A wind power and photovoltaic power generation system booster station installation tool
By designing the installation tools for the boost station of the wind power and photovoltaic power generation system, the problems of inconvenience and insolidity of wire connection are solved, the convenience and stability of wire connection are achieved, and the operation efficiency and safety are improved.
Patent Information
- Application Number
- CN202411904275.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2044-12-23
AI Technical Summary
In the boost station, there are inconvenience, time-consuming and labor-consuming connections when connecting wires, and the connection is not firm and easy to loosen, which poses safety hazards.
A wind power and photovoltaic power system booster station installation tool is designed, including fixing rods, adjustment mechanisms, limiting mechanisms, connection mechanisms, fastening mechanisms, protective mechanisms and clamping mechanisms. Through the cooperation of these mechanisms, stable connection and convenient operation of the wires are achieved.
It realizes the convenience and stability of wire connection, reduces operating time and labor intensity, and improves the safety and reliability of the connection.
Smart Images

Figure CN119905938B_ABST
Abstract
Description
Technical Field
[0008] ,
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[0001] The present invention relates to the technical field of installation tools, and specifically relates to an installation tool for a booster station of a wind power and photovoltaic power generation system. Background Art
[0002] A booster station refers to an overall system that transforms the voltage of the passing charge, mainly used for boosting voltage. The purpose is to reduce the line current to reduce power loss. Electrical equipment is installed through a large number of steel structure supports, and the equipment is electrically connected through wires, so as to realize the conversion and transmission of the electric energy transmitted by wind power and photovoltaic power, and ensure the normal supply of electricity.
[0003] When connecting wires to equipment inside the booster station, most of the time, workers pull the wires to near the equipment and then dock and fasten the wires to the equipment. Due to the certain tension of the wires, it is very inconvenient for workers to connect the wires, time-consuming and laborious. At the same time, if the pulling force when connecting the wires to the equipment is not enough, the connected wires will sag and are prone to swing under the action of external forces such as wind, which is very unsafe. Summary of the Invention
[0004] In view of the problems in the prior art, the present invention provides an installation tool for a booster station of a wind power and photovoltaic power generation system.
[0005] The technical solution adopted by the present invention to solve its technical problems is: an installation tool for a booster station of a wind power and photovoltaic power generation system, including a fixed rod, an adjustment mechanism is installed on the fixed rod, a limiting mechanism is installed inside the fixed rod, a connection mechanism is installed on the fixed rod, a fastening mechanism is installed on the connection mechanism, a protection mechanism is installed inside the fixed rod, and a clamping mechanism is installed on the adjustment mechanism.
[0006] Specifically, the adjustment mechanism includes a clamping plate. One end of the fixed rod is fixedly connected to the clamping plate. The clamping plate is of a "U" - shaped structure. The other end of the fixed rod is slidably connected to a sliding rod. A rack is installed on the sliding rod. A first gear disk is installed inside the other end of the fixed rod. The first gear disk is rotationally connected to the fixed rod through a rotating shaft. The first gear disk meshes with the rack. The rotating shaft extends to the outside of the fixed rod, and a crank is fixedly connected to the rotating shaft.
[0007] Specifically, a pressing block is installed inside the fixed rod. The pressing block is of a "T" - shaped structure. The pressing block is slidably connected to the inside of the fixed rod through a plurality of decompression springs. The pressing block extends into the fixed rod and communicates with one end of the sliding rod.
[0008] Specifically, the limiting mechanism includes a second gear plate, a second gear plate fixedly connected to the rotating shaft, the second gear plate is rotatably connected to the inside of the fixed rod through the rotating shaft, two symmetrical rotating rods are rotatably connected to the inside of one end of the fixed rod, a resistance spring is installed between the two rotating rods and the fixed rod, a rotating block is provided inside the fixed rod, the rotating block is rotatably connected to the inside of the fixed rod through the connecting shaft, the rotating block conflicts with one of the rotating rods, and the other rotating rod conflicts with the second gear plate under the action of the resistance spring.
[0009] Specifically, two symmetrical limiting rods are installed inside one end of the fixing rod, the rotating block contacts the limiting rods, and the rotating block is a trapezoidal structure.
[0010] Specifically, the connecting mechanism includes a fixed block, the sliding rod is fixedly connected to a fixed block, the fixed block is provided with a through hole, the fixed block is slidably connected to a push block inside the fixed block, the push block is a "Y"-shaped structure, one end of the push block extends to the inside of the through hole, the push block is threadedly connected to a screw, and the screw is rotatably connected to the fixed block.
[0011] Specifically, a leather pad is installed inside the fixing block, and the leather pad extends to the inside of the through hole. A nut is fixedly connected to the screw rod, and the nut is rotatably connected to the outer side of the fixing block through the screw rod.
[0012] Specifically, the fastening mechanism includes a pull rod, which is installed inside the fixed block. The pull rod is slidably connected to the inside of the fixed block through a reset spring. A locking pin is installed on the pull rod, and an oblique rack is installed on the push block. The locking pin conflicts with the oblique rack, and the sharp teeth of the oblique rack are in opposite directions to the sharp teeth on the locking pin.
[0013] Specifically, a buckle is fixedly connected to the pull rod, the buckle is a circular ring structure, and the pull rod is a "T"-shaped structure.
[0014] Specifically, the protective mechanism includes a limit block, a limit block is installed inside one end of the fixed rod, the limit block is slidably connected to the inside of the fixed rod through multiple compression springs, the limit block is a trapezoidal structure, the limit block is in conflict with the sliding rod, and a limit groove is provided on the sliding rod.
[0015] Specifically, the clamping mechanism includes a clamping block, the clamping block is slidably connected to the inner side of the clamping plate, the clamping block is rotatably connected to a screw rod, the screw rod is threadedly connected to the clamping plate, a handle is installed on the screw rod, and rubber plates are installed on the opposite sides of the clamping plate and the clamping block.
[0016] The beneficial effects of the present invention are:
[0017] (1) The wind power and photovoltaic power generation system booster station installation tool described in the present invention is conducive to connecting and fixing the wires that need to be connected through the cooperation of the adjustment mechanism and the connection mechanism, which is convenient for the staff to connect the wires, that is: the action of the splint is conducive to hanging the fixed rod and the external bracket, and the action of the slide rod is conducive to fixing the wires that need to be connected, and the shaft is rotated by turning the crank, and the first gear plate is driven to drive the slide rod to slide inside the fixed rod, so as to facilitate the pulling of the wires that need to be connected, and facilitate the staff to connect the wires. When the slide rod is retracted and reset, the slide rod will resist the pressure block, and the pressure block The spring has elasticity under the action of the pressure reducing spring, which plays the role of pressure reducing protection, preventing the sliding rod from colliding and being damaged by the internal collision between the sliding rod and the fixed rod. The through hole is conducive to inserting the wire. By rotating the screw, the screw drives the push block to slide into the through hole under the action of the thread, and squeezes and resists the wire inside the through hole, so that the wire is firmly and stably connected inside the fixed block and is not easy to slip off. The nut is conducive to conveniently controlling the screw drive through the wrench, and the operation is more convenient. At the same time, the leather pad is conducive to increasing the friction between the wire and the wire, so that the wire is not easy to slip off after being clamped, and plays a role in protecting the outside of the wire.
[0018] (2) The wind power and photovoltaic power generation system booster station installation tool described in the present invention is conducive to the control and adjustment of the wire pulling and releasing of the adjustment mechanism under the action of the limiting mechanism, which is convenient for the staff to pull and connect the wires well, that is: by rotating the connecting shaft, the connecting shaft drives the rotating block to contact one of the rotating rods, so that the rotating rod is separated from the second gear plate under the action of the conflict spring, and the other rotating rod contacts the second gear plate under the action of the conflict spring, which is conducive to the unidirectional rotation of the second gear. When the rotating block is rotated in the opposite direction, the other rotating rod is contacted and separated from the second gear plate, so that the second gear plate is contacted by the other rotating rod, which is conducive to the reverse unidirectional rotation of the second gear plate, thereby facilitating the sliding rod to be limited when pulling or releasing the wire, and facilitating the staff to better connect the wires. When the rotating block is rotated under the action of the limiting rod, the rotation angle of the rotating block can be limited, so that the rotating block can well control the switching of the two rotating rods to resist each other, and realize the limiting effect of the rotating rod on the second gear plate.
[0019] (3) The wind power and photovoltaic power generation system booster station installation tool described in the present invention is conducive to making the connecting mechanism firmly connected to the wires under the action of the fastening mechanism, and is convenient for protecting the adjustment mechanism under the action of the protection mechanism, that is: the pull rod drives the lock pin to conflict with the bevel rack under the action of the reset spring. Since the sharp teeth of the bevel rack are in opposite directions to the sharp teeth on the lock pin, when the push block slides, it will drive the bevel rack to slide in one direction under the action of the lock pin, so that the push block presses the wires tighter and tighter without loosening. By pulling the pull rod, the pull rod is freed from the action of the reset spring and drives the lock pin to separate from the bevel rack, which is convenient for the push block to reverse The pull rod is T-shaped, which is conducive to the stable installation of the pull rod inside the fixed block. The limit block is in conflict with the slide rod under the action of multiple compression springs. When the slide rod slides, the slide rod slides to a certain position and the limit block is in conflict with the inside of the limit groove under the action of the compression spring, thereby limiting the slide rod and preventing the slide rod from slipping off the fixed rod. When the slide rod slides in the opposite direction, the side wall of the limit groove will shrink under the action of the compression spring to free the limit block from sliding.
[0020] (4) The wind power and photovoltaic power generation system booster station installation tool described in the present invention facilitates the installation and fixation of the fixing rod and the external bracket through the action of the clamping mechanism, which is convenient for the staff to work better, that is: by turning the handle, the handle drives the screw to rotate, and the screw drives the clamping block to slide under the action of the thread, so as to facilitate the close clamping of the clamping plate and the external bracket, and facilitate the clamping and installation of brackets of different widths. Under the action of the two rubber plates, it is beneficial to play a role in protection and increase friction, and prevent the clamping plate and the bracket from slipping and loosening. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The present invention will be further described below with reference to the accompanying drawings and examples.
[0022] Figure 1 A schematic diagram of the overall structure of a preferred embodiment of a wind power and photovoltaic power generation system booster station installation tool provided by the present invention;
[0023] Figure 2 for Figure 1 An enlarged schematic diagram of the structure of section A is shown;
[0024] Figure 3 Schematic diagram of the connection structure between the splint and the rubber sheet of the present invention;
[0025] Figure 4 Schematic diagram of the connection structure between the fixed rod and the sliding rod of the present invention;
[0026] Figure 5 Schematic diagram of the connection structure between the slide bar and the rack of the present invention;
[0027] Figure 6 for Figure 5 An enlarged schematic diagram of the structure of part B is shown;
[0028] Figure 7 This is a schematic diagram of the connection structure between the fixing block and the through hole of the present invention;
[0029] Figure 8 for Figure 7 The enlarged schematic diagram of the C part structure is shown.
[0030] In the figure: 1. fixing rod; 2. adjusting mechanism; 201. clamping plate; 202. sliding rod; 203. rack; 204. crank; 205. rotating shaft; 206. pressure block; 207. pressure relief spring; 208. first gear plate; 3. limiting mechanism; 301. second gear plate; 302. rotating rod; 303. interference spring; 304. rotating block; 305. limiting rod; 306. connecting shaft; 4. connecting mechanism; 401. fixing block; 402, through hole; 403, leather pad; 404, push block; 405, screw; 460, nut; 5, fastening mechanism; 501, pull buckle; 502, pull rod; 503, return spring; 504, locking pin; 505, bevel rack; 6, protective mechanism; 601, limit block; 602, compression spring; 603, limit slot; 7, clamping mechanism; 701, rubber plate; 702, clamping block; 703, screw; 704, turning handle. DETAILED DESCRIPTION
[0031] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0032] like Figures 1-8 As shown, the wind power and photovoltaic power generation system booster station installation tool described in the present invention includes a fixing rod 1, an adjusting mechanism 2 is installed on the fixing rod 1, a limiting mechanism 3 is installed inside the fixing rod 1, a connecting mechanism 4 is installed on the fixing rod 1, a fastening mechanism 5 is installed on the connecting mechanism 4, a protective mechanism 6 is installed inside the fixing rod 1, and a clamping mechanism 7 is installed on the adjusting mechanism 2.
[0033] Specifically, the adjusting mechanism 2 includes a clamping plate 201. One end of the fixing rod 1 is fixedly connected to the clamping plate 201. The clamping plate 201 is in a "U" - shaped structure. The other end of the fixing rod 1 is slidably connected to a sliding rod 202. A rack 203 is installed on the sliding rod 202. A first gear disk 208 is installed inside the other end of the fixing rod 1. The first gear disk 208 is rotatably connected to the fixing rod 1 through a rotating shaft 205. The first gear disk 208 meshes with the rack 203. The rotating shaft 205 extends to the outside of the fixing rod 1. A crank 204 is fixedly connected to the rotating shaft 205. Under the action of the clamping plate 201, it is beneficial to hang the fixing rod 1 on an external support. Under the action of the sliding rod 202, it is beneficial to fix the wire to be connected. By rotating the crank 204, the rotating shaft 205 rotates, and drives the first gear disk 208 to带动 the sliding rod 202 to slide inside the fixing rod 1, so as to facilitate pulling the wire to be connected and facilitate the staff to connect the wire.
[0034] Specifically, a pressing block 206 is installed inside the fixing rod 1. The pressing block 206 is in a "T" - shaped structure. The pressing block 206 is slidably connected to the inside of the fixing rod 1 through a plurality of decompression springs 207. The pressing block 206 extends to the inside of the fixing rod 1 and is connected to one end of the sliding rod 202. When the sliding rod 202 contracts and resets, the sliding rod 202 will抵触 the pressing block 206. The pressing block 206 has elasticity under the action of the decompression springs 207, playing a role of decompression and protection, preventing the sliding rod 202 from colliding with the inside of the fixing rod 1 and being damaged.
[0035] Specifically, the limiting mechanism 3 includes a second gear plate 301, the second gear plate 301 is fixedly connected to the rotating shaft 205, the second gear plate 301 is rotatably connected to the inside of the fixed rod 1 through the rotating shaft 205, and one end of the fixed rod 1 is internally rotatably connected to two symmetrical rotating rods 302, and a conflict spring 303 is installed between the two rotating rods 302 and the fixed rod 1, and a rotating block 304 is provided inside the fixed rod 1, and the rotating block 304 is rotatably connected to the inside of the fixed rod 1 through a connecting shaft 306, and the rotating block 304 conflicts with one of the rotating rods 302, and the other rotating rod 302 conflicts with the second gear plate 301 under the action of the conflict spring 303, and the connecting shaft 306 is rotated to make the connecting shaft 306 The rotating block 304 is driven to contact one of the rotating rods 302, so that the rotating rod 302 is separated from the second gear plate 301 under the action of the interference spring 303, and the other rotating rod 302 is in conflict with the second gear plate 301 under the action of the interference spring 303, which is conducive to the unidirectional rotation of the second gear. When the rotating block 304 is rotated in the opposite direction, the other rotating rod 302 is conflicted and separated from the second gear plate 301, so that the second gear plate 301 is conflicted by the other rotating rod 302, which is conducive to the reverse unidirectional rotation of the second gear plate 301, thereby facilitating the sliding rod 202 to be limited when pulling or releasing the wire, making it convenient for the staff to better connect the wires.
[0036] Specifically, two symmetrical limiting rods 305 are installed inside one end of the fixed rod 1, and the rotating block 304 conflicts with the limiting rod 305. The rotating block 304 is a trapezoidal structure. When the rotating block 304 is rotated under the action of the limiting rod 305, the rotation angle of the rotating block 304 can be limited, so that the rotating block 304 can well control the switching conflict between the two rotating rods 302, so that the rotating rod 302 can limit the second gear plate 301.
[0037] Specifically, the connecting mechanism 4 includes a fixed block 401, which is fixedly connected to the sliding rod 202. The fixed block 401 is provided with a through hole 402. A push block 404 is slidably connected to the inside of the fixed block 401. The push block 404 is a "Y"-shaped structure. One end of the push block 404 extends to the inside of the through hole 402. A screw 405 is threadedly connected to the push block 404. The screw 405 is rotatably connected to the fixed block 401, which is conducive to inserting the wire under the action of the through hole 402. By rotating the screw 405, the screw 405 drives the push block 404 to slide into the inside of the through hole 402 under the action of the thread, and squeezes and resists the wire inside the through hole 402, so that the wire is firmly and stably connected to the inside of the fixed block 401 and is not easy to slip.
[0038] Specifically, a leather pad 403 is installed inside the fixed block 401, and the leather pad 403 extends to the inside of the through hole 402. A nut 460 is fixedly connected to the screw 405, and the nut 460 is rotatably connected to the outer side of the fixed block 401 through the screw 405. The action of the nut 460 is conducive to facilitating the drive control of the screw 405 through a wrench, and the operation is more convenient. At the same time, the action of the leather pad 403 is conducive to increasing the friction between the wire and the wire, so that the wire is not easy to slip after being clamped, and it plays a role in protecting the outside of the wire.
[0039] Specifically, the fastening mechanism 5 includes a pull rod 502, which is installed inside the fixed block 401. The pull rod 502 is slidably connected to the inside of the fixed block 401 through a return spring 503. A lock pin 504 is installed on the pull rod 502, and an oblique rack 505 is installed on the push block 404. The lock pin 504 conflicts with the oblique rack 505. The sharp teeth of the oblique rack 505 are in opposite directions to the sharp teeth on the lock pin 504. Under the action of the return spring 503, the pull rod 502 drives the lock pin 504. 04 conflicts with the bevel rack 505. Since the sharp teeth of the bevel rack 505 are in opposite directions to the sharp teeth on the locking pin 504, when the push block 404 slides, it will drive the bevel rack 505 to slide in one direction under the action of the locking pin 504, so that the push block 404 presses the wire tighter and tighter and will not loosen. By pulling the pull rod 502, the pull rod 502 is freed from the action of the reset spring 503 and drives the locking pin 504 to separate from the bevel rack 505, making it convenient for the push block 404 to slide back and reset, and to disassemble the wire.
[0040] Specifically, a pull buckle 501 is fixedly connected to the pull rod 502, and the pull buckle 501 is a circular ring structure. The pull rod 502 is a "T"-shaped structure. The action of the pull buckle 501 facilitates the drive control of the pull rod 502, and the operation is convenient. At the same time, the pull rod 502 is a "T"-shaped structure, which is conducive to the stable installation of the pull rod 502 inside the fixed block 401.
[0041] Specifically, the protection mechanism 6 includes a limit block 601, a limit block 601 is installed inside one end of the fixed rod 1, the limit block 601 is slidably connected to the inside of the fixed rod 1 through a plurality of compression springs 602, the limit block 601 is a trapezoidal structure, the limit block 601 conflicts with the slide rod 202, and a limit groove 603 is provided on the slide rod 202. The limit block 601 conflicts with the slide rod 202 under the action of the plurality of compression springs 602, and the limit groove 603 is provided on the slide rod 202. When the rod 202 slides, the slide rod 202 slides to a certain position and the limit block 601 interferes with the inside of the limit groove 603 under the action of the compression spring 602, thereby limiting the slide rod 202 and preventing the slide rod 202 from slipping off the fixed rod 1. Through the reverse sliding of the slide rod 202, the side wall of the limit groove 603 will shrink under the action of the limit block 601 to break free from the compression spring 602, thereby facilitating the sliding and shrinking of the slide rod 202.
[0042] Specifically, the clamping mechanism 7 includes a clamping block 702, and the clamping block 702 is slidably connected to the inner side of the clamping plate 201, and the clamping block 702 is rotatably connected to the screw rod 703, and the screw rod 703 is threadedly connected to the clamping plate 201. A turning handle 704 is installed on the screw rod 703, and rubber plates 701 are installed on the opposite sides of the clamping plate 201 and the clamping block 702. By rotating the turning handle 704, the turning handle 704 drives the screw rod 703 to rotate, and under the action of the thread, the screw rod 703 drives the clamping block 702 to slide, thereby facilitating the close clamping of the clamping plate 201 and the external bracket, and facilitating the clamping and installation of brackets of different widths. Under the action of the two rubber plates 701, it is beneficial to play a role in protection and increasing friction, preventing the clamping plate 201 and the bracket from slipping and loosening.
[0043] When the present invention is in use, first, the through hole 402 is used to facilitate the insertion of the wire. By rotating the screw 405, the screw 405 drives the push block 404 to slide into the through hole 402 under the action of the thread, and squeezes and resists the wire inside the through hole 402, so that the wire is firmly and stably connected to the inside of the fixing block 401 and is not easy to slip off. The action of the nut 460 is conducive to conveniently controlling the drive of the screw 405 by the wrench, and the operation is more convenient. At the same time, the action of the leather pad 403 is conducive to increasing the friction between the wire and the wire, so that the wire is not easy to slip off after being clamped, and plays a role in protecting the outside of the wire. The pull rod 502 is driven by the reset spring 503 to contact the locking pin 504 with the bevel rack 505. The teeth are in opposite directions to the pointed teeth on the locking pin 504. When the push block 404 slides, it drives the bevel rack 505 to slide in one direction under the action of the locking pin 504, so that the push block 404 presses the wire more and more tightly and will not loosen. By pulling the pull rod 502, the pull rod 502 is freed from the action of the reset spring 503 and drives the locking pin 504 to separate from the bevel rack 505, which facilitates the push block 404 to slide back and reset, and dismantle the wire. After the wire is fixed, pull the fixing rod (1) to pull the wire to the vicinity of the device to be connected, and turn the handle 704 to drive the screw rod 703 to rotate. Under the action of the thread, the screw rod 703 drives the clamping block 702 to slide, thereby facilitating the clamping of the clamping plate 201 and the external bracket tightly, and facilitating the clamping and installation of brackets of different widths. The plate 701 plays a role in protecting and increasing friction, preventing the clamping plate 201 from slipping and loosening with the bracket. After the clamping plate 201 and the external bracket are hung stably, the wires to be connected are fixed by the action of the slide bar 202. By turning the crank 204, the shaft 205 is rotated, and the first gear plate 208 is driven to drive the slide bar 202 to slide inside the fixed rod 1, thereby facilitating the pulling of the wires to be connected, and facilitating the staff to connect the wires. When the slide bar 202 is retracted and reset, the slide bar 202 will resist the pressure block 206. The pressure block 206 is elastic under the action of the decompression spring 207, which plays a role in decompression protection, preventing the slide bar 202 from colliding with the inside of the fixed rod 1 and being damaged by collision. When the cam 304 is in the unlock state, the second gear 301 is unlocked, and the cam 304 is unlocked, so that the cam 304 is unlocked.The rotation angle of the rotating block 304 can be limited, so that the rotating block 304 can well control the switching of the two rotating rods 302, so that the rotating rod 302 can limit the second gear plate 301. The limiting block 601 is caused to interfere with the sliding rod 202 under the action of multiple compression springs 602. When the sliding rod 202 slides, the limiting block 601 interferes with the inside of the limiting groove 603 under the action of the compression spring 602, thereby limiting the sliding rod 202 and preventing the sliding rod 202 from slipping off the fixed rod 1. When the sliding rod 202 slides in the opposite direction, the side wall of the limiting groove 603 will contract under the action of the compression spring 602 to free the limiting block 601 from the compression spring 602, thereby facilitating the sliding and contraction of the sliding rod 202.
[0044] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
[0045] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. A wind power and photovoltaic power generation system booster station installation tool, characterized in that: It includes a fixed rod (1), an adjusting mechanism (2) is installed on the fixed rod (1), a limiting mechanism (3) is installed inside the fixed rod (1), a connecting mechanism (4) is installed on the fixed rod (1), a fastening mechanism (5) is installed on the connecting mechanism (4), a protection mechanism (6) is installed inside the fixed rod (1), and a clamping mechanism (7) is installed on the adjusting mechanism (2); The adjusting mechanism (2) includes a clamping plate (201). One end of the fixed rod (1) is fixedly connected to the clamping plate (201). The clamping plate (201) is in a "U" - shaped structure. The other end of the fixed rod (1) is slidably connected to a sliding rod (202). A rack (203) is installed on the sliding rod (202). Inside the other end of the fixed rod (1), a first gear disk (208) is installed. The first gear disk (208) is rotatably connected to the fixed rod (1) through a rotating shaft (205). The first gear disk (208) meshes with the rack (203). The rotating shaft (205) extends to the outside of the fixed rod (1), and a crank (204) is fixedly connected to the rotating shaft (205); The connecting mechanism (4) includes a fixed block (401). The fixed block (401) is fixedly connected to the sliding rod (202). A through - hole (402) is provided on the fixed block (401). Inside the fixed block (401), a push block (404) is slidably connected. The push block (404) is in a "Y" - shaped structure. One end of the push block (404) extends to the inside of the through - hole (402). A screw rod (405) is threadedly connected to the push block (404). The screw rod (405) is rotatably connected to the fixed block (401); A leather pad (403) is installed inside the fixed block (401). The leather pad (403) extends into the through - hole (402). A nut (460) is fixedly connected to the screw rod (405). The nut (460) is rotatably connected to the outside of the fixed block (401) through the screw rod (405).
2. A wind power and photovoltaic power generation system booster station installation tool according to claim 1, characterized in that: A pressing block (206) is installed inside the fixed rod (1). The pressing block (206) is in a "T" - shaped structure. The pressing block (206) is slidably connected to the inside of the fixed rod (1) through a plurality of decompression springs (207). The pressing block (206) extends into the fixed rod (1) and communicates with one end of the sliding rod (202).
3. The wind power and photovoltaic power generation system booster station installation tool according to claim 1, characterized in that: The limiting mechanism (3) comprises a second gear plate (301), the second gear plate (301) is fixedly connected to the rotating shaft (205), the second gear plate (301) is rotatably connected to the interior of the fixed rod (1) via the rotating shaft (205), two symmetrical rotating rods (302) are rotatably connected to the interior of one end of the fixed rod (1), a resistance spring (303) is installed between the two rotating rods (302) and the fixed rod (1), a rotating block (304) is provided inside the fixed rod (1), the rotating block (304) is rotatably connected to the interior of the fixed rod (1) via a connecting shaft (306), the rotating block (304) is in contact with one of the rotating rods (302), and the other rotating rod (302) is in contact with the second gear plate (301) under the action of the resistance spring (303).
4. A wind power and photovoltaic power generation system booster station installation tool according to claim 3, characterized in that: Two symmetrical limiting rods (305) are installed inside one end of the fixing rod (1), and the rotating block (304) is in conflict with the limiting rods (305). The rotating block (304) is a trapezoidal structure.
5. The wind power and photovoltaic power generation system booster station installation tool according to claim 1, characterized in that: The fastening mechanism (5) includes a pull rod (502), the pull rod (502) is installed inside the fixed block (401), the pull rod (502) is slidably connected to the inside of the fixed block (401) through a return spring (503), a locking pin (504) is installed on the pull rod (502), and an oblique rack (505) is installed on the push block (404), the locking pin (504) is in conflict with the oblique rack (505), and the sharp teeth of the oblique rack (505) are in opposite directions to the sharp teeth on the locking pin (504).
6. A wind power and photovoltaic power generation system booster station installation tool according to claim 5, characterized in that: A pull buckle (501) is fixedly connected to the pull rod (502), the pull buckle (501) is a circular ring structure, and the pull rod (502) is a "T"-shaped structure.
7. The wind power and photovoltaic power generation system booster station installation tool according to claim 1, characterized in that: The protection mechanism (6) includes a limit block (601), the limit block (601) is installed inside one end of the fixed rod (1), the limit block (601) is slidably connected to the inside of the fixed rod (1) through a plurality of compression springs (602), the limit block (601) is a trapezoidal structure, the limit block (601) is in contact with the slide rod (202), and the slide rod (202) is provided with a limit groove (603).
8. The wind power and photovoltaic power generation system booster station installation tool according to claim 1, characterized in that: The clamping mechanism (7) comprises a clamping block (702), the clamping block (702) is slidably connected to the inner side of the clamping plate (201), a screw rod (703) is rotatably connected to the clamping block (702), the screw rod (703) is threadedly connected to the clamping plate (201), a turning handle (704) is installed on the screw rod (703), and a rubber plate (701) is installed on the opposite side of the clamping plate (201) and the clamping block (702).
Citation Information
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