Fabricated ALC wallboard
By setting plug-in components and positioning components on the ALC board, the problem of loose connection of ALC boards during indoor construction is solved, achieving tight connection and improved anti-tipping ability, thereby improving construction and production efficiency.
Patent Information
- Application Number
- CN202423200667.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-24
AI Technical Summary
The lack of effective and tight connection methods for existing ALC panels in secondary construction of interior buildings leads to separation problems, affecting construction efficiency and stability.
The ALC board is equipped with first and second receiving slots on both sides by using plug-in components and positioning components. The plug-in components and positioning components are connected in different horizontal directions to enhance the tight connection of the ALC board. The connection stability and anti-tipping ability are improved by the design of plug-in rods and buffer components.
This achieves a tight connection between ALC panels, preventing separation, improving construction and production efficiency, reducing production costs, and enhancing anti-tipping capabilities.
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Figure CN223577426U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a wallboard structure more specifically, it relates to assembly type ALC wallboard. BACKGROUND
[0002] ALC board, namely, autoclaved lightweight concrete board, is a kind of high-performance autoclaved aerated concrete, ALC board has lower density while having higher strength, which makes ALC board more convenient in transportation, handling and installation process, and can reduce the self-weight of building, reduce the cost of foundation and structure, and is usually prefabricated into standard shape in factory when using, then directly transported to construction site to be assembled into interior wall, then is painted with concrete to be made into partition wall, since ALC board itself is relatively light in weight, it is easy to dump, and reinforcing steel and other components must be used to assist support to avoid separation of multiple ALC boards, but it is found in actual use that ALC board is also used for secondary construction of indoor building, at this time, reinforcing steel and other components are lacking to assist support, which brings great inconvenience to construction, therefore, an assembly type ALC wallboard is needed, ALC boards with the structure can be closely connected with each other to prevent the separation of multiple ALC boards.
[0003] In view of the above reasons, how to make ALC boards closely connected with each other is the problem considered by the present application. SUMMARY
[0004] In view of the deficiencies in the prior art, the assembly type ALC wallboard is provided, and ALC boards with the structure can be closely connected with each other to prevent the separation of multiple ALC boards.
[0005] To achieve the above-mentioned purpose, the following technical scheme is provided: the assembly type ALC wallboard comprises a board body, a plug-in assembly and a positioning assembly, the board body is provided with a first accommodating groove and a second accommodating groove on both sides, the first accommodating groove and the second accommodating groove are arranged in the same horizontal direction, the plug-in assembly is connected to the first accommodating groove, the positioning assembly is connected to the second accommodating groove, and the plug-in assembly and the positioning assembly are both provided with a plurality of groups;
[0006] When the board body is installed, the plug-in assembly is connected with the positioning assembly on another board body.
[0007] In the above-mentioned technical scheme, the ALC board is usually provided with a wooden wedge at the bottom when used, the wooden wedge prevents the ALC board from dumping and serves as a basic connection mode for multiple ALC boards, but this can cause the upper part of the ALC board to be not closely connected, and the large gap directly affects subsequent pouring, therefore, the utility model is provided with multiple groups of plug-in assemblies and positioning assemblies, each group of plug-in assemblies and positioning assemblies is arranged in different horizontal directions, the connection between adjacent ALC boards in different horizontal directions is strengthened, and the situation that multiple ALC boards are not closely connected is avoided.
[0008] The ALC plate is usually made of mortar as raw material in production, and the ALC plate is prone to collision in the transportation process, so the connecting part, the edge of the plate and the like may be bonded with the mortar not full, which will cause the mortar shrinkage crack, so that the gap between the ALC plates is large, and the ALC plates cannot be connected with each other, and the ALC plates are usually connected by using a pipe clamp method, a U-shaped clamp method and the like in installation, these connection methods are more complicated to operate, and are prone to cause the connection to be not in place, so that the plurality of ALC plates cannot be stably connected and separated, therefore, the utility model discloses an additional connection through the plug-in assembly and the positioning assembly, a part of the plug-in assembly is directly accommodated in the positioning assembly on the other plate body in use, the position difference before and after is avoided through the plug-in mode, the height difference caused by the mortar wear is also avoided, and installation is also facilitated;
[0009] In addition, the plug-in assembly and the positioning assembly can reduce the production cost and improve the production efficiency through other flow line production, and the plate body only needs to be additionally excavated to form the first accommodating groove and the second accommodating groove after production, and then combined after being transported to the construction site, so that the overall construction efficiency is improved;
[0010] The utility model discloses a plurality of ALC plates are connected through the plug-in assembly and the positioning assembly, and the anti-toppling capacity and the connection tightness of the ALC plates are enhanced through the mode that the corresponding plug-in assembly and the positioning assembly are arranged in the same horizontal direction, so that the ALC plates can be tightly connected with each other, and the separation of the plurality of ALC plates is prevented. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 It is a three-dimensional structure schematic view of fabricated ALC wallboard;
[0012] Figure 2 It is a three-dimensional structure schematic view of the installation plate in the plug-in assembly;
[0013] Figure 3 It is a sectional view of the plug-in assembly;
[0014] Figure 4 It is a sectional view of the positioning assembly.
[0015] The drawings show that: 1, plate body; 2, plug-in assembly; 3, positioning assembly;
[0016] 11, first accommodating groove; 12, second accommodating groove; 13, first cavity; 14, first through hole; 15, second cavity; 16, second through hole;
[0017] 21, first sliding block; 22, plug-in rod; 23, buffer; 24, installation plate; 25, connecting piece; 26, elastic connecting ring; 27, first abutting part; 28, plug-in part;
[0018] 221 second abutment; 222 insertion slot
[0019] 251 crease
[0020] 31 second sliding block; 32 third receiving slot DETAILED DESCRIPTION
[0021] The utility model will be further explained in detail below in combination with the drawings and examples. Same parts are indicated by same reference numerals. It should be noted that the words "front", "back", "left", "right", "up" and "down" used in the following description refer to the directions in the drawings, and the words "bottom surface" and "top surface", "inner" and "outer" refer to the directions towards or away from the geometric center of a particular part.
[0022] Referring to Figures 1-4 As shown in the drawings, the assembled ALC wallboard comprises a plate body 1, an insertion assembly 2 and a positioning assembly 3. The plate body 1 is provided with a first receiving slot 11 and a second receiving slot 12 on both sides. The first receiving slot 11 and the second receiving slot 12 are arranged in the same horizontal direction. The insertion assembly 2 is connected to the first receiving slot 11, and the positioning assembly 3 is connected to the second receiving slot 12. Both the insertion assembly 2 and the positioning assembly 3 are provided with a plurality of
[0023] When the plate 24 body 1 is installed, the insertion assembly 2 is connected to the positioning assembly 3 on the other plate body 1.
[0024] When the ALC plate is used, a wooden wedge is usually arranged at the bottom to prevent the ALC plate from falling down and serve as a basic connection mode for multiple ALC plates. However, this may result in loose connection of the upper part of the ALC plate, and the large gap directly affects the subsequent pouring. Therefore, the utility model is provided with multiple sets of insertion assemblies 2 and positioning assemblies 3, each set of insertion assembly 2 and positioning assembly 3 is arranged in a different horizontal direction, which can strengthen the connection between adjacent ALC plates in different horizontal directions and avoid the situation that the multiple ALC plates are not tightly connected.
[0025] ALC plate is usually made of mortar as raw material in production, and the ALC plate is easy to collide during transportation, so the connecting part, the edge of the plate and other positions may not be fully bonded with mortar, which will cause mortar shrinkage cracks, resulting in a larger gap between the ALC plates, which cannot be connected with each other, and the ALC plate is usually connected by pipe clamp method, U-shaped clamp method and other connection methods during installation, which is more complicated to operate, and it is easy to cause the connection to be not in place, so that multiple ALC plates cannot be stably connected and separated, therefore, the utility model discloses an additional connection through the plug-in assembly 2 and the positioning assembly 3, a part of the plug-in assembly 2 is directly accommodated in the positioning assembly 3 on the other plate body 1 during use, the position difference before and after is avoided through the plug-in mode, and the height difference caused by mortar wear is also avoided, and installation is also facilitated;
[0026] In addition, the plug-in assembly 2 and the positioning assembly 3 can reduce production cost and improve production efficiency through other flow line production, and the plate body 1 only needs to be additionally excavated to form the first accommodating groove 11 and the second accommodating groove 12 after production, and then combined after transportation to the construction site, so that the overall construction efficiency is improved;
[0027] The utility model discloses a plug-in assembly 2 and a positioning assembly 3 are arranged to connect multiple ALC plates, and the corresponding plug-in assembly 2 and positioning assembly 3 are arranged in the same horizontal direction to enhance the anti-toppling capacity and connection tightness of the ALC plates, so that the ALC plates can be tightly connected with each other, and the separation of multiple ALC plates is prevented.
[0028] Further, the plate body 1 is also provided with a first cavity 13 and a first through hole 14, the first cavity 13 is communicated with the first accommodating groove 11, the first through hole 14 is communicated with the first cavity 13 and the outside of the plate body 1, the plug-in assembly 2 comprises a first sliding block 21, a plug-in rod 22 and a buffer 23, one end of the plug-in rod 22 towards the first cavity 13 is fixedly connected with the first sliding block 21, the other end of the plug-in rod 22 away from the first cavity 13 is fixedly connected with the buffer 23, the first sliding block 21 is slidably connected with the inner wall of the first accommodating groove 11, and the first cavity 13, the first accommodating groove 11 and the first sliding block 21 form a closed space;
[0029] The plug rod 22 is a main component for connecting the positioning assembly 3, but it is difficult to move in actual use, so the first cavity 13, the first accommodating groove 11 and the first sliding block 21 are arranged as a closed space, and air is filled into the closed space through the first through hole 14 in use, so that the air pressure in the closed space becomes larger, thereby making the first sliding block 21 move away from the first cavity 13 to increase the volume of the closed space and restore the air pressure to the original state, so that the plug rod 22 can be moved and extended out of the plate body 1 by the first sliding block 21, and finally connected with the positioning assembly 3 on another plate body 1, thereby tightly connecting adjacent ALC plates, and in addition, cement or the like can be filled into the closed space in advance during pouring, and the subsequent pouring operation can be performed after solidification, so that the adjacent ALC plates are connected more tightly.
[0030] In addition, in order to prevent the plug 28 from causing wear of components or accidentally popping out to injure surrounding workers, the bumper 23 is connected to the plug 28 to play a protection role.
[0031] Further, the plug assembly 2 further comprises a mounting plate 24, a connecting piece 25, an elastic connecting ring 26 and a first abutting piece 27, the mounting plate 24 is fixedly connected with the plate body 1, the mounting plate 24 is provided with an opening in communication with the first accommodating groove 11, the connecting piece 25 is fixedly connected with the elastic connecting ring 26 and the mounting plate 24 at two ends respectively, the first abutting piece 27 is fixedly connected with the inner wall of the elastic connecting ring 26, and the plug rod 22 is fixedly connected with a second abutting piece 221 for abutting against the first abutting piece 27;
[0032] The connecting piece 25 is made of a material with toughness, and the connecting piece 25 is provided with a crease 251 for guiding the connecting piece 25 to bend outwardly;
[0033] The first abutting piece 27 has an inverted triangular cross section, and the plug assembly 2 further comprises a plug 28 fixedly connected to a side of the first abutting piece 27 away from the opening, and the plug rod 22 is provided with a plug groove 222 for accommodating the plug 28;
[0034] When the plug rod 22 moves towards the positioning assembly 3, the plug rod 22 abuts against the side surface of the first abutting piece 27, the elastic connecting ring 26 deforms and the inner diameter expands;
[0035] When the plug rod 22 moves away from the positioning assembly 3, the plug 28 is accommodated in the plug groove 222, and the connecting piece 25 is bent along the crease 251;
[0036] The plug-in rod 22 mainly maintains the close connection state after the installation of the plurality of ALC plates is completed. Usually, the ALC plates are arranged in sequence during installation, and then the plug-in rod 22 is inserted into the positioning assembly 3 on the other plate body 1, but in this way, both ends need to be supported. If one end is not supported, the ALC plates may separate in the installation direction. Therefore, the connecting piece 25 that can be bent is arranged. The bent connecting piece 25 can increase the actual area and cooperate with the plate body 1 itself to form a clamping effect, thereby avoiding the separation of the ALC plates in the installation direction.
[0037] When the plug-in rod 22 moves towards the positioning assembly 3, because the cross section of the first abutting piece 27 is inverted triangular, the plug-in piece 28 will abut against the side surface of the first abutting piece 27, and the elastic connecting ring 26 will also be deformed under force and expand in inner diameter after deformation. Therefore, the plug-in rod 22 can move smoothly. When the plug-in rod 22 moves away from the positioning assembly 3, that is, when the plug-in piece 28 returns to drive the connecting piece 25 to bend, the plug-in piece 28 will be accommodated in the plug-in groove 222. Therefore, the elastic connecting ring 26 cannot be deformed under force to expand in inner diameter, and the elastic connecting ring 26 will also be moved by the plug-in piece 28, thereby bending the connecting piece 25.
[0038] Because the first cavity 13, the first accommodating groove 11 and the first sliding block 21 form a closed space, inflation into the closed space through the first through hole 14 can realize the movement of the plug-in rod 22 towards the positioning assembly 3. Similarly, suction into the closed space through the first through hole 14 can realize the movement of the plug-in rod 22 away from the positioning assembly 3.
[0039] Further, the positioning assembly 3 comprises a third accommodating groove 32 and a second sliding block 31. The plate body 1 further comprises a second cavity 15 and a second through hole 16. The third accommodating groove 32 is in communication with the second accommodating groove 12. The second cavity 15 is in communication with the third accommodating groove 32. The second through hole 16 is in communication with the second cavity 15 and the outside of the plate body 1. The second sliding block 31 is in sliding connection with the inner wall of the third accommodating groove 32. The third accommodating groove 32, the second cavity 15, the second accommodating groove 12 and the second sliding block 31 form a closed space.
[0040] When the adjacent plate bodies 1 are closely connected, the mounting plate 24, the connecting piece 25 and the elastic connecting ring 26 are accommodated in the third accommodating groove 32.
[0041] Because the plug-in rod 22 is difficult to move in actual use, in addition to the inflation and suction through the first through hole 14, the third accommodating groove 32, the second cavity 15, the second accommodating groove 12 and the second sliding block 31 are also arranged as a closed space. Inflation into the closed space through the second through hole 16 can make the second sliding block 31 push the plug-in piece 28 back, thereby realizing the movement of the plug-in rod 22 away from the positioning assembly 3. The bent connecting piece 25 will abut against the inner wall of the third accommodating groove 32, thereby preventing the separation of the two ALC plates.
[0042] The above merely describes preferred embodiments of the present application, and the protection scope of the present application is not limited to the above-mentioned embodiments. Any technical solution falling within the concept of the present application shall fall within the protection scope of the present application. It should be noted that, for ordinary skilled persons in the art, some improvements and refinements without departing from the principles of the present application shall also be considered as falling within the protection scope of the present application.
Claims
1. A fabricated ALC wall panel, characterized in that, The utility model provides a board body, plug -in assembly and positioning assembly, both sides of the board body are provided with first accommodating groove and second accommodating groove respectively, first accommodating groove and second accommodating groove are located in the same horizontal direction, plug -in assembly is connected in first accommodating groove, positioning assembly is connected in second accommodating groove, and plug -in assembly and positioning assembly are provided with multiple, When installing the board body, the plug-in assembly is connected with the positioning assembly on the other board body.
2. The fabricated ALC wall panel according to claim 1, characterized in that The board body is further provided with a first cavity and a first through hole, the first cavity is communicated with the first accommodating groove, the first through hole is communicated with the first cavity and the outside of the board body, the plug-in assembly comprises a first sliding block, a plug-in rod and a buffer, one end of the plug-in rod towards the first cavity is fixedly connected with the first sliding block, the other end of the plug-in rod away from the first cavity is fixedly connected with the buffer, the first sliding block is slidingly connected with the inner wall of the first accommodating groove, and the first cavity, the first accommodating groove and the first sliding block form a closed space.
3. The fabricated ALC wall panel according to claim 2, characterized in that The plug-in assembly further comprises a mounting plate, a connecting piece, an elastic connecting ring and a first abutting piece, the mounting plate is fixedly connected with the board body, the mounting plate is provided with an opening communicated with the first accommodating groove, the connecting piece is fixedly connected with the elastic connecting ring and the mounting plate at both ends respectively, the first abutting piece is fixedly connected with the inner wall of the elastic connecting ring, and the plug-in rod is fixedly connected with a second abutting piece for abutting against the first abutting piece.
4. The fabricated ALC wall panel according to claim 3, characterized in that The connecting piece is made of a material with toughness, and the connecting piece is provided with a crease for guiding the outward bending of the connecting piece.
5. The fabricated ALC wall panel according to claim 3, characterized in that The first abutting piece has an inverted triangular cross section, the plug-in assembly further comprises a plug-in piece, the plug-in piece is fixedly connected to the side of the first abutting piece away from the opening, and the plug-in rod is provided with a plug-in groove for accommodating the plug-in piece. When the plug-in rod moves towards the positioning assembly, the plug-in rod abuts against the side surface of the first abutting piece, the elastic connecting ring deforms and the inner diameter expands; When the plug-in rod moves away from the positioning assembly, the plug-in piece is accommodated in the plug-in groove, and the connecting piece is bent along the crease.
6. The fabricated ALC wall panel according to claim 3, characterized in that The positioning assembly comprises a third accommodating groove and a second sliding block, the board body is further provided with a second cavity and a second through hole, the third accommodating groove is communicated with the second accommodating groove, the second cavity is communicated with the third accommodating groove, the second through hole is communicated with the second cavity and the outside of the board body, the second sliding block is slidingly connected with the inner wall of the third accommodating groove, and the third accommodating groove, the second cavity, the second accommodating groove and the second sliding block form a closed space; When the adjacent board bodies are tightly connected, the mounting plate, the connecting piece and the elastic connecting ring are accommodated in the third accommodating groove.