Pipeline quality detection device for water conservancy project

By designing a hydraulic engineering pipeline inspection device with clamping and cleaning mechanisms, the problems of pipeline instability and surface impurities affecting the inspection were solved, resulting in more accurate inspection results.

CN224081593UActive Publication Date: 2026-04-03HUBEI XIANGZHUO TESTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In existing water conservancy project pipeline inspections, pipeline instability and surface impurities affect the accuracy of inspection results.

Method used

A detection device including a clamping mechanism and a cleaning mechanism was designed. The clamping mechanism uses a cylinder to drive a rotating bar and an arc block to clamp the pipe, and the cleaning mechanism uses a motor to drive gears and a brush to remove impurities.

Benefits of technology

This achieves stable clamping and surface cleaning of the pipeline, improving the accuracy of the test results.

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Abstract

The utility model discloses a pipeline quality detection device for hydraulic engineering, which comprises a supporting seat, a supporting plate and a detection device body, a detection head is arranged at one end of the side surface of the detection device body, a first electric telescopic rod is arranged at one end above the detection head, and a clamping mechanism is arranged at one end below the supporting plate. A cleaning mechanism is arranged at one end above the supporting seat; the pipeline can be stably fixed through the clamping mechanism, and then impurity particles on the surface of the pipeline can be cleaned through the cleaning mechanism, so that the detection device body can be in better contact with the pipeline, and the detection result can be more accurate.
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Description

Technical Field

[0001] This utility model relates to the field of water conservancy engineering technology, specifically a pipeline quality testing device for water conservancy projects. Background Technology

[0002] In a broad sense, water conservancy projects are projects built to prevent and control water-related disasters and to develop and utilize water resources. They include water-related projects in flood control, drainage, irrigation, water supply, hydropower generation, navigation, water resource protection, soil and water conservation, as well as aquaculture, tourism and ecological environment improvement projects.

[0003] Pipelines used in water conservancy projects need to be tested for quality during the production process, which usually requires the use of quality testing equipment. However, in the current testing process, when the staff directly place the pipeline on the testing table, it is not possible to ensure the stability of the pipeline. In addition, the surface of the pipeline to be tested may be contaminated with impurities, which makes it difficult for the testing instrument to make good contact with the pipeline, resulting in unsatisfactory test results. Therefore, further improvements are needed. Utility Model Content

[0004] The purpose of this utility model is to provide a pipeline quality testing device for water conservancy projects in order to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a pipeline quality inspection device for water conservancy projects, comprising: a support base, a support plate, and an inspection device body. A detection head is provided at one end of the side of the inspection device body, a first electric telescopic rod is provided at the upper end of the detection head, a clamping mechanism is provided at the lower end of the support plate, and a cleaning mechanism is provided at the upper end of the support base. The inspection device body and the detection head are existing technologies.

[0006] As a further embodiment of this utility model: the clamping mechanism includes a cylinder disposed at one end below the support plate, a connecting block fixedly connected to the output end below the cylinder, a rotating bar rotatably connected to one side end of the connecting block, a rotating shaft disposed at one side end of the rotating bar, a rotating block rotating at one side end of the rotating bar, and an arc block fixedly connected to one side end of the rotating block. The contact surface between the arc block and the pipe is relatively rough, which can ensure stable clamping of the pipe. There are two sets of rotating bars, rotating shafts, rotating blocks, and arc blocks, which are symmetrically arranged at both ends of the side of the connecting block. The rotating bar is rotatably connected to the side of the support plate through the rotating shaft.

[0007] As a further embodiment of this utility model: the cleaning mechanism includes a fixed seat and a fixed plate fixedly connected to the support base. A toothed ring is rotatably connected to one side end of the fixed seat, and a connecting plate is fixedly connected to one side end of the toothed ring. A second electric telescopic rod is provided at one lower end of the connecting plate. A fixed block is fixedly connected to the lower output end of the second electric telescopic rod, and a brush is provided below the fixed block.

[0008] As a further embodiment of this utility model: a motor is provided at one end of the side of the fixing plate, a connecting rod is fixedly connected to the output end of the motor, and a gear is fixedly connected to one end of the side of the connecting rod.

[0009] As a further improvement of this utility model: the gear is adapted to the gear ring, and a through groove is provided at one end of the side of the support for the pipe to pass through.

[0010] As a further improvement of this utility model, the clamping mechanism is provided in two sets, which are symmetrically arranged at both ends below the support plate.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] In this invention, the clamping mechanism can stably fix the pipeline, and the cleaning mechanism can clean the impurities on the pipeline surface, which allows the detection device body to make better contact with the pipeline and makes the detection results more accurate. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the clamping mechanism in this utility model;

[0015] Figure 3 This is a schematic diagram of the cleaning mechanism in this utility model;

[0016] Figure 4 This is a second-view structural schematic diagram of the cleaning mechanism in this utility model.

[0017] In the diagram: 1. Support base; 2. Support plate; 3. Detection device body; 4. Detection head; 5. First electric telescopic rod; 6. Clamping mechanism; 61. Cylinder; 62. Connecting block; 63. Rotating bar; 64. Rotating shaft; 65. Rotating block; 66. Arc block; 7. Cleaning mechanism; 71. Fixed base; 72. Fixed plate; 73. Gear ring; 74. Connecting plate; 75. Second electric telescopic rod; 76. Fixed block; 77. Brush; 78. Motor; 79. Connecting rod; 710. Gear. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. In the description of this utility model, it should be noted that unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "setting" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances. The embodiments of this utility model will be described below based on its overall structure.

[0020] Reference Figures 1 to 4 In this embodiment of the utility model, a pipeline quality inspection device for water conservancy projects includes: a support base 1, a support plate 2, and an inspection device body 3. An inspection head 4 is provided at one end of the side of the inspection device body 3, a first electric telescopic rod 5 is provided at one end above the inspection head 4, a clamping mechanism 6 is provided at one end below the support plate 2, and a cleaning mechanism 7 is provided at one end above the support base 1.

[0021] The clamping mechanism 6 includes a cylinder 61 located at one end below the support plate 2. A connecting block 62 is fixedly connected to the output end of the cylinder 61. A rotating bar 63 is rotatably connected to one side end of the connecting block 62. A rotating shaft 64 is provided at one side end of the rotating bar 63. A rotating block 65 rotates at one side end of the rotating bar 63. An arc block 66 is fixedly connected to one side end of the rotating block 65.

[0022] The above solution is adopted: by passing the pipe to be inspected through the arc blocks 66, and then pushing the connecting block 62 by the cylinder 61, the rotating bar 63 is driven to rotate around the rotating shaft 64, thereby driving the rotating block 65 connected to the side and the arc block 66 fixed to the side to clamp and fix the pipe in the middle, so that the inspection device body 3 is more stable when inspecting the pipe.

[0023] The cleaning mechanism 7 includes a fixed base 71 and a fixed plate 72 fixedly connected to the support base 1. A toothed ring 73 is rotatably connected to one side end of the fixed base 71. A connecting plate 74 is fixedly connected to one side end of the toothed ring 73. A second electric telescopic rod 75 is provided at one lower end of the connecting plate 74. A fixed block 76 is fixedly connected to the lower output end of the second electric telescopic rod 75. A brush 77 is provided below the fixed block 76.

[0024] A motor 78 is provided on one side of the fixed plate 72, and a connecting rod 79 is fixedly connected to the output end of the motor 78. A gear 710 is fixedly connected to one side of the connecting rod 79.

[0025] The above scheme is adopted: the motor 78 drives the connecting rod 79 and the gear 710 fixed to the side to rotate. The gear 710 drives the gear ring 73 meshing on the side to rotate. When the gear ring 73 rotates, the connecting plate 74 fixed to the side will rotate together. Then, the second electric telescopic rod 75 drives the fixed block 76 to extend and retract, so that the brush 77 comes into contact with the surface of the pipe, thereby cleaning the surface of the pipe and avoiding some impurities on the surface from affecting the test data.

[0026] The gear 710 is adapted to the gear ring 73, and a through groove is provided on one side of the support base 1 for the pipe to pass through.

[0027] Two sets of clamping mechanisms 6 are provided, symmetrically arranged at both ends below the support plate 2.

[0028] The working principle of this utility model is as follows: the pipe to be tested passes through the arc blocks 66, and then the cylinder 61 pushes the connecting block 62, thereby driving the rotating bar 63 to rotate around the rotating shaft 64. This causes the rotating block 65 connected to the side and the arc block 66 fixed to the side to clamp and fix the pipe in the middle, making the detection device body 3 more stable when detecting the pipe. The motor 78 drives the connecting rod 79 and the gear 710 fixed to the side to rotate. The gear 710 drives the gear ring 73 meshing on the side to rotate. When the gear ring 73 rotates, the connecting plate 74 fixed to the side will rotate together. Then, the second electric telescopic rod 75 drives the fixed block 76 to extend and retract, so that the brush 77 comes into contact with the surface of the pipe, thereby cleaning the surface of the pipe and avoiding some impurities on the surface from affecting the detection data.

[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A pipeline quality inspection device for water conservancy projects, comprising: The support base (1), the support plate (2) and the detection device body (3) are characterized in that a detection head (4) is provided at one end of the side of the detection device body (3), a first electric telescopic rod (5) is provided at one end above the detection head (4), a clamping mechanism (6) is provided at one end below the support plate (2), and a cleaning mechanism (7) is provided at one end above the support base (1).

2. The pipeline quality testing device for water conservancy projects according to claim 1, characterized in that, The clamping mechanism (6) includes a cylinder (61) located at one end below the support plate (2). A connecting block (62) is fixedly connected to the output end of the cylinder (61). A rotating bar (63) is rotatably connected to one side of the connecting block (62). A rotating shaft (64) is provided at one side of the rotating bar (63). A rotating block (65) is rotated at one side of the rotating bar (63). An arc block (66) is fixedly connected to one side of the rotating block (65).

3. The pipeline quality testing device for water conservancy projects according to claim 1, characterized in that, The cleaning mechanism (7) includes a fixed base (71) and a fixed plate (72) fixedly connected above the support base (1). A toothed ring (73) is rotatably connected to one side end of the fixed base (71). A connecting plate (74) is fixedly connected to one side end of the toothed ring (73). A second electric telescopic rod (75) is provided at one lower end of the connecting plate (74). A fixed block (76) is fixedly connected to the lower output end of the second electric telescopic rod (75). A brush (77) is provided below the fixed block (76).

4. The pipeline quality testing device for water conservancy projects according to claim 3, characterized in that, A motor (78) is provided on one side of the fixing plate (72), and a connecting rod (79) is fixedly connected to the output end of the motor (78). A gear (710) is fixedly connected to one side of the connecting rod (79).

5. The pipeline quality inspection device for water conservancy projects according to claim 4, characterized in that, The gear (710) is adapted to the gear ring (73), and a through groove is provided on one side of the support base (1) for the pipe to pass through.

6. The pipeline quality testing device for water conservancy projects according to claim 1, characterized in that, The clamping mechanism (6) is provided in two sets, which are symmetrically arranged at both ends below the support plate (2).