Automatic operating device for carbon fiber cloth reinforcement process

The automatic operation device for carbon fiber cloth reinforcement addresses inefficiencies and inaccuracies by integrating a structured frame, adhesive application, and positioning tools, enhancing efficiency and quality in the reinforcement process.

JP7710693B2Active Publication Date: 2025-07-22CHINA RAILWAY 22ND BUREAU GROUP CORP LTD +1
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Patent Information

Application Number
JP2023574599
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2022-06-14
Filing Date
2022-12-22
Publication Date
2025-07-22
Estimated Expiration
2042-12-22

AI Technical Summary

Technical Problem

Existing carbon fiber cloth reinforcement devices suffer from low automation, inefficiency, inaccurate laying, non-uniform adhesive application, and adhesive overflow, leading to reduced construction efficiency and quality.

Method used

An automatic operation device with a device structure frame, elastic base, adhesive application unit, and laser scriber, featuring a carbon fiber cloth storage disk, conveying wheels, pulley group, adhesive storage tanks, and a scraper blade, along with a reflective glass plate for positioning, ensuring precise and efficient reinforcement.

Benefits of technology

The device enhances construction efficiency, ensures accurate laying, uniform adhesive application, and prevents adhesive overflow, improving the overall quality and safety of the reinforcement process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an automatic operation device for carbon fiber cloth reinforcement process, which includes an apparatus mechanism, an apparatus operation platform and an auxiliary unit. The beneficial effects of the present invention are as follows: the automatic operation of the carbon fiber cloth reinforcement process can be realized, the efficiency can be greatly improved, and the quality of the process can be ensured; the end of the horizontal bar at the upper end of the apparatus structure frame is provided with a scraper blade arranged at an incline, through a rotating shaft on which a torsion spring is installed in a sleeve shape; and the apparatus structure frame is connected with an excess adhesive storage groove at the location directly below the scraper blade, so that after the carbon fiber cloth is laid, the extruded excess adhesive can be scraped off flatly, and also collected in the excess adhesive storage groove to prevent it from dripping on the ground; a reflective glass plate is provided, and a line is drawn by positioning the top plate through the reflective glass plate with a one-way mirror surface, because the upper part of the mirror glass plate is a mirror surface.
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Description

Technical Field

[0001] The present invention relates to a carbon fiber cloth reinforcement device, specifically, an automatic operation device for the carbon fiber cloth reinforcement process, and belongs to the technical field of carbon fiber cloth laying.

Background Art

[0002] Carbon fiber cloth is a common intermediate material for manufacturing carbon fiber composite materials and is also an important raw material for building reinforcement. During the building reinforcement construction process, the construction personnel need to brush a layer of adhesive on the ceiling of the building and then lay the carbon fiber cloth on the ceiling. Although the ceiling has been reinforced, manual reinforcement is not only inefficient but also likely to damage the flatness and laying aesthetics. Therefore, in many cases, a special carbon fiber cloth reinforcement device is used for the laying operation.

[0003] Regarding existing operating devices, the degree of automation is often low, and the problem of reduced construction efficiency cannot be fundamentally solved. In addition, when laying, the laying accuracy cannot be accurately grasped, and situations such as the laying of the carbon fiber cloth deviating from the predetermined position may occur. Furthermore, during the reinforcement laying process, it is necessary to brush and apply the adhesive at the laying part and then lay and reinforce it. However, conventional devices can often only apply the adhesive to the ceiling, cannot guarantee uniform application, resulting in a decrease in the firmness of the laying, and a part of the applied adhesive overflows due to excessive application, further dripping onto the equipment and the ground, making it not easy to clean.

Summary of the Invention

[0004] An object of the present invention is to provide an automatic operation device for the carbon fiber cloth reinforcement process so as to solve at least one of the above technical problems.

[0005] The present invention achieves the above object through the following technical solutions. An automatic operation device for the carbon fiber cloth reinforcement process,

[0006] It is at the upper end of the automatic operation device, constitutes the main body structure of the automatic operation device, and it

[0007] is used to support the device mechanism, and it includes a device structure frame welded or fixed with bolts and rivets using a section steel or an aluminum material with a certain thickness, and an elastic base connected below the device structure frame. A frame unit in which the bottom end of the device structure frame is sleeved and connected to the vertical rod of the elastic base,

[0008] is used to convey the carbon fiber cloth, and is attached to the device structure frame. It includes a carbon fiber cloth storage disk for storing the roll of carbon fiber cloth, a loose wheel for transitioning to the bending part of the carbon fiber cloth conveying path, a conveying wheel for moving and conveying the carbon fiber cloth, and a pulley group. The carbon fiber cloth storage disk is movably and detachably attached below the rear end of the device structure frame. The loose wheel is rotatably connected to the device structure frame. The conveying wheel and the pulley group are both rotatably connected to the horizontal rod at the upper end of the device structure frame. A transmission unit,

[0009] is used to apply an adhesive to the top plate where the carbon fiber cloth needs to be laid, and it includes an adhesive storage tank installed at the front end of the transmission unit, and a sealed air cylinder connected to the bottom end of the adhesive storage tank. The adhesive storage tank is attached to the device structure frame via fixing bolts. An adhesive application unit with an intake pipe connected to one side of the bottom end of the sealed air cylinder,

[0010] It is provided below the device mechanism and is used to control and operate the device mechanism. Moreover, it includes a framework of a work platform formed by welding I-beams or H-beams, an interlocking control box fixedly attached to the framework of the work platform, and a laser scriber movably connected to the framework of the work platform. The framework of the work platform is supported on the lower surface of an elastic base. An exhaust port communicating with an intake pipe is provided at the upper end of the interlocking control box, and an intake port is provided at the lower end of the interlocking control box. The laser scriber is attached to a telescopic bottom plate of the framework of the work platform. A switch cable insertion hole for passing through a low-voltage cable for electrically connecting to an external power source is opened at the lower end of the interlocking control box, an apparatus operation platform,

[0011] It is at the bottom end of the automatic operation device and includes an auxiliary unit including an automatic elevator workbench for supporting and arranging the apparatus operation platform and an air compressor communicating with the intake port through a ventilation pipe.

[0012] As a further solution means of the present invention, a base spring is provided in a sleeve shape on the rod body of the vertical rod of the elastic base, and base stabilizer arms installed in a cross shape at both ends of the elastic base are rotatably connected. The upper end of the base stabilizer arm is rotatably connected to the device structure frame via a screw, and a strip-shaped screw hole for passing through the screw is opened at the upper end of the base stabilizer arm.

[0013] As a further solution means of the present invention, the pulley group includes a first pulley, a second pulley, and a third pulley. Synchronous rolling is achieved between the first pulley and the second pulley via a belt, and synchronous rolling is achieved between the second pulley and the third pulley via a belt. A front guide wheel and a rear guide wheel are rotatably connected to the front and rear ends of the horizontal rod at the upper end of the device structure frame respectively.

[0014] As a further solution of the present invention, at the end of the horizontal bar at the upper end of the device structure frame, a scraper blade arranged obliquely is provided via a rotating shaft on which a torsion spring is installed in a sleeve shape, and the device structure frame is connected with a storage groove for excess adhesive at a position directly below the scraper blade.

[0015] As a further solution of the present invention, at the position where the carbon fiber cloth storage disc in the device structure frame is connected, a damping adjustment bolt is rotatably connected by a screw connection.

[0016] As a further solution of the present invention, a communication pipe is vertically installed in the interlocking control box, a gear valve is installed on the communication pipe, a semi-circular gear fixedly welded to the middle part of the rod body of the rotating rod is meshed and connected to the gear of the gear valve, the central part of the rod body of the rotating rod is rotatably connected to the box body of the interlocking control box, the bottom end of the rotating rod is rotatably connected to the traction rod of the traction electromagnet, a spring connected to the inner wall of the box body of the interlocking control box is hung on the upper end of the rotating rod, a position regulating plate for regulating the position of the rotating rod is fixedly installed in the box body of the interlocking control box, a start switch is connected in series to the power supply line connected to the traction electromagnet, and the start switch is installed outside the box body of the interlocking control box.

[0017] As a further solution of the present invention, there are two adhesive storage tanks, which are arranged in parallel, and brushes are respectively connected to the adhesive discharge ports of the adhesive storage tanks. The intake pipes of the sealed air cylinders connected below the two adhesive storage tanks communicate with the exhaust ports via three-way valves.

[0018] As a further solution of the present invention, a reflective glass plate with one-way light transmissivity is installed directly above the laser scriber, and a positioning line engraved on the top plate is presented on the reflective glass plate.

[0019] The beneficial effects of the present invention are as follows.

[0020] 1. By arranging a transmission unit, an adhesive application unit, a device operation platform, an auxiliary unit, etc., the device can realize the automatic operation of the carbon fiber cloth reinforcement process, greatly improve the efficiency, and ensure the quality of the process.

[0021] 2. At the end of the cross bar at the upper end of the device structure frame, a scraping blade arranged obliquely is provided via a rotating shaft with a torsion spring installed in a sleeve shape, and the device structure frame is connected with a storage groove for excess adhesive at a position directly below the scraping blade. After laying the carbon fiber cloth, the extruded excess adhesive can be evenly scraped off and collected in the storage groove for excess adhesive so as not to drip onto the ground.

[0022] 3. A reflective glass plate is provided. By positioning and drawing a line on the top plate through the one-way mirror surface reflective glass plate, since the upper part of the mirror surface glass plate is a mirror surface, the operator can clearly observe the positioning line of the mirror reflection, check whether there is a deviation in the forward direction of the carbon fiber cloth, and correct it in a timely manner.

Brief Description of the Drawings

[0023]

Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Embodiments for Carrying out the Invention

[0024] Next, in conjunction with the drawings in the embodiments of the present invention, the technical solution in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, those skilled in the art can obtain all other embodiments without creative labor, which belong to the protection scope of the present invention.

[0025] Example 1

[0026] As shown in FIGS. 1 to 6, an automatic operation device for a carbon fiber cloth reinforcement process,

[0027] is at the upper end of the automatic operation device, and also constitutes the main body structure of the automatic operation device, and it

[0028] It is used to support the device mechanism, and it includes a device structure frame 1 welded or fixed with bolts and rivets using a section steel or an aluminum material with a certain thickness, and an elastic base 2 connected below the device structure frame 1. The bottom end of the device structure frame 1 is sleeved and connected to the vertical rod of the elastic base 2, and a frame unit;

[0029] It is used to convey the carbon fiber cloth, and it is attached to the device structure frame 1, and it includes a carbon fiber cloth storage disk 6 for storing the roll of carbon fiber cloth, a loose wheel 8 for transitioning to the bending part of the carbon fiber cloth conveying path, a conveying wheel 10 for moving and conveying the carbon fiber cloth, and a pulley group. The carbon fiber cloth storage disk 6 is movably and detachably attached below the rear end of the device structure frame 1. The loose wheel 8 is rotatably connected to the device structure frame 1. The conveying wheel 10 and the pulley group are both rotatably connected to the horizontal rod at the upper end of the device structure frame 1, and a transmission unit;

[0030] It is used to apply an adhesive to the top plate where the carbon fiber cloth needs to be laid, and it includes an adhesive storage tank 15 installed at the front end of the transmission unit, and a sealed air cylinder 16 connected to the bottom end of the adhesive storage tank 15. The adhesive storage tank 15 is attached to the device structure frame 1 via fixing bolts 17, and an adhesive application unit with an intake pipe 18 connected to one side of the bottom end of the sealed air cylinder 16. A device mechanism comprising;

[0031] It is provided below the device mechanism and is used to control and operate the device mechanism. Moreover, it includes a working platform frame 23 composed of welding a channel steel or an I-beam, an interlocking control box 24 fixedly attached to the working platform frame 23, and a laser scriber 28 movably connected to the working platform frame 23. The working platform frame 23 is supported on the lower surface of the elastic base 2. An exhaust port 25 communicating with the intake pipe 18 is provided at the upper end of the interlocking control box 24, and an air intake port 26 is provided at the lower end of the interlocking control box 24. The laser scriber 28 is attached to the telescopic bottom plate of the working platform frame 23, and a switch cable insertion hole 27 for passing through a low-voltage cable 31 electrically connected to an external power source is opened at the lower end of the interlocking control box 24, an apparatus operation platform,

[0032] It is at the bottom end of the automatic operation device and includes an auxiliary unit including an automatic elevator workbench 30 for supporting and arranging the apparatus operation platform and an air compressor communicating with the air intake port 26 through a ventilation pipe 32.

[0033] In an embodiment of the present invention, a base spring 4 is provided in a sleeve shape on the rod body of the vertical rod of the elastic base 2. Base stabilizer arms 3 installed in a cross shape at both ends of the elastic base 2 are rotatably connected. The upper ends of the base stabilizer arms 3 are rotatably connected to the device structure frame 1 through screws, and strip-shaped screw holes 5 for passing through the screws are opened at the upper ends of the base stabilizer arms 3. Thereby, the device structure frame 1 can be adjusted in height during the movement process. Moreover, it is suitable for laying a carbon fiber cloth on the top plate of the non-linear plane and can enhance the connection stability of the device structure frame 1.

[0034] In an embodiment of the present invention, to smoothly convey the carbon fiber cloth and make the length of conveying the carbon fiber cloth by the pulley group match the forward distance of the rear guide wheel 13, the pulley group includes a first pulley 9, a second pulley 11, and a third pulley 12, and synchronous rolling is achieved between the first pulley 9 and the second pulley 11 via a belt, and synchronous rolling is achieved between the second pulley 11 and the third pulley 12 via a belt. The front guide wheel 14 and the rear guide wheel 13 are rotatably connected to the front and rear ends of the horizontal bar at the upper end of the device structure frame 1 respectively.

[0035] In an embodiment of the present invention, at the end of the horizontal bar at the upper end of the device structure frame 1, an inclined scraper blade 19 is provided via a rotating shaft with a torsion spring installed in a sleeve shape, and the device structure frame 1 is connected with an extra adhesive storage groove 20 at a position directly below the scraper blade 19. After laying the carbon fiber cloth, the extruded extra adhesive can be smoothly scraped off and collected in the extra adhesive storage groove 20 so as not to drip onto the ground.

[0036] In an embodiment of the present invention, at the position where the carbon fiber cloth storage disk 6 is connected to the device structure frame 1, a damping adjustment bolt 7 is rotatably connected by a screw connection. Since the resistance to the carbon fiber cloth storage disk 6 can be adjusted by elastic rotation, the carbon fiber cloth storage disk 6 can rotate and convey the carbon fiber cloth smoothly.

[0037] Embodiment 2

[0038] As shown in FIGS. 1 to 6, an automatic operation device for a carbon fiber cloth reinforcement process,

[0039] which is at the upper end of the automatic operation device, also constitutes the main body structure of the automatic operation device, and it

[0040] It is used to support the device mechanism, and it includes a device structure frame 1 welded or fixed with bolts and rivets using a section steel or an aluminum material with a certain thickness, and an elastic base 2 connected below the device structure frame 1. A frame unit in which the bottom end of the device structure frame 1 is sleeved and connected to the vertical rod of the elastic base 2.

[0041] It is used to convey the carbon fiber cloth, and it is attached to the device structure frame 1. It includes a carbon fiber cloth storage disk 6 for storing the roll of carbon fiber cloth, a loose wheel 8 for transitioning to the bending part of the carbon fiber cloth conveying path, a conveying wheel 10 for moving and conveying the carbon fiber cloth, and a pulley group. The carbon fiber cloth storage disk 6 is movably and detachably attached below the rear end of the device structure frame 1. The loose wheel 8 is rotatably connected to the device structure frame 1. The conveying wheel 10 and the pulley group are both rotatably connected to the horizontal rod at the upper end of the device structure frame 1. A transmission unit.

[0042] It is used to apply an adhesive to the top plate where the carbon fiber cloth needs to be laid, and it includes an adhesive storage tank 15 installed at the front end of the transmission unit, and a sealed air cylinder 16 connected to the bottom end of the adhesive storage tank 15. The adhesive storage tank 15 is attached to the device structure frame 1 via fixing bolts 17. An adhesive application unit in which an intake pipe 18 is connected to one side of the bottom end of the sealed air cylinder 16. A device mechanism comprising.

[0043] It is provided below the device mechanism, used to control and operate the device mechanism, and it includes a framework 23 of a work platform constituted by welding I-beams or H-beams, an interlocking control box 24 fixedly attached to the framework 23 of the work platform, and a laser scriber 28 movably connected to the framework 23 of the work platform. The framework 23 of the work platform is supported on the lower surface of the elastic base 2. An exhaust port 25 communicating with the intake pipe 18 is provided at the upper end of the interlocking control box 24, and an intake port 26 is provided at the lower end of the interlocking control box 24. The laser scriber 28 is attached to the telescopic bottom plate of the framework 23 of the work platform. A switch cable insertion hole 27 for passing through a low-voltage cable 31 electrically connected to an external power source is opened at the lower end of the interlocking control box 24, and a device operation platform,

[0044] It is at the bottom end of the automatic operation device, and it includes an auxiliary unit including an automatic elevator workbench 30 for supporting and arranging the device operation platform and an air compressor communicating with the intake port 26 through a ventilation pipe 32.

[0045] In the implementation drawing of the present invention, a communication pipe 34 is vertically installed in the interlocking control box 24, a gear valve 37 is installed on the communication pipe 34, and a semi-circular gear 36 fixed and welded to the middle part of the rod body of a rotating rod 35 is meshed and connected to the gear of the gear valve 37. The central part of the rod body of the rotating rod 35 is rotatably connected to the box body of the interlocking control box 24. The bottom end of the rotating rod 35 is rotatably connected to the traction rod of a traction electromagnet 38. A spring 39 connected to the inner wall of the box body of the interlocking control box 24 is hung on the upper end of the rotating rod 35. A position regulating plate 40 for regulating the position of the rotating rod 35 is fixedly installed in the box body of the interlocking control box 24. A start switch 41 is connected in series to the power supply line connected to the traction electromagnet 38, and the start switch 41 is installed outside the box body of the interlocking control box 24. By opening and closing the start switch 41, the traction electromagnet 38 is controlled to pull and rotate the rotating rod 35, and further, the opening and closing of the communication pipe 34 can be realized.

[0046] In the embodiment of the present invention, there are two adhesive storage tanks 15, which are arranged in parallel, and brushes 21 are respectively connected to the adhesive discharge ports of the adhesive storage tanks 15. The intake pipes 18 of the sealed air cylinders 16 connected below the two adhesive storage tanks 15 communicate with the exhaust port 25 through a three-way valve 22. The two sealed air cylinders 16 are simultaneously pressurized with air, and further, the two adhesive storage tanks 15 can be controlled to extrude the adhesive and uniformly apply it to the top plate with the brushes 21.

[0047] In the embodiment of the present invention, a reflective glass plate 29 with one-way light transmissive mirror surface is installed directly above the laser scriber 28, and a positioning line 33 engraved on the top plate is presented on the reflective glass plate 29. The laser scriber 28 is used at any time for the line drawing and positioning of the carbon fiber cloth. It positions and draws a line on the top plate through the one-way mirror surface reflective glass plate 29. Since the upper part of the mirror glass plate is a mirror surface, the operator can clearly observe the positioning line 33 of the mirror reflection, check whether there is any deviation in the forward direction of the carbon fiber cloth, and correct it in a timely manner.

[0048] The principle of operation is as follows. First, attach the carbon fiber cloth storage disk 6 to the rear end of the device structure frame 1, wind the carbon fiber cloth around the idle wheel 8 and the pulley group, and then attach it to the top plate. Control the traction electromagnet 38 through the opening and closing of the start switch 41 to pull and rotate the rotating rod 35. Further, realize the opening and closing of the communication pipe 34. At the same time, perform ventilation and pressurization on the two sealed air cylinders 16, further control the two adhesive storage tanks 15 to extrude the adhesive, and apply it to the top plate with the brush 21. As the device moves forward, cover the adhesive part with the carbon fiber cloth. After laying the carbon fiber cloth, the scraper blade 19 evenly scrapes off the excess extruded adhesive, and collects it in the storage groove 20 for the excess adhesive to prevent it from dripping onto the ground.

[0049] Therefore, the embodiments are illustrative and non-limiting from any perspective. The scope of the present invention is limited not by the above description but by the appended claims, and thus, the present invention should be regarded as intended to include all modifications that fall within the meaning and scope of the equivalent requirements of the claims. Any reference signs in the claims should not be construed as limiting the relevant claims.

[0050] It should be noted that although this specification describes according to the embodiments, each embodiment only includes one independent technical solution, and such description in the specification is only for the purpose of clarification. Those skilled in the art should view the specification as a whole, and should understand that it is also possible to appropriately combine the technical solutions in each embodiment to form other embodiments that can be understood by those skilled in the art.

Claims

1. An automatic operation device for a carbon fiber cloth reinforcement process, The automatic operation device includes a device mechanism, a device operation platform, and an auxiliary unit, The device mechanism is, Located at the upper end of the automatic operation device, and also constitutes the main body structure of the automatic operation device, and it is, Used to support the device mechanism, and it includes a device structure frame (1) welded or fixed with bolts and rivets using a section steel or an aluminum material with a certain thickness, and an elastic base (2) connected below the device structure frame (1). The bottom end of the device structure frame (1) is sleeved and connected to the vertical rod of the elastic base (2), and a frame unit, Used to convey the carbon fiber cloth, and is attached to the device structure frame (1), and it includes a carbon fiber cloth storage disc (6) for storing the roll of carbon fiber cloth, a loose wheel (8) for transitioning to the bending part of the carbon fiber cloth conveyance path, a conveyance wheel (10) for moving and conveying the carbon fiber cloth, and a pulley group. The carbon fiber cloth storage disc (6) is movably and detachably attached below the rear end of the device structure frame (1). The loose wheel (8) is rotatably connected to the device structure frame (1). The conveyance wheel (10) and the pulley group are both rotatably connected to the horizontal rod at the upper end of the device structure frame (1), and a transmission unit, Used to apply an adhesive to the top plate where the carbon fiber cloth needs to be laid, and it includes an adhesive storage tank (15) installed at the front end of the transmission unit, and a sealed air cylinder (16) connected to the bottom end of the adhesive storage tank (15). The adhesive storage tank (15) is attached to the device structure frame (1) via fixing bolts (17), and an adhesive application unit with an intake pipe (18) connected to one side of the bottom end of the sealed air cylinder (16), The device operation platform is, It is provided below the device mechanism, used to control and operate the device mechanism, and it includes a framework (23) of a work platform formed by welding I-beams or H-beams, an interlocking control box (24) fixedly attached to the framework (23) of the work platform, and a laser scriber (28) movably connected to the framework (23) of the work platform. The framework (23) of the work platform is supported on the lower surface of the elastic base (2). An exhaust port (25) communicating with the intake pipe (18) is provided at the upper end of the interlocking control box (24), and an intake port (26) is provided at the lower end of the interlocking control box (24). The laser scriber (28) is attached to the telescopic bottom plate of the framework (23) of the work platform. A switch cable insertion hole (27) for passing through a low-voltage cable (31) electrically connected to an external power source is opened at the lower end of the interlocking control box (24). The auxiliary unit is at the bottom end of the automatic operation device, and it includes an automatic elevator workbench (30) for supporting and arranging the device operation platform, and an air compressor communicating with the intake port (26) through a ventilation pipe (32). The automatic operation device for the carbon fiber cloth reinforcement process is characterized by this.

2. A base spring (4) is provided in a sleeve shape on the rod body of the vertical rod of the elastic base (2). Base stabilizer arms (3) installed crosswise at both ends of the elastic base (2) are rotatably connected. The upper end of the base stabilizer arm (3) is rotatably connected to the device structure frame (1) via a screw, and a strip-shaped screw hole (5) for passing through the screw is opened at the upper end of the base stabilizer arm (3). The automatic operation device for the carbon fiber cloth reinforcement process according to claim 1 is characterized by this.

3. The pulley group includes a first pulley (9), a second pulley (11) and a third pulley (12), and synchronous rotation is achieved between the first pulley (9) and the second pulley (11) via a belt. Synchronous rotation is achieved between the second pulley (11) and the third pulley (12) via a belt. The front guide wheel (14) and the rear guide wheel (13) are rotatably connected to the front and rear ends of the horizontal bar at the upper end of the device structure frame (1) respectively. The automatic operation device for the carbon fiber cloth reinforcement process according to claim 1, characterized in that.

4. At the end of the horizontal bar at the upper end of the device structure frame (1), an inclined scraper blade (19) is provided via a rotating shaft with a torsion spring installed in a sleeve shape, and the device structure frame (1) is provided with an extra adhesive storage groove (20) at a position directly below the scraper blade (19). The automatic operation device for the carbon fiber cloth reinforcement process according to claim 1, characterized in that.

5. An attenuation adjustment bolt (7) is rotatably connected by a screw connection to the location where the carbon fiber cloth storage disk (6) is connected in the device structure frame (1). The automatic operation device for the carbon fiber cloth reinforcement process according to claim 1, characterized in that.

6. A communication pipe (34) is vertically installed in the interlocking control box (24), a gear valve (37) is installed on the communication pipe (34), and a semi-circular gear (36) fixed and welded to the middle part of the rod body of a rotating rod (35) meshes and connects with the gear of the gear valve (37). The central part of the rod body of the rotating rod (35) is rotatably connected to the box body of the interlocking control box (24). The bottom end of the rotating rod (35) is rotatably connected to the traction rod of a traction electromagnet (38). A spring (39) connected to the inner wall of the box body of the interlocking control box (24) is hung on the upper end of the rotating rod (35). A position regulating plate (40) for regulating the position of the rotating rod (35) is fixedly installed in the box body of the interlocking control box (24). A start switch (41) is connected in series to the power supply line connected to the traction electromagnet (38), and the start switch (41) is installed outside the box body of the interlocking control box (24). The automatic operation device for the carbon fiber cloth reinforcement process according to claim 1, characterized in that.

7. There are two of the adhesive storage tanks (15), which are arranged in parallel, and brushes (21) are respectively connected to the adhesive discharge ports of the adhesive storage tanks (15). The intake pipe (18) of the sealed air cylinder (16) connected below the two adhesive storage tanks (15) communicates with the exhaust port (25) via a three-way valve (22). The automatic operation device for the carbon fiber cloth reinforcement process according to claim 1, characterized in that.

8. A reflective glass plate (29) with one-way light transmissive mirror surface is mounted directly above the laser scriber (28), and positioning lines (33) engraved on the top plate are presented on the reflective glass plate (29). The automatic operation device for the carbon fiber cloth reinforcement process according to claim 1, characterized in that.

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