Moving device of high-voltage cabinet
By designing a mobile device for the high-voltage switchgear and utilizing the communication connection between the main control and the controlled device, the high-voltage switchgear can be raised or lowered synchronously, solving the safety hazards and inconvenience of disassembly and assembly caused by single-sided equipment failure, and improving maintenance efficiency and safety.
Patent Information
- Application Number
- CN202421758928.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-07-24
AI Technical Summary
During the maintenance or replacement of high-voltage switchgear, a single-sided equipment cabinet malfunction cannot be resolved, leading to malfunctions in related equipment. Furthermore, the center of gravity of the high-voltage switchgear is prone to shift when it is raised or lowered synchronously, posing a safety hazard.
Design a moving device for a high-voltage switchgear, including a main control device and a controlled device, which are connected by communication to enable the two to perform lifting or lowering actions synchronously, ensuring that the two ends of the high-voltage switchgear move synchronously and avoiding center of gravity shift.
It enables the safe and stable movement of the high-voltage switchgear, avoids safety issues caused by center of gravity shift, simplifies the disassembly and assembly process, and improves work efficiency.
Smart Images

Figure CN223729244U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of electrical equipment installation auxiliary tool, specifically a high pressure cabinet's moving device. BACKGROUND
[0002] The indoor GIS high pressure cabinet is the key equipment in electrical equipment, if the single-sided equipment cabinet body fails after the equipment is put into operation, the single-sided fault cabinet body cannot be removed from the equipment sequence without removing the whole side equipment, and the new cabinet body can only be installed on the reserved position, and the problems of this case are as follows: 1. the sequence of the fault equipment is not removed, which is easy to cause the failure of the associated equipment, 2. the reserved installation position is occupied by the new equipment, and once the equipment is transformed in the later period, the position is insufficient. When the single high pressure cabinet is removed from the sequence, if the two ends of the high pressure cabinet cannot be lifted or lowered synchronously, the center of gravity of the high pressure cabinet is easy to deviate, so that the high pressure cabinet is easy to fall, which threatens the life safety of workers. CONTENT OF THE UTILITY MODEL
[0003] In view of the above technical problems, the utility model discloses a high pressure cabinet's moving device, comprising: master control device and controlled device;The master control device and the controlled device are respectively detachably installed at both ends of the high pressure cabinet, and are used for executing the lifting or lowering action of the high pressure cabinet;The master control device and the controlled device are in communication connection, so that the controlled device can execute the lifting or lowering action of the high pressure cabinet synchronously with the master control device. When the high pressure cabinet is removed or installed, both ends can be lifted or lowered synchronously, and the safety problem caused by the deviation of the center of gravity after lifting the single end is avoided.
[0004] To solve the above technical problems, the application provides a high pressure cabinet's moving device, comprising: master control device and controlled device;The master control device and the controlled device are respectively detachably installed at both ends of the high pressure cabinet, and are used for executing the lifting or lowering action of the high pressure cabinet;The master control device and the controlled device are in communication connection, so that the controlled device can execute the lifting or lowering action of the high pressure cabinet synchronously with the master control device.
[0005] In some embodiments, the master control device comprises: a main high-voltage cabinet lifting structure, a first communication module, a first clock unit, a human-computer interaction module, a display screen, a first speaker and a first control module; the first control module is electrically connected with the communication module, for sending control instructions to the controlled device through the first communication module, and controlling the main high-voltage cabinet lifting structure; the first clock unit is electrically connected with the first control module, for determining the current time of the master control device; the human-computer interaction module is electrically connected with the first control module, for obtaining the setting information input by the staff; the display screen is installed on the main high-voltage cabinet lifting structure, and is electrically connected with the first control module, for displaying the current state of the master control device, and displaying the setting information; the first speaker is installed on the main high-voltage cabinet lifting structure, and is electrically connected with the first control module, for prompting the staff the current work progress of the master control device; the main high-voltage cabinet lifting structure is used to drive the high-voltage cabinet to lift.
[0006] In some embodiments, the controlled device comprises: a secondary high-voltage cabinet lifting structure, a second control module, a second communication module, a second clock unit and a second speaker; the second communication module is communicatively connected with the first communication module; the second control module is electrically connected with the second communication module, for obtaining the control instructions sent by the first control module through the second communication module, and controlling the secondary high-voltage cabinet lifting structure according to the control instructions; the second clock unit is electrically connected with the second control module, for determining the current time of the controlled device, and synchronizing the clock with the first clock unit; the second speaker is installed on the secondary high-voltage cabinet lifting structure, and is electrically connected with the second control module, for playing the current work progress of the controlled device.
[0007] In some embodiments, the main high-voltage cabinet lifting structure or the auxiliary high-voltage cabinet lifting structure comprises: a main connecting plate, a support beam, a first driving motor, a second driving motor, a first moving assembly, a second moving assembly, a first supporting assembly and a second supporting assembly; the main connecting plate has two plates, which are respectively installed on both sides of the support beam to form an H-shaped structure with the support beam; each of the main connecting plates is provided with a connecting hole for connecting with the high-voltage cabinet; the first moving assembly and the second moving assembly are both installed vertically through the support beam and are threadedly connected with the support beam; the first driving motor is electrically connected with the first control module or the second control module and is fixedly installed on the support beam, for driving the first moving assembly and the second moving assembly to change the length of the support beam; the first supporting assembly and the second supporting assembly are installed between the first moving assembly and the second moving assembly and vertically pass through the support beam and are threadedly connected with the support beam; the second driving motor is installed between the first supporting assembly and the second supporting assembly and is fixedly connected with the support beam, is electrically connected with the first control module or the second control module, and is used for driving the first supporting assembly and the second supporting assembly to change the length of the support beam.
[0008] In some embodiments, the first moving assembly or the second moving assembly comprises: a first threaded rod and a wheel; one end of the first threaded rod is connected with the wheel vertically through the support beam, the first threaded rod is threadedly connected with the support beam, is in transmission connection with the first driving motor, is used for changing the length of the support beam under the driving of the first driving motor, and is used for moving the high-voltage cabinet when the high-voltage cabinet is in a lifted state.
[0009] In some embodiments, the first supporting assembly and the second supporting assembly comprise: a second threaded rod and a support plate; one end of the second threaded rod is fixedly connected with the support plate vertically through the support beam, the second threaded rod is threadedly connected with the support beam, is in transmission connection with the second driving motor, is used for changing the length of the support beam under the driving of the second driving motor, and further realizes lifting or falling of the high-voltage cabinet.
[0010] The utility model discloses a beneficial effect: through a kind of high voltage cabinet's moving device, comprising: main control device and controlled device;The main control device and the controlled device are detachably installed at the both ends of high voltage cabinet respectively, for executing the lifting or falling action of the high voltage cabinet;The main control device is communicated with the controlled device connection, so that the controlled device can be synchronized with the main control device and execute the lifting or falling action of the high voltage cabinet. When high voltage cabinet is released or installed, both ends can be lifted or fallen synchronously, avoid the safety problem that single end lifting leads to gravity center deviation and then appears. It also makes the disassembly and assembly of high voltage cabinet sequence become simple and convenient. BRIEF DESCRIPTION OF DRAWINGS
[0011] The scope of the disclosure can be better understood by reading the detailed description of exemplary embodiments in conjunction with the attached drawings. The drawings included are:
[0012] Figure 1 It is a whole connection relation schematic diagram of the moving device of high voltage cabinet provided for the embodiment of the application;
[0013] Figure 2 It is a structure schematic diagram of main high voltage cabinet lifting structure provided for the embodiment of the application.
[0014] In the drawing: 100-main control device, 101-first communication module, 102-first control, 103-first clock unit, 104-display screen, 105-first drive motor, 106-second drive motor, 107-first loudspeaker, 108-human-computer interaction module, 200-controlled device, 201-second communication module, 202-second control module, 203-second loudspeaker, 204-second clock unit, 301-main connecting plate, 302-first moving assembly, 303-first support assembly, 304-second support assembly, 305-second moving assembly, 306-support beam. DETAILED DESCRIPTION
[0015] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application will be described in detail below in conjunction with the drawings, the described embodiments should not be regarded as limitation to the present application, all other embodiments obtained by those skilled in the art without doing creative work belong to the scope of protection of the present application.
[0016] In the following description, "some embodiments" are related to a subset of all possible embodiments, but it can be understood that "some embodiments" can be the same subset or different subset of all possible embodiments, and can be combined with each other without conflict.
[0017] If the application file contains similar descriptions such as "first\second\third", the following description is added: in the following description, the terms "first\second\third" referred to are only to distinguish similar objects, and do not represent a specific order of the objects. Understandably, "first\second\third" can be interchanged in a specific order or sequence as allowed, so that the embodiments described herein can be implemented in an order other than that illustrated or described herein.
[0018] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the specification is for describing the embodiments of the application only and is not intended to limit the application.
[0019] Embodiment 1:
[0020] In view of the problems in the background art, such as Figure 1 and Figure 2 A moving device of a high-voltage cabinet includes a master control device 100 and a controlled device 200.
[0021] The master control device 100 and the controlled device 200 are respectively detachably installed at two ends of the high-voltage cabinet, and are used to perform lifting or lowering actions on the high-voltage cabinet. The master control device 100 is in communication connection with the controlled device 200, so that the controlled device 200 can perform the lifting or lowering actions on the high-voltage cabinet synchronously with the master control device 100.
[0022] In some embodiments, the master control device 100 includes a master high-voltage cabinet lifting structure, a first communication module 101, a first clock unit 103, a man-machine interaction module 108, a display screen 104, a first speaker 107, and a first control module 102.
[0023] The first control module 102 is electrically connected with the communication module, and is used to send control instructions to the controlled device 200 through the first communication module 101, and to control the master high-voltage cabinet lifting structure. The first clock unit 103 is electrically connected with the first control module 102, and is used to determine the current time of the master control device 100. The man-machine interaction module 108 is electrically connected with the first control module 102, and is used to obtain setting information input by a worker. The display screen 104 is installed on the master high-voltage cabinet lifting structure, and is electrically connected with the first control module 102, and is used to display the current state of the master control device 100, and to display the setting information. The first speaker 107 is installed on the master high-voltage cabinet lifting structure, and is electrically connected with the first control module 102, and is used to prompt the worker of the current work progress of the master control device 100. The master high-voltage cabinet lifting structure is used to drive the high-voltage cabinet to lift.
[0024] In some embodiments, the controlled device 200 comprises a secondary high-voltage cabinet lifting structure, a second control module 202, a second communication module 201, a second clock unit 204 and a second speaker 203. The second communication module 201 is in communication connection with the first communication module 101. The second control module 202 is in electrical connection with the second communication module 201, for obtaining the control instructions sent by the first control module 102 through the second communication module 201, and controlling the secondary high-voltage cabinet lifting structure according to the control instructions. The second clock unit 204 is in electrical connection with the second control module 202, for determining the current time of the controlled device 200, and clock synchronizing with the first clock unit 103. The second speaker 203 is installed on the secondary high-voltage cabinet lifting structure, and is in electrical connection with the second control module 202, for playing the current working process of the controlled device 200.
[0025] When the high-voltage cabinet is lifted or lowered, the staff inputs the setting information to the master control device 100 to determine the process to be performed by the mobile device, such as determining whether the mobile device performs lifting or lowering operation on the high-voltage cabinet, and if the lifting operation is performed, how high the high-voltage cabinet needs to be lifted. After obtaining the setting information, the first control module 102 generates corresponding execution instructions according to the setting information, and controls the main high-voltage cabinet lifting structure according to the execution instructions, and simultaneously sends the execution instructions to the second control unit. The second control unit can control the secondary high-voltage cabinet lifting structure according to the execution instructions and the second clock unit 204, so that the high-voltage cabinet can safely and smoothly complete the lifting or lowering operation. The current time between the first clock unit 103 and the second clock unit 204 is synchronized in real time, so that the first control module 102 and the second control module 202 can execute the operation according to the execution instructions, and the current time can be used as the execution condition of the instructions, so that the master control device 100 can act simultaneously with the controlled device 200, to ensure that the high-voltage cabinet can be safely and smoothly lifted and lowered. Moreover, the first speaker 107 and the second speaker 203 can issue a notification when the lifting or lowering operation is performed, to avoid affecting the safety of the staff when an accident occurs, so as to ensure the safety of the staff.
[0026] The master control device 100 and the controlled device 200 are different except for the electronic devices, and the main high-voltage cabinet lifting structure and the auxiliary high-voltage cabinet lifting structure are completely the same, so the main high-voltage cabinet lifting structure and the auxiliary high-voltage cabinet lifting structure can be introduced uniformly. Therefore, in some embodiments, the main high-voltage cabinet lifting structure or the auxiliary high-voltage cabinet lifting structure comprises a main connecting plate 301, a support beam 306, a first driving motor 105, a second driving motor 106, a first moving assembly 302, a second moving assembly 305, a first supporting assembly 303, and a second supporting assembly 304.
[0027] The main connecting plate 301 has two plates, which are respectively installed on the two sides of the support beam 306 and form an H-shaped structure with the support beam 306. Each of the main connecting plates 301 is provided with a connecting hole for connecting with the high-voltage cabinet. The first moving assembly 302 and the second moving assembly 305 are both vertically installed through the support beam 306 and are threadedly connected with the support beam 306. The first driving motor 105 is electrically connected with the first control module 102 or the second control module 202, is fixedly installed on the support beam 306, and is used for driving the first moving assembly 302 and the second moving assembly 305 to change the length of the first moving assembly 302 and the second moving assembly 305 through the support beam 306. The first supporting assembly 303 and the second supporting assembly 304 are installed between the first moving assembly 302 and the second moving assembly 305 and vertically pass through the support beam 306 and are threadedly connected with the support beam 306. The second driving motor 106 is installed between the first supporting assembly 303 and the second supporting assembly 304, is fixedly connected with the support beam 306, is electrically connected with the first control module 102 or the second control module 202, and is used for driving the first supporting assembly 303 and the second supporting assembly 304 to change the length of the first supporting assembly 303 and the second supporting assembly 304 through the support beam 306.
[0028] In some embodiments, the first moving assembly 302 or the second moving assembly 305 comprises a first threaded rod and a wheel.
[0029] One end of the first threaded rod is connected with the wheel vertically through the support beam 306, the first threaded rod is threadedly connected with the support beam 306, is in transmission connection with the first driving motor 105, is used for changing the length through the support beam 306 under the driving of the first driving motor 105, and is used for moving the high-voltage cabinet when the high-voltage cabinet is in a lifted state.
[0030] In some embodiments, the first supporting assembly 303 and the second supporting assembly 304 comprise a second threaded rod and a support plate.
[0031] One end of the second threaded rod is fixedly connected with the support plate through the support beam 306, the second threaded rod is threadedly connected with the support beam 306, and the second threaded rod is in transmission connection with the second driving motor 106, so as to change the length of the support beam 306 under the driving of the second driving motor 106, thereby realizing lifting or falling of the high-voltage cabinet.
[0032] The working principle of the main / auxiliary high-voltage cabinet lifting structure is that the high-voltage cabinet to be moved is connected with the main connecting plate 301 through the quick-release bolt structure. At this time, the entire high-voltage cabinet is still in a fallen state. At this time, the first support assembly 303 and the second support assembly 304 can be driven by the second driving motor 106, so that the support plates of the first support assembly 303 and the second support assembly 304 are placed on the ground, and at this time, the force is continuously applied, so that the supporting beam and the main connecting plate 301 are integrally lifted, thereby driving the high-voltage cabinet to be lifted. The lifting of the high-voltage cabinet is realized.
[0033] After the high-voltage cabinet is lifted, the guide rail is inserted below the first moving assembly 302 and the second moving assembly 305, and then the first moving assembly 302 and the second moving assembly 305 are controlled to move downward, so that the wheels of the first moving assembly 302 and the second moving assembly 305 are clamped into the guide rail. At this time, the first support assembly 303 and the second support assembly 304 are controlled to move upward, at this time, the first moving assembly 302 and the second moving assembly 305 support the overall weight of the high-voltage cabinet, at this time, the main / auxiliary high-voltage cabinet lifting device can be pushed or pulled, so that the high-voltage cabinet is moved from the original position, which is convenient for the maintenance of the high-voltage cabinet, and also avoids the need to remove the entire side equipment when single-sided high-voltage cabinet maintenance is required.
[0034] Similarly, when the high-voltage cabinet needs to be returned, the guide rail needs to be laid in advance, and then the first moving assembly 302 and the second moving assembly 305 are moved into the corresponding guide rail, and then the main / auxiliary lifting structure is continuously pushed or pulled, so that the high-voltage cabinet reaches the predetermined position. At this time, the first moving assembly 302 and the second moving assembly 305 are driven upward by the first driving motor 105, so that the high-voltage cabinet slowly falls, and the first moving assembly 302 and the second moving assembly 305 are continuously driven, so that the wheels are finally separated from the ground, and then the quick-release bolt of the high-voltage cabinet and the main connecting plate 301 is removed, thereby completing the movement and maintenance operation of the high-voltage cabinet.
[0035] Therefore, the technical scheme of the application can realize that when a certain high-voltage cabinet needs to be maintained, the sequence does not need to be removed, and only the high-voltage cabinet that needs to be maintained needs to be taken out of the sequence. In the process of taking out, in order to ensure that the high-voltage cabinet can be safely and efficiently moved, a wireless communication mode is adopted, so that the main / auxiliary high-voltage cabinet lifting device can act at the same time, avoiding the problem of side turning or toppling that is prone to occur when the high-voltage cabinet is taken out, ensuring the safety of the workers and improving the work efficiency.
[0036] The above is only an embodiment of the application, but the protection scope of the application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the application, which should be covered in the protection scope of the application. Therefore, the protection scope of the application should be subject to the protection scope of the claims.
Claims
1. A moving device of a high-voltage cabinet, characterized in that, The utility model relates to a high voltage cabinet lifting device, including: Master control device and controlled device; The master control device and the controlled device are respectively detachable installation in the both ends of high voltage cabinet, be used for carrying out the lifting or falling action to high voltage cabinet to the master control device and the controlled device communication connection, make the controlled device can with the master control device synchronous execution to the lifting or falling action of high voltage cabinet; The master control device includes: master high voltage cabinet lifting structure, first communication module and first control module; The first control module is electrically connected with the communication module, is used for sending control instruction to the controlled device through the first communication module, and controls the master high voltage cabinet lifting structure; The master high voltage cabinet lifting structure is used to drive the high voltage cabinet to lift; The controlled device includes: auxiliary high voltage cabinet lifting structure, second control module and second communication module; The second communication module is in communication connection with the first communication module; The second control module is electrically connected with the second communication module, is used for obtaining the control instruction sent by the first control module through the second communication module, and controls the auxiliary high voltage cabinet lifting structure according to the control instruction; The master high voltage cabinet lifting structure or the auxiliary high voltage cabinet lifting structure includes: main connecting plate, support beam, first drive motor, second drive motor, first moving assembly, second moving assembly, first support assembly and second support assembly; The main connecting plate has two, is installed in the both sides of support beam respectively, with the support beam forms H shape structure; Each main connecting plate is equipped with the connecting hole for being connected with the high voltage cabinet; The first moving assembly and the second moving assembly are vertically installed through the support beam, and are screw-connected with the support beam; The first drive motor is electrically connected with the first control module or the second control module, is fixedly installed on the support beam, is used to drive the first moving assembly and the second moving assembly, so that the length of the first moving assembly and the second moving assembly through the support beam changes; The first support assembly and the second support assembly are installed between the first moving assembly and the second moving assembly, and are screw-connected with the support beam vertically through the support beam; The second drive motor is installed between the first support assembly and the second support assembly, is fixedly connected with the support beam, is electrically connected with the first control module or the second control module, and is used to drive the first support assembly and the second support assembly, so that the length of the first support assembly and the second support assembly through the support beam changes. The master control device further includes: first clock unit, man-machine interaction module, display screen, first loudspeaker; 2. The mobile device of claim 1, wherein, The first clock unit is electrically connected with the first control module, is used to determine the current time of the master control device; The man-machine interaction module is electrically connected with the first control module, is used to obtain the setting information input by the staff; The display screen is installed on the master high voltage cabinet lifting structure, is electrically connected with the first control module, and is used to display the current state of the master control device and the setting information. The first speaker is installed on the main high-voltage cabinet lifting structure and is electrically connected with the first control module, and is used to prompt the current work progress of the master control device to the staff.
3. The mobile device of claim 2, wherein, The controlled device further comprises a second clock unit and a second speaker. The second clock unit is electrically connected with the second control module, and is used to determine the current time of the controlled device and synchronize the clock with the first clock unit. The second speaker is installed on the auxiliary high-voltage cabinet lifting structure and is electrically connected with the second control module, and is used to play the current work progress of the controlled device.
4. The mobile device of claim 3, wherein, The first moving assembly or the second moving assembly comprises a first threaded rod and a wheel. One end of the first threaded rod is vertically connected with the wheel through the support beam, the first threaded rod is threadedly connected with the support beam, and is drivingly connected with the first driving motor, so as to change the length of the first threaded rod penetrating through the support beam under the driving of the first driving motor, and move the high-voltage cabinet when the high-voltage cabinet is in the lifted state.
5. The mobile device of claim 3, wherein, The first support assembly and the second support assembly comprise a second threaded rod and a support plate. One end of the second threaded rod is fixedly connected with the support plate through the support beam, the second threaded rod is threadedly connected with the support beam, and is drivingly connected with the second driving motor, so as to change the length of the second threaded rod penetrating through the support beam under the driving of the second driving motor, and then lift or lower the high-voltage cabinet.