High-performance fiber concrete construction device for wind power foundation

Through the spindle and gear system and rotating mechanism driven by the servo motor, the problem of adjustment of the pouring direction and range in the high-performance fiber concrete construction device of wind power foundation is solved, and the synchronous stirring and stable transport of concrete is realized, which improves the construction quality and efficiency.

CN223226622UActive Publication Date: 2025-08-15NAT ENERGY GRP TIBET ELECTRIC POWER CO LTD NAGQU BRANCH
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Patent Information

Application Number
CN202421982404.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-08-15
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

When used in the existing high-performance fiber concrete construction equipment for wind power foundations, the concrete pouring direction and range are inconvenient to adjust, and the mixing design is lacking, resulting in the concrete being easily separated and agglomerated, affecting the construction quality and efficiency.

Method used

The spindle and gear system driven by the servo motor are used to cooperate with the rotating mechanism to adjust the discharge direction of the concrete conveying cylinder and the casting pipe, and the concrete is synchronously stirred through the mixing rod and the agitating plate to prevent separation, and the rotating motor is used to drive the rotating shaft and support wheel to ensure the stable rotation of the concrete storage tank.

Benefits of technology

It realizes convenient adjustment of the direction and position of concrete pouring, synchronous stirring prevents separation, improves construction quality and efficiency, and ensures the firmness and construction performance of the wind power foundation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a wind power foundation high-performance fiber concrete construction device which comprises a concrete storage tank and a concrete conveying cylinder, one side of the bottom end of the concrete storage tank is connected with the concrete conveying cylinder, and one side of the bottom end of the concrete conveying cylinder is connected with a pouring material pipe. In the concrete construction process of the wind power foundation, the pouring material pipe is used for discharging, then according to construction requirements, the rotating motor is used for driving the rotating shaft to rotate, the rotating disc and the concrete storage tank are made to rotate synchronously, in the process, the rotating shaft rotates in the supporting guide groove, limiting and guiding are carried out on rotation of the concrete storage tank, and the construction efficiency is improved. The rotating stability of the concrete storage tank is ensured, the discharging direction and position of the concrete conveying barrel and the pouring material pipe can be adjusted, different requirements of wind power foundation concrete construction are met, and the discharging direction does not need to be changed by manually pushing the moving seat.
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Description

Technical Field

[0001] The utility model relates to the technical field of concrete construction, in particular to a high-performance fiber concrete construction device for a wind power foundation. Background Art

[0002] With the growing global demand for clean energy, wind energy, as one of the most promising renewable energy sources, has seen continuous breakthroughs in its development and application technologies. Wind turbine foundations, as a crucial component of wind farms, are directly related to the operational efficiency and safety of the entire wind farm. While traditional concrete materials are widely used in wind turbine foundations, they often suffer from problems such as cracking and poor durability under extreme climatic conditions and long-term loads.

[0003] In a wind power foundation concrete construction device with announcement number CN217679095U, specifically related to the field of wind power technology, including a mounting frame, wherein guide grooves are provided at the top middle position and the bottom middle position of the mounting frame, and a guide ring is welded to the inner wall of the guide groove at the top, and a feed pipe is movably connected to the inside of the guide ring, and a loading mechanism is provided inside the feed pipe, and a lifting mechanism is provided between one side of the feed pipe and the inside of the mounting frame, and a feed port is provided on one side of the top of the feed pipe, and a feed assembly is provided at the top of the feed port. The utility model discharges concrete from the top of the feed pipe through an auger, which is convenient for feeding and pouring concrete for wind power foundation construction, and is convenient for pouring and loading. The height of the feed pipe is adjusted, thereby adjusting the loading height, so that the entire construction device has height adjustment performance, avoiding the problem of being unable to effectively load materials due to height restrictions during pouring;

[0004] When the above-mentioned prior art is used, during the concrete pouring process, the pouring position is fixed, and it is inconvenient to adjust the pouring position and range. Therefore, it is necessary to manually move and adjust the position and pouring direction of the entire device. However, since the concrete storage box is heavy, manual pushing is time-consuming and labor-intensive. In addition, there is a lack of mixing design during the pouring process. Since the concrete is transported to the construction site, water evaporates, which leads to segregation of the concrete, which in turn affects the pouring and laying of the concrete. Therefore, corresponding improvements are needed. Utility Model Content

[0005] The purpose of the utility model is to provide a high-performance fiber concrete construction device for wind power foundations to solve the problem that the concrete pouring direction and range of the existing high-performance fiber concrete construction device for wind power foundations proposed in the above background technology are inconvenient to adjust during use.

[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a high-performance fiber concrete construction device for a wind power foundation, comprising a concrete storage tank and a concrete conveying drum, wherein one side of the bottom end of the concrete storage tank is connected to the concrete conveying drum, and one side of the bottom end of the concrete conveying drum is connected to a pouring material pipe, and one side of the top end of the concrete storage tank is provided with a material injection pipe;

[0007] Also includes:

[0008] The top of the concrete storage tank is connected to a bracket, and the top of the bracket is provided with a driving mechanism, the driving mechanism includes a servo motor, and the servo motor is provided at the top of the bracket, the bottom end of the servo motor is connected to a main shaft, and the bottom end of the main shaft is connected to a main gear, one side of the main gear is meshed with a bevel gear, and one end of the bevel gear is connected to a horizontal shaft, one end of the horizontal shaft is sleeved with a longitudinal pulley assembly, and the other end of the longitudinal pulley assembly passes through a linkage shaft, one end of the linkage shaft extends to the interior of the concrete storage tank, one end of the horizontal shaft linkage shaft is connected to a feeding auger, and one end of the feeding auger extends to the interior of the concrete conveying cylinder, the bottom end of the concrete storage tank is provided with a rotating mechanism, and the bottom end of the rotating mechanism is connected to a moving seat, and both sides of the bottom end of the moving seat are connected to moving self-locking wheels.

[0009] When using a high-performance fiber concrete construction device for wind power foundations according to the present technical solution, the discharge direction of the concrete conveying cylinder and the pouring material pipe can be adjusted by utilizing the setting of the rotating mechanism to meet the pouring requirements of different positions.

[0010] Preferably, the longitudinal pulley assembly includes a driving wheel, a driven wheel and a driving belt, the driving wheel is sleeved on the outside of the transverse axis, the driven wheel is sleeved on the outside of the linkage shaft, and a driving belt is connected between the driving wheel and the driven wheel.

[0011] Preferably, the rotating mechanism includes a rotating motor, and the rotating motor is arranged inside the moving base, one end of the rotating motor is connected to a rotating shaft, and one end of the rotating shaft is connected to a rotating disk, and both sides of the bottom end of the rotating disk are connected to support wheels.

[0012] Preferably, one end of the support wheel extends to the inside of the support guide groove, the support guide groove is provided at the top end of the movable seat, and the cross section of the support guide groove is annular.

[0013] Preferably, a stirring assembly is provided inside the concrete storage tank, and the stirring assembly includes a stirring rod provided at the bottom end of the main gear, and stirring frames are connected to both sides of the stirring rod.

[0014] Preferably, both ends of the outer side of the stirring rod are connected to a stirring plate, and both ends of one side of the stirring plate are connected to a stirring rod.

[0015] Preferably, one end of the stirring rod is connected to a bottom plate, and both sides of the top end of the bottom plate are evenly connected to stirring vertical rods.

[0016] Compared with the existing technology, the beneficial effects of the utility model are: the high-performance fiber concrete construction device for wind power foundation can not only conveniently adjust the concrete pouring direction and position to ensure the efficiency of concrete pouring construction, but also can synchronously stir the concrete during the concrete pouring construction process to prevent the concrete from segregating and separating;

[0017] During the concrete construction of the wind turbine foundation, the pouring material pipe is used for discharging. The concrete conveying cylinder stores high-performance fiber concrete with good compression and flexural properties, which can ensure the firmness of the wind turbine foundation during the pouring construction. Then, according to the construction requirements, the rotating motor is used to drive the rotating shaft to rotate, and the rotating disk and the concrete storage tank rotate synchronously. During this process, the support wheel rotates in the support guide groove to limit and guide the rotation of the concrete storage tank to ensure the stability of the rotation of the concrete storage tank. The discharge direction and position of the concrete conveying cylinder and the pouring material pipe can be adjusted to meet the different requirements of the wind turbine foundation concrete construction, without the need to manually push the moving seat to change the discharge direction;

[0018] The servo motor is used to drive the main shaft and main gear to rotate. Under the meshing action of the main gear and the bevel gear, the bevel gear and the horizontal shaft can rotate synchronously, and the longitudinal pulley assembly is cooperated to rotate the linkage shaft, and then the feeding auger is rotated to transport the concrete to be constructed. During this process, the main shaft drives the functional stirring rod to rotate, and the stirring frame, stirring plate and multiple groups of stirring rods rotate synchronously, so as to stir the concrete in the concrete storage tank and avoid the occurrence of concrete lumps during the concrete construction process, so as to improve the quality and efficiency of wind power foundation concrete construction and enhance the construction performance of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

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

[0021] Figure 2 This is a schematic diagram of the main cross-sectional structure of the utility model;

[0022] Figure 3 This is a side structural diagram of the present utility model;

[0023] Figure 4 This is a schematic diagram of the three-dimensional structure of the stirring plate and stirring rod of the present invention;

[0024] Figure 5 This is a schematic diagram of the three-dimensional structure of the bottom plate and stirring rod of the utility model.

[0025] Explanation of the reference numerals in the figure: 1. Moving seat; 2. Concrete conveying cylinder; 201. Casting material pipe; 3. Rotating mechanism; 301. Rotating disk; 302. Support wheel; 303. Rotating motor; 304. Rotating shaft; 305. Support guide groove; 4. Concrete storage tank; 5. Injection pipe; 6. Bracket; 7. Driving mechanism; 701. Servo motor; 702. Main shaft; 703. Main gear; 704. Bevel gear; 705. Horizontal shaft; 706. Longitudinal pulley assembly; 707. Linkage shaft; 8. Stirring rod; 9. Stirring frame; 10. Stirring plate; 1001. Stirring rod; 11. Bottom plate; 12. Stirring vertical rod; 13. Feeding auger. DETAILED DESCRIPTION

[0026] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings 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 creative work are within the scope of protection of the present invention.

[0027] See also Figure 1-Figure 5 , the utility model provides the following technical solutions:

[0028] Example 1

[0029] In order to solve the problem that the concrete lacks agitation during use in the existing wind power foundation high performance fiber concrete construction device, which causes the concrete to easily solidify and affect its use, the following technical solutions are announced. Please refer to the detailed Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5, including a concrete storage tank 4, a concrete conveying cylinder 2, one side of the bottom end of the concrete storage tank 4 is connected to the concrete conveying cylinder 2, and one side of the bottom end of the concrete conveying cylinder 2 is connected to the pouring material pipe 201, and one side of the top end of the concrete storage tank 4 is provided with a material injection pipe 5, and also includes: the top end of the concrete storage tank 4 is connected to the bracket 6, and the top end of the bracket 6 is provided with a driving mechanism 7, the driving mechanism 7 includes a servo motor 701, and the servo motor 701 is provided at the top end of the bracket 6, the bottom end of the servo motor 701 is connected to the main shaft 702, and the bottom end of the main shaft 702 is connected to the main gear 703, one side of the main gear 703 is meshed with a bevel gear 704, and one end of the bevel gear 704 is connected to a horizontal shaft 705, one end of the horizontal shaft 705 is sleeved with a longitudinal pulley assembly 706, and the other end of the longitudinal pulley assembly 706 is penetrated by a linkage shaft 707, One end of the driving shaft 707 extends to the interior of the concrete storage tank 4, one end of the horizontal axis linkage shaft 707 is connected to the feeding auger 13, and one end of the feeding auger 13 extends to the interior of the concrete conveying cylinder 2, the longitudinal pulley assembly 706 includes a driving wheel, a driven wheel and a driving belt, the driving wheel is sleeved on the outside of the horizontal shaft 705, the driven wheel is sleeved on the outside of the linkage shaft 707, and a driving belt is connected between the driving wheel and the driven wheel. A stirring assembly is provided inside the concrete storage tank 4, and the stirring assembly includes a stirring rod 8 provided at the bottom end of the main gear 703, and both sides of the stirring rod 8 are connected to a stirring frame 9, both ends of the outer side of the stirring rod 8 are connected to a stirring plate 10, and both ends of one side of the stirring plate 10 are connected to a stirring rod 1001, one end of the stirring rod 8 is connected to the bottom plate 11, and both sides of the top of the bottom plate 11 are evenly connected to stirring vertical rods 12;

[0030] When the present embodiment is in use, high-fiber concrete raw materials and water are injected into the concrete storage tank 4 through the injection pipe 5, and a certain amount of high-performance fiber is added. Then, the servo motor 701 is driven to drive the main shaft 702 and the main gear 703 to rotate. The rotation of the main shaft 702 drives the functional stirring rod 8 to rotate, and the stirring frame 9, the stirring plate 10 and the multiple groups of stirring rods 1001 rotate synchronously, and the bottom plate 11 and the multiple groups of stirring vertical rods 12 rotate synchronously, thereby expanding the stirring and mixing range of the concrete raw materials, so that the contact between the various raw materials is more complete, and the high-fiber concrete in the concrete storage tank 4 is achieved. The concrete raw materials and water are efficiently stirred to ensure the stability of the concrete quality and prevent the occurrence of concrete caking during the concrete construction process. During this process, under the meshing action of the main gear 703 and the bevel gear 704, the bevel gear 704 and the horizontal shaft 705 can rotate synchronously, and cooperate with the longitudinal pulley assembly 706 to rotate the linkage shaft 707, and then the feeding auger 13 is rotated to transport the concrete to be constructed, so that the concrete mixing and material pouring can be carried out simultaneously, so as to improve the quality and efficiency of the wind power foundation concrete construction and enhance the construction performance of the device.

[0031] Example 2

[0032] This embodiment is different from the first embodiment. By using the setting of the rotating mechanism 3, the use angle of the concrete conveying cylinder 2 used for concrete construction can be adjusted, so that concrete pouring can be carried out at different positions and in different ranges to improve the use range of the device. Therefore, the following technical solutions are announced. Please refer to the specific Figure 1 、 Figure 2 、 Figure 3 , a rotating mechanism 3 is provided at the bottom end of the concrete storage tank 4, and the bottom end of the rotating mechanism 3 is connected to the moving base 1, the rotating mechanism 3 includes a rotating motor 303, and the rotating motor 303 is arranged inside the moving base 1, one end of the rotating motor 303 is connected to a rotating shaft 304, and one end of the rotating shaft 304 is connected to a rotating disk 301, both sides of the bottom end of the rotating disk 301 are connected to support wheels 302, one end of the support wheel 302 extends to the inside of the support guide groove 305, the support guide groove 305 is provided at the top end of the moving base 1, the cross-section of the support guide groove 305 is annular, and both sides of the bottom end of the moving base 1 are connected to movable self-locking wheels;

[0033] When this embodiment is in use, the pouring material pipe 201 is used to discharge materials during the concrete construction of the wind power foundation. Then, according to the construction requirements, the rotating motor 303 is used to drive the rotating shaft 304 to rotate, and the rotating disk 301 and the concrete storage tank 4 rotate synchronously. During this process, multiple support wheels 302 rotate in the support guide groove 305 to limit and guide the rotation of the concrete storage tank 4 to ensure the stability of the rotation of the concrete storage tank 4. The discharge direction and position of the concrete conveying cylinder 2 and the pouring material pipe 201 can be adjusted to meet the different requirements of the wind power foundation concrete construction and improve the scope of use of the device.

[0034] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0035] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, i.e., they may be located in one location or distributed across multiple network units. Some or all of the modules may be selected based on actual needs to achieve the objectives of the present embodiment. Persons of ordinary skill in the art will be able to understand and implement the present invention without inventive effort.

[0036] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A high-performance fiber concrete construction device for a wind power foundation, comprising a concrete storage tank (4) and a concrete conveying drum (2), wherein one side of the bottom end of the concrete storage tank (4) is connected to the concrete conveying drum (2), and one side of the bottom end of the concrete conveying drum (2) is connected to a pouring material pipe (201), and one side of the top end of the concrete storage tank (4) is provided with a material injection pipe (5); It is characterized by: Also includes: The top of the concrete storage tank (4) is connected to a bracket (6), and a driving mechanism (7) is provided at the top of the bracket (6). The driving mechanism (7) includes a servo motor (701), and the servo motor (701) is provided at the top of the bracket (6). The bottom end of the servo motor (701) is connected to a main shaft (702), and the bottom end of the main shaft (702) is connected to a main gear (703). One side of the main gear (703) is meshed with a bevel gear (704), and one end of the bevel gear (704) is connected to a transverse shaft (705). One end of the transverse shaft (705) is connected to the main shaft (703). A longitudinal pulley assembly (706) is sleeved, and a linkage shaft (707) passes through the other end of the longitudinal pulley assembly (706), one end of the linkage shaft (707) extends to the interior of the concrete storage tank (4), one end of the transverse axis linkage shaft (707) is connected to a feeding auger (13), and one end of the feeding auger (13) extends to the interior of the concrete conveying cylinder (2), the bottom end of the concrete storage tank (4) is provided with a rotating mechanism (3), and the bottom end of the rotating mechanism (3) is connected to a moving seat (1), and both sides of the bottom end of the moving seat (1) are connected to movable self-locking wheels.

2. A wind power foundation high-performance fiber concrete construction device according to claim 1, characterized in that: The longitudinal pulley assembly (706) comprises a driving wheel, a driven wheel and a driving belt, wherein the driving wheel is sleeved on the outside of the transverse shaft (705), the driven wheel is sleeved on the outside of the linkage shaft (707), and a driving belt is connected between the driving wheel and the driven wheel.

3. The high-performance fiber concrete construction device for wind power foundation according to claim 1, characterized in that: The rotating mechanism (3) comprises a rotating motor (303), and the rotating motor (303) is arranged inside the movable seat (1), one end of the rotating motor (303) is connected to a rotating shaft (304), and one end of the rotating shaft (304) is connected to a rotating disk (301), and both sides of the bottom end of the rotating disk (301) are connected to support wheels (302).

4. A wind power foundation high-performance fiber concrete construction device according to claim 3, characterized in that: One end of the support wheel (302) extends to the inside of the support guide groove (305), and the support guide groove (305) is arranged at the top end of the movable seat (1). The cross section of the support guide groove (305) is annular.

5. The high-performance fiber concrete construction device for wind power foundation according to claim 1, characterized in that: A stirring assembly is provided inside the concrete storage tank (4), and the stirring assembly includes a stirring rod (8) provided at the bottom end of the main gear (703), and stirring frames (9) are connected to both sides of the stirring rod (8).

6. A wind power foundation high-performance fiber concrete construction device according to claim 5, characterized in that: Both ends of the outer side of the stirring rod (8) are connected to a stirring plate (10), and both ends of one side of the stirring plate (10) are connected to a stirring rod (1001).

7. The high-performance fiber concrete construction device for wind power foundation according to claim 5, characterized in that: One end of the stirring rod (8) is connected to a bottom plate (11), and both sides of the top end of the bottom plate (11) are evenly connected to stirring vertical rods (12).

Citation Information

Patent Citations

  • Wind power foundation concrete construction device

    CN217679095U