Wave pile positioning guide frame

CN223119067UActive Publication Date: 2025-07-18CHINA POWER CONSTR MUNICIPAL CONSTR GRP SHANDONG ENG CO LTD
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Patent Information

Application Number
CN202422419426.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-07-18
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The existing wave pile guides are prone to tilt and offset in the soft soil layer, affecting the linear effect of the installation level of wave piles. The existing devices have not effectively solved this problem.

Method used

A wavy pile positioning guide frame including a positioning platform, support feet, positioning guide mechanism, auxiliary stabilization mechanism and reinforcement support mechanism is designed. By installing counterweight blocks and ground nails at the bottom of the guide frame, the verticality of the counterweight blocks and the insertion soil layer of the ground nail are used to achieve horizontal adjustment and stability of the guide frame.

Benefits of technology

The horizontal adjustment and stability of the guide frame are achieved, ensuring the horizontal and stable installation of wave piles, and enhancing the transportation safety and practical effect of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wave pile installation, in particular to a wave pile positioning and guiding frame which comprises a positioning platform and supporting legs, a positioning and guiding mechanism is arranged in the positioning platform, and an auxiliary stabilizing mechanism is arranged on the side edge of the positioning and guiding mechanism. By arranging the balancing weight at the bottom end of the guide frame, the balancing weight is hoisted by the connecting line to form a simple plumb bob structure, so that whether the guide frame is in a horizontal installation state or not can be directly judged by directly comparing the installation perpendicularity of the balancing weight with the guide frame; therefore, the inclined guide frame can be horizontally adjusted in time, then a basic guarantee is provided for horizontal and stable installation of subsequent wave piles on the premise that it is guaranteed that the guide frame is horizontally installed, and the overall guide frame can be reinforced and stabilized through the design that the overall gravity of the device is increased through a balancing weight.
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Description

Technical Field

[0001] The utility model relates to the technical field of wave pile installation, and particularly relates to a wave pile positioning guide frame. Background Technique

[0002] Wave piles are structures used in water conservancy projects. These piles are designed to handle wave energy, reduce the impact force of waves on the shore, and thus reduce the potential erosion risk. They are commonly used in the construction and protection of docks, ports, sea dikes, wind farms, and other offshore structures. The shape and size of wave piles are designed according to specific environmental conditions, wave characteristics, and engineering requirements. The wave pile positioning guide frame is a device used to assist in the positioning and installation of wave piles;

[0003] Since the existing wave pile guide frames are directly placed on the designated installation site to provide positioning and installation effects for wave piles during actual use, due to topographical reasons, the soil layer where the wave piles are installed is not completely hard soil. As a result, the guide frame will tilt and shift during installation and subsequent use. Once the guide frame tilts, it will directly affect the installation horizontal straight line effect of the wave piles. However, the existing devices have not made improvements to this problem, and the overall practical effect is somewhat poor. Summary of the Utility Model

[0004] The purpose of the utility model is to propose a wave pile positioning guide frame to solve the above problems, which improves the problem that the existing wave pile guide frames are directly placed on the designated installation site to provide positioning and installation effects for wave piles during actual use. Due to topographical reasons, the soil layer where the wave piles are installed is not completely hard soil. As a result, the guide frame will tilt and shift during installation and subsequent use. Once the guide frame tilts, it will directly affect the installation horizontal straight line effect of the wave piles.

[0005] A wave pile positioning guide frame includes a positioning platform and support feet: Two groups of support feet are symmetrically arranged on the outer side wall of the positioning platform. A positioning and guiding mechanism is arranged inside the positioning platform. An auxiliary stabilizing mechanism is arranged on the side of the positioning and guiding mechanism. A reinforcement and support mechanism is arranged below the auxiliary stabilizing mechanism;

[0006] The positioning and guiding mechanism includes a placement groove, a guiding plate, a positioning groove, a positioning block, a first threaded groove, a positioning card slot, a second threaded groove, and a fastening bolt. A placement groove is formed through the top outer wall of the positioning platform. A guiding plate is arranged inside the placement groove. The top outer wall of the guiding plate is equidistantly provided with positioning grooves through it, and the positioning grooves are in a wavy shape. Two groups of positioning blocks are symmetrically arranged on the outer walls of both sides of the guiding plate at the top position. A first threaded groove is formed through the top outer wall of the positioning block. Two groups of positioning card slots are symmetrically formed on the top outer wall of the positioning platform at the position of the placement groove. The positioning block and the positioning card slot are snap-fitted. A second threaded groove is correspondingly formed on the top outer wall of the positioning platform at the position of the positioning card slot. The first threaded groove and the second threaded groove are threadedly installed with the fastening bolt.

[0007] Preferably, the auxiliary stabilizing mechanism includes a cylindrical groove and a positioning threaded post. Cylindrical grooves are symmetrically formed through the top outer wall of the positioning platform. A positioning threaded post is arranged inside the cylindrical groove.

[0008] Preferably, a nut block is threadedly installed on the outer thread of the positioning threaded post, and the bottom outer wall of the nut block is in contact with the top outer wall of the positioning platform.

[0009] Preferably, a connecting line is arranged on the bottom outer wall of the positioning threaded post, and a counterweight block is arranged at the bottom of the connecting line.

[0010] Preferably, the cylindrical groove and the positioning threaded post are slidably installed.

[0011] Preferably, the reinforcement and support mechanism includes a limit threaded groove and a ground nail. A ground nail is attached to the bottom outer wall of the support foot, and a limit threaded groove is formed on the bottom outer wall of the support foot.

[0012] Preferably, a limit threaded post is threadedly installed inside the limit threaded groove, and the bottom outer wall of the limit threaded post is connected to the top outer wall of the ground nail.

[0013] The beneficial effects of the present utility model are as follows:

[0014] 1. When the wave pile positioning and guiding frame is in use, through the setting of installing a counterweight block at the bottom of the guiding frame, a simple plumb line structure is formed by lifting the counterweight block with the connecting line. In this way, the verticality of the installed counterweight block can be directly compared with the guiding frame, and then it can be directly judged whether the guiding frame is in a horizontal installation state. Thus, the inclined guiding frame can be adjusted horizontally in time, and on the premise of ensuring the horizontal installation of the guiding frame, it provides a basic guarantee for the subsequent horizontal and stable installation of the wave pile. Further, the design of increasing the overall gravity of the device by the counterweight block can also play a role in strengthening and stabilizing the guiding frame. The overall structure design is simple and has good flexibility;

[0015] 2. When the wave pile positioning guide frame is in use, through the design of setting ground nails at the bottom end of the guide frame, the design of inserting the ground nails into the soil layer is used to reinforce and support the overall installation of the guide frame. Further, the ground nails are designed as detachable through the part components, so that the ground nails can be removed first during the transportation of the guide frame and assembled again when reaching the construction site, thereby enhancing the overall transportation safety of the device. The overall structure design is simple and the practical effect is good. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic three-dimensional structure diagram of the whole of the present utility model;

[0017] Figure 2 It is a schematic three-dimensional structure diagram of the positioning and guiding mechanism of the present utility model;

[0018] Figure 3 For the present utility model Figure 2 The enlarged schematic three-dimensional structure diagram at A in;

[0019] Figure 4 It is a schematic three-dimensional structure diagram of the auxiliary stabilizing mechanism of the present utility model;

[0020] Figure 5 It is a schematic three-dimensional structure diagram of the reinforcement and support mechanism of the present utility model.

[0021] In the figure: 1. positioning platform; 2. support feet; 3. positioning and guiding mechanism; 31. placement groove; 32. guiding plate; 33. positioning groove; 34. positioning block; 35. first thread groove; 36. positioning card slot; 37. second thread groove; 38. fastening bolt; 4. auxiliary stabilizing mechanism; 41. cylindrical groove; 42. positioning threaded post; 43. nut block; 44. connecting line; 45. counterweight block; 5. reinforcement and support mechanism; 51. limit thread groove; 52. limit threaded post; 53. ground nail. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0023] During specific implementation: As Figures 1-5As shown in the figure, a positioning guide frame for wave piles includes a positioning platform 1 and support feet 2: Two groups of support feet 2 are symmetrically arranged on the outer wall of the side of the positioning platform 1. A positioning and guiding mechanism 3 is arranged inside the positioning platform 1. An auxiliary stabilizing mechanism 4 is arranged on the side of the positioning and guiding mechanism 3. A reinforcing support mechanism 5 is arranged below the auxiliary stabilizing mechanism 4;

[0024] The positioning and guiding mechanism 3 includes a placement groove 31, a guiding plate 32, a positioning groove 33, a positioning block 34, a first threaded groove 35, a positioning slot 36, a second threaded groove 37, and a fastening bolt 38. A placement groove 31 is penetrated and opened on the outer wall of the top of the positioning platform 1. A guiding plate 32 is arranged inside the placement groove 31. A plurality of positioning grooves 33 are penetrated and opened at equal intervals on the outer wall of the top of the guiding plate 32, and the positioning grooves 33 are arranged in a wave shape. Two groups of positioning blocks 34 are symmetrically arranged on the outer walls of both sides of the guiding plate 32 at the top position. A first threaded groove 35 is penetrated and opened on the outer wall of the top of the positioning block 34. Two groups of positioning slots 36 are symmetrically opened on the outer wall of the top of the positioning platform 1 at the position of the placement groove 31. The positioning block 34 and the positioning slot 36 are installed in a snap-fit manner. A second threaded groove 37 is correspondingly opened on the outer wall of the top of the positioning platform 1 at the position of the positioning slot 36. The first threaded groove 35 and the second threaded groove 37 are threadedly installed with the fastening bolt 38; Here, the positioning groove 33 is arranged in a wave shape so that the wave pile can be positioned through this positioning groove 33 and inserted one by one into the formation during installation. Here, the positioning groove 33 needs to be specially customized and grooved according to the installed wave pile. When it is necessary to replace different guiding plates 32, first, the fastening bolt 38 needs to be completely screwed out from the inside of the first threaded groove 35, and then the positioning block 34 changes from the locked state to the movable state. Subsequently, the guiding plate 32 together with the positioning block 34 can be directly taken out from the inside of the positioning platform 1. When installing a new guiding plate 32, only need to adjust the guiding plate 32 to the appropriate position and then push the positioning block 34 on its side into the positioning slot 36 at the corresponding position. When the positioning block 34 moves to the bottom of the positioning slot 36, the first threaded groove 35 and the second threaded groove 37 are in a corresponding and fitting state. Subsequently, directly pass the fastening bolt 38 through the first threaded groove 35 and screw it to the bottom of the second threaded groove 37 to complete the installation.

[0025] The auxiliary stabilizing mechanism 4 includes a cylindrical groove 41 and a positioning threaded post 42. The top outer wall of the positioning platform 1 is symmetrically and penetratingly provided with the cylindrical groove 41. The positioning threaded post 42 is arranged inside the cylindrical groove 41. A nut block 43 is externally threaded and installed on the outer thread of the positioning threaded post 42. The bottom outer wall of the nut block 43 is attached to the top outer wall of the positioning platform 1. A connecting line 44 is arranged on the bottom outer wall of the positioning threaded post 42. A counterweight 45 is arranged at the bottom of the connecting line 44. The cylindrical groove 41 and the positioning threaded post 42 are slidably installed; when it is necessary to install the counterweight 45 into the device, first, the positioning threaded post 42 needs to be passed through the cylindrical groove 41 from bottom to top, and then the nut block 43 is screwed onto the outer thread of the positioning threaded post 42 from top to bottom. Thus, the installation process of the positioning threaded post 42 is completed, and then the installation of the connecting line 44 and the counterweight 45 is completed.

[0026] The reinforcement and support mechanism 5 includes a limit threaded groove 51 and a ground nail 53. The ground nail 53 is attached to the bottom outer wall of the support foot 2. The limit threaded groove 51 is opened on the bottom outer wall of the support foot 2. A limit threaded post 52 is internally threaded and installed in the limit threaded groove 51. The bottom outer wall of the limit threaded post 52 is connected to the top outer wall of the ground nail 53; when the whole device needs to be installed on the ground after moving to the designated position, at this time, the ground nail 53 will first contact the ground and be inserted into the soil layer, so as to play an effect of reinforcing and supporting the whole device. The setting of the limit threaded groove 51 and the limit threaded post 52 here makes the ground nail 53 a detachable design, so that the ground nail 53 can be removed first during the transportation of the device and then assembled when reaching the construction site, thereby enhancing the overall safety of the device.

[0027] When the utility model is in use, when the whole device needs to be installed on the ground after moving to the designated position, at this time, the ground nail 53 will first contact the ground and be inserted into the soil layer, so as to play an effect of reinforcing and supporting the whole device. The setting of the limit threaded groove 51 and the limit threaded post 52 here makes the ground nail 53 a detachable design, so that the ground nail 53 can be removed first during the transportation of the device and then assembled when reaching the construction site, thereby enhancing the overall safety of the device. Then, when the counterweight 45 is installed into the device, first, the positioning threaded post 42 needs to be passed through the cylindrical groove 41 from bottom to top, and then the nut block 43 is screwed onto the outer thread of the positioning threaded post 42 from top to bottom. Thus, the installation process of the positioning threaded post 42 is completed, and then the installation of the connecting line 44 and the counterweight 45 is completed. Then, the counterweight 45 hangs down naturally;

[0028] The positioning groove 33 is set in a wavy shape here so that the wavy pile can be positioned through this positioning groove 33 during installation and inserted one by one into the formation. The positioning groove 33 needs to be specially customized and grooved according to the installed wavy pile. When it is necessary to replace different guide plates 32, first, the fastening bolt 38 needs to be completely screwed out from the inside of the first thread groove 35, so that the positioning block 34 changes from the locked state to the active state. Then, the guide plate 32 together with the positioning block 34 can be directly taken out from the inside of the positioning platform 1. When installing a new guide plate 32, only need to adjust the guide plate 32 to the appropriate position and then push the positioning block 34 on its side into the positioning slot 36 at the corresponding position. When the positioning block 34 moves to the bottom end of the positioning slot 36, the first thread groove 35 and the second thread groove 37 are in a corresponding and fitting state. Then, directly pass the fastening bolt 38 through the first thread groove 35 and screw it to the bottom end of the second thread groove 37 to complete the installation.

[0029] In addition, it should be understood that although this specification is described according to the embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A wave pile positioning and guiding frame, characterized in that It includes a positioning platform (1) and support feet (2): On the outer wall of the side of the positioning platform (1), two groups of support feet (2) are symmetrically arranged. Inside the positioning platform (1), a positioning and guiding mechanism (3) is provided. On the side of the positioning and guiding mechanism (3), an auxiliary stabilizing mechanism (4) is provided. Below the auxiliary stabilizing mechanism (4), a reinforcement and support mechanism (5) is provided; The positioning and guiding mechanism (3) includes a placement groove (31), a guiding plate (32), positioning grooves (33), positioning blocks (34), first threaded grooves (35), positioning card slots (36), second threaded grooves (37), and fastening bolts (38). On the top outer wall of the positioning platform (1), a placement groove (31) is penetrated and opened. Inside the placement groove (31), a guiding plate (32) is provided. On the top outer wall of the guiding plate (32), positioning grooves (33) are penetrated and opened at equal intervals, and the positioning grooves (33) are arranged in a wavy shape. On the outer walls of both sides of the guiding plate (32) at the top position, two groups of positioning blocks (34) are symmetrically arranged. On the top outer wall of the positioning block (34), a first threaded groove (35) is penetrated and opened. On the top outer wall of the positioning platform (1) at the position of the placement groove (31), two groups of positioning card slots (36) are symmetrically opened. The positioning block (34) and the positioning card slot (36) are snap-fitted. On the top outer wall of the positioning platform (1) at the position of the positioning card slot (36), a second threaded groove (37) is correspondingly opened. The first threaded groove (35) and the second threaded groove (37) are threadedly installed with the fastening bolt (38).

2. The wave pile positioning and guiding frame according to claim 1, characterized in that: The auxiliary stabilizing mechanism (4) includes a cylindrical groove (41) and a positioning threaded post (42). On the top outer wall of the positioning platform (1), cylindrical grooves (41) are symmetrically penetrated and opened. Inside the cylindrical groove (41), a positioning threaded post (42) is provided.

3. The wave pile positioning and guiding frame according to claim 2, wherein: On the outer thread of the positioning threaded post (42), a nut block (43) is threadedly installed. The bottom outer wall of the nut block (43) is in contact with the top outer wall of the positioning platform (1).

4. A wave pile positioning and guiding frame according to claim 3, characterized in that: On the bottom outer wall of the positioning threaded post (42), a connecting line (44) is provided. At the bottom of the connecting line (44), a counterweight block (45) is provided.

5. The wave pile positioning and guiding frame according to claim 4, wherein: The cylindrical groove (41) and the positioning threaded post (42) are slidably installed.

6. The wave pile positioning and guiding frame according to claim 1, wherein: The reinforcement and support mechanism (5) includes a limit threaded groove (51) and a ground nail (53). On the bottom outer wall of the support foot (2), a ground nail (53) is attached. On the bottom outer wall of the support foot (2), a limit threaded groove (51) is opened.

7. A wave pile positioning and guiding frame according to claim 6, characterized in that: Inside the limit threaded groove (51), a limit threaded post (52) is threadedly installed. The bottom outer wall of the limit threaded post (52) is connected to the top outer wall of the ground nail (53).