Gluing and feeding system and method for adhesive sheets of reflectors

By designing a gluing and feeding system for reflector bonding sheets, and adopting automated stations such as vibration feeding, automatic gluing, and nut detection, the problems of high cost, low efficiency, and potential quality issues in the gluing and feeding of solar panel reflectors have been solved, achieving efficient and stable automated production.

CN121534898APending Publication Date: 2026-02-17WUHAN SUNNPO SOLAR TECH
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Patent Information

Application Number
CN202511886345.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-15
Publication Date
2026-02-17

AI Technical Summary

Technical Problem

The existing method of applying adhesive to the bonding sheet of the solar panel reflector has problems such as high production cost, low efficiency and potential quality issues, especially the high cost caused by manual operation and the quality risk of the bonding sheet being placed backwards.

Method used

A system for applying adhesive to reflector bonding sheets was designed, including a material supply conveyor line and a loading conveyor line. It adopts automated workstations such as vibration feeding, automatic glue application, nut detection, and transition transfer. The system achieves automated flow and precise positioning of bonding sheets through components such as a vibrating conveyor plate, a glue application robot, and a transfer pusher, and rejects defective products.

Benefits of technology

Significantly reduces production costs, improves operational efficiency, fully guarantees product quality, achieves a fully automated process, avoids the inefficiency and quality risks of manual operation, and is compatible with the production needs of various types of reflectors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a reflecting mirror bonding piece gluing and feeding system and method. The reflecting mirror bonding piece gluing and feeding system comprises a feeding conveying line and a feeding conveying line. The feeding conveying line comprises a bonding piece vibration feeding station, a bonding piece automatic gluing station, a bonding piece transition transplanting station and a feeding conveying belt used for connecting the bonding piece vibration feeding station, the bonding piece automatic gluing station and the bonding piece transition transplanting station. The bonding piece vibration feeding station comprises a vibration conveying disc used for feeding non-glued bonding pieces into a feeding conveying belt, and the bonding piece automatic gluing station comprises a gluing positioning device used for accurately positioning the non-glued bonding pieces to the to-be-glued positions and a gluing robot used for conducting gluing operation on the non-glued bonding pieces. The bonding piece transition transplanting station comprises a transition transplanting device used for pushing the glued bonding pieces to enable the bonding pieces to enter the feeding conveying line.
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Description

Technical Field

[0001] This invention relates to the field of solar reflector equipment manufacturing technology, specifically to a reflector bonding sheet coating and feeding system and method. Background Technology

[0002] Solar panel reflectors are core products in the solar thermal energy industry and have extremely high quality requirements. The adhesive pads must be fixed to designated positions on the painted surface of the reflector using two-component silicone adhesive. The accuracy of the adhesive placement and the quality of the bonding directly affect the on-site installation results and customer satisfaction.

[0003] Currently, the industry widely adopts robots for automated bonding operations, but the application and loading of adhesive sheets still rely on manual assistance. The specific workflow is as follows: the operator first places the adhesive sheet into a specialized fixture, then applies adhesive at the gluing station, and finally transfers the glued adhesive sheet along with the fixture to the robot's material handling station, where the robot picks it up and bonds it. This workflow typically requires 2 to 3 operators, leading to high production costs and low efficiency. Furthermore, human error can easily result in the adhesive sheet being placed backwards, directly impacting product yield.

[0004] In summary, the existing adhesive application method for solar panel reflector bonding sheets has significant shortcomings in terms of production cost control and product quality assurance, and the related technical issues urgently need to be effectively resolved. Summary of the Invention

[0005] The purpose of this invention is to overcome the shortcomings of the aforementioned background technology and provide a system and method for applying adhesive to reflector bonding sheets that can effectively control production costs, ensure product quality, and improve production efficiency.

[0006] To achieve this objective, the reflector adhesive sheet coating and feeding system designed in this invention includes a feeding conveyor line and a loading conveyor line; the feeding conveyor line includes an adhesive sheet vibrating feeding station, an adhesive sheet automatic gluing station, an adhesive sheet transition and transfer station, and a feeding conveyor belt for connecting the adhesive sheet vibrating feeding station, the adhesive sheet automatic gluing station, and the adhesive sheet transition and transfer station; the adhesive sheet vibrating feeding station includes a vibrating conveyor plate for feeding un-glued adhesive sheets into the feeding conveyor belt; the adhesive sheet automatic gluing station includes a gluing positioning device for accurately positioning the un-glued adhesive sheets at the gluing position and a gluing robot for performing gluing operations on the un-glued adhesive sheets; the adhesive sheet transition and transfer station includes a transition and transfer device for pushing the glued adhesive sheets and causing them to enter the loading conveyor line.

[0007] Furthermore, an adhesive sheet nut detection station is provided between the vibratory feeding station and the automatic glue application station. The adhesive sheet nut detection station includes an adhesive sheet nut detection pusher device located on one side of the feeding conveyor belt, used to detect whether the adhesive sheet has a missing nut or the nut is not installed properly, and to remove the adhesive sheet with a missing nut or the nut not installed properly from the feeding conveyor belt.

[0008] Furthermore, the adhesive sheet nut detection and pushing device includes a nut detection mechanism for detecting whether the adhesive sheet has a missing nut or the nut is not installed properly, a nut detection push rod for pushing the side of the adhesive sheet, a nut detection pushing cylinder for providing power to the nut detection push rod, and a housing for carrying the defective adhesive sheet.

[0009] Furthermore, an adhesive sheet blocking station is provided between the vibratory feeding station and the automatic glue dispensing station for adhesive sheets to control the flow of adhesive sheets. The adhesive sheet blocking station includes an adhesive sheet stop bar for blocking the adhesive sheets and preventing the adhesive sheets from flowing, and an adhesive sheet blocking telescopic cylinder for driving the adhesive sheet stop bar to reciprocate perpendicular to the feeding conveyor belt.

[0010] Furthermore, the glue-applying positioning device includes a glue-applying positioning telescopic baffle that can cooperate with the side of the adhesive sheet to stop the adhesive sheet from flowing on the feeding conveyor belt and to be in the glue-applying position, and a glue-applying positioning telescopic cylinder for driving the glue-applying positioning telescopic baffle to reciprocate perpendicular to the feeding conveyor belt.

[0011] Furthermore, the transition transplanting device includes a transplanting pusher plate for pushing against the side of the adhesive sheet, and a transplanting pusher cylinder for driving the transplanting pusher plate to reciprocate perpendicular to the direction of the feeding conveyor belt.

[0012] Furthermore, the feeding conveyor line includes one or more adhesive sheet feeding stations for gripping the adhesive sheets after gluing, and a feeding conveyor belt arranged parallel to the feeding conveyor belt for conveying the adhesive sheets after gluing to the adhesive sheet feeding stations.

[0013] Furthermore, the adhesive sheet feeding station includes a feeding robot, a feeding telescopic block for preventing the adhesive sheet from flowing on the feeding conveyor belt, and a feeding push block for pushing the adhesive sheet against the gripper of the feeding robot.

[0014] Furthermore, one end of the feeding conveyor belt is parallel to and spaced apart from the section of the supply conveyor belt located at the transition and transfer station of the adhesive sheet, and the top surface of the feeding conveyor belt is at the same height as the top surface of the supply conveyor belt.

[0015] Furthermore, a method for applying adhesive to and feeding a mirror adhesive sheet based on the aforementioned mirror adhesive sheet coating and feeding system includes the following steps: Uncoated adhesive sheets are fed into a feeding conveyor belt by a vibrating conveyor plate at the adhesive sheet vibrating feeding station, and then enter an automatic adhesive application station along the feeding conveyor belt. An adhesive application positioning device accurately positions the uncoated adhesive sheet at the adhesive application position. An adhesive application robot applies adhesive to the uncoated adhesive sheet. The coated adhesive sheet is then fed into a transition and transfer station by the feeding conveyor belt. A transition and transfer device pushes the coated adhesive sheet to the feeding conveyor line, where the feeding conveyor line performs the feeding operation on the coated adhesive sheet.

[0016] The beneficial effects of this invention are:

[0017] Significantly reduces production costs: Through the fully automated design of vibration feeding, automatic glue application, nut detection, transition transfer and feeding conveyor, it completely replaces the manual assistance work of the original 2-3 operators, completely saving labor input costs; at the same time, it avoids the additional costs caused by manual operation, such as waste of adhesive sheets and inefficient tooling transfer, and also reduces the rework costs caused by human error, greatly reducing the overall production cost.

[0018] Significantly improves work efficiency: The automated system enables continuous flow of adhesive sheets from "feeding → inspection → gluing → transplanting → loading". Each station is precisely connected to a dedicated drive device via a conveyor belt, eliminating the need for manual intervention in intermediate steps. This avoids the interruptions and positioning delays of manual operation, significantly shortens the processing cycle of a single set of adhesive sheets, and meets the high-efficiency operation requirements of large-scale production.

[0019] Comprehensive product quality assurance: On the one hand, the adhesive sheet is precisely positioned throughout the process through structures such as the glue application positioning device and the feeding telescopic block, fundamentally avoiding the quality risks of manually placing the adhesive sheet backwards; on the other hand, a nut inspection station is added, which can automatically identify and reject unqualified products with missing or improperly installed nuts, ensuring the integrity and reliability of the adhesive sheet, thereby ensuring the accuracy of the reflector bonding position and bonding quality, improving the on-site installation effect and customer satisfaction.

[0020] Stable operation and strong adaptability: The system's components (vibrating conveyor, glue-applying robot, transplanting push cylinder, etc.) are designed in a reasonable and coordinated manner, ensuring stable and reliable operation and long-term continuous operation; the positioning mechanisms and drive devices can be flexibly adjusted according to different specifications of adhesive sheets, adapting to the production needs of various models of reflectors, thus enhancing the system's practicality and industry promotion value. Attached Figure Description

[0021] To more clearly illustrate the technical solutions of the embodiments disclosed in this invention, the accompanying drawings of the embodiments will be briefly described below. These drawings are for illustrative purposes only and are not intended to limit the scope of protection of this invention.

[0022] Figure 1 This is a top view of the adhesive application system for the reflector bonding sheet in this invention.

[0023] Figure 2 This is a side view of the material feeding conveyor line in this invention;

[0024] Figure 3 This is a top view of the adhesive sheet nut inspection station in this invention;

[0025] Figure 4 This is a top view of the adhesive sheet blocking station in this invention;

[0026] Figure 5 This is a top view of the glue application positioning device of the automatic glue application station for adhesive sheets in this invention;

[0027] Figure 6 This is a top view of the adhesive sheet transition and transfer station in this invention;

[0028] Figure 7 This is a top view of the adhesive sheet loading station in this invention;

[0029] Among them, 1—feeding conveyor line (1.1—adhesive sheet vibrating feeding station, 1.2—adhesive sheet nut detection station, 1.3—adhesive sheet blocking station, 1.4—adhesive sheet automatic glue application station, 1.5—adhesive sheet transition and transfer station, 1.6—feeding conveyor belt), 2—loading conveyor line (2.1—adhesive sheet loading station, 2.2—loading conveyor belt), 3—adhesive sheet, 4—vibrating conveyor plate, 5—glue application robot, 6—nut detection push rod, 7—nut detection push cylinder, 8—box body, 9—adhesive sheet 10—Adhesive sheet blocking telescopic cylinder; 11—Glue application positioning telescopic baffle; 12—Glue application positioning telescopic cylinder; 13—Transplanting push plate; 14—Transplanting push cylinder; 15—Feeding robot; 16—Feeding telescopic block; 17—Feeding push block; 18—Feeding blocking telescopic cylinder; 19—Feeding push cylinder; 20—Drive motor; 21—Platform; 22—Glue application robot mounting column; 23—Belt mounting column; 24—Mounting profile; 25—Column base plate; 26—Height adjustment screw; 27—Mounting base plate. Detailed Implementation

[0030] The technical solutions (including preferred technical solutions) of the present invention will be further described in detail below with reference to the accompanying drawings and by way of listing some optional embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0031] Example 1

[0032] like Figure 1 As shown in Figure 7, this invention provides an embodiment of a system for applying adhesive to a reflector bonding sheet:

[0033] like Figure 1 As shown, the system includes a feeding conveyor line 1 and a loading conveyor line 2.

[0034] The feeding and conveying line 1 includes a vibratory feeding station for adhesive sheets 1.1, an adhesive sheet nut inspection station 1.2, an adhesive sheet blocking station 1.3, an automatic glue application station for adhesive sheets 1.4, an adhesive sheet transition and transfer station 1.5, and a feeding conveyor belt 1.6 for connecting the vibratory feeding station for adhesive sheets 1.1, the adhesive sheet nut inspection station 1.2, the adhesive sheet blocking station 1.3, the automatic glue application station for adhesive sheets 1.4, and the transition and transfer station for adhesive sheets 1.5.

[0035] like Figure 1 As shown, the vibratory feeding station 1.1 for adhesive sheets includes a vibratory conveyor plate 4 for feeding un-adhesive adhesive sheets 3 into the feeding conveyor belt 1.6. The vibratory conveyor plate 4 is fixed on the platform 21. The vibratory conveyor plate 4 is a common existing device. Its working principle is mainly based on the interaction between an electromagnet and a leaf spring, as well as the inclined design of the feeding trough, to achieve automatic feeding and automatic orientation of the workpiece. The structure of the vibratory plate mainly includes a base, vibration damping pads, leaf springs, electromagnets, a hopper, a spiral track and orientation mechanism, a feeding trough, a controller, and other components. The operator only needs to guide the adhesive sheets into the vibratory plate, and the vibratory plate will automatically sort and output the sorted adhesive sheets with consistent orientation.

[0036] like Figure 1 and 3 As shown, the adhesive sheet nut inspection station 1.2 includes an adhesive sheet nut inspection and pushing device located on one side of the feeding conveyor belt 1.6. This device is used to detect whether the adhesive sheet 3 has a missing nut or is not properly installed, and to remove adhesive sheets 3 with missing or improperly installed nuts from the feeding conveyor belt 1.6. The adhesive sheet nut inspection and pushing device includes a nut detection mechanism (such as an inductive proximity switch, which uses an inductive sensor to detect the electromagnetic induction signal of the metal nut; if no signal is detected within a preset detection distance, it is determined that the nut is missing; if the signal strength is below a threshold, it is determined that it is improperly installed), a nut detection push rod 6 for pushing the side of the adhesive sheet 3, a nut detection pushing cylinder 7 (pneumatic cylinder) for providing power to the nut detection push rod 6, and a housing 8 for carrying unqualified adhesive sheets.

[0037] like Figure 1 and Figure 4As shown, the adhesive sheet blocking station 1.3 includes an adhesive sheet blocking rod 9 for blocking the adhesive sheet 3 and preventing the adhesive sheet 3 from flowing, and an adhesive sheet blocking telescopic cylinder 10 (cylinder) for driving the adhesive sheet blocking rod 9 to reciprocate perpendicular to the feeding conveyor belt 1.6.

[0038] like Figure 1 and Figure 5 As shown, the automatic glue application station 1.4 for adhesive sheets includes a glue positioning device for accurately positioning the un-glued adhesive sheet 3 at the glue application position, and a glue application robot 5 (a standard glue application machine model in the photothermal industry, with the glue dispensing pipe and glue valve mounted on the robot) for applying glue to the un-glued adhesive sheet 3. When the system detects that the adhesive sheet 3 has been positioned, the glue application robot 5 begins to move according to the set actions. When the glue application robot 5, equipped with the glue dispensing pipe, reaches the target position, the system notifies the glue application machine to start dispensing glue. The automatic glue dispensing operation is completed when the glue dispensing robot 5 finishes the glue dispensing operation and the glue dispensing machine is notified to shut off the glue. The glue dispensing positioning device includes a glue dispensing positioning telescopic baffle 11 (including multiple positioning grooves that cooperate with the side of the adhesive sheet 3) that can cooperate with the side of the adhesive sheet 3 to stop the adhesive sheet 3 from flowing on the feeding conveyor belt 1.6 and to be in the glue dispensing position, and a glue dispensing positioning telescopic cylinder 12 (cylinder) for driving the glue dispensing positioning telescopic baffle 11 to reciprocate perpendicular to the feeding conveyor belt 1.6.

[0039] like Figure 1 and Figure 6 As shown, the adhesive sheet transition transfer station 1.5 includes a transition transfer device for pushing the adhesive sheet 3 after gluing and guiding it into the feeding conveyor line 2. Similar in structure to the gluing positioning device, the transition transfer device includes a transfer push plate 13 (including multiple positioning grooves that mate with the sides of the adhesive sheet 3) for pushing the side of the adhesive sheet 3, and a transfer pushing cylinder 14 (cylinder) for driving the transfer push plate 13 to reciprocate perpendicular to the feeding conveyor belt 1.6.

[0040] like Figure 1 As shown, the feeding conveyor line 2 includes one or more adhesive sheet feeding stations 2.1 for gripping the glued adhesive sheets 3, and a feeding conveyor belt 2.2 arranged parallel to the feeding conveyor belt 1.6 for conveying the glued adhesive sheets 3 to the adhesive sheet feeding stations 2.1. One end of the feeding conveyor belt 2.2 is parallel to and spaced apart from the belt section of the feeding conveyor belt 1.6 located at the adhesive sheet transition and transfer station 1.5, and the top surface of the feeding conveyor belt 2.2 is at the same height as the top surface of the feeding conveyor belt 1.6.

[0041] like Figure 1 and Figure 7As shown, the adhesive sheet loading station 2.1 includes a loading robot 15, a loading telescopic block 16 (driven by a loading blocking telescopic cylinder 18 (cylinder)) for preventing the adhesive sheet 3 from flowing on the loading conveyor belt 2.2, and a loading push block 17 (driven by a loading push cylinder 19 (cylinder)) for pushing the adhesive sheet 3 against the gripper of the loading robot 15, and the same structure as the adhesive sheet nut detection station 1.2).

[0042] Example 2

[0043] Based on Example 1, the present invention provides an embodiment of a method for applying adhesive to a reflector bonding sheet:

[0044] like Figure 1 As shown in Figure 7, the method includes the following steps: the un-glued adhesive sheet 3 is fed into the feeding conveyor belt 1.6 by the vibrating conveyor plate 4 of the adhesive sheet vibrating feeding station 1.1, and enters the adhesive sheet nut detection station 1.2 along the feeding conveyor belt 1.6. The nut detection mechanism detects whether there is a missing nut or the nut is not installed properly in the adhesive sheet. The nut detection push rod 6 is driven by the nut detection push cylinder 7 to push the unqualified adhesive sheet into the box 8.

[0045] The qualified un-glued adhesive sheet 3 is fed into the adhesive sheet blocking station 1.3 by the feeding conveyor belt 1.6. The adhesive sheet blocking rod 9 is driven by the adhesive sheet blocking telescopic cylinder 10 to control the flow of adhesive sheet 3.

[0046] Adhesive sheet 3 enters the automatic glue application station 1.4 through the adhesive sheet blocking station 1.3. The glue application positioning telescopic cylinder 12 drives the glue application positioning telescopic baffle 11 to extend and accurately position the un-glued adhesive sheet 3 in the glue application position. The glue application robot 5 performs the glue application operation on the un-glued adhesive sheet 3.

[0047] After being glued, the adhesive sheet 3 is fed into the adhesive sheet transition and transfer station 1.5 by the feeding conveyor belt 1.6. The transfer push cylinder 14 drives the transfer push plate 13 to push the glued adhesive sheet 3 to the feeding conveyor belt 2.2. The feeding conveyor belt 2.2 transports the glued adhesive sheet 3 to multiple adhesive sheet feeding stations 2.1. The feeding telescopic block 16 is driven by the feeding blocking telescopic cylinder 18 to prevent the adhesive sheet 3 from flowing on the feeding conveyor belt 2.2. The feeding push block 17 is driven by the feeding push cylinder 19 to push the adhesive sheet 3 to the gripper of the feeding robot 15 to complete the feeding operation.

[0048] In summary, the reflector bonding sheet adhesive application system and method provided by this invention, through fully automated design and precise workstation collaboration, completely solves the problems of high cost, low efficiency, and prominent quality risks associated with traditional manual assistance methods, demonstrating significant technical advantages and application effects. The system constructs a complete automated closed loop of "material supply-inspection-adhesion-transfer-loading," with its core highlight being the precise adaptation and efficient linkage of each functional workstation. The adhesive sheet vibratory feeding station 1.1 automatically sorts and orients the adhesive sheets 3 via the vibratory conveyor plate 4, eliminating the need for manual placement. The adhesive sheet nut inspection station 1.2 uses an inductive proximity switch to accurately identify defective products with missing or improperly installed nuts, and automatically removes them to a dedicated box via a cylinder-driven push rod, controlling product integrity from the source. The adhesive sheet blocking station 1.3 uses a telescopic stop to orderly control the number of adhesive sheets in circulation, avoiding station congestion. The automatic adhesive sheet gluing station 1.4 uses a telescopic baffle with positioning grooves to achieve precise positioning of the adhesive sheets, and works with an industry-standard gluing robot 5 along a preset path to ensure consistent gluing. The adhesive sheet transition and transfer station 1.5 and the adhesive sheet loading station 2.1 use parallel conveyor belts of the same height and push plates with positioning grooves to achieve smooth transfer of adhesive sheets and precise robot gripping, all without manual intervention.

[0049] The core effects of the technical solution are reflected in three aspects: First, it significantly reduces production costs, completely replacing the manual labor of 2-3 operators, saving labor costs and rework and waste costs caused by human error; second, it significantly improves operational efficiency, with automated continuous operation eliminating the intermittent nature of manual operation, and each workstation collaborating with robots through cylinder drive to shorten the single-piece processing cycle and adapt to large-scale production; third, it comprehensively ensures product quality, with precise structural positioning to avoid the risk of adhesive pieces being placed backwards, nut inspection to remove defective products, and automated operations for gluing and gripping to ensure process stability, thereby improving the bonding accuracy of reflectors and customer satisfaction. Furthermore, the system uses mature components such as cylinder drive and robot operation, ensuring reliable structure, convenient maintenance, and compatibility with different specifications of adhesive pieces, making it highly valuable for industry promotion.

[0050] It should be noted that the description of the above technical solutions is exemplary, and this specification can be embodied in different forms and should not be construed as limiting it to the technical solutions set forth herein. Rather, providing these descriptions will ensure that the disclosure of this invention is thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Furthermore, the technical solutions of this invention are defined only by the scope of the claims. When using the terms "comprising," "having," and "including" as described in this specification, there may also be another part or other parts; the terms used are generally singular but may also represent plural forms. Finally, it should be pointed out that the above embodiments are merely representative examples of the present invention. Obviously, the present invention is not limited to the above embodiments and many variations are possible. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present invention should be considered to fall within the protection scope of the present invention.

Claims

1. A system for applying adhesive to a reflector bonding sheet, characterized in that: It includes a feeding conveyor line (1) and a loading conveyor line (2); The feeding and conveying line (1) includes a vibrating feeding station (1.1) for adhesive sheets, an automatic gluing station for adhesive sheets (1.4), a transition and transfer station for adhesive sheets (1.5), and a feeding conveyor belt (1.6) for connecting the vibrating feeding station (1.1), the automatic gluing station (1.4), and the transition and transfer station (1.5). The vibratory feeding station (1.1) for adhesive sheets includes a vibratory conveyor plate (4) for feeding un-glued adhesive sheets (3) into the feeding conveyor belt (1.6). The automatic gluing station (1.4) for adhesive sheets includes a gluing positioning device for accurately positioning the un-glued adhesive sheets (3) at the gluing position and a gluing robot (5) for performing gluing operations on the un-glued adhesive sheets (3). The transition transfer station (1.5) for adhesive sheets includes a transition transfer device for pushing the glued adhesive sheets (3) into the feeding conveyor line (2).

2. The adhesive application system for the reflector bonding sheet as described in claim 1, characterized in that: An adhesive sheet nut detection station (1.2) is provided between the vibratory feeding station (1.1) and the automatic glue application station (1.4) of the adhesive sheet. The adhesive sheet nut detection station (1.2) includes an adhesive sheet nut detection pusher device located on one side of the feeding conveyor belt (1.6) for detecting whether the adhesive sheet (3) has a missing nut or the nut is not installed properly, and removing the adhesive sheet (3) with a missing nut or the nut is not installed properly from the feeding conveyor belt (1.6).

3. The adhesive application system for the reflector bonding sheet as described in claim 2, characterized in that: The adhesive sheet nut detection and pushing device includes a nut detection mechanism for detecting whether the adhesive sheet has missing nuts or improper installation, a nut detection push rod (6) for pushing the side of the adhesive sheet (3), a nut detection pushing cylinder (7) for providing power to the nut detection push rod (6), and a box (8) for carrying unqualified adhesive sheets.

4. The adhesive application system for the reflector bonding sheet as described in claim 1, 2, or 3, characterized in that: Between the vibratory feeding station (1.1) and the automatic glue dispensing station (1.4) of the adhesive sheet, there is an adhesive sheet blocking station (1.3) for controlling the flow of adhesive sheets. The adhesive sheet blocking station (1.3) includes an adhesive sheet stop bar (9) for blocking the adhesive sheet (3) and preventing the adhesive sheet (3) from flowing, and an adhesive sheet blocking telescopic cylinder (10) for driving the adhesive sheet stop bar (9) to reciprocate perpendicular to the feeding conveyor belt (1.6).

5. The adhesive application system for the reflector bonding sheet as described in claim 1, characterized in that: The glue-applying positioning device includes a glue-applying positioning telescopic baffle (11) that can cooperate with the side of the adhesive sheet (3) to stop the flow of the adhesive sheet (3) on the feeding conveyor belt (1.6) and be in the glue-applying position, and a glue-applying positioning telescopic cylinder (12) for driving the glue-applying positioning telescopic baffle (11) to reciprocate perpendicular to the feeding conveyor belt (1.6).

6. The adhesive application system for the reflector bonding sheet as described in claim 1, characterized in that: The transition transplanting device includes a transplanting pusher plate (13) for pushing against the side of the adhesive sheet (3), and a transplanting pusher cylinder (14) for driving the transplanting pusher plate (13) to reciprocate perpendicular to the direction of the feeding conveyor belt (1.6).

7. The adhesive application system for the reflector bonding sheet as described in claim 1, characterized in that: The feeding conveyor line (2) includes one or more adhesive sheet feeding stations (2.1) for grabbing the adhesive sheet (3) after gluing, and a feeding conveyor belt (2.2) arranged parallel to the feeding conveyor belt (1.6) for conveying the adhesive sheet (3) after gluing to the adhesive sheet feeding station (2.1).

8. The adhesive application system for the reflector bonding sheet as described in claim 7, characterized in that: The adhesive sheet loading station (2.1) includes a loading robot (15), a loading telescopic block (16) for preventing the adhesive sheet (3) from flowing on the loading conveyor belt (2.2), and a loading push block (17) for pushing the adhesive sheet (3) against the gripper of the loading robot (15).

9. The adhesive application system for the reflector bonding sheet as described in claim 7, characterized in that: One end of the feeding conveyor belt (2.2) is parallel to and spaced apart from the belt section of the feeding conveyor belt (1.6) located at the adhesive sheet transition and transfer station (1.5). The top surface of the feeding conveyor belt (2.2) and the top surface of the feeding conveyor belt (1.6) are at the same height.

10. A method for applying adhesive to a mirror bonding sheet using a mirror bonding sheet application system according to any one of claims 1-9, characterized in that: It includes the following steps: the un-glued adhesive sheet (3) is fed into the feeding conveyor belt (1.6) by the vibrating conveyor plate (4) of the adhesive sheet vibrating feeding station (1.1), and enters the adhesive sheet automatic gluing station (1.4) along the feeding conveyor belt (1.6). The gluing positioning device accurately positions the un-glued adhesive sheet (3) at the gluing position. The gluing robot (5) performs the gluing operation on the un-glued adhesive sheet (3). The glued adhesive sheet (3) is sent into the adhesive sheet transition transfer station (1.5) by the feeding conveyor belt (1.6). The transition transfer device pushes the glued adhesive sheet (3) to the feeding conveyor line (2). The feeding conveyor line (2) performs the feeding operation on the glued adhesive sheet (3).