Pile foundation reinforcing structure for building engineering construction

The construction pile foundation is reinforced and supported by the coordinated design of multiple components, which solves the problem of lack of reinforcement of the upper half of the pile foundation in the existing technology, and achieves the improvement of compressive and tensile properties and the improvement of construction efficiency.

CN223481826UActive Publication Date: 2025-10-28HARBIN ZEBIN PURIFICATION ENG CO LTD
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Patent Information

Application Number
CN202422942095.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-30
Publication Date
2025-10-28
Estimated Expiration
2034-11-30

AI Technical Summary

Technical Problem

The existing building pile foundation combined reinforcement structure lacks auxiliary reinforcement in the upper half, which makes the upper half of the pile foundation prone to cracks and has poor compressive and tensile properties, as well as low assembly and disassembly efficiency.

Method used

The design adopts a coordinated design of multiple components, including semi-circular gusset plates, vertical fixing plates, U-shaped base plates, connecting ears and rotating shafts, etc. The construction pile foundation is reinforced and supported through multiple nodes to prevent tilting and ensure the vertical state and integrity.

Benefits of technology

It enhances the compressive and tensile properties of the pile foundation, prevents tilting and cracks, and improves construction efficiency and the overall stability of the pile foundation.

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Abstract

A building engineering construction pile foundation reinforcing structure comprises a construction pile foundation, a semicircular buckle plate, a vertical fixing plate, a first connecting lug, a first rotating shaft, a U-shaped bottom plate, a strip-shaped splicing plate, a rectangular positioning block, a rotating clamping plate, a second connecting lug and a second rotating shaft, the inner side face of the vertical fixing plate is attached to the construction pile foundation, and the U-shaped bottom plate is arranged on the lower portion of the vertical fixing plate; the construction pile foundation is matched with the U-shaped bottom plate, the U-shaped bottom plate is arranged on the outer side of the construction pile foundation in a sleeving mode, the lower surfaces of the construction pile foundation and the U-shaped bottom plate are aligned, the first connecting lugs are connected with the vertical fixing plate, semicircular buckle plate side sleeves are arranged on the side faces of the semicircular buckle plates, the semicircular buckle plate side sleeves are attached to the first connecting lugs, and the first connecting lugs are symmetrically arranged at the upper ends and the lower ends of the semicircular buckle plate side sleeves. The semicircular buckle plate side sleeves are connected with the first connecting lugs through the first rotating shafts, the two first connecting lugs are distributed on the vertical fixing plate, the two semicircular buckle plates are symmetrically arranged on the two sides of the vertical fixing plate, and the inner side faces of the semicircular buckle plates are attached to a construction pile foundation.
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Description

Technical Field

[0001] This utility model relates to the field of building construction, and in particular to a pile foundation reinforcement structure for building construction. Background Technology

[0002] An existing patent (publication number: CN113026791A) proposes a combined reinforcement structure based on building pile foundations and its construction method, relating to the field of building equipment technology. It solves the problem that existing combined reinforcement structures often require manual assembly or disassembly of multiple reinforcement structures sequentially, resulting in low work efficiency. The combined reinforcement structure based on building pile foundations and its construction method include a base plate, a sliding plate, and a pressure plate. The base plate includes a pile foundation, and a through groove is formed in the middle of the top of the base plate, with a pile foundation disposed within the groove. However, this device only reinforces the lower half of the pile foundation, lacking an auxiliary reinforcement structure for the upper half, which easily leads to cracks and poor compressive and tensile strength in the upper half of the pile foundation. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a construction pile foundation reinforcement structure that uses the cooperation of multiple components to reinforce the entire construction pile foundation while preventing the construction pile foundation from tilting under inclined pressure. This device reinforces and supports the entire construction pile foundation through multiple nodes, ensuring the verticality and integrity of the construction pile foundation.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A construction pile foundation reinforcement structure includes a construction pile foundation, a semi-circular buckle plate, a vertical fixing plate, a first connecting ear, a first rotating shaft, a U-shaped base plate, a strip-shaped splicing plate, a rectangular positioning block, a rotating clamping plate, a second connecting ear, and a second rotating shaft. The inner side of the vertical fixing plate is in contact with the construction pile foundation. The lower part of the vertical fixing plate has a U-shaped base plate, which is adapted to the construction pile foundation. The U-shaped base plate is fitted onto the outer side of the construction pile foundation, and the lower surfaces of the construction pile foundation and the U-shaped base plate are aligned. The first connecting ear is connected to the vertical fixing plate. The side of the semi-circular buckle plate has a semi-circular buckle plate side sleeve, which is in contact with the first connecting ear. The first connecting ear is symmetrically arranged at the upper and lower ends of the semi-circular buckle plate side sleeve. The semi-circular buckle plate side sleeve is connected to the first connecting ear through the first rotating shaft. Two sets of first connecting ears are distributed on the vertical fixing plate, and two sets of semi-circular buckles are symmetrically arranged on both sides of the vertical fixing plate. The inner side of the semi-circular buckle plate is in contact with the construction pile foundation.

[0006] The semi-circular buckle plate has semi-circular buckle plate side plates, and the symmetrical semi-circular buckle plate side plates are attached to each other. The lower surface of the strip splicing plate is attached to the upper surface of the U-shaped base plate. The lower part of the strip splicing plate has a rectangular positioning block. A set of rectangular positioning blocks are distributed in the lower part of the strip splicing plate. The U-shaped base plate has a set of rectangular positioning holes. The rectangular positioning blocks are adapted to the rectangular positioning holes. The rectangular positioning blocks are inserted into the rectangular positioning holes and are aligned with the lower surface of the U-shaped base plate. Beneficial effects

[0007] 1. The lower part of the semi-circular buckle plate of this utility model is connected to the U-shaped base plate. The U-shaped base plate serves as the ground support for the device. The U-shaped base plate has an open structure, making it easy to fit onto the construction pile foundation. The large contact area between the U-shaped base plate and the ground enhances the compressive strength of the device's bottom. During use, the U-shaped base plate is fixed to the ground using multiple pins. In the reinforcement of construction pile foundations, this prevents the device from shifting position due to the tilting tendency of the construction pile foundation under pressure, ensuring the device's support function for the construction pile foundation. The side of the semi-circular buckle plate is connected to the first connecting ear via a first rotating shaft, connecting the side of the semi-circular buckle plate to the vertical fixing plate shaft. The two sets of symmetrical semi-circular buckle plates are designed as a rotatable structure, facilitating the installation of the device on the outside of the construction pile foundation and subsequent disassembly. Rectangular positioning holes are inserted into rectangular positioning blocks, allowing the strip-shaped splicing plate to be installed on the U-shaped base plate. This interlocking structure ensures the lateral position of the strip-shaped splicing plate and also facilitates its removal during later disassembly.

[0008] 2. The rotating clamping plate of this utility model is connected to the second connecting ear via a second rotating shaft, allowing the rotating clamping plate to be mounted on the strip-shaped splicing plate and rotatable. In use, the strip-shaped splicing plate is mounted on the U-shaped base plate, and the rotating clamping plate is rotated to insert the symmetrical semi-circular buckle side plates into the inner holes of the rotating clamping plate. The rotating clamping plate secures the multiple semi-circular buckles distributed vertically to the outside of the construction pile foundation. This prevents the semi-circular buckles from rotating and opening during the reinforcement of construction pile foundations, ensuring that the inner side of the semi-circular buckles is tightly attached to the construction pile foundation, thereby ensuring the reinforcement of the construction pile foundation by the multiple semi-circular buckles. When the construction pile foundation is under stress, it may tilt and crack. Rectangular magnetic blocks are installed and fixed on the strip splicing plate. The rectangular magnetic blocks magnetically attract the rotating plate, preventing the symmetrical semi-circular buckle side plates from sliding out of the inner hole of the rotating plate when the plate is rotated during use. Through the cooperation of multiple components, the device can not only reinforce the entire construction pile foundation itself, but also prevent the construction pile foundation from tilting when subjected to tilting pressure. This device reinforces and supports the entire construction pile foundation through multiple nodes, ensuring the verticality and integrity of the construction pile foundation. Attached Figure Description

[0009] Figure 1 This is a top-view axonometric drawing of a pile foundation reinforcement structure for building construction according to the present invention.

[0010] Figure 2 This is a bottom-view axonometric drawing of a pile foundation reinforcement structure for building construction according to the present invention.

[0011] Figure 3 This is a front view of a pile foundation reinforcement structure for building construction according to the present invention.

[0012] Figure 4 This is a top view of a pile foundation reinforcement structure for building construction according to the present invention. Detailed Implementation

[0013] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:

[0014] Example 1:

[0015] A construction pile foundation reinforcement structure includes a construction pile foundation 01, a semi-circular fastener plate 02, a vertical fixing plate 04, a first connecting lug 06, a first rotating shaft 07, a U-shaped base plate 08, a strip-shaped splicing plate 09, a rectangular positioning block 10, a rotating clamping plate 12, a second connecting lug 15, and a second rotating shaft 16. The inner side of the vertical fixing plate 04 is in contact with the construction pile foundation 01, and the lower part of the vertical fixing plate 04 has a U-shaped base plate 08. The construction pile foundation 01 and the U-shaped base plate 08 are connected. The U-shaped base plate 08 is fitted onto the outside of the construction pile 01, with the lower surfaces of the construction pile 01 and the U-shaped base plate 08 aligned. The U-shaped base plate 08 serves as the ground support for the device. Its open structure facilitates its fitting onto the construction pile 01, and the large contact area between the U-shaped base plate 08 and the ground enhances the compressive strength of the device's bottom. During use, the U-shaped base plate 08 is fixed to the ground using multiple pins. In the reinforcement of construction pile foundations, the device is designed to prevent displacement due to the tilting tendency of construction pile foundation 01 under pressure, thus ensuring the support of the device for the construction pile foundation 01. Connecting lug 06 connects to the vertical fixing plate 04. The side of the semi-circular buckle plate 02 has a semi-circular buckle plate side sleeve 05, which fits into the connecting lug 06. The connecting lug 06 is symmetrically arranged at both ends of the semi-circular buckle plate side sleeve 05. The semi-circular buckle plate side sleeve 05 is connected to the connecting lug 06 via a rotating shaft 07, axially connecting the side of the semi-circular buckle plate 02 to the vertical fixing plate 04. The two sets of symmetrical semi-circular buckle plates 02 are designed as a rotatable structure to facilitate the installation and subsequent disassembly of the device on the outside of the construction pile foundation 01. The two sets of connecting lugs 06 are distributed on the vertical fixing plate 04, and the two sets of semi-circular buckle plates 02 are symmetrically arranged on both sides of the vertical fixing plate 04. The inner side of the semi-circular buckle plate 02 fits into the construction pile foundation 01.

[0016] Example 2:

[0017] The semi-circular snap-on plate 02 of this utility model has a semi-circular snap-on plate side plate 03, and the symmetrical semi-circular snap-on plate side plates 03 are attached together. The lower surface of the strip splicing plate 09 is attached to the upper surface of the U-shaped base plate 08. The lower part of the strip splicing plate 09 has a rectangular positioning block 10. A set of rectangular positioning blocks 10 are distributed in the lower part of the strip splicing plate 09. The U-shaped base plate 08 has a set of rectangular positioning holes 11. The rectangular positioning blocks 10 are adapted to the rectangular positioning holes 11. The rectangular positioning blocks 10 are inserted into the rectangular positioning holes 11 and aligned with the lower surface of the U-shaped base plate 08, so that the strip splicing plate 09 is installed on the U-shaped base plate 08. This plug-in structure ensures the lateral position of the strip splicing plate 09 and also facilitates the removal of the strip splicing plate 09 during later disassembly.

[0018] Example 3:

[0019] The strip-shaped splicing plate 09 of this utility model is attached to the side of the construction pile foundation 01. The upper part of the strip-shaped splicing plate 09 is connected to the semi-circular buckle side sleeve 05. The lower part of the rotating clamping plate 12 has a rotating clamping plate lower sleeve 14. The rotating clamping plate lower sleeve 14 is attached to the second connecting ear 15. The second connecting ear 15 is symmetrically arranged on both sides of the rotating clamping plate lower sleeve 14. The rotating clamping plate lower sleeve 14 is connected to the symmetrical second connecting ear 15 through the second rotating shaft 16, so that the rotating clamping plate 12 is installed on the strip-shaped splicing plate 09 and can rotate.

[0020] Example 4:

[0021] The rotating clamping plate 12 of this utility model has a rotating clamping plate inner hole 13. Symmetrical semi-circular buckle plate side plates 03 are adapted to the rotating clamping plate inner hole 13 and inserted into the rotating clamping plate inner hole 13. In use, the strip-shaped splicing plate 09 is installed on the U-shaped base plate 08, and the rotating clamping plate 12 is rotated to insert the symmetrical semi-circular buckle plate side plates 03 into the rotating clamping plate inner hole 13. The rotating clamping plate 12 secures the multiple vertically distributed semi-circular buckle plates 02 to the outside of the construction pile foundation 01. This prevents the semi-circular buckle plates 02 from rotating and opening during the reinforcement of the construction pile foundation, ensuring that the inner side of the semi-circular buckle plates 02 is tightly attached to the construction pile foundation 01, thereby ensuring the reinforcement of the construction pile foundation 01 by the multiple semi-circular buckle plates 02. When subjected to force, the rectangular magnetic block 17 tilts and cracks form on its own. The lower part of the rectangular magnetic block 17 is connected to the strip splicing plate 09. The side of the rectangular magnetic block 17 is attached to the rotating plate 12. The rectangular magnetic block 17 is installed and fixed on the strip splicing plate 09. The rectangular magnetic block 17 magnetically attracts the rotating plate 12, preventing the symmetrical semi-circular buckle side plate 03 from sliding out of the inner hole 13 of the rotating plate when the rotating plate 12 is rotated during use. Through the cooperation of multiple components, the device can strengthen the entire construction pile foundation 01 itself and prevent the construction pile foundation 01 from tilting when subjected to tilting pressure during the reinforcement of the construction pile foundation in the building project. This device strengthens and supports the entire construction pile foundation through multiple nodes, ensuring the vertical state of the construction pile foundation 01 and its own integrity.

[0022] Example 5:

[0023] The installation steps of this utility model are as follows: First, connect the rectangular magnetic block 17 to the strip splicing plate 09, connect the rectangular positioning block 10 to the strip splicing plate 09, connect the second connecting ear 15 to the strip splicing plate 09, connect the rotating clamping plate lower sleeve 14 to the second connecting ear 15 through the second rotating shaft 16, connect the lower part of the vertical fixing plate 04 to the U-shaped base plate 08, connect the first connecting ear 06 to the vertical fixing plate 04, and connect the semi-circular buckle plate side sleeve 05 through the first rotating shaft 07. Connect the first connecting ear 06, put the U-shaped base plate 08 on the construction pile foundation 01, so that the inner side of the vertical fixing plate 04 is in contact with the construction pile foundation 01, and rotate the semi-circular buckle plate 02 so that the inner side of the semi-circular buckle plate 02 is in contact with the construction pile foundation 01. Insert the rectangular positioning block 10 into the rectangular positioning hole 11, rotate the rotating clamping plate 12 so that the symmetrical semi-circular buckle plate side plate 03 is inserted into the inner hole 13 of the rotating clamping plate, so that the rectangular magnetic block 17 is in contact with the rotating clamping plate 12.

[0024] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A pile foundation reinforcement structure for building construction, characterized in that: The structure includes a construction pile foundation (01), a semi-circular fastener plate (02), a vertical fixing plate (04), a first connecting lug (06), a first rotating shaft (07), a U-shaped base plate (08), a strip-shaped splicing plate (09), a rectangular positioning block (10), a rotating clamping plate (12), a second connecting lug (15), and a second rotating shaft (16). The inner side of the vertical fixing plate (04) is in contact with the construction pile foundation (01). The lower part of the vertical fixing plate (04) has a U-shaped base plate (08). The construction pile foundation (01) is adapted to the U-shaped base plate (08). The U-shaped base plate (08) is fitted on the outside of the construction pile foundation (01). The construction pile foundation (01) and the U-shaped base plate (08) are connected. 8) The lower surfaces are aligned, and the first connecting ear (06) is connected to the vertical fixing plate (04). The side of the semi-circular buckle plate (02) has a semi-circular buckle plate side sleeve (05). The semi-circular buckle plate side sleeve (05) is in contact with the first connecting ear (06). The first connecting ear (06) is symmetrically set at the upper and lower ends of the semi-circular buckle plate side sleeve (05). The semi-circular buckle plate side sleeve (05) is connected to the first connecting ear (06) through the first rotating shaft (07). The two sets of first connecting ears (06) are distributed on the vertical fixing plate (04). The two sets of semi-circular buckles (02) are symmetrically set on both sides of the vertical fixing plate (04). The inner side of the semi-circular buckle plate (02) is in contact with the construction pile foundation (01).

2. The pile foundation reinforcement structure for building construction according to claim 1, characterized in that: The semi-circular buckle plate (02) has a semi-circular buckle plate side plate (03), and the symmetrical semi-circular buckle plate side plates (03) are attached together. The lower surface of the strip splicing plate (09) is attached to the upper surface of the U-shaped base plate (08). The lower part of the strip splicing plate (09) has a rectangular positioning block (10). A set of rectangular positioning blocks (10) are distributed in the lower part of the strip splicing plate (09). The U-shaped base plate (08) has a set of rectangular positioning holes (11). The rectangular positioning blocks (10) are adapted to the rectangular positioning holes (11). The rectangular positioning blocks (10) are inserted into the rectangular positioning holes (11). The rectangular positioning blocks (10) are aligned with the lower surface of the U-shaped base plate (08).

3. The pile foundation reinforcement structure for building construction according to claim 2, characterized in that: The side of the strip-shaped splicing plate (09) is attached to the construction pile foundation (01). The upper part of the strip-shaped splicing plate (09) is connected to the semi-circular buckle side sleeve (05). The lower part of the rotating clamping plate (12) has a rotating clamping plate lower sleeve (14). The rotating clamping plate lower sleeve (14) is attached to the second connecting ear (15). The second connecting ear (15) is symmetrically arranged on both sides of the rotating clamping plate lower sleeve (14). The rotating clamping plate lower sleeve (14) is connected to the symmetrical second connecting ear (15) through the second rotating shaft (16).

4. The pile foundation reinforcement structure for building construction according to claim 2, characterized in that: The rotating plate (12) has a rotating plate inner hole (13), and the symmetrical semi-circular buckle side plate (03) is adapted to the rotating plate inner hole (13). The symmetrical semi-circular buckle side plate (03) is inserted into the rotating plate inner hole (13). The lower part of the rectangular magnetic block (17) is connected to the strip splicing plate (09), and the side of the rectangular magnetic block (17) is in contact with the rotating plate (12).

Citation Information

Patent Citations

  • Combined reinforcing structure based on building pile foundation and construction method of combined reinforcing structure

    CN113026791A