Pipeline decoration integrated autoclaved aerated concrete slab wall
By splicing thin ALC wall panels into ALC walls to form a wire tube layout space, the problem of grooved ALC panel walls when laying wire tubes is solved, and the decorative effect without plastering is achieved, simplifying construction and reducing costs are achieved, and indoor space utilization is maximized.
Patent Information
- Application Number
- CN202422430291.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-08
AI Technical Summary
During construction, existing ALC panel walls need to be grooved or holed when laying wire pipes, resulting in wall cracks, waste of materials and environmental pollution. At the same time, the cost of embedding wire pipes is high and the positioning error is large, which affects the construction quality and efficiency.
By splicing thin ALC wall panels in the ALC wall unit, the wire tube layout space is formed. One end of the wire tube is connected to the floor slab or beam, and the other end is fixed to the wire box. The decorative panel covers without plastering, simplifying the construction process and avoiding grooves.
It avoids the impact of grooves on wall strength, reduces material waste and environmental pollution, reduces costs, ensures maximum indoor space and facilitates post-maintenance.
Smart Images

Figure CN223151417U_ABST
Abstract
Description
[Technical field]
[0001] The utility model relates to the technical field of construction, in particular to an autoclaved aerated concrete board wall body with integrated pipeline decoration. [Background technology]
[0002] At present, in buildings, especially prefabricated buildings, autoclaved light weight concrete (ALC) is widely used for partition walls. The ALC board wall is directly installed with decorative panels or tiles without plastering, thus forming a decorative integrated autoclaved aerated concrete board wall. When installing the decorative panel, you can set connectors on the ALC board, such as connecting buckles, and then install the decorative panel on the connector. You can also install a keel frame on the connector and then fix the decorative panel on the connector.
[0003] Depending on the needs, it is sometimes necessary to install junction boxes and lay wire conduits on the wall units. When arranging the wiring and installing switches and sockets, it is usually necessary to groove or drill holes in the ALC board wall after installation. Grooving and drilling holes require chiseling the wall with a groover or an impact drill. The vibration and impact on the wall during this process often cause cracks in the board joints where the ALC board meets the main structure, and in the board joints between the boards. After the wire conduits are installed, mortar backfilling is used, which on the one hand will result in a waste of mortar materials, and on the other hand, the sealed parts will also crack due to the inconsistency between the mortar and the ALC board materials. The dust, noise, sewage, and construction waste generated during the grooving, chiseling, backfilling and sealing process greatly affect the construction environment and construction quality.
[0004] In response to this diverse demand in the construction market, domestic autoclaved aerated concrete (ALC) sheet production enterprises have also carried out research and development. During the production process, pipeline conduits are pre-embedded into ALC sheets. The layout plan of ALC sheets is mainly designed according to the requirements of the construction site. According to the positions of the pipeline conduit and junction box points in the layout plan, during the production process, the method of pre-embedding pipeline conduits and junction boxes is adopted to fix the pipeline conduits and junction boxes on the steel mesh. After steam curing, the concrete layer on the surface of the junction box at one end of the pipeline conduit is removed, and the concrete layer at the other end of the pipeline conduit is removed to form a groove. The corresponding quick-connect joints are installed or the pipeline conduits are exposed, and the integrated pipeline sheet is formed and marked. At the construction site, the ALC sheets with corresponding marks are installed according to the layout plan to form an integrated pipeline ALC sheet wall. However, on the one hand, since ALC sheets need to be autoclaved and cured with high-temperature saturated steam during the processing, ordinary pipeline conduits and bottom boxes cannot be pre-embedded in the sheets in advance, and heat-resistant and corrosion-resistant pipeline conduits need to be used, which results in an increase in cost. On the other hand, during the on-site construction process of the integrated pipeline ALC sheets, due to the randomness of on-site pipeline construction, the positioning error shown in the drawings is relatively large, and the reserved quick-connect joints cannot be accurately connected to the on-site reserved pipeline conduits, resulting in the loss of significance of the positioning dimensions of the quick-connect joints in the pre-embedded pipeline conduit ALC sheets. Furthermore, due to the diversity of the positions of pipeline conduit points at the construction site, the ALC sheets with different pre-embedded pipeline conduit points need to be marked one by one, resulting in the production of ALC sheets being cumbersome and complex, and a large amount of manpower and material resources being consumed during the on-site installation of ALC sheets.
[0005] Occasionally, it is also seen that pipelines are arranged in the cavities formed by installing keels on the surface of the ALC sheet wall. However, on the one hand, the thickness of the keel layer is relatively thick at this time, wasting materials and occupying indoor space. On the other hand, holes will be drilled at the positions where the pipelines pass through the keels, thus weakening the structure at that place.
[0006] Before surface decoration of the conventional ALC sheet wall after installation, it is necessary to plaster and level with cement mortar, which consumes a large amount of mortar materials and causes sewage to flow everywhere due to wet operations at the construction site, being unfavorable for energy conservation, carbon reduction and civilized construction.
[0007] In view of the above technical problems, the present utility model is specifically studied and proposed.
Content of the Utility Model
[0008] The technical problem to be solved by the utility model is to provide an autoclaved aerated concrete slab wall with integrated pipeline decoration, including an ALC wall unit and a decorative panel unit at least arranged on one side of the ALC wall unit, the ALC wall unit is composed of at least one thick ALC wall board and at least one thin ALC wall board spliced with the thick ALC wall board by bonding materials, one side of the thick ALC wall board and the thin ALC wall board have a surface difference after splicing to form a layout space for accommodating wire pipes, one end of the wire pipe is connected to the wire pipe extending from the floor or under the beam, and the other end of the wire pipe is connected to the wire box, which is fixed on the ALC wall unit or on the connecting component, and a decorative panel unit is provided on one side with the layout space, so that the decorative panel unit can cover the side, and no additional plastering or puttying is required for decoration. And the wire pipe is installed in the layout space, and no groove is required to avoid affecting the wall structure of the ALC wall unit and generating construction waste.
[0009] In order to solve the above technical problems, the utility model provides a pipeline decoration integrated autoclaved aerated concrete board wall, comprising an ALC wall unit 1 and a decorative panel unit 2 at least arranged on one side of the ALC wall unit 1, and a wire box 20, wherein a connecting component 3 for connecting the decorative panel unit 2 and the ALC wall unit 1 is provided between the decorative panel unit 2 and the ALC wall unit 1, and the ALC wall unit 1 comprises at least one thick ALC wall panel 10 and at least one thin ALC wall panel 11 spliced with the thick ALC wall panel 10, the thick ALC wall panel 10 and the thin ALC wall panel 11 are bonded by an adhesive, and the thick ALC wall panel 10 and the thin ALC wall panel 11 are bonded by an adhesive. The ALC wall panels 11 are each composed of one ALC board or several ALC boards bonded together by adhesive materials. After the thick ALC wall panel 10 and the thin ALC wall panel 11 are spliced, there is a surface difference on one side to form a layout space 13 for accommodating the wire tube 4. The other sides of the thick ALC wall panel 10 and the thin ALC wall panel 11 after splicing are flush with each other. A decorative panel unit 2 is arranged on one side of the layout space 13. One end of the wire tube 4 on the layout space 13 is connected to the wire tube 4 extending from the floor or under the beam, and the other end of the wire tube 4 on the layout space 13 is connected to the wire box 20. The wire box 20 is fixed on the ALC wall unit 1 or on the connecting component 3.
[0010] As described above, in the pipeline-decorated integrated autoclaved aerated concrete board wall, a prefabricated block 15 pasted to the thin ALC wall panel 11 is provided in the layout space 13 where no wire pipe 4 is provided, and the outer side surface of the prefabricated block 15 does not exceed the outer surface of the thick ALC wall panel 10.
[0011] In the above-mentioned pipeline decoration integrated autoclaved aerated concrete board wall, the wire box 20 is fixed on the prefabricated block 15.
[0012] As described above, in a wall body of an autoclaved aerated concrete board integrating pipeline decoration, the layout space 13 is filled with sound insulation and heat insulation cotton 14. The rear side of the sound insulation and heat insulation cotton 14 abuts against the thin ALC wall board 11. One of the left and right sides of the sound insulation and heat insulation cotton 14 abuts against the thick ALC wall board 10, and the other side also abuts against the thick ALC wall board 10 or the building.
[0013] As described above, in a wall body of an autoclaved aerated concrete board integrating pipeline decoration, the decorative panel unit 2 is composed of one or a combination of a gypsum board, a calcium silicate board, a fiber cement board, a decorative integrated board, a sound insulation board, a thin metal plate, a ceramic plate, and a stone plate.
[0014] As described above, in a wall body of an autoclaved aerated concrete board integrating pipeline decoration, the connecting component 3 includes an anchor 30 provided on the ALC wall body unit 1, and the decorative panel unit 2 is fixed on the anchor 30.
[0015] As described above, in a wall body of an autoclaved aerated concrete board integrating pipeline decoration, the connecting component 3 includes an anchor 30 provided on the ALC wall body unit 1 and a leveling keel 31 connected to the anchor 30, and the decorative panel unit 2 is fixed on the leveling keel 31.
[0016] As described above, in a wall body of an autoclaved aerated concrete board integrating pipeline decoration, the wire box 20 is fixedly installed on the leveling keel 31.
[0017] As described above, in a wall body of an autoclaved aerated concrete board integrating pipeline decoration, a sound insulation felt 5 is provided between the ALC wall body unit 1 and the decorative panel unit 2, and the sound insulation felt 5 closely adheres to the surface of the ALC wall body unit 1.
[0018] As described above, in a wall body of an autoclaved aerated concrete board integrating pipeline decoration, the leveling keel 31 is filled with sound insulation cotton.
[0019] Compared with the prior art, the wall body of an autoclaved aerated concrete board integrating pipeline decoration of the present utility model has the following advantages:
[0020] 1. The utility model forms a laying space for hiding pipelines by splicing a thin ALC wallboard and a thick ALC wallboard. One end of the pipeline located in the laying space is connected to the pipeline extending from under the floor slab or beam, and the other end of the pipeline located in the laying space is connected to a junction box. The junction box can be fixed on the ALC wall unit or on the keel or precast block. Adopting this solution avoids the problem that on-site grooving affects the strength of the ALC board, and also avoids the cracking problem caused by the inconsistent materials of mortar and ALC board at the grooving backfilling and plugging parts; moreover, it can also avoid the problems of dust, noise, sewage, and construction waste generated during the grooving, backfilling, and plugging processes, which affect the construction environment.
[0021] 2. Compared with the solution of embedding pipelines into the ALC board during the production process, the construction method of the utility model can use pipelines made of ordinary materials, with more economical costs; and there is no need to specifically mark the numbers of ALC boards, which is convenient for workers to quickly carry out construction operations.
[0022] 3. Compared with the method of laying pipelines in the space reserved between the decorative panel unit and the ALC wall unit or laying pipelines in the cavity provided in the decorative panel unit, the utility model avoids the defects of increased wall thickness occupying indoor space and increased cost. Therefore, adopting the solution of the utility model can ensure the maximization of indoor space.
Description of the Drawings
[0023] The following further elaborates on the specific implementation manners of the utility model in conjunction with the drawings, where:
[0024] Figure 1 is a schematic structural view of the cross-section of the utility model.
[0025] Figure 2 is a schematic structural view of the utility model.
[0026] Figure 3 is a schematic structural view of the connection component in the utility model.
[0027] Figure 4 is a schematic structural view of the precast block in the utility model.
[0028] Figure 5 is another schematic structural view of the utility model.
[0029] Figure 6 is a schematic structural view of the leveling keel in the utility model.
[0030] Figure 7 is a schematic structural view of the pipeline in the utility model.
[0031] In the figure: 1. ALC wall unit; 10. Thick ALC wallboard; 11. Thin ALC wallboard; 13. Layout space; 14. Sound insulation and heat preservation cotton; 15. Prefabricated block; 2. Decorative panel unit; 20. Junction box; 3. Connection component; 30. Anchor; 31. Leveling keel; 4. Pipeline; 5. Sound insulation felt.
Specific Embodiment
[0032] The following will describe in detail the embodiments of the present utility model with reference to the accompanying drawings.
[0033] As Figure 1-7 shown, the present utility model includes an autoclaved aerated concrete board wall with integrated pipeline decoration, which includes an ALC wall unit 1 and a decorative panel unit 2 provided on at least one surface of the ALC wall unit 1, as well as a junction box 20. The decorative panel unit 2 is composed of one or a combination of gypsum board, calcium silicate board, fiber cement board, decorative integrated board, sound insulation board, metal thin plate, ceramic board, and stone board. A connection component 3 for connecting the two is provided between the decorative panel unit 2 and the ALC wall unit 1. The ALC wall unit 1 includes at least one thick ALC wallboard 10 and at least one thin ALC wallboard 11 spliced with the thick ALC wallboard 10. The thick ALC wallboard 10 and the thin ALC wallboard 11 are bonded by an adhesive, and both the thick ALC wallboard 10 and the thin ALC wallboard 11 are composed of one ALC board or several ALC boards bonded by a bonding material. After the thick ALC wallboard 10 and the thin ALC wallboard 11 are spliced, there is a surface difference on one side to form a layout space 13 for accommodating the pipeline 4. The other side after the thick ALC wallboard 10 and the thin ALC wallboard 11 are spliced is flush with each other. The decorative panel unit 2 is provided on the side with the layout space 13. One end of the pipeline 4 on the layout space 13 is connected to the pipeline 4 extending from under the floor slab or beam, and the other end of the pipeline 4 on the layout space 13 is connected to the junction box 20. The junction box 20 is fixed on the ALC wall unit 1 or fixed on the connection component 3. The pipeline 4 can be provided with fasteners (not marked in the figure) at appropriate positions to be tightly fixed to the thin ALC wallboard 11, and the fasteners can be U-shaped snap rings.
[0034] It should be noted that in the present utility model, the decorative panel unit 2 is provided on the side with the layout space 13, so that the layout space 13 on this side can be covered by the decorative panel unit 2, and there is no need to plaster and apply putty separately, thus saving the decoration cost. The bonding material can be polymer cement mortar or ordinary cement mortar, or other bonding materials.
[0035] The side of the ALC wall unit 1 without the layout space 13 can be puttied according to requirements, or the decorative panel unit 2 can also be installed according to requirements.
[0036] The utility model is spliced by arranging a thin ALC wallboard 11 and a thick ALC wallboard 10, and there is a surface difference after splicing to form a laying space 13 for hiding the pipeline 4. One end of the pipeline 4 located at the laying space 13 is connected to the pipeline 4 extending from under the floor slab or beam, and the other end of the pipeline 4 located at the laying space 13 is connected to the junction box 20. The junction box 20 can be fixed on the ALC wall unit 1 or fixed on the connecting component 3. Compared with the on-site grooving method, it avoids the influence of grooving on the strength of the ALC board, and also avoids the problem of cracking at the grooving backfilling and plugging parts due to the inconsistent materials of the mortar and the ALC board. In addition, it also avoids the problems of dust, noise, sewage and construction waste generated during the grooving, backfilling and plugging processes, which affect the construction environment.
[0037] In the prior art, the pipeline 4 is also pre-buried in the ALC board during the production process of the ALC board. However, pre-burying the pipeline 4 into the ALC board is more demanding on the material of the pipeline 4 and the subsequent splicing construction. In reality, the construction environment is changeable, and there are problems such as difficult alignment and assembly. Moreover, this method requires workers to pay special attention to the markings on the ALC board, resulting in a more complex and cumbersome construction process. Therefore, the utility model is more simple and fast, with a simple production process, adaptable to the changeable on-site construction environment, and reducing production and construction costs.
[0038] In addition, in the prior art, there is a defect that the wall thickness is large and the indoor space is occupied when reserving a space between the decorative panel unit 2 and the ALC wall unit 1 to lay the pipeline 4 or arranging the pipeline 4 in a cavity arranged in the decorative panel unit 2. In addition to the above traditional pipeline 4 laying methods, the prior art also uses two spaced ALC boards and reserves a space between the two ALC boards to lay the pipeline 4. Although this method can avoid the above problems, it is difficult to disassemble the ALC board after installation. If disassembled, it will damage the wall structure, which is very inconvenient for later maintenance. Compared with the prior art, the utility model can ensure the minimum wall thickness and the maximum indoor space, and is convenient for later maintenance and repair. If necessary, during maintenance and repair, only the corresponding decorative panel unit 2 needs to be disassembled, and the staff can carry out the maintenance.
[0039] Such as Figure 4As shown in the figure, as a further solution of this embodiment, precast blocks 15 adhered to the thin ALC wallboard 11 are provided at the positions in the laying space 13 where no pipeline conduits 4 are provided, and the outer side surfaces of the precast blocks 15 do not extend beyond the outer surface of the thick ALC wallboard 10. By providing the precast blocks 15, the strength of this position can be enhanced, preventing the problem of insufficient support strength of the thin ALC wallboard 11. The precast blocks 15 can be precast concrete blocks, ceramsite concrete blocks, autoclaved aerated concrete blocks, foam concrete blocks, ultra-high performance concrete blocks, fiber cement pressure plates, calcium silicate boards, wooden blocks or rubber blocks. The outer side surfaces of the precast blocks 15 can be flush with the outer surface of the thick ALC wallboard 10 or slightly lower than the outer surface of the thick ALC wallboard 10. It should be noted that when installing and fixing, the corresponding splicing joints of the thick ALC wallboard 10, the thin ALC wallboard 11 and the precast blocks 15 are plastered with a bonding material to strengthen the connection, and the bonding material can be polymer cement mortar.
[0040] As Figure 7 shown in the figure, when setting the junction box 20 in the present utility model, the junction box 20 can be set on the precast block 15, or the junction box 20 can be set on the thin ALC wallboard 11, or the junction box 20 can be set on the thick ALC wallboard 10 adjacent to the thin ALC wallboard 11, and the junction box 20 can also be set on the connecting component 3. The connecting component 3 can be set on the thick ALC wallboard 10 or the thin ALC wallboard 11, or can also be set on the precast block 15. After the precast block 15 is provided on the thin ALC wallboard 11 and then the connecting component 3 is fixed to the precast block 15, it can be avoided that the connecting component 3 is directly connected to the thin ALC wallboard 11, resulting in excessive voids and unstable connection. When the junction box 20 is set on the thin ALC wallboard 11, an installation hole (not marked in the figure) can be opened thereon. After the junction box 20 is installed in the installation hole, the junction box 20 can be fixed in the installation hole by polymer mortar.
[0041] As Figure 3As shown in the figure, as a further solution of this embodiment, the layout space 13 is filled with sound insulation and heat insulation cotton 14. The rear side of the sound insulation and heat insulation cotton 14 abuts against the thin ALC wallboard 11. One of the left and right sides of the sound insulation and heat insulation cotton 14 abuts against the thick ALC wallboard 10, and the other side also abuts against the thick ALC wallboard 10 or the building. By setting the sound insulation and heat insulation cotton 14, the sound insulation effect and heat insulation effect at this place can be enhanced, and the problem of poor sound insulation and heat insulation effect due to the small thickness of the thin ALC wallboard 11 is solved. In addition, after filling the sound insulation and heat insulation cotton 14, the rear side of the sound insulation and heat insulation cotton 14 abuts against the thin ALC wallboard 11, and the left and right sides abut against the two thick ALC wallboards 10, or one of the left and right sides abuts against the thick ALC wallboard 10, and the other side abuts against the load-bearing column or the wall surface, ensuring that the sound insulation and heat insulation cotton 14 is fully filled, and at the same time, the wire pipe 4 can be further fixed. In addition, when filling the sound insulation and heat insulation cotton 14, when filling the sound insulation and heat insulation cotton 14, the sound insulation and heat insulation cotton 14 can be firmly connected to the surrounding thick ALC wallboard 10 or thin ALC wallboard 11 or load-bearing column or wall surface with an adhesive material to prevent falling off. The adhesive material can be cement mortar. In addition to the adhesive, other supports that can fix the sound insulation and heat insulation cotton 14 can also be used.
[0042] As a preferred solution of this embodiment, the connection assembly 3 includes an anchor 30 provided on the ALC wall unit 1, and the decorative panel unit 2 is fixed on the anchor 30. The anchor 30 can be a connection buckle or other connecting parts. The anchor 30 can be fixed on the ALC wall unit 1 by means of expansion bolts, etc. When the anchor 30 is provided on the ALC wall unit 1, it can be provided on the thin ALC wallboard 11 or the thick ALC wallboard 10 or the precast block 15, or the anchor 30 can be clamped at the splicing joint of two thick ALC wallboards 10, or can also be clamped at the splicing joint between the adjacent thick ALC wallboard 10 and the thin ALC wallboard 11. The material of the leveling keel 31 is wood or steel or aluminum.
[0043] As another preferred solution of this embodiment, the connection assembly 3 includes an anchor 30 provided on the ALC wall unit 1 and a leveling keel 31 connected to the anchor 30, and the decorative panel unit 2 is fixed on the leveling keel 31. Different from the above solution, in this solution, leveling is carried out by setting the leveling keel 31, and then the decorative panel unit 2 is fixed on the leveling keel 31, so that the decorative panel unit 2 can be made more flat after installation. According to needs, the junction box 20 can be fixed on the leveling keel 31. When the junction box 20 is provided on the leveling keel 31, the junction box 20 can be correspondingly provided at the position of the layout space 13 to facilitate connection with the wire pipe 4, or can also be provided at other positions, and then connected to the junction box 20 through the extended wire pipe 4.
[0044] As shown Figure 5 in the figure, as a further solution of this embodiment, a sound insulation felt 5 is provided between the ALC wall unit 1 and the decorative panel unit 2. The sound insulation felt 5 is closely attached to the surface of the ALC wall unit 1. By providing the sound insulation felt 5, the sound insulation effect can be enhanced. In order to further enhance the sound insulation effect, sound insulation cotton (not shown in the figure) can also be filled in the leveling keel 31.
Claims
1. An autoclaved aerated concrete board wall with integrated pipeline decoration, characterized in that It includes an ALC wall unit (1), a decorative panel unit (2) provided at least on one side of the ALC wall unit (1), and a junction box (20). A connecting component (3) for connecting the two is provided between the decorative panel unit (2) and the ALC wall unit (1). The ALC wall unit (1) includes at least one thick ALC wallboard (10) and at least one thin ALC wallboard (11) spliced with the thick ALC wallboard (10). The thick ALC wallboard (10) and the thin ALC wallboard (11) are bonded by an adhesive material, and both the thick ALC wallboard (10) and the thin ALC wallboard (11) are composed of one or several ALC boards bonded by an adhesive. After the thick ALC wallboard (10) and the thin ALC wallboard (11) are spliced, there is a surface difference on one side to form a laying space (13) for accommodating a pipeline (4). The other side after the thick ALC wallboard (10) and the thin ALC wallboard (11) are spliced is flush with each other. The decorative panel unit (2) is provided on the side with the laying space (13). One end of the pipeline (4) in the laying space (13) is connected to the pipeline (4) extending from under the floor slab or beam, and the other end of the pipeline (4) in the laying space (13) is connected to the junction box (20). The junction box (20) is fixed on the ALC wall unit (1) or on the connecting component (3).
2. The autoclaved aerated concrete board wall with integrated pipeline decoration according to claim 1, characterized in that Prefabricated blocks (15) adhered to the thin ALC wallboard (11) are provided at the places in the laying space (13) where no pipeline (4) is provided, and the outer side surface of the prefabricated blocks (15) does not extend beyond the outer surface of the thick ALC wallboard (10).
3. The autoclaved aerated concrete board wall with integrated pipeline decoration according to claim 2, characterized in that The junction box (20) is fixed on the prefabricated block (15).
4. The autoclaved aerated concrete slab wall with integrated pipeline decoration according to claim 1, characterized in that The laying space (13) is filled with sound insulation and heat insulation cotton (14). The rear side of the sound insulation and heat insulation cotton (14) abuts against the thin ALC wallboard (11), and one of the left and right side surfaces of the sound insulation and heat insulation cotton (14) abuts against the thick ALC wallboard (10), and the other side also abuts against the thick ALC wallboard (10) or the building.
5. The autoclaved aerated concrete slab wall with integrated pipeline decoration according to claim 1, characterized in that The decorative panel unit (2) is composed of one or a combination of several of gypsum board, calcium silicate board, fiber cement board, decorative integrated board, sound insulation board, metal thin plate, ceramic board, stone board, etc.
6. The autoclaved aerated concrete board wall with integrated pipeline decoration according to claim 1, characterized in that The connecting component (3) includes an anchor (30) provided on the ALC wall unit (1), and the decorative panel unit (2) is fixed on the anchor (30).
7. The autoclaved aerated concrete board wall with integrated pipeline decoration according to claim 1, characterized in that The connecting component (3) includes an anchor (30) provided on the ALC wall unit (1), and a leveling keel (31) connected to the anchor (30). The decorative panel unit (2) is fixed on the leveling keel (31).
8. The autoclaved aerated concrete panel wall with integrated pipeline decoration according to claim 7, characterized in that The junction box (20) is fixedly installed on the leveling keel (31).
9. The autoclaved aerated concrete slab wall with integrated pipeline decoration according to claim 1, characterized in that A sound insulation felt (5) is provided between the ALC wall unit (1) and the decorative panel unit (2), and the sound insulation felt (5) closely adheres to the surface of the ALC wall unit (1).
10. A autoclaved aerated concrete board wall with integrated pipeline decoration according to claim 7, characterized in that The leveling keel (31) is filled with sound insulation cotton.