Tower pole infrared camera device convenient to disassemble and assemble

By designing the installation and monitoring components, the problem of inconvenient installation of infrared cameras on towers has been solved, enabling convenient disassembly and assembly as well as efficient monitoring, thus improving the practicality and efficiency of the device.

CN224265053UActive Publication Date: 2026-05-19SHANGHAI JINGMU TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI JINGMU TECH CO LTD
Filing Date
2025-07-17
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing infrared camera devices are not easy to adapt to different types of towers for fixed installation, resulting in complicated installation, increased manual labor intensity, and reduced efficiency and practicality.

Method used

The installation components include a limit cylinder, limit rod, return spring, threaded mounting groove, and mounting bolts, enabling convenient installation of the infrared camera device. The monitoring components use a servo motor and gear system for angle adjustment, and are powered by photovoltaic panels and batteries, improving the device's practicality and efficiency.

Benefits of technology

It enables convenient installation and removal of infrared camera devices, reduces manual lifting, avoids blind spots in monitoring, and improves installation efficiency and overall practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tower pole infrared camera device convenient to disassemble and assemble, and relates to the technical field of tower poles, the tower pole infrared camera device comprises a control host, mounting back plates and a mounting assembly, the mounting back plates are distributed at the rear end of the control host, and the mounting assembly is arranged at the rear end of the control host. The mounting assembly comprises a butt-joint mounting frame, limiting cylinders, limiting rods, reset springs, threaded mounting grooves, mounting bolts, mounting butt-joint blocks and limiting through holes, the limiting cylinders are mounted on the two sides of the outer portion of the butt-joint mounting frame, the limiting rods are connected into the limiting cylinders, and the reset springs are arranged in the limiting cylinders outside the limiting rods; a threaded mounting groove is formed in the front end of the interior of the butt joint mounting frame, and a mounting bolt is connected into the threaded mounting groove. The tower pole infrared camera device convenient to disassemble and assemble can adapt to different types of tower poles to be fixedly installed, meanwhile, disassembly is convenient and fast, manual lifting is reduced, and the overall practicability and use efficiency of the infrared camera device are improved.
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Description

Technical Field

[0001] This utility model relates to the field of tower technology, specifically to an infrared camera device for towers that is easy to assemble and disassemble. Background Technology

[0002] Towers are pole-shaped or tower-shaped structures used to support and fix power transmission lines. They are usually made of steel or reinforced concrete. Their main function is to ensure a safe distance between the conductors and ground wires of the transmission line and between the transmission line and the ground, thereby ensuring the stability and safety of power transmission. Towers play a vital role in the power system. Different types of towers have their own unique designs and advantages based on their stress characteristics and application scenarios, together forming the infrastructure of the power transmission network. Infrared camera devices for towers are devices installed on transmission line towers, mainly used to monitor the status of transmission lines and potential safety hazards. These devices usually combine visible light and infrared light video monitoring technologies, enabling real-time acquisition of images and temperature data of the line, timely detection and handling of various faults and potential hazards. However, existing infrared camera devices still have the following shortcomings:

[0003] When using existing infrared camera devices, the installation process is relatively complicated and labor-intensive because most infrared camera devices are not easy to adapt to different types of towers for fixed installation. This results in certain limitations in the use of infrared camera devices, leading to a decrease in their practicality and efficiency. Utility Model Content

[0004] The purpose of this invention is to provide an infrared camera device for towers that is easy to assemble and disassemble, 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: an infrared camera device for towers that is easy to assemble and disassemble, comprising a control host, a mounting backplate, and a mounting assembly. The mounting backplate is distributed at the rear end of the control host, and the mounting assembly is provided at the rear end of the control host. The mounting assembly includes a docking mounting frame, a limiting cylinder, a limiting rod, a return spring, a threaded mounting groove, a mounting bolt, a mounting docking block, and a limiting through hole. Limiting cylinders are installed on both sides of the outside of the docking mounting frame, and a limiting rod is connected inside the limiting cylinder. A return spring is provided inside the limiting cylinder outside the limiting rod. A threaded mounting groove is opened at the front end of the inside of the docking mounting frame, and a mounting bolt is connected inside the threaded mounting groove. A mounting docking block is connected inside the docking mounting frame, and limiting through holes are opened on both sides inside the mounting docking block. A monitoring assembly is provided at the lower end of the outside of the control host.

[0006] Furthermore, the limiting rod and the limiting cylinder are embedded in each other, and the limiting rod is elastically connected to the limiting cylinder through a return spring.

[0007] Furthermore, the external dimensions of the limiting rod are adapted to the internal dimensions of the limiting through hole, and the limiting rod is embeddedly connected to the mounting docking block through the limiting through hole.

[0008] Furthermore, the internal dimensions of the threaded mounting groove are adapted to the external dimensions of the mounting bolt, and the mounting bolt is rotatably connected to the mating mounting frame through the threaded mounting groove.

[0009] Furthermore, the monitoring component includes a servo motor, a drive gear, a driven gear, and a camera body. The front end of the servo motor is connected to the drive gear, and the driven gear meshes with the drive gear externally. The camera body is installed at the lower end of the driven gear.

[0010] Furthermore, the monitoring component also includes a battery, a movable mounting bracket, and a photovoltaic panel body. The battery is installed in the middle of the upper part of the control host, and the movable mounting bracket is installed in the middle of the upper part of the battery. The photovoltaic panel body is installed on the upper part of the movable mounting bracket.

[0011] Furthermore, the outer side of the camera body is horizontally distributed with the outer side of the control host, and the camera body is rotatably connected to the control host through a driven gear.

[0012] Furthermore, the outer side of the photovoltaic panel body is horizontally distributed with the outer side of the battery, and the photovoltaic panel body is rotatably connected to the battery through a movable mounting frame.

[0013] This utility model provides an infrared camera device for towers that is easy to assemble and disassemble, and has the following beneficial effects:

[0014] 1. This utility model, through the design of the installation components, enables the use of infrared cameras on towers that are easy to assemble and disassemble. A return spring allows the limiting rod and limiting cylinder to elastically connect, allowing the mounting block to be installed inside the mounting frame. Simultaneously, the limiting through-hole, in conjunction with the limiting rod, limits the mounting block's installation within the mounting frame. Mounting bolts then secure the mounting block within the mounting frame, eliminating the need for manual lifting during infrared camera installation. Furthermore, a suitable mounting backplate can be pre-selected and fixed to the tower, making the assembly and disassembly of the infrared camera relatively time-saving and labor-saving, thus improving the overall ease of installation.

[0015] 2. This utility model, through the setting of the monitoring component, enables the use of an infrared camera device on a tower pole that is easy to assemble and disassemble. The servo motor drives the drive gear to rotate, causing the driven gear connected to the outside of the drive gear to rotate accordingly. This, in turn, drives the camera body mounted at the lower end of the driven gear to adjust its angle, ensuring that the camera body has no blind spots during use. The battery is fixedly installed in the middle of the upper part of the control host, and the movable mounting bracket installed on the upper part of the battery allows the photovoltaic panel body to be adjusted in angle. The battery stores the electrical energy converted from light energy and uses it to power the components on the device, improving the overall practicality and efficiency of the infrared camera device. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of an infrared camera device for tower poles that is easy to assemble and disassemble according to the present invention;

[0017] Figure 2 This is a three-dimensional sectional view of the unfolded structure of the installation component of an infrared camera device for towers that is easy to assemble and disassemble according to this utility model;

[0018] Figure 3 This is a three-dimensional structural diagram of the monitoring component of an infrared camera device for tower poles that is easy to assemble and disassemble.

[0019] In the diagram: 1. Control host; 2. Mounting backplate; 3. Mounting components; 301. Docking mounting frame; 302. Limiting cylinder; 303. Limiting rod; 304. Return spring; 305. Threaded mounting groove; 306. Mounting bolt; 307. Mounting docking block; 308. Limiting through hole; 4. Monitoring components; 401. Servo motor; 402. Drive gear; 403. Driven gear; 404. Camera body; 405. Battery; 406. Movable mounting bracket; 407. Photovoltaic panel body. Detailed Implementation

[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0021] like Figures 1 to 3As shown, an infrared camera device for towers that is easy to assemble and disassemble includes a control host 1, a mounting back plate 2, and a mounting assembly 3. The mounting back plate 2 is located at the rear end of the control host 1, and the mounting assembly 3 is located at the rear end of the control host 1. The mounting assembly 3 includes a docking mounting frame 301, a limiting cylinder 302, a limiting rod 303, a return spring 304, a threaded mounting groove 305, a mounting bolt 306, a mounting docking block 307, and a limiting through hole 308. The limiting cylinders 302 are installed on both sides of the docking mounting frame 301, and the limiting rod 303 is connected inside the limiting cylinder 302. A return spring is provided inside the limiting cylinder 302 outside the limiting rod 303. Spring 304, threaded mounting groove 305 is provided at the front end of the mating mounting frame 301, and mounting bolt 306 is connected inside the threaded mounting groove 305. Mounting block 307 is connected inside the mating mounting frame 301, and limiting through holes 308 are provided on both sides of the mounting block 307. Limiting rod 303 is embeddedly connected to limiting cylinder 302, and the limiting rod 303 is elastically connected to the limiting cylinder 302 via a return spring 304. The external dimensions of the limiting rod 303 are adapted to the internal dimensions of the limiting through holes 308, and the limiting rod 303 is embeddedly connected to the mounting block 307 via the limiting through holes 308. Threaded mounting groove 304, threaded mounting groove 305, threaded mounting frame 304, threaded mounting block 307, threaded mounting frame 304, threaded mounting block 305 ... 5. The internal dimensions of the mounting bolt 306 are adapted to the external dimensions of the mounting bolt 306, and the mounting bolt 306 is rotatably connected to the mating mounting frame 301 through the threaded mounting groove 305. The limiting cylinder 302 is fixedly installed on both sides of the mating mounting frame 301 by the fastening bolts. The limiting rod 303 is installed into the limiting cylinder 302, and the limiting rod 303 and the limiting cylinder 302 are elastically connected with the return spring 304. The internal dimensions of the mating mounting frame 301 are adapted to the external dimensions of the mounting mating block 307 set on the outside of the mounting back plate 2, so that the mounting mating block 307 is installed into the mating mounting frame 301. At the same time, the mounting mating block 307 is installed inside the mounting frame 301. The internal dimensions of the limiting through holes 308 on both sides of the device are adapted to the external dimensions of the limiting rod 303. Thus, the mounting block 307 is limited and installed inside the mounting frame 301 through the limiting through holes 308 and the limiting rod 303. At the same time, the mounting bolt 306 is rotated and installed into the threaded mounting groove 305. The mounting bolt 306 is used to fix the mounting block 307 inside the mounting frame 301, avoiding manual lifting during the installation of the infrared camera device. In addition, the appropriate mounting back plate 2 can be selected in advance and fixed to the tower, making the disassembly and assembly of the infrared camera device relatively time-saving and labor-saving, and improving the overall ease of installation of the infrared camera device.

[0022] like Figures 1 to 3As shown, a monitoring component 4 is installed at the lower external end of the control host 1. The monitoring component 4 includes a servo motor 401, a drive gear 402, a driven gear 403, and a camera body 404. The front end of the servo motor 401 is connected to the drive gear 402, and the driven gear 403 meshes with the drive gear 402. The camera body 404 is installed at the lower end of the driven gear 403. The monitoring component 4 also includes a battery 405, a movable mounting bracket 406, and a photovoltaic panel body 407. The battery 405 is installed in the middle of the upper part of the control host 1, and the movable mounting bracket 406 is installed in the middle of the upper part of the battery 405. The photovoltaic panel body 407 is installed on the upper part of the movable mounting bracket 406. The outer side of the camera body 404 is horizontally distributed with the outer side of the control host 1, and the camera body 404 is rotatably connected to the control host 1 through the driven gear 403. The outer side of the photovoltaic panel body 407 is horizontally distributed with the outer side of the battery 405, and the light... The photovoltaic panel body 407 is rotatably connected to the battery 405 via a movable mounting bracket 406. The servo motor 401 is fixedly mounted on the lower rear end of the control host 1 by fastening bolts. The output shaft of the servo motor 401 is connected to the drive gear 402 via a coupling. The operation of the servo motor 401 drives the drive gear 402 to rotate, causing the driven gear 403 connected to the drive gear 402 to rotate accordingly. This, in turn, drives the camera body 404 mounted at the lower end of the driven gear 403 to adjust its angle, ensuring that the camera body 404 has no blind spots during use. The battery 405 is fixedly mounted on the upper middle part of the control host 1. The movable mounting bracket 406 mounted on the upper end of the battery 405 allows the photovoltaic panel body 407 to adjust its operating angle accordingly. The battery 405 stores the electrical energy converted from light energy and supplies power to the components on the device, improving the overall practicality and efficiency of the infrared camera device.

[0023] In summary, this easily detachable infrared camera device for towers is designed for convenient installation and disassembly. First, the return spring 304 elastically connects the limiting rod 303 and the limiting cylinder 302. Then, the mounting block 307 is installed into the mounting frame 301. Simultaneously, the limiting through hole 308, in conjunction with the limiting rod 303, secures the mounting block 307 within the mounting frame 301. Finally, the mounting bolts 306 secure the mounting block 307 within the mounting frame 301. This eliminates the need for manual lifting during installation and allows for easy assembly and disassembly of the infrared camera device, as a suitable mounting backplate 2 can be pre-selected and fixed to the tower. In a time-saving and labor-saving manner, the servo motor 401 drives the drive gear 402 to rotate, causing the driven gear 403 connected to the drive gear 402 to rotate accordingly. This, in turn, drives the camera body 404 mounted at the lower end of the driven gear 403 to adjust its angle, ensuring that the camera body 404 has no blind spots during use. The movable mounting bracket 406 mounted on the upper end of the battery 405 allows the photovoltaic panel body 407 to adjust its angle accordingly. The battery 405 stores the electrical energy converted from light energy and uses it to power the components on the device, improving the overall practicality and efficiency of the infrared camera device.

[0024] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. An infrared camera device for tower pole which is convenient to disassemble, comprising a control host (1), a mounting backboard (2) and a mounting assembly (3), characterized in that, The control host (1) has a mounting backplate (2) distributed at its rear end. The control host (1) has a mounting assembly (3) at its rear end. The mounting assembly (3) includes a docking mounting frame (301), a limiting cylinder (302), a limiting rod (303), a reset spring (304), a threaded mounting groove (305), a mounting bolt (306), a mounting docking block (307), and a limiting through hole (308). The docking mounting frame (301) has limiting cylinders (302) installed on both sides of its exterior. The limiting cylinders (302) have internal connections that are limited. The positioning rod (303) is provided with a reset spring (304) inside the external limiting cylinder (302) of the positioning rod (303). The front end of the docking mounting frame (301) is provided with a threaded mounting groove (305), and the threaded mounting groove (305) is connected with a mounting bolt (306). The docking mounting frame (301) is connected with a mounting docking block (307), and the mounting docking block (307) has limiting through holes (308) on both sides inside. The lower end of the control host (1) is provided with a monitoring component (4).

2. The infrared camera device for tower pole according to claim 1, wherein The limiting rod (303) is embedded in the limiting cylinder (302), and the limiting rod (303) is elastically connected to the limiting cylinder (302) through a return spring (304).

3. The infrared camera device for tower pole according to claim 1, wherein, The external dimensions of the limiting rod (303) are adapted to the internal dimensions of the limiting through hole (308), and the limiting rod (303) is embeddedly connected to the mounting docking block (307) through the limiting through hole (308).

4. The infrared camera device for tower pole according to claim 1, wherein, The internal dimensions of the threaded mounting groove (305) are adapted to the external dimensions of the mounting bolt (306), and the mounting bolt (306) is rotatably connected to the mating mounting frame (301) through the threaded mounting groove (305).

5. The infrared camera device for tower pole according to claim 1, wherein The monitoring component (4) includes a servo motor (401), a drive gear (402), a driven gear (403), and a camera body (404). The front end of the servo motor (401) is connected to the drive gear (402), and the driven gear (403) is meshed with the drive gear (402). The camera body (404) is installed at the lower end of the driven gear (403).

6. The infrared camera device for tower pole according to claim 5, wherein The monitoring component (4) also includes a battery (405), a movable mounting bracket (406), and a photovoltaic panel body (407). The battery (405) is installed in the middle of the upper part of the control host (1), and the movable mounting bracket (406) is installed in the middle of the upper part of the battery (405), and the photovoltaic panel body (407) is installed on the upper part of the movable mounting bracket (406).

7. The infrared camera device for tower pole according to claim 6, wherein The camera body (404) is horizontally distributed on the outside of the control host (1), and the camera body (404) is rotatably connected to the control host (1) through a driven gear (403).

8. The infrared camera device for tower pole according to claim 6, wherein, The photovoltaic panel body (407) is horizontally distributed on the outside of the battery (405), and the photovoltaic panel body (407) is rotatably connected to the battery (405) through a movable mounting bracket (406).