounting component (4) is fixed at the upper end of the ground (1) for connecting the bottom wall panel body (3). The wall panel body (3) is spliced longitudinally along the steel frame (2), and the fastener (5) includes a snap-fit bracket (51) that can be detachably installed on the crossbeam (22). The snap-fit bracket (51) is connected to the wall panel body (3) by bolts. The connector (6) includes a connector (62) that snaps into the connection of the wall panel body (3) for connecting adjacent wall panel bodies (3) above and below.
2. The ultra-high ALC wall panel installation structure according to claim 1, characterized in that: The wall panel body (3) has symmetrical snap-fit grooves (31) on both sides of the top, and a splicing groove (33) on the bottom. The top and bottom of the connecting seat (62) are movably connected to and fit the snap-fit groove (31) and the splicing groove (33) respectively.
3. The ultra-high ALC wall panel installation structure according to claim 2, characterized in that: The top of the connector (62) is equipped with a plurality of equally spaced plug pins (61), and the top surface of the middle part of the splicing groove (33) is provided with an upwardly recessed plug hole (34). The plug pins (61) are movably connected to and fit into the plug hole (34). The top surface of the connector (62) is provided with a plurality of horizontally arranged adhesive grooves (43).
4. The ultra-high ALC wall panel installation structure according to claim 1, characterized in that: The two sides of the splicing joint of the upper and lower wall panel bodies (3) are fitted together, and the connecting seat (62) fits between the wall panel bodies (3) and its outer side is parallel to the surface of the wall panel body (3).
5. The ultra-high ALC wall panel installation structure according to claim 1, characterized in that: The crossbeam (22) is located at the connection of the wall panel body (3). The snap-fit bracket (51) is opened and fastened to the crossbeam (22) in the direction of the wall panel body (3). The snap-fit bracket (51) is fixed to the crossbeam (22) by the second bolt (54). The snap-fit bracket (51) is symmetrically installed with mounting wing plates (52) on the side of the wall panel body (3) close to the wall panel body (3). Multiple fixing holes (32) are provided at both the upper and lower ends of the inner side of the wall panel body (3). The symmetrically arranged mounting wing plates (52) are fixed to the adjacent wall panel body (3) by the first bolt (53) corresponding to the fixing hole (32).
6. The ultra-high ALC wall panel installation structure according to claim 1, characterized in that: The ground (1) has symmetrically arranged fixing grooves (11) on the top, and the brackets (21) are symmetrically arranged and each has a bracket plate (23) that fits into the fixing groove (11) at the bottom. The bracket plate (23) is fixed in the fixing groove (11) by bolts.
7. The ultra-high ALC wall panel installation structure according to claim 1, characterized in that: The mounting component (4) includes a mounting base (41), on which fixed wing plates (42) are symmetrically mounted. The fixed wing plates (42) are fixed to the ground (1) by bolts. The top of the mounting base (41) fits into the splicing groove (33) at the bottom of the wall panel body (3), and the top is also equipped with a plug pin (61) that fits into the plug hole (34).