Electrical wiring supporting and protecting device for thermal power plant
By designing a thermal power plant electrical wiring support protection device with screw rod, motor and mobile mounting plate, the problem that existing devices cannot clamp multiple sets of cables at the same time and lack height adjustment function is solved, efficient clamping and flexible adjustment of multiple sets of electrical wiring is achieved, and maintenance efficiency and safety are improved.
Patent Information
- Application Number
- CN202510383367.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-07-01
AI Technical Summary
The existing electrical wiring support protection devices of thermal power plants usually can only clamp a single or a small number of cables, which cannot meet the needs of clamping multiple sets of cables at the same time, and lack the function of adjusting the cable height, which limits its convenience and breadth of use.
A device including a base, a first side plate, a second side plate, a screw rod, a motor, a guide rod and a mobile mounting plate is designed. The height adjustment of the mobile mounting plate is driven by the screw rod and a motor, and combined with multiple sets of fixing mechanisms and clamping components, clamping and flexible adjustment of multiple sets of electrical wiring is achieved.
The device can clamp multiple sets of electrical wiring at the same time, flexibly adjust the cable height and relative position, improve the operating efficiency and convenience during the maintenance process, ensure stable support of the cable and safety of maintenance personnel.
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Figure CN120237568A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electrical wiring, and particularly to a support and protection device for electrical wiring in thermal power plants. Background Art
[0002] As an important industrial facility that uses combustibles as fuel to produce electric energy, the production process of a thermal power plant involves a complex energy conversion process. Specifically, the basic production process of a thermal power plant includes the following key steps: First, fuel (such as coal, natural gas or oil) burns in a boiler, and the generated high-temperature heat heats water to convert it into high-pressure steam; this process converts the chemical energy of the fuel into heat energy. Subsequently, the high-pressure steam enters a steam turbine through a pipeline, and the pressure of the steam drives the blades of the steam turbine to rotate, thereby converting heat energy into mechanical energy. When the steam turbine rotates, it is connected to a generator through a shafting, driving the generator rotor to rotate, and using the principle of electromagnetic induction to convert mechanical energy into electric energy. This series of energy conversion processes constitutes the core of power generation in a thermal power plant.
[0003] However, in the daily operation of a thermal power plant, the stable operation of electrical equipment is crucial. However, due to the long-term exposure of the cables of electrical equipment to complex environmental factors such as high temperature, high pressure and mechanical stress, the cables may occasionally break or be damaged. Especially considering that the cables used in thermal power plants are usually large in size and heavy in weight, once the cable is disconnected or needs to be repaired, it will not only affect the stability of power supply, but may also pose a safety hazard to maintenance personnel. Therefore, for disconnected or to-be-repaired cables, an effective wiring support and protection device is needed to provide auxiliary support and ensure the safety of maintenance personnel.
[0004] Currently, most of the electrical wiring support and protection devices in the market for thermal power plants mainly use insulating rods with a clamping function. Although such devices can, to a certain extent, support and protect the cables, their structures are relatively simple and their functions are limited. Existing insulating rod devices can usually only clamp a single or a small number of cables and cannot meet the requirement of clamping multiple groups of cables simultaneously. In addition, these devices often lack the function of adjusting the height of the cables, making it difficult to flexibly meet the space requirements between different cables in a complex and changeable cable layout, thus limiting their convenience and wide application. Summary of the Invention
[0005] The purpose of the present invention is to provide a support and protection device for electrical wiring in thermal power plants to solve the problems that existing electrical wiring support and protection devices can usually only clamp a single or a small number of cables, cannot meet the requirement of clamping multiple groups of cables simultaneously, and lack the function of adjusting the height of the cables, which limits their convenience and wide application.
[0006] The electrical wiring support and protection device for a thermal power plant includes a base. At the top of the base, there are relatively arranged first side plates and second side plates fixedly provided. Between the bottom of the first side plate and the top of the base, there is a screw rod rotatably arranged. At the top of the first side plate, there is a motor fixedly provided and drivingly connected to the top of the screw rod. Between the bottom of the second side plate and the top of the base, there is a guide rod fixedly provided. The guide rod is arranged parallel to the screw rod. On the screw rod, there is a moving mounting plate threadedly connected. The moving mounting plate is slidably matched with the rod body of the guide rod. At the top of the moving mounting plate, there are multiple sets of fixing mechanisms capable of fixedly supporting the electrical wiring. At the bottom of the moving mounting plate, there is a supporting mechanism for auxiliary support of the electrical wiring. The supporting mechanism includes a clamping assembly for clamping the electrical wiring and a driving assembly for driving the clamping assembly to move synchronously with the moving mounting plate. At the bottom of the base, there is a stability mechanism capable of preventing the device from tilting.
[0007] Preferably, the fixing mechanism includes a limiting rod fixedly arranged at the top of the moving mounting plate. At the top of the limiting rod, there is a top plate fixedly provided. Between the bottom of the top plate and the top of the moving mounting plate, there is a screw rod rotatably arranged. At the top of the moving mounting plate and at the position between the screw rod and the limiting rod, there is a lower pressing plate. On the screw rod, there is an upper pressing plate threadedly arranged and adapted to the lower pressing plate. The upper pressing plate slides up and down along the limiting rod. At the top of the top plate, there is a turning handle rotatably arranged and fixedly connected to the top end of the screw rod. The electrical wiring is clamped between the upper pressing plate and the lower pressing plate.
[0008] Preferably, both the upper pressing plate and the lower pressing plate are arranged in a V shape. On the side walls of the upper pressing plate and the lower pressing plate in contact with the electrical wiring, there are multiple anti-slip bumps provided.
[0009] Preferably, the clamping assembly includes T-shaped grooves symmetrically opened at the bottom of the moving mounting plate along the central axis of the moving mounting plate. In the T-shaped grooves, a first T-shaped strip and a second T-shaped strip are respectively movably arranged. Between the adjacent side walls of the first T-shaped strip and the second T-shaped strip, there is a connecting plate fixedly provided. At the top of the connecting plate, there are multiple sets of mounting seats corresponding one-to-one to the fixing mechanisms. At the top of the mounting seats, there are supporting seats fixedly provided. On the side wall of the supporting seat, there are relatively arranged elastic clamping plates. At the end positions of the first T-shaped strip and the second T-shaped strip far from the connecting plate, there are limiting plates fixedly provided.
[0010] Preferably, the driving assembly includes a back plate mounted on the side wall of the second side plate. On the back plate, there is a fixed rack fixedly provided. On the side wall of the moving mounting plate close to the fixed rack, there is a fixing plate fixedly provided. On the fixing plate, there is a rotating shaft rotatably arranged. At one end of the rotating shaft, there is a main gear fixedly sleeved and meshed with the fixed rack. At the other end of the rotating shaft, there is a secondary gear fixedly sleeved. At the bottom of the first T-shaped strip, there is a moving rack fixedly provided and meshed with the secondary gear.
[0011] Preferably, the stability mechanism includes fixed blocks symmetrically arranged and fixedly installed on the side wall of the base. There are two relatively arranged fixed blocks on each side. A stabilizing plate is hinged between the fixed blocks. Sliding grooves are formed on the adjacent side walls of the stabilizing plate. Sliders are movably arranged in the sliding grooves. An installation plate is fixedly installed at the bottom of the base. A bidirectional telescopic rod penetrates through the installation plate, and the output end of the bidirectional telescopic rod is hinged to the end of the slider.
[0012] Preferably, a wear-resistant layer is provided on the surface of the stabilizing plate that contacts the ground.
[0013] Preferably, a push rod is fixedly installed at a position on the top of the base close to one side of the first side plate. A protective sleeve is sleeved on the push rod.
[0014] Preferably, moving wheels are fixedly installed at the four corners of the bottom of the base.
[0015] The advantages of the present invention are as follows: In the electrical wiring support and protection device for thermal power plants of the present invention, by setting the screw rod and multiple groups of fixing mechanisms, multiple groups of electrical wiring can be clamped simultaneously, and the height and relative position of the electrical wiring can be flexibly adjusted, greatly improving the operation efficiency and convenience during the maintenance process. By setting stable fixing mechanisms and clamping components, the slipping and damage of the cables during the maintenance process are effectively prevented, ensuring the safety of maintenance personnel. Moreover, the structural design is flexible and variable, capable of adapting to the cable requirements of different sizes, weights, and layouts, improving the versatility and practicality of the device. The driving component is set to drive the clamping component to change the distance between it and the fixing mechanism as the height of the electrical wiring changes, enhancing the auxiliary support effect on the electrical wiring, making the electrical wiring tend to be straight, and avoiding the problems of unevenness and bending of the electrical wiring under the influence of gravity, which affects the support and protection effect, and ensuring that the clamping and support effects on the electrical wiring are more stable. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 、 2 are schematic structural diagrams of different perspectives of the present invention.
[0017] Figure 3 is a schematic structural diagram of the driving component in the present invention.
[0018] Figure 4 is a schematic structural diagram of the fixing mechanism in the present invention.
[0019] Figure 5 is a schematic structural diagram of the movable mounting plate in the present invention.
[0020] Figure 6 is a schematic structural diagram of the stability mechanism in the present invention.
[0021] Figure 7 is a schematic structural diagram of the stabilizing plate in the present invention
[0022] Among them, 100 is the base; 101 is the moving wheel; 102 is the push rod; 103 is the protective sleeve; 104 is the first side plate; 105 is the motor; 106 is the lead screw; 107 is the second side plate; 108 is the guide rod; 109 is the moving mounting plate; 110 is the T-shaped groove; 200 is the fixing mechanism; 201 is the top plate; 202 is the upper pressure plate; 203 is the limiting rod; 204 is the lower pressure plate; 205 is the anti-slip bump; 206 is the screw; 207 is the turning handle; 300 is the supporting mechanism; 301 is the first T-shaped strip; 302 is the second T-shaped strip; 303 is the limiting plate; 304 is the elastic clamping plate; 305 is the supporting seat; 306 is the mounting seat; 307 is the connecting plate; 308 is the back plate; 309 is the fixed rack; 310 is the auxiliary gear; 311 is the moving rack; 312 is the main gear; 313 is the rotating shaft; 314 is the fixing plate; 400 is the stabilizing mechanism; 401 is the stabilizing plate; 402 is the bidirectional telescopic rod; 403 is the mounting plate; 404 is the sliding groove; 405 is the wear-resistant layer; 406 is the fixing block; 407 is the slider. Detailed implementation manners
[0023] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.
[0024] As Figures 1 to 7 shown, the electrical wiring support and protection device for a thermal power plant includes a base 100. A first side plate 104 and a second side plate 107 which are oppositely arranged are fixedly provided at the top of the base 100. A lead screw 106 is rotatably provided between the bottom of the first side plate 104 and the top of the base 100. A motor 105 which is drivingly connected to the top of the lead screw 106 is fixedly provided at the top of the first side plate 104. A guide rod 108 is fixedly provided between the bottom of the second side plate 107 and the top of the base 100. The guide rod 108 is arranged parallel to the lead screw 106. A moving mounting plate 109 is threadedly connected to the rod body of the lead screw 106. The moving mounting plate 109 is slidably matched with the rod body of the guide rod 108. Multiple groups of fixing mechanisms 200 capable of fixedly supporting electrical wiring are provided at the top of the moving mounting plate 109. A supporting mechanism 300 for auxiliary support of electrical wiring is provided at the bottom of the moving mounting plate 109. The supporting mechanism 300 includes a clamping assembly for clamping the electrical wiring and a driving assembly for driving the clamping assembly to move synchronously with the moving mounting plate 109. A stabilizing mechanism 400 capable of preventing the device from tilting is provided at the bottom of the base 100.
[0025] Through the fixing mechanism 200 and the clamping assembly, the electrical wiring is fixedly clamped, supported and protected, and it is convenient for multi-group support. According to the layout and space requirements of the electrical wiring, the operator can adjust the rotation direction and speed of the motor 105, drive the lead screw 106 to rotate through the transmission connection, and then drive the moving mounting plate 109 to move up and down along the axial direction of the lead screw 106 under the guidance of the guide rod 108 until reaching a suitable operating position, which is convenient for flexibly adjusting the height of the moving mounting plate 109, so as to meet the space requirements between different electrical wirings and enhance the convenience of the device.
[0026] In this embodiment, the fixing mechanism 200 includes a limiting rod 203 fixedly arranged on the top of the moving mounting plate 109. A top plate 201 is fixedly arranged at the top of the limiting rod 203. A screw rod 206 is rotatably arranged between the bottom of the top plate 201 and the top of the moving mounting plate 109. A lower pressing plate 204 is arranged at the top of the moving mounting plate 109 and between the screw rod 206 and the limiting rod 203. An upper pressing plate 202 adapted to the lower pressing plate 204 is threadedly arranged on the screw rod 206. The upper pressing plate 202 slides up and down along the limiting rod 203. A turning handle 207 fixedly connected to the top end of the screw rod 206 is rotatably arranged on the top of the top plate 201. The electrical wiring is clamped between the upper pressing plate 202 and the lower pressing plate 204.
[0027] The operator uses the fixing mechanism 200 to clamp and fix the electrical wiring. By rotating the turning handle 207, the screw rod 206 is driven to rotate, so that the upper pressing plate 202 moves downward along the limiting rod 203 until it clamps the electrical wiring together with the lower pressing plate 204, providing effective support and protection for the electrical wiring, effectively preventing the electrical wiring from slipping and being damaged during the maintenance process, and ensuring the safety of the maintenance personnel.
[0028] In this embodiment, both the upper pressing plate 202 and the lower pressing plate 204 are arranged in a V shape, and a plurality of anti-slip bumps 205 are arranged on the side walls of the upper pressing plate 202 and the lower pressing plate 204 that are in contact with the electrical wiring.
[0029] The V-shaped design and the anti-slip bumps 205 ensure that the electrical wiring is firmly clamped and not easy to slip.
[0030] In this embodiment, the driving component includes a back plate 308 installed on the side wall of the second side plate 107. A fixed rack 309 is fixedly provided on the back plate 308. A fixing plate 314 is fixedly provided on the side wall of the movable mounting plate 109 close to the fixed rack 309. A rotating shaft 313 is rotatably provided on the fixing plate 314. A main gear 312 engaged with the fixed rack 309 is fixedly sleeved at one end of the rotating shaft 313. A secondary gear 310 is fixedly sleeved at the other end of the rotating shaft 313. A moving rack 311 engaged with the secondary gear 310 is fixedly provided at the bottom of the first T-shaped bar 301. The clamping component includes T-shaped grooves 110 symmetrically formed at the bottom of the movable mounting plate 109 along the central axis of the movable mounting plate 109. A first T-shaped bar 301 and a second T-shaped bar 302 are respectively movably provided in the T-shaped grooves 110. A connecting plate 307 is fixedly provided between the adjacent side walls of the first T-shaped bar 301 and the second T-shaped bar 302. Multiple mounting seats 306 corresponding to the fixing mechanism 200 one by one are provided on the top of the connecting plate 307. A support seat 305 is fixedly provided on the top of the mounting seat 306. Elastic buckles 304 are oppositely provided on the side wall of the support seat 305. Limiting plates 303 are fixedly provided at the end positions of the first T-shaped bar 301 and the second T-shaped bar 302 far from the connecting plate 307.
[0031] After the electrical wiring is clamped and fixed by the fixing mechanism 200, the electrical wiring is snapped into the support seat 305 through the elastic buckle 304 to provide auxiliary support for the electrical wiring, so as to avoid problems such as unevenness and bending of the electrical wiring under the influence of gravity, which may affect the connection effect. The elastic buckle 304 on the support seat 305 ensures that the electrical wiring will not be damaged during the support process. When the mounting plate 109 moves up and down along the guide rod 108, the main gear 312 is driven to rotate through the meshing connection between the main gear 312 and the fixed rack 309. The secondary gear 310 rotates coaxially with the main gear 312 through the rotating shaft 313. Since the secondary gear 310 is engaged with the moving rack 311, the moving rack 311 is driven to move along the T-shaped groove 110. As the mounting plate 109 rises, the moving rack 311 drives the connecting plate 307 away from the mounting plate 109, enhancing the auxiliary support effect on the electrical wiring, making the electrical wiring tend to be in a straight state, and ensuring that the clamping and support effects on the electrical wiring are more stable.
[0032] In this embodiment, the stabilizing mechanism 400 includes fixed blocks 406 symmetrically arranged and fixedly installed on the side walls of the base 100. There are two oppositely arranged fixed blocks 406 on each side. A stabilizing plate 401 is hinged between the fixed blocks 406. Sliding grooves 404 are formed on the adjacent side walls of the stabilizing plate 401. Sliders 407 are movably arranged in the sliding grooves 404. An installation plate 403 is fixedly arranged at the bottom of the base 100. A bidirectional telescopic rod 402 penetrates through the installation plate 403. The output end of the bidirectional telescopic rod 402 is hinged to the end of the slider 407.
[0033] When the device moves to a suitable position, the bidirectional telescopic rod 402 is started, and the bidirectional telescopic rod 402 contracts. The output end of the bidirectional telescopic rod 402 drives the slider 407 to move along the sliding groove 404, so that the two stabilizing plates 401 approach each other and abut against the ground, effectively preventing the device from tipping and ensuring the stability and safety during the operation process.
[0034] In this embodiment, a wear-resistant layer 405 is provided on the surface of the stabilizing plate 401 that contacts the ground.
[0035] The provision of the wear-resistant layer 405 further improves the friction between the stabilizing plate 401 and the ground, prevents sliding, and extends the service life of the device.
[0036] In this embodiment, a push rod 102 is fixedly arranged at a position on the top of the base 100 close to one side of the first side plate 104. A protective sleeve 103 is sleeved on the push rod 102.
[0037] Through the design of the push rod 102 and the protective sleeve 103, the operator can more conveniently and safely control the device, enhancing the practicability of the device.
[0038] In this embodiment, moving wheels 101 are fixedly arranged at the four corners of the bottom of the base 100.
[0039] The moving wheels 101 at the bottom of the base 100 are used to easily move and position the device, facilitating the operator to change the position of the device, expanding the applicable range of the device, and enhancing the flexibility of the device.
[0040] Working process and principle: When this device is in use, the moving wheels 101 at the bottom of the base 100 are used to easily move and position the device. When the device is moved to a suitable position, the bidirectional telescopic rod 402 is started, and the bidirectional telescopic rod 402 contracts. The output end of the bidirectional telescopic rod 402 drives the slider 407 to move along the chute 404, so that the two stabilizing plates 401 approach each other and abut against the ground, effectively preventing the device from tipping over and ensuring the stability and safety during the operation process. The operator drives the screw rod 206 to rotate by turning the handle 207, so that the upper pressing plate 202 moves downward along the limiting rod 203 until it jointly clamps the electrical wiring with the lower pressing plate 204, providing effective support and protection for the electrical wiring, effectively preventing the electrical wiring from slipping and being damaged during the maintenance process, ensuring the safety of the maintenance personnel, and clamping the electrical wiring into the support seat 305 through the elastic buckle 304 to provide auxiliary support for the electrical wiring, so as to avoid problems such as unevenness and bending of the electrical wiring under the influence of gravity, which affect the connection effect. Then, by adjusting the rotation direction and speed of the motor 105, the transmission connection is used to drive the screw rod 106 to rotate, and then drive the moving mounting plate 109 to move up and down along the axial direction of the screw rod 106 under the guidance of the guide rod 108 until it reaches a suitable operating position, facilitating the flexible adjustment of the height of the moving mounting plate 109, so as to meet the space requirements between different electrical wirings and enhance the convenience of the device. When the mounting plate 109 moves up and down along the guide rod 108, through the meshing connection between the main gear 312 and the fixed rack 309, the main gear 312 is driven to rotate. The secondary gear 310 realizes coaxial rotation with the main gear 312 through the rotating shaft 313. Because the secondary gear 310 is meshed with the moving rack 311, the moving rack 311 is driven to move along the T-shaped groove 110. As the mounting plate 109 rises, the moving rack 311 drives the connecting plate 307 away from the mounting plate 109, enhancing the auxiliary support effect on the electrical wiring and making the electrical wiring tend to be in a straight state, ensuring that the clamping and support effects on the electrical wiring are more stable.
[0041] As is known by technical common sense, the present invention can be implemented by other embodiments without departing from its spiritual essence or essential features. Therefore, the above-disclosed embodiments are illustrative in all aspects and not exclusive. All changes within the scope of the present invention or within the scope equivalent to the present invention are encompassed by the present invention.
Claims
1. The electrical wiring support and protection device of a thermal power plant is characterized by: The invention comprises a base (100), wherein a first side plate (104) and a second side plate (107) arranged opposite to each other are fixedly provided on the top of the base (100), a screw rod (106) is rotatably provided between the bottom of the first side plate (104) and the top of the base (100), a motor (105) which is transmission-connected to the top of the screw rod (106) is fixedly provided on the top of the first side plate (104), a guide rod (108) is fixedly provided between the bottom of the second side plate (107) and the top of the base (100), the guide rod (108) is arranged parallel to the screw rod (106), and the screw rod (106) is threadedly connected to the guide rod (108) on its rod body. A movable mounting plate (109) is connected, the movable mounting plate (109) is slidably matched with the rod body of the guide rod (108), the top of the movable mounting plate (109) is provided with a plurality of fixing mechanisms (200) capable of fixing and supporting electrical wiring, the bottom of the movable mounting plate (109) is provided with a supporting mechanism (300) for auxiliary support of the electrical wiring, the supporting mechanism (300) comprises a clamping component for clamping the electrical wiring and a driving component for driving the clamping component to move synchronously with the movable mounting plate (109), and the bottom of the base (100) is provided with a stabilizing mechanism (400) capable of preventing the device from tilting.
2. The electrical wiring support and protection device for a thermal power plant according to claim 1, characterized in that: The fixing mechanism (200) comprises a limiting rod (203) fixedly arranged on the top of the movable mounting plate (109); a top plate (201) is fixedly arranged on the top of the limiting rod (203); a screw rod (206) is rotatably arranged between the bottom of the top plate (201) and the top of the movable mounting plate (109); a lower pressing plate (204) is arranged on the top of the movable mounting plate (109) and between the screw rod (206) and the limiting rod (203); an upper pressing plate (202) matched with the lower pressing plate (204) is threadedly arranged on the rod body of the screw rod (206); the upper pressing plate (202) slides up and down along the limiting rod (203); a rotating handle (207) fixedly connected to the top of the screw rod (206) is rotatably arranged on the top of the top plate (201); and the electrical wiring clamp is arranged between the upper pressing plate (202) and the lower pressing plate (204).
3. The electrical wiring support and protection device for a thermal power plant according to claim 2, characterized in that: The upper pressing plate (202) and the lower pressing plate (204) are both arranged in a V shape, and a plurality of anti-slip convex points (205) are arranged on the side walls of the upper pressing plate (202) and the lower pressing plate (204) that are in contact with the electrical wiring.
4. The electrical wiring support and protection device for a thermal power plant according to claim 2, characterized in that: The clamping assembly comprises a T-shaped slot (110) symmetrically arranged at the bottom of the movable mounting plate (109) along the central axis of the movable mounting plate (109); a first T-shaped bar (301) and a second T-shaped bar (302) are movably arranged in the T-shaped slot (110); a connecting plate (307) is fixedly arranged between the adjacent side walls of the first T-shaped bar (301) and the second T-shaped bar (302); a plurality of mounting seats (306) corresponding to the fixing mechanism (200) are arranged on the top of the connecting plate (307); a supporting seat (305) is fixedly arranged on the top of the mounting seat (306); a relatively arranged elastic buckle plate (304) is arranged on the side wall of the supporting seat (305); and a limiting plate (303) is fixedly arranged at the end positions of the first T-shaped bar (301) and the second T-shaped bar (302) away from the connecting plate (307).
5. The electrical wiring support and protection device for a thermal power plant according to claim 4, characterized in that: The driving assembly comprises a back plate (308) mounted on the side wall of the second side plate (107), a fixed rack (309) being fixedly provided on the back plate (308), a fixed plate (314) being fixedly provided on the side wall of the movable mounting plate (109) close to the fixed rack (309), a rotating shaft (313) being rotatably provided on the fixed plate (314), a main gear (312) being meshed and connected with the fixed rack (309) being fixedly provided on one end of the rotating shaft (313), a sub-gear (310) being fixedly provided on the other end of the rotating shaft (313), and a movable rack (311) being meshed and connected with the sub-gear (310) being fixedly provided on the bottom of the first T-shaped bar (301).
6. The electrical wiring support and protection device for a thermal power plant according to claim 1, characterized in that: The stabilizing mechanism (400) comprises a fixed block (406) fixedly mounted on the side wall of the base (100) and symmetrically arranged, and two fixed blocks (406) are arranged opposite to each other on each side, a stabilizing plate (401) is hingedly arranged between the fixed blocks (406), and a slide groove (404) is provided on the adjacent side walls of the stabilizing plate (401), and a slider (407) is movably arranged in the slide groove (404), and a mounting plate (403) is fixedly mounted on the bottom of the base (100), and a bidirectional telescopic rod (402) is penetrated through the mounting plate (403), and the output end of the bidirectional telescopic rod (402) is hingedly connected to the end of the slider (407).
7. The electrical wiring support and protection device for a thermal power plant according to claim 6, characterized in that: A wear-resistant layer (405) is provided on the surface of the stabilizing plate (401) that contacts the ground.
8. The electrical wiring support and protection device for a thermal power plant according to claim 6, characterized in that: A push rod (102) is fixedly provided at a position on the top of the base (100) close to one side of the first side plate (104), and a protective sleeve (103) is sleeved on the push rod (102).
9. The electrical wiring support and protection device for a thermal power plant according to claim 8, characterized in that: Moving wheels (101) are fixedly provided at the four corners of the bottom of the base (100).