Equipment for anti-corrosion coating of 5G signal transmission devices

CN224632719UActive Publication Date: 2026-08-14SHENZHEN QIPAN SURFACE TREATMENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-02
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]传输器件在复杂环境中容易受到腐蚀,导致信号传输效率下降,甚至器件失效

Benefits of technology

[0013]本实用,将物件放置到安装框内框的输送机构上,控制电推杆推动底框在顶板下部位上升下降,在底框向下位移后,控制电机运作,通过皮带传动机构带动辊旋转,连接在辊外壁的吸管用于对输送机构输送来的物件的吸取,并通过连接在支撑柱底部的滑块在滑轨上滑动,从而可以将吸取的物件投入到镀层箱上开设的凹槽中,控制气缸运作,推动升降板以及连接块向下位移,连接在连接块外壁的竖条也将向上位移,并推动连接板以及箱内板向下位移,达到对处于镀层箱上槽口内的物件进行压制,而达到物件的稳定镀层,其结构更加优化、设计更加合理。

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Abstract

This utility model discloses a special anti-corrosion coating device for 5G signal transmission devices, including a substrate. Slide rails are fixedly connected to the top left and right sides of the substrate. A slider is slidably connected to the upper surface of the slide rails. A support column is fixedly connected to the top of the slider, and a top plate is fixedly connected to the end of the support column away from the slider. In this special anti-corrosion coating device for 5G signal transmission devices, a suction tube connected to the outer wall of the roller is used to pick up objects conveyed by the conveying mechanism. The object is then placed into a groove in the coating box by a slider connected to the bottom of the support column sliding on the slide rail. A controlled cylinder operates, pushing a lifting plate and a connecting block downwards. A vertical strip connected to the outer wall of the connecting block also moves upwards, pushing the connecting plate and the inner plate of the box downwards, thus pressing the object in the groove of the coating box and achieving a stable coating.
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Description

Technical Field

[0001] This utility model relates to the field of anti-corrosion coating, specifically to a device for anti-corrosion coating of 5G signal transmission devices. Background Technology

[0002] In modern communication systems, transmission devices are core components that ensure efficient and stable signal transmission. With technological advancements, especially driven by next-generation communication technologies such as 5G, the performance requirements for transmission devices are increasing. These devices need to maintain stable performance in various harsh environments, including high temperatures, high humidity, and corrosive gases.

[0003] Transmission devices are susceptible to corrosion in complex environments, leading to decreased signal transmission efficiency and even device failure. Traditional anti-corrosion methods, such as electroplating and electroless plating, can provide some protection, but they suffer from problems such as poor coating uniformity, insufficient adhesion, and limited corrosion resistance, failing to meet the requirements of high-performance transmission devices. Utility Model Content

[0004] The purpose of this invention is to provide a device for anti-corrosion coating of 5G signal transmission devices, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A device for applying an anti-corrosion coating to a 5G signal transmission device includes a substrate. Slide rails are fixedly connected to the top left and right sides of the substrate. A slider is slidably connected to the upper surface of the slide rails. A support column is fixedly connected to the top of the slider. A top plate is fixedly connected to the end of the support column away from the slider. A bracket is fixedly connected to the center of the top of the top plate. An electric actuator is installed at the center of the top of the bracket. The pushing end of the electric actuator penetrates the upper surface of the bracket and is fixedly connected to the upper surface of the top plate. Guide columns are penetrated to the left and right sides of the upper surface of the top plate. A bottom frame is fixedly connected to the bottom of the guide columns. A motor is installed inside the bottom frame. The driving end of the motor penetrates the inner wall of the bottom frame and is equipped with a belt drive mechanism.

[0007] As a further embodiment of this utility model: the driven shaft of the belt drive mechanism passes through the outer wall of the bottom frame and is fixedly connected to a roller, and a suction tube is fixedly connected to the lower surface of the outer wall of the roller.

[0008] As a further improvement of this utility model: a mounting frame is provided below the bottom frame, and a conveying assembly is installed on the inner frame of the mounting frame.

[0009] As a further embodiment of this utility model: a cylinder body is fixedly connected to the top center of the base plate, a lifting plate is installed on the pushing end of the cylinder body, and connecting blocks are fixedly connected to both the left and right sides of the lifting plate. The upper surface of the connecting blocks has openings on both the left and right sides, and concave parts are inserted into the openings.

[0010] As a further embodiment of this utility model: a vertical strip is fixedly connected to the outer wall of the connecting block, a connecting plate is fixedly connected to the top of the vertical strip, and an inner panel of the box is fixedly connected to the end of the connecting plate away from the vertical strip.

[0011] As a further embodiment of this utility model: a plating box is fixedly connected to the center of the upper surface of the lifting plate, a frame is fixedly connected to the back of the plating box, a cylinder is installed on the upper frame of the frame, a hinge is hinged to the pushing end of the cylinder, and a pressure plate is fixedly connected to the end of the hinge away from the cylinder.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] This utility model involves placing an object onto the conveying mechanism within the mounting frame. An electric actuator pushes the bottom frame up and down below the top plate. After the bottom frame moves downward, a motor is activated, driving a roller to rotate via a belt drive mechanism. A suction tube connected to the outer wall of the roller picks up the object conveyed by the conveying mechanism. The object slides along a slide rail via a slider connected to the bottom of a support column, allowing it to be placed into a groove on the plating box. A cylinder is then activated, pushing a lifting plate and connecting block downwards. A vertical bar connected to the outer wall of the connecting block moves upwards, pushing the connecting plate and the inner plate of the box downwards. This process presses the object within the groove of the plating box, achieving a stable plating layer. The structure is more optimized and the design more rational. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of a device for applying a corrosion-resistant coating to a 5G signal transmission device.

[0015] Figure 2 This is a diagram illustrating a device for applying a corrosion-resistant coating specifically for 5G signal transmission devices.

[0016] Figure 3 Equipment for anti-corrosion coating of 5G signal transmission devices Figure 2 Enlarged view of point A.

[0017] In the diagram: 1. Base plate; 2. Support column; 3. Top plate; 4. Mounting frame; 5. Slider; 6. Slide rail; 7. Coating box; 8. Bracket; 9. Connecting plate; 10. Inner plate of box; 11. Lifting plate; 12. Connecting block; 13. Concave part; 14. Vertical bar; 15. Cylinder; 16. Motor; 17. Pressure plate; 18. Hinge; 19. Frame; 20. Cylinder body; 21. Electric push rod; 22. Suction tube; 23. Roller; 24. Belt drive mechanism; 25. Guide column; 26. Bottom frame. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] Please see Figures 1-3 In this embodiment of the present invention, a device for anti-corrosion coating of 5G signal transmission devices includes a substrate 1. Slide rails 6 are fixedly connected to the top left and right sides of the substrate 1. A slider 5 is slidably connected to the upper surface of the slide rails 6. A support column 2 is fixedly connected to the top of the slider 5. A top plate 3 is fixedly connected to the end of the support column 2 away from the slider 5. A bracket 8 is fixedly connected to the center of the top of the top plate 3. An electric push rod 21 is installed at the center of the top of the bracket 8. The pushing end of the electric push rod 21 penetrates the upper surface of the bracket 8 and is fixedly connected to the upper surface of the top plate 3. Guide columns 25 are connected to the left and right sides of the upper surface of the top plate 3. A bottom frame 26 is fixedly connected to the bottom of the guide columns 25. A motor 16 is installed inside the bottom frame 26. The driving end of the motor 16 penetrates the inner wall of the bottom frame 26 and is equipped with a belt drive mechanism 24.

[0020] The driven shaft of the belt drive mechanism 24 passes through the outer wall of the bottom frame 26 and is fixedly connected to a roller 23. A suction tube 22 is fixedly connected to the lower surface of the outer wall of the roller 23.

[0021] A mounting frame 4 is provided below the bottom frame 26, and a conveying assembly is installed on the inner frame of the mounting frame 4.

[0022] A cylinder body 20 is fixedly connected to the top center of the base plate 1. A lifting plate 11 is installed on the pushing end of the cylinder body 20. Connecting blocks 12 are fixedly connected to both the left and right sides of the lifting plate 11. The upper surface of the connecting block 12 has openings on both the left and right sides, and a concave part 13 is inserted into the opening.

[0023] A vertical bar 14 is fixedly connected to the outer wall of the connecting block 12, a connecting plate 9 is fixedly connected to the top of the vertical bar 14, and an inner plate 10 is fixedly connected to the end of the connecting plate 9 away from the vertical bar 14.

[0024] A plating box 7 is fixedly connected to the center of the upper surface of the lifting plate 11. A frame 19 is fixedly connected to the back of the plating box 7. A cylinder 15 is installed on the upper frame of the frame 19. A hinge 18 is hinged to the pushing end of the cylinder 15. A pressure plate 17 is fixedly connected to the end of the hinge 18 away from the cylinder 15.

[0025] The working principle of this utility model is as follows:

[0026] In use, the object is placed on the conveying mechanism of the inner frame of the mounting frame 4. The electric push rod 21 is controlled to push the bottom frame 26 to rise and fall below the top plate 3. After the bottom frame 26 moves downward, the motor 16 is controlled to operate, and the roller 23 is driven to rotate through the belt drive mechanism 24. The suction tube 22 connected to the outer wall of the roller 23 is used to pick up the object conveyed by the conveying mechanism. The object is then slid on the slide rail 6 by the slider 5 connected to the bottom of the support column 2, so that the picked-up object can be put into the groove opened on the plating box 7.

[0027] The cylinder 15 of the frame 19 is pre-controlled to operate. The cylinder 15 pulls the hinge 18 upward to flip it up, so that the slot on the coating box 7 is exposed, making it convenient to put in objects.

[0028] The cylinder body 20 is controlled to operate, pushing the lifting plate 11 and the connecting block 12 to move downward. The vertical bar 14 connected to the outer wall of the connecting block 12 will also move upward, pushing the connecting plate 9 and the inner plate 10 of the box to move downward, thereby pressing the object in the slot of the plating box 7 to achieve a stable plating of the object.

[0029] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A device for the deposition of a corrosion-resistant coating for 5G signal transmission devices, comprising a substrate (1), characterized in that: The top left and right sides of the base plate (1) are fixedly connected to slide rails (6), the upper surface of the slide rails (6) is slidably connected to sliders (5), the top of the sliders (5) is fixedly connected to support columns (2), the end of the support columns (2) away from the sliders (5) is fixedly connected to a top plate (3), the top center of the top of the top plate (3) is fixedly connected to a bracket (8), the top center of the bracket (8) is equipped with an electric push rod (21), the pushing end of the electric push rod (21) penetrates the upper surface of the bracket (8) and is fixedly connected to the upper surface of the top plate (3), the left and right sides of the upper surface of the top plate (3) are connected to guide columns (25), the bottom of the guide columns (25) is fixedly connected to a bottom frame (26), the inner side of the bottom frame (26) is equipped with a motor (16), the driving end of the motor (16) penetrates the inner wall of the bottom frame (26) and is equipped with a belt drive mechanism (24).

2. The apparatus for a corrosion-resistant plating layer for a 5G signal transmission device according to claim 1, characterized in that: The driven shaft of the belt drive mechanism (24) passes through the outer wall of the bottom frame (26) and is fixedly connected to a roller (23). A suction tube (22) is fixedly connected to the lower surface of the outer wall of the roller (23).

3. The apparatus for a corrosion-resistant plating layer for a 5G signal transmission device according to claim 2, characterized in that: A mounting frame (4) is provided below the bottom frame (26), and a conveying assembly is installed on the inner frame of the mounting frame (4).

4. The apparatus for a corrosion resistant plating for a 5G signal transmission device according to claim 1, characterized in that: A cylinder body (20) is fixedly connected to the top center of the base plate (1). A lifting plate (11) is installed on the pushing end of the cylinder body (20). A connecting block (12) is fixedly connected to both the left and right sides of the lifting plate (11). The upper surface of the connecting block (12) has openings on both the left and right sides, and a concave part (13) is inserted at the opening.

5. The equipment for anti-corrosion coating of 5G signal transmission devices according to claim 4, characterized in that: The outer wall of the connecting block (12) is fixedly connected to a vertical strip (14), the top of the vertical strip (14) is fixedly connected to a connecting plate (9), and the end of the connecting plate (9) away from the vertical strip (14) is fixedly connected to an inner plate (10).

6. The equipment for anti-corrosion coating of 5G signal transmission devices according to claim 4, characterized in that: A plating box (7) is fixedly connected to the center of the upper surface of the lifting plate (11). A frame (19) is fixedly connected to the back of the plating box (7). A cylinder (15) is installed on the upper frame of the frame (19). A hinge (18) is hinged to the pushing end of the cylinder (15). A pressure plate (17) is fixedly connected to the end of the hinge (18) away from the cylinder (15).