Visual line monitoring and shooting device
By using adjustable mounting components and monitor adjustment components, the adaptability of the line visualization monitoring device to different installation environments has been solved, achieving stable installation and flexible adjustment, thus ensuring monitoring effectiveness.
Patent Information
- Application Number
- CN202520886762.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-05-07
AI Technical Summary
The fixed mounting plate of the existing line visualization monitoring device cannot be flexibly adjusted, making it difficult to adapt to different installation requirements. This may damage the line structure and affect the shooting angle and monitoring range.
It employs adjustable mounting components and monitor adjustment components, including a mounting plate, ribs, electric telescopic rod, rack, gear, and drive motor, to achieve flexible adjustment of the mounting plate and the angle adjustment of the video monitor, adapting to complex installation environments.
This technology enables stable installation and flexible adjustment of the monitoring device in different installation environments, avoids damage to the line structure, ensures the adaptability of the monitoring range and angle, and improves the monitoring effect.
Smart Images

Figure CN223924474U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to transmission line monitoring and shooting instrument technical field, especially line visual monitoring and shooting device. BACKGROUND
[0002] Because the high voltage tower of transmission line is located in the natural environment far from the crowd such as mountain, field, leads to in the long-term use process, it is easy to be influenced by the bad environment or the invasion of external object such as flying bird, causes the failure damage of transmission equipment;And transmission equipment once damaged not only will cause the power failure problem of the region, influences people's daily life, still easily brews the major safety accident, and there is higher security risk;Therefore needs to monitor and shoot, to the rapid reaction and solution after the accident.
[0003] The existing line visual monitoring and shooting device has obvious limitations in the installation process. At present, most monitoring and shooting devices adopt fixed-structure installation plates, and once the position and spacing of the installation plates are determined, they are difficult to change. In actual application scenarios, the environment of line erection is complex and diverse, and the tower structure and line spacing are different. The widths of transmission tower crossbeams of different specifications are different, and the structural designs of old towers and new towers are also different. When the communication line passes through different terrains, the erection height and the spacing distance of adjacent lines also change. When it is necessary to install the monitoring and shooting device at these different positions, the fixed-structure installation plate cannot be flexibly adjusted, which makes it difficult for the monitoring and shooting device to adapt to the installation requirements. Forced installation not only may damage the original structure of the line, but also may affect the shooting angle and monitoring range of the monitoring and shooting device, reduce the monitoring effect, and even cannot be installed. Therefore, the utility model provides a new solution. UTILITY MODEL CONTENT
[0004] The utility model aims at least to solve one of the technical problems existing in the prior art, and provides a line visual monitoring and shooting device, which can solve the problem that when the monitoring and shooting device needs to be installed at different positions, the fixed-structure installation plate cannot be flexibly adjusted, which makes it difficult for the monitoring and shooting device to adapt to the installation requirements. Forced installation not only may damage the original structure of the line, but also may affect the shooting angle and monitoring range of the monitoring and shooting device, reduce the monitoring effect, and even cannot be installed.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a line visual monitoring and shooting device, comprising a first mounting frame, a second mounting frame and a video monitor.
[0006] The monitor adjusting assembly is arranged on the first mounting frame.
[0007] The mounting assembly is arranged on the second mounting frame, and the mounting assembly comprises a fixing plate arranged at the lower end of the second mounting frame, a plurality of rib plates fixedly connected to the inner side of the second mounting frame, and a plurality of bolt holes formed in the surface of the second mounting frame; the upper end of the fixing plate is provided with a groove, and the groove is connected to the corresponding rib plate;
[0008] The surface of the fixing plate is also provided with two bolt holes, and the inside of the two bolt holes on the surface of the fixing plate is provided with a fixing bolt; the fixing plate and the second mounting frame are fixed through the two fixing bolts.
[0009] The lower end of the fixing plate is rotatably connected to a third connecting shaft, and the lower end of the third connecting shaft is fixedly connected to a mounting plate.
[0010] Preferably, the number of the fixing plate, the bolt hole on the surface of the fixing plate, the fixing bolt, the third connecting shaft and the mounting plate is two groups respectively arranged symmetrically at the lower end of the second mounting frame.
[0011] Preferably, the monitor adjusting assembly comprises a second driving box, the second driving box is fixedly connected to the upper end of the first mounting frame through a bolt, and the second driving box is in a hollow shell shape.
[0012] The right side of the second driving box is fixedly connected to an electric telescopic rod, the output end of the electric telescopic rod is fixedly connected to a rack, the rack is slidably connected to the second driving box, the inside of the second driving box is rotatably connected to a second connecting shaft, the lower end of the second connecting shaft is fixedly connected to a gear, and the gear is engaged with the rack.
[0013] The second connecting shaft extends out of the second driving box, and the upper end of the second connecting shaft is fixedly connected to a first connecting flange.
[0014] The lower end of the video monitor is fixedly connected to a second connecting flange, and the second connecting shaft and the second connecting flange are fixed through a bolt.
[0015] Preferably, the left and right sides of the second mounting frame are fixedly connected to a connecting frame, the left and right sides of the first mounting frame are fixedly connected to a first connecting shaft, and the two first connecting shafts are rotatably connected to the corresponding connecting frames.
[0016] The surface of the right connecting frame is fixedly connected to a first driving box, the right first connecting shaft extends into the inside of the first driving box, the surface of the right first connecting shaft is fixedly connected to a worm gear, the front end of the first driving box is fixedly connected to a first driving motor, the output end of the first driving motor is fixedly connected to a worm, and the worm is engaged with the first driving motor.
[0017] Preferably, the inner side of the first mounting frame is also fixedly connected to a plurality of rib plates.
[0018] Preferably, the upper end of the video monitor is fixedly connected to a water baffle.
[0019] Compared with the prior art, the line visual monitoring and shooting device has the beneficial effects that:
[0020] 1、The line visual monitoring and shooting device is fixed on the upper part through the fixing plate, is convenient for improving the stability during installation through the clamping of the rib plate and the groove, can be flexibly rotated and installed according to different transmission tower beam widths, communication line erection heights and interval distances, and adjusts the angle and position thereof; the installation plate can be rotated within a certain range, adapts to various complex installation environments, and solves the problem that the traditional fixed installation plate is difficult to adapt to different installation requirements, thereby avoiding the damage to the line structure caused by forced installation. BRIEF DESCRIPTION OF DRAWINGS
[0021] The utility model is further illustrated below in combination with the drawings and embodiments:
[0022] Figure 1 It is a line visual monitoring and shooting device structural schematic view of the utility model;
[0023] Figure 2 It is a first mounting frame schematic view of the utility model;
[0024] Figure 3 It is a video monitor schematic view of the utility model;
[0025] Figure 4 It is a first drive box schematic view of the utility model;
[0026] Figure 5 It is a second drive box schematic view of the utility model;
[0027] Figure 6 It is a second mounting frame schematic view of the utility model;
[0028] Figure 7 It is an installation plate schematic view of the utility model.
[0029] The drawings show that: 1, first mounting frame;2, second mounting frame;3, connecting frame;4, first drive box;5, first connecting shaft;6, worm wheel;7, first drive motor;8, worm;9, second drive box;10, electric telescopic rod;11, rack;12, second connecting shaft;13, gear;14, first connecting flange;15, second connecting flange;16, video monitor;17, fender;18, fixing plate;19, rib plate;20, groove;21, fixed bolt;22, bolt hole;23, third connecting shaft;24, installation plate. DETAILED DESCRIPTION
[0030] The detailed embodiments of the utility model will be described in this part, the preferred embodiment of the utility model is shown in the drawings, the role of the drawings is to supplement the description of the written part with graphics, so that people can intuitively and visually understand each technical feature and the overall technical scheme of the utility model, but it cannot be understood as a limitation on the protection scope of the utility model.
[0031] In the description of the utility model, it is understood that the orientation description, such as the orientation or position relationship indicated by up, down, front, back, left, right, etc., is based on the orientation or position relationship shown in the drawings, only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation on the utility model.
[0032] In the description of the utility model, greater than, less than, more than, etc., is understood as not including the number, and above, below, etc., is understood as including the number.If there is a description of the first, second, it is only used for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0033] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installing and connecting should be broadly understood, and the person skilled in the art can reasonably determine the specific meaning of the above words in the utility model according to the specific content of the technical scheme.
[0034] Please refer to Figures 1-7 The utility model provides a kind of technical scheme: a line visual monitoring device, including first mounting bracket 1, second mounting bracket 2 and video monitor 16, monitor adjusting assembly, monitor adjusting assembly is set on first mounting bracket 1, installation component, installation component is set on second mounting bracket 2, installation component includes fixed plate 18, fixed plate 18 is set in the lower end of second mounting bracket 2, the inner side of second mounting bracket 2 is fixedly connected with multiple rib plates 19, the surface of second mounting bracket 2 is provided with multiple bolt holes 22, the upper end of fixed plate 18 is provided with recess 20, recess 20 is connected with corresponding rib plate 19, the surface of fixed plate 18 is also provided with two bolt holes 22, the inside of the two bolt holes 22 of fixed plate 18 surface is provided with fixed bolt 21, fixed plate 18 and second mounting bracket 2 are fixed by two fixed bolts 21, the lower end of fixed plate 18 is rotatably connected with third connecting shaft 23, the lower end of third connecting shaft 23 is fixedly connected with mounting plate 24.
[0035] The number of fixed plate 18, bolt hole 22 on the surface of fixed plate 18, fixed bolt 21, third connecting shaft 23 and mounting plate 24 is two groups respectively symmetrically arranged in the lower end of second mounting bracket 2.
[0036] The monitor adjusting assembly comprises a second driving box 9 fixed on the upper end of the first mounting frame 1 by bolts, the second driving box 9 is in the shape of a hollow shell, the right side of the second driving box 9 is fixedly connected with an electric telescopic rod 10, the output end of the electric telescopic rod 10 is fixedly connected with a rack 11, the rack 11 is in sliding connection with the second driving box 9, the inside of the second driving box 9 is rotatably connected with a second connecting shaft 12, the lower end of the second connecting shaft 12 is fixedly connected with a gear 13, the gear 13 is in mesh with the rack 11, the second connecting shaft 12 is rotatably extended out of the second driving box 9, the upper end of the second connecting shaft 12 is fixedly connected with a first connecting flange 14, the lower end of the video monitor 16 is fixedly connected with a second connecting flange 15, and the second connecting shaft 12 and the second connecting flange 15 are fixed by bolts.
[0037] The left and right sides of the second mounting frame 2 are fixedly connected with connecting frames 3, the left and right sides of the first mounting frame 1 are fixedly connected with first connecting shafts 5, the two first connecting shafts 5 are rotatably connected with the corresponding connecting frames 3, the surface of the right connecting frame 3 is fixedly connected with a first driving box 4, the right first connecting shaft 5 is rotatably extended into the inside of the first driving box 4, the surface of the right first connecting shaft 5 is fixedly connected with a worm gear 6, the front end of the first driving box 4 is fixedly connected with a first driving motor 7, the output end of the first driving motor 7 is fixedly connected with a worm shaft 8, and the worm shaft 8 is in mesh with the first driving motor 7.
[0038] The inside of the first mounting frame 1 is also fixedly connected with a plurality of rib plates 19.
[0039] The upper end of the video monitor 16 is fixedly connected with a water baffle 17.
[0040] When the device is used, the mounting assembly plays a key role in the device installation link; the device has two groups of fixed plates 18, bolt holes 22, fixed bolts 21, third connecting shafts 23 and mounting plates 24 symmetrically arranged at the lower end of the second mounting frame 2; during installation, since the fixed plate 18 is fixed with the second mounting frame 2 by the fixed bolt 21, the recess 20 of the fixed plate 18 is clamped with the rib plate 19 on the inside of the second mounting frame 2, the stability is enhanced, the mounting plate 24 can be flexibly rotated according to the width of the power transmission tower beam, the communication line erection height and the interval distance, the angle and position thereof are adjusted; the mounting plate 24 can be rotated within a certain range, various complex installation environments are adapted, and the problem that the traditional fixed mounting plate is difficult to adapt to different installation requirements is solved, and the damage to the line structure caused by forced installation is avoided.
[0041] The monitor adjustment assembly is used to precisely adjust the angle and position of the video monitor 16; the electric telescopic rod 10 is fixed to the right side of the second drive box 9. After the electric telescopic rod 10 is started, its output end drives the rack 11 to slide inside the second drive box 9; the rack 11 meshes with the gear 13, and the gear 13 is fixed to the lower end of the second connecting shaft 12, thereby causing the second connecting shaft 12 to rotate; the first connecting flange 14 at the upper end of the second connecting shaft 12 is fixed to the second connecting flange 15 at the lower end of the video monitor 16 by bolts. The rotation of the second connecting shaft 12 drives the video monitor 16 to rotate, realizing the angle adjustment of the video monitor 16 in the horizontal direction, ensuring that it can cover a larger monitoring range and obtain more comprehensive line image information.
[0042] When the monitoring direction of the entire monitoring device needs to be adjusted, the first drive motor 7 comes into play. The first drive motor 7 is fixed at the front end of the first drive box 4, and the worm 8 at its output end meshes with the worm wheel 6 on the surface of the first connecting shaft 5 on the right. When the first drive motor 7 is started, the worm 8 rotates, which drives the worm wheel 6 to rotate, thereby causing the first connecting shaft 5 on the right to rotate. The first connecting shaft 5 is rotatably connected to the connecting frame 3, and the first mounting frame 1 is connected to the connecting frame 3 on the second mounting frame 2 through the first connecting shaft 5. Therefore, the rotation of the first connecting shaft 5 drives the first mounting frame 1 to rotate around the connection point, thereby adjusting the tilt angle of the video monitor 16 and changing the monitoring direction to adapt to changes in the route or different monitoring needs.
[0043] The water baffle 17 at the top of the video monitor 16 can effectively block rainwater, dew, etc., to prevent them from directly contacting the video monitor 16, preventing equipment damage caused by water erosion, and ensuring the normal operation and shooting effect of the video monitor 16; the ribs 19 on the inner side of the first mounting bracket 1 and the second mounting bracket 2 enhance the structural strength of the mounting bracket, enabling the entire device to work stably in complex outdoor environments, resisting the effects of strong winds and other external forces, and ensuring the reliability of the monitoring work.
[0044] Furthermore, the mounting plate 18 is fixed to the 2, and the rib plate 19 and the groove 20 are snapped together to improve the stability of the 18 during installation. The mounting plate 24 can be flexibly rotated to adjust its angle and position according to different transmission tower beam widths, communication line erection heights and spacing distances. The mounting plate 24 can rotate within a certain range to adapt to various complex installation environments, solving the problem that traditional fixed mounting plates are difficult to adapt to different installation needs and avoiding damage to the line structure caused by forced installation.
[0045] By rotating the video monitor 16 horizontally and vertically, it is easy to change the horizontal angle and tilt angle of the video monitor 16, ensuring that it can cover a larger monitoring range, obtain more comprehensive line image information, and change the monitoring direction to adapt to changes in line direction or different monitoring needs.
[0046] Structural Description: First mounting bracket 1: carries the monitor adjustment assembly, the inner rib plate 19 enhances its structural strength, and the first connecting shafts 5 on the left and right sides are used to rotate with the connecting bracket 3 of the second mounting bracket 2 to realize the rotation of the whole device;
[0047] Second mounting bracket 2: a carrier for mounting components, with inner ribs 19 and surface bolt holes 22 for mounting with fixing plate 18, and connecting brackets 3 on the left and right sides rotatably connected to the first connecting shaft 5 of the first mounting bracket 1, providing a structural basis for the overall rotation of the device;
[0048] Video Monitor 16: The core monitoring component, used to acquire line image information. Its horizontal and vertical rotation can expand the monitoring range and adapt to different monitoring needs.
[0049] Fixed plate 18: It is engaged with the rib plate 19 of the second mounting bracket 2 through the groove 20 and fixed by the fixing bolt 21 to achieve a stable connection with the second mounting bracket 2. The lower end is rotatably connected to the third connecting shaft 23 to drive the mounting plate 24 to rotate, adapting to different installation environments.
[0050] Rib 19: respectively set on the inner side of the first mounting frame 1 and the second mounting frame 2 to enhance the structural strength of the two mounting frames and ensure stable operation of the device in complex environments;
[0051] Bolt holes 22 and fixing bolts 21: Bolt holes 22 are distributed on the second mounting bracket 2 and the fixing plate 18. Fixing bolts 21 pass through bolt holes 22 to fasten the fixing plate 18 to the second mounting bracket 2.
[0052] Third connecting shaft 23 and mounting plate 24: Mounting plate 24 is rotatably connected to fixed plate 18 via third connecting shaft 23, and its angle and position can be flexibly adjusted to adapt to complex installation environments such as different transmission tower beam widths, communication line erection heights and spacing distances.
[0053] Second drive box 9: Installed on the upper end of the first mounting bracket 1, its internal structure is used to realize the horizontal angle adjustment of the video monitor 16 and to provide installation and transmission space for the monitor adjustment components;
[0054] Electric telescopic rod 10 and rack 11: After the electric telescopic rod 10 is started, it drives the rack 11 to slide in the second drive box 9. Through meshing with the gear 13, the linear motion is converted into the rotation of the gear 13, thereby realizing the horizontal rotation of the video monitor 16.
[0055] Second connecting shaft 12 and gear 13: Gear 13 is fixed to the lower end of the second connecting shaft 12 and meshes with rack 11. It rotates under the drive of rack 11, thereby causing the second connecting shaft 12 to rotate and driving the video monitor 16 to rotate horizontally.
[0056] First connecting flange 14 and second connecting flange 15: respectively fixed to the upper end of the second connecting shaft 12 and the lower end of the video monitor 16, and connected by bolts to achieve a stable connection between the second connecting shaft 12 and the video monitor 16, ensuring that the video monitor 16 can rotate with the second connecting shaft 12;
[0057] Connecting frame 3: Fixed on the left and right sides of the second mounting frame 2, and rotatably connected to the first connecting shaft 5 on the left and right sides of the first mounting frame 1, providing structural support for the rotatable connection between the first mounting frame 1 and the second mounting frame 2, and realizing the overall rotation of the device;
[0058] First drive box 4: Fixed on the surface of right connecting frame 3, and internally installed components such as first drive motor 7, providing power and installation space for the overall steering of the device;
[0059] First drive motor 7, worm 8 and worm wheel 6: After the first drive motor 7 starts, the worm 8 at the output end rotates and meshes with the worm wheel 6, driving the first connecting shaft 5 on the right side to rotate, thereby causing the first mounting bracket 1 to rotate around the connection point, realizing the overall rotation of the device and adjusting the tilt angle of the video monitor 16;
[0060] Water barrier 17: Fixed to the top of the video monitor 16 to block rainwater, dew, etc., to prevent moisture from corroding the video monitor 16 and to ensure its normal operation and shooting effect.
[0061] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. A line visualization monitoring device, characterized in that: Includes a first mounting bracket (1), a second mounting bracket (2), and a video monitor (16); The monitor adjustment component is mounted on the first mounting bracket (1); The mounting assembly is set on the second mounting frame (2). The mounting assembly includes a fixing plate (18). The fixing plate (18) is set at the lower end of the second mounting frame (2). Multiple ribs (19) are fixedly connected to the inner side of the second mounting frame (2). Multiple bolt holes (22) are opened on the surface of the second mounting frame (2). A groove (20) is opened at the upper end of the fixing plate (18). The groove (20) is engaged with the corresponding rib (19). The surface of the fixing plate (18) also has two bolt holes (22), and the two bolt holes (22) on the surface of the fixing plate (18) are each provided with fixing bolts (21). The fixing plate (18) and the second mounting bracket (2) are fixed by the two fixing bolts (21). The lower end of the fixed plate (18) is rotatably connected to a third connecting shaft (23), and the lower end of the third connecting shaft (23) is fixedly connected to a mounting plate (24).
2. The line visualization monitoring device according to claim 1, characterized in that: The number of the fixing plate (18), the bolt holes (22) on the surface of the fixing plate (18), the fixing bolts (21), the third connecting shaft (23) and the mounting plate (24) are all arranged in two sets symmetrically at the lower end of the second mounting bracket (2).
3. The line visualization monitoring device according to claim 1, characterized in that: The monitor adjustment assembly includes a second drive box (9), which is fixed to the upper end of the first mounting bracket (1) by bolts. The second drive box (9) is hollow. An electric telescopic rod (10) is fixedly connected to the right side of the second drive box (9). A rack (11) is fixedly connected to the output end of the electric telescopic rod (10). The rack (11) is slidably connected to the second drive box (9). A second connecting shaft (12) is rotatably connected inside the second drive box (9). A gear (13) is fixedly connected to the lower end of the second connecting shaft (12). The gear (13) meshes with the rack (11). The second connecting shaft (12) extends rotatably out of the second drive box (9), and the upper end of the second connecting shaft (12) is fixedly connected to the first connecting flange (14); The lower end of the video monitor (16) is fixedly connected to a second connecting flange (15), and the second connecting shaft (12) and the second connecting flange (15) are fixed together by bolts.
4. The line visualization monitoring device according to claim 1, characterized in that: The second mounting bracket (2) is fixedly connected to the left and right sides with connecting brackets (3), and the first mounting bracket (1) is fixedly connected to the left and right sides with first connecting shafts (5). The two first connecting shafts (5) are rotatably connected to the corresponding connecting brackets (3). The first drive box (4) is fixedly connected to the surface of the connecting frame (3) on the right side. The first connecting shaft (5) on the right side extends rotatably into the interior of the first drive box (4). The worm gear (6) is fixedly connected to the surface of the first connecting shaft (5) on the right side. The first drive motor (7) is fixedly connected to the front end of the first drive box (4). The worm (8) is fixedly connected to the output end of the first drive motor (7). The worm (8) meshes with the first drive motor (7).
5. The line visualization monitoring device according to claim 1, characterized in that: The inner side of the first mounting bracket (1) is also fixedly connected with multiple ribs (19).
6. The line visualization monitoring device according to claim 1, characterized in that: A water baffle (17) is fixedly connected to the upper end of the video monitor (16).