Rapid installation device for plastic concrete wall detection pipe

By designing a quick installation device including horizontal beams, vertical beams and diagonal supports, the problem that a single row of embedded pipes cannot meet the requirements of acoustic wave detection is solved. The stable installation and flexible adjustment of double rows of detection pipes are achieved, ensuring the continuity of detection effect of plastic concrete walls.

CN223458859UActive Publication Date: 2025-10-21中国水利水电第七工程局有限公司 +1
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Patent Information

Application Number
CN202422995431.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-21
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

The single-row arrangement of embedded pipes in the prior art cannot meet the double-row cross-distribution requirement of acoustic wave detection, resulting in the inability to effectively perform continuity detection of plastic concrete walls.

Method used

A quick installation device consisting of two parallel horizontal beams and vertical beams was designed. By welding oblique support rods to form a triangular structure, combined with top and bottom fasteners, the double-row detection tubes can be stably installed to meet the needs of acoustic wave detection.

Benefits of technology

The efficient and stable installation of double-row detection tubes is achieved, ensuring the accuracy of acoustic wave detection. The device has a simple structure and can flexibly adjust the distance between the detection tubes according to the actual slot size, thereby improving the practicality and accuracy of detection.

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Abstract

A rapid installation device for a plastic concrete wall detection pipe belongs to the technical field of installation of detection materials of underground anti-seepage plastic concrete walls, and comprises two cross beams arranged in parallel, at least two vertical beams are uniformly connected between the two cross beams, four corners of the top of each cross beam are respectively provided with a top fixing buckle, and the top of each cross beam is provided with a bottom fixing buckle. Two rows of parallel bottom connecting assemblies are arranged at the bottom of the cross beam at equal intervals, the front row of bottom connecting assemblies and the rear row of bottom connecting assemblies comprise three bottom fixing buckles and two bottom fixing buckles which are arranged at equal intervals respectively, and grouting embedded pipes are connected to the lower portions of the five bottom fixing buckles respectively. The bottom fixing buckles arranged in double rows can meet the requirement for continuous detection of the plastic concrete wall, the device can be flexibly modified into any size according to the size of an actual groove section, detection pipes arranged at various intervals are arranged below the device, and practicability is high.
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Description

Technical Field

[0001] The utility model belongs to the technical field of detection material installation for underground anti-seepage plastic concrete walls and relates to a detection tube installation device, in particular to a plastic concrete wall detection tube rapid installation device. Background Art

[0002] Existing domestic technology for testing the continuity of plastic, impermeable concrete walls is relatively scarce. However, given that plastic concrete is commonly used in foreign countries, impermeable walls require not only water injection testing to test permeability but also the use of acoustic wave testing equipment to test the continuity of the concrete wall to verify the quality of the finished wall. Therefore, before pouring the plastic concrete, it is necessary to implement a pre-embedded measure that meets the testing requirements. Once the finished wall meets the required strength requirements, the acoustic wave tester can accurately measure the required waveform data to achieve the quality test of the finished wall.

[0003] In the prior art, pre-buried pipes are typically arranged in a single row on one side for subsequent wall curtain grouting, whereas acoustic testing requires double rows of cross-distributed holes. Therefore, to meet this requirement, the present invention proposes a device for quickly positioning and installing plastic concrete wall inspection pipes. Utility Model Content

[0004] In view of the above-mentioned shortcomings of the prior art, the purpose of the present invention is to provide a rapid installation device for plastic concrete wall detection pipes, which is used to solve the technical problem that the single-row arrangement of embedded pipes in the prior art cannot effectively realize subsequent acoustic wave detection.

[0005] In order to achieve the above-mentioned purpose and other related purposes, the utility model provides a quick installation device for plastic concrete wall detection tubes, comprising two parallel beams, at least two vertical beams are evenly connected between the two beams, a top buckle is respectively provided at the four corners of the top of the beam, and two front and rear rows of parallel bottom connection components are arranged at the bottom of the beam, and the front and rear rows of bottom connection components respectively include 3 and 2 equidistant bottom buckles, and the 5 bottom buckles are respectively connected to the grouting embedded pipes.

[0006] Preferably, in any of the above solutions, an oblique support rod is welded between the horizontal beam and the vertical beam, and the oblique support rod is arranged in a triangle with the horizontal beam and the vertical beam.

[0007] Preferably, in any of the above solutions, the horizontal beam is an I-beam, and both ends of the vertical beam are cut into a "convex" shape that matches the concave part of the I-beam.

[0008] Preferably, in any of the above solutions, the four top buckles are all arranged 8 to 12 cm away from the edge of the beam.

[0009] Preferably in any of the above solutions, the top fixing buckle and the bottom fixing buckle are both made of steel plates into an arch-shaped round hole fixing buckle.

[0010] Preferably in any of the above solutions, the grouting embedded pipe comprises a detection pipe, a pipe hole pin is arranged above the detection pipe, and a closed bottom cover is welded at the bottom of the detection pipe.

[0011] Preferably in any of the above solutions, the grouting embedded pipe is formed by connecting at least two detection pipes, a pipe hole pin is arranged above each of the detection pipes, and a closed bottom cover is welded at the bottom of the lowermost detection pipe.

[0012] Preferably in any of the above solutions, the bottom fixing buckle is connected with the pipe hole pin through a steel rope, the closed bottom cover is made of a circular shower head of a steel plate, and the diameter of the closed bottom cover is equal to the outer diameter of the detection pipe.

[0013] Preferably in any of the above solutions, the two adjacent detection pipes are fixedly connected by at least three straight connecting ribs arranged uniformly.

[0014] Preferably in any of the above solutions, the two adjacent grouting embedded pipes are fixedly connected with a stabilizing frame, the stabilizing frame is arranged in a row every 8-12 m on the grouting embedded pipe, and the stabilizing frame is in a shape of Π.

[0015] As described above, the plastic concrete wall detection pipe fast installation device has the following beneficial effects:

[0016] 1. In the utility model, the double-row arranged bottom fixing buckle and the stabilizing frame used in the process of arranging the detection pipe can efficiently and stably install the double-row detection pipe, the structure is simple, the detection pipe with various spacing can be arranged according to the size of the actual groove section, and the practicability is high.

[0017] 2. In the utility model, the double-row arranged bottom fixing buckle can meet the continuous detection requirement of the plastic concrete wall.

[0018] 3. In the utility model, the closed bottom cover can prevent the silt from entering the detection pipe and affecting the detection of the subsequent plastic concrete wall, and the accuracy of the detection is ensured. DRAWINGS

[0019] Figure 1 The three views of the utility model are shown.

[0020] Figure 2 The working state schematic view of the utility model is shown.

[0021] Figure 3 The side view of Figure 2 is shown.

[0022] Figure 4 is shown as Figure 2 is shown as a sectional view taken along A-A.

[0023] Figure 5 is shown as Figure 2 is shown as a sectional view taken along B-B.

[0024] Figure 6 is shown as Figure 2 is shown as a sectional view taken along C-C.

[0025] Figure 7 is shown as a connection diagram of the detection tube in the utility model.

[0026] Figure 8 is shown as a structure diagram of the stable frame in the utility model.

[0027] Element number explanation

[0028] 1 - crossbeam; 2 - vertical beam; 3 - top fixing buckle; 4 - bottom fixing buckle; 5 - inclined strut; 6 - detection tube; 7 - straight connecting rib; 8 - pipe hole pin; 9 - stable frame; 10 - closed bottom cover. DETAILED DESCRIPTION

[0029] The implementation of the utility model will be illustrated by specific embodiments below, and other advantages and effects of the utility model can be easily understood by those skilled in the art from the content disclosed in the specification.

[0030] Please refer to Figures 1 to 8 It should be understood that the structures, proportions, sizes, etc. shown in the drawings attached to the specification are merely used to cooperate with the content disclosed in the specification for understanding and reading by those skilled in the art, and are not used to limit the limiting conditions that can be implemented by the utility model, so they do not have technical substantive significance. Any modification of structure, change of proportional relationship or adjustment of size, without affecting the effects that can be produced by the utility model and the purposes that can be achieved, should still fall within the scope covered by the technical content disclosed by the utility model. At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" in the specification are merely for the convenience of clear understanding of the description, and are not used to limit the scope of implementation of the utility model. The change or adjustment of the relative relationship, without substantial change of technical content, is also regarded as the scope of implementation of the utility model.

[0031] Please refer to Figures 1-8The utility model provides a kind of plastic concrete wall detection pipe quick installation device, including two parallelly arranged cross beams 1, at least two vertical beams 2 are evenly connected between the two cross beams 1, the top four corners of the cross beam 1 are equipped with one top fixed buckle 3 respectively, the bottom of the cross beam 1 is arranged with two rows of parallelly arranged bottom connecting components, and the bottom connecting components of two rows are respectively included 3 and 2 equidistantly arranged bottom fixed buckles 4, 5 bottom fixed buckles 4 below are connected grouting embedded pipe respectively.

[0032] In use, to solve the problem that the embedded pipe in the prior art is only a conventional one-side single-row arrangement for subsequent curtain grouting under wall, while acoustic wave detection requires double-row cross distribution of hole sites and cannot be quickly and accurately detected, the embodiment provides a high-efficiency and integral form template combination and fixing device, which can quickly and accurately vertically install double-row cross detection pipes 6 meeting actual spacing requirements, to effectively realize subsequent acoustic wave detection. Specifically, the device includes two parallelly arranged cross beams 1, and the two cross beams 1 are fixedly connected by three equidistantly arranged vertical beams 2 and the cross beams 1. One top fixed buckle 3 is arranged at each of the top four corners of the cross beam 1, for hoisting by a crane, and five bottom fixed buckles 4 are arranged at the bottom of the cross beam 1, for hoisting grouting embedded pipes composed of the detection pipes 6. The five bottom fixed buckles 4 are arranged in two rows in front and back, with three in the front row and two in the back row, so that the two grouting embedded pipes in the back row after connection and the three grouting embedded pipes in the front row form a triangular cross distribution, with acoustic wave detection conditions. The entire embodiment can efficiently and stably install double-row detection pipes 6, with a simple structure and can be flexibly modified into any size according to the size of an actual slot section, with various spacing distribution detection pipes 6 arranged thereunder, and high practicability.

[0033] In the embodiment, the cross beams 1 and the vertical beams 2 are both made of No. 15 I-shaped steel, two parallelly arranged cross beams 1 are 5.2 m long, three vertical beams 2 that are 0.6 m long are welded in the middle of the two cross beams 1, and the spacing between the three vertical beams 2 is 2.5 m.

[0034] In the embodiment, the top fixed buckles 3 are made of 20 mm steel plates into arch-shaped round hole fixed buckles, the length of the top fixed buckles 3 is 15 cm, and the height is 12 cm. The bottom fixed buckles 4 are made of 10 mm steel plates into arch-shaped round hole fixed buckles, the length of the bottom fixed buckles 4 is 12 cm, and the height is 9 cm.

[0035] In the embodiment, taking a 6.8 m second-stage slot as an example, the grouting embedded pipes are divided into two rows, with three in the front row and two in the back row, the spacing between the two rows of grouting embedded pipes is 1.25 m, and the spacing between the two adjacent grouting embedded pipes in each row of grouting embedded pipes is 2.5 m. The two grouting embedded pipes in the back row and the three grouting embedded pipes in the front row form a triangular cross distribution and have detection conditions. In practice, the length interval and arrangement of the detection pipes 6 arranged thereunder can be arranged in corresponding sizes

[0036] As a further description of the above embodiment, the crossbeam 1 and the vertical beam 2 are welded with the inclined support rod 5, which is triangularly arranged between the crossbeam 1 and the vertical beam 2.

[0037] In the use of the embodiment, the inclined support rod 5 is arranged in the middle of the two crossbeams 1 and is triangularly welded between the crossbeam 1 and the vertical beam 2, thereby increasing the stability of the whole device.

[0038] In the embodiment, the inclined support rod 5 is made of 20mm threaded steel.

[0039] As a further description of the above embodiment, the crossbeam 1 is an I-beam, and the vertical beam 2 is cut into a "convex" shape at both ends to match the recess of the I-beam.

[0040] In the use of the embodiment, the vertical beam 2 is cut into a "convex" shape at both ends to facilitate welding with the recess of the I-beam of the crossbeam 1, thereby ensuring the stability of the device, and the whole device is in the shape of a rectangle with a length of 5.2m and a width of 0.6m.

[0041] As a further description of the above embodiment, the four top fixing buckles 3 are arranged 10cm away from the edges of the crossbeam 1.

[0042] In the use of the embodiment, the top fixing buckle 3 is 10cm away from the edge of the crossbeam 1, thereby ensuring the stability of the connection between the top fixing buckle 3 and the crossbeam 1. Of course, the distance between the top fixing buckle 3 and the edge of the crossbeam 1 is not limited to 10cm, and can be adjusted according to the actual situation, such as 8-12cm.

[0043] As a further description of the above embodiment, the grouting embedded pipe includes a detection pipe 6, a pipe hole pin 8 is arranged above the detection pipe 6, and a bottom cover 10 is welded at the bottom of the detection pipe 6.

[0044] In the use of the embodiment, the pipe hole pin 8 above the detection pipe 6 is connected with the bottom fixing buckle 4 through a 14mm steel rope, the bottom cover 10 is arranged on the detection pipe 6, and after the detection pipe 6 is arranged to the bottom of the hole, a circular shower with the same outer diameter as the detection pipe 6 is made of a 10mm steel plate and is welded with the pipe bottom to avoid the entry of silt and stone materials at the bottom of the hole into the pipe, thereby affecting the continuity detection of the subsequent plastic concrete wall.

[0045] As a further description of the above embodiment, the grouting embedded pipe is connected by at least two detection pipes 6, a pipe hole pin 8 is arranged above each detection pipe 6, and a bottom cover 10 is welded at the bottom of the lowermost detection pipe 6. The adjacent two detection pipes 6 are fixedly connected by at least three evenly arranged straight connecting ribs 7.

[0046] When the longer grouting embedded pipe is needed to be installed, the longer grouting embedded pipe is connected by several detection pipes 6 in the embodiment.

[0047] In the embodiment, the detection pipe 6 is lengthened by welding, and three straight connecting ribs 7 are used to reinforce the connection between two adjacent detection pipes 6. Three 10mm threaded steel straight connecting ribs 7 with a length of 10cm are vertically welded at the head of the detection pipe 6, one is welded every 120° around the pipe body of the detection pipe 6, 5cm of which is connected to the head of the detection pipe 6, and 5cm of which is reserved for welding the next detection pipe 6.

[0048] As a further description of the above embodiment, a stable frame 9 is fixedly connected between any two adjacent grouting embedded pipes, and the stable frame 9 is arranged in a row every 8-12m on the grouting embedded pipe, and the stable frame 9 is in the shape of “∏”.

[0049] When the longer grouting embedded pipe is needed to be installed, the stable frame 9 is welded between two adjacent grouting embedded pipes to ensure the verticality and stability of the double-row pipe.

[0050] In the embodiment, the distance between the stable frames is not limited to 10m, and can be adjusted according to actual needs, for example, the distance between the stable frames is 8-12m.

[0051] In summary, the bottom fixing buckle with double-row arrangement in the utility model can satisfy the continuity detection of the plastic concrete wall, and the device can be flexibly modified into any size according to the size of the actual slot section, and various detection pipes with various spacings are arranged below, and the device has high practicability.

[0052] The above embodiments only exemplarily illustrate the principles and effects of the present application, and are not used to limit the present application. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought disclosed by the present application should be covered by the claims of the present application.

Claims

1. A device for the rapid installation of a plastic concrete wall detection tube, characterised in that: It includes two parallel beams (1), two of which are evenly connected with at least two vertical beams (2), the top of the beam (1) is provided with a top fastener (3) at four corners, and the bottom of the beam (1) is provided with two rows of parallel bottom connecting components, the front and rear rows of bottom connecting components respectively include 3 and 2 equidistantly arranged bottom fasteners (4), and five bottom fasteners (4) are connected with grouting embedded pipes below.

2. A device for the rapid installation of a plastic concrete wall inspection tube according to claim 1, characterised in that: The inclined support rod (5) is welded between the beam (1) and the vertical beam (2), and the inclined support rod (5) is triangularly arranged between the beam (1) and the vertical beam (2).

3. The device of claim 1, wherein: The beam (1) is an I-beam, and the vertical beam (2) is cut into a "convex" type at both ends to match the recess of the I-beam.

4. The device of claim 1, wherein: 4 The top fastener (3) is arranged 8-12 cm away from the edge of the beam (1).

5. The device of claim 1, wherein: The top fastener (3) and the bottom fastener (4) are both made of steel plates into an arch-shaped round hole fastener.

6. The device of claim 1, wherein: The grouting embedded pipe includes a detection pipe (6), a pipe hole pin (8) is arranged above the detection pipe (6), and a closed bottom cover (10) is welded at the bottom of the detection pipe (6).

7. The device of claim 1, wherein: The grouting embedded pipe is connected by at least two detection pipes (6), a pipe hole pin (8) is arranged above each detection pipe (6), and a closed bottom cover (10) is welded at the bottom of the lowermost detection pipe (6).

8. A device for the rapid installation of a plastic concrete wall inspection tube according to any one of claims 6 or 7, characterised in that: The bottom fastener (4) is connected with the pipe hole pin (8) by a steel rope, the closed bottom cover (10) is made of a circular shower head made of a steel plate, and the diameter of the closed bottom cover (10) is equal to the outer diameter of the detection pipe (6).

9. The device of claim 7, wherein: The adjacent two detection pipes (6) are welded and fixed by at least three evenly arranged straight connecting ribs (7).

10. The device of claim 1, wherein: Any adjacent two grouting embedded pipes are fixedly connected with a stable frame (9), the stable frame (9) is arranged in a row every 8-12m on the grouting embedded pipe, and the stable frame (9) is a "∏" shape.