Mountain photovoltaic environment-friendly pile foundation device

By introducing the cover module and vibration module into the pile foundation device, the problems of lack of warning on the formwork and incomplete vibration were solved, thus achieving construction safety and quality improvement.

CN223373732UActive Publication Date: 2025-09-23SHAANXI HUADIAN NEW ENERGY POWER GENERATION CO LTD
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Patent Information

Application Number
CN202422841117.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-09-23
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

The templates used in existing pile foundation construction lack warnings after assembly, workers are prone to falling into the pile holes at night, and the vibration method cannot meet the concrete vibration requirements when the pile foundation is too deep.

Method used

A mountain photovoltaic environmentally friendly pile foundation device was designed. It uses a cover module equipped with a light warning device and a vibration module. The cover module can provide a warning after pouring concrete, and the vibration module vibrates the concrete through a vibration motor.

Benefits of technology

It effectively prevents construction workers from falling at night, ensures that concrete fully fills the gaps in the pile foundation formwork, and improves construction safety and pile foundation quality.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of pile foundations, and discloses a mountain photovoltaic environment-friendly pile foundation device which comprises a first arc-shaped template and first threaded hole bases, and the two ends of the first arc-shaped template are fixedly connected with the first threaded hole bases. The device is reasonable in structure, the device is provided with the cover plate module, through the use of the cover plate module, after pile foundation concrete is poured, a worker can cover the cover plate module of the pile foundation upper template, then a lamplight warning indicator of the cover plate module is started, and the pile foundation upper template is conveniently and rapidly positioned. By means of the light warning device, people can be warned by flickering light beams of the light warning device after entering a field at night, workers can be far away from the field, and meanwhile the covered cover plate module can avoid the possibility of engineering accidents caused by the fact that the workers accidentally slip and fall into pile holes to a certain extent. Therefore, the device protects the personal safety of construction personnel at night to a certain extent.
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Description

Technical Field

[0001] The utility model relates to the technical field of pile foundations, in particular to a mountain photovoltaic environment-friendly pile foundation device. Background Art

[0002] A pile foundation is a deep foundation consisting of piles and a cap connected to the top of the piles. The purpose of a pile foundation is to transfer the load of a building to a deeper, well-supported soil layer underground to meet bearing capacity and settlement requirements.

[0003] Existing pile foundations are assembled using formwork, but the existing formwork used for pile foundation construction still has certain disadvantages: first, after the existing formwork for pile foundation construction is assembled, there is not enough warning near the pile hole after pouring concrete, which may cause workers entering the site at night to fall into the pile hole and cause an engineering accident; second, after the existing formwork for pile foundation construction is assembled, it needs to be vibrated when pouring concrete so that the concrete can better fill the gaps within the pile diameter. However, this is often done by vibrating with a vibrating rod, but when the pile foundation is too deep, the vibrating rod cannot meet the actual needs. Utility Model Content

[0004] (1) Technical problems solved

[0005] In response to the deficiencies in the existing technology, the utility model provides an environmentally friendly mountain photovoltaic pile foundation device, which solves the problems that there is no sufficient warning after the templates used in the existing pile foundation construction are assembled and poured with concrete, and people entering the site at night are very likely to slip and fall into the pile hole, causing engineering accidents; and the existing vibration method cannot meet the needs of complete vibration of the concrete in the pile foundation when the pile foundation is too deep.

[0006] (2) Technical solution

[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: a mountain photovoltaic environment-friendly pile foundation device, comprising a first curved template, both ends of the first curved template are fixedly connected to a first threaded hole base, a first threaded hole is provided on the front of the first threaded hole base, a first bolt is threadedly connected to the inner wall of the first threaded hole, the first threaded hole is threadedly connected to a second curved template through the first bolt, a first threaded fastening ring is threadedly connected to the surface of the first bolt, and a cover module is provided on the surface of the first curved template;

[0008] The cover module includes a first slide plate, the back of which is fixedly connected to a first arc-shaped template, a first slide plate having a first slide groove formed on the top, a first sliding tenon slidably connected to the inner wall of the first slide groove, a first sliding cover fixedly connected to the top of the first sliding tenon, a double-sided tape provided on the top of the first sliding cover, and a light warning device mounted on the first sliding cover via the double-sided tape;

[0009] The inner wall of the first sliding cover is provided with a magnetic strip, and the first sliding cover is installed with the second sliding cover through the magnetic strip. The bottom of the second sliding cover is fixedly connected with a second sliding tenon, and the second sliding cover is slidingly connected with a second slide plate through the second sliding tenon. The top of the second slide plate is provided with a second slide groove, and the second slide groove and the second sliding tenon are adapted to each other. One side of the second slide plate is fixedly connected with a second arc-shaped template.

[0010] Optionally, the lower surface of the first arc-shaped template is fixedly connected to a first arc-shaped threaded hole base, a second threaded hole is provided on the top of the first arc-shaped threaded hole base, the inner wall of the second threaded hole is threadedly connected to a second bolt, the second threaded hole is threadedly connected to a third arc-shaped template through the second bolt, and the lower surface of the second arc-shaped template is fixedly connected to the second arc-shaped threaded hole base.

[0011] Optionally, a third threaded hole is provided on the top of the second arc-shaped threaded hole base, the inner wall of the third threaded hole is threadedly connected to a third bolt, the third threaded hole is threadedly connected to a fourth arc-shaped template through the third bolt, both ends of the third arc-shaped template are fixedly connected to the second threaded hole base, a fourth threaded hole is provided on the front of the second threaded hole base, the inner wall of the fourth threaded hole is threadedly connected to a fourth bolt, the fourth threaded hole is threadedly connected to the fourth arc-shaped template through the fourth bolt, and the surface of the fourth bolt is threadedly connected to a second threaded fastening ring.

[0012] Optionally, a fifth threaded hole and a sixth threaded hole are provided on the surface of the first curved template and the third curved template from top to bottom, the inner wall of the fifth threaded hole is threadedly connected to a fifth bolt, the fifth threaded hole is threadedly connected to the vibration module through the fifth bolt, the inner wall of the sixth threaded hole is threadedly connected to a sixth bolt, the sixth threaded hole is threadedly connected to the first support module through the sixth bolt, the second curved template and the fourth curved template are both provided with a seventh threaded hole on their surfaces, the inner wall of the seventh threaded hole is threadedly connected to a seventh bolt, and the seventh threaded hole is threadedly connected to the second support module through the seventh bolt.

[0013] Optionally, the vibration module includes a vibration motor, a hydraulic impact rod is provided on the back of the vibration motor, one end of the hydraulic impact rod is fixedly connected to a circular plate, a signal receiving rod is provided on the top of the vibration motor, and signal lights and operation buttons are provided on the sides of the vibration motor from top to bottom, a battery slot is provided on the front of the vibration motor, and batteries are installed on the inner wall of the battery slot.

[0014] Optionally, the first support module includes a first support rod, a first bolt hole is provided on the top of the first support rod, a first bolt is inserted into the inner wall of the first bolt hole, the first support rod is connected to the second support rod through the first bolt, a first rod groove is provided on the front of the first support rod, the first rod groove and the second support rod are adapted to each other, the front of the second support rod is fixedly connected to a first square plate, and the front of the first square plate is fixedly connected to a first pointed cone.

[0015] Optionally, the second support module includes a third support rod, a second bolt hole is opened on the top of the third support rod, a second bolt is inserted into the inner wall of the second bolt hole, and the third support rod is inserted into the fourth support rod through the second bolt.

[0016] Optionally, a second rod groove is opened on the back of the third support rod, the second rod groove and the fourth support rod are adapted to each other, the back of the fourth support rod is fixedly connected to a second square plate, and the back of the second square plate is fixedly connected to a second cone.

[0017] In summary, the technical effects and advantages of the utility model are:

[0018] 1. The utility model has a reasonable structure. The device is equipped with a cover module. Through the use of the cover module, after the pile foundation concrete is poured, the workers can cover the cover module of the formwork on the pile foundation with the cover module, and then activate the light warning device of the cover module, so that people entering the site at night can be warned by the flashing beam of the light warning device, so that the workers can stay away from the area. At the same time, the covered cover module can also avoid the possibility of workers accidentally falling into the pile hole and causing engineering accidents to a certain extent, so that the device protects the personal safety of night construction workers to a certain extent.

[0019] 2. In the present invention, the device is equipped with a vibration module. By installing the vibration module on each pile foundation formwork, when pouring concrete, the vibration module can vibrate the surface of the pile foundation formwork, thereby vibrating the concrete in the pile foundation formwork, so that the concrete can flow and fill the gaps in the pile foundation formwork, which ensures the quality of the pile foundation to a certain extent. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1This is a schematic diagram of the structure of the utility model;

[0021] Figure 2 This is a schematic diagram of the cover module of the utility model;

[0022] Figure 3 This is a schematic diagram of the vibration module of the utility model;

[0023] Figure 4 This is a schematic diagram of the first support module of the present utility model;

[0024] Figure 5 This is a schematic diagram of the second support module of the utility model

[0025] In the figure: 1, first arc-shaped template; 2, first threaded hole base; 3, second arc-shaped template; 4, first threaded fastening ring; 5, cover module; 501, first slide plate; 502, first sliding tenon; 503, first sliding cover; 504, double-sided tape; 505, light warning device; 506, magnetic strip; 507, second sliding cover; 508, second sliding tenon; 509, second slide plate; 6, first arc-shaped threaded hole base; 7, third arc-shaped template; 8, second arc-shaped threaded hole base; 9, fourth arc-shaped template; 10, second threaded hole base; 11, second threaded fastening ring; 12, vibration Dynamic module; 1201, vibration motor; 1202, hydraulic impact rod; 1203, circular plate; 1204, signal receiving rod; 1205, signal light; 1206, operation button; 1207, battery; 13. First support module; 1301, first support rod; 1302, first bolt; 1303, second support rod; 1304, first square plate; 1305, first pointed cone; 14. Second support module; 1401, third support rod; 1402, second bolt; 1403, fourth support rod; 1404, second square plate; 1405, second pointed cone. DETAILED DESCRIPTION

[0026] 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.

[0027] Example: Reference Figure 1A mountain photovoltaic environmentally friendly pile foundation device shown includes a first curved template 1, both ends of the first curved template 1 are fixedly connected to a first threaded hole base 2, a first threaded hole is provided on the front of the first threaded hole base 2, the inner wall of the first threaded hole is threadedly connected to a first bolt, the first threaded hole is threadedly connected to a second curved template 3 through the first bolt, the surface of the first bolt is threadedly connected to a first threaded fastening ring 4, and a cover module 5 is provided on the surface of the first curved template 1.

[0028] The lower surface of the first arc-shaped template 1 is fixedly connected to the first arc-shaped threaded hole base 6, the top of the first arc-shaped threaded hole base 6 is provided with a second threaded hole, the inner wall of the second threaded hole is threadedly connected to the second bolt, the second threaded hole is threadedly connected to the third arc-shaped template 7 through the second bolt, and the lower surface of the second arc-shaped template 3 is fixedly connected to the second arc-shaped threaded hole base 8.

[0029] A third threaded hole is provided on the top of the second arc-shaped threaded hole base 8, and a third bolt is threadedly connected to the inner wall of the third threaded hole. The third threaded hole is threadedly connected to the fourth arc-shaped template 9 through the third bolt. Both ends of the third arc-shaped template 7 are fixedly connected to the second threaded hole base 10. A fourth threaded hole is provided on the front of the second threaded hole base 10, and a fourth bolt is threadedly connected to the inner wall of the fourth threaded hole. The fourth threaded hole is threadedly connected to the fourth arc-shaped template 9 through the fourth bolt, and the surface of the fourth bolt is threadedly connected to the second threaded fastening ring 11.

[0030] The surfaces of the first arc-shaped template 1 and the third arc-shaped template 7 are provided with a fifth threaded hole and a sixth threaded hole in sequence from top to bottom. The inner wall of the fifth threaded hole is threadedly connected to the fifth bolt, and the fifth threaded hole is threadedly connected to the vibration module 12 through the fifth bolt. The inner wall of the sixth threaded hole is threadedly connected to the sixth bolt, and the sixth threaded hole is threadedly connected to the first support module 13 through the sixth bolt. The surfaces of the second arc-shaped template 3 and the fourth arc-shaped template 9 are both provided with a seventh threaded hole, the inner wall of the seventh threaded hole is threadedly connected to the seventh bolt, and the seventh threaded hole is threadedly connected to the second support module 14 through the seventh bolt.

[0031] The first threaded hole base 2 is welded to the first curved template 1 by welding. The first bolt is screwed into the first threaded hole of the first threaded hole base 2 and continues to rotate until it is screwed into the second curved template 3. Then the first threaded fastening ring 4 is screwed onto the first bolt. The cover module 5 is welded to the first curved template 1 and the second curved template 3. The first curved threaded hole base 6 is also welded to the first curved template 1 by welding, and the second curved threaded hole base 8 is also welded to the second curved template 3 by welding, and the second threaded hole base 10 is welded to the third curved template 7. First, screw the fourth bolt into the fourth threaded hole of the second threaded hole base 10 and continue to rotate until it is screwed into the fourth curved template 9. Then, the assembled third curved template 7 and fourth curved template 9 are respectively assembled with the first curved threaded hole base The seat 6 is aligned with the second arc-shaped threaded hole base 8, and then the second bolt and the third bolt are screwed into the second threaded hole of the first arc-shaped threaded hole base 6 and the third threaded hole of the second arc-shaped threaded hole base 8 respectively, and continue to rotate until the second bolt and the third bolt are screwed into the third arc-shaped template 7 and the fourth arc-shaped template 9 respectively, and then the vibration module 12 and the first support module 13 are placed on the first arc-shaped template 1 and the third arc-shaped template 7, the fifth bolt and the sixth bolt are passed through the vibration module 12 and the first support module 13 respectively and screwed into the fifth threaded hole and the sixth threaded hole of the first arc-shaped template 1 and the third arc-shaped template 7, and then the second support module 14 is placed on the second arc-shaped template 3 and the fourth arc-shaped template 9, and then the seventh bolt is passed through the second support module 14 and screwed into the seventh threaded hole of the second arc-shaped template 3 and the fourth arc-shaped template 9 to complete the assembly.

[0032] When in use, first assemble according to the above steps, then lift the entire device into the pile hole by a crane or other transportation tool, then the worker can open the first support module 13 and the second support module 14 in sequence, so that the assembled device can be firmly supported on the soil around the pile hole, then the worker can open the cover module 5, and lift the steel cage into the assembled arc formwork by a crane or other transportation tool, then the worker can pour concrete. While pouring concrete, the worker can use the operator to operate the vibration module 12 on the arc formwork at different parts so that the concrete in the arc formwork can be fully vibrated to fill all the pores. After waiting for the concrete to be fully filled, the worker will cover the cover module 5 again to complete the operation.

[0033] As a preferred implementation in this embodiment, Figure 2As shown, the cover module 5 includes a first slide plate 501, the back of the first slide plate 501 is fixedly connected to the first arc-shaped template 1, the top of the first slide plate 501 is provided with a first slide groove, the inner wall of the first slide groove is slidably connected to the first slide tenon 502, the top of the first slide tenon 502 is fixedly connected to the first slide cover 503, the top of the first slide cover 503 is provided with a double-sided tape 504, the first slide cover 503 is installed with a light warning device 505 through the double-sided tape 504, and the first slide plate 501 is provided with a first slide groove. The inner wall of the cover 503 is provided with a magnetic strip 506, and the first sliding cover 503 is installed with the second sliding cover 507 through the magnetic strip 506. The bottom of the second sliding cover 507 is fixedly connected with the second sliding tenon 508, and the second sliding cover 507 is slidingly connected with the second sliding groove plate 509 through the second sliding tenon 508. A second sliding groove is provided on the top of the second sliding groove plate 509, and the second sliding groove and the second sliding tenon 508 are adapted to each other. One side of the second sliding groove plate 509 is fixedly connected with the second arc template 3.

[0034] The first slide plate 501 and the second slide plate 509 are respectively welded to the first curved template 1 and the second curved template 3 by welding, and the first slide groove and the first slide groove plate 501 are integrally formed, and the second slide groove and the second slide groove plate 509 are integrally formed. The first sliding tenon 502 is welded to the first sliding cover 503, and the second sliding tenon 508 is welded to the second sliding cover 507. Slide the first sliding cover 503 into the first slide groove of the first slide groove plate 501, and slide the second sliding cover 507 into the second slide groove of the second slide groove plate 509. Then tear off one side of the double-sided tape 504, and then stick the torn side of the double-sided tape 504 to the first sliding cover 503, and then tear off the other side of the double-sided tape 504, install the base of the light warning device 505 on the other side of the torn double-sided tape 504, and the magnetic strip 506 is stuck to the first sliding cover 503 by the backing adhesive to complete the assembly.

[0035] When in use, first assemble according to the above steps, and then when concrete needs to be poured, the worker needs to push the first sliding cover 503 and the second sliding cover 507 so that the assembled arc-shaped template hole is exposed to the eyes of the worker, and then the worker can put in the steel cage and pour concrete. After waiting for the concrete to be poured, after the worker finishes the concrete surface, the worker needs to slide the first sliding cover 503 and the second sliding cover 507 again and use the magnetic strip 506 to make the first sliding cover 503 and the second sliding cover 507 firmly adsorbed together, and at the same time turn on the light warning device 505 so that the light warning device 505 can release the warning harness to complete the operation.

[0036] The device is installed with a cover module 5. Through the use of the cover module 5, after the pile foundation concrete is poured, the workers can cover the cover module 5 of the formwork on the pile foundation with the cover module, and then activate the light warning device 505 of the cover module 5, so that people entering the site at night can be warned by the flashing light beam of the light warning device 505, so that the workers can stay away from the area. At the same time, the covered cover module 5 can also avoid the possibility of workers accidentally falling into the pile hole and causing engineering accidents to a certain extent, so that the device protects the personal safety of night construction workers to a certain extent.

[0037] like Figure 3 As shown, in this embodiment, the vibration module 12 includes a vibration motor 1201, a hydraulic impact rod 1202 is provided on the back of the vibration motor 1201, one end of the hydraulic impact rod 1202 is fixedly connected to a circular plate 1203, a signal receiving rod 1204 is provided on the top of the vibration motor 1201, and a signal light 1205 and an operation button 1206 are provided on the side of the vibration motor 1201 from top to bottom, and a battery slot is provided on the front of the vibration motor 1201, and a battery 1207 is installed on the inner wall of the battery slot.

[0038] The hydraulic impact rod 1202 is integrally connected to the vibration motor 1201, and the circular plate 1203 is welded to the hydraulic impact rod 1202. The signal receiving rod 1204, the signal light 1205 and the operation button 1206 are also integrally connected to the vibration motor 1201. The battery slot and the vibration motor 1201 are integrally formed. Finally, the battery 1207 is installed into the battery slot to complete the assembly.

[0039] When in use, first assemble according to the above steps. Before assembling it to the curved formwork, first test whether the signal light 1205 is normal by operating the button 1206. When the concrete needs to be vibrated, the worker only needs to turn on the manipulator. The signal band released by the manipulator will be received by the signal receiving rod 1204 of the vibration motor 1201. Then, after the vibration motor 1201 is started, the hydraulic impact rod 1202 starts to move, thereby driving the circular plate 1203 to hit the curved formwork, so that the concrete in the curved formwork is fully vibrated, so that the concrete can fully fill the pores in the curved formwork, thereby ensuring the quality of the pile foundation.

[0040] The device is equipped with a vibration module 12. By installing the vibration module 12 on each pile foundation formwork, the vibration module 12 can vibrate the surface of the pile foundation formwork when pouring concrete, thereby vibrating the concrete in the pile foundation formwork, so that the concrete can flow and fill the gaps in the pile foundation formwork, which ensures the quality of the pile foundation to a certain extent.

[0041] like Figure 4As shown, in this embodiment, the first support module 13 includes a first support rod 1301, a first bolt hole is opened at the top of the first support rod 1301, a first bolt 1302 is inserted into the inner wall of the first bolt hole, the first support rod 1301 is inserted into the second support rod 1303 through the first bolt 1302, a first rod groove is opened on the front of the first support rod 1301, the first rod groove and the second support rod 1303 are adapted to each other, the front of the second support rod 1303 is fixedly connected to the first square plate 1304, and the front of the first square plate 1304 is fixedly connected to the first pointed cone 1305.

[0042] The first bolt hole and the first rod groove are both integrally formed with the first support rod 1301. The second support rod 1303 is inserted into the first rod groove, and then the first bolt 1302 is inserted into the first bolt hole and continues to be inserted until it is inserted into the second support rod 1303. The first square plate 1304 is welded to one end of the second support rod 1303, and the first pointed cone 1305 is welded to the first square plate 1304 to complete the assembly.

[0043] During use, when support is needed, the first bolt 1302 is pulled out, and then the distance of extension or retraction of the second support rod 1303 is determined according to the distance between the surrounding soil surface in the pile foundation hole and the arc template. After the first square plate 1304 and the first pointed cone 1305 are pressed against the soil surface, the first bolt 1302 is finally reinserted into the first bolt hole to complete the operation.

[0044] like Figure 5 As shown, in this embodiment, the second support module 14 includes a third support rod 1401, a second bolt hole is opened at the top of the third support rod 1401, a second bolt 1402 is inserted into the inner wall of the second bolt hole, the third support rod 1401 is inserted into the fourth support rod 1403 through the second bolt 1402, a second rod groove is opened on the back of the third support rod 1401, the second rod groove and the fourth support rod 1403 are adapted to each other, the back of the fourth support rod 1403 is fixedly connected to the second square plate 1404, and the back of the second square plate 1404 is fixedly connected to the second pointed cone 1405.

[0045] The second bolt hole and the second rod groove are both integrally formed with the third support rod 1401. Insert the fourth support rod 1403 into the second rod groove, and then insert the second bolt 1402 into the second bolt hole and continue to insert until it is inserted into the fourth support rod 1403. The second square plate 1404 is welded to one end of the fourth support rod 1403, and the second cone 1405 is welded to the second square plate 1404 to complete the assembly.

[0046] During use, when support is needed, pull out the second bolt 1402, and then determine the extension or retraction distance of the fourth support rod 1403 according to the distance between the surrounding soil surface in the pile foundation hole and the arc template. After pressing the second square plate 1404 and the second pointed cone 1405 against the soil surface, finally reinsert the third support rod 1401 into the first bolt hole to complete the operation.

[0047] This utility works as follows:

[0048] The first threaded hole base 2 is welded to the first curved template 1 by welding. The first bolt is screwed into the first threaded hole of the first threaded hole base 2 and continues to rotate until it is screwed into the second curved template 3. Then the first threaded fastening ring 4 is screwed onto the first bolt. The cover module 5 is welded to the first curved template 1 and the second curved template 3. The first curved threaded hole base 6 is also welded to the first curved template 1 by welding, and the second curved threaded hole base 8 is also welded to the second curved template 3 by welding, and the second threaded hole base 10 is welded to the third curved template 7. First, screw the fourth bolt into the fourth threaded hole of the second threaded hole base 10 and continue to rotate until it is screwed into the fourth curved template. 9, and then align the assembled third arc template 7 and fourth arc template 9 with the first arc threaded hole base 6 and the second arc threaded hole base 8 respectively, and then screw the second bolt and the third bolt into the second threaded hole of the first arc threaded hole base 6 and the third threaded hole of the second arc threaded hole base 8 respectively, and continue to rotate until the second bolt and the third bolt are screwed into the third arc template 7 and the fourth arc template 9 respectively, and then place the vibration module 12 and the first support module 13 on the first arc template 1 and the third arc template 7, pass the fifth bolt and the sixth bolt through the vibration module 12 and the first support module 13 and screw them into the fifth threaded hole and the sixth threaded hole of the first arc template 1 and the third arc template 7 respectively, and then The supporting module 14 is placed on the second curved template 3 and the fourth curved template 9, and then the seventh bolt is passed through the second supporting module 14 and screwed into the seventh threaded hole of the second curved template 3 and the fourth curved template 9 to complete the assembly. The first slide plate 501 and the second slide plate 509 are respectively welded to the first curved template 1 and the second curved template 3, and the first slide groove and the first slide groove plate 501 are integrally formed, and the second slide groove and the second slide groove plate 509 are integrally formed. The first sliding tenon 502 is welded to the first sliding cover 503, and the second sliding tenon 508 is welded to the second sliding cover 507. Slide the first sliding cover 503 into the first slide groove of the first slide groove plate 501, and slide the second slide cover 507 into the second slide groove plate 509 The hydraulic impact rod 1202 is connected to the vibration motor 1201 as a whole, and the circular plate 1203 is welded to the hydraulic impact rod 1202. The signal receiving rod 1204, the signal light 1205 and the operation button 1206 are also connected to the vibration motor 1201 as a whole. The battery slot and the vibration motor 1201 are formed as one piece. Finally, the battery 1207 is installed into the battery slot to complete the assembly.The first bolt hole and the first rod groove are both integrally formed with the first support rod 1301. The second support rod 1303 is inserted into the first rod groove, and then the first bolt 1302 is inserted into the first bolt hole and continues to be inserted until it is inserted into the second support rod 1303. The first square plate 1304 is welded to one end of the second support rod 1303, and the first pointed cone 1305 is welded to the first square plate 1304. The assembly is completed. The second bolt hole and the second rod groove are both integrally formed with the third support rod 1401. The fourth support rod 1403 is inserted into the second rod groove, and then the second bolt 1402 is inserted into the second bolt hole and continues to be inserted until it is inserted into the fourth support rod 1403. The second square plate 1404 is welded to one end of the fourth support rod 1403, and the second pointed cone 1405 is welded to the second square plate 1404. The assembly is completed.

[0049] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A mountain photovoltaic environment-friendly pile foundation device, comprising a first arc-shaped template (1), characterized in that: Both ends of the first arc-shaped template (1) are fixedly connected to a first threaded hole base (2), a first threaded hole is provided on the front surface of the first threaded hole base (2), a first bolt is threadedly connected to the inner wall of the first threaded hole, the first threaded hole is threadedly connected to the second arc-shaped template (3) through the first bolt, a first threaded fastening ring (4) is threadedly connected to the surface of the first bolt, and a cover plate module (5) is provided on the surface of the first arc-shaped template (1); The cover module (5) comprises a first slide plate (501), the back of the first slide plate (501) is fixedly connected to a first arc-shaped template (1), the top of the first slide plate (501) is provided with a first slide groove, the inner wall of the first slide groove is slidably connected to a first sliding tenon (502), the top of the first sliding tenon (502) is fixedly connected to a first sliding cover (503), the top of the first sliding cover (503) is provided with a double-sided tape (504), and the first sliding cover (503) is installed with a light warning device (505) through the double-sided tape (504); The inner wall of the first sliding cover (503) is provided with a magnetic strip (506), the first sliding cover (503) is installed with a second sliding cover (507) through the magnetic strip (506), the bottom of the second sliding cover (507) is fixedly connected with a second sliding tenon (508), the second sliding cover (507) is slidingly connected with a second sliding groove plate (509) through the second sliding tenon (508), the top of the second sliding groove plate (509) is provided with a second sliding groove, the second sliding groove and the second sliding tenon (508) are adapted to each other, and one side of the second sliding groove plate (509) is fixedly connected with a second arc-shaped template (3).

2. The mountain photovoltaic environment-friendly pile foundation device according to claim 1, characterized in that: The lower surface of the first arc-shaped template (1) is fixedly connected to a first arc-shaped threaded hole base (6), a second threaded hole is provided on the top of the first arc-shaped threaded hole base (6), an inner wall of the second threaded hole is threadedly connected to a second bolt, the second threaded hole is threadedly connected to a third arc-shaped template (7) via the second bolt, and the lower surface of the second arc-shaped template (3) is fixedly connected to a second arc-shaped threaded hole base (8).

3. The mountain photovoltaic environment-friendly pile foundation device according to claim 2, characterized in that: A third threaded hole is provided on the top of the second arc-shaped threaded hole base (8), a third bolt is threadedly connected to the inner wall of the third threaded hole, and the third threaded hole is threadedly connected to the fourth arc-shaped template (9) through the third bolt. Both ends of the third arc-shaped template (7) are fixedly connected to the second threaded hole base (10), a fourth threaded hole is provided on the front of the second threaded hole base (10), a fourth bolt is threadedly connected to the inner wall of the fourth threaded hole, and the fourth threaded hole is threadedly connected to the fourth arc-shaped template (9) through the fourth bolt, and the surface of the fourth bolt is threadedly connected to the second threaded fastening ring (11).

4. The mountain photovoltaic environment-friendly pile foundation device according to claim 1, characterized in that: The surfaces of the first arc-shaped template (1) and the third arc-shaped template (7) are provided with a fifth threaded hole and a sixth threaded hole in sequence from top to bottom, the inner wall of the fifth threaded hole is threadedly connected to a fifth bolt, the fifth threaded hole is threadedly connected to a vibration module (12) through the fifth bolt, the inner wall of the sixth threaded hole is threadedly connected to a sixth bolt, the sixth threaded hole is threadedly connected to a first support module (13) through the sixth bolt, the second arc-shaped template (3) and the fourth arc-shaped template (9) are both provided with a seventh threaded hole, the inner wall of the seventh threaded hole is threadedly connected to a seventh bolt, and the seventh threaded hole is threadedly connected to a second support module (14) through the seventh bolt.

5. The mountain photovoltaic environment-friendly pile foundation device according to claim 4, characterized in that: The vibration module (12) comprises a vibration motor (1201), a hydraulic impact rod (1202) is provided on the back of the vibration motor (1201), one end of the hydraulic impact rod (1202) is fixedly connected to a circular plate (1203), a signal receiving rod (1204) is provided on the top of the vibration motor (1201), and a signal light (1205) and an operation button (1206) are provided on the side of the vibration motor (1201) from top to bottom, and a battery slot is provided on the front of the vibration motor (1201), and a battery (1207) is installed on the inner wall of the battery slot.

6. The mountain photovoltaic environment-friendly pile foundation device according to claim 4, characterized in that: The first support module (13) includes a first support rod (1301), a first bolt hole is provided on the top of the first support rod (1301), a first bolt (1302) is inserted into the inner wall of the first bolt hole, the first support rod (1301) is inserted into the second support rod (1303) through the first bolt (1302), a first rod groove is provided on the front of the first support rod (1301), the first rod groove and the second support rod (1303) are adapted to each other, the front of the second support rod (1303) is fixedly connected to a first square plate (1304), and the front of the first square plate (1304) is fixedly connected to a first pointed cone (1305).

7. The mountain photovoltaic environment-friendly pile foundation device according to claim 4, characterized in that: The second support module (14) includes a third support rod (1401), a second bolt hole is opened on the top of the third support rod (1401), a second bolt (1402) is plugged into the inner wall of the second bolt hole, and the third support rod (1401) is plugged into the fourth support rod (1403) through the second bolt (1402).

8. The mountain photovoltaic environment-friendly pile foundation device according to claim 7, characterized in that: A second rod groove is provided on the back of the third support rod (1401), and the second rod groove and the fourth support rod (1403) are adapted to each other. The back of the fourth support rod (1403) is fixedly connected to a second square plate (1404), and the back of the second square plate (1404) is fixedly connected to a second pointed cone (1405).