ALC building structure and construction method

By using a rectangular combination of four structural columns and a first ALC wall panel in the ALC building structure, the problems of low installation efficiency and easy cracking are solved by using a first connecting component, achieving efficient connection and convenient disassembly.

CN116905648BActive Publication Date: 2026-03-03DONGGUAN JIANAN GRP CO LTD
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Patent Information

Application Number
CN202310944261.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-29
Publication Date
2026-03-03
Estimated Expiration
2043-07-29

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Abstract

The application relates to the field of building construction, in particular to an ALC building structure, which comprises four first structure columns, the four first structure columns are distributed in a rectangular array, every two adjacent first structure columns are fixedly connected through first ALC wallboards, and four first ALC wallboards are combined to form a rectangle; a first installation groove is arranged in each first structure column, a first connecting assembly is arranged in the first installation groove, and the first connecting assembly is used for connecting the first structure column and two adjacent first ALC wallboards together. The application increases the firmness of the connection between two adjacent ALC wallboards.
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Description

Technical Field

[0001] This application relates to the field of building construction, and in particular to an ALC building structure and construction method. Background Technology

[0002] ALC is a fine, porous, and dense concrete slab made primarily from silica sand, fly ash, cement, and lime, reinforced with rust-proof steel bars, and cured under high temperature, high pressure, and autoclaving.

[0003] A related technology discloses an ALC wall panel, including a panel body. Rock wool boards are fixedly connected to both the front and rear faces of the panel body. A sound-absorbing coating is provided between the panel body and the rock wool boards. A fireproof layer is provided on the outer surface of the rock wool boards. A fastening groove is provided on the top of the panel body. Multiple downwardly extending positioning grooves are evenly spaced at the bottom of the fastening groove. A fastening block is provided on the bottom of the panel body. The fastening block is engaged with the fastening groove. A positioning block is provided on the bottom surface of the fastening block at a position corresponding to the positioning groove. The positioning block is engaged with the positioning groove.

[0004] Regarding the aforementioned technologies, the inventors believe that the following defects exist: In the process of installing ALC wall panels, a large number of expansion anchors, angle steel, accessories, and pipe clamps are required, resulting in low overall installation efficiency, and ALC wall panels are also prone to cracking. Summary of the Invention

[0005] To increase the strength of the connection between two adjacent ALC wall panels, this application provides an ALC building structure and construction method.

[0006] Firstly, the ALC building structure provided in this application adopts the following technical solution:

[0007] An ALC building structure includes four first structural columns arranged in a rectangular array. Each pair of adjacent first structural columns is fixedly connected by a first ALC wall panel, and the four first ALC wall panels are combined to form a rectangle. Each first structural column has a first mounting groove, and a first connecting component is provided in the first mounting groove. The first connecting component is used to connect the first structural column and two adjacent first ALC wall panels together.

[0008] By adopting the above technical solution, the first connecting component connects the first structural column and the two adjacent first ALC wall panels, thereby connecting the four first structural columns and the four first ALC wall panels together, increasing the overall connection strength of the ALC building structure, and eliminating the need for a large number of bolts and accessories, thus improving the overall installation efficiency.

[0009] Optionally, the first connecting assembly includes two first connecting members, each of which includes a first connecting block and a first connecting rod; two adjacent inner sidewalls in the first mounting groove are provided with first positioning grooves, the two first connecting blocks are respectively installed in the two first positioning grooves, and each first connecting rod passes through the first structural column and the first ALC wall panel in sequence, and the first connecting rod is fixedly connected to the first ALC wall panel.

[0010] By adopting the above technical solution, since both first connecting blocks are located in the first mounting groove, the first mounting groove has a positioning function for the first connecting blocks, which increases the efficiency of workers in installing the first connecting blocks in the first structural column, and also increases the firmness of the installation of the first connecting blocks; at the same time, since multiple first connecting rods on each first connecting block pass through the first structural column and are fixedly connected to the first ALC wall panel, the first connecting rods have a connecting function for the first connecting block and the first ALC wall panel, and the first connecting block and the first ALC wall panel have a clamping function for the first structural column, thereby fixing the first structural column to the end of the first ALC wall panel.

[0011] Optionally, the first connecting assembly further includes a clamping member, which includes a first clamping block and a second clamping block fixedly connected, the first clamping block and the second clamping block being perpendicular to each other; the side wall of the first clamping block abuts against the side wall of one of the first connecting blocks, and the side wall of the second clamping block abuts against the side wall of the other first connecting block; the end of the first clamping block is grounded in contact with the inner side wall of the mounting groove, and the end of the second clamping block abuts against the adjacent inner side wall of the mounting groove.

[0012] By adopting the above technical solution, since the sidewall of the first abutting block abuts against the sidewall of one of the first connecting blocks, and the sidewall of the second abutting block abuts against the sidewall of the other first connecting block; the end of the first abutting block is connected to the inner sidewall of the mounting groove, and the end of the second abutting block abuts against the adjacent inner sidewall of the mounting groove; therefore, on the one hand, the mounting groove and the two first connecting blocks have a positioning and clamping effect on the abutting member, so that the abutting member is not easy to slide in the mounting groove; on the other hand, the first abutting block and the first limiting post have a clamping and fixing effect on one of the first connecting blocks, so that the first connecting block will not move from the first positioning groove to the mounting groove; at the same time, the second abutting block and the first limiting post have a clamping and fixing effect on the other first connecting block, so that the other first connecting block will not move from the first positioning groove to the mounting groove; and at the same time, the firmness of the two first connecting blocks installed in the first structural column is increased.

[0013] Optionally, the clamping member further includes a fixing block, which is fixed to the ends of the first clamping block and the second clamping block, and the fixing block has a triangular cross-section.

[0014] By adopting the above technical solution, the fixing block not only increases the firmness of the connection between the first and second abutting blocks, but also ensures that the first and second abutting blocks are not easily deformed due to the triangular cross-section of the fixing block and the inherent stability of the triangular structure. Furthermore, since the mounting groove is a rectangular groove, there is a gap between the fixing block and the mounting groove, which allows workers to insert their hands or other tools into the mounting groove through the gap, making it easier to pull the fixing block outward and remove the entire abutting component from the mounting groove, thus increasing the convenience of disassembling the abutting component.

[0015] Optionally, one of the first ALC wall panels includes a second structural column and two second ALC wall panels, with the second structural column located between two adjacent first structural columns; one end of the second ALC wall panel is fixedly connected to the first structural column, and the other end of the second ALC wall panel is fixedly connected to the second structural column; a third ALC wall panel is fixedly disposed on one side of the second structural column, and a fourth ALC wall panel is fixedly disposed at the end of the third ALC wall panel away from the second structural column, with the end of the fourth ALC wall panel away from the third ALC wall panel fixedly connected to one of the first ALC wall panels.

[0016] By adopting the above technical solution, the second structural column not only connects the two second ALC wall panels, but also connects the third ALC wall panel, thereby connecting the third ALC wall panel and the two second ALC wall panels together, increasing the convenience for workers to install and dismantle the second and third ALC wall panels; at the same time, the third and fourth ALC wall panels divide the entire ALC building structure into three areas, of which the two larger areas can be used as dormitories, and the smaller area can be used for water storage.

[0017] Optionally, a plurality of second connecting rods are fixedly installed on the side wall of the second structural column near the second ALC wall panel, and the plurality of second connecting rods pass through the interior of the second ALC wall panel and are fixedly connected to the second ALC wall panel; a plurality of third connecting rods are fixedly installed on the side wall of the second structural column near the third ALC wall panel, and the plurality of third connecting rods pass through the interior of the third ALC wall panel and are fixedly connected to the third ALC wall panel.

[0018] By adopting the above technical solution, multiple second connecting rods increase the strength of the connection between the second structural column and the two second ALC wall panels; multiple third connecting rods increase the strength of the connection between the second structural column and the third ALC wall panel.

[0019] Optionally, a limiting block is provided on the second structural column, and the limiting block has a first limiting groove and a second limiting groove that are interconnected. Both second ALC wall panels are located in the first limiting groove, and the third ALC wall panel is located in the second limiting groove.

[0020] By adopting the above technical solution, since both second ALC wall panels are located in the first limiting groove and the third ALC wall panel is located in the second limiting groove, the limiting block has a limiting effect on both the third ALC wall panel and the two second ALC wall panels, which further increases the firmness of the connection between the third ALC wall panel and the two second ALC wall panels.

[0021] Optionally, the third ALC wall panel and the fourth ALC wall panel are fixedly connected by a second connector, and the fourth ALC wall panel and the first ALC wall panel are fixedly connected by a third connector.

[0022] By adopting the above technical solution, the second connector increases the strength of the connection between the third ALC wall panel and the fourth ALC wall panel, and the third connector increases the strength of the connection between the fourth ALC wall panel and the first ALC wall panel.

[0023] Optionally, the second connector includes a first connecting block and a second connecting block fixedly connected, the first connecting block and the second connecting block being perpendicular to each other; the first connecting block has a first through hole and a second through hole, the length direction of the first through hole being perpendicular to the length direction of the second through hole; a first screw and a second screw are fixedly installed on the third ALC wall panel, the first screw passing through the first through hole and the second screw passing through the second through hole; a first nut is threaded onto the first screw and a second nut is threaded onto the second screw; the second connecting block is fixedly connected to the fourth ALC wall panel.

[0024] By adopting the above technical solution, since the length direction of the first through hole is perpendicular to the length direction of the second through hole, during the installation of the second connector, the worker first adjusts the second connector along the length direction of the first through hole so that the first screw passes through the first through hole; then, the worker adjusts the second connector along the length direction of the second through hole so that the second screw passes through the second through hole, thereby increasing the worker's convenience in installing the second connector; then, the first nut is threaded into the first screw, and the second nut is threaded into the second screw, thereby fixing the first connector to the third ALC wall panel; finally, the second connector is fixed to the fourth ALC wall panel, thereby increasing the firmness of the connection between the third and fourth ALC wall panels.

[0025] Secondly, this application also provides a construction method for the above-mentioned ALC building structure, including the following steps:

[0026] Step 1: Install two of the first structural columns at both ends of the first ALC wall panel;

[0027] Step 2: Connect the first ALC wall panel to the first structural column at one end using the first connecting component;

[0028] Step 3: Connect the first ALC wall panel to the first structural column at the other end using the first connecting component;

[0029] Step 4: Install the next first ALC wall panel onto the side wall adjacent to one of the first structural columns;

[0030] Step 5: Connect the first ALC wall panel and the first structural column from Step 4 together using the first connecting component;

[0031] Step Six: Fix the next first structural column to the free end of the first ALC wall panel;

[0032] Step 7: Repeat steps 4 through 6;

[0033] Step 8: Install the last first ALC wall panel between the two first structural columns;

[0034] Step 9: Repeat steps 2 through 3.

[0035] By adopting the above technical solution, the first connecting component connects the first structural column and the two adjacent first ALC wall panels, thereby connecting the four first structural columns and the four first ALC wall panels together, increasing the overall connection strength of the ALC building structure, while also eliminating the need for a large number of bolts and accessories, and increasing the convenience for workers to install and disassemble the ALC building structure.

[0036] In summary, this application includes at least one of the following beneficial technical effects:

[0037] 1. The first connecting component connects the first structural column and the two adjacent first ALC wall panels, thereby connecting the four first structural columns and the four first ALC wall panels together, increasing the overall connection strength of the ALC building structure, and eliminating the need for a large number of bolts and accessories, thus improving the overall installation efficiency.

[0038] 2. Since both first connecting blocks are located within the first mounting slot, the first mounting slot provides a positioning function for the first connecting blocks, increasing the efficiency of workers installing the first connecting blocks into the first structural column and also increasing the stability of the first connecting block installation; at the same time, since multiple first connecting rods on each first connecting block pass through the first structural column and are fixedly connected to the first ALC wall panel, the first connecting rods provide a connecting function between the first connecting block and the first ALC wall panel, and the first connecting block and the first ALC wall panel provide a clamping function for the first structural column, thereby fixing the first structural column to the end of the first ALC wall panel;

[0039] 3. Since the sidewall of the first abutting block abuts against the sidewall of one of the first connecting blocks, and the sidewall of the second abutting block abuts against the sidewall of the other first connecting block; the end of the first abutting block is connected to the inner sidewall of the mounting groove, and the end of the second abutting block abuts against the adjacent inner sidewall of the mounting groove; therefore, on the one hand, the mounting groove and the two first connecting blocks have a positioning and clamping function for the abutting member, so that the abutting member is not easy to slide in the mounting groove; on the other hand, the first abutting block and the first limiting post have a clamping and fixing function for one of the first connecting blocks, so that the first connecting block will not move from the first positioning groove to the mounting groove, and at the same time, the second abutting block and the first limiting post have a clamping and fixing function for the other first connecting block, so that the other first connecting block will not move from the first positioning groove to the mounting groove, and at the same time, the firmness of the two first connecting blocks installed in the first structural column is increased. Attached Figure Description

[0040] Figure 1 This is a schematic diagram of the ALC building structure in the embodiments of this application.

[0041] Figure 2 This is a schematic diagram of the structure of the first connector in the embodiments of this application.

[0042] Figure 3 This is a schematic diagram of the structure of the clamping member in the embodiments of this application.

[0043] Figure 4 This is a schematic diagram of the structure of the second structural column in the embodiment of this application.

[0044] Figure 5 This is a schematic diagram of the structure of the limiting block in an embodiment of this application.

[0045] Figure 6 This is a schematic diagram of the structure of the second connector in the embodiments of this application.

[0046] Explanation of reference numerals in the attached figures:

[0047] 1. First structural column; 11. First mounting groove; 12. First positioning groove; 2. First ALC wall panel; 3. First connecting assembly; 31. First connector; 311. First connecting block; 312. First connecting rod; 32. Clamping member; 321. First clamping block; 322. Second clamping block; 323. Fixing block; 4. Second structural column; 41. Second connecting rod; 42. Third connecting rod; 43. Limiting block; 431. First limiting groove; 432. Second limiting groove; 5. Second ALC wall panel; 6. Third ALC wall panel; 7. Fourth ALC wall panel; 8. Fifth ALC wall panel; 9. Second connector; 91. Second connecting block; 92. Third connecting block; 93. First through hole; 94. Second through hole; 10. Third connector; 13. Fourth connector; 14. Fifth connector. Detailed Implementation

[0048] The following is in conjunction with the appendix Figure 1-6 This application will be described in further detail.

[0049] This application discloses an ALC building structure. (Refer to...) Figure 1 The ALC building structure includes four first structural columns 1, which are arranged in a rectangular array and extend vertically. Each pair of adjacent first structural columns 1 is fixedly connected by a first ALC wall panel 2. The four first ALC wall panels 2 are combined to form a rectangle, thus forming the outer structure of the entire dormitory.

[0050] Continue to refer to Figure 1 Each first structural column 1 has a first mounting groove 11 at its top, which extends vertically. Each first mounting groove 11 contains a first connecting component 3, which connects the first structural column 1 to two adjacent first ALC wall panels 2. The first connecting component 3 connects the first structural column 1 to the two adjacent first ALC wall panels 2, thus connecting the four first structural columns 1 and the four first ALC wall panels 2 together. This increases the overall connection strength of the ALC building structure and reduces the need for numerous bolts and fittings, thereby improving overall installation efficiency.

[0051] Reference Figure 1 and Figure 2The first connecting assembly 3 includes two first connecting members 31. Each first connecting member 31 includes a first connecting block 311 and multiple first connecting rods 312. One end of each of the multiple first connecting rods 312 is fixedly connected to the first connecting block 311, and the multiple first connecting rods 312 are arranged at equal intervals along the length direction of the first connecting block 311. Two adjacent inner sidewalls of the first mounting groove 11 are each provided with a first positioning groove 12, and the two first connecting blocks 311 are respectively installed in the two first positioning grooves 12. Each first connecting rod 312 passes sequentially through the first structural column 1 and the first ALC wall panel 2, and the first connecting rod 312 is fixedly connected to the first ALC wall panel 2. Since both first connecting blocks 311 are located within the first mounting groove 11, the first mounting groove 11 has a positioning function for the first connecting blocks 311, increasing the efficiency of workers installing the first connecting blocks 311 into the first structural column 1, and also increasing the stability of the first connecting blocks 311 installation. Meanwhile, since multiple first connecting rods 312 on each first connecting block 311 pass through the first structural column 1 and are fixedly connected to the first ALC wall panel 2, the first connecting rods 312 have a connecting function for the first connecting block 311 and the first ALC wall panel 2, and the first connecting block 311 and the first ALC wall panel 2 have a clamping function for the first structural column 1, thereby fixing the first structural column 1 to the end of the first ALC wall panel 2.

[0052] Reference Figure 1 and Figure 3The first connecting assembly 3 further includes a clamping member 32, which includes a first clamping block 321 and a second clamping block 322 fixedly connected. The first clamping block 321 and the second clamping block 322 are perpendicular to each other, so that the cross-section of the clamping member 32 in the horizontal direction is L-shaped. The sidewall of the first clamping block 321 abuts against the sidewall of one of the first connecting blocks 311, and the sidewall of the second clamping block 322 abuts against the sidewall of the other first connecting block 311. The end of the first clamping block 321 is grounded in contact with the inner sidewall of the mounting groove, and the end of the second clamping block 322 abuts against the adjacent inner sidewall of the mounting groove. Since the sidewall of the first clamping block 321 abuts against the sidewall of one of the first connecting blocks 311, and the sidewall of the second clamping block 322 abuts against the sidewall of the other first connecting block 311, and the end of the first clamping block 321 is grounded in contact with the inner sidewall of the mounting groove, and the end of the second clamping block 322 abuts against the adjacent inner sidewall of the mounting groove, the clamping member ... the clamping member 322 is grounded in contact with the inner sidewall of the mounting groove, the clamping member 322 is grounded in contact with the adjacent inner sidewall of the mounting groove. Therefore, on the one hand, the mounting groove and the two first connecting blocks 311 have a positioning and clamping effect on the abutment 32, so that the abutment 32 is not easy to slide in the mounting groove. On the other hand, the first abutment block 321 and the first limiting post have a clamping and fixing effect on one of the first connecting blocks 311, so that the first connecting block 311 will not move from the first positioning groove 12 into the mounting groove. At the same time, the second abutment block 322 and the first limiting post have a clamping and fixing effect on the other first connecting block 311, so that the other first connecting block 311 will not move from the first positioning groove 12 into the mounting groove. This also increases the firmness of the two first connecting blocks 311 installed in the first structural column 1.

[0053] Reference Figure 3 The clamping member 32 also includes a fixing block 323, which is fixed to the ends of the first clamping block 321 and the second clamping block 322. The fixing block 323 has a triangular cross-section. The fixing block 323 not only increases the firmness of the connection between the first clamping block 321 and the second clamping block 322, but also, due to the triangular cross-section and the inherent stability of the triangular structure, ensures that the first clamping block 321 and the second clamping block 322 are not easily deformed. Furthermore, since the mounting groove is rectangular, there is a gap between the fixing block 323 and the mounting groove, allowing workers to insert their hands or other tools into the mounting groove through this gap. This facilitates pulling the fixing block 323 outwards, making it easier to remove the entire clamping member 32 from the mounting groove, thus increasing the convenience of disassembling the clamping member 32.

[0054] Reference Figure 2 and Figure 3 In this embodiment, the materials of the clamping member 32 and the two first connecting members 31 are all metal materials, thereby increasing the support strength of the clamping member 32 and the two first connecting members 31.

[0055] Reference Figure 1 One of the first ALC wall panels 2 includes a second structural column 4 and two second ALC wall panels 5, with the second structural column 4 located between two adjacent second ALC wall panels 5. Each second ALC wall panel 5 is fixedly connected to the first structural column 1 at one end near the first structural column 1, and also fixedly connected to the second structural column 4 at one end near the second structural column 4, thus forming the first ALC wall panel 2. A third ALC wall panel 6 is fixedly installed on the inner wall of the second structural column 4, and a fourth ALC wall panel 7 is fixedly installed on the end of the third ALC wall panel 6 away from the second structural column 4. In this embodiment, the two free ends of the fourth ALC wall panel 7 are fixedly connected to the inner wall of one of the first ALC wall panels 2. The second structural column 4 not only connects the two second ALC wall panels 5 but also connects the third ALC wall panel 6, thereby connecting the third ALC wall panel 6 and the two second ALC wall panels 5 together, increasing the convenience for workers to install and disassemble the second ALC wall panels 5 and the third ALC wall panel 6. Meanwhile, the third ALC wall panel 6 and the fourth ALC wall panel 7 divide the entire ALC building structure into three areas, two of which can be used as dormitories and the smaller area can be used as a pool.

[0056] Reference Figure 1 and Figure 4 Multiple second connecting rods 41 are fixedly installed on the side wall of the second structural column 4 near the second ALC wall panel 5. These connecting rods 41 pass through the interior of the second ALC wall panel 5 and are fixedly connected to it. Similarly, multiple third connecting rods 42 are fixedly installed on the side wall of the second structural column 4 near the third ALC wall panel 6. These connecting rods 42 pass through the interior of the third ALC wall panel 6 and are fixedly connected to it. The multiple second connecting rods 41 increase the strength of the connection between the second structural column 4 and the two second ALC wall panels 5. The multiple third connecting rods 42 increase the strength of the connection between the second structural column 4 and the third ALC wall panel 6.

[0057] Reference Figure 1 and Figure 5 A limiting block 43 is provided on the second structural column 4. The limiting block 43 has a first limiting groove 431 and a second limiting groove 432 that are interconnected. Both second ALC wall panels 5 are located in the first limiting groove 431, and the third ALC wall panel 6 is located in the second limiting groove 432. Since both second ALC wall panels 5 are located in the first limiting groove 431 and the third ALC wall panel 6 is located in the second limiting groove 432, the limiting block 43 has a limiting effect on both the third ALC wall panel 6 and the two second ALC wall panels 5, further increasing the firmness of the connection between the third ALC wall panel 6 and the two second ALC wall panels 5.

[0058] Reference Figure 1The third ALC wall panel 6 and the fourth ALC wall panel 7 are fixedly connected by the second connector 9, and the fourth ALC wall panel 7 and the first ALC wall panel 2 are fixedly connected by the third connector 10. The second connector 9 increases the strength of the connection between the third ALC wall panel 6 and the fourth ALC wall panel 7, and the third connector 10 increases the strength of the connection between the fourth ALC wall panel 7 and the first ALC wall panel 2.

[0059] Reference Figure 6 Specifically, the second connecting piece 9 includes a second connecting block 91 and a third connecting block 92 fixedly connected, with the second connecting block 91 and the third connecting block 92 perpendicular to each other. The second connecting block 91 has a first through hole 93 and a second through hole 94, the length direction of the first through hole 93 being perpendicular to the length direction of the second through hole 94. A first screw and a second screw are fixedly installed on the third ALC wall panel 6, the first screw passing through the first through hole 93 and the second screw passing through the second through hole 94. A first nut is threaded onto the first screw, and a second nut is threaded onto the second screw. The third connecting block 92 is fixedly connected to the fourth ALC wall panel 7. Because the length direction of the first through hole 93 is perpendicular to the length direction of the second through hole 94, during the installation of the second connecting piece 9, the operator first adjusts the second connecting piece 9 along the length direction of the first through hole 93 so that the first screw passes through the first through hole 93. Then, adjust the second connector 9 along the length of the second through hole 94 so that the second screw passes through the second through hole 94, thereby increasing the convenience for workers to install the second connector 9; then, fix the second connector 91 to the third ALC wall panel 6 by threading the first nut with the first screw and the second nut with the second screw; finally, fix the third connector 92 to the fourth ALC wall panel 7, thereby increasing the firmness of the connection between the third ALC wall panel 6 and the fourth ALC wall panel 7.

[0060] Reference Figure 1 and Figure 6A fifth ALC wall panel 8 is provided on both sides of the second wall panel. The fifth ALC wall panel 8 has an L-shaped cross-section in the horizontal direction. The end of the fifth ALC wall panel 8 closest to the first ALC wall panel 2 is fixedly connected to the first ALC wall panel 2, and the end of the fifth ALC wall panel 8 closest to the second wall panel is fixedly connected to the second wall panel. The area between each first ALC wall panel 2, fourth wall panel, and fifth ALC wall panel 8 can serve as a toilet or bathroom. The end of the fifth ALC wall panel 8 closest to the first ALC wall panel 2 is fixed by a fourth connector 13, thereby increasing the strength of the connection between the first ALC wall panel 2 and the fifth ALC wall panel 8. The end of the fifth ALC wall panel 8 closest to the third ALC wall panel 6 is fixed by a fifth connector 14, thereby increasing the strength of the connection between the third ALC wall panel 6 and the fifth ALC wall panel 8. In this embodiment, the structures of the fourth connector 13 and the fifth connector 14 are the same as the structure of the third connector 10.

[0061] This application also discloses a construction method for the above-mentioned ALC building structure, including the following steps:

[0062] Step 1: Install two of the first structural columns 1 at both ends of the first ALC wall panel 2;

[0063] Step 2: Connect the first ALC wall panel 2 to the first structural column 1 at one end using the first connecting component 3;

[0064] Step 3: Connect the first ALC wall panel 2 to the first structural column 1 at the other end using the first connecting component 3;

[0065] Step 4: Install the next first ALC wall panel 2 onto the side wall adjacent to one of the first structural columns 1;

[0066] Step 5: Connect the first ALC wall panel 2 and the first structural column 1 from step 4 together using the first connecting component 3;

[0067] Step Six: Fix the next first structural column 1 to the free end of the first ALC wall panel 2;

[0068] Step 7: Repeat steps 4 through 6;

[0069] Step 8: Install the last first ALC wall panel 2 between the two first structural columns 1;

[0070] Step 9: Repeat steps 2 through 3.

[0071] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An ALC building structure, characterized by: The utility model provides a kind of first connecting assembly, it include four first construction columns (1), the four first construction columns (1) are distributed in rectangular array, every adjacent two first construction columns (1) are connected by first ALC wallboard (2) fixedly, four first ALC wallboard (2) combination forms rectangle;First installation slot (11) is set in each first construction column (1), first connecting assembly (3) is provided in first installation slot (11), and first connecting assembly (3) is used to connect first construction column (1) and adjacent two first ALC wallboard (2) together; First connecting assembly (3) includes two first connecting pieces (31), and each first connecting piece (31) includes first connecting block (311) and first connecting rod (312), and the end of first connecting rod (312) is fixedly connected with the end of first connecting block (311);First installation slot (11) is set in the inner side wall of two adjacent first installation slot (11), and two first connecting block (311) is installed in two first installation slot (12) respectively, and each first connecting rod (312) passes through first construction column (1) and first ALC wallboard (2) in sequence, and first connecting rod (312) is fixedly connected with first ALC wallboard (2); First connecting assembly (3) further includes abutting member (32), and abutting member (32) includes first abutting block (321) and second abutting block (322) fixedly connected, and first abutting block (321) and second abutting block (322) are perpendicular to each other;The side wall of first abutting block (321) is in contact with the side wall of one of first connecting block (311), and the side wall of second abutting block (322) is in contact with the side wall of another first connecting block (311);The end of first abutting block (321) is in contact with the inner side wall of installation slot, and the end of second abutting block (322) is in contact with the adjacent inner side wall of installation slot; First abutting block (321) and second abutting block (322) are fixedly connected, and the cross section of fixed block (323) is triangular.

2. An ALC building structure according to claim 1, characterized in that One of first ALC wallboard (2) includes second construction column (4) and two second ALC wallboard (5), and second construction column (4) is located between adjacent two first construction columns (1);One end of second ALC wallboard (5) is fixedly connected with first construction column (1), and the other end of second ALC wallboard (5) is fixedly connected with second construction column (4);Third ALC wallboard (6) is fixedly arranged on the side of second construction column (4), fourth ALC wallboard (7) is fixedly arranged on the end of third ALC wallboard (6) away from second construction column (4), and one end of fourth ALC wallboard (7) away from third ALC wallboard (6) is fixedly connected with one of first ALC wallboard (2).

3. An ALC building structure according to claim 2, characterized in that The second construction column (4) is provided with a plurality of second connecting rods (41) fixedly arranged near the side wall of the second ALC wallboard (5), and the plurality of second connecting rods (41) are arranged in the interior of the second ALC wallboard (5) and are fixedly connected with the second ALC wallboard (5); the second construction column (4) is provided with a plurality of third connecting rods (42) fixedly arranged near the side wall of the third ALC wallboard (6), and the plurality of third connecting rods (42) are arranged in the interior of the third ALC wallboard (6) and are fixedly connected with the third ALC wallboard (6).

4. An ALC building structure according to claim 2, characterized in that: The second construction column (4) is provided with a limiting block (43), the limiting block (43) is provided with a first limiting groove (431) and a second limiting groove (432) in communication with each other, the two second ALC wallboards (5) are located in the first limiting groove (431), and the third ALC wallboard (6) is located in the second limiting groove (432).

5. An ALC building structure according to claim 2, characterized in that: The third ALC wallboard (6) and the fourth ALC wallboard (7) are fixedly connected through a second connecting piece (9), and the fourth ALC wallboard (7) and the first ALC wallboard (2) are fixedly connected through a third connecting piece (10).

6. An ALC building structure according to claim 5, characterized in that: The second connecting piece (9) comprises a third connecting block (92) and a second connecting block (91) fixedly connected, and the third connecting block (92) and the second connecting block (91) are perpendicular to each other; the second connecting block (91) is provided with a first through hole (93) and a second through hole (94), the length direction of the first through hole (93) is perpendicular to the length direction of the second through hole (94); the third ALC wallboard (6) is fixedly provided with a first screw rod and a second screw rod, the first screw rod passes through the first through hole (93), and the second screw rod passes through the second through hole (94); the first screw rod is threadedly connected with a first nut, and the second screw rod is threadedly connected with a second nut; the third connecting block (92) is fixedly connected with the fourth ALC wallboard (7).

7. A method of constructing an ALC building structure according to any one of claims 1 to 6, characterized in that The method comprises the following steps: Step one: two first construction columns (1) are installed at the two ends of the first ALC wallboard (2); Step two: the first ALC wallboard (2) and one end of the first construction column (1) are connected together through the first connecting assembly (3); Step three: the first ALC wallboard (2) and the other end of the first construction column (1) are connected together through the first connecting assembly (3); Step four: the next first ALC wallboard (2) is installed on the adjacent side wall of one of the first construction columns (1); Step five: the first ALC wallboard (2) and the first construction column (1) in step four are connected together through the first connecting assembly (3); Step six: the next first construction column (1) is fixed to the free end of the first ALC wallboard (2); Step seven: steps four to six are repeated; Step eight: the last first ALC wallboard (2) is installed between the two first construction columns (1); Step nine: steps two to three are repeated.

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