Automatic monitoring platform for quality control in adhesive use process and use method of automatic monitoring platform

The automated monitoring platform for quality control during the adhesive application process enables efficient and accurate quality control of adhesives, solving the problem of low efficiency in manual monitoring and improving production efficiency and product quality.

CN120928795APending Publication Date: 2025-11-11SHENYANG AIRCRAFT CORP
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Patent Information

Application Number
CN202511156228.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-19
Publication Date
2025-11-11

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Abstract

The invention provides an adhesive using process quality control automatic monitoring platform and a using method thereof.The adhesive using process quality control automatic monitoring platform comprises a structural part and an electric control part, the structural part serves as a supporting mechanism of the electric control part and serves as a newly-prepared adhesive liquid storage frame, and the electric control part collects adhesive label information including adhesive types and preparation time; and after processing and analysis, a judgment result of whether a use requirement is met is obtained. The device integrates the functions of recording, alarming, reminding, managing and the like, can effectively avoid the use of unqualified adhesives, optimizes the production efficiency, improves the quality of aviation products to adapt to the production rhythm, improves the production efficiency and ensures the construction quality, can record and track the quality cycle of the adhesives in real time, and even gives an alarm, so that the production efficiency is improved. And the working intensity and the uncertainty of manual operation are reduced, and unqualified adhesives are prevented from being installed.
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Description

Technical Field

[0001] This invention belongs to the field of aircraft assembly quality control technology, and relates to an automated monitoring platform for quality control of adhesive use and its usage method. Specifically, it relates to an automated testing platform for adhesives in the aviation field that integrates recording, alarm, and reminder functions. This invention can effectively avoid the use of substandard adhesives, optimize production efficiency, and improve the quality of aviation products. Background Technology

[0002] The history of adhesives in aircraft manufacturing can be traced back to the early 1920s. Currently, over 100 types of aircraft worldwide employ adhesive structures, and almost all aircraft use various adhesives to varying degrees; in some aircraft, adhesives have even become the foundation of the entire aircraft design. This is especially true for civil aircraft, where the amount of adhesive used can reach hundreds of kilograms. The components used for bonding have also evolved from interior trim, non-structural parts, and non-load-bearing components to structural parts, load-bearing parts, and even the entire airframe being made of adhesives.

[0003] In addition to their primary function, aviation sealants are a unique type of adhesive that strengthens and seals aircraft components to improve structural integrity and sealing, and also extends the aircraft's service life. They are a crucial component of the aviation industry and play a vital role in its development. Aviation sealants are indispensable; without them, the development of the aviation industry would be vastly different. In specific applications, different aviation sealants are used in different parts of the aircraft. Based on their uses, they can be categorized as: aircraft fuel tank sealants, aircraft windshield sealants, aviation thread sealants, firewall and fuselage sealants, access door sealants, electrical sealants, etc. It is essential to strictly adhere to the usage requirements and application standards of each product to avoid any additional damage.

[0004] In the aviation industry, quality control during the use of adhesives is of paramount importance. The ratio of main and auxiliary materials in adhesives has strict requirements. Factors such as the degree of stirring, vulcanization time, ambient temperature, and curing time all affect the chemical reaction of the adhesive, thus significantly influencing its chemical and physical properties, and consequently, product quality. If the sealant fails to achieve the expected sealing effect, or the structural adhesive fails to meet design strength standards, it poses serious safety hazards to the aircraft, with chilling consequences. Therefore, controlling the qualified shelf life of adhesives can fundamentally prevent the use of expired or substandard adhesives. Current technology relies solely on manual monitoring and testing for quality control, which is inefficient, time-consuming and labor-intensive, has blind spots, lacks real-time tracking, and fails to fully expose various adhesive indicators. Therefore, there is an urgent need for a technological solution that can quickly, efficiently, and reliably monitor and test adhesives to ensure quality and quantity. Summary of the Invention

[0005] To address this issue, this invention proposes an automated monitoring platform for quality control during adhesive application and its usage method. This platform integrates recording, alarm, reminder, and management functions, effectively preventing the use of substandard adhesives, optimizing production efficiency, and improving the quality of aerospace products. To adapt to production rhythms, improve production efficiency, and ensure construction quality, it can simultaneously record and track the quality cycle of adhesives in real time, even triggering alarms, reducing workload and the uncertainty of human operation, and preventing the installation of substandard adhesives.

[0006] The technical solution adopted in this invention is as follows:

[0007] An automated monitoring platform for quality control during the use of adhesives includes a structural part and an electrical control part. The structural part serves as a support structure for the electrical control part and also as a newly configured adhesive storage rack. The electrical control part collects adhesive label information, user information, and adhesive placement and retrieval information. After processing and analysis, it obtains judgment results on whether the adhesive meets the usage requirements and whether the user and the adhesive are compatible.

[0008] The structural components include connecting screws 1, a top cover plate 2, an operating platform 4, placement holes 5, support rods 12, connecting bodies 13, rollers 14, connecting blocks 15, washers 16, hexagonal nuts 17, bolts 18, a camera connector 19, and a housing. The housing is a hollow box with a polyethylene coating on its surface for corrosion protection and to extend its service life. Support rods 12 are fixedly connected to the four corners of the bottom of the housing, and connecting bodies 13 are fixedly connected to the lower ends of the support rods 12. Rollers 14 are installed inside the connecting bodies 13 for moving the entire device. The upper surface of the housing is the operating platform 4, which has several placement holes 5 for placing test cups containing adhesives, generally starting from the center. Storage; An L-shaped box is set above the rear of the operating table 4. The horizontal section of the L-shaped box extends above the operating table 4. A connecting block 15 is set on the bottom surface of the horizontal section. The camera connector 19 is fixedly connected to the bottom of the connecting block 15 by a hexagonal nut 17 and a bolt 18. A gasket 16 is set between the camera connector 19 and the connecting block 14. The camera connector 19 is used to install the camera 20. The upper surface of the L-shaped box is open and a top cover plate 2 is fixed by screws 1. The top cover plate 2 is made of aluminum alloy. The display screen 3, buzzer 6, light alarm 7, U port 8, charging port 9, HTTP 10, HDMI port 11 and switch button 25 are reserved on it.

[0009] The electronic control unit includes a display screen 3, a buzzer 6, a light alarm 7, a USB port 8, a charging port 9, an HTTP port 10, an HDMI port 11, a camera 20, a microcontroller 21, a controller 22, an edge calculator module 23, a data acquisition module 24, and a switch button 25. The camera 20, mounted at the bottom of the camera connector 19, is a 1080P wide-angle camera. Its monitoring area can completely cover all the placement holes 5 on the operating table 4. It is used to read and identify adhesive labels, the identity information of the user, and the video signals of adhesive placement and retrieval within the placement holes 5, and transmits these signals to the data acquisition module 24. The microcontroller 21 and controller 22... The edge calculator module 23 and the data acquisition module 24 are fixedly connected inside the housing. The data acquisition module 24 collects the video signal obtained by the camera 20 and transmits it to the edge calculator module 23. The edge calculator module 23 is used to extract the adhesive label, the user's identity information, and the adhesive placement and retrieval information in the placement hole 5 from the video data, and transmits the extracted information to the microcontroller 21. The microcontroller 21 is equipped with a database and a monitoring algorithm. The database includes the usage standards of various adhesives. The monitoring algorithm determines whether the adhesive meets the usage requirements according to the set logical relationship, and sends a control command to the controller 22 based on the judgment result. 22 drives the buzzer 6 and light alarm 7 to perform corresponding actions according to control commands. Simultaneously, the microcontroller 21 interconnects with the host computer, transmitting the information extracted by the edge calculator module 23 to the host computer. The host computer determines whether the user and the adhesive they are using match. The display screen 3, buzzer 6, light alarm 7, USB port 8, charging port 9, HTTP port 10, and HDMI port 11 are mounted on the top cover 2. The switch button 25 is a metal self-locking reset switch used to control the opening and closing of the entire device. The display screen 3 uses an OLED screen to display monitoring results. The buzzer 6 and light alarm 7 are controlled by the controller 22. When the adhesive is not... When the requirements are met, sound and light prompts are emitted. Buzzer 6 is a piezoelectric buzzer, and light alarm 7 is a color-changing LED. U port 8 is used to update the detection algorithm for better monitoring. Charging port 9 is for 12V platform charging voltage, with a TYPE-C interface, which supports blind insertion, high load current, and stable transmission. HTTP 10 is used to connect to an external host computer to realize human-computer interaction, ensuring the timeliness of operation record filling and serving as the basis for judging whether the adhesive operation is qualified. HDMI port 11 is used to connect to an external digital display screen to display information such as adhesive preparation time, real-time inventory, and remaining quantity of placement hole 5.

[0010] A method for using an automated monitoring platform for quality control during the application of adhesives includes the following steps:

[0011] Step 1: Press the power button 25 to turn on the machine. The display screen 3 will light up, showing the remaining quantity of placement holes 5.

[0012] Step 2: Align the prepared adhesive label with the camera 20. The data acquisition module 24 collects the video information obtained by the camera 20. The edge calculator module 23 extracts the label information, including the type and configuration time, and sends it to the microcontroller 21. The microcontroller 21 stores the information and transmits it synchronously to the host computer for storage.

[0013] Step 3: Place the prepared adhesive into any of the remaining placement holes 5. The camera 20 will simultaneously acquire the placement position of the adhesive, and the host computer will simultaneously update the inventory quantity of this type of adhesive.

[0014] Step 4: The person taking the item aligns the ID card barcode containing their identity information with the camera 20. The display screen 3 simultaneously displays the person's ID information and on-duty status. The microcontroller 21 reads the type of adhesive required by the person through the ID.

[0015] Step 5: The person taking the adhesive from the placement hole 5 and aligning the structural adhesive label with the camera 20 to record the action; if the person taking the adhesive does not perform steps 4 and 5, the microcontroller 21 sends a command to the controller 22 to control the buzzer 6 and the light alarm 7 to sound an alarm.

[0016] Step 6: The microcontroller 21 compares the adhesive information obtained by the camera 20 with the qualified usage standards of the adhesive in the database to determine whether it meets the usage requirements. If it does, the light alarm 7 lights up green, the display screen 3 displays "qualified", and the remaining adhesive quantity is updated simultaneously. If it does not meet the requirements, the light alarm 7 lights up red, the buzzer 6 emits a "beep beep" alarm sound, and the display screen 3 displays "unqualified".

[0017] Step 7: If the adhesive used meets the usage requirements, the microcontroller will synchronize the information of the person taking the adhesive and the adhesive information to the host computer. The host computer will compare the type of adhesive with the position of the person taking the adhesive. If they match, the light alarm 7 will light up green and the host computer will fill in the work record. If they do not match, the light alarm 7 will light up red.

[0018] The beneficial effects of this invention are:

[0019] Analysis of the current usage of adhesives reveals several shortcomings, including a heavy workload for monitoring and inspection, insufficient personnel resources, inadequate real-time tracking and recording, monitoring blind spots, significant susceptibility to human error, and unclear and unintuitive display of adhesive lifecycle information. To address these issues, this paper explores a highly efficient and high-quality method with advantages such as low workload, high monitoring efficiency, timely and intuitive information updates, and immunity to human error. This technical solution aims to provide operators with a dedicated automated monitoring and inspection platform for adhesives. Composed of two main parts (structural and electrical control), the solution features a simple structure, low cost, and portability; it is easy to operate, powered by electricity, saving time and labor; the monitoring platform can also connect to a host computer for real-time comparison of operation records, and OTA upgrades enable automatic synchronous recording of operation records. The platform has an HDMI interface for connection to the company intranet, identifying and recording operator IDs to prevent unauthorized operations and laying the foundation for better accountability.

[0020] During the product manufacturing process, the implementation of the aforementioned automated monitoring platform for quality control of aerospace adhesives improved adhesive quality control, reduced the workload of on-site operators and inspectors, ensured the timeliness of operation records, reduced the risk of using substandard adhesives, and provided a more intuitive, digital, and comprehensive display of operational status. This resulted in increased production efficiency, shortened product cycles, curbed time waste, effectively adapted to the production rhythm, significantly improved the first-pass yield, and achieved both quality and quantity assurance, fulfilling the goal of delivering high-quality products quickly. Attached Figure Description

[0021] Figure 1 This invention relates to the main axis mapping of the automated monitoring platform;

[0022] Figure 2 This invention relates to the lateral isometric mapping of the automated monitoring platform.

[0023] Figure 3 This invention relates to an automated monitoring platform for elevation axis mapping.

[0024] Figure 4 This is the main view of the automated monitoring platform of the present invention;

[0025] Figure 5 This is a top view of the automated monitoring platform of the present invention;

[0026] Figure 6 This is the control flowchart of the automated monitoring platform of the present invention.

[0027] The components are as follows: 1-Connecting screw; 2-Top cover plate; 3-Display screen; 4-Operating panel; 5-Placement hole; 6-Buzzer; 7-Light alarm; 8-USB port; 9-Charging port; 10-HTTP port; 11-HDMI port; 12-Support rod; 13-Connector; 14-Roller; 15-Connecting block; 16-Washer; 17-Hex nut; 18-Bolt; 19-Camera connector; 20-Camera; 21-Microcontroller; 22-Controller; 23-Edge computing module; 24-Data acquisition module; 25-Switch button. Detailed Implementation

[0028] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0029] An automated monitoring platform for quality control during the use of adhesives includes structural components and electronic control components, such as... Figures 1 to 5 .

[0030] The structural components include connecting screws 1, a top cover plate 2, an operating platform 4, placement holes 5, support rods 12, connecting bodies 13, rollers 14, connecting blocks 15, washers 16, hexagonal nuts 17, bolts 18, a camera connector 19, and a housing. The housing has a hollow box-like structure with a polyethylene coating on its surface for corrosion protection and to extend its service life. Support rods 12 are fixedly connected to the four corners of the bottom of the housing, and connecting bodies 13 are fixedly connected to the lower ends of the support rods 12. Rollers 14 are installed inside the connecting bodies 13 for moving the entire device. The upper surface of the housing is the operating platform 4, which has several placement holes 5 for placing test cups containing adhesives, generally starting from the center. Storage; An L-shaped box is set above the rear of the operating table 4. The horizontal section of the L-shaped box extends above the operating table 4. A connecting block 15 is set on the bottom surface of the horizontal section. The camera connector 19 is fixedly connected to the bottom of the connecting block 15 by a hexagonal nut 17 and a bolt 18. A gasket 16 is set between the camera connector 19 and the connecting block 14. The camera connector 19 is used to install the camera 20. The upper surface of the L-shaped box is open and a top cover plate 2 is fixed by screws 1. The top cover plate 2 is made of aluminum alloy. The display screen 3, buzzer 6, light alarm 7, U port 8, charging port 9, HTTP 10, HDMI port 11 and switch button 25 are reserved on it.

[0031] The electronic control unit includes a display screen 3, a buzzer 6, a light alarm 7, a USB port 8, a charging port 9, an HTTP port 10, an HDMI port 11, a camera 20, a microcontroller 21, a controller 22, an edge calculator module 23, a data acquisition module 24, and a switch button 25. The camera 20, mounted at the bottom of the camera connector 19, is a 1080P wide-angle camera. Its monitoring area can completely cover all the placement holes 5 on the operating table 4. It is used to read and identify adhesive labels, the identity information of the user, and the video signals of adhesive placement and retrieval within the placement holes 5, and transmits these signals to the data acquisition module 24. The microcontroller 21 and controller 22... The edge calculator module 23 and the data acquisition module 24 are fixedly connected inside the housing. The data acquisition module 24 collects the video signal obtained by the camera 20 and transmits it to the edge calculator module 23. The edge calculator module 23 is used to extract the adhesive label, the user's identity information, and the adhesive placement and retrieval information in the placement hole 5 from the video data, and transmits the extracted information to the microcontroller 21. The microcontroller 21 is equipped with a database and a monitoring algorithm. The database includes the usage standards of various adhesives. The monitoring algorithm determines whether the adhesive meets the usage requirements according to the set logical relationship, and sends a control command to the controller 22 based on the judgment result. 22 drives the buzzer 6 and light alarm 7 to perform corresponding actions according to control commands. Simultaneously, the microcontroller 21 interconnects with the host computer, transmitting the information extracted by the edge calculator module 23 to the host computer. The host computer determines whether the user and the adhesive they are using match. The display screen 3, buzzer 6, light alarm 7, USB port 8, charging port 9, HTTP port 10, and HDMI port 11 are mounted on the top cover 2. The switch button 25 is a metal self-locking reset switch used to control the opening and closing of the entire device. The display screen 3 uses an OLED screen to display monitoring results. The buzzer 6 and light alarm 7 are controlled by the controller 22. When the adhesive is not... When the requirements are met, sound and light prompts are emitted. Buzzer 6 is a piezoelectric buzzer, and light alarm 7 is a color-changing LED. U port 8 is used to update the detection algorithm for better monitoring. Charging port 9 is for 12V platform charging voltage, with a TYPE-C interface, which supports blind insertion, high load current, and stable transmission. HTTP 10 is used to connect to an external host computer to realize human-computer interaction, ensuring the timeliness of operation record filling and serving as the basis for judging whether the adhesive operation is qualified. HDMI port 11 is used to connect to an external digital display screen to display information such as adhesive preparation time, real-time inventory, and remaining quantity of placement hole 5.

[0032] A method for using an automated monitoring platform for quality control during the application of adhesives, such as... Figure 6 The steps include the following:

[0033] Step 1: Press the power button 25 to turn on the machine. The display screen 3 will light up, showing the remaining quantity of placement holes 5.

[0034] Step 2: Align the prepared adhesive label with the camera 20. The data acquisition module 24 collects the video information obtained by the camera 20. The edge calculator module 23 extracts the label information, including the type and configuration time, and sends it to the microcontroller 21. The microcontroller 21 stores the information and transmits it synchronously to the host computer for storage.

[0035] Step 3: Place the prepared adhesive into any of the remaining placement holes 5. The camera 20 will simultaneously acquire the placement position of the adhesive, and the host computer will simultaneously update the inventory quantity of this type of adhesive.

[0036] Step 4: The person taking the item aligns the ID card barcode containing their identity information with the camera 20. The display screen 3 simultaneously displays the person's ID information and on-duty status. The microcontroller 21 reads the type of adhesive required by the person through the ID.

[0037] Step 5: The person taking the adhesive from the placement hole 5 and aligning the structural adhesive label with the camera 20 to record the action; if the person taking the adhesive does not perform steps 4 and 5, the microcontroller 21 sends a command to the controller 22 to control the buzzer 6 and the light alarm 7 to sound an alarm.

[0038] Step 6: The microcontroller 21 compares the adhesive information obtained by the camera 20 with the qualified usage standards of the adhesive in the database to determine whether it meets the usage requirements. If it does, the light alarm 7 lights up green, the display screen 3 displays "qualified", and the remaining adhesive quantity is updated simultaneously. If it does not meet the requirements, the light alarm 7 lights up red, the buzzer 6 emits a "beep beep" alarm sound, and the display screen 3 displays "unqualified".

[0039] Step 7: If the adhesive used meets the usage requirements, the microcontroller will synchronize the information of the person taking the adhesive and the adhesive information to the host computer. The host computer will compare the type of adhesive with the position of the person taking the adhesive. If they match, the light alarm 7 will light up green and the host computer will fill in the work record. If they do not match, the light alarm 7 will light up red.

[0040] The above description is only a partial embodiment of the present invention and does not limit the implementation and protection scope of the present invention. Any improvements and modifications made by those skilled in the art based on the disclosure of the present invention without departing from the scope of the present invention should be within the protection scope of the present invention.

Claims

1. An automated monitoring platform for quality control during the use of adhesives, characterized in that, It includes a structural part and an electronic control part. The structural part serves as the support structure for the electronic control part and also as a newly configured adhesive storage rack. The electronic control part collects adhesive label information, user information, and adhesive placement and retrieval information. After processing and analysis, it obtains a judgment result on whether it meets the usage requirements and whether the user and the adhesive are matched.

2. The automated monitoring platform for quality control of adhesive application process according to claim 1, characterized in that, The structural components include an upper cover plate (2), an operating table (4), placement holes (5), and a housing; the housing is a hollow box, the upper surface of the housing is the operating table (4), the operating table (4) is provided with several placement holes (5) for placing test cups containing adhesive; an L-shaped box is provided above the rear of the operating table (4), the horizontal section of the L-shaped box extends above the operating table (4), and a camera (20) is installed on the bottom surface of the horizontal section through a camera connector 19; the upper surface of the L-shaped box is open and the upper cover plate (2) is fixed thereon; The electronic control unit includes a display screen (3), a buzzer (6), a light alarm (7), a charging port (9), an HTTP port (10), a camera (20), a microcontroller (21), a controller (22), an edge calculator module (23), a data acquisition module (24), and a switch button (25). The camera (20) is used to read and identify the adhesive label, the user's identity information, and the video signal of adhesive placement and retrieval in the placement hole (5), and transmits it to the data acquisition module (24). The microcontroller (21), controller (22), edge calculator module (23), and data acquisition module (24) are fixedly connected inside the housing. The data acquisition module (24) collects the video signal obtained by the camera (20) and transmits it to the edge calculator module (23). The edge calculator module (23) extracts the adhesive label from the video data. The system retrieves the identity information of the person taking the adhesive and the information on the placement and retrieval of the adhesive in the placement hole (5), and transmits the retrieved information to the microcontroller (21). The microcontroller (21) is equipped with a database and a monitoring algorithm. The database includes the usage standards of various adhesives. The monitoring algorithm judges whether the adhesive meets the usage requirements according to the set logical relationship. Based on the judgment result, it sends a control command to the controller (22). The controller (22) drives the buzzer (6) and the light alarm (7) to perform corresponding command actions according to the control command. At the same time, the microcontroller (21) is interconnected with the host computer and transmits the information extracted by the edge calculator module (23) to the host computer. The host computer judges whether the person taking the adhesive matches the adhesive they take. The display screen (3), buzzer (6), light alarm (7), charging port (9), and HTTP port (10) are installed on the top cover plate (2). The switch button (25) is used to control the opening and closing of the entire device; the display screen (3) is used to display the monitoring results; the buzzer (6) and the light alarm (7) are controlled by the controller (22) and emit sound and light prompts when the adhesive does not meet the usage requirements; the HTTP10 is used to connect to an external host computer.

3. The automated monitoring platform for quality control of adhesive application process according to claim 2, characterized in that, The shell surface is covered with a polyethylene coating to achieve corrosion protection and extend service life.

4. The automated monitoring platform for quality control of adhesive application process according to claim 2, characterized in that, The shell is provided with rollers (14) at the four corners of its bottom.

5. The automated monitoring platform for quality control of adhesive application process according to claim 2, characterized in that, When placing adhesive in the placement hole (5), start from the center position.

6. The automated monitoring platform for quality control of adhesive application process according to claim 2, characterized in that, The top cover (2) is made of aluminum alloy.

7. The automated monitoring platform for quality control of adhesive application process according to claim 2, characterized in that, The camera (20) can completely cover all the placement holes (5) on the operating table (4).

8. The automated monitoring platform for quality control of adhesive application process according to claim 2, characterized in that, The electronic control unit also includes a USB port (8) and an HDMI port (11), which are located on the upper cover plate (2). The USB port (8) is used to update the detection algorithm, and the HDMI port (11) is used to connect an external digital display screen.

9. A method of using an automated monitoring platform for quality control of the adhesive application process as described in any one of claims 1-8, characterized in that, Includes the following steps: Step 1: Press the power button (25) to turn on the machine. The display screen (3) will light up and show the remaining number of placement holes (5). Step 2: Align the prepared adhesive label with the camera (20), the data acquisition module (24) acquires the video information obtained by the camera (20), the edge calculator module (23) extracts the label information, including the type and configuration time, and sends it to the microcontroller (21). The microcontroller (21) stores the information and transmits it synchronously to the host computer for storage. Step 3: Place the prepared adhesive into any of the remaining placement holes (5), and the camera (20) simultaneously acquires the placement position of the adhesive, and the host computer simultaneously updates the inventory quantity of this type of adhesive; Step 4: The person taking the card aligns the barcode of their identity card with the camera (20), and the display screen (3) displays the person's ID information and on-duty status simultaneously. The microcontroller (21) reads the type of adhesive required by the person through the person's ID. Step 5: The person taking the adhesive from the placement hole (5) and aligning the structural adhesive label with the camera (20) to record the action; Step 6: The microcontroller (21) compares the adhesive information obtained by the camera (20) with the qualified use standard of the adhesive in the database to determine whether it meets the use requirements. If it meets the requirements, the light alarm (7) lights up green and the display screen (3) displays the word "qualified". At the same time, the remaining adhesive quantity is updated synchronously. If it does not meet the requirements, the light alarm (7) lights up red, the buzzer (6) sounds an alarm, and the display screen (3) displays the word "unqualified". Step 7: If the adhesive used meets the usage requirements, the microcontroller will synchronize the information of the person taking the adhesive and the adhesive information to the host computer. The host computer will compare the type of adhesive with the position of the person taking the adhesive. If the two match, the light alarm (7) will light up green and the host computer will fill in the work record. If they do not match, the light alarm (7) will light up red.

10. The method of using the automated monitoring platform for quality control of adhesive application process according to claim 9, characterized in that, If the user fails to perform steps 4 and 5, the microcontroller (21) sends a command to the controller (22) to control the buzzer (6) and the light alarm (7) to sound an alarm.

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