Load data monitoring equipment for power system
By introducing sliding connection and fan structure into the power system load data monitoring equipment, the problems of poor heat dissipation and inconvenient maintenance of monitoring equipment are solved, and better heat dissipation and convenient maintenance are achieved.
Patent Information
- Application Number
- CN202421951279.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The existing power system monitoring equipment has poor heat dissipation due to fit with the wall, which affects the service life of the equipment and is inconvenient for maintenance and maintenance.
A structure including a mounting frame, a load-bearing frame, a shield, a monitor, a universal rod, a connecting plate, a guide rail and a fan is designed. The heat dissipation space of the monitor is increased through sliding connections and rail design, and the fan is used to guide the airflow to discharge heat to avoid heat accumulation.
Effectively dissipate heat from the monitor, extend the service life of the equipment, and facilitate maintenance and maintenance operations.
Smart Images

Figure CN223284246U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of power system monitoring equipment, in particular to a power system load data monitoring device. Background Art
[0002] During the power monitoring process of the power system monitoring equipment, the following problems exist:
[0003] When using the existing power system monitoring equipment, the existing power system monitoring equipment is installed on the wall by bolts, and the power system monitoring equipment is in close contact with the wall. The heat generated by the power system monitoring equipment cannot be transferred outward well, and the heat accumulates in the power system monitoring equipment, causing damage to the electronic components therein, thereby affecting the service life of the power system monitoring equipment. At the same time, it is inconvenient for maintenance personnel to operate during the later inspection and maintenance of the power system monitoring equipment. Utility Model Content
[0004] In order to overcome the disadvantage that the power system monitoring equipment is attached to the wall, which is inconvenient for heat dissipation and affects the service life of the power system monitoring equipment, the utility model provides a power system load data monitoring device.
[0005] The technical solution is as follows: A power system load data monitoring device, including a mounting frame, a carrying frame, a baffle and a monitor; a carrying frame is slidably connected to the mounting frame, and the carrying frame is composed of several fixed frames, and the rear part of the fixed frame of the carrying frame is provided with a through groove for the incoming line; a baffle is fixedly connected to the fixed frame of the carrying frame, and all the baffles fit together; a monitor is provided in the carrying frame; it also includes a universal rod and a connecting plate; several mounting seats are fixedly connected to the fixed frame of the carrying frame; all the mounting seats are rotatably connected to a universal rod; a connecting plate is fixedly connected to the bottom and top of the monitor, and all the connecting plates are provided with sliding grooves, all the universal rods on the top slide in the sliding groove of the top connecting plate, and all the universal rods on the bottom slide in the sliding groove of the bottom connecting plate, and the monitor stays in the carrying frame in a suspended state.
[0006] Furthermore, a plurality of heat dissipation slots are provided on the fixed frame of the carrying frame.
[0007] Furthermore, all the carrying frames are slidably connected to the corresponding shielding plates.
[0008] Furthermore, all the carrying frames and all the shielding plates are provided with magnetic strips, and adjacent magnetic strips are attracted to each other.
[0009] Furthermore, it also includes guide rails; all connecting plates are equipped with a plurality of guide rails, all guide rails are provided with extension grooves, and all guide rail extension grooves are connected to the corresponding slide grooves on the connecting plates.
[0010] Furthermore, a fan is also included; a fan is installed in the fixed frame of the carrying frame, and the blowing direction of all fans is toward the adjacent heat dissipation slots.
[0011] The beneficial effects of the present invention are as follows: the present invention adds connecting plates at the bottom and top of the monitor, and adds universal rods on the mounting seat, so that all the universal rods on the top slide in the sliding grooves of the connecting plates at the top, and all the universal rods on the bottom slide in the sliding grooves of the connecting plates at the bottom. The monitor stays in the supporting frame in a suspended state, so that the monitor is no longer in contact with the supporting frame, and the heat of the monitor itself can be better dissipated.
[0012] The utility model sets the carrying frame and the shielding plate in sliding connection, and unfolds the carrying frame and the shielding plate to the left and right sides, thereby increasing the space around the monitor and facilitating the inspection and maintenance of the monitor.
[0013] The utility model adds a guide rail to the connecting plate and opens an extension groove on the guide rail so that the guide rail extension groove is connected with the slide groove on the connecting plate. When the supporting frame and the shielding plate are unfolded to the left and right sides, the universal rod moves into the extension groove on the guide rail, thereby increasing the unfolding distance of the supporting frame and the shielding plate, making it more convenient to inspect and maintain the monitor.
[0014] The utility model adds a fan in the fixed frame of the carrier frame and sets the blowing direction of the fan to be toward the adjacent heat dissipation slot. During the use of the utility model, the fan drives the air flow in the carrier frame to flow around the monitor, and the heat of the monitor itself is directed to the heat dissipation slot, so that the influence of temperature on the monitor is reduced, and heat accumulation on the monitor is avoided to damage the electronic components therein, thereby affecting the service life of the power system monitoring equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the overall structure of the power system load data monitoring device disclosed in the utility model;
[0016] Figure 2 This is a schematic diagram of the first partial structure of the power system load data monitoring device disclosed in the utility model;
[0017] Figure 3 This is a schematic diagram of a second partial structure disclosed by the power system load data monitoring device of the utility model;
[0018] Figure 4 This is a state diagram disclosed by the power system load data monitoring device of the present utility model.
[0019] In the above figures: 1-mounting frame, 2-carrying frame, 3-shielding plate, 4-universal rod, 5-connecting plate, 6-monitor, 7-guide rail, 8-fan, 2a-mounting seat, 2b-heat dissipation slot, 3a-magnetic strip, 5a-slide slot, 7a-extension slot. DETAILED DESCRIPTION
[0020] The present invention will now be described more fully hereinafter with reference to the accompanying drawings, in which presently preferred embodiments of the present invention are shown. However, the present invention can be implemented in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for thoroughness and completeness, and will fully convey the scope of the invention to those skilled in the art.
[0021] Example
[0022] A power system load data monitoring device, such as Figures 1-4 As shown, it includes a mounting frame 1, a carrying frame 2, a shielding plate 3 and a monitor 6; the mounting frame 1 is slidably connected to the carrying frame 2, and the carrying frame 2 is composed of two left-right symmetrical fixed frames, and the rear part of the fixed frame of the carrying frame 2 is provided with a through slot; a shielding plate 3 is fixed to the fixed frame of the carrying frame 2, and all the shielding plates 3 are attached to each other; a monitor 6 is provided in the carrying frame 2;
[0023] It also includes a universal rod 4 and a connecting plate 5; four mounting seats 2a distributed up and down are fixedly connected to the fixed frame of the carrier frame 2; all the mounting seats 2a are rotatably connected to a universal rod 4; the bottom and top of the monitor 6 are fixed to a connecting plate 5, and all the connecting plates 5 are provided with a slide groove 5a. All the universal rods 4 above slide in the slide groove 5a of the top connecting plate 5, and all the universal rods 4 below slide in the slide groove 5a of the bottom connecting plate 5. The monitor 6 stays in the carrier frame 2 in a suspended state.
[0024] Four heat dissipation slots 2b are provided on the fixed frame of the carrier frame 2 to better dissipate heat.
[0025] All the supporting frames 2 are connected to the corresponding shielding plates 3 in a sliding manner, which can provide more space when performing maintenance.
[0026] All the carrying frames 2 and all the shielding plates 3 are provided with magnetic strips 3 a , and adjacent magnetic strips 3 a are attracted to each other, so that the carrying frames 2 and the shielding plates 3 can be opened and closed easily.
[0027] It also includes a guide rail 7; all connection plates 5 are mounted with four guide rails 7 distributed in a matrix, all guide rails 7 are provided with extension grooves 7a, and all guide rail extension grooves 7a are connected to the corresponding chute 5a on the connection plate 5.
[0028] A fan 8 is also included; a fan 8 is installed in each fixed frame of the carrier frame 2, and the blowing direction of all fans 8 is toward the adjacent heat dissipation slots 2b.
[0029] Before using the present invention, the lines required for the monitor 6 and the wires required for the fan 8 are first introduced into the carrier frame 2 from the outside through the through slots at the rear of the fixed frame of the carrier frame 2, the corresponding lines and wires are installed on the monitor 6 and the fan 8, and the mounting frame 1 is installed on the wall by bolts. Then, by adding connecting plates 5 at the bottom and top of the monitor 6, and adding universal rods 4 on the mounting seat 2a, all the universal rods 4 above slide in the slide grooves 5a of the top connecting plate 5, and all the universal rods 4 below slide in the slide grooves 5a of the bottom connecting plate 5, the monitor 6 stays in the carrier frame 2 in a suspended state, so that the monitor 6 is no longer in contact with the carrier frame 2, and the heat of the monitor 6 itself can be better dissipated. The heat of the monitor 6 itself is transferred to the carrier frame 2, and by opening a heat dissipation groove 2b on the fixed frame of the carrier frame 2, the heat of the monitor 6 itself can be discharged outward through the heat dissipation groove 2b, thereby preventing the heat transferred to the carrier frame 2 from accumulating therein.
[0030] When the monitor 6 is subsequently inspected and maintained, the carrying frame 2 and the shielding plate 3 are set to be in sliding connection. When the inspection and maintenance of the monitor 6 is required, the carrying frame 2 and the magnetic strips 3a on the shielding plate 3 are adsorbed to each other in a closed state. First, the shielding plate 3 is pulled to the left and right sides, and the magnetic strips 3a on the shielding plate 3 are no longer adsorbed, and the monitor 6 is displayed. When the shielding plate 3 slides to the end of the carrying frame 2, the fixed frame of the carrying frame 2 begins to separate, and the magnetic strips 3a on the carrying frame 2 are no longer adsorbed. At this time, the monitor 6 is suspended. In front of us, the monitor 6 can be rotated manually to better inspect and maintain the monitor 6. When the monitor 6 rotates, the universal rod 4 slides in the slide groove 5a on the connecting plate 5. Through the above method, the supporting frame 2 and the baffle plate 3 are expanded to the left and right sides, so that the space around the monitor 6 is increased, which is conducive to the inspection and maintenance of the monitor 6. After completing the inspection and maintenance of the monitor 6, the supporting frame 2 and the baffle plate 3 are restored to the initial state, and the magnetic strips 3a on the supporting frame 2 and the baffle plate 3 will be adsorbed again for closing.
[0031] Taking into account that when the carrying frame 2 and the shielding plate 3 are unfolded to the left and right, they are restricted by the universal rod 4 and the slide groove 5a on the connecting plate 5. The unfolding distance of the carrying frame 2 and the shielding plate 3 is limited, which will affect the inspection and maintenance of the monitor 6. At this time, by adding a guide rail 7 to the connecting plate 5, an extension groove 7a is opened on the guide rail 7, so that the extension groove 7a of the guide rail 7 is connected with the slide groove 5a on the connecting plate 5. When the carrying frame 2 and the shielding plate 3 are unfolded to the left and right, the universal rod 4 moves into the extension groove 7a on the guide rail 7, so that the unfolding distance of the carrying frame 2 and the shielding plate 3 is increased, and the inspection and maintenance of the monitor 6 are more convenient;
[0032] By adding a fan 8 in the fixed frame of the carrier frame 2 and setting the blowing direction of the fan 8 to be toward the adjacent heat dissipation slot 2b, during the use of the utility model, the air flow in the carrier frame 2 is driven by the fan 8 to flow around the monitor 6, and the heat of the monitor 6 itself is directed to the heat dissipation slot 2b, so that the impact of temperature on the monitor 6 is reduced, and heat accumulation on the monitor 6 is avoided to damage the electronic components therein, thereby affecting the service life of the power system monitoring equipment.
[0033] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those familiar with the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications based on the spirit of the present invention are intended to be included in the scope of protection of the present invention.
Claims
1. A power system load data monitoring device, comprising a mounting frame, a carrying frame, a shielding plate, and a monitor; the mounting frame is slidably connected to the carrying frame, the carrying frame is composed of a plurality of fixed frames, and the rear portion of the fixed frame of the carrying frame is provided with a through slot for incoming wires; a shielding plate is fixedly connected to the fixed frame of the carrying frame, and all the shielding plates are in contact with each other; a monitor is provided in the carrying frame; and the characteristics are as follows: It also includes a universal rod and a connecting plate; a number of mounting seats are fixedly connected to the fixed frame of the supporting frame; all the mounting seats are rotatably connected to a universal rod; a connecting plate is fixedly connected to the bottom and top of the monitor, and all the connecting plates are provided with sliding grooves. All the universal rods on the top slide in the sliding grooves of the connecting plate at the top, and all the universal rods on the bottom slide in the sliding grooves of the connecting plate at the bottom, and the monitor stays in the supporting frame in a suspended state.
2. The power system load data monitoring device according to claim 1, characterized in that: A plurality of heat dissipation slots are provided on the fixed frame of the carrying frame.
3. The power system load data monitoring device according to claim 1, characterized in that: All the bearing frames are connected to the corresponding shielding plates in a sliding manner.
4. The power system load data monitoring device according to claim 3, characterized in that: All the carrying frames and all the shielding plates are provided with magnetic strips, and adjacent magnetic strips are attracted to each other.
5. The power system load data monitoring device according to claim 1, characterized in that: It also includes guide rails; all connecting plates are equipped with a plurality of guide rails, all guide rails are provided with extension grooves, and all guide rail extension grooves are connected with the corresponding slide grooves on the connecting plates.
6. The power system load data monitoring device according to claim 5, characterized in that: The invention also includes a fan; a fan is installed in the fixed frame of the carrying frame, and the blowing direction of all fans is toward the adjacent heat dissipation slots.