Transmission line tower base bare soil vegetation restoration ecological greening construction equipment

By designing construction equipment including a support platform, auxiliary power supply mechanism, on-site dust removal mechanism, and mobile steering mechanism, the problems of inconvenient equipment movement and untimely dust removal in the vegetation restoration of bare soil at the base of transmission line towers were solved, achieving efficient and flexible vegetation restoration and dust removal results.

CN119631747BActive Publication Date: 2025-11-25STATE GRID FUJIAN ELECTRIC POWER RES INST +1
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Patent Information

Application Number
CN202411748016.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-11-25
Estimated Expiration
2044-12-02

AI Technical Summary

Technical Problem

Existing technologies for restoring vegetation on bare soil near transmission line tower foundations suffer from inconvenient equipment movement and untimely dust and debris removal, resulting in low equipment flexibility and inability to meet normal usage requirements.

Method used

A construction device was designed, comprising a support platform, an auxiliary power supply mechanism, an on-site dust removal mechanism, an auxiliary vegetation trimming mechanism, and a moving and steering mechanism. Through an electric telescopic pole, casters, a drive motor, and a solar power supply system, the device can be moved flexibly, and dust removal and vegetation restoration can be achieved.

Benefits of technology

It improves the flexibility and dust removal efficiency of the equipment, saves on the operation cycle and operating costs, and ensures the efficient implementation of vegetation restoration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a power transmission line tower foundation bare soil vegetation restoration ecological greening construction equipment and relates to the technical field of vegetation restoration equipment, which comprises a supporting table and further comprises: an auxiliary power supply mechanism is installed on the top of the supporting table, the application has the beneficial effects that: the application is provided with a supporting table, a supporting bottom plate and a field dust removal mechanism, the inverter timely converts into power resources and is stored in the storage bin, realizing self-sufficient supply of power resources, the sealed storage tank is used for storing equipment and articles that need to be sealed and stored, and one side is isolated by the baffle; the application is provided with an auxiliary power supply mechanism and a mobile steering mechanism, the auxiliary power supply mechanism is provided to facilitate the classification storage of the on-site equipment while providing the required power resources of the overall power equipment, saving the overall use cost, the mobile steering mechanism is provided to facilitate the free steering of the overall equipment while conveniently moving, improving the overall flexibility of the equipment use.
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Description

Technical Field

[0001] This invention relates to the field of vegetation restoration equipment technology, specifically to ecological greening construction equipment for vegetation restoration of bare soil at the base of power transmission line towers. Background Technology

[0002] The transmission line tower foundation refers to the basic structure that supports the transmission line tower. It is the supporting part of the tower, responsible for transmitting the weight of the tower and external forces such as wind loads. The design and construction quality of the tower foundation directly affects the safety and stability of the transmission line, thus it occupies an important position in power engineering.

[0003] Ecological greening and vegetation restoration of bare soil refers to the restoration and greening of exposed soil (such as bare soil areas caused by mining, desertification, industrial construction, or natural disasters) through artificial or natural methods. This aims to improve the ecological environment, enhance soil water and soil conservation functions, and promote biodiversity recovery. Such construction typically involves multiple technical and management measures to ensure the sustainability of the restoration results.

[0004] Existing technologies for bare soil vegetation restoration near transmission line tower foundations have the following problems: the restoration equipment needs to be moved around, and the different environments make it inconvenient to move the equipment; the large amount of dust and debris generated during on-site vegetation restoration work is not cleaned up in a timely manner, which not only affects the hygiene of the working environment, but also easily causes the equipment to be blocked by residue, resulting in low overall equipment flexibility and inability to meet normal use requirements. Therefore, this invention needs to design ecological greening construction equipment for bare soil vegetation restoration of transmission line tower foundations to solve the above-mentioned problems. Summary of the Invention

[0005] The purpose of this invention is to provide construction equipment for ecological greening and vegetation restoration of bare soil at the base of power transmission line towers, so as to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an ecological greening construction device for vegetation restoration of bare soil at the base of transmission line towers, comprising a support platform, and further comprising:

[0007] An auxiliary power supply mechanism is installed on the top of the support platform, a fixed frame is installed on the top of the support platform, the fixed frame is located on one side of the auxiliary power supply mechanism, and an on-site dust removal mechanism is installed on the top of the fixed frame.

[0008] The bottom of the support platform is fixedly connected to two symmetrically distributed electric telescopic rods. The bottom of each electric telescopic rod is fixedly connected to a support base plate. The output ends of both electric telescopic rods pass through the support base plate and are connected to an auxiliary vegetation trimming mechanism.

[0009] The auxiliary vegetation trimming mechanism includes a mounting plate. The output ends of the two electric telescopic rods pass through the support base plate and are fixedly connected to the mounting plate. The bottom of the two mounting plates is fixedly connected to a fixing rod. The bottom of the two fixing rods is equipped with a connecting sleeve. The inside of the two connecting sleeves is equipped with a limit rod. An auxiliary trimming rod is installed on one side of the limit rod.

[0010] A moving steering mechanism is rotatably connected to the bottom of the supporting base plate and to one side of the auxiliary vegetation trimming mechanism.

[0011] In a preferred embodiment of the present invention, the moving steering mechanism includes casters. Two rotating plates are rotatably connected to the bottom of the supporting base plate. A mounting frame is installed at the bottom of each rotating plate. Two rack mounting plates are fixedly connected to the bottom of each mounting frame. A sliding rack is fixedly connected to one side of each rack mounting plate. A mounting cover is fixedly connected to the bottom of each sliding rack. Casters are installed inside each mounting cover. Two springs are installed between the two mounting covers and inside the mounting frame. The tops of both springs are connected to the mounting frame. Connecting side plates are installed on both sides of the mounting frame. A fourth drive motor is fixedly connected inside each connecting side plate. A third gear is fixedly connected to the output end of each fourth drive motor. Each third gear meshes with a corresponding sliding rack. The fourth drive motor rotates, causing the third gear to rotate, thus... The corresponding sliding rack moves downwards, causing both casters to move downwards as well. The height of the casters can be adjusted according to the road conditions during movement, making it easier to move the equipment. A second gear is rotatably connected to the top of the support base plate and to one side of the electric telescopic rod. A first gear is rotatably connected to one side of the second gear. The first and second gears mesh with each other. A third drive motor is fixedly connected to the top of each first gear. The output end of the third drive motor is fixedly connected to the corresponding first gear. A connecting column is fixedly connected to the shaft of the second gear. One end of the connecting column is fixedly connected to the corresponding rotating plate. When the third drive motor operates, it drives the first gear to rotate, which in turn drives the meshing second gear to rotate, thereby causing the rotating plate at the bottom to rotate. This achieves the effect of adjusting the direction of the casters, improving the flexibility of the equipment during actual use.

[0012] In a preferred embodiment of the present invention, a connecting slide rod is installed between each of the two limiting rods. Hooks are installed on the bottom of both mounting plates and around the perimeter of the fixing rod. A second drive motor is fixedly connected to one side of one of the connecting sleeves. The output end of the second drive motor is connected to one of the limiting rods. The operation of the second drive motor causes one of the connecting sleeves to rotate, driving one of the limiting rods to rotate. Limited by the connecting slide rod, the other limiting rod rotates inside the connecting sleeve, thereby assisting in vegetation trimming and achieving a restoration effect. An adjusting blade is slidably connected to one end of each auxiliary trimming rod. The auxiliary trimming rod is equipped with a second positioning bolt on its outer side for use with adjusting the blade limit. An installation rod is installed inside each auxiliary trimming rod. A third positioning bolt for use with the auxiliary trimming rod is installed on the top of each connecting sleeve. A fourth positioning bolt for use with the connecting slide rod is installed on the top of each limiting rod. The fourth positioning bolt limits the installation of the limiting rod and the connecting slide rod, the third positioning bolt limits the installation of the connecting sleeve and the auxiliary trimming rod, and the second positioning bolt limits the installation of the adjusting blade and the auxiliary trimming rod. This design facilitates quick assembly and disassembly during use, saving on the work cycle.

[0013] In a preferred embodiment of the present invention, the on-site dust removal mechanism includes a fixed plate, which is installed inside the fixed frame. A first fan is installed on one side of the fixed plate, and a first fan blade is installed inside the first fan. A connecting shaft is fixedly connected to the axis of the first fan blade. A second fan blade is fixedly connected to the outer side of the connecting shaft and on the side of the first fan away from the fixed plate. A second fan is installed on the outer side of the second fan blade. The top of the fixed frame is threaded with symmetrically distributed first positioning bolts extending into the support platform. A limit plate is fixedly connected to one side of the fixed plate, and a first drive motor is fixedly connected to one side of the fixed plate. The output end of the first drive motor is fixedly connected to the connecting shaft. When the first drive motor operates, it drives the connecting shaft to rotate, thereby driving both the second fan blade and the first fan blade on the outer side of the connecting shaft to rotate. This causes the first fan and the second fan to rotate accordingly, thereby generating a dual blowing force to assist in dust removal at the work site.

[0014] In a preferred embodiment of the present invention, the auxiliary power supply mechanism includes a sealed storage tank. The sealed storage tank is fixedly connected to the top of the support platform and to one side of the fixed frame. An energy storage compartment is fixedly connected to the top of the sealed storage tank. A solar panel is installed on the top of the energy storage compartment. Two symmetrically distributed classified storage boxes are fixedly connected to the top of the support platform and to the side of the sealed storage tank away from the fixed frame. Equally spaced partitions are installed inside each of the two classified storage boxes. A classified storage compartment is formed between every two adjacent partitions inside each classified storage box. The classified storage compartments and partitions are staggered. A baffle is fixedly connected to the side of each classified storage box away from the sealed storage tank. A support frame is installed on the side of the baffle away from the sealed storage tank. An inverter is installed inside the energy storage compartment. Outdoor solar energy is collected through the solar panel, and the inverter converts it into electricity, which is stored in the energy storage compartment, achieving self-sufficiency in electricity supply. The sealed storage tank is used to store equipment and items that require sealed storage, and the baffle provides isolation on one side.

[0015] In a preferred embodiment of the present invention, a backup battery is installed at the bottom of the support platform, and a wireless transceiver is fixedly connected to the top of the energy storage compartment and to one side of the solar panel. A main control board is fixedly connected inside the wireless transceiver, and a control chip is fixedly connected to the outside of the main control board. The backup battery, electric telescopic pole, energy storage compartment, wireless transceiver, solar panel, first drive motor, second drive motor, third drive motor, and fourth drive motor are all electrically connected to the control chip. The control chip is used to control the operation of the backup battery, electric telescopic pole, energy storage compartment, wireless transceiver, solar panel, first drive motor, second drive motor, third drive motor, and fourth drive motor, thereby realizing unified management of power equipment.

[0016] Compared with the prior art, the beneficial effects of the present invention are:

[0017] 1. This invention is equipped with a support platform, a support base plate, and an on-site dust removal mechanism. The first drive motor drives the connecting shaft to rotate, which in turn drives the second and first fan blades on the outside of the connecting shaft to rotate, causing the first and second fans to rotate accordingly, thereby generating a dual blowing force to assist in dust removal at the work site. An inverter is installed inside the energy storage compartment, which collects outdoor solar energy resources through solar panels. The inverter converts the collected energy into electricity in a timely manner and stores it in the energy storage compartment, achieving self-sufficiency in electricity supply. The sealed storage tank is used to store equipment and items that need to be sealed, and one side is isolated by a baffle.

[0018] 2. This invention is equipped with an auxiliary power supply mechanism and a moving steering mechanism, which drive another limiting rod to rotate inside the connecting sleeve, thereby assisting in vegetation trimming and achieving the repair effect. The limiting rod and connecting slide rod are limited by the fourth positioning bolt, the connecting sleeve and auxiliary trimming rod are limited by the third positioning bolt, and the adjusting blade and auxiliary trimming rod are limited by the second positioning bolt. This facilitates quick disassembly and assembly during use, saving the operation cycle. The on-site dust removal mechanism and auxiliary vegetation trimming mechanism facilitate on-site dust removal and weed removal during the restoration of bare soil vegetation at the base of transmission line towers. The auxiliary power supply mechanism provides the power resources required for the overall power equipment while classifying and storing on-site equipment, saving the overall operating cost. The moving steering mechanism allows for convenient movement and free steering of the overall equipment, improving the overall flexibility of equipment use. Attached Figure Description

[0019] Figure 1 This is a front view of the overall structure of the present invention;

[0020] Figure 2 This is a side view of the overall structure of the present invention;

[0021] Figure 3 This is an enlarged schematic diagram of the auxiliary power supply mechanism of the present invention;

[0022] Figure 4 This is an enlarged schematic diagram of the on-site dust removal mechanism of the present invention;

[0023] Figure 5 This is an enlarged schematic diagram of the moving steering mechanism of the present invention;

[0024] Figure 6 This is a first-view schematic diagram of the vegetation trimming mechanism of the present invention;

[0025] Figure 7 This is a second-view schematic diagram of the vegetation trimming mechanism of the present invention.

[0026] In the picture:

[0027] 1. Support platform; 11. Backup battery; 12. Electric telescopic pole; 13. Support frame; 14. Baffle;

[0028] 2. Support base plate;

[0029] 3. Auxiliary power supply mechanism; 31. Sealed storage tank; 32. Energy storage compartment; 33. Wireless signal transceiver; 34. Solar panel; 35. Categorized storage box; 36. Partition; 37. Categorized storage compartment;

[0030] 4. Fixing frame; 41. Fixing plate; 42. Limiting plate; 43. First positioning bolt; 44. First fan; 45. Second fan; 46. Connecting shaft; 47. First fan blade; 48. Second fan blade; 49. First drive motor;

[0031] 5. Moving steering mechanism; 51. Casters; 52. Rotating plate; 53. Rack and pinion mounting plate; 54. Spring; 55. Mounting frame; 56. Connecting side plate; 57. Mounting cover;

[0032] 6. Fixing rod; 61. Mounting plate; 62. Hook; 63. Connecting sleeve; 64. Limiting rod; 65. Connecting slide rod; 66. Auxiliary trimming rod; 67. Adjusting blade; 68. Second drive motor; 69. Mounting insert rod; 691. Second positioning bolt; 692. Third positioning bolt; 693. Fourth positioning bolt;

[0033] 7. Third drive motor; 71. First gear; 72. Second gear; 73. Fourth drive motor; 74. Third gear; 75. Sliding rack. Detailed Implementation

[0034] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0035] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0036] In the description of this application, the term "for example" is used to mean "used as an example, illustration, or description." Any embodiment described as "for example" in this application is not necessarily to be construed as being more preferred or advantageous than other embodiments. The following description is provided to enable any person skilled in the art to make and use the invention. Details are set forth in the following description for purposes of explanation. It should be understood that those skilled in the art will recognize that the invention can be made without using these specific details. In other instances, well-known structures and processes will not be described in detail to avoid obscuring the description of the invention with unnecessary detail. Therefore, the invention is not intended to be limited to the embodiments shown, but is consistent with the broadest scope of the principles and features disclosed in this application.

[0037] Please see Figures 1-7 This invention provides a technical solution: an ecological greening construction device for bare soil vegetation restoration of transmission line tower foundations, comprising a support platform 1, and further comprising: an auxiliary power supply mechanism 3 installed on the top of the support platform 1, a fixing frame 4 installed on the top of the support platform 1, the fixing frame 4 being located on one side of the auxiliary power supply mechanism 3, and a field dust removal mechanism installed on the top of the fixing frame 4; two symmetrically distributed electric telescopic rods 12 are fixedly connected to the bottom of the support platform 1, and a support base plate 2 is fixedly connected to the bottom of each electric telescopic rod 12, with the output ends of both electric telescopic rods 12 penetrating the support base plate 2. The base plate 2 is connected to an auxiliary vegetation trimming mechanism. The auxiliary vegetation trimming mechanism includes a mounting plate 61. The output ends of two electric telescopic rods 12 pass through the base plate 2 and are fixedly connected to the mounting plate 61. The bottom of each mounting plate 61 is fixedly connected to a fixing rod 6. The bottom of each fixing rod 6 is equipped with a connecting sleeve 63. The inside of each connecting sleeve 63 is equipped with a limit rod 64. An auxiliary trimming rod 66 is installed on one side of each limit rod 64. A moving steering mechanism 5 is rotatably connected to the bottom of the base plate 2 and on one side of the auxiliary vegetation trimming mechanism.

[0038] When in use, this invention facilitates on-site dust removal and weed removal during the restoration of bare soil vegetation at the base of transmission line towers by incorporating an on-site dust removal mechanism and an auxiliary vegetation trimming mechanism. The auxiliary power supply mechanism 3 provides the necessary power resources for the overall power equipment while classifying and storing the on-site equipment, thus saving overall operating costs. The mobile steering mechanism 5 allows for convenient movement and free steering of the overall equipment, improving the overall flexibility of equipment use.

[0039] Please see Figures 1-3 , Figure 7In this design, the moving steering mechanism 5 includes casters 51. Two rotating plates 52 are rotatably connected to the bottom of the supporting base plate 2. A mounting frame 55 is installed at the bottom of each rotating plate 52. Two rack mounting plates 53 are fixedly connected to the bottom of the mounting frame 55. A sliding rack 75 is fixedly connected to one side of each rack mounting plate 53. A mounting cover 57 is fixedly connected to the bottom of each sliding rack 75. Casters 51 are installed inside each mounting cover 57. Two springs 54 are installed between the two mounting covers 57 and inside the mounting frame 55. The tops of the two springs 54 are connected to the mounting frame 55. The mounting frame 55 is connected to the frame. Both sides of the mounting frame 55 are equipped with connecting side plates 56. The inside of each connecting side plate 56 is fixedly connected to a fourth drive motor 73. The output end of each fourth drive motor 73 is fixedly connected to a third gear 74. Each third gear 74 meshes with a corresponding sliding rack 75. When the fourth drive motor 73 is running, it drives the third gear 74 to rotate, causing the corresponding sliding rack 75 to move downward, thereby driving both casters 51 to move downward. The height of the casters 51 can be adjusted according to the road conditions during movement, making movement more convenient.

[0040] A second gear 72 is rotatably connected to the top of the support base plate 2 and to one side of the electric telescopic rod 12. A first gear 71 is rotatably connected to one side of the second gear 72. The first gear 71 and the second gear 72 are meshed together. A third drive motor 7 is fixedly connected to the top of the first gear 71. The output end of the third drive motor 7 is fixedly connected to the corresponding first gear 71. A connecting column is fixedly connected to the shaft of the second gear 72. One bottom end of the connecting column is fixedly connected to the corresponding rotating plate 52. When the third drive motor 7 is turned, the first gear 71 is driven to rotate, which in turn drives the meshed second gear 72 to rotate, thereby driving the rotating plate 52 at the bottom to rotate. This achieves the effect of adjusting the direction of the universal wheel 51 and improves the flexibility of the equipment in actual use.

[0041] Please see Figures 5-6 In this design, a connecting slide rod 65 is installed between the two limiting rods 64. Hooks 62 are installed at the bottom of the two mounting plates 61 and around the fixed rod 6. A second drive motor 68 is fixedly connected to one side of one of the connecting sleeves 63. The output end of the second drive motor 68 is connected to one of the limiting rods 64. When the second drive motor 68 is running, one of the connecting sleeves 63 rotates, driving one of the limiting rods 64 to rotate. Limited by the connecting slide rod 65, the other limiting rod 64 rotates inside the connecting sleeve 63, thereby assisting in vegetation trimming and achieving the restoration effect.

[0042] One end of each auxiliary trimming rod 66 is slidably connected to an adjusting blade 67. A second positioning bolt 691, used to limit the movement of the adjusting blade 67, is installed on the outer side of each auxiliary trimming rod 66. An installation rod 69 is installed inside each auxiliary trimming rod 66. A third positioning bolt 692, used to cooperate with the auxiliary trimming rod 66, is installed on the top of each connecting sleeve 63. A fourth positioning bolt 693, used to cooperate with the connecting slide rod 65, is installed on the top of the limiting rod 64. The fourth positioning bolt 693 limits the installation of the limiting rod 64 and the connecting slide rod 65; the third positioning bolt 692 limits the installation of the connecting sleeve 63 and the auxiliary trimming rod 66; and the second positioning bolt 691 limits the installation of the adjusting blade 67 and the auxiliary trimming rod 66. This facilitates quick assembly and disassembly during use, saving on the work cycle.

[0043] Please see Figure 4 In this solution, the on-site dust removal mechanism includes a fixed plate 41. The fixed plate 41 is installed inside the fixed frame 4. A first fan 44 is installed on one side of the fixed plate 41. A first fan blade 47 is installed inside the first fan 44. A connecting shaft 46 is fixedly connected to the axis of the first fan blade 47. A second fan blade 48 is fixedly connected to the outside of the connecting shaft 46 and on the side of the first fan 44 away from the fixed plate 41. A second fan 45 is installed on the outside of the second fan blade 48.

[0044] The top of the fixed frame 4 is threaded with symmetrically distributed first positioning bolts 43 that extend into the support platform 1. A limit plate 42 is fixedly connected to one side of the fixed plate 41, and a first drive motor 49 is fixedly connected to one side of the fixed plate 41. The output end of the first drive motor 49 is fixedly connected to the connecting shaft 46. When the first drive motor 49 is running, it drives the connecting shaft 46 to rotate, thereby driving the second fan blade 48 and the first fan blade 47 on the outside of the connecting shaft 46 to rotate, so that the first fan 44 and the second fan 45 rotate accordingly, thereby generating a dual blowing force to assist in dust removal at the work site.

[0045] Please see Figures 1-3 In this scheme, the auxiliary power supply mechanism 3 includes a sealed storage tank 31. The sealed storage tank 31 is fixedly connected to the top of the support platform 1 and to one side of the fixed frame 4. The top of the sealed storage tank 31 is fixedly connected to the energy storage compartment 32. The top of the energy storage compartment 32 is equipped with a solar panel 34.

[0046] Two symmetrically distributed classification storage boxes 35 are fixedly connected to the top of the support platform 1 on the side of the sealed storage tank 31 away from the fixed frame 4. The interior of each classification storage box 35 is equipped with equally spaced partitions 36. A classification storage compartment 37 is opened between each two adjacent partitions 36 and inside the classification storage box 35. The classification storage compartments 37 and partitions 36 are staggered. A baffle 14 is fixedly connected to the side of the classification storage box 35 away from the sealed storage tank 31. A support frame 13 is installed on the side of the baffle 14 away from the sealed storage tank 31. An inverter is installed inside the energy storage compartment 32. Outdoor solar energy resources are collected through solar panels 34. The inverter converts the solar energy into electricity in time and stores it through the energy storage compartment 32, realizing the self-sufficiency of electricity resources. The sealed storage tank 31 is used to store equipment and items that need to be sealed. One side is isolated by the baffle 14.

[0047] Please see Figures 1-7 In this scheme, a backup battery 11 is installed at the bottom of the support platform 1, and a wireless transceiver 33 is fixedly connected to the top of the energy storage compartment 32 and to one side of the solar panel 34. A main control board is fixedly connected inside the wireless transceiver 33, and a control chip is fixedly connected to the outside of the main control board. The backup battery 11, electric telescopic pole 12, energy storage compartment 32, wireless transceiver 33, solar panel 34, first drive motor 49, second drive motor 68, third drive motor 7 and fourth drive motor 73 are all electrically connected to the control chip. The control chip is used to control the operation of the backup battery 11, electric telescopic pole 12, energy storage compartment 32, wireless transceiver 33, solar panel 34, first drive motor 49, second drive motor 68, third drive motor 7 and fourth drive motor 73, realizing unified management of power equipment.

[0048] Working principle of this invention:

[0049] The present invention is provided with a support platform 1, a support base plate 2 and an on-site dust removal mechanism. The first drive motor 49 drives the connecting shaft 46 to rotate, thereby driving the second fan blade 48 and the first fan blade 47 on the outside of the connecting shaft 46 to rotate, so that the first fan 44 and the second fan 45 rotate accordingly, thereby generating a dual blowing force to assist in dust removal at the work site.

[0050] An inverter is installed inside the energy storage compartment 32. Outdoor solar energy resources are collected through solar panels 34 and converted into electricity in a timely manner, which is then stored in the energy storage compartment 32, thus achieving self-sufficiency in electricity resources.

[0051] The sealed storage tank 31 is used to store equipment and items that need to be sealed, and is isolated on one side by a baffle 14.

[0052] The control chip is used to control the operation of the backup battery 11, electric telescopic pole 12, energy storage compartment 32, wireless signal transceiver 33, solar panel 34, first drive motor 49, second drive motor 68, third drive motor 7 and fourth drive motor 73, realizing unified management of power equipment;

[0053] The present invention is provided with an auxiliary power supply mechanism 3 and a moving steering mechanism 5. The fourth drive motor 73 drives the third gear 74 to rotate, causing the corresponding sliding rack 75 to move downward, thereby driving the two universal wheels 51 to move downward. The height of the universal wheels 51 can be adjusted according to the road conditions during movement, making movement more convenient.

[0054] The third drive motor 7 rotates, driving the first gear 71 to rotate, which in turn drives the meshing second gear 72 to rotate, thereby causing the bottom rotating plate 52 to rotate, achieving the effect of adjusting the direction of the universal wheel 51 and improving the flexibility of the equipment in actual use.

[0055] The second drive motor 68 operates, causing one of the connecting sleeves 63 to rotate, which in turn drives one of the limiting rods 64 to rotate. The limiting rod 64 is then limited by the connecting slide rod 65, which in turn drives the other limiting rod 64 to rotate inside the connecting sleeve 63, thereby assisting in vegetation trimming and achieving the restoration effect.

[0056] The fourth positioning bolt 693 limits the installation of the limiting rod 64 and the connecting slide rod 65, the third positioning bolt 692 limits the installation of the connecting sleeve 63 and the auxiliary trimming rod 66, and the second positioning bolt 691 limits the installation of the adjusting blade 67 and the auxiliary trimming rod 66. This facilitates quick disassembly and assembly during use and saves the operation cycle.

[0057] The on-site dust removal mechanism and auxiliary vegetation trimming mechanism facilitate on-site dust removal and weed removal during the restoration of bare soil vegetation at the base of transmission line towers. The auxiliary power supply mechanism 3 provides the necessary power resources for the overall power equipment while classifying and storing the on-site equipment, thus saving overall operating costs. The mobile steering mechanism 5 allows for convenient movement and free steering of the overall equipment, improving the overall flexibility of equipment use.

[0058] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An ecological greening construction device for vegetation restoration of bare soil at the base of a power transmission line tower, comprising a support platform (1), characterized in that, Also includes: An auxiliary power supply mechanism (3) is installed on the top of the support platform (1), a fixed frame (4) is installed on the top of the support platform (1), and a field dust removal mechanism is installed on the top of the fixed frame (4). The bottom of the support platform (1) is fixedly connected to two symmetrically distributed electric telescopic rods (12). The bottom of each electric telescopic rod (12) is fixedly connected to a support base plate (2). The output ends of the two electric telescopic rods (12) pass through the support base plate (2) and are connected to an auxiliary vegetation trimming mechanism. The auxiliary vegetation trimming mechanism includes a mounting plate (61), the output ends of the two electric telescopic rods (12) pass through the support base plate (2) and are fixedly connected to the mounting plate (61), the bottom of the two mounting plates (61) are fixedly connected to the fixing rods (6), the bottom of the two fixing rods (6) are installed with connecting sleeves (63), the inside of the two connecting sleeves (63) is installed with a limit rod (64), and an auxiliary trimming rod (66) is installed on one side of the limit rod (64). The bottom of the support base plate (2) and on one side of the auxiliary vegetation trimming mechanism are rotatably connected to a moving steering mechanism (5). The moving steering mechanism (5) includes casters (51). Two rotating plates (52) are rotatably connected to the bottom of the supporting base plate (2). A mounting frame (55) is installed at the bottom of each rotating plate (52). Two rack mounting plates (53) are fixedly connected to the bottom of each mounting frame (55). A sliding rack (75) is fixedly connected to one side of each rack mounting plate (53). A mounting cover (57) is fixedly connected to the bottom of each sliding rack (75). Casters (51) are installed inside each mounting cover (57). Two springs (54) are installed between the two mounting covers (57) and inside the mounting frame (55). The tops of the two springs (54) are connected to the mounting frame (55). Connecting side plates (56) are installed on both sides of the mounting frame (55). A fourth drive motor (73) is fixedly connected inside the connecting side plates (56). A third gear (74) is fixedly connected to the output end of the fourth drive motor (73). The third gear (74) meshes with the corresponding sliding rack (75).

2. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 1, characterized in that: The top of the support base plate (2) and one side of the electric telescopic rod (12) are rotatably connected to a second gear (72). One side of the second gear (72) is rotatably connected to a first gear (71). The first gear (71) and the second gear (72) are meshed together. The top of the first gear (71) is fixedly connected to a third drive motor (7). The output end of the third drive motor (7) is fixedly connected to the corresponding first gear (71). A connecting column is fixedly connected to the axis of the second gear (72). One bottom end of the connecting column is fixedly connected to the corresponding rotating plate (52).

3. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 2, characterized in that: A connecting slide bar (65) is installed between the two limiting rods (64), and hooks (62) are installed at the bottom of the two mounting plates (61) and around the fixed rod (6). A second drive motor (68) is fixedly connected to one side of one of the connecting sleeves (63), and the output end of the second drive motor (68) is connected to one of the limiting rods (64).

4. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 3, characterized in that: One end of each auxiliary trimming rod (66) is slidably connected to an adjusting blade (67). The outer side of each auxiliary trimming rod (66) is equipped with a second positioning bolt (691) for limiting the adjusting blade (67). The inside of each auxiliary trimming rod (66) is equipped with an installation rod (69). The top of each connecting sleeve (63) is equipped with a third positioning bolt (692) for use with the auxiliary trimming rod (66). The top of each limiting rod (64) is equipped with a fourth positioning bolt (693) for use with the connecting slide rod (65).

5. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 4, characterized in that: The on-site dust removal mechanism includes a fixed plate (41), the fixed plate (41) is installed inside the fixed frame (4), a first fan (44) is installed on one side of the fixed plate (41), a first fan blade (47) is installed inside the first fan (44), a connecting shaft (46) is fixedly connected at the axis of the first fan blade (47), a second fan blade (48) is fixedly connected on the outside of the connecting shaft (46) and on the side of the first fan (44) away from the fixed plate (41), and a second fan (45) is installed on the outside of the second fan blade (48).

6. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 5, characterized in that: The top of the fixed frame (4) is threaded with first positioning bolts (43) that are symmetrically distributed and extend into the support platform (1). A limit plate (42) is fixedly connected to one side of the fixed plate (41). A first drive motor (49) is fixedly connected to one side of the fixed plate (41). The output end of the first drive motor (49) is fixedly connected to the connecting shaft (46).

7. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 6, characterized in that: The auxiliary power supply mechanism (3) includes a sealed storage tank (31). The sealed storage tank (31) is fixedly connected to the top of the support platform (1) and to one side of the fixed frame (4). The top of the sealed storage tank (31) is fixedly connected to an energy storage compartment (32). A solar panel (34) is installed on the top of the energy storage compartment (32).

8. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 7, characterized in that: Two symmetrically distributed classification storage boxes (35) are fixedly connected to the top of the support platform (1) and on the side of the sealed storage tank (31) away from the fixing frame (4). The interior of each of the two classification storage boxes (35) is equipped with partitions (36) that are evenly distributed. A classification storage compartment (37) is opened between each two adjacent partitions (36) and inside the classification storage box (35). The classification storage compartments (37) and the partitions (36) are staggered. A baffle (14) is fixedly connected to the side of the classification storage box (35) away from the sealed storage tank (31). A support frame (13) is installed on the side of the baffle (14) away from the sealed storage tank (31).

9. The ecological greening construction equipment for bare soil restoration of transmission line tower foundations according to claim 8, characterized in that: A spare battery (11) is installed at the bottom of the support platform (1). A wireless transceiver (33) is fixedly connected to the top of the battery storage compartment (32) and to one side of the solar panel (34). A main control board is fixedly connected inside the wireless transceiver (33). A control chip is fixedly connected to the outside of the main control board. The spare battery (11), electric telescopic rod (12), battery storage compartment (32), wireless transceiver (33), solar panel (34), first drive motor (49), second drive motor (68), third drive motor (7) and fourth drive motor (73) are all electrically connected to the control chip.

Citation Information

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