Whole-process intelligent forming system in cast-in-place pile

By designing the entire process intelligent forming system in the cast-injected pile, using structures such as rotating motors and springs to achieve rapid installation and all-round inspection of the detection components, the inefficiency problem caused by the complex installation of the detection device in the prior art is solved, and the detection efficiency and reliability are improved.

CN223269205UActive Publication Date: 2025-08-26TAIXING ENG CONSTR SUPERVISION CO LTD
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Patent Information

Application Number
CN202422571020.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-08-26
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The installation and disassembly of existing cast-injected pile inspection devices is complex, and it consumes high labor and time costs, resulting in low detection efficiency and increasing project time costs.

Method used

A full-process intelligent forming system in the cast-in-fill pile is adopted, including detection components, adjustment components, installation components and connection components. The rotating motor, pulling spring and limiting rod are used to achieve rapid installation and disassembly of the detection components, and the rotating motor drives the rotation of the detection components for all-round inspection.

Benefits of technology

It improves inspection efficiency, reduces waste of manpower and time, ensures comprehensiveness and reliability of inspection, extends the service life of inspection components, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a whole-process intelligent forming system in a cast-in-place pile, and relates to the technical field of constructional engineering detection, the whole-process intelligent forming system comprises a detection assembly and a cast-in-place pile, the top of the detection assembly is provided with an adjusting assembly, the top of the adjusting assembly is provided with a mounting assembly, and the side surface of the mounting assembly is provided with a connecting assembly; the detection assembly comprises a camera and an imaging probe, and the mounting assembly comprises a mounting block. The installation block is installed in the installation groove in a sliding mode, installation of the detection assembly is facilitated, then the limiting rod penetrates through the interior of the installation groove, limiting of the installation block is facilitated, elastic tension of the tension spring is utilized, then the baffle is driven to descend, one end of the installation block is plugged by the baffle, and the detection assembly is convenient to install. And the fixed rod is connected with one end of the baffle plate, so that one end of the fixed rod can be driven to penetrate through the interior of the limiting rod, the limiting stability of the detection assembly is ensured, and the detection assembly can be conveniently and rapidly mounted and dismounted.
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Description

Technical Field

[0001] The utility model relates to the technical field of construction engineering detection, in particular to a full-process intelligent forming system for cast-in-place piles. Background Art

[0002] In construction, cast-in-place piles are widely used as an important foundation. However, the quality of cast-in-place pile construction is directly related to the safety and stability of buildings. With the continuous development of engineering construction, the quality requirements for cast-in-place piles are becoming increasingly stringent. On the one hand, large-scale and complex engineering projects place higher demands on the bearing capacity and stability of cast-in-place piles. On the other hand, people's increasing attention to project quality requires more accurate, reliable, and rapid cast-in-place pile testing methods. At the same time, modern engineering construction focuses on energy conservation, environmental protection, and sustainable development, requiring cast-in-place pile testing methods to minimize environmental impact and waste of resources.

[0003] When inspecting cast-in-place piles, the existing inspection devices are relatively complicated to install and disassemble, requiring a lot of manpower and time, which can easily lead to reduced inspection efficiency and increase the time cost of the project. Summary of the Invention

[0004] The purpose of this utility model is to solve the problem in the prior art that the detection device is relatively complicated during installation and disassembly, requires a lot of manpower and time costs, easily leads to reduced detection efficiency, and thus increases the time cost of the project. A full-process intelligent forming system for cast-in-place piles is proposed.

[0005] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions: a full-process intelligent forming system for cast-in-place piles, comprising a detection component and a cast-in-place pile, an adjustment component is provided on the top of the detection component, a mounting component is provided on the top of the adjustment component, a connecting component is provided on the side of the mounting component, the detection component comprises a camera and an imaging probe, the mounting component comprises a mounting block, a mounting groove is provided on the outer side of the mounting block, a limiting rod is passed through the interior of the mounting groove, a connecting rod is provided on the top of the mounting groove, a fixing frame is provided on the side of the connecting rod, and a baffle is movably installed inside the fixing frame.

[0006] Preferably, the adjustment assembly includes a rotary motor, a first rotary seat is mounted on one end of the rotary motor, and the top of the rotary motor is connected to the bottom of the mounting block.

[0007] Preferably, a fixing rod is connected to the side surface of the baffle, one end of the fixing rod passes through the interior of the connecting rod, and one end of the fixing rod passes through the interior of the limiting rod.

[0008] Preferably, a tension spring is symmetrically connected to the top of the connecting rod, and one end of the tension spring is connected to the inner side of the baffle.

[0009] Preferably, the connecting assembly includes a mounting piece, a clamping block is installed inside the mounting piece, and a second rotating seat is installed on the top of the clamping block.

[0010] Preferably, a motor is installed at one end of the second rotating seat, and one end of the connecting rod is installed on the outside of the second rotating seat.

[0011] Compared with the prior art, the advantages and positive effects of the present invention are:

[0012] The utility model discloses that the installation block is slidably mounted on the inside of the installation slot, and the limit rod is then used to pass through the inside of the installation slot, which is conducive to limiting the installation block and ensuring the stability and reliability of the installation of the installation block. By utilizing the elastic tension of the tension spring, it is conducive to driving the baffle to move downward so that the baffle blocks one end of the installation block, and the fixing rod is connected to one end of the baffle, which is conducive to driving one end of the fixing rod to pass through the inside of the limit rod, ensuring the stability of the detection component limitation. The operation is convenient and fast, and it is convenient to quickly install and disassemble the detection component, reducing the manpower and time waste caused by the cumbersome installation and disassembly process, thereby improving work efficiency, and at the same time facilitating the maintenance and inspection of the detection component, reducing the maintenance and inspection cost of the detection component, and thus extending the service life of the detection component.

[0013] 2. In the present invention, the rotating motor is driven by the first rotating seat to rotate, which is conducive to driving the detection component to rotate, so that the detection component can effectively detect the interior of the bored pile, thereby increasing the detection range, and is conducive to comprehensive detection of the interior of the bored pile, avoiding the occurrence of detection blind spots, and is conducive to completing comprehensive detection at one time, reducing the repeated detection work required due to incomplete detection, saving detection time, and thus improving detection efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 The utility model provides a three-dimensional structural diagram of a full-process intelligent forming system for cast-in-place piles;

[0015] Figure 2 The utility model proposes a partial expansion structure diagram of a full-process intelligent forming system for cast-in-place piles;

[0016] Figure 3 The utility model proposes a schematic diagram of the exploded structure of the installation components of a full-process intelligent forming system for cast-in-place piles;

[0017] Figure 4The present invention provides a partial structural diagram of a full-process intelligent forming system for cast-in-place piles.

[0018] Legend: 1. Detection component; 101. Camera; 102. Imaging probe; 2. Adjustment component; 201. Rotating motor; 202. First rotating seat; 3. Mounting component; 301. Mounting block; 302. Mounting slot; 303. Limit rod; 304. Fixing bracket; 305. Baffle; 306. Tension spring; 307. Fixing rod; 4. Connection component; 401. Mounting part; 402. Clamping block; 403. Motor; 404. Second rotating seat; 405. Connecting rod; 5. Cast-in-place pile. DETAILED DESCRIPTION

[0019] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below with reference to the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.

[0020] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0021] Example 1: Figures 1-4 As shown, the utility model provides a technical solution: a full-process intelligent forming system for cast-in-place piles, including a detection component 1 and a cast-in-place pile 5, an adjustment component 2 is provided on the top of the detection component 1, a mounting component 3 is provided on the top of the adjustment component 2, a connection component 4 is provided on the side of the mounting component 3, the detection component 1 includes a camera 101 and an imaging probe 102, the mounting component 3 includes a mounting block 301, a mounting groove 302 is installed on the outer side of the mounting block 301, and the interior of the mounting groove 302 is penetrated by The limiting rod 303 and the connecting rod 405 are installed on the top of the mounting groove 302, and the fixing frame 304 is installed on the side of the connecting rod 405. The baffle 305 is movably installed inside the fixing frame 304, and the side of the baffle 305 is connected to the fixing rod 307. One end of the fixing rod 307 passes through the interior of the connecting rod 405, and one end of the fixing rod 307 passes through the interior of the limiting rod 303. The top of the connecting rod 405 is symmetrically connected with a tension spring 306, and one end of the tension spring 306 is connected to the inner side of the baffle 305.

[0022] The cam 303 of the embodiment of the present invention is convenient for the installation of the detection component 1 by sliding the mounting block 301 into the mounting groove 302, and then the limiting rod 303 is used to pass through the mounting groove 302, which is conducive to limiting the mounting block 301 and ensuring the stability and reliability of the installation of the mounting block 301. By utilizing the elastic tension of the tension spring 306, it is conducive to driving the baffle 305 to move downward, so that the baffle 305 blocks one end of the mounting block 301, and the fixing rod 307 is connected to one end of the baffle 305, which is conducive to driving one end of the fixing rod 307 to pass through the interior of the limiting rod 303, ensuring the stability of the limit of the detection component 1. The operation is convenient and fast, which facilitates the rapid installation and disassembly of the detection component 1, reduces the manpower and time waste caused by the cumbersome installation and disassembly process, thereby improving work efficiency, and at the same time facilitates the maintenance and inspection of the detection component 1, reduces the maintenance and inspection cost of the detection component 1, and thereby prolongs the service life of the detection component 1.

[0023] Example 2: Figures 1-4 As shown, the adjustment component 2 includes a rotating motor 201, a first rotating seat 202 is installed at one end of the rotating motor 201, the top of the rotating motor 201 is connected to the bottom of the mounting block 301, the connecting component 4 includes a mounting member 401, a clamping block 402 is installed inside the mounting member 401, a second rotating seat 404 is installed on the top of the clamping block 402, a motor 403 is installed at one end of the second rotating seat 404, and one end of the connecting rod 405 is installed on the outside of the second rotating seat 404.

[0024] In this embodiment, when the detection component 1 is performing detection work, the rotating motor 201 is electrically driven to rotate by the first rotating seat 202, which is conducive to driving the detection component 1 to rotate, so that the detection component 1 can effectively detect the interior of the bored pile 5, thereby improving the detection range, and is conducive to comprehensive detection of the interior of the bored pile 5, avoiding the occurrence of detection blind spots, and at the same time is conducive to completing comprehensive detection at one time, reducing repeated detection work required due to incomplete detection, saving detection time, and thus improving detection efficiency. By clamping the mounting block 402 inside the mounting part 401, it is conducive to the installation and disassembly of the connecting component 4, and facilitates the maintenance of the connecting component 4. The second rotating seat 404 is electrically driven to rotate by the motor 403, which is convenient for driving the connecting rod 405 to flip, and avoids the connecting component 4 affecting the construction inside the bored pile 5 when no detection is required.

[0025] The working principle of this embodiment is as follows: when in use, first the clamping block 402 is clamped inside the mounting member 401, which is conducive to the installation of the connecting component 4, and then the motor 403 electrically drives the second rotating seat 404 to rotate, thereby facilitating the turning of the connecting rod 405. During detection, the first rotating seat 202 electrically drives the rotating motor 201 to rotate, thereby facilitating the rotation of the detection component 1, so that the detection component 1 can effectively detect the interior of the cast-in-place pile 5, thereby increasing the detection range and facilitating a comprehensive detection of the interior of the cast-in-place pile 5. By sliding the mounting block 301 The inside of the installation groove 302 facilitates the installation of the detection component 1. Subsequently, the limiting rod 303 is used to pass through the inside of the installation groove 302, which is conducive to limiting the installation block 301. The elastic tension of the tension spring 306 is used to drive the baffle 305 to descend, so that the baffle 305 blocks one end of the installation block 301. The fixing rod 307 is connected to one end of the baffle 305, which is conducive to driving one end of the fixing rod 307 to pass through the inside of the limiting rod 303, ensuring the stability of the limitation of the detection component 1 and facilitating the rapid installation and disassembly of the detection component 1.

[0026] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. A full-process intelligent forming system for bored piles, comprising a detection component (1) and a bored pile (5), characterized in that: The detection component (1) is provided with an adjustment component (2) on the top, the adjustment component (2) is provided with a mounting component (3), the side of the mounting component (3) is provided with a connection component (4), the detection component (1) includes a camera (101) and an imaging probe (102), the mounting component (3) includes a mounting block (301), the outer side of the mounting block (301) is provided with a mounting groove (302), the interior of the mounting groove (302) passes through a limiting rod (303), the top of the mounting groove (302) is provided with a connecting rod (405), the side of the connecting rod (405) is provided with a fixing frame (304), and the interior of the fixing frame (304) is movably provided with a baffle (305).

2. The whole-process intelligent forming system for cast-in-place piles according to claim 1 is characterized in that: The adjustment assembly (2) comprises a rotating motor (201), one end of the rotating motor (201) is mounted with a first rotating seat (202), and the top of the rotating motor (201) is connected to the bottom of the mounting block (301).

3. The whole-process intelligent forming system for cast-in-place piles according to claim 1 is characterized in that: A fixing rod (307) is connected to the side of the baffle (305), one end of the fixing rod (307) passes through the interior of the connecting rod (405), and one end of the fixing rod (307) passes through the interior of the limiting rod (303).

4. The whole-process intelligent forming system for cast-in-place piles according to claim 1 is characterized in that: A tension spring (306) is symmetrically connected to the top of the connecting rod (405), and one end of the tension spring (306) is connected to the inner side of the baffle (305).

5. The whole-process intelligent forming system for cast-in-place piles according to claim 1 is characterized in that: The connecting assembly (4) comprises a mounting member (401), a clamping block (402) is mounted inside the mounting member (401), and a second rotating seat (404) is mounted on the top of the clamping block (402).

6. The whole-process intelligent forming system for cast-in-place piles according to claim 5 is characterized in that: One end of the second rotating seat (404) is mounted with a motor (403), and one end of the connecting rod (405) is mounted outside the second rotating seat (404).