Novel power distribution line temporary ground stake

By setting series components between the pile bodies, the stability and bearing capacity of the piles are enhanced, solving the problem of insufficient bearing capacity of piles in areas with loose soil, and achieving both safety and efficiency in construction.

CN119777366BActive Publication Date: 2026-01-02GUANGXI NEW POWER INVESTMENT GROUP RESOURCE POWER SUPPLY CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510145643.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-02
Estimated Expiration
2045-02-10

AI Technical Summary

Technical Problem

The existing ground piles have insufficient bearing capacity in areas with loose soil, which cannot meet the fixing requirements of large towers and overhead line equipment, thus limiting the safety and efficiency of construction.

Method used

A novel type of power distribution line grounding pile is designed. By setting series components between the grounding pile bodies, including turnbuckles, gravity shackles and chains, a high-strength, flexible and adjustable connection structure is formed. Multiple grounding pile connecting plates are connected end to end through the series components to distribute the stress and enhance stability and load-bearing capacity.

Benefits of technology

It significantly improves the stability and bearing capacity of the ground pile system in areas with poor soil conditions, ensuring the safety and efficiency of construction, and the structure is detachable for easy quick installation and transportation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119777366B_ABST
    Figure CN119777366B_ABST
Patent Text Reader

Abstract

The application discloses a novel distribution line temporary ground pile and relates to the technical field of power transmission line engineering construction, and aims to solve the problem that the bearing capacity of the ground pile is greatly reduced in some loose soil areas because the soil itself has low shearing strength, and the friction and lateral pressure provided are limited. The application comprises a ground pile body, the ground pile body is arranged in a straight line and comprises a ground pile angle steel, the ground pile body further comprises a ground pile connecting plate, the ground pile connecting plate is movably arranged on the ground pile angle steel, the ground pile connecting plate comprises a connecting plate body, a connecting hole is symmetrically arranged on the long axis of the connecting plate body, a series connection assembly is further arranged between the ground pile bodies, and the series connection assembly is connected at the connecting hole of the adjacent nearest connecting plate body, so that the ground pile connecting plates are connected in series. The series connected ground piles can support each other when being stressed, disperse the stress pressure of the single ground pile, and significantly improve the stability and bearing capacity of the whole ground pile system.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of power transmission line construction technology, and in particular to a novel temporary ground pile for power distribution lines. Background Technology

[0002] In the crucial tower erection and line stringing construction of power transmission lines, ground piles are indispensable key facilities. During tower erection, ground piles are primarily used to secure the lifting pole. The lifting pole is a hoisting device used to lift tower components, connected to the ground pile via ropes (such as lifting ropes and control ropes). The ground pile can withstand the tension generated by the lifting pole when lifting heavy objects, preventing it from tipping over. For example, when lifting tower materials, the lifting pole is subjected to a vertical lifting force and a horizontal component force. The ground pile, firmly anchored to the ground, uses its friction with the soil and its own pull-out resistance to balance these forces, ensuring the stable operation of the lifting pole. In line stringing construction, ground piles are used to secure equipment such as traction ropes and tension machines. During tensioning and laying, the conductor is laid out after tension is applied by the tension machine, and the traction rope guides the direction of conductor laying. Ground piles can firmly fix one end of the traction rope, providing a stable point of force when pulling the conductor, and also preventing the tension machine from shifting due to reaction forces during operation.

[0003] Existing ground piles of different types all have limitations in their bearing capacity. For example, the bearing capacity of deeply buried ground piles depends on the friction between the anchor and the soil and the lateral pressure exerted by the soil on the anchor. In some areas with loose soil, such as sandy soil or backfilled soil areas, even if buried to the standard depth, the bearing capacity of the ground piles will be significantly reduced due to the low shear strength of the soil itself, which limits the friction and lateral pressure it can provide. This means that when used in these areas, they may not be able to meet the fixing requirements of large towers and overhead line equipment, limiting the safety and efficiency of construction.

[0004] Therefore, it is necessary to design a power distribution line grounding pile that can enhance its load-bearing capacity. Summary of the Invention

[0005] To address the above shortcomings, this invention provides a novel temporary ground pile for power distribution lines. The ground piles can be connected in series, and an appropriate number of ground piles can be selected for series connection as needed to increase the bearing capacity of the ground piles.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] The utility model provides a new type distribution line temporary ground stake, including ground stake body, a plurality of and linear arrangement, ground stake body includes ground stake angle steel, ground stake body still includes ground stake joint board, ground stake joint board corresponds to the movable installation on a plurality of ground stake angle steel, ground stake joint board includes joint board body, the long axis of joint board body is provided with the connecting hole symmetry, still be provided with series assembly between adjacent two ground stake bodies, series assembly head to tail connects at the connecting hole of adjacent joint board body to make a plurality of ground stake joint boards realize series connection.

[0008] Preferably, the series assembly includes a basket screw, a gravity shackle, and two chains, the two chains are installed on the two screws of the basket screw, the gravity shackle has two gravity shackles installed on the two chains, and the two gravity shackles are connected to the connecting holes of the adjacent two joint board bodies.

[0009] Preferably, the utility model further comprises two fixing components movably installed on the ground stake angle steel and located between the two fixing components.

[0010] Preferably, the utility model further comprises a connecting component movably installed on the ground stake angle steel for connecting the steel strand pulled out from the electric pole.

[0011] Preferably, the ground stake joint board further comprises a joint board portable pull ring arranged on the side surface of the joint board body.

[0012] Preferably, the ground stake angle steel comprises an angle steel body, a striking cap arranged on the top of the angle steel body, and the striking cap is in a cylindrical shape and fixedly arranged on the upper portion of the angle steel body.

[0013] Preferably, the joint board body is provided with an angle steel hole in the middle portion, and the joint board body is detachably installed on the ground stake angle steel through the angle steel hole.

[0014] Preferably, the fixing component comprises a first face plate, a first connecting plate, a first pressing plate, a first adjusting screw, a first adjusting nut, and a first supporting plate, the cross section of the ground stake angle steel is in a V shape, the first adjusting screw is movably arranged on the first face plate, the first adjusting nut is arranged on the first adjusting screw in a matched mode to adjust the length of the first adjusting screw inserted into the first face plate, the lower portion of the first adjusting screw is fixedly connected to the first connecting plate, the cross section of the first pressing plate and the first supporting plate is in a V shape, the openings of the first pressing plate and the first supporting plate are in the same direction, the first pressing plate is fixed to the first connecting plate, the two ends of the first face plate are fixedly connected to the two ends of the first supporting plate, and the ground stake angle steel is located between the first pressing plate and the first supporting plate.

[0015] Preferably, the connecting component comprises a second panel, a second connecting plate, a second pressing plate, a second adjusting screw, a second supporting plate, a wire connecting ring and a second adjusting nut, the ground stake angle steel has a V-shaped cross section, the second adjusting screw is rotatably arranged on the second panel, the second connecting plate is fixedly connected to the lower part of the second adjusting screw, the second adjusting nut is arranged on the second adjusting screw to adjust the length of the second adjusting screw extending into the second panel, the second pressing plate and the second supporting plate have a V-shaped cross section, the openings of the second pressing plate and the second supporting plate face the same direction, the second pressing plate is fixed on the second connecting plate, the two ends of the second panel are fixed on the two ends of the second supporting plate, the ground stake angle steel is located between the second pressing plate and the second supporting plate, and the wire connecting ring is installed on the second panel to connect the steel strand pulled down from the electric pole.

[0016] Compared with the prior art, the present application has the following beneficial effects:

[0017] 1. The present application comprises a ground stake body, a plurality of ground stake bodies are arranged in a straight line, the ground stake body comprises a ground stake angle steel, the ground stake body further comprises a ground stake connecting plate, the ground stake connecting plate is movably arranged on the plurality of ground stake angle steels, the ground stake connecting plate comprises a connecting plate body, a connecting hole is symmetrically arranged on the long axis of the connecting plate body, a series connection assembly is further arranged between the plurality of ground stake bodies, the series connection assembly is connected at the connecting hole of the adjacent nearest connecting plate body in a head-to-tail manner to realize the series connection of the plurality of ground stake connecting plates; the present application solves the problem that in some loose soil areas, the friction and lateral pressure provided by the soil itself are limited due to the low shear strength of the soil, the series connected ground stakes can support each other when subjected to stress, disperse the stress pressure of the single ground stake, and significantly improve the stability and carrying capacity of the entire ground stake system.

[0018] 2. The fixing component, the connecting component and the ground stake connecting plate in the present application are all connected in a detachable manner, which is convenient for quick installation during use, and the modular design is also beneficial for daily storage and transportation.

[0019] 3. The V-shaped pressing plate and the supporting plate of the connecting component can uniformly distribute the tension applied on the connecting component by the steel strand pulled out of the electric pole on the ground stake angle steel, so that the ground stake body is more stable.

[0020] 4. The fixing component is used for fixing the ground stake connecting plate and can also serve as a fulcrum during the pulling-out operation of the ground stake body, which is convenient for the operator to operate when the ground stake body needs to be pulled out, reduces the time required for pulling out the ground stake body, and improves the work efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description.

[0022] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0023] Figure 2 is a schematic view of the overall structure of the ground pile in the present application; Figure 1 is a top view of the ground pile in the present application;

[0024] Figure 3 is a schematic view of the overall structure of the ground pile in the present application;

[0025] Figure 4 is a schematic view of the overall structure of the ground pile in the present application;

[0026] Figure 5 is a schematic view of the overall structure of the ground pile in the present application;

[0027] Figure 6 is a schematic view of the overall structure of the ground pile in the present application;

[0028] Figure 7 is a schematic view of the overall structure of the ground pile in the present application.

[0029] The figure mark: 1, the ground pile body; 11, the ground pile angle steel; 110, the angle steel body; 111, the beating cap; 12, the fixed component; 121, the first panel; 122, the first adjusting screw; 123, the first supporting plate; 124, the first pressing plate; 125, the first connecting plate; 126, the first adjusting nut; 13, the ground pile connecting plate; 130, the connecting plate body; 131, the connecting hole; 132, the angle steel hole; 133, the connecting plate portable pull ring; 14, the connecting component; 141, the second panel; 142, the second adjusting screw; 143, the second supporting plate; 144, the second pressing plate; 145, the second connecting plate; 146, the pull wire connecting ring; 147, the second adjusting nut; 2, the series assembly; 21, the basket screw; 22, the chain; 23, the gravity shackle. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0031] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0032] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. In addition, the technical features involved in the different embodiments of the present application described below can be combined with each other as long as they do not conflict with each other.

[0033] As Figures 1-7 shown, in order to enhance the carrying capacity of the power distribution line pile, the present application provides a new type of power distribution line temporary pile, which comprises a pile body 1, the pile body 1 has a plurality of and is arranged in a straight line, which ensures that it has good stability and carrying capacity in use. Each pile angle steel 11 is a "V" shaped cross section long strip metal member, both sides are equal in length, which increases the contact area with the soil and enhances the fixing effect; the bottom end is designed as a sharp cone shape, so that the pile can be easily inserted into the ground during construction; the design of the pile angle steel 11 is made of high strength metal material, and the surface is treated with corrosion resistance to improve its service life in outdoor harsh environment. On each pile angle steel 11, a pile connecting plate 13 is movably installed, the connecting plate is a long strip member, the pile connecting plate 13 comprises a connecting plate body 130, two connecting holes 131 are arranged on the connecting plate body 130, the two connecting holes 131 are symmetrically distributed along the long axis direction of the connecting plate body 130, and the connecting holes 131 are used for fixing the series assembly 2. The pile connecting plate 13 is movably arranged on the pile angle steel 11 through the angle steel hole 132. In addition, the surface of the connecting plate is also treated with weather-resistant coating to prolong the service life and maintain the stability performance during long-term use. The plurality of pile bodies 1 are connected through the series assembly 2, which has strong tensile capacity and shear resistance. The series assembly 2 is fixed at the connecting holes 131 of the adjacent pile connecting plates 13 in a head-to-tail manner, forming a complete pile system. This series connection mode enables multiple piles to support each other when stressed, disperses the stress pressure of individual piles, and especially in poor soil areas, such as soft sandy soil or backfill soil area, can significantly improve the stability and carrying capacity of the entire pile system.

[0034] In a preferred embodiment, the series assembly 2 includes a basket screw 21, a gravity buckle 23 and a chain 22, forming a set of high-strength, flexible and adjustable connection structure. Among them, the basket screw 21 is made of high-strength alloy steel material, which has excellent tensile properties and corrosion resistance. The two ends of the screw are in hook shape, which is convenient for connection with the chain 22, and the length and tightness of the chain 22 can be quickly adjusted through the thread adjustment mechanism. The chain 22 has two, corresponding to the connection of the two screws of the basket screw 21. The material of the chain 22 is selected from galvanized steel or stainless steel after strengthening treatment, which has high tensile strength and durability, and can withstand multi-directional forces under complex working conditions. The length of the chain 22 is selected according to the actual use environment. At the other end of the chain 22, it is connected with two gravity buckles 23 respectively. The gravity buckle 23 is made of high-strength steel material, and its core is a buckle pin with locking function, which can ensure that there is no accidental falling during connection. The two gravity buckles 23 are respectively connected to the connecting holes 131 of the adjacent two connecting plates 130, forming a continuous series assembly 2 structure. This design enables the pile system to quickly complete the connection during assembly, and has the ability to flexibly adjust the length and angle to adapt to the needs of different construction scenes.

[0035] Through the combination of basket screw 21, chain 22 and gravity buckle 23, the series assembly 2 can provide reliable connection and excellent stress performance in the pile system. When subjected to external tension, this design can effectively disperse the force to multiple pile angle steels 11, avoiding the problem of instability or pulling out of a single pile due to excessive stress. At the same time, the high-strength material and corrosion-resistant design of this structure ensure that it can maintain excellent performance in long-term outdoor environment, and is widely applicable to tower assembly and line construction under complex geological conditions, with significant safety, stability and durability.

[0036] In the preferred embodiment, two fixing components 12 are also included to longitudinally fix the pile connecting plate 13 and provide a fulcrum when the pile body 1 is pulled out. The fixing components 12 are detachably mounted on the pile angle steel 11, and the pile connecting plate 13 is located between the two fixing components 12. The fixing of the pile connecting plate 13 is achieved by adjusting the position of the fixing components 12. Each fixing component 12 is composed of a first panel 121, a first connecting plate 125, a first pressing plate 124, a first adjusting screw 122, a first adjusting nut 126, and a first supporting plate 123. The combination of these components ensures the strength and stability of the system. The fixing component 12 is adjusted in tightness by the cooperation of the first adjusting screw 122 and the first adjusting nut 126. There are two sets of first adjusting screws 122 and first adjusting nuts 126. The first panel 121 is provided with a through hole whose diameter is larger than that of the first screw 122. The first adjusting screw 122 is movably arranged in the through hole of the first panel 121, and its length is adjusted by rotating the first adjusting nut 126 arranged thereon, thereby providing flexible clamping force. In order to enhance the accuracy and reliability of the adjustment, the first adjusting screw 122 is equipped with the first adjusting nut 126, which is threadedly connected with the screw and can quickly adjust the length of the screw. The lower part of the first adjusting screw 122 is fixed to the first connecting plate 125, which serves as a force transmission component. One end of the connecting plate is connected with the first pressing plate 124, forming an integral force unit. The cross section of the first pressing plate 124 is designed as a V shape, which is consistent with the cross section of the pile angle steel 11. This structure can form a large area of contact with the pile angle steel 11 and uniformly distribute the pressure on the surface of the angle steel, avoiding the slip caused by concentrated stress. The first panel 121 serves as the load-bearing main body of the fixing component 12, and both ends are fixed with the first supporting plate 123. The cross section of the supporting plate is also designed as a V shape, which is precisely engaged with the V-shaped cross section of the pile angle steel 11 to provide sufficient support force. The first pressing plate 124 and the first supporting plate 123 form a sleeve structure together, tightly clamping the pile angle steel 11 in the middle and achieving tight fixation through the adjusting screw. The design of the fixing component 12 fully considers the actual needs and application scenarios of construction. When the pile body 1 needs to be disassembled, the fixing component 12 can be used as a stable fulcrum to quickly release the clamping force and separate the pile angle steel 11 from the connecting plate, facilitating transportation and storage. At the same time, all the force members are made of high-strength metal materials and are subjected to corrosion prevention treatment, ensuring the long-term durability of the fixing component 12 in harsh environments.

[0037] In the preferred embodiment, the connecting component 14 is also included to connect the steel strand pulled out by the electric pole to provide support force for the electric pole. The connecting component 14 is movably mounted on the ground pile angle steel 11, which can be firmly fixed on the ground pile angle steel 11 and can provide a safe and stable connection point for the steel strand. The connecting component 14 includes a second panel 141, a second connecting plate 145, a second pressing plate 144, a second adjusting screw 142, a second supporting plate 143, a wire connecting ring 146 and a second adjusting nut 147. The connecting component 14 is operated by the second adjusting screw 142 in cooperation with the second adjusting nut 147, and the second adjusting screw 142 and the second adjusting nut 147 have two groups. The second panel 141 is provided with a through hole, and the diameter of the through hole is greater than the diameter of the first screw 142; the second adjusting screw 142 is movably arranged at the through hole of the second panel 141, and the length is adjusted by rotating the first adjusting nut 126 arranged thereon, thereby providing flexible clamping force. The second adjusting nut 147 is in precise cooperation with the screw thread of the second adjusting screw 142, and after adjustment, the length of the screw can be locked at the required position, thereby enhancing the stability of the system. The lower end of the second adjusting screw 142 is fixedly connected to the second connecting plate 145, and the two ends of the second connecting plate 145 are fixedly connected to the second pressing plate 144. The second pressing plate 144 is designed as a V-shaped section, which matches the ground pile angle steel 11, thereby providing a large area of friction force when clamping the ground pile angle steel 11, preventing the connecting piece from slipping. The second panel 141 is fixedly connected with the second supporting plate 143 at both ends. The second supporting plate 143 also adopts a V-shaped section design and forms a reliable geometric lock with the ground pile angle steel 11. Through the cooperation of the second pressing plate 144 and the second supporting plate 143, the connecting piece can be stably sleeved on the ground pile angle steel 11. The rotation of the second adjusting screw 142 adjusts the clamping force exerted by the pressing plate and the supporting plate, meeting the requirements of clamping strength under different construction conditions. The wire connecting ring 146, as an important functional component of the connecting piece, is fixedly installed on the second panel 141, and a hole is provided at the lower part to prevent conflict when adjusting the second nut. It can withstand multidirectional tension without displacement when connected with the steel strand pulled out from the electric pole, and the connecting ring is arranged in the middle of the second panel 141 to ensure that the ground pile body 1 has the maximum load capacity. The wire connecting ring 146 is made of high-strength alloy steel and has undergone corrosion prevention treatment, and has high load capacity and weather resistance. The connecting ring is welded on the second panel 141 to ensure that it will not loosen or break under stress, further improving safety and stability. At the same time, the connecting component 14 can be flexibly adjusted in angle and position within a certain range according to the needs, adapting to the needs of wires of different angles. The overall design of the connecting piece fully considers the multiple needs in tower erection and wire erection construction. Through high-strength structural components and precise adjusting mechanisms, it realizes reliable fixation of the ground pile angle steel 11 and provides a stable fulcrum for the transmission of tension of the steel strand.In actual use, the second pressing plate 144 and the second supporting plate 143 are ensured to be stable by the clamping ground stake angle steel 11, and the second adjusting screw 142 and the nut provide flexible installation and adjusting capability. The pull wire connecting ring 146 is used to connect the steel strand pulled out of the electric pole to provide support force for the electric pole.

[0038] The ground stake angle steel 11 comprises an angle steel body 110 and a striking cap 111 fixedly arranged at the top of the angle steel body 110, and the top of the ground stake striking cap 111 is a relatively wide and flat circular plane. The circular striking cap 111 top is like a disc, which can uniformly disperse the striking force and avoid stress concentration in a certain point. At the same time, the top of the striking cap 111 has some anti-skid lines, which can be simple concentric circles or intersecting lines. When using a hammer or other striking tools, the anti-skid lines can prevent the striking tool from sliding during striking and improve the accuracy of striking. The striking cap 111 and the angle steel body 110 are connected by screwing, and the top of the ground stake and the inside of the striking cap 111 are designed with matching threads. The striking cap 111 is firmly screwed on the ground stake by rotating it, and this connection is more firm and reliable. The cylindrical design of the striking cap 111 can effectively disperse the impact force, making the force transmission in construction operation more uniform, thereby avoiding deformation or damage of the angle steel body 110 due to concentrated stress and prolonging the service life of the ground stake.

[0039] In the preferred embodiment, the ground stake connecting plate 13 is also provided with a connecting plate portable pull ring 133, which is fixedly installed on the side of the connecting plate body 130 by welding. The position of the portable pull ring is on the side of the connecting plate body 130, which is convenient for construction personnel to grasp or use auxiliary tools for carrying operation. Its annular structure is optimized, which can provide comfortable gripping force and also be used as another connection point when the ground stake body 1 needs to be pulled up. The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any changes or replacements within the technical range disclosed by the present application can be easily thought by those skilled in the art, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A novel type of temporary grounding pile for power distribution lines, comprising a pile body (1), wherein there are multiple pile bodies (1) arranged in a straight line, and the pile body (1) includes pile angle steel (11), characterized in that: The pile body (1) also includes a pile connecting plate (13), which is movably installed on a plurality of pile angle steels (11). The pile connecting plate (13) includes a connecting plate body (130), and connecting holes (131) are symmetrically arranged on the long axis of the connecting plate body (130). A series assembly (2) is also provided between two adjacent pile bodies (1). The series assembly (2) is connected end to end at the connecting holes (131) of the adjacent connecting plate bodies (130) so that the plurality of pile connecting plates (13) are connected in series. The series assembly (2) includes a turnbuckle (21), a gravity shackle (23), and a chain (22). There are two chains (22), which are installed on the two screws of the turnbuckle (21). There are two gravity shackles (23), which are installed on the two chains (22). The two gravity shackles (23) are connected one-to-one to the connection holes (131) of the two adjacent connecting plate bodies (130). An angle steel hole (132) is provided in the middle of the connecting plate body (130). The connecting plate body (130) is detachably installed on the ground pile angle steel (11) through the angle steel hole (132). It also includes two fixing components (12), which are movably mounted on the ground pile angle steel (11) and the ground pile connecting plate (13) is located between the two fixing components (12). Each fixing component (12) includes a first panel (121), a first connecting plate (125), a first pressure plate (124), a first adjusting screw (122), a first adjusting nut (126), and a first support plate (123). The ground pile angle steel (11) has a V-shaped cross-section. The first adjusting screw (122) is movably mounted on the first panel (121), and the first adjusting nut (126) is engaged with the first adjusting screw. The first adjusting screw (122) is set on the first adjusting screw (122) to adjust the length of the first adjusting screw (122) extending into the first panel (121). The lower part of the first adjusting screw (122) is fixed to the first connecting plate (125). The cross-section of the first pressure plate (124) and the first support plate (123) is V-shaped and the opening faces the same direction. The first pressure plate (124) is fixed on the first connecting plate (125). The two ends of the first panel (121) are fixed to the two ends of the first support plate (123). The ground pile angle steel (11) is located between the first pressure plate (124) and the first support plate (123). It also includes a connecting component (14), which is movably mounted on the ground pile angle steel (11) for connecting the steel strand pulled out from the pole. The connecting component (14) includes a second panel (141), a second connecting plate (145), a second pressure plate (144), a second adjusting screw (142), a second support plate (143), a pull wire connecting ring (146), and a second adjusting nut (147). The second adjusting screw (142) is rotatably mounted on the second panel (141), and the second connecting plate (145) is fixedly connected to the lower part of the second adjusting screw (142). The second adjusting nut (147) is fitted onto the second connecting plate (145). The adjusting screw (142) is used to adjust the length of the second adjusting screw (142) extending into the second panel (141). The cross-section of the second pressure plate (144) and the second support plate (143) is V-shaped, with the openings facing the same direction. The second pressure plate (144) is fixed on the second connecting plate (145). The two ends of the second panel (141) are fixed to the two ends of the second support plate (143). The ground pile angle steel (11) is located between the second pressure plate (144) and the second support plate (143). The pull wire connecting ring (146) is installed on the second panel (141) to connect the steel strand pulled down from the pole.

2. The novel temporary ground stake for power distribution lines according to claim 1, characterized in that: The ground pile connecting plate (13) is also provided with a connecting plate portable pull ring (133), which is located on the side of the connecting plate body (130).

3. The novel temporary ground stake for power distribution lines according to claim 1, characterized in that: The ground pile angle steel (11) includes an angle steel body (110), and a striking cap (111) is provided on the top of the angle steel body (110). The striking cap (111) is cylindrical and is fixedly installed on the upper part of the angle steel body (110).

Citation Information

Patent Citations

  • Electrical equipment wiring pile

    CN210957042U

  • Guy wire anchoring systems, brackets and kits

    US20160168815A1