Solar power station ground pile

By setting a stable base and rotary sleeve on the outside of the spiral cone, the problem of uneven installation of spiral piles is solved, and a stable, time-saving and labor-saving installation and removal process is achieved, which is suitable for stable fixation of solar power plants.

CN223226595UActive Publication Date: 2025-08-15CHENGZHI (TIANJIN) NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422585886.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-08-15
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

Due to the lack of stable components in the prior art, the spiral ground piles are prone to be installed due to unbalanced stress during installation, which in turn requires repeated installation and intensive installation.

Method used

A stable base is set on the outer side of the spiral cone, and a plurality of tension springs and rotation sleeves are installed on the top of it. A rotating grip is provided on the outer side. A stress plate and groove are provided at the top of the spiral cone. It is fixed with the stabilizing base through threaded connections. The combination of the tension spring and rotation sleeve is used to achieve uniform drop and stable installation of the spiral cone.

Benefits of technology

The uniform force of the spiral pile is realized, ensuring vertical entry into the ground without repeated installation, saving time and effort, and easy to dismantle and high safety. It is suitable for installation and adjustment at different locations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a solar power station ground pile, and relates to the field of power station ground piles, the solar power station ground pile comprises a spiral cone, the outer side of the spiral cone is sleeved with a stable base, the top of the spiral cone is fixedly provided with a plurality of tension springs, the tension springs are distributed at equal angles around the axis of the spiral cone, and the tops of the tension springs are slidably provided with a rotating sleeve; a plurality of rotating grips are fixedly mounted on the outer side of the rotating sleeve and are distributed at equal angles around the axis of the rotating sleeve, two stress plates are fixedly mounted at the top end of the outer side of the spiral cone and are distributed at equal angles around the axis of the spiral cone, and two shallow grooves and two deep grooves are formed in the rotating sleeve; due to the fact that the spiral cone is in threaded connection with the stable base, the spiral cone can stably descend to enter the ground under the reaction effect of force, and due to the fact that the stable base is stably placed, the spiral cone is even in stress, can vertically enter the ground, does not need to be installed repeatedly, saves time and labor in installation and is high in stability.
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Description

Technical Field

[0001] The utility model relates to the field of power station ground piles, in particular to a solar power station ground pile. Background Art

[0002] A solar power station primarily consists of solar cell modules, a controller, batteries, an inverter, and a load. The solar cell modules and batteries form the power supply system, the controller and inverter form the control and protection system, and the load forms the system terminal. During installation, solar power stations are typically secured with spiral piles, which typically require a pile driver. In areas where pile drivers are unavailable due to terrain, manual installation is the only option. Existing spiral piles lack stabilizing components, and during installation, they can easily tilt due to uneven force. This can lead to repeated installations and is labor-intensive. Therefore, it is necessary to propose a solar power station pile system to address this issue. Utility Model Content

[0003] The purpose of the utility model is to provide a solar power station ground pile to solve the problem that the spiral ground pile in the prior art lacks a stabilizing component and is easily tilted due to uneven force during installation, which in turn requires repeated installation of the spiral ground pile and is more laborious to install.

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a ground pile for a solar power station, comprising a spiral cone, the outer sleeve of the spiral cone is provided with a stable base, a plurality of tension springs are fixedly installed on the top of the spiral cone, and the plurality of tension springs are distributed at equal angles to the axis of the spiral cone, a rotating sleeve is slidably installed on the top of the plurality of tension springs, a plurality of rotating handles are fixedly installed on the outer side of the rotating sleeve, and the plurality of rotating handles are distributed at equal angles to the axis of the rotating sleeve, two force plates are fixedly installed on the outer top end of the spiral cone, and the two force plates are distributed at equal angles to the axis of the spiral cone, two shallow grooves and two deep grooves are provided on the rotating sleeve, and the two shallow grooves and the two deep grooves are distributed at equal angles to the axis of the rotating sleeve, the two shallow grooves and the two deep grooves are alternately arranged, and the two shallow grooves and the two deep grooves are respectively arranged in conjunction with the two force plates.

[0005] Preferably, a thread groove is provided on the spiral cone, and the thread groove is concentrically arranged with the spiral cone, and the inner thread of the thread groove is connected to a power station connection seat.

[0006] Preferably, a circular groove is provided on the stable base, and the circular groove is concentrically arranged with the spiral cone, and the circular groove is cooperated with the rotating sleeve. A plurality of hidden grooves are provided on the outer side of the circular groove on the stable base, and the plurality of hidden grooves are distributed at equal angles to the axis of the spiral cone, and the plurality of rotating handles are cooperated with the plurality of hidden grooves.

[0007] Preferably, the stable base is provided with fixing holes, and there are four fixing holes, which are arranged at four corners of the stable base, and screws are threadedly connected in the four fixing holes.

[0008] Preferably, a spiral groove is provided at the center of the stable base, and the inner wall of the spiral groove is connected to the spiral thread on the outer side of the spiral cone.

[0009] Technical effects and advantages of this utility model:

[0010] 1. During operation, place the stable base on the ground so that the bottom tip of the spiral cone is in the desired installation position. Two or more operators stand on the upper surface of the stable base to press the stable base. The operator rotates the rotating handle to make the rotating sleeve drive the spiral cone to rotate. Since the spiral cone is threadedly connected to the stable base, under the reaction of the force, the spiral cone will steadily descend into the ground. Since the stable base is placed stably, the force on the spiral cone is evenly distributed and it can be vertically inserted into the ground without repeated installation. The installation is time-saving and labor-saving, and the stability is high.

[0011] 2. When the spiral cone drops to the bottom, the top of the spiral cone is flush with the upper surface of the stable base. At this time, the rotating sleeve is rotated to the deep groove and stuck on the outside of the force plate. At this time, the rotating handle is released. Under the tension of the spring, the rotating handle completely enters the hidden groove, which can hide the rotating handle. After the spiral pile is installed, it can be prevented from being rotated by unauthorized personnel at will, which is highly safe. When the spiral pile needs to be removed, the protrusion on the outside of the rotating sleeve can be pulled out, and the rotating handle can be removed by reverse operation. The spiral pile can be reused without the need for other equipment and is easy to operate.

[0012] 3. The threaded connection setting of the threaded groove and the power station connector can adjust the height of the power station connector, which is convenient for installing solar power stations in different positions. It is practical, and the rotating handle is stuck inside the hidden groove, which can limit the relative position of the spiral cone and the stable base. When adjusting the height of the power station connector, the spiral cone will not rotate, which is convenient for adjustment. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the pile structure of the solar power station of the utility model.

[0014] Figure 2 This is a cross-sectional view of the ground pile of the solar power station of the present invention.

[0015] Figure 3 This is a structural diagram of the solar power station pile with the rotary sleeve removed according to the utility model.

[0016] In the figure: 1. Stable base; 2. Spiral cone; 3. Tension spring; 4. Rotating sleeve; 5. Rotating handle; 6. Force plate; 7. Shallow groove; 8. Deep groove; 9. Threaded groove; 10. Power station connection seat; 11. Round groove; 12. Hidden groove; 13. Screw. DETAILED DESCRIPTION

[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0018] The utility model provides Figure 1-Figure 3 The solar power station ground pile shown includes a spiral cone 2. The spiral cone 2 adopts a continuous spiral. This technology belongs to the existing technology and is not described in detail.

[0019] In order to solve the problem that the spiral ground piles in the prior art lack stable components and are easily tilted due to uneven force during installation, which in turn requires repeated installation of the spiral ground piles and is more laborious to install, the utility model is provided with a stable base 1 on the outer sleeve of the spiral cone 2, and a plurality of tension springs 3 are fixedly installed on the top of the spiral cone 2, and the plurality of tension springs 3 are distributed at equal angles to the axis of the spiral cone 2, a rotating sleeve 4 is slidably installed on the top of the plurality of tension springs 3, and a plurality of rotating handles 5 are fixedly installed on the outer side of the rotating sleeve 4, and the plurality of rotating handles 5 are distributed at equal angles to the axis of the rotating sleeve 4, two force plates 6 are fixedly installed on the outer top end of the spiral cone 2, and the two force plates 6 are distributed at equal angles to the axis of the spiral cone 2, two shallow grooves 7 and two deep grooves 8 are provided on the rotating sleeve 4, and the two shallow grooves 7 and the two deep grooves 8 are distributed at equal angles to the axis of the rotating sleeve 4, the two shallow grooves 7 and the two deep grooves 8 are alternately arranged, and the two shallow grooves 7 and the two deep grooves 8 respectively cooperate with the two force plates 6 The cam 2 is fixed on the ground with the support 14 and the support 16 is fixed on the ground with the support 14 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support 16 being fixed on the ground with the support

[0020] When the screw is in the working state, the upper end of the screw thread is rotated and the lower end of the screw thread is rotated, so that the upper end of the screw thread is rotated and the lower end of the screw thread is rotated.

[0021] Furthermore, the utility model is provided with a thread groove 9 on the spiral cone 2, and the thread groove 9 is concentrically arranged with the spiral cone 2. The thread groove 9 is internally threadedly connected to the power station connection seat 10. The threaded connection arrangement of the thread groove 9 and the power station connection seat 10 can adjust the height of the power station connection seat 10, which is convenient for installing solar power stations in different positions. It is highly practical, and the rotating handle 5 is stuck in the hidden groove 12, which can limit the relative position of the spiral cone 2 and the stable base 1, so that when the height of the power station connection seat 10 is adjusted, the spiral cone 12 will not rotate, and the adjustment is convenient.

[0022] There are four fixing holes on the stable base 1, and the four fixing holes are arranged at the four corners of the stable base 1. Screws 13 are threadedly connected in the four fixing holes. The screws 13 are nailed into the ground, which can improve the stability of the stable base 1 and further improve the stability of the spiral ground pile. When installing the spiral ground pile, the operator does not need to press on the upper surface of the stable base 1, which makes it more convenient to install the spiral ground pile.

Claims

1. A solar power station pile, comprising a spiral cone (2), characterized in that: The outer sleeve of the spiral cone (2) is provided with a stable base (1), the top of the spiral cone (2) is fixedly installed with a plurality of tension springs (3), and the plurality of tension springs (3) are distributed at equal angles to the axis of the spiral cone (2), the top of the plurality of tension springs (3) is slidably installed with a rotating sleeve (4), the outer side of the rotating sleeve (4) is fixedly installed with a plurality of rotating handles (5), and the plurality of rotating handles (5) are distributed at equal angles to the axis of the rotating sleeve (4), the outer top end of the spiral cone (2) is fixedly installed with two force plates (6), and the two force plates (6) are distributed at equal angles to the axis of the spiral cone (2), the rotating sleeve (4) is provided with two shallow grooves (7) and two deep grooves (8), and the two shallow grooves (7) and the two deep grooves (8) are distributed at equal angles to the axis of the rotating sleeve (4), the two shallow grooves (7) and the two deep grooves (8) are alternately arranged, and the two shallow grooves (7) and the two deep grooves (8) are respectively arranged in conjunction with the two force plates (6).

2. A solar power station ground pile according to claim 1, characterized in that: The spiral cone (2) is provided with a thread groove (9), and the thread groove (9) is arranged concentrically with the spiral cone (2). The thread groove (9) is internally threadedly connected to a power station connection seat (10).

3. The solar power station ground pile according to claim 1, characterized in that: A circular groove (11) is provided on the stable base (1), and the circular groove (11) is concentrically arranged with the spiral cone (2). The circular groove (11) is arranged in cooperation with the rotating sleeve (4). A plurality of hidden grooves (12) are provided on the outer side of the circular groove (11) on the stable base (1), and the plurality of hidden grooves (12) are distributed at equal angles to the axis of the spiral cone (2). The plurality of rotating handles (5) are arranged in cooperation with the plurality of hidden grooves (12).

4. The solar power station ground pile according to claim 1, characterized in that: The stable base (1) is provided with fixing holes, and the number of the fixing holes is four. The four fixing holes are arranged at the four corners of the stable base (1), and screws (13) are threadedly connected in the four fixing holes.

5. The solar power station ground pile according to claim 1, characterized in that: A spiral groove is provided at the center of the stable base (1), and the inner wall of the spiral groove is connected to the spiral thread on the outer side of the spiral cone (2).