An aerated block
By installing L-shaped support legs and rubber friction strips on the aerated concrete blocks and connecting them with fixing blocks and pins, the problems of slippage and tipping during the transportation of aerated concrete blocks were solved, thereby improving transportation stability and wall strength.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG YONGHENG WALL MATERIAL CO LTD
- Filing Date
- 2025-06-24
- Publication Date
- 2026-07-21
AI Technical Summary
During transportation, aerated concrete blocks are prone to sliding and tipping over due to collisions, resulting in unstable stacking.
L-shaped support legs are installed on the top and bottom surfaces of the aerated concrete block. Rubber friction strips are provided on the support legs, which are connected to the pins by fixing blocks. The support legs are distributed at the corners to enhance stability. The groove design is used to embed the support legs to improve the connection strength.
During transportation, the horizontal and vertical displacement of aerated concrete blocks is reduced, stacking stability is improved, construction process is simplified, and the connection strength of masonry walls is enhanced.
Smart Images

Figure CN224532027U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building materials technology, and more specifically, it relates to an aerated concrete block. Background Technology
[0002] Aerated concrete blocks, also known as aerated concrete blocks, are a type of lightweight, porous building material. They are easy to process, lightweight, and non-combustible, and are widely used in the walls of civil and industrial buildings.
[0003] When transporting aerated concrete blocks, they are stacked. During transportation, if a collision occurs, the stacked aerated concrete blocks are prone to horizontal slippage, which can eventually cause the stacked aerated concrete blocks to tip over.
[0004] Therefore, a new solution is needed to address this problem. Utility Model Content
[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an aerated concrete block.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an aerated concrete block, including an aerated concrete block body, the top surface of the aerated concrete block body is provided with four square grooves, the four square grooves are respectively arranged on the four corners of the aerated concrete block body, a fixing block is provided in the square groove, the top surface of the fixing block is fixed with a support foot, the bottom surface of the aerated concrete block body is provided with four grooves for being embedded by the four support feet, and the bottom surface of the aerated concrete block body is also provided with two embedding grooves on the same side as the grooves, the embedding grooves can simultaneously accommodate two support feet being embedded.
[0007] The present invention is further configured such that: the cross-section of the support leg is L-shaped, and the thickness of the end of the support leg away from the fixing block is less than the thickness at the connection between the support leg and the fixing block.
[0008] The present invention is further configured such that: a plurality of friction strips are provided on the side wall of the support foot facing the groove, and the friction strips are all made of rubber material.
[0009] The present invention is further configured such that the side of each friction strip away from the support foot is inclined toward the top surface of the fixing block.
[0010] The present invention is further configured such that: the fixing block is detachably connected to the gas block body, the square groove is provided with a pin, and the fixing block is provided with a slot for the pin to be engaged.
[0011] The present invention is further configured such that: the fixing block and the support leg are integrally formed, and both the fixing block and the support leg are made of PVC material.
[0012] In summary, this utility model has the following beneficial effects:
[0013] When transporting aerated concrete blocks, they need to be stacked. The groove on the upper block should be aligned with the support legs on the lower block. Since the four support legs are distributed at the four corners of the aerated concrete block, the two adjacent blocks are less likely to shift horizontally. The upper block, under its own weight, is less likely to shift vertically with the lower block. This ensures the stability of the stacked blocks during transportation and reduces the possibility of them tipping over. When using these blocks to build walls, the joints of adjacent blocks should be staggered. The grooves allow the support legs on the lower block to fit into the grooves on the upper block. This not only provides a pre-fixing effect for the stacked blocks but also eliminates the need for workers to remove the support legs by cutting or other methods, ensuring efficient wall construction. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 ;
[0015] Figure 2 This is an exploded view of the present invention;
[0016] Figure 3 This is a schematic diagram of the structure of the present invention. Figure 2 .
[0017] In the diagram: 1. Aerated concrete block body; 2. Square groove; 3. Fixing block; 4. Support leg; 5. Groove; 6. Embedded groove; 7. Friction strip; 8. Pin; 9. Slot. Detailed Implementation
[0018] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0019] A type of aerated concrete block, such as Figure 1 and Figure 3As shown, the device includes an aerated concrete block body 1. The top surface of the aerated concrete block body 1 has four square grooves 2, which are respectively located at the four corners of the body. A fixing block 3 is installed in each groove 2, and a support leg 4 is fixed to the top surface of the fixing block 3. The bottom surface of the aerated concrete block body 1 has four grooves 5 for the support legs 4 to be inserted into. During transport, the aerated concrete blocks are stacked, and the grooves 5 of the upper aerated concrete block body 1 are aligned with the support legs 4 of the lower aerated concrete block body 1. Because the four support legs 4 are distributed at the four corners of the aerated concrete block body 1, adjacent aerated concrete block bodies 1 are less likely to shift horizontally. The upper aerated concrete block, under its own weight, abuts against the lower aerated concrete block, preventing vertical displacement. This effectively ensures the stability of the stacked aerated concrete blocks during transport and reduces the possibility of them tipping over. The bottom surface of the aerated concrete block body 1 also has two grooves 6 on the same side as the groove 5. The grooves 6 can accommodate two support legs 4 at the same time. When using this aerated concrete block to build a wall, the joints of the upper and lower adjacent aerated concrete blocks need to be staggered. At this time, the opening of the grooves 6 allows the support legs 4 on the lower aerated concrete block to be embedded in the grooves 6 of the upper aerated concrete block. This not only allows the support legs 4 to have a certain pre-fixing effect on the stacking of the upper and lower aerated concrete blocks, but also eliminates the need for construction workers to remove the support legs 4 by cutting or other means. The length of the opening of the groove 6 is greater than the width of the two support legs 4 after they are joined together. This setting makes it so that when the support legs 4 are embedded in the groove 6, there is a gap between the support legs 4 and the inner wall of the groove 6. When building the wall, the construction workers need to apply mortar to the groove 6. After the support legs 4 are embedded in the groove 6, the mortar can fill the gap between the support legs 4 and the inner wall of the groove 6. After the mortar is completely solidified, this setting can effectively improve the connection strength between the upper and lower aerated concrete blocks.
[0020] like Figures 1 to 3As shown, the cross-section of the support leg 4 is L-shaped. The inner wall of the support leg 4 is used to abut against the side wall of the groove 5. The thickness of the end of the support leg 4 away from the fixing block 3 is less than the thickness at the connection between the support leg 4 and the fixing block 3. This setting makes the inner wall of the support leg 4 inclined, which plays a certain guiding role in the process of the support leg 4 being embedded in the groove 5, and can speed up the process of the support leg 4 being embedded in the groove 5. In addition, when the support leg 4 is fully embedded in the groove 5, the side of the support leg 4 near the fixing block 3 will abut against the side wall of the groove 5. Since the support leg 4 is thicker at this point, the support leg 4 has higher strength, which can effectively reduce the slippage between the upper and lower air-filling blocks, thereby reducing the stacking of air-filling blocks. To prevent tipping, the support leg 4 has several friction strips 7 on its sidewall facing the groove 5. These friction strips 7 are made of rubber. When the support leg 4 is inserted into the groove 5, the friction strips 7 are pressed against the sidewall of the groove 5 by the support leg 4. The rubber material of the friction strips 7 allows for better deformation, increasing the contact area between the friction strips 7 and the sidewall of the groove 5. Simultaneously, due to the high coefficient of friction of rubber, the friction between the support leg 4 and the sidewall of the groove 5 is effectively increased, making it less likely for adjacent air-filled blocks to slip. The side of the friction strips 7 away from the support leg 4 is inclined towards the top surface of the fixing block 3. During the process of the support leg 4 being inserted into the groove 5, the friction... The friction strip 7 tends to deform towards the top surface of the fixed block 3. Inclining the friction strip 7 towards the top surface of the fixed block 3 increases the amount of deformation during this process, effectively ensuring the stability of the support leg 4 when it contacts the side wall of the groove 5. The fixed block 3 is detachably connected to the aerated concrete block body 1. A pin 8 is provided in the square groove 2, and the pin 8 and the aerated concrete block body 1 are integrally formed by casting. The fixed block 3 has a slot 9 for the pin 8 to be engaged. During the wall construction process using aerated concrete blocks, when the wall needs to be capped, the construction workers can remove the pin 8 from the slot 9 by pulling out the support leg 4, thus removing the support leg 4 and the fixed block 3 from the aerated concrete block body 1. At this time, the aerated concrete block body 1... The top surface no longer has protruding support legs 4, facilitating the sealing of the wall. The fixing block 3 and pin 8 are connected by a snap-fit mechanism, ensuring the ease of disassembly of the fixing block 3. The fixing block 3 and support legs 4 are integrally formed by molds. Both the fixing block 3 and support legs 4 are made of PVC material. PVC material has a high elastic modulus. The fixing block 3 made of this material allows the perimeter of the slot 9 to deform during contact with the pin 8, ensuring the connection stability between the fixing block 3 and the pin 8. At the same time, PVC has good chemical corrosion resistance. The support legs 4 and fixing block 3 made of this material can better adapt to working environments that are in long-term contact with mortar.
[0021] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. An aerated concrete block, comprising an aerated concrete block body (1), characterized in that: The top surface of the gas block body (1) is provided with four square grooves (2), and the four square grooves (2) are respectively located on the four corners of the gas block body (1). A fixing block (3) is provided in the square groove (2), and a support leg (4) is fixed on the top surface of the fixing block (3). The bottom surface of the gas block body (1) is provided with four grooves (5) for being embedded by the four support legs (4). The bottom surface of the gas block body (1) is also provided with two slots (6) on the same side as the grooves (5). The slots (6) can accommodate two support legs (4) to be embedded at the same time.
2. The aerated concrete block according to claim 1, characterized in that: The cross-section of the support leg (4) is L-shaped, and the thickness of the end of the support leg (4) away from the fixing block (3) is less than the thickness at the connection between the support leg (4) and the fixing block (3).
3. An aerated concrete block according to claim 2, characterized in that: The support leg (4) has several friction strips (7) on its side wall facing the groove (5), and the friction strips (7) are all made of rubber material.
4. An aerated concrete block according to claim 3, characterized in that: Several of the friction strips (7) are inclined toward the top surface of the fixing block (3) on the side away from the support foot (4).
5. An aerated concrete block according to claim 1, characterized in that: The fixing block (3) is detachably connected to the gas block body (1), and a pin (8) is provided in the square groove (2). A slot (9) for the pin (8) to be inserted is provided on the fixing block (3).
6. An aerated concrete block according to claim 1, characterized in that: The fixing block (3) and the support leg (4) are integrally formed, and both the fixing block (3) and the support leg (4) are made of PVC material.