An aerated concrete block with a seepage-proof structure

By introducing a waterproof core board and insert clamping structure into the aerated concrete block, the problem of water seepage in the splicing joints of traditional aerated concrete blocks is solved, achieving simple installation and significant waterproof effect, and it is suitable for various assembly methods.

CN120486595BActive Publication Date: 2026-07-31THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
Filing Date
2025-05-26
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Traditional aerated concrete blocks are prone to water seepage at the joints, and existing waterproofing measures are complex in structure, cumbersome to install, and have unstable waterproofing effects.

Method used

The building aerated concrete block design adopts a seepage-proof core board. The seepage-proof core board is clamped between the aerated concrete block bodies, and the core board surface is opened with assembly grooves and sockets. The structure of clamping blocks, elastic bands and inserts is used to achieve rapid fixation. Combined with the horizontal and vertical assembly groove plate structure, the splicing sealing performance is enhanced.

Benefits of technology

It achieves a simple and quick installation method, improves construction efficiency, and significantly enhances the seepage prevention effect of aerated concrete blocks, making it suitable for assembly needs in different building scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of building construction technology, specifically to an aerated concrete block with a seepage-proof structure. The block includes two aerated concrete block bodies, with a seepage-proof core board sandwiched between them. The surface of the seepage-proof core board has an assembly groove. One side of the aerated concrete block body extends into the assembly groove. An insertion port is formed on the surface of the seepage-proof core board, with a clamping block inserted into the side wall of the insertion port. An insert is inserted into the inside of the insertion port, pushing the clamping block into the assembly groove to clamp the aerated concrete block body. Horizontal assembly plates and horizontal assembly grooves are respectively provided on the left and right sides of the seepage-proof core board for assembling adjacent seepage-proof core boards. The beneficial effect is that the aerated concrete block with a seepage-proof structure proposed in this invention, by sandwiching the seepage-proof core board between the aerated concrete block bodies and forming an assembly groove on the surface of the seepage-proof core board, allows the aerated concrete block bodies to be firmly embedded, thereby effectively preventing water seepage at the joints.
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Description

Technical Field

[0001] This invention relates to the field of building construction technology, specifically to an aerated concrete block with a seepage-proof structure. Background Technology

[0002] In the construction industry, aerated concrete blocks, as a lightweight and high-strength building material, are widely used in wall construction. However, traditional aerated concrete blocks are prone to water seepage problems due to the presence of gaps during splicing, which not only affects the service life of buildings but also increases maintenance costs. To solve this problem, various aerated concrete blocks with anti-seepage structures have appeared on the market, but most of these products have complex structures, are cumbersome to install, and have limited anti-seepage effects.

[0003] Traditional waterproofing measures mainly include applying waterproof materials or using waterproof tape at the joints, but these methods have drawbacks such as high construction difficulty, inconsistent waterproofing effect, and high maintenance cost. Therefore, developing a type of aerated concrete block with a simple structure, convenient installation, and significant waterproofing effect has become an urgent problem to be solved in the construction industry. Summary of the Invention

[0004] The purpose of this invention is to provide an aerated concrete block with a seepage-proof structure to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an aerated concrete block with a seepage-proof structure, comprising two aerated concrete block bodies, with a seepage-proof core board sandwiched between the two aerated concrete block bodies. The surface of the seepage-proof core board has an assembly groove, one side of the aerated concrete block body extends into the assembly groove, and the surface of the seepage-proof core board has an insertion port. A clamping block is inserted into the side wall of the insertion port, and an insert strip is inserted into the inside of the insertion port. The insert strip pushes the clamping block into the assembly groove to clamp the aerated concrete block body. The left and right sides of the seepage-proof core board are respectively provided with transverse assembly plates and transverse assembly grooves for assembling two adjacent seepage-proof core boards. The front and rear sides of the seepage-proof core board are respectively provided with longitudinal assembly grooves and longitudinal assembly plates for assembling two adjacent seepage-proof core boards.

[0006] Preferably, the top and bottom surfaces of the impermeable core board are provided with assembly grooves. The impermeable core board with two assembly grooves has an "I" shaped plate structure, and the aerated concrete block body has a "convex" shaped plate structure. The protruding plate of the aerated concrete block body is inserted into the assembly groove.

[0007] Preferably, the socket has a square structure and two sets of sockets are provided. The two sets of sockets are symmetrically distributed about the assembly groove, with two sockets in each set. The two sets of sockets are symmetrically distributed about the horizontal assembly groove. An insert groove is provided on each of the two parallel sidewalls of the assembly groove. Multiple through holes are provided on the sidewall of the socket closest to the assembly groove. The through holes connect the insert groove and the socket. The multiple through holes are arranged at equal intervals and of equal size along the long side of the socket. The clamping block and the through hole correspond one-to-one. The clamping block is inserted into the through hole, and the width of the clamping block is greater than the depth of the through hole.

[0008] Preferably, the end of the clamping block extending into the socket has an inclined surface, and the other end of the clamping block is fixed to the surface of the elastic band. The other ends of multiple clamping blocks are all fixed to the surface of the same elastic band, and both ends of the elastic band are fixed to the surface of the mounting groove. After the insert is inserted into the socket, it pushes the clamping block, and the clamping block tensions the elastic band to produce elastic deformation. The elastic band is clamped between the clamping block and the building aerated concrete block body.

[0009] Preferably, the top and bottom surfaces of the insert are provided with reserved grooves, which are arc-shaped grooves. The long side of the reserved groove is equal to the long side of the insert. A rubber clamp is fixed inside the reserved groove. The rubber clamp is round and clamps the insert between the insert and the socket to produce elastic deformation. Two picking grooves are provided at one end of the insert.

[0010] Preferably, the surface of the impermeable core board is provided with a side groove, and the side groove and the insertion port correspond one-to-one. The side groove is an "L" shaped groove and connects to the insertion port. An elastic hanging piece is inserted into the inside of the side groove. The elastic hanging piece is an "L" shaped plate. One end of the elastic hanging piece is fixed to the surface of the insertion strip, and the other end of the elastic hanging piece is fixed with a retaining strip. The retaining strip is a right-angled trapezoidal strip and is inserted into a retaining groove. The retaining groove is opened on the surface of the side groove. A pull ring is fixed to the surface of the elastic hanging piece. The pull ring and the retaining strip are symmetrically distributed about the plate body of the elastic hanging piece.

[0011] Preferably, the transverse assembly groove is a square groove, the length of the long side of the transverse assembly groove is equal to the width of the aerated concrete block body, the transverse assembly plate is a square strip, the size of the transverse assembly plate is equal to the size of the transverse assembly groove, when two aerated concrete block bodies are spliced ​​left and right, the transverse assembly plate at the end of one aerated concrete block is inserted into the transverse assembly groove at the end of the other aerated concrete block, and a limiting clip is provided between the transverse assembly groove and the transverse assembly plate.

[0012] Preferably, the limit clamping member includes a second clamping groove, a guiding strip, and a rubber clamping strip. The second clamping groove is an arc-shaped groove, which is opened on the surface of the transverse assembly groove. The length of the long side of the second clamping groove is equal to the length of the long side of the transverse assembly groove. The guiding strip is fixed on one side of the transverse assembly plate. The guiding strip is inserted into the second clamping groove, and a rubber clamping strip is sleeved and fixed at one end of the guiding strip inserted into the second clamping groove. The rubber clamping strip is a long strip with a circular cross-section. The rubber clamping strip is clamped between the guiding strip and the second clamping groove, and the diameter of the circular surface of the rubber clamping strip is greater than the height of the second clamping groove.

[0013] Preferably, the longitudinal assembly groove is a square groove, and the longitudinal assembly plate is a square strip. After the two building aerated block bodies are assembled front and back, the longitudinal assembly plate is inserted into the longitudinal assembly groove.

[0014] Preferably, a sealing strip is fixed inside the longitudinal assembly groove. The sealing strip is a "U"-shaped strip, and the sealing strip is clamped between the longitudinal assembly plate and the longitudinal assembly groove to generate elastic deformation.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] The building aerated block with a防渗 structure proposed by the present invention effectively prevents the water seepage problem at the splicing gap by clamping a防渗 core plate between the building aerated block bodies and opening assembly grooves on the surface of the防渗 core plate, so that the building aerated block bodies can be firmly embedded therein. At the same time, a transverse assembly plate and a transverse assembly groove are respectively provided on the left and right sides of the防渗 core plate, and adjacent two防渗 core plates can be assembled through these structures, further enhancing the防渗 effect; by designing structures such as sockets, clamping blocks, elastic bands, and insertion strips, the rapid fixation between the building aerated block body and the防渗 core plate is achieved. Just insert one side of the building aerated block body into the assembly groove, and then push in the insertion strip, and the building aerated block body can be firmly clamped in the assembly groove through the elastic deformation of the clamping block and the elastic band. This installation method is not only simple and fast but also greatly improves the construction efficiency. The防渗 structure is not only applicable to the left and right assembly of building aerated blocks but also applicable to the front and back assembly. By designing structures such as longitudinal assembly grooves and longitudinal assembly plates, the assembly of adjacent two防渗 core plates in the front and back directions can be conveniently achieved. This design makes the present invention have strong adaptability and flexibility and can meet the requirements of different building scenarios. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic structural diagram of the present invention;

[0018] Figure 2 is Figure 1 an enlarged schematic view of the structure at A in

[0019] Figure 3 is a front view of the structure of the present invention;

[0020] It should be noted that there is an unclear term "防渗" in the original text. You may need to provide more accurate information for a more precise translation. Figure 4 for Figure 3 Sectional view of the structure at point AA;

[0021] Figure 5 for Figure 4 Enlarged schematic diagram of the structure at point B;

[0022] Figure 6 for Figure 5 Enlarged schematic diagram of the structure at point C;

[0023] Figure 7 for Figure 3 Structural cross-section view at point BB;

[0024] Figure 8 for Figure 7 Enlarged schematic diagram of the structure at point D;

[0025] Figure 9 This is a schematic diagram of the seepage-proof core board structure of the present invention;

[0026] Figure 10 This is a schematic diagram of the structure after multiple sets of seepage-proof core boards are assembled according to the present invention;

[0027] Figure 11 for Figure 10 Enlarged schematic diagram of the structure at point E in the middle;

[0028] Figure 12 for Figure 10 Enlarged schematic diagram of the structure at point F.

[0029] In the diagram: 1. Building aerated concrete block body; 2. Impermeable core board; 3. Assembly groove; 4. Insert groove; 5. Perforation; 6. Clamping block; 7. Inclined surface; 8. Elastic band; 9. Insert strip; 10. Reserved groove; 11. Rubber clamping strip; 12. Picking groove; 13. Side groove; 14. Elastic hanging piece; 15. Clip strip one; 16. Clip groove one; 17. Pull ring; 18. Horizontal assembly groove; 19. Horizontal assembly plate; 20. Guide strip; 21. Rubber clip strip; 22. Longitudinal assembly groove; 23. Sealing strip; 24. Longitudinal assembly plate; 25. Clip groove two; 26. Detailed Implementation

[0030] To make the objectives, technical solutions, and advantages of the present invention clear and complete, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of the present invention, and are merely illustrative of the embodiments of the present invention. They are not intended to limit the embodiments of the present invention. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0031] Please see Figures 1 to 12, the present invention provides a technical solution: a building aerated block with a防渗 structure, including a building aerated block body 1. There are two building aerated block bodies 1, and a防渗 core plate 2 is clamped between the two building aerated block bodies 1. Assembly grooves 3 are formed on the surface of the防渗 core plate 2, and one side of the building aerated block body 1 extends into the assembly groove 3. Assembly grooves 3 are formed on both the top surface and the bottom surface of the防渗 core plate 2. The防渗 core plate 2 with two assembly grooves 3 has an "I"-shaped plate structure, and the building aerated block body 1 has a "convex"-shaped plate structure. The protruding plate body of the building aerated block body 1 is inserted into the assembly groove 3. Transverse assembly plates 20 and transverse assembly grooves 19 are respectively provided on the left and right sides of the防渗 core plate 2 for assembling adjacent two防渗 core plates 2.

[0032] During use, a防渗 core plate 2 is installed between the two building aerated block bodies 1. That is, after the surfaces of the two building aerated block bodies 1 are both wetted, due to the presence of the防渗 core plate 2, the防渗 effect on both sides of the防渗 core plate 2 is achieved. And when the two groups of building aerated block bodies 1 are assembled horizontally, since the transverse assembly plate 20 is inserted into the transverse assembly groove 19, the joint between the two防渗 core plates 2 is covered, thus preventing water leakage at the joint of the two防渗 core plates 2.

[0033] The transverse assembly groove 19 is a square groove, and the length of the long side of the transverse assembly groove 19 is equal to the width of the building aerated block body 1. The transverse assembly plate 20 is a square strip, and the size of the transverse assembly plate 20 is equal to the size of the transverse assembly groove 19. When the two building aerated block bodies 1 are assembled horizontally, the transverse assembly plate 20 at the end of one building aerated block is inserted into the transverse assembly groove 19 at the end of the other building aerated block. A limiting member is provided between the transverse assembly groove 19 and the transverse assembly plate 20; the limiting member includes a second slot 26, a guiding strip 21 and a rubber strip 22. The second slot 26 is a circular arc groove, which is formed on the surface of the transverse assembly groove 19. The length of the long side of the second slot 26 is equal to the length of the long side of the transverse assembly groove 19. The guiding strip 21 is fixed on one side of the transverse assembly plate 20, and the guiding strip 21 is inserted into the second slot 26. And a rubber strip 22 is sleeved and fixed at one end of the guiding strip 21 inserted into the second slot 26. The rubber strip 22 is a long strip with a circular cross-section. The rubber strip 22 is clamped between the guiding strip 21 and the second slot 26, and the diameter of the circular surface of the rubber strip 22 is greater than the height of the second slot 26.

[0034] During use, in order to achieve pre-limitation of the two groups of building aerated block bodies 1 after horizontal assembly through the two防渗 core plates 2. That is, after the transverse assembly plate 20 is inserted into the transverse assembly groove 19, the guiding strip 21 is inserted into the second slot 26. At this time, the rubber strip 22 is squeezed into the second slot 26. The second slot 26 not only realizes the防渗 seal after the insertion of the transverse assembly groove 19 and the transverse assembly plate 20, but also plays a role of traction and limitation on the transverse assembly plate 20. That is, when there is no external tension, the transverse assembly plate 20 will not fall off from the transverse assembly groove 19.

[0035] The surface of the impermeable core board 2 has slots 5, and clamping blocks 7 are inserted into the side walls of the slots 5. The slots 5 have a square structure, and there are two sets of slots 5. The two sets of slots 5 are symmetrically distributed about the assembly groove 3, with two slots in each set. The two sets of slots 5 are symmetrically distributed about the horizontal assembly groove 19. There are embedding grooves 4 on the two parallel side walls of the assembly groove 3. There are multiple through holes 6 on the side wall of the slot 5 closest to the assembly groove 3. The through holes 6 connect the embedding groove 4 and the slot 5. The multiple through holes 6 are arranged at equal intervals and of equal size along the long side of the slot 5. The clamping blocks 7 correspond one-to-one with the through holes 6. The insert is inserted into the through hole 6, and the width of the clamping block 7 is greater than the depth of the through hole 6; the insert strip 10 is inserted into the inside of the insertion port 5, and the insert strip 10 pushes the clamping block 7 into the assembly groove 3 to clamp the building aerated concrete block body 1. The end of the clamping block 7 extending towards the insertion port 5 has a bevel, and the other end of the clamping block 7 is fixed to the surface of the elastic band 9. The other ends of multiple clamping blocks 7 are all fixed to the surface of the same elastic band 9. Both ends of the elastic band 9 are fixed to the surface of the mounting groove 4. After the insert strip 10 is inserted into the insertion port 5, it pushes the clamping block 7. The clamping block 7 stretches the elastic band 9 to produce elastic deformation, and the elastic band 9 is clamped between the clamping block 7 and the building aerated concrete block body 1.

[0036] In use, in order to quickly fix one side of the aerated concrete block body 1 into the assembly groove 3, after one side of the aerated concrete block body 1 is inserted into the assembly groove 3, the insert 10 is pushed into the socket 5. As the insert 10 is pushed along the socket 5, the insert 10 pushes the clamping block 7 along the inclined surface 8 and slides along the through hole 6. The clamping block 7 stretches the elastic band 9 and deforms. The elastic band 9 is clamped between the clamping block 7 and the aerated concrete block body 1, increasing the friction between the clamping block 7 and the aerated concrete block body 1. When the insert 10 is fully pushed into the socket 5, multiple clamping blocks 7 clamp the aerated concrete block body 1 at the same time. After the inserts 10 on both sides are inserted into the corresponding sockets 5, the aerated concrete block body 1 is firmly clamped in the assembly groove 3.

[0037] The top surface and the bottom surface of the insert 10 are both provided with reserved grooves 11. The reserved grooves 11 are arc-shaped grooves. The length of the long side of the reserved groove 11 is equal to the length of the long side of the insert 10. A rubber clamping strip 12 is fixed inside the reserved groove 11. The rubber clamping strip 12 is a round strip. The rubber clamping strip 12 is clamped between the insert 10 and the socket 5 to generate elastic deformation. Two extraction grooves 13 are provided at one end of the insert 10; on the surface of the anti-seepage core plate 2, edge grooves 14 are provided. The edge grooves 14 and the sockets 5 correspond one by one. The edge grooves 14 are "L"-shaped grooves. The edge grooves 14 communicate with the sockets 5. An elastic hanging piece 15 is inserted inside the edge grooves 14. The elastic hanging piece 15 is an "L"-shaped plate. One end of the elastic hanging piece 15 is fixed on the surface of the insert 10. A first clamping strip 16 is fixed at the other end of the elastic hanging piece 15. The first clamping strip 16 is a right-angled trapezoidal strip. The first clamping strip 16 is inserted into a first clamping groove 17. The first clamping groove 17 is provided on the surface of the edge groove 14. A pull ring 18 is fixed on the surface of the elastic hanging piece 15. The pull ring 18 and the first clamping strip 16 are symmetrically distributed with respect to the plate body of the elastic hanging piece 15.

[0038] During use, in order to achieve the anti-detachment limit of the insert 10, that is, to firmly insert the insert 10 into the socket 5. After the insert 10 is inserted into the socket 5, the rubber clamping strip 12 is clamped between the insert 10 and the socket 5, increasing the friction between the insert 10 and the socket 5, and avoiding the insert 10 from sliding along the socket 5 without external tension; in order to further strengthen the limit of the insert 10 after being inserted into the socket 5, when the insert 10 is completely inserted into the socket 5, the elastic hanging piece 15 is inserted into the edge groove 14. At this time, the first clamping strip 16 is inserted into the first clamping groove 17, so as to limit the insert 10 by the elastic hanging piece 15.

[0039] Longitudinal assembly grooves 23 and longitudinal assembly plates 25 are respectively provided on the front and rear sides of the anti-seepage core plate 2 for assembling two adjacent anti-seepage core plates 2. The longitudinal assembly grooves 23 are square grooves. The longitudinal assembly plates 25 are square strips. After two building aerated block bodies 1 are assembled front and back, the longitudinal assembly plates 25 are inserted into the longitudinal assembly grooves 23; a sealing strip 24 is fixed inside the longitudinal assembly grooves 23. The sealing strip 24 is a "U"-shaped strip. The sealing strip 24 is clamped between the longitudinal assembly plate 25 and the longitudinal assembly groove 23 to generate elastic deformation.

[0040] During use, in order to cover the splicing gap after two groups of building aerated block bodies 1 are assembled front and back, after two groups of building aerated block bodies 1 are assembled front and back, the longitudinal assembly plates 25 are inserted into the longitudinal assembly grooves 23, and the sealing strip 24 is clamped between the longitudinal assembly groove 23 and the longitudinal assembly plate 25, improving the anti-seepage sealing performance of the front and back assembly of two groups of building aerated block bodies 1.

[0041] The use process specifically includes: The detailed working principle is as follows:

[0042] Basic structural components: It includes two aerated concrete block bodies 1, with a waterproof core board 2 sandwiched between them. The surface of the waterproof core board 2 has an assembly groove 3, into which one side of the aerated concrete block body 1 extends. The top and bottom surfaces of the waterproof core board 2 also have assembly grooves 3, giving it an "I"-shaped structure, while the aerated concrete block body 1 has a "U"-shaped structure for insertion into the assembly grooves 3.

[0043] Horizontal assembly mechanism: Horizontal assembly plates 20 and horizontal assembly grooves 19 are respectively provided on the left and right sides of the geomembrane core board 2 for assembling adjacent geomembrane core boards 2. The horizontal assembly plates 20 are inserted into the horizontal assembly grooves 19 to connect the two geomembrane core boards 2. To strengthen the connection and prevent water seepage, limiting fasteners are used, including a second fastener groove 26, an guide strip 21, and a rubber fastener strip 22. The guide strip 21 is inserted into the second fastener groove 26, and the rubber fastener strip 22 is squeezed into the second fastener groove 26, achieving geomembrane sealing and traction limiting functions.

[0044] Fixing the aerated concrete block body 1: The surface of the impermeable core board 2 is provided with an insertion port 5, and a clamping block 7 is inserted into the side wall of the insertion port 5. The side wall of the insertion port 5 is also provided with a through hole 6, through which the clamping block 7 extends into the assembly groove 3. The elastic band 9 is fixed to the surface of the mounting groove 4 and connects multiple clamping blocks 7. When the insertion strip 10 is inserted into the insertion port 5, it pushes the clamping block 7, causing the elastic band 9 to undergo elastic deformation and clamp between the aerated concrete block body 1 and the clamping block 7, thereby firmly fixing the aerated concrete block body 1 in the assembly groove 3.

[0045] Anti-detachment limiting of insert 10: The top and bottom surfaces of insert 10 are provided with reserved grooves 11, and rubber clamps 12 are fixed inside to increase the friction between insert 10 and socket 5. One end of insert 10 is also provided with a tuck groove 13 for easy operation. The surface of the waterproof core board 2 is also provided with a side groove 14, which communicates with the socket 5. One end of the elastic hanging piece 15 is fixed to the surface of insert 10, and the other end is provided with a locking strip 16, which is inserted into the locking groove 17 to further reinforce the limiting of insert 10.

[0046] Longitudinal assembly mechanism: The front and rear sides of the anti-seepage core board 2 are respectively provided with longitudinal assembly grooves 23 and longitudinal assembly plates 25. When the two building aerated concrete block bodies 1 are assembled front and rear, the longitudinal assembly plates 25 are inserted into the longitudinal assembly grooves 23. A sealing strip 24 is fixed inside the longitudinal assembly grooves 23, which is clamped between the longitudinal assembly plates 25 and the longitudinal assembly grooves 23 to improve the anti-seepage and sealing performance.

[0047] Overall seepage prevention effect: The seepage-proof core board 2 forms a seepage-proof structure between the two aerated concrete block bodies 1. Whether assembled side-by-side or front-to-back, the seepage prevention effect is ensured through specific structures and sealing components (such as rubber clips 22, rubber clamps 12, and sealing strips 24). This entire structure not only improves the seepage prevention performance of the aerated concrete blocks but also facilitates installation and disassembly, improving construction efficiency.

[0048] Although embodiments of the 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 invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A construction aerated block having a barrier structure, comprising a construction aerated block body (1), characterized in that: The building aerated concrete block body (1) is provided in two parts, and a seepage-proof core board (2) is sandwiched between the two building aerated concrete block bodies (1). An assembly groove (3) is opened on the surface of the seepage-proof core board (2). One side of the building aerated concrete block body (1) extends into the assembly groove (3). An insertion port (5) is opened on the surface of the seepage-proof core board (2). A clamping block (7) is inserted into the side wall of the insertion port (5). An insert strip (10) is inserted into the inside of the insertion port (5). The insert strip (10) pushes the clamping block (7) into the assembly groove (3) to clamp the building aerated concrete block body (1). A transverse assembly plate (20) and a transverse assembly groove (19) are provided on the left and right sides of the seepage-proof core board (2) for assembling two adjacent seepage-proof core boards (2). A longitudinal assembly groove (23) and a longitudinal assembly plate (25) are provided on the front and rear sides of the seepage-proof core board (2) for assembling two adjacent seepage-proof core boards (2).

2. The construction aerated block with a barrier structure according to claim 1, characterized in that: The top and bottom surfaces of the impermeable core board (2) are provided with assembly grooves (3). The impermeable core board (2) with two assembly grooves (3) has an "I" shaped plate structure. The building aerated block body (1) has a "convex" shaped plate structure. The protruding plate of the building aerated block body (1) is inserted into the assembly groove (3).

3. The aerated concrete block with a seepage-proof structure according to claim 2, characterized in that: The socket (5) has a square structure. There are two sets of sockets (5). The two sets of sockets (5) are symmetrically distributed about the assembly groove (3). Each set of sockets (5) has two sockets. The two sockets (5) are symmetrically distributed about the horizontal assembly groove (19). The two parallel side walls of the assembly groove (3) are provided with mounting grooves (4). The side wall of the socket (5) near the assembly groove (3) is provided with multiple through holes (6). The through holes (6) connect the mounting groove (4) and the socket (5). The multiple through holes (6) are arranged at equal distances and of equal size along the long side of the socket (5). The clamping block (7) corresponds to the through hole (6). The clamping block (7) is inserted into the through hole (6), and the width of the clamping block (7) is greater than the depth of the through hole (6).

4. The aerated concrete block with a seepage-proof structure according to claim 3, characterized in that: The clamping block (7) has a bevel at one end extending toward the socket (5), and the other end of the clamping block (7) is fixed to the surface of the elastic band (9). The other ends of multiple clamping blocks (7) are all fixed to the surface of the same elastic band (9). Both ends of the elastic band (9) are fixed to the surface of the mounting groove (4). After the insert (10) is inserted into the socket (5), it pushes the clamping block (7). The clamping block (7) stretches the elastic band (9) to produce elastic deformation, and the elastic band (9) is clamped between the clamping block (7) and the building aerated concrete block body (1).

5. The aerated concrete block with a seepage-proof structure according to claim 1, characterized in that: The top and bottom surfaces of the insert (10) are provided with reserved grooves (11). The reserved grooves (11) are arc-shaped grooves. The length of the long side of the reserved grooves (11) is equal to the length of the long side of the insert (10). A rubber clamp (12) is fixed inside the reserved grooves (11). The rubber clamp (12) is round. The rubber clamp (12) is clamped between the insert (10) and the socket (5) to produce elastic deformation. Two picking grooves (13) are opened at one end of the insert (10).

6. The aerated concrete block with a seepage-proof structure according to claim 1, characterized in that: The surface of the anti-seepage core plate (2) is provided with edge grooves (14), and the edge grooves (14) correspond to the sockets (5) one by one. The edge grooves (14) are "L"-shaped grooves, and the edge grooves (14) communicate with the sockets (5). Elastic hanging pieces (15) are inserted into the interior of the edge grooves (14). The elastic hanging pieces (15) are "L"-shaped plates. One end of the elastic hanging piece (15) is fixed on the surface of the insert bar (10), and a first clamping bar (16) is fixed at the other end of the elastic hanging piece (15). The first clamping bar (16) is a right-angled trapezoidal bar, and the first clamping bar (16) is inserted into the first clamping groove (17). The first clamping groove (17) is opened on the surface of the edge groove (14). A pull ring (18) is fixed on the surface of the elastic hanging piece (15), and the pull ring (18) and the first clamping bar (16) are symmetrically distributed with respect to the plate body of the elastic hanging piece (15).

7. The aerated concrete block with a seepage-proof structure according to claim 1, characterized in that: The transverse assembly groove (19) is a square groove, and the length of the long side of the transverse assembly groove (19) is equal to the width of the building aerated block body (1). The transverse assembly plate (20) is a square bar, and the size of the transverse assembly plate (20) is equal to the size of the transverse assembly groove (19). When two building aerated block bodies (1) are spliced left and right, the transverse assembly plate (20) at the end of one building aerated block is inserted into the transverse assembly groove (19) at the end of the other building aerated block. A limiting clamping member is provided between the transverse assembly groove (19) and the transverse assembly plate (20).

8. An aerated concrete block with a seepage-proof structure according to claim 7, characterized in that: The limiting clamping member includes a second clamping groove (26), a guiding strip (21) and a rubber clamping strip (22). The second clamping groove (26) is an arc-shaped groove, and the second clamping groove (26) is opened on the surface of the transverse assembly groove (19). The length of the long side of the second clamping groove (26) is equal to the length of the long side of the transverse assembly groove (19). The guiding strip (21) is fixed on one side of the transverse assembly plate (20), and the guiding strip (21) is inserted into the second clamping groove (26). And a rubber clamping strip (22) is sleeved and fixed at one end of the guiding strip (21) inserted into the second clamping groove (26). The rubber clamping strip (22) is a long strip with a circular cross-section. The rubber clamping strip (22) is clamped between the guiding strip (21) and the second clamping groove (26), and the diameter of the circular surface of the rubber clamping strip (22) is greater than the height of the second clamping groove (26).

9. An aerated concrete block with a seepage-proof structure according to claim 1, characterized in that: The longitudinal assembly groove (23) is a square groove, and the longitudinal assembly plate (25) is a square bar. After two building aerated block bodies (1) are assembled front and back, the longitudinal assembly plate (25) is inserted into the longitudinal assembly groove (23).

10. An aerated concrete block with a seepage-proof structure according to claim 9, characterized in that: A sealing strip (24) is fixed inside the longitudinal assembly groove (23). The sealing strip (24) is a "U"-shaped bar, and the sealing strip (24) is clamped between the longitudinal assembly plate (25) and the longitudinal assembly groove (23) to generate elastic deformation.