High-voltage near-electricity three-dimensional protection monitoring device
The combined structure of the lifting frame, supporting components and monitoring body, combined with the design of the cover, body and EVA lining, solves the problem of existing three-dimensional protective monitoring devices being large in size and requiring multiple people to carry them, realizes the miniaturization and portability of the equipment, and is suitable for multi-angle monitoring in outdoor high-pressure environments.
Patent Information
- Application Number
- CN202510543866.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-09-12
AI Technical Summary
Existing three-dimensional protection monitoring devices are large in size and need to be carried by multiple people, wasting human resources.
A high-voltage near-electric three-dimensional protection monitoring device was designed. It adopts a combined structure of a lifting frame, supporting components and monitoring body, combined with the design of the cover, body and EVA lining to achieve miniaturization and portability of the equipment.
The device has a miniaturized design, which is convenient for one person to quickly store and carry. It is suitable for monitoring in outdoor high-voltage environments, provides multi-angle and all-round monitoring, and can adapt to harsh climates. The equipment can be used normally in high-voltage environments.
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Figure CN120629693A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of electric power technology, in particular to a high-voltage near-electricity three-dimensional protection monitoring device. Background Art
[0002] Electricity is an energy source that uses electrical energy as its driving force. It is a power production and consumption system consisting of power generation, transmission, transformation, distribution, and consumption. It converts natural primary energy into electricity through mechanical energy devices, and then supplies electricity to users through transmission, transformation, and distribution.
[0003] When installing large outdoor electrical equipment, a three-dimensional protective monitoring device is required to monitor the construction site and prevent unauthorized intrusion. However, these devices are large and consist of multiple pieces of equipment, requiring multiple personnel to carry them, which wastes human resources. Therefore, to address this issue, we propose a high-voltage, near-electric three-dimensional protective monitoring device. Summary of the Invention
[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a high-voltage near-electric three-dimensional protection monitoring device.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions: The top of the lifting rod is connected to the lifting link, and the supporting cam is connected to the supporting cam at the bottom. The supporting cam is connected to the supporting cam at the bottom. The lifting rod has a plurality of connecting frames movably connected to the bottom of the lifting rod. The external movability of the damping sleeve is connected to a plurality of supporting legs. The top of the connecting frame is movably connected to the supporting legs. The top of the external top of the lifting rod is connected to a plurality of inserting strips. The supporting component includes a supporting plate, the top of the supporting plate is connected to a plurality of studs, and the center of the bottom of the supporting plate is connected to a restraining sleeve. The monitoring body includes a base, the base is placed on the top of the supporting plate, the top of the base is connected to a monitor, both ends of the bottom of the inner wall of the body are connected to storage sleeves, the two storage sleeves are movably connected to a traction rod, the two storage sleeves are connected to a plurality of support strips at the ends away from each other, and the top of the support strips is placed with an EVA lining.
[0006] Preferably, a plurality of slots for use with the inserts are provided on the outer side of the inner wall of the restraint sleeve, a rotation slot for use with the inserts is provided at the center of the inner wall of the restraint sleeve, and the top of the inner wall of the slot is connected to the rotation slot.
[0007] Preferably, a plurality of through holes for use with studs are formed through the top of the base, and a positioning screw cover is provided on the threaded sleeve on the top of the stud, and the bottom of the positioning screw cover contacts the top of the base.
[0008] Preferably, a data line plug 1 is embedded in one end of the monitor, a data line plug 2 is embedded in one end of the body, and a transmission line is commonly connected between the data line plug 2 and the data line plug 1.
[0009] Preferably, the top of the EVA lining is provided with several placement grooves, and a hidden groove is provided at the bottom of one of the placement grooves, a rechargeable battery is placed inside the hidden groove, and a control panel is placed in the placement groove. The top of the control panel is inlaid with a high-definition alarm speaker, and the remaining placement grooves are used to place the lifting frame, supporting components and monitoring body.
[0010] Preferably, the four corners of the exterior of the body are wrapped with pads, the four corners of the inner wall of the body are connected to limiting blocks, and the bottoms of the limiting blocks are in contact with the top of the EVA lining.
[0011] Preferably, the tops of both ends of the body are connected to handle components, which include several card plates, which are evenly divided into two groups, one end of the card plate is connected to the body, and each group of card plates is movably installed with a support shaft, and the outside of the support shaft is connected to a U-shaped handle.
[0012] Preferably, one of the handle components also includes a carrying frame, and the bottom of the U-shaped handle is inlaid with an anode magnet block, and a polygonal positioning hole is also opened on the opposite side of the two support shafts. A positioning plate is connected to the center of the inner wall of the carrying frame, and both sides of the positioning plate are connected to reset springs. The sides away from the two reset springs are connected to a movable plate, and the sides away from the two movable plates are connected to a movable rod. The sides away from the two movable rods pass through the carrying frame and are connected to a polygonal positioning column used in conjunction with the polygonal positioning hole, and one end of the carrying frame is connected to the machine body.
[0013] Preferably, the top of one end of the body is connected to a cover, the inner wall of the cover is respectively connected to the display and the tempered glass isolation frame, and the bottom of the cover is inlaid with a cathode magnet block.
[0014] Compared with the prior art, the present invention has the following beneficial effects: The present invention can store the lifting frame, supporting components and monitoring body through the cooperation of the cover, the body and the EVA lining, so that the whole set of equipment is miniaturized and the integrated storage method is convenient for carrying and transportation. Only one person is needed to quickly store and carry it. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the coordination of the lifting frame, support components and monitor structure of the present invention; Figure 3 This is a schematic diagram of the partial structure of the lifting rod of the present invention; Figure 4 This is an exploded view of the supporting component and the monitoring structure of the present invention; Figure 5 This is a cross-sectional view of the restraint sleeve structure of the present invention; Figure 6 This is a rear view of the body structure of the present invention; Figure 7 This is an exploded view of the handle structure of the present invention; Figure 8 For the present invention Figure 7 Rear view; Figure 9 This is an exploded view of the structure of the body, EVA lining and control panel of the present invention; Figure 10 For the present invention Figure 9 Bottom view of .
[0016] In the figure: 1. Lifting frame; 101. Support leg; 102. Connecting frame; 103. Lifting rod; 104. Damping sleeve; 105. Insert; 2. Support component; 201. Restraint sleeve; 202. Support plate; 203. Stud; 204. Rotation slot; 205. Slot; 3. Monitoring body; 301. Base; 302. Through hole; 303. Positioning screw cap; 304. Monitor; 4. Transmission line; 5. Cover; 6. Display; 7. Tempered glass isolation frame; 8. Spacer; 9. Control panel; 10. Handle assembly; 1001. Card plate; 1002. U-shaped handle; 1003. Support shaft; 1004. Polygonal positioning socket; 1005. Polygonal positioning column; 1006. Carrying frame; 1007. Moving rod; 1008. Positioning plate; 1009. Return spring; 11. Machine body; 12. Tow bar; 13. Rechargeable battery; 14. EVA lining; 15. Gaofenbei alarm horn; 16. Support strip; 17. Storage sleeve. DETAILED DESCRIPTION
[0017] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0018] See also Figures 1-10A high-voltage near-electric three-dimensional protection monitoring device includes a lifting frame 1 and a body 11. The top of the lifting frame 1 is connected to a support component 2, and the top of the support component 2 is connected to a monitoring body 3. The lifting frame 1 includes a damping sleeve 104, and a lifting rod 103 is provided inside the damping sleeve 104. The bottom of the outside of the lifting rod 103 is movably connected to a plurality of connecting frames 102. The outside of the damping sleeve 104 is movably connected to a plurality of supporting legs 101. The top of the connecting frame 102 is movably connected to the supporting legs 101. The top of the outside of the lifting rod 103 is connected to a plurality of inserts 105. The supporting component 2 includes a support plate 202, and the top of the support plate 202 is connected to a plurality of Stud 203, a restraint sleeve 201 is connected to the center of the bottom of the support plate 202, the monitoring body 3 includes a base 301, the base 301 is placed on the top of the support plate 202, the top of the base 301 is connected to the monitor 304, both ends of the bottom of the inner wall of the body 11 are connected to the storage sleeve 17, the inside of the two storage sleeves 17 are jointly connected to the traction rod 12, the two storage sleeves 17 are connected to a plurality of support strips 16 at the ends away from each other, and the top of the support strip 16 is placed with an EVA lining 14, the side of the support strip 16 away from the storage sleeve 17 is connected to the inner wall of the body 11, and one side of the traction rod 12 passes through the outside of the body 11.
[0019] As a technical optimization solution of the present invention, a plurality of slots 205 for use with the insert 105 are opened on the outer side of the inner wall of the restraint sleeve 201, and a rotation groove 204 for use with the insert 105 is opened at the center of the inner wall of the restraint sleeve 201. The top of the inner wall of the slot 205 is connected to the rotation groove 204; through the slot 205, the insert 105 can easily enter the interior of the restraint sleeve 201.
[0020] As a technical optimization solution of the present invention, a plurality of through holes 302 for use with the studs 203 are provided through the top of the base 301, and a positioning screw cover 303 is provided on the top thread sleeve of the stud 203, and the bottom of the positioning screw cover 303 is in contact with the top of the base 301; through the cooperation between the positioning screw cover 303 and the stud 203, the base 301 is conveniently positioned and installed on the support plate 202, thereby improving the stability of the placement of the base 301.
[0021] As a technical optimization solution of the present invention, one end of the monitor 304 is embedded with a data cable plug 1, and one end of the body 11 is embedded with a data cable plug 2, and a transmission line 4 is connected between the data cable plug 2 and the data cable plug 1; through the transmission line 4, the video image monitored by the monitor 304 is conveniently transmitted to the body 11 and finally displayed on the display 6.
[0022] As a technical optimization solution of the present invention, several placement grooves are provided on the top of the EVA lining 14, and a hidden groove is provided at the bottom of one of the placement grooves. A rechargeable battery 13 is placed inside the hidden groove. At the same time, a control panel 9 is placed in the placement groove, and a high-definition alarm speaker 15 is inlaid on the top of the control panel 9. The remaining placement grooves are used to place the lifting frame 1, the supporting component 2 and the monitoring body 3; the rechargeable battery 13 can provide power to each electrical component.
[0023] As a technical optimization solution of the present invention, the four corners of the outside of the body 11 are wrapped with pads 8, and the four corners of the inner wall of the body 11 are connected to limiting blocks, and the bottom of the limiting blocks is in contact with the top of the EVA lining 14; the EVA lining 14 can be limited by the limiting blocks to prevent the EVA lining 14 from arbitrarily detaching from the inside of the body 11; the four corners of the body 11 can be protected by the pads 8.
[0024] As a technical optimization solution of the present invention, the tops of both ends of the body 11 are connected with handle parts 10, and the handle parts 10 include several pallets 1001. The several pallets 1001 are evenly divided into two groups. One end of the pallet 1001 is connected to the body 11, and each group of pallets 1001 is movably installed with a support shaft 1003, and the outside of the support shaft 1003 is connected with a U-shaped handle 1002; through the two U-shaped handles 1002, it is convenient for two people to lift and carry the box on the body 11.
[0025] As a technical optimization solution of the present invention, one of the handle components 10 also includes a supporting frame 1006, and the bottom of the U-shaped handle 1002 is inlaid with an anode magnet block. At the same time, a polygonal positioning socket 1004 is opened on the opposite side of the two support shafts 1003. A positioning plate 1008 is connected to the center of the inner wall of the supporting frame 1006, and both sides of the positioning plate 1008 are connected to a reset spring 1009. The two reset springs 1009 are connected to a movable plate on the side away from each other, and the two movable plates are connected to a movable rod 1007 on the side away from each other. The two movable rods 1007 pass through the supporting frame 1006 on the side away from each other and are connected to a polygonal positioning column 1005 used in conjunction with the polygonal positioning socket 1004. One end of the supporting frame 1006 is connected to the body 11; the support shaft 1003 can be positioned by utilizing the cooperation of the polygonal positioning column 1005 and the polygonal positioning socket 1004.
[0026] As a technical optimization solution of the present invention, the top of one end of the body 11 is connected to a cover body 5, the inner walls of the cover body 5 are respectively connected to a display 6 and a tempered glass isolation frame 7, and the bottom of the cover body 5 is inlaid with a cathode magnet block; the cathode magnet block is used in conjunction with the anode magnet block; and tempered glass is installed inside the tempered glass isolation frame 7.
[0027] When the present invention is in use, the cover 5 is opened, and the lifting frame 1, the supporting component 2, and the monitoring body 3 are taken out from the corresponding placement grooves. The lifting frame 1 is set up at the position to be monitored, the support plate 202 and the restraint sleeve 201 are transferred to the top of the lifting rod 103, the slot 205 corresponds to the insertion strip 105, and the restraint sleeve 201 is moved down and sleeved on the outside of the lifting rod 103. At this time, the insertion strip 105 enters the inside of the rotating groove 204, and the support plate 202 is rotated so that the insertion strip 105 and the slot 205 are misaligned, so that the restraint sleeve 201 will not detach from the lifting rod 103 at will. The monitoring body 3 is transferred to the top of the support plate 202, and at the same time, the stud 203 passes through the through hole 302, and the positioning screw cover 303 is rotated and installed on the top of the stud 203 to complete the positioning of the base 301. The two ends of the transmission line 4 are respectively inserted into the inside of the data line plug 2 and the data line plug 1 to complete the docking between the monitoring body 3 and the body 11. To raise the height of the lifting frame 1, simply push the lifting rod 103 upward, causing it to raise the support plate 202. Furthermore, the data cable plug 2 allows for convenient charging of the rechargeable battery 13. The rechargeable battery 13 is a 300W battery that can be used continuously for 24 hours without an external power source. It uses 220V AC power and takes approximately 7 hours to fully charge.
[0028] Operate the control panel 9 to send instructions to the monitor 304 to make it run. When it detects that a person or machine has crossed the boundary, the alarm horn 15 will sound immediately until the alarm is lifted. At the same time, the monitored video information will be displayed on the display 6. Using the traction rod 12, one person can drag the box to carry the machine body 11; using the two U-shaped handles 1002, it is convenient for two people to lift the box to carry the machine body 11. Before the cover 5 is opened, press the two movable plates to compress the reset spring 1009, drive the polygonal positioning pin 1005 out of the polygonal positioning socket 1004, rotate the rear U-shaped handle 1002 to make it vertical. After the cover 5 is opened, the cathode magnet block and the anode magnet block complete the adsorption positioning, thereby improving the stability of the cover 5.
[0029] At the monitoring site, multiple devices can be deployed in conjunction to monitor the site from multiple angles, achieving comprehensive monitoring of the construction site. The multi-angle, all-round monitoring equipment utilizes a three-dimensional protection system to provide uninterrupted monitoring of the construction site. Furthermore, the equipment offers flexible deployment, allowing for the rapid demarcation of monitoring areas of any shape based on the actual site conditions. The equipment also features an anti-interference design, allowing for normal operation in high-voltage environments. The IP67 protection rating ensures strong adaptability and allows for operation in harsh climates such as rain and snow. The entire system features a compact design and integrated storage for easy portability and transportation, allowing for quick and easy handling by a single person.
[0030] The above are only preferred specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with this technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solutions and inventive concepts of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A high-voltage near-electric three-dimensional protection monitoring device, comprising a lifting frame (1) and a body (11), characterized in that: The top of the lifting frame (1) is connected to a support component (2), the top of the support component (2) is connected to a monitoring body (3), the lifting frame (1) includes a damping sleeve (104), a lifting rod (103) is provided inside the damping sleeve (104), the bottom of the outside of the lifting rod (103) is movably connected to a plurality of connecting frames (102), the outside of the damping sleeve (104) is movably connected to a plurality of supporting legs (101), the top of the connecting frame (102) is movably connected to the supporting legs (101), the top of the outside of the lifting rod (103) is connected to a plurality of inserts (105), the supporting component (2) includes a support plate (202), the support plate ( The top of the support plate (202) is connected to a plurality of studs (203), the center of the bottom of the support plate (202) is connected to a restraining sleeve (201), the monitoring body (3) includes a base (301), the base (301) is placed on the top of the support plate (202), the top of the base (301) is connected to a monitor (304), both ends of the bottom of the inner wall of the body (11) are connected to a storage sleeve (17), the interior of the two storage sleeves (17) is movably connected to a traction rod (12), the ends of the two storage sleeves (17) away from each other are connected to a plurality of support strips (16), and the top of the support strips (16) is placed with an EVA lining (14).
2. A high-voltage near-electric three-dimensional protection monitoring device according to claim 1, characterized in that: The outer side of the inner wall of the restraint sleeve (201) is provided with a plurality of slots (205) for use with the inserting strip (105), the center of the inner wall of the restraint sleeve (201) is provided with a rotation slot (204) for use with the inserting strip (105), and the top of the inner wall of the slot (205) is communicated with the rotation slot (204).
3. The high-voltage near-electric three-dimensional protection monitoring device according to claim 1 is characterized in that: The top of the base (301) is provided with a plurality of through holes (302) for use with the studs (203). The top thread sleeve of the studs (203) is provided with a positioning screw cover (303), and the bottom of the positioning screw cover (303) contacts the top of the base (301).
4. The high-voltage near-electric three-dimensional protection monitoring device according to claim 1 is characterized in that: One end of the monitor (304) is embedded with a data line plug 1, and one end of the body (11) is embedded with a data line plug 2. A transmission line (4) is connected between the data line plug 2 and the data line plug 1.
5. The high-voltage near-electric three-dimensional protection monitoring device according to claim 1 is characterized in that: The top of the EVA lining (14) is provided with a plurality of placement grooves, wherein a hidden groove is provided at the bottom of one of the placement grooves, a rechargeable battery (13) is placed inside the hidden groove, and a control panel (9) is placed in the placement groove, and a high-definition alarm speaker (15) is embedded on the top of the control panel (9). The remaining placement grooves are used to place the lifting frame (1), the supporting component (2) and the monitoring body (3).
6. The high-voltage near-electric three-dimensional protection monitoring device according to claim 1 is characterized in that: The four corners of the exterior of the body (11) are all wrapped with cushion blocks (8), and the four corners of the inner wall of the body (11) are all connected to limiting blocks, and the bottoms of the limiting blocks are in contact with the top of the EVA lining (14).
7. The high-voltage near-electric three-dimensional protection monitoring device according to claim 1 is characterized in that: The tops of both ends of the body (11) are connected to handle components (10), and the handle components (10) include a plurality of card plates (1001), and the plurality of card plates (1001) are evenly divided into two groups. One end of the card plate (1001) is connected to the body (11), and a support shaft (1003) is movably installed on each group of card plates (1001), and the outside of the support shaft (1003) is connected to a U-shaped handle (1002).
8. The high-voltage near-electric three-dimensional protection monitoring device according to claim 7 is characterized in that: One of the handle components (10) further comprises a carrying frame (1006), and an anode magnet block is embedded in the bottom of the U-shaped handle (1002), and a polygonal positioning socket (1004) is provided on the opposite side of the two support shafts (1003). A positioning plate (1008) is connected to the center of the inner wall of the carrying frame (1006), and both sides of the positioning plate (1008) are connected to return springs (1009), and the two return springs (1009) are connected to a movable plate on the side away from each other, and the two movable plates are connected to a movable rod (1007) on the side away from each other, and the two movable rods (1007) pass through the carrying frame (1006) on the side away from each other and are connected to a polygonal positioning column (1005) used in conjunction with the polygonal positioning socket (1004), and one end of the carrying frame (1006) is connected to the body (11).
9. The high-voltage near-electric three-dimensional protection monitoring device according to claim 1 is characterized in that: The top of one end of the body (11) is connected to a cover (5), the inner wall of the cover (5) is respectively connected to a display (6) and a tempered glass isolation frame (7), and the bottom of the cover (5) is inlaid with a cathode magnet block.