Underground long-term durable boundary pile positioner
By introducing a protective ring and embedded plate structure into the boundary stake locator, the problem of easy damage of the boundary stake is solved, and the stability and durability of the boundary stake are achieved.
Patent Information
- Application Number
- CN202422470905.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-12
AI Technical Summary
Existing boundary stake locators lack protective structures and are easily damaged by accidental collisions or excavation operations.
An underground boundary stake locator is designed, which includes a mounting base, a boundary stake body, a GPS locator body, a guide rod and a protective ring. The boundary stake is protected by the protective ring, and the embedded plate is used to improve the grip and prevent vibration displacement.
It enhances the protective effect of boundary stakes, ensures their stability and long-term durability, and avoids damage caused by collision and excavation operations.
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Figure CN223362377U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of boundary stake locators, and more particularly to an underground long-lasting and durable boundary stake locator. Background Art
[0002] Boundary stakes are markers or stakes used to define land boundaries, plot edges, or identify specific locations in land surveying and engineering construction. They have the following main functions and characteristics:
[0003] Defining land boundaries: Boundary stakes are used to mark land boundaries, ensuring that land ownership and boundaries are clear. This is important for cadastral management, land transactions, and legal proceedings.
[0004] Marking specific locations: In construction projects, boundary stakes are used to mark specific locations, such as building corners, road bends, pipeline turning points, etc. They help ensure precise engineering design and accurate construction.
[0005] Mapping and surveying reference: The location information of boundary markers is often used to make maps and conduct surveys. They are an important data source for geographic information systems (GIS) and land surveying.
[0006] Permanence and stability: Boundary stakes are typically made of durable materials to ensure their long-term stability and visibility in outdoor environments.
[0007] Legal basis: The establishment and location of boundary markers are recognized and protected by law, and are particularly legally binding in resolving land ownership and land boundary disputes.
[0008] Boundary stakes are typically made of concrete, metal, or other weather-resistant materials. Their shape can be customized, often forming a column or a specific symbol. Accurately setting and measuring boundary stakes is crucial for ensuring project quality and land management.
[0009] A boundary stake locator is a tool or device used to locate boundary stakes, commonly used in civil engineering and construction projects. Boundary stakes are stakes or markers used to delimit land, establish locations, or mark important locations in construction projects.
[0010] Boundary stake locators have a wide range of applications, covering various engineering projects such as road construction, land surveying, building construction, pipeline laying, etc., and are of great significance for ensuring the accuracy of project locations and the smooth progress of the project.
[0011] The document with the prior art publication number CN113981852A provides a boundary stake locator for urban development boundaries. When the device is installed, multiple boundary stake bodies are buried along the boundaries of the concentrated and contiguous development and construction areas of the city, so that the upper surface of the upper cover is flush with the ground, and the multiple boundary stake bodies are connected to the cloud platform for communication. When in use, the boundary stake body is positioned by the locator, and the external temperature and brightness are monitored at all times by the temperature sensor and the first brightness sensor, and the detection results are sent to the controller. When the external temperature and brightness are high enough, the controller controls the electric valve to open, and the lifting drive mechanism drives the column to extend from the housing of the electric valve, so that the charging column stands on the ground. The solar charging component is driven to extend out of the slot by the transverse drive mechanism, and the solar charging component converts solar energy into light energy and stores it in the battery, and the battery supplies power to the controller. Secondly, the direction of the strongest external light is detected by the second brightness sensor, and the detection result is sent to the controller. The controller drives the charging column to rotate by controlling the rotation drive mechanism to adjust the light direction of the solar charging component on the charging column, thereby improving the light energy conversion efficiency.
[0012] Although the above-mentioned prior art solution can achieve the relevant beneficial effects through the structure of the prior art, it still has the following defects: when the device is in use, the boundary stake lacks a protective structure, which makes the boundary stake easily damaged by accidental collision or excavation operation.
[0013] In view of this, we propose an underground long-term durable boundary stake locator. Utility Model Content
[0014] 1. Technical problems to be solved
[0015] The purpose of the present application is to provide an underground long-lasting boundary stake locator to solve the problem in the above background technology that the boundary stake is easily damaged by accidental collision or excavation operation due to lack of protective structure.
[0016] 2. Technical solution
[0017] An underground long-term durable boundary stake locator, comprising a mounting base, a boundary stake body, a GPS locator body, a guide rod, and a protective ring, wherein the boundary stake body is mounted and fixed on the mounting base;
[0018] The GPS locator body is connected and fixed to the bottom of the mounting base;
[0019] The two guide rods are connected and fixed on the mounting base;
[0020] A plurality of protection rings are slidably fitted on the guide rod.
[0021] Preferably, an embedded plate is fixedly connected to the bottom of the mounting base, a placement groove is opened in the mounting base, and a solar panel is placed in the placement groove.
[0022] Preferably, a limit block is slidably provided on the inner wall at the top end of one of the guide rods, one end of the limit block is connected and fixedly provided with a spring, and the other end of the spring is connected and fixedly provided with the inner wall at the top end of the guide rod.
[0023] Preferably, a threading hole is provided on the other guide rod.
[0024] Preferably, a steel wire rope is fixedly connected between the plurality of protective rings, the other end of the steel wire rope at the bottom is fixedly connected to the mounting seat, and the protective ring at the top is threadedly connected to the solar panel.
[0025] 3. Beneficial effects
[0026] Compared with the existing technology, the advantages of this application are: by setting up protective rings, during the use of boundary stakes, multiple protective rings are used in conjunction with limit blocks, so that multiple protective rings can be blocked on the periphery of the boundary stakes to protect the boundary stakes from mechanical collisions, thereby improving the protection effect of the boundary stakes. At the same time, by setting up embedded plates, the boundary stakes can have a stronger grip during installation and use, avoiding vibration and displacement, causing errors in demarcation, and ensuring the stable use of the boundary stakes. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a schematic diagram of the overall structure of this application;
[0028] Figure 2 This is a schematic diagram of the mounting base and other structures of this application;
[0029] Figure 3 This is a partial cross-sectional expanded schematic diagram of the protection ring and guide rod structure of the present application;
[0030] Explanation of the numbers in the figure: 1. Mounting seat; 2. Boundary stake body; 3. GPS locator body; 4. Guide rod; 5. Protective ring; 101. Embedded plate; 102. Placement groove; 103. Solar panel; 401. Limit block; 402. Spring; 403. Threading hole; 501. Wire rope. DETAILED DESCRIPTION
[0031] Please refer to Figures 1-3. This application provides a technical solution:
[0032] An underground long-term durable boundary stake locator comprises a mounting base 1, a boundary stake body 2, a GPS locator body 3, a guide rod 4, and a protective ring 5. The boundary stake body 2 is fixedly mounted on the mounting base 1.
[0033] The GPS locator body 3 is connected and fixedly arranged at the bottom of the mounting base 1;
[0034] Two guide rods 4 are connected and fixed on the mounting base 1;
[0035] A plurality of protective rings 5 are slidably mounted on the guide rod 4 .
[0036] Specifically, an embedded plate 101 is fixedly connected to the bottom of the mounting base 1 , a placement groove 102 is opened in the mounting base 1 , and a solar panel 103 is placed in the placement groove 102 .
[0037] In this embodiment, the embedded plate 101 improves the stability of the device.
[0038] Furthermore, a limit block 401 is slidably provided on the inner wall at the top end of one of the guide rods 4 , one end of the limit block 401 is connected and fixedly provided with a spring 402 , and the other end of the spring 402 is connected and fixedly provided with the inner wall at the top end of the guide rod 4 .
[0039] In this embodiment, the limiting block 401 realizes the limiting effect on the protective ring 5 .
[0040] Furthermore, a threading hole 403 is formed on the other guide rod 4 .
[0041] In this embodiment, the wire holes 403 facilitate the connection of wires between the solar panel 103 and the device.
[0042] In addition, a steel wire rope 501 is fixedly connected between the multiple protective rings 5. The other end of the steel wire rope 501 at the bottom is fixedly connected to the mounting base 1, and the protective ring 5 at the top is threadedly connected to the solar panel 103.
[0043] In this embodiment, the steel wire rope 501 facilitates the deployment and storage of multiple protective rings 5 .
[0044] The implementation principle of an underground long-term durable boundary stake locator in an embodiment of the present application is as follows: when a land boundary mark is required, the embedded plate 101 at the bottom of the mounting seat 1 is pre-buried in a pit so that the device is fixed at the boundary position, and the location information can be sent to the outside world through the GPS locator body 3, and then the protective ring 5 is pulled up. At this time, the wire rope 501 will cause multiple protective rings 5 to unfold, and then the spring 402 will drive the limit block 401 to limit and fix the top protective ring 5, and then take out the solar panel 103 in the placement groove 102, and thread it with the top protective ring 5 for installation, and then connect the connecting wire of the solar panel 103 to the device through the wire hole 403 on the guide rod 4.
Claims
1. An underground long-term durable boundary stake locator, comprising a mounting base (1), a boundary stake body (2), a GPS locator body (3), a guide rod (4), and a protective ring (5), characterized in that: A boundary pile body (2) is mounted and fixed on the mounting seat (1); The GPS locator body (3) is connected and fixedly arranged on the bottom of the mounting base (1); Two guide rods (4) are connected and fixedly arranged on the mounting seat (1); A plurality of protective rings (5) are arranged on the guide rod (4) in a sliding manner.
2. The underground long-term durable boundary stake locator according to claim 1, characterized in that: An embedded plate (101) is fixedly connected to the bottom of the mounting seat (1), a placement groove (102) is provided in the mounting seat (1), and a solar panel (103) is placed in the placement groove (102).
3. The underground long-term durable boundary stake locator according to claim 1, characterized in that: A limit block (401) is provided in a sliding manner on the inner wall of the top end of one of the guide rods (4), one end of the limit block (401) is connected and fixedly provided with a spring (402), and the other end of the spring (402) is connected and fixedly provided with the inner wall of the top end of the guide rod (4).
4. The underground long-term durable boundary stake locator according to claim 1, characterized in that: A threading hole (403) is provided on the other guide rod (4).
5. The underground long-term durable boundary stake locator according to claim 1, characterized in that: A steel wire rope (501) is fixedly connected between the plurality of protective rings (5); the other end of the steel wire rope (501) at the bottom is fixedly connected to the mounting seat (1); and the protective ring (5) at the top is threadedly connected to the solar panel (103).
Citation Information
Patent Citations
Boundary pile positioner for urban development boundaries
CN113981852A