Foundation pile pouring device for photovoltaic construction

By using a servo motor-driven mixing slurry and worm gear system, the problems of angle adjustment and loose concrete in photovoltaic pile foundation pouring were solved, achieving pile pouring with tight bonding and accurate inclination.

CN223647059UActive Publication Date: 2025-12-09CHINA POWER CONSTR HUBEI ELECTRIC POWER CONSTR CO LTD
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Patent Information

Application Number
CN202423023714.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-12-09
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

In the traditional photovoltaic pile foundation pouring process, the concrete filling angle is not easy to adjust, the bond is loose and contains air bubbles, which affects the stability of the pile foundation.

Method used

The uniform mixing and pouring adjustment components, including a mixing paddle, turntable, and worm gear, driven by a servo motor, ensure tight bonding of the concrete and allow for adjustable pouring angles.

Benefits of technology

It improves the stability of the pile foundation and the accuracy of the pouring angle, and reduces concrete waste and air bubble content.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a foundation pile pouring device for photovoltaic construction, and relates to the technical field of foundation pile pouring, the upper part of a bottom plate is fixedly connected with a supporting column, the outer side of the supporting column is fixedly connected with a fixed plate, the supporting column is provided with a uniform mixing assembly, the uniform mixing assembly comprises a servo motor, a hollow cylinder and a stirring paddle, and the stirring paddle is fixedly connected with the hollow cylinder. The outer side of the hollow cylinder is fixedly connected with a second hollow block, the second hollow block is provided with a pouring adjusting assembly, the pouring adjusting assembly comprises a rotating disc, a pouring pipe and a worm, by arranging the uniform mixing assembly, filled concrete is combined more tightly, bubbles generated inside are released, and therefore the stability of a follow-up pile foundation can be improved; by arranging the pouring adjusting assembly, a constructor can easily adjust the pouring angle according to actual needs, so that the accuracy of the inclination of the pile body is ensured, and angle deviation and errors possibly occurring in a traditional manual supporting mode are avoided.
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Description

Technical Field

[0001] This utility model relates to the field of foundation pile casting technology, and in particular to a foundation pile casting device for photovoltaic construction. Background Technology

[0002] Pile foundation pouring refers to pile foundations with manually excavated holes. First, a high-power submersible pump is used to pump out the seepage water in the hole, and then concrete is poured. Before pouring concrete, the optimized mix ratio should be submitted to the supervising engineer for approval, and the quality of various raw materials on site should be inspected. In ordinary concrete pouring construction, after the concrete is delivered to the hole opening, it enters a special funnel and then falls into the hole through a tremie pipe.

[0003] Traditionally, the pouring process for photovoltaic pile foundations requires manual filling of concrete into the pile holes. Current filling methods are mostly done manually. During the pouring process, different pouring points need to be poured, which usually requires manual positioning of the pouring points.

[0004] However, in actual use, traditional devices usually require manual positioning of the pouring point, which can easily lead to concrete waste. Furthermore, it is not easy to adjust the angle according to the needs of use, and the filling concrete is relatively loosely bonded with a lot of air bubbles, which can affect the stability of the subsequent pile foundation. Therefore, it is necessary to propose a foundation pile pouring device for photovoltaic construction. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies, such as difficulty in adjusting the angle according to usage needs, loose bonding between filled concrete, and the presence of numerous air bubbles. Therefore, this invention proposes a foundation pile casting device for photovoltaic construction.

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

[0007] A foundation pile pouring device for photovoltaic construction includes a base plate, a support column fixedly connected to the top of the base plate, a fixing plate fixedly connected to the outer side of the support column, a servo motor fixedly connected to the side of the fixing plate away from the base plate, a uniform mixing component mounted on the servo motor, the uniform mixing component including a hollow cylinder and a mixing slurry, a second hollow block fixedly connected to the outer side of the hollow cylinder, and a pouring adjustment component mounted on the second hollow block, the pouring adjustment component including a turntable, a pouring pipe and a worm gear. By setting the uniform mixing component, the filling concrete is more tightly bonded, and air bubbles generated inside are released.

[0008] The above technical solution further includes:

[0009] The output shaft end of the servo motor is fixedly connected to the agitator, and the end of the agitator away from the servo motor is movably connected to the support column.

[0010] A connecting plate is fixedly connected to the side of the support column near the mixing paddle, and a funnel is fixedly connected to the end of the connecting plate away from the support column. A first flow channel is provided at the bottom of the funnel.

[0011] A first hollow block is fixedly connected to the side of the funnel near the bottom plate. The end of the first hollow block away from the funnel is fixedly connected to the hollow cylinder. The funnel, the first hollow block and the hollow cylinder are interconnected.

[0012] The hollow cylinder and the stirring paddle are movably connected. A second flow groove is provided on the outer side of the hollow cylinder. The outer side of the hollow cylinder and the second hollow block are fixedly connected. The hollow cylinder and the second hollow block are interconnected.

[0013] The outer side of the second hollow block is movably connected to the turntable, the outer side of the turntable is fixedly connected to the casting pipe, and a connecting rod is fixedly connected to the outer side of the turntable.

[0014] A movable rod is movably connected to the side of the second hollow block away from the turntable. A worm gear is fixedly connected to the end of the movable rod away from the second hollow block. Construction personnel can easily adjust the pouring angle according to actual needs, thereby ensuring the accuracy of the pile inclination.

[0015] The second hollow block is symmetrically and fixedly connected to a support block on its outer side. The two support blocks are movably connected to a worm gear, and the worm gear and the worm wheel mesh with each other.

[0016] This utility model has the following beneficial effects:

[0017] 1. In this utility model, by setting a uniform mixing component, the filling concrete is more tightly bonded, and the air bubbles generated inside are released, thereby improving the stability of the subsequent pile foundation.

[0018] 2. In this utility model, by setting up a pouring adjustment component, construction personnel can easily adjust the pouring angle according to actual needs, thereby ensuring the accuracy of the pile inclination and avoiding the angle deviation and error that may occur under the traditional manual support method. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the first overall structure of a photovoltaic construction foundation pile casting device proposed in this utility model;

[0020] Figure 2 This is a three-dimensional structural diagram of a photovoltaic construction foundation pile casting device proposed in this utility model;

[0021] Figure 3 This is a schematic diagram of the second integral structure of a photovoltaic construction foundation pile casting device proposed in this utility model;

[0022] Figure 4 for Figure 3 Enlarged schematic diagram of the structure at point A in the middle.

[0023] In the diagram: 1. Base plate; 2. Support column; 3. Fixing plate; 4. Servo motor; 5. Connecting plate; 6. Funnel; 7. First hollow block; 8. Hollow cylinder; 9. Agitator; 10. Second hollow block; 11. Turntable; 12. Casting pipe; 13. Connecting rod; 14. Movable rod; 15. Worm gear; 16. Support block; 17. Worm; 18. First flow channel; 19. Second flow channel. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Example 1

[0026] like Figures 1-4 As shown, the present invention proposes a photovoltaic construction foundation pile pouring device, including a base plate 1, a support column 2 fixedly connected above the base plate 1, a fixing plate 3 fixedly connected to the outside of the support column 2, a servo motor 4 fixedly connected to the side of the fixing plate 3 away from the base plate 1, a uniform mixing component provided on the servo motor 4, the uniform mixing component including a hollow cylinder 8 and a mixing slurry 9, a second hollow block 10 fixedly connected to the outside of the hollow cylinder 8, a pouring adjustment component provided on the second hollow block 10, the pouring adjustment component including a turntable 11, a pouring pipe 12 and a worm gear 17;

[0027] The output shaft end of the servo motor 4 is fixedly connected to the agitator 9, and the end of the agitator 9 away from the servo motor 4 is movably connected to the support column 2.

[0028] A connecting plate 5 is fixedly connected to the side of the support column 2 near the mixing paddle 9, and a funnel 6 is fixedly connected to the end of the connecting plate 5 away from the support column 2. A first flow channel 18 is opened at the bottom of the funnel 6.

[0029] A first hollow block 7 is fixedly connected to the side of the funnel 6 near the bottom plate 1. The end of the first hollow block 7 away from the funnel 6 is fixedly connected to the hollow cylinder 8. The funnel 6, the first hollow block 7 and the hollow cylinder 8 are interconnected.

[0030] The hollow cylinder 8 and the agitator 9 are movably connected. A second flow groove 19 is provided on the outer side of the hollow cylinder 8. The outer side of the hollow cylinder 8 and the second hollow block 10 are fixedly connected. The hollow cylinder 8 and the second hollow block 10 are interconnected.

[0031] In this embodiment, starting the servo motor 4 can drive the mixing paddle 9 to rotate, thereby making the filling concrete more tightly bonded. Specifically, the fixing plate 3 connects the support column 2 and the servo motor 4, and the fixing plate 3 supports the servo motor 4. When the servo motor 4 is started, the output shaft of the servo motor 4 rotates, which drives the mixing paddle 9 inside the hollow cylinder 8 to rotate. The concrete is poured into the inside of the funnel 6, enters the first hollow block 7 from the first flow channel 18 at the bottom of the funnel 6, and then falls into the inside of the hollow cylinder 8. When the mixing paddle 9 rotates, it can agitate the concrete inside the hollow cylinder 8, thereby making the filling concrete more tightly bonded. Under the rotation of the mixing paddle 9, the concrete will be pushed into the inside of the second hollow block 10 through the second flow channel 19.

[0032] Example 2

[0033] like Figures 1-4 As shown, based on Embodiment 1, the outer side of the second hollow block 10 is movably connected to the turntable 11, the outer side of the turntable 11 is fixedly connected to the casting pipe 12, and a connecting rod 13 is fixedly connected to the outer side of the turntable 11.

[0034] The second hollow block 10 is movably connected to a movable rod 14 on the side away from the turntable 11, and a worm gear 15 is fixedly connected to the end of the movable rod 14 away from the second hollow block 10.

[0035] The second hollow block 10 is symmetrically fixedly connected to a support block 16 on its outer side. The two support blocks 16 are movably connected to a worm gear 17, and the worm gear 17 and the worm wheel 15 mesh with each other.

[0036] In this embodiment, the concrete inside the second hollow block 10 flows out through the turntable 11 and the pouring pipe 12. Two support blocks 16 are fixedly connected to the outside of the second hollow block 10. The two support blocks 16 can support the worm gear 17. When the worm gear 17 is rotated, the worm gear 15 will rotate with the rotation of the worm gear 17 because the worm gear 17 and the worm wheel 15 are meshed. The worm wheel 15 is movably connected to the second hollow block 10 through the movable rod 14. When the worm wheel 15 rotates, it can drive the outer connecting rod 13 to rotate. The connecting rod 13 is fixedly connected to the turntable 11. The rotation of the connecting rod 13 can drive the turntable 11 to rotate. The rotation of the turntable 11 can drive the pouring pipe 12 to rotate. The construction personnel can easily adjust the pouring angle according to actual needs, thereby ensuring the accuracy of the pile inclination.

[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A foundation pile casting device for photovoltaic construction, comprising a base plate (1), characterized in that, A support column (2) is fixedly connected above the base plate (1), and a fixing plate (3) is fixedly connected to the outside of the support column (2). A uniform mixing component is provided on the support column (2). The uniform mixing component includes a servo motor (4), a hollow cylinder (8), and a stirring paddle (9). A second hollow block (10) is fixedly connected to the outside of the hollow cylinder (8). A pouring adjustment component is provided on the second hollow block (10). The pouring adjustment component includes a turntable (11), a pouring pipe (12), and a worm gear (17).

2. The photovoltaic construction foundation pile casting device according to claim 1, characterized in that, The output shaft end of the servo motor (4) is fixedly connected to the stirring blade (9), and the end of the stirring blade (9) away from the servo motor (4) is movably connected to the support column (2).

3. The photovoltaic construction foundation pile casting device according to claim 1, characterized in that, A connecting plate (5) is fixedly connected to the side of the support column (2) near the stirring paddle (9), and a funnel (6) is fixedly connected to the end of the connecting plate (5) away from the support column (2), and a first flow groove (18) is opened at the bottom of the funnel (6).

4. The photovoltaic construction foundation pile casting device according to claim 3, characterized in that, The funnel (6) is fixedly connected to a first hollow block (7) on the side near the bottom plate (1). The end of the first hollow block (7) away from the funnel (6) is fixedly connected to the hollow cylinder (8). The funnel (6), the first hollow block (7) and the hollow cylinder (8) are interconnected.

5. The photovoltaic construction foundation pile casting device according to claim 1, characterized in that, The hollow cylinder (8) and the stirring paddle (9) are movably connected. A second flow groove (19) is provided on the outer side of the hollow cylinder (8). The outer side of the hollow cylinder (8) and the second hollow block (10) are fixedly connected. The hollow cylinder (8) and the second hollow block (10) are interconnected.

6. The photovoltaic construction foundation pile casting device according to claim 1, characterized in that, The outer side of the second hollow block (10) is movably connected to the turntable (11), the outer side of the turntable (11) is fixedly connected to the pouring pipe (12), and a connecting rod (13) is fixedly connected to the outer side of the turntable (11).

7. The photovoltaic construction foundation pile casting device according to claim 1, characterized in that, A movable rod (14) is movably connected to the side of the second hollow block (10) away from the turntable (11), and a worm gear (15) is fixedly connected to the end of the movable rod (14) away from the second hollow block (10).

8. The photovoltaic construction foundation pile casting device according to claim 1, characterized in that, The second hollow block (10) is symmetrically fixedly connected to a support block (16), and the two support blocks (16) are movably connected to a worm (17), which meshes with the worm wheel (15).