Glass fiber reinforced plastic spraying machine with auxiliary positioning

By combining the connecting frame and the spraying machine, and using a servo motor and hydraulic pneumatic rod to drive the rubber cleaning brush belt for automated cleaning and positioning, the problem of dust in fiberglass spraying equipment is solved, and a highly efficient and uniform spraying effect is achieved.

CN115532507BActive Publication Date: 2026-04-10NANTONG QIANGZHENG COMPOSITE MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-07
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing fiberglass spraying equipment has difficulty effectively cleaning dust from the outside of the object during the positioning process, which affects the spraying effect and may lead to repeated spraying and uneven spraying.

Method used

It adopts a combination of connecting frame and spraying machine, and utilizes positioning components, adjustment components and cleaning disc design. The rubber cleaning brush belt is driven by servo motor and hydraulic pneumatic rod for automatic cleaning and positioning, and baffles are used to control the spraying range and dry.

Benefits of technology

It achieves automated dust cleaning during the fiberglass spraying process, avoiding uneven spraying and repeated spraying, and improving spraying efficiency and effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a glass fiber reinforced plastic spraying machine with auxiliary positioning, and relates to the technical field of spraying, which comprises a connecting frame and a spraying machine, a sliding channel is formed in the middle of the connecting frame, a second servo motor is fixedly installed at the rear of the sliding channel through screws, and the output end of the second servo motor is connected with a positioning assembly for fixing the glass fiber reinforced plastic. Through the design of the first hydraulic air rod at the outer column end of the connecting shaft, the position of the abutting plate can be driven to move, the first hydraulic air rod and the abutting plate are annularly distributed about the center of the connecting shaft, the user can support and limit from the inside through the continuous position movement of the abutting plate when the connecting shaft is in the hollow inside of the glass fiber reinforced plastic, and the whole connecting shaft can be driven to rotate through the design of the second servo motor, the angle of the assembly connected with the connecting shaft can be adjusted through the rotation of the connecting shaft, and the spraying range of the glass fiber reinforced plastic is increased.
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Description

TECHNICAL FIELD

[0001] The application relates to the field of spraying technology, and particularly relates to a glass fiber reinforced plastic (FRP) spraying machine with auxiliary positioning. BACKGROUND

[0002] The glass fiber reinforced plastic (FRP), also known as GFRP, is generally referred to as unsaturated polyester, epoxy resin and phenolic resin matrix reinforced with glass fiber. The reinforced plastic with glass fiber or its products as the reinforced material is called glass fiber reinforced plastic, or glass steel, which is different from tempered glass. The spraying equipment needs to be used when the glass steel is processed.

[0003] For example, the application with the application number 202110903754.8 discloses a glass fiber reinforced plastic storage tank spraying machine, which comprises a base. The application has the advantages that the glass fiber reinforced plastic storage tank is automatically intermittently rotated by a certain angle before spraying, so that the spraying range is fixed, and there is no repeated spraying phenomenon, and the spraying effect is better. In the process of automatic intermittent rotation of the glass fiber reinforced plastic storage tank, multiple connecting rods are driven to move synchronously, so that gas heating is always present in the heating box, the process of waiting for gas heating is avoided, and the heating efficiency is higher. Hot gas is sprayed from the air injection hole to heat and dry the sprayed surface after rotation, so that the solidification effect after spraying is better. However, it is inconvenient to clean the outside of the object according to the shape of the object while positioning the object, which affects the spraying effect due to dust on the outside of the object.

[0004] Therefore, in view of the above problems, the existing structure and defects are researched and improved, and the glass fiber reinforced plastic spraying machine with auxiliary positioning is provided. SUMMARY

[0005] The application aims to provide a glass fiber reinforced plastic spraying machine with auxiliary positioning to solve the problems in the background art.

[0006] In order to achieve the above object, the present application provides the following technical scheme: A glass fiber reinforced plastic spraying machine with auxiliary positioning, comprising a connecting frame and a spraying machine, a slide is formed in the middle of the connecting frame, a second servo motor is fixedly installed at the rear of the slide through screws, a positioning assembly for fixing the glass fiber reinforced plastic is connected to the output end of the second servo motor, the positioning assembly comprises a connecting shaft, a column, a first hydraulic air rod and a stop plate, the outer surface of the connecting shaft is provided with the column, the end of the column is provided with the first hydraulic air rod, the output end of the first hydraulic air rod is provided with the stop plate, an auxiliary disc is arranged outside one end of the connecting shaft close to the second servo motor, a vertical plate is installed at the upper end of the auxiliary disc, a third hydraulic air rod is arranged on the outer surface of the vertical plate, a cleaning disc is installed at the output end of the third hydraulic air rod, air pumps are arranged on both sides of the cleaning disc, air bags are connected to the air pumps through air pipes, a rubber cleaning brush belt is arranged outside the air bags, a first servo motor is arranged at the end of the rubber cleaning brush belt through a shaft, height adjusting assemblies are installed on both sides of the connecting frame, a spraying outer protective frame is arranged at the end of the height adjusting assemblies, and the spraying machine is arranged in the spraying outer protective frame.

[0007] Further, the outer surface of the first servo motor is provided with a motor outer frame, and the outer surface of the air pump is provided with a side frame.

[0008] Further, the adjusting assembly comprises a hydraulic cylinder, an electric sliding rail, a sliding block and a mounting column, the output end of the hydraulic cylinder is fixedly provided with the electric sliding rail, and the electric sliding rail is slidingly provided with the mounting column through the sliding block.

[0009] Further, the mounting column is fixedly connected with the spraying outer protective frame through bolts, and side fixing frames are arranged on both sides of the bottom of the spraying outer protective frame.

[0010] Further, the inner surface of the side fixing frame is provided with an adjusting assembly for position adjustment and angle adjustment, and the adjusting assembly comprises a second hydraulic air rod, a connecting frame, a guide shaft and a connecting sleeve plate.

[0011] Further, the outer surface of the connecting sleeve plate is provided with a baffle, and the baffle and the connecting sleeve plate are integrated.

[0012] Further, the connecting frame and the second hydraulic air rod are integrated, and the connecting frame is in the shape of a Chinese character.

[0013] Further, the inner surface of the baffle is provided with a placing cavity, and a heating plate is clamped and installed in the placing cavity.

[0014] Further, the column, the first hydraulic air rod and the stop plate are annularly distributed about the center of the connecting shaft, and the column, the first hydraulic air rod and the stop plate are provided with four groups.

[0015] Further, the side fixed frame and the baffle are provided with two groups, and the side fixed frame is tightly attached to the outer surface of the bottom of the spraying outer protection frame.

[0016] The glass fiber reinforced plastic spraying machine with auxiliary positioning has the following beneficial effects: the glass fiber reinforced plastic spraying machine with auxiliary positioning can drive the spraying outer protection frame to move horizontally and vertically through the design of the adjusting assembly, so that the spraying machine inside the spraying outer protection frame can move synchronously, which is beneficial to flexible adjustment of the position according to the size of the glass fiber reinforced plastic, and the glass fiber reinforced plastic can be supported and limited from the inside through the design of the positioning assembly, so that the spraying machine can be sprayed without obstruction from the outside, and the external surface of the glass fiber reinforced plastic can be cleaned through the design of the rubber cleaning brush belt in the cleaning disc before spraying, the rubber cleaning brush belt can blow the appropriate amount of gas into the air bag through the design of the air pump and the air pipe, the rubber cleaning brush belt can be loosened or rolled up through the expansion of the air bag and the synchronous cooperation of the design of the first servo motor and the shaft, the rubber cleaning brush belt is close to the center area of the cleaning disc through the expansion of the air bag, so that the position of the rubber cleaning brush belt can be adjusted according to the shape of the glass fiber reinforced plastic, the rubber cleaning brush belt can be attached to the external surface of the glass fiber reinforced plastic, the position of the cleaning disc can be moved through the design of the third hydraulic air rod, so that the external surface of the glass fiber reinforced plastic can be cleaned, the rubber cleaning brush belt can be replaced with a new one through the design of the first servo motor and the shaft after use, so that the new rubber cleaning brush belt can clean the external surface of the glass fiber reinforced plastic, avoid the influence of dust on the spraying effect, and the spraying range can be limited according to the required spraying range, so that the position of the sprayed paint is not repeatedly sprayed, and the spraying is thickened.

[0017] 1、The hydraulic cylinder, the electric sliding rail and the sliding block in the adjusting assembly can drive the spraying outer protection frame to move horizontally and vertically, so that the spraying machine inside the spraying outer protection frame can move synchronously, which is beneficial to flexible adjustment of the position according to the size of the glass fiber reinforced plastic, and the glass fiber reinforced plastic can be sprayed without manual operation of the user when the position of the glass fiber reinforced plastic is inconvenient after being limited.

[0018] 2、The first hydraulic air rod connected to the outer column end of the connecting shaft can drive the position movement of the abutting plate, and the first hydraulic air rod and the abutting plate are annularly distributed about the center of the connecting shaft, so that the user can support and limit from the inside by the continuous position movement of the abutting plate when the connecting shaft is in the internal hollow of the glass steel, and the whole connecting shaft can be driven to rotate by the design of the second servo motor, so that the angle of the components connected with the connecting shaft can be adjusted, the spraying range of the glass steel is increased, and the spraying is not affected by the limitation of the glass steel.

[0019] 3、The rubber cleaning brush belt in the cleaning disc can be used to clean the external surface of the glass steel before spraying, and the rubber cleaning brush belt can be inflated with an appropriate amount of gas in the air bag by the design of the air pump and the air pipe, so that the rubber cleaning brush belt can be loosened or rolled up by the expansion of the air bag and the design of the first servo motor and the shaft, so that the rubber cleaning brush belt is close to the center area of the cleaning disc, and the position of the rubber cleaning brush belt can be adjusted according to the shape of the glass steel, so that the rubber cleaning brush belt can be attached to the external surface of the glass steel, and the position of the cleaning disc can be moved by the design of the third hydraulic air rod, so that the external surface of the glass steel can be cleaned. After the rubber cleaning brush belt is used for a period of time, the first servo motor and the shaft can be used to roll up the used rubber cleaning brush belt and replace another new rubber cleaning brush belt, so that the new rubber cleaning brush belt can clean the external surface of the glass steel, and the dust on the external surface of the glass steel does not affect the spraying effect.

[0020] 4、The second hydraulic air rod in the side fixed frame can drive the synchronous position movement of the parts connected with the connecting frame, so that the position of the baffle can be moved, the specified spraying area can be shielded by the design of the baffle when spraying, the spraying range can be avoided, and the position of the end paint can be repeatedly sprayed when the paint is supplemented, so that the spraying is not thickened, and the angle of the baffle can be adjusted by the interaction between the connecting frame, the guide shaft and the connecting sleeve plate, so that the spraying limiting range can be controlled, and the position of the baffle can be moved by the second hydraulic air rod, so that the heating plate area in the baffle internal placing cavity is close to the spraying area, the spraying area can be dried, and the number of heating plates can be adjusted according to the spraying thickness. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a front view structural schematic diagram of a glass steel spraying machine with auxiliary positioning of the application;

[0022] Figure 2 It is a spraying outer protection frame side view internal structure schematic diagram of a glass steel spraying machine with auxiliary positioning of the application;

[0023] Figure 3 It is the internal structure schematic view of the cleaning disc of the glass fiber reinforced plastic spraying machine with auxiliary positioning of the application;

[0024] Figure 4 It is the internal structure schematic view of the side fixed frame and baffle connection of the glass fiber reinforced plastic spraying machine with auxiliary positioning of the application;

[0025] Figure 5 It is the side view connection structure schematic view of the connecting shaft of the glass fiber reinforced plastic spraying machine with auxiliary positioning of the application.

[0026] In the figure: 1, adapter frame; 2, adjustment assembly; 201, hydraulic cylinder; 202, electric sliding rail; 203, sliding block; 204, mounting column; 3, spraying outer protective frame; 4, slide; 5, positioning assembly; 501, connecting shaft; 502, column body; 503, first hydraulic gas rod; 504, stop plate; 6, auxiliary disc; 7, cleaning disc; 8, side frame; 9, motor outer frame; 10, first servo motor; 11, spraying machine; 12, side fixed frame; 13, baffle; 14, air pump; 15, rubber cleaning brush belt; 16, air bag; 17, adjustment assembly; 1701, second hydraulic gas rod; 1702, adapter frame; 1703, guide shaft; 1704, adapter sleeve plate; 18, placing cavity; 19, heating plate; 20, vertical plate; 21, third hydraulic gas rod; 22, second servo motor. DETAILED DESCRIPTION

[0027] Please refer to Figures 1-5The application provides a technical scheme: a glass fiber reinforced plastic spraying machine with auxiliary positioning, which comprises a connecting frame 1, an adjusting assembly 2, a hydraulic cylinder 201, an electric sliding rail 202, a sliding block 203, a mounting column 204, a spraying outer protection frame 3, a sliding channel 4, a positioning assembly 5, a connecting shaft 501, a column body 502, a first hydraulic cylinder 503, a resisting plate 504, an auxiliary disc 6, a cleaning disc 7, a side frame 8, a motor outer frame 9, a first servo motor 10, a spraying machine 11, a side fixing frame 12, a baffle 13, an air pump 14, a rubber cleaning brush belt 15, an air bag 16, an adjusting assembly 17, a second hydraulic cylinder 1701, a connecting frame 1702, a guide shaft 1703, a connecting sleeve plate 1704, a placing cavity 18, a heating plate 19, a vertical plate 20, a third hydraulic cylinder 21 and a second servo motor 22, a sliding channel 4 is formed in the middle of the connecting frame 1, a second servo motor 22 is fixedly installed at the rear of the sliding channel 4 through screws, a positioning assembly 5 for fixing the glass fiber reinforced plastic is connected to the output end of the second servo motor 22, the positioning assembly 5 comprises a connecting shaft 501, a column body 502, a first hydraulic cylinder 503 and a resisting plate 504, the outer surface of the connecting shaft 501 is provided with the column body 502, the end of the column body 502 is provided with the first hydraulic cylinder 503, the output end of the first hydraulic cylinder 503 is provided with the resisting plate 504, the column body 502, the first hydraulic cylinder 503 and the resisting plate 504 are annularly distributed about the center of the connecting shaft 501, the column body 502, the first hydraulic cylinder 503 and the resisting plate 504 are provided with four groups, the end of the connecting shaft 501 close to the second servo motor 22 is externally provided with an auxiliary disc 6, the upper end of the auxiliary disc 6 is provided with a vertical plate 20, the outer surface of the vertical plate 20 is provided with a third hydraulic cylinder 21, the output end of the third hydraulic cylinder 21 is provided with a cleaning disc 7, air pumps 14 are arranged on the two sides of the cleaning disc 7, the air pumps 14 are connected with air bags 16 through air pipes, the outer part of the air bag 16 is provided with a rubber cleaning brush belt 15, the end of the rubber cleaning brush belt 15 is provided with a first servo motor 10 through a shaft, the outer part of the first servo motor 10 is provided with a motor outer frame 9, the outer part of the air pump 14 is provided with a side frame 8, the side frame 8 and the air pump 14 are one-to-one correspondingly distributed, the adjusting assemblies 2 for height adjustment are arranged on the two sides of the connecting frame 1, the end of the adjusting assembly 2 is provided with the spraying outer protection frame 3, and the spraying machine 11 is arranged in the spraying outer protection frame 3.

[0028] Specific operation as follows, through the design of the first hydraulic air rod 503 connected to the outer column body 502 end of the connecting shaft 501, the position of the abutting plate 504 can be driven to move, and the first hydraulic air rod 503 and the abutting plate 504 are annularly distributed about the center of the connecting shaft 501, so that the user can support and limit from the inside by continuously moving the position of the abutting plate 504 when the connecting shaft 501 is in the glass steel internal hollow, and the whole connecting shaft 501 can also be driven to rotate by the design of the second servo motor 22, so as to facilitate the adjustment of the angle of the components connected with the connecting shaft 501 by rotating the connecting shaft 501, increase the spraying range of the glass steel, and meanwhile will not affect the spraying due to the limiting of the glass steel, and the glass steel external surface can be cleaned by the design of the rubber cleaning brush belt 15 in the cleaning disc 7 before spraying the glass steel, and the rubber cleaning brush belt 15 can blow a proper amount of gas into the air bag 16 by the design of the air pump 14 and the air pipe, and by the inflation of the air bag 16, the rubber cleaning brush belt 15 can be loosened or rolled up by the synchronous cooperation of the design of the first servo motor 10 and the shaft, so that the rubber cleaning brush belt 15 is close to the center area of the cleaning disc 7, the position of the rubber cleaning brush belt 15 can be adjusted according to the shape of the glass steel, the rubber cleaning brush belt 15 can be attached to the external surface of the glass steel, the position of the cleaning disc 7 can be driven to move by the design of the third hydraulic air rod 21, so as to clean the external surface of the glass steel, and after the use of the rubber cleaning brush belt 15, the used rubber cleaning brush belt 15 can be rolled up and replaced with a new one by the design of the first servo motor 10 and the shaft, so that the new rubber cleaning brush belt 15 can clean the external surface of the glass steel, avoiding the influence of dust on the external surface of the glass steel on the spraying effect;

[0029] Please refer to Figure 1 The adjusting assembly 2 comprises a hydraulic cylinder 201, an electric sliding rail 202, a sliding block 203 and a mounting column 204, the output end of the hydraulic cylinder 201 is fixedly installed with the electric sliding rail 202, and the electric sliding rail 202 is slidably provided with the mounting column 204 through the sliding block 203;

[0030] Specific operation as follows, through the design of the hydraulic cylinder 201, the electric sliding rail 202 and the sliding block 203 in the adjusting assembly 2, the spraying outer frame 3 can be driven to move horizontally and vertically, so that the spraying machine 11 in the spraying outer frame 3 can move synchronously, which is beneficial to the flexible adjustment of the position according to the size of the glass steel, and facilitates the spraying treatment of the glass steel in the case that the position of the glass steel after limiting is inconvenient, without manual operation by the user;

[0031] Please refer to Figure 1 and Figure 4The mounting column 204 is fixed with the spraying outer frame 3 through bolts, and the spraying outer frame 3 is provided with a side fixed frame 12 on both sides of the bottom. The side fixed frame 12 and the baffle 13 are provided with two groups, and the side fixed frame 12 is tightly combined with the bottom outer surface of the spraying outer frame 3. The inside of the side fixed frame 12 is provided with an adjusting assembly 17 for position adjustment and angle adjustment. The adjusting assembly 17 comprises a second hydraulic air rod 1701, a connecting frame 1702, a guide shaft 1703 and a connecting sleeve plate 1704. The output end of the second hydraulic air rod 1701 is provided with the connecting frame 1702, and the inside of the connecting frame 1702 is provided with the guide shaft 1703. The outside of the guide shaft 1703 is rotatably provided with the connecting sleeve plate 1704. The outer surface of the connecting sleeve plate 1704 is provided with the baffle 13, and the baffle 13 and the connecting sleeve plate 1704 are an integrated structure. The connecting frame 1702 and the second hydraulic air rod 1701 are an integrated structure, and the connecting frame 1702 is in the shape of a Chinese character “fang”. The inside of the baffle 13 is provided with a placing cavity 18, and the inside of the placing cavity 18 is clamped with a heating plate 19. The heating plate 19 is provided with two groups.

[0032] Specific operation is as follows. The design of the second hydraulic air rod 1701 in the side fixed frame 12 can drive the parts connected with the connecting frame 1702 to move synchronously, so as to move the position of the baffle 13. When spraying the specified area, the baffle 13 can be used to shield the area, avoid over-spraying, and avoid repeated spraying of the end of the paint, which can cause the paint to thicken. The baffle 13 can be adjusted in angle through the interaction between the connecting frame 1702, the guide shaft 1703 and the connecting sleeve plate 1704, so as to control the spraying range. The position of the baffle 13 can be moved by the second hydraulic air rod 1701, so that the heating plate 19 in the placing cavity 18 of the baffle 13 can be close to the spraying area, so as to dry the spraying area. The number of heating plates 19 can be adjusted according to the spraying thickness.

[0033] In summary, the glass fiber reinforced plastic spraying machine with auxiliary positioning, in use, first, through the design of the first hydraulic air rod 503 connected to the outer column 502 end of the connecting shaft 501, the position of the abutting plate 504 can be moved, and the first hydraulic air rod 503 and the abutting plate 504 are annularly distributed about the center of the connecting shaft 501, which facilitates the user to support and limit the position from the inside when the connecting shaft 501 is in the internal hollow of the glass fiber reinforced plastic, and also can use the design of the second servo motor 22 to drive the entire connecting shaft 501 to rotate, through the rotation of the connecting shaft 501, it is convenient to adjust the angle of the components connected with the connecting shaft 501, increase the spraying range of the glass fiber reinforced plastic, and at the same time will not affect the spraying due to the limiting of the glass fiber reinforced plastic, before spraying the glass fiber reinforced plastic, the design of the rubber cleaning brush belt 15 in the cleaning disc 7 can be used to clean the external surface of the glass fiber reinforced plastic, and the rubber cleaning brush belt 15 can use the design of the air pump 14 and the air pipe to blow a proper amount of gas into the air bag 16, through the inflation of the air bag 16, the design of the first servo motor 10 and the shaft can relax or wind the rubber cleaning brush belt 15, and the inflation of the air bag 16 makes the rubber cleaning brush belt 15 close to the center area of the cleaning disc 7, which is convenient for adjusting the position of the rubber cleaning brush belt 15 according to the shape of the glass fiber reinforced plastic, and the rubber cleaning brush belt 15 is convenient for adhering to the external surface of the glass fiber reinforced plastic, and the design of the third hydraulic air rod 21 can drive the position of the cleaning disc 7 to move, so as to realize the cleaning of the external surface of the glass fiber reinforced plastic, after the use of one end of the rubber cleaning brush belt 15, the design of the first servo motor 10 and the shaft can be used to wind the rubber cleaning brush belt 15 used currently and replace another new rubber cleaning brush belt 15, which is convenient for the new rubber cleaning brush belt 15 to clean the external surface of the glass fiber reinforced plastic, avoid the influence of dust on the external surface of the glass fiber reinforced plastic on the spraying effect, then through the design of the hydraulic cylinder 201, the electric sliding rail 202 and the sliding block 203 in the adjusting assembly 2, the spraying outer protection frame 3 can be driven to move horizontally and vertically, which is convenient for the spraying machine 11 in the spraying outer protection frame 3 to move synchronously, which is convenient for the spraying machine 11 to move to spray the glass fiber reinforced plastic, finally, through the design of the second hydraulic air rod 1701 in the side fixed frame 12, the parts connected with the connecting frame 1702 can be driven to move synchronously, so as to move the baffle 13, which is convenient for shielding the specified spraying area by the design of the baffle 13 when spraying, avoiding over-spraying, and avoiding repeated spraying of the position of the end paint when re-spraying, which can cause the spraying to thicken, and the baffle 13 can adjust the angle through the interaction between the connecting frame 1702, the guide shaft 1703 and the connecting sleeve plate 1704, which is convenient for controlling the spraying limiting range, and also can drive the position of the baffle 13 to move through the second hydraulic air rod 1701, so that the heating plate 19 area in the placing cavity 18 of the baffle 13 is close to the spraying area, which is convenient for drying the spraying area,And also can according to the spraying thickness adjustment heating plate board 19 quantity, can improve the drying effect after glass steel spraying.

[0034] Embodiments of the application are presented for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the precise form disclosed. Many modifications and variations are possible in light of the above teachings. Embodiments are chosen and described in order to provide the best illustration of the principles and actual practice of the application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

Claims

1. A fiberglass spraying machine with auxiliary positioning, characterized in that, The assembly includes a connecting frame (1) and a spraying machine (11). A slide rail (4) is provided in the middle of the connecting frame (1), and a second servo motor (22) is fixedly installed behind the slide rail (4) by screws. The output end of the second servo motor (22) is connected to a positioning component (5) for fixing the fiberglass. The positioning component (5) includes a connecting shaft (501), a column (502), a first hydraulic rod (503), and a stop plate (504). The column (502) is installed on the outer surface of the connecting shaft (501), and the first hydraulic rod (503) is provided at the end of the column (502). The stop plate (504) is installed at the output end of the first hydraulic rod (503). The connecting shaft (501) is externally positioned near the second servo motor (22). An auxiliary plate (6) is provided, and a vertical plate (20) is installed on the upper end of the auxiliary plate (6). A third hydraulic air rod (21) is provided on the outer surface of the vertical plate (20), and a cleaning plate (7) is installed at the output end of the third hydraulic air rod (21). An air pump (14) is provided on both sides of the cleaning plate (7), and the air pump (14) is connected to an air bag (16) through an air pipe. A rubber cleaning brush belt (15) is provided on the outside of the air bag (16), and a first servo motor (10) is provided at the end of the rubber cleaning brush belt (15) through a shaft. An adjustment component (2) for height adjustment is installed on both sides of the connecting frame (1), and a spraying outer protective frame (3) is provided at the end of the adjustment component (2). The spraying machine (11) is located inside the spraying outer protective frame (3).

2. The fiberglass spraying machine with auxiliary positioning according to claim 1, characterized in that, The first servo motor (10) is provided with a motor frame (9) on its exterior, and the air pump (14) is provided with a side frame (8) on its exterior, and the side frame (8) and the air pump (14) are distributed in a one-to-one correspondence.

3. The fiberglass spraying machine with auxiliary positioning according to claim 1, characterized in that, The adjustment assembly (2) includes a hydraulic cylinder (201), an electric slide rail (202), a slider (203), and a mounting post (204). The output end of the hydraulic cylinder (201) is fixedly mounted with the electric slide rail (202), and the electric slide rail (202) is slidably mounted with the mounting post (204) via the slider (203).

4. A fiberglass spraying machine with auxiliary positioning according to claim 3, characterized in that, The mounting column (204) is fixed to the sprayed outer protective frame (3) by bolts, and the bottom sides of the sprayed outer protective frame (3) are both equipped with side-mounted fixing frames (12).

5. A fiberglass spraying machine with auxiliary positioning according to claim 4, characterized in that, The side-mounted fixed frame (12) is provided with an adjustment component (17) for position and angle adjustment. The adjustment component (17) includes a second hydraulic rod (1701), a connecting frame (1702), a guide shaft (1703), and a connecting sleeve (1704). The output end of the second hydraulic rod (1701) is equipped with the connecting frame (1702), and the guide shaft (1703) is installed inside the connecting frame (1702). The connecting sleeve (1704) is rotatably provided on the outside of the guide shaft (1703).

6. A fiberglass spraying machine with auxiliary positioning according to claim 5, characterized in that, A baffle (13) is installed on the outer surface of the connecting sleeve (1704), and the baffle (13) and the connecting sleeve (1704) are an integrated structure.

7. A fiberglass spraying machine with auxiliary positioning according to claim 5, characterized in that, The connection frame (1702) and the second hydraulic air rod (1701) are of an integrated structure, and the connection frame (1702) is in a "C" shape.

8. A fiberglass spraying machine with auxiliary positioning according to claim 6, characterized in that, A placement cavity (18) is formed inside the baffle plate (13), and a heating plate (19) is snap-fitted inside the placement cavity (18). Two groups of heating plates (19) are provided.

9. A fiberglass spraying machine with auxiliary positioning according to claim 1, characterized in that, The cylinder (502), the first hydraulic air rod (503), and the abutting plate (504) are annularly distributed about the center of the connecting shaft (501), and four groups of the cylinder (502), the first hydraulic air rod (503), and the abutting plate (504) are provided.

10. A fiberglass spraying machine with auxiliary positioning according to claim 6, characterized in that, Two groups of the side fixed frames (12) and the baffle plates (13) are provided, and the side fixed frames (12) are in close contact with the outer bottom surface of the spraying outer frame (3).

Citation Information

Patent Citations

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    CN113333212B

  • Large-scale pipe outer-side coating spraying device

    CN110280416A

  • Multi-medium spraying device for RTV coating of transformer substation insulator

    CN216965070U