Furniture wall facing layer and assembling method

Through innovative design of the furniture wall veneer layer, using magnetic or snap-on quick connection, built-in sound-absorbing and heat-regulating layers and intelligent modules, the problems of cumbersome installation, inconvenient maintenance and low intelligent integration of traditional wall decoration materials are solved, achieving efficient and intelligent decoration effect and convenient construction.

CN120844759APending Publication Date: 2025-10-28CHINA CONSTR THIRD ENG BUREAU GRP CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510997655.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-19
Publication Date
2025-10-28

AI Technical Summary

Technical Problem

Traditional wall decoration materials have many shortcomings in terms of functionality, construction efficiency, and intelligence. The installation process is cumbersome, maintenance is inconvenient, resources are wasted, and the quality of joint treatment is poor. They are difficult to meet the needs of modern buildings for acoustic comfort and temperature regulation, and the level of intelligent integration is low and the maintenance cost is high.

Method used

It adopts a furniture wall veneer layer, including a connection system, functional layer and edge connection structure, and uses magnetic or snap-on quick connection. It has a built-in sound-absorbing layer and heat regulation layer, integrates intelligent modules, and is equipped with wireless communication and efficient heat dissipation design. It adopts modular pre-assembly process and laser positioning technology.

Benefits of technology

It achieves a convenient and efficient installation process, improves sound insulation and temperature regulation capabilities, ensures tightness and aesthetics in splicing, supports intelligent control, reduces maintenance costs and construction time, and extends service life.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120844759A_ABST
    Figure CN120844759A_ABST
Patent Text Reader

Abstract

The invention relates to a furniture wall facing layer and an assembling method, the furniture wall facing layer comprises a facing layer, a connecting system is arranged on the side, close to a wall surface, of the facing layer, the interior of the facing layer is filled with a functional layer, and edge connecting structures are arranged on the periphery of the facing layer. According to the sound insulation wall, the decoration function and the practical performance are perfectly fused, the facing layer adopts a magnetic attraction or buckle type quick connecting mechanism, the installation process is greatly simplified, construction is more efficient and convenient, the built-in acoustic foam layer and the built-in phase change material layer work cooperatively, the sound insulation performance and the temperature adjusting capacity of the wall are effectively improved, and the sound insulation performance is improved. The precise edge connecting structure ensures leakproofness and attractiveness of the splicing position, meanwhile, the overall sound insulation effect is enhanced, intelligent function integration enables the wall face to have the modern characteristics of environment monitoring, intelligent lighting and the like, seamless butt joint with an intelligent home system is achieved through wireless communication, and the intelligent sound insulation wall face is suitable for popularization and application. The optimized heat dissipation design ensures stable operation of electronic components, and the system supports modular replacement and maintenance.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the technical field of wall decoration materials, and in particular to a furniture wall veneer layer and its assembly method. Background Technology

[0002] Traditional wall decoration materials suffer from numerous shortcomings in terms of functionality, construction efficiency, and intelligence. Most existing wall panels are fixed using adhesives or screws, resulting in cumbersome and time-consuming installations and extremely inconvenient maintenance and replacement. Ordinary decorative materials often prioritize aesthetics over practical functions such as sound insulation and temperature regulation, failing to meet the acoustic comfort and temperature control requirements of modern office and residential environments. Smart wall systems on the market typically require complex wiring, have low integration of functional modules, and incur high maintenance costs. Furthermore, traditional construction techniques struggle to guarantee installation precision and joint quality across large wall areas, easily leading to unevenness and noticeable seams. In terms of environmental performance, most materials cannot be modularly replaced, resulting in resource waste. These technical deficiencies severely restrict the development of modern architectural decoration, necessitating an innovative solution that integrates functionality, convenience, and intelligence. Summary of the Invention

[0003] To address the aforementioned problems, this application provides a furniture wall veneer layer and an assembly method thereon.

[0004] This application provides a furniture wall veneer layer and assembly method, which adopts the following technical solution: A furniture wall finish layer includes: a finish layer, a connection system provided on the side of the finish layer near the wall, a functional layer filled inside the finish layer, and an edge connection structure provided around the finish layer; The connection system includes a frame connector, which is fixed to the wall. A decorative connector is fixedly connected to the back surface of the decorative layer. A quick-locking mechanism is movably installed on the back of the decorative connector, which enables a detachable fixed connection between the decorative layer and the frame connector. The functional layer includes a sound-absorbing layer, which is composed of acoustic foam. A heat-regulating layer is fixedly connected to the surface of the sound-absorbing layer. The thickness of the functional layer accounts for 20% of the total thickness of the finishing layer. The edge connection structure includes a male and female tenon joint structure, which is tenoned to the mating edges of two adjacent decorative layers. A sealing strip is fixedly connected to the tenon joint of the male and female tenon joint structure, and a decorative cover plate is installed on the front side of the male and female tenon joint structure.

[0005] As a preferred technical solution of this application, a lighting module is fixedly installed on the front surface of the decorative layer, and an electrical connection interface is installed on the side of the decorative layer. After multiple decorative layers are spliced ​​together, the lighting module realizes circuit series connection through the electrical connection interface.

[0006] As a preferred technical solution of this application, a sensor is fixedly connected inside the decorative layer, and the output end of the sensor is electrically connected to a wireless communication module. The wireless communication module is used to wirelessly transmit sensor data to a smart home control system.

[0007] As a preferred technical solution of this application, the front surface of the decorative layer is embossed, and a flow guide groove is formed on the front surface of the decorative layer, with heat dissipation fins provided on the groove wall.

[0008] A method for assembling a furniture wall veneer, based on a furniture wall veneer, includes the following steps: Step 1: Pre-install the basic components of the connection system on the skeleton layer; Step 2: Align the corresponding connecting parts on the back of the finishing layer with the base parts on the skeleton layer; Step 3: Apply pressure to lock the connection system; Step 4: Connect and fix adjacent finish layers using edge-connecting structures.

[0009] As a preferred technical solution of this application, when the connection system is a magnetic attraction process, a magnetic base is first fixedly installed on the skeleton layer, then a magnetic connecting piece is embedded on the back of the decorative layer, then the decorative layer is brought close to the skeleton layer to the magnetic attraction distance, and finally the position of the decorative layer is adjusted to the preset installation point. When the connection system is a snap-fit ​​process, a snap-fit ​​female seat is first set on the skeleton layer, then a corresponding snap-fit ​​male head is set on the back of the decorative layer, then the decorative layer is brought close to the skeleton layer at an inclination angle of 15-30 degrees, and finally vertical pressure is applied to lock the snap-fit ​​mechanism.

[0010] As a preferred technical solution of this application, in step four, more specifically, after the decorative layer is damaged, firstly, the fixing of the edge connection structure is released, then the quick release mechanism of the connection system is operated, then the decorative layer to be replaced is removed, and finally the new decorative layer is installed and fixed again.

[0011] As a preferred technical solution of this application, in step two, more specifically, before the finishing layer is installed, a laser positioning instrument is first used to project an installation reference line on the skeleton layer, then the installation position of the finishing layer is adjusted according to the reference line, and finally the flatness of the finishing layer is confirmed by a level.

[0012] As a preferred technical solution of this application, step two also includes batch installation optimization, which involves pre-assembling multiple finishing layers into large modules on the ground, then using special hoisting equipment to install the assembled modules as a whole onto the frame layer, and finally performing edge fine-tuning and fixing.

[0013] As a preferred technical solution of this application, in step four, more specifically, a sound insulation performance test is conducted during the installation process. First, acoustic tests are conducted before and after the installation of the decorative layer. Then, the test results are compared to verify the sound insulation effect. Finally, the installation pressure or joint tightness of the decorative layer is adjusted according to the test results. Before the installation of the decorative layer, the installation position and sequence of the decorative layer are displayed through an AR device. During the installation of the decorative layer, the installation accuracy is detected in real time and adjustment suggestions are provided. After the installation of the decorative layer, the installation process data is recorded and an installation report is generated.

[0014] In summary, this application includes at least one of the following beneficial technical effects of furniture wall cladding layer and assembly method: This application perfectly integrates decorative function with practical performance. The surface layer adopts a magnetic or snap-on quick connection mechanism, which greatly simplifies the installation process and makes construction more efficient and convenient. The built-in acoustic foam layer and phase change material layer work together to effectively improve the sound insulation performance and temperature regulation capability of the wall. The precise edge connection structure ensures the tightness and aesthetics of the splicing, while enhancing the overall sound insulation effect. The intelligent function integration gives the wall a modern feature such as environmental monitoring and intelligent lighting. Seamless integration with smart home systems is achieved through wireless communication. The optimized heat dissipation design ensures the stable operation of electronic components. The system supports modular replacement and maintenance, which greatly extends its service life. The overall construction adopts an industrialized pre-assembly process, combined with advanced positioning technology, which significantly improves installation accuracy and efficiency. This solution meets the dual needs of modern buildings for aesthetics and functionality. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the furniture wall veneer structure in this application; Figure 2 This application Figure 1 Schematic diagram of the structure; Figure 3 This application Figure 1 Schematic diagram of the structure at point A in the middle; Figure 4 This is a plan view of the flow channel structure in the finishing layer of this application; Figure 5 This is a schematic diagram of the functional layer structure of this application; Figure 6 This is a flowchart of the furniture wall veneer assembly method in this application.

[0016] Explanation of reference numerals in the attached drawings: 1. Finishing layer; 2. Connection system; 3. Functional layer; 4. Edge connection structure; 5. Electrical connection interface; 6. Lighting module; 7. Sensor; 8. Airflow channel; 9. Heat dissipation fins; 201. Frame connector; 202. Finishing connector; 203. Quick locking mechanism; 301. Sound-absorbing layer; 302. Thermal regulation layer; 401. Tongue and tenon joint structure; 402. Decorative cover plate; 403. Sealing strip. Detailed Implementation

[0017] The following is combined with Figure 1-6 This application is described in further detail.

[0018] See Figure 1-5 A furniture wall finish includes: a finish layer 1, a connection system 2 on the side of the finish layer 1 near the wall, a functional layer 3 inside the finish layer 1, and an edge connection structure 4 around the finish layer 1; the connection system 2 includes a frame connector 201 fixed to the wall, a finish connector 202 fixedly connected to the back surface of the finish layer 1, and a quick-locking mechanism 203 movably installed on the back of the finish connector 202, the quick-locking mechanism 203 realizing the connection between the finish layer 1 and the frame connector 201. The functional layer 3 includes a sound-absorbing layer 301, which is made of acoustic foam. A heat-regulating layer 302 is fixedly connected to the surface of the sound-absorbing layer 301. The thickness of the functional layer 3 accounts for 20% of the total thickness of the decorative layer 1. The edge connection structure 4 includes a male and female tenon structure 401, which is tenoned to the mating edges of two adjacent decorative layers 1. A sealing strip 403 is fixedly connected to the tenon joint of the male and female tenon structure 401. A decorative cover plate 402 is installed on the front side of the male and female tenon structure 401. During construction, the pre-installed frame connectors 201 on the wall surface work perfectly with the magnetic connection system 2 on the back of the finishing layer 1, forming a quick installation solution that can be completed without complicated tools. The installer only needs to bring the finishing layer close to the wall, and the magnetic attraction will automatically guide it to precise positioning. The whole process is as simple and intuitive as assembling building blocks. The acoustic foam layer filled inside the finishing layer 1 adopts a special porous structure design, which can effectively absorb mid-to-high frequency noise in the environment and significantly improve the acoustic problems commonly found in open office spaces. The edge connection adopts a precise male and female tenon structure 401, combined with an elastic sealing strip 403, which not only ensures the tightness of the splice, but also further blocks the sound propagation path. This design greatly simplifies the entire installation process. Ordinary construction workers can operate it after simple training. Compared with traditional wall decoration, the construction period can be shortened by more than half. The completed wall not only presents a clean and unified visual effect, but also has professional-grade sound insulation performance.

[0019] A lighting module 6 is fixedly installed on the front surface of the decorative layer 1, and an electrical connection interface 5 is installed on the side of the decorative layer 1. After multiple decorative layers 1 are spliced ​​together, the lighting module 6 is connected in series through the electrical connection interface 5. A sensor 7 is fixedly connected inside the decorative layer 1. The output end of the sensor 7 is electrically connected to a wireless communication module. The wireless communication module is used to wirelessly transmit the data of the sensor 7 to the smart home control system. The front surface of the decorative layer 1 is embossed, and a flow channel 8 is opened on the front surface of the decorative layer 1. The walls of the flow channel 8 are provided with heat dissipation fins 9. The built-in lighting module 6 adopts ultra-thin surface light source technology. Through the side-designed electrical connection interface 5, seamless circuit connection between modules is achieved, completely solving the problems of complex wiring and difficult maintenance in traditional systems. The thermal regulation layer 302 uses advanced phase change materials, which can automatically adjust the heat exchange efficiency according to changes in indoor temperature, just like installing a smart air conditioner on the wall, maintaining the most comfortable surface temperature at all times. The environmental monitoring system integrates multiple sensors, which can detect parameters such as temperature, humidity and VOC in the air in real time, and transmit the data to the intelligent central control system through a wireless communication module. The guide grooves 8 and heat dissipation fins 9 on the decorative surface constitute an efficient passive heat dissipation system, ensuring that the built-in electronic components always work within the optimal temperature range.

[0020] See Figure 6 A method for assembling a furniture wall veneer, based on a furniture wall veneer, includes the following steps: Step 1: Pre-install the basic components of connection system 2 on the skeleton layer; Step 2: Align the corresponding connecting parts on the back of the finishing layer 1 with the base parts on the skeleton layer; Step 3: Apply pressure to lock the connection system 2; Step 4: Connect and fix adjacent finishing layers 1 using edge connection structure 4.

[0021] When the connection system 2 uses a magnetic attraction process, firstly, a magnetic base is fixedly installed on the skeleton layer. Then, a magnetic connecting piece is embedded on the back of the decorative layer 1. Next, the decorative layer 1 is brought close to the skeleton layer to within the magnetic attraction distance. Finally, the position of the decorative layer 1 is adjusted to the preset installation point. When the connection system 2 uses a snap-fit ​​process, firstly, a snap-fit ​​female is set on the skeleton layer. Then, a corresponding snap-fit ​​male is set on the back of the decorative layer 1. Next, the decorative layer 1 is brought close to the skeleton layer at a 15-30 degree tilt angle. Finally, vertical pressure is applied to lock the snap-fit ​​mechanism. In step four, more specifically, after the decorative layer 1 is damaged, firstly, the edge connection structure 4 is released. Then, the quick release mechanism of the connection system 2 is operated. Then, the decorative layer 1 to be replaced is removed. Finally, a new decorative layer 1 is installed and re-fixed. Step two also includes batch installation optimization. Multiple decorative layers 1 are pre-assembled into large modules on the ground. Then, a special hoisting equipment is used to install the assembled modules as a whole onto the skeleton layer. Finally, edge fine-tuning and fixing are performed. The project employs a pre-assembly process, where multiple decorative layers are pre-assembled into large, standard-sized modules. These modules are then installed on the wall using specialized hoisting equipment. This method significantly improves installation efficiency and ensures the flatness and consistency of the overall wall surface. The connection system utilizes a high-strength engineering plastic clip design, which, through a special tilt angle installation method, only requires the application of appropriate pressure to achieve a secure lock. This reduces the installation time for individual modules. In terms of quality control, the entire construction process uses a laser detector to monitor flatness and professional acoustic equipment to test the sound insulation performance of the joints. This industrialized installation model is particularly suitable for large commercial projects with tight deadlines, significantly reducing labor and time costs while ensuring construction accuracy.

[0022] In step two, more specifically, before installing the finishing layer 1, a laser positioning device is first used to project an installation baseline on the skeleton layer. Then, the installation position of the finishing layer 1 is adjusted according to the baseline. Finally, the flatness of the finishing layer 1 is confirmed by a level. In step four, more specifically, during the installation process, a sound insulation performance test is conducted. First, acoustic tests are conducted before and after the installation of the finishing layer 1. Then, the test results are compared to verify the sound insulation effect. Finally, the installation pressure or joint tightness of the finishing layer 1 is adjusted according to the test results. Before the installation of the finishing layer 1, the installation position and sequence of the finishing layer 1 are displayed through an AR device. During the installation of the finishing layer 1, the installation accuracy is detected in real time and adjustment suggestions are provided. After the finishing layer 1 is installed, the installation process data is recorded and an installation report is generated. When a single panel needs to be replaced, maintenance personnel can easily remove the damaged unit by simply operating the quick-unlock mechanism. The entire process will not affect surrounding components. When installing a new panel, the built-in six-axis sensor can detect the installation posture in real time and guide adjustments through a visual interface to ensure installation accuracy. The sound-absorbing layer 301 adopts a modular design, allowing users to flexibly replace sound-absorbing materials of different performance levels according to the needs of different usage scenarios. The system supports intelligent adjustment of installation pressure. By changing the adhesion between panel layers 1, the acoustic characteristics of the entire wall can be dynamically adjusted, extending the service life of the panel system and significantly reducing later maintenance costs. The entire system will also automatically record data for each maintenance, forming a complete lifecycle archive to provide data support for subsequent maintenance.

[0023] This application discloses a multifunctional integrated furniture wall panel system. The pre-installed frame connector 201 on the wall surface perfectly complements the magnetic connection system 2 on the back of the panel layer 1, forming a rapid installation solution that requires no complex tools. Installers simply need to bring the panel layer close to the wall, and the magnetic attraction will automatically guide it to precise positioning. The acoustic foam layer inside the panel layer 1 employs a special porous structure design, effectively absorbing mid-to-high frequency noise in the environment and significantly improving common acoustic problems in open-plan office spaces. The edge connection uses a precise male-female tenon joint structure 401, combined with an elastic sealing strip 403, which not only ensures the tightness of the joints but also further blocks the sound propagation path. The built-in lighting module 6 adopts ultra-thin surface light source technology. Through the side-designed electrical connection interface 5, seamless circuit connection between modules is achieved, completely solving the problems of complex traditional wiring and difficult maintenance. The heat regulation layer 302 uses advanced phase change materials, which can automatically adjust the heat exchange efficiency according to changes in indoor temperature, like installing a smart air conditioner on the wall, maintaining the most comfortable surface temperature at all times. The guide channels 8 and heat dissipation fins 9 on the decorative surface constitute a highly efficient passive heat dissipation system, ensuring that the built-in electronic components always operate within the optimal temperature range. A pre-assembled floor assembly process is used, pre-combining multiple decorative layers 1 into standard-sized large modules. The connection system uses a high-strength engineering plastic snap-fit ​​design, through special... The special tilt angle installation method allows for secure locking with just appropriate pressure. The system supports intelligent adjustment of installation pressure; by changing the adhesion between the finishing layers 1, the acoustic characteristics of the entire wall can be dynamically adjusted, extending the lifespan of the finishing system and significantly reducing later maintenance costs. The entire system automatically records data from each maintenance session, forming a complete lifecycle archive to provide data support for subsequent maintenance. It mainly consists of finishing layer 1, connection system 2, functional layer 3, and edge connection structure 4. The system innovatively uses a quick-locking mechanism 203 that cooperates with the frame connector 201 and the finishing connector 202, enabling convenient installation and removal of the finishing panels. Internally, it is equipped with acoustic... The system features a sound-absorbing layer 301 made of foam and a heat-regulating layer 302 made of phase change material, providing excellent sound insulation and temperature regulation. The edges utilize a tongue-and-groove joint structure 401 with a sealing strip 403 to ensure tightness, and a decorative cover plate 402 enhances aesthetics. The system also integrates a lighting module 6, an electrical connection interface 5, an environmental sensor 7, and a wireless communication module for intelligent control. Heat dissipation performance is optimized through the design of a flow channel 8 and heat dissipation fins 9. Construction employs modular pre-assembly and overall hoisting processes, combined with laser positioning and AR-assisted technology, significantly improving installation efficiency. This system perfectly combines decoration, functionality, intelligence, and ease of construction, providing an innovative solution for modern architectural decoration.

[0024] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A furniture wall finish, characterized in that: include: The decorative layer (1) has a connection system (2) on the side of the decorative layer (1) near the wall, the interior of the decorative layer (1) is filled with a functional layer (3), and the decorative layer (1) has an edge connection structure (4) around its perimeter. The connection system (2) includes a frame connector (201), which is fixed to the wall. A decorative connector (202) is fixedly connected to the back surface of the decorative layer (1). A quick-locking mechanism (203) is movably installed on the back of the decorative connector (202). The quick-locking mechanism (203) realizes a detachable fixed connection between the decorative layer (1) and the frame connector (201). The functional layer (3) includes a sound-absorbing layer (301), which is made of acoustic foam. A heat-regulating layer (302) is fixedly connected to the surface of the sound-absorbing layer (301). The thickness of the functional layer (3) accounts for 20% of the total thickness of the decorative layer (1). The edge connection structure (4) includes a male and female tenon joint structure (401), which is tenoned to the mating edges of two adjacent decorative layers (1). A sealing strip (403) is fixedly connected to the tenon joint of the male and female tenon joint structure (401), and a decorative cover plate (402) is installed on the front side of the male and female tenon joint structure (401).

2. The furniture wall veneer layer according to claim 1, characterized in that: A lighting module (6) is fixedly installed on the front surface of the decorative layer (1), and an electrical connection interface (5) is installed on the side of the decorative layer (1). After multiple decorative layers (1) are spliced ​​together, the lighting module (6) is connected in series through the electrical connection interface (5).

3. The furniture wall veneer layer according to claim 1, characterized in that: A sensor (7) is fixedly connected inside the decorative layer (1), and a wireless communication module is electrically connected to the output end of the sensor (7). The wireless communication module is used to wirelessly transmit the sensor (7) data to the smart home control system.

4. A furniture wall veneer layer according to claim 1, characterized in that: The front surface of the decorative layer (1) is embossed, and a flow channel (8) is provided on the front surface of the decorative layer (1). The walls of the flow channel (8) are provided with heat dissipation fins (9).

5. A method for assembling a furniture wall veneer layer, based on a furniture wall veneer layer according to any one of claims 1-4, characterized in that: The following steps are involved: Step 1: Pre-install the basic components of the connection system (2) on the skeleton layer; Step 2: Align the corresponding connecting parts on the back of the finishing layer (1) with the base parts on the skeleton layer; Step 3: Apply pressure to lock the connection system (2); Step 4: Connect and fix adjacent finishing layers (1) by edge connection structure (4).

6. The method for assembling a furniture wall veneer layer according to claim 5, characterized in that: When the connection system (2) is a magnetic attraction process, firstly, a magnetic base is fixedly installed on the skeleton layer, then a magnetic connecting piece is embedded on the back of the decorative layer (1), then the decorative layer (1) is brought close to the skeleton layer to the magnetic attraction distance, and finally the position of the decorative layer (1) is adjusted to the preset installation point. When the connection system (2) is a snap-fit ​​process, firstly, a snap-fit ​​female seat is set on the skeleton layer, then a corresponding snap-fit ​​male head is set on the back of the decorative layer (1), then the decorative layer (1) is brought close to the skeleton layer at an angle of 15-30 degrees, and finally vertical pressure is applied to lock the snap-fit ​​mechanism.

7. A method for assembling a furniture wall veneer layer according to claim 5, characterized in that: In step four, more specifically, after the finishing layer (1) is damaged, firstly release the edge connection structure (4) and then operate the quick release mechanism of the connection system (2), then remove the finishing layer (1) to be replaced, and finally install the new finishing layer (1) and re-fix it.

8. A method for assembling a furniture wall veneer layer according to claim 5, characterized in that: More specifically, in step two, before installing the finishing layer (1), a laser positioning instrument is first used to project an installation reference line on the skeleton layer, then the installation position of the finishing layer (1) is adjusted according to the reference line, and finally the flatness of the finishing layer (1) is confirmed by a level.

9. A method for assembling a furniture wall veneer layer according to claim 5, characterized in that, Step two also includes batch installation optimization, where multiple finishing layers (1) are pre-assembled into large modules on the ground, and then a special hoisting device is used to install the assembled modules onto the frame layer, and finally edge fine-tuning and fixing are performed.

10. A method for assembling a furniture wall veneer layer according to claim 5, characterized in that, In step four, more specifically, during the installation process, sound insulation performance tests are conducted. First, acoustic tests are conducted before and after the installation of the finishing layer (1). Then, the test results are compared to verify the sound insulation effect. Finally, the installation pressure or joint tightness of the finishing layer (1) is adjusted according to the test results. Before the installation of the finishing layer (1), the installation position and sequence of the finishing layer (1) are displayed through an AR device. During the installation of the finishing layer (1), the installation accuracy is detected in real time and adjustment suggestions are provided. After the finishing layer (1) is installed, the installation process data is recorded and an installation report is generated.