Seepage-proofing and water-stopping structure of water conservancy building

By designing a waterproof structure that includes a base, a first baffle, a side plate, a bevel plate, an electric telescopic rod and a sealing strip, the problem that the baffle cannot be adjusted in the prior art is solved, and flexibility to adapt to different wall shapes and sizes is achieved.

CN223017539UActive Publication Date: 2025-06-24WUAN SOIL & WATER CONSERVATION ECOLOGICAL ENVIRONMENT CONSTR BUREAU
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Patent Information

Application Number
CN202422181358.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-06-24
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

The baffles of the anti-seepage water-stop structure of existing water conservancy buildings cannot be adjusted according to the coverage area of ​​different walls, resulting in the inability to adapt to walls of different shapes and sizes, affecting the use effect.

Method used

An anti-seepage waterproof structure including a base, a first baffle, a side plate, a bevel plate, an electric telescopic rod and a sealing strip is designed. The coverage range of the first baffle is adjusted through the cooperation of the electric telescopic rod and a sealing strip.

Benefits of technology

It realizes flexible adjustment of the baffle, can adapt to the shape and size of different walls, and improves the flexibility and adaptability of the anti-seepage and water-resisting structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a water conservancy building anti-seepage water stop structure which comprises a base, a first baffle is fixedly arranged on the top of the base, and the side face of the first baffle is movably connected with a side plate. Compared with the prior art, the device has the advantages that firstly, when the base and the first baffle make contact with a wall, the inclined plate is installed at the top of the base, then the electric telescopic rod is started to push the side plate to be separated from the side face of the base, and the partition plate moves along the position of the fixing block on the surface of the second baffle; the side plate brings the second baffle out of the interior of the back side of the first baffle, and the connecting block connected with the partition plate is fixed to the top of the side plate by the first bolt penetrating through the connecting block, so that the range of the wall covered by the first baffle is adjusted; at the moment, the connecting position where the second baffle is separated from the first baffle and the position where the side plates make contact with the wall are sealed through sealing strips, and therefore the first baffle can be adjusted according to the range covering the wall under the action of the second baffle.
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Description

Technical Field

[0001] The utility model relates to a seepage prevention and water stop structure for hydraulic buildings, belonging to the field of hydraulic buildings. Background Technique

[0002] In water conservancy projects, single or several buildings with different functions and types are often used to regulate water flow to meet the water resource needs of different departments. These buildings built for water conservancy and flood control are called hydraulic buildings, which control and regulate water flow, prevent water disasters, and develop and utilize water resources. Water is the source of all life and an essential substance in human life and production activities. In the survival and development of human society, it is necessary to continuously adapt to, utilize, transform, and protect the water environment. The water conservancy cause develops continuously with the development of social productivity and has become an important pillar of human social civilization and economic development. Water conservancy means the development of water power resources and the prevention of floods or water conservancy projects.

[0003] In the prior art, since a seepage prevention and water stop structure is used in the construction of hydraulic buildings, and the seepage prevention and water stop structure is composed of a baffle, a base, a bracket, and a sealing ring. Therefore, when using the seepage prevention and water stop structure, the baffle needs to be installed on the wall surface, and at the same time, the sealing ring is used to seal the connection between the baffle and the wall. Then, the baffle can be supported by the bracket, so that the use of the seepage prevention and water stop structure can be completed. However, when using the seepage prevention and water stop structure, since the connection between the wall and the baffle is sealed by the sealing ring, and there are many walls that need to use the seepage prevention and water stop structure, and the areas of the walls that need to be covered by the baffle are different for different walls. When the area of the wall that needs to be covered by the baffle is larger than the baffle, the baffle cannot completely cover the wall, and it is necessary to re-manufacture a baffle corresponding to the shape of the wall to cover the wall. In this way, the fixed baffle cannot be adapted to walls with different covering areas for use, resulting in affecting the use of the seepage prevention and water stop structure. Content of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide a seepage prevention and water stop structure for hydraulic buildings to solve the problems raised in the above background technique. The utility model enables the baffle to be adjusted according to the range of the covered wall.

[0005] In order to achieve the above purpose, the utility model is realized by the following technical scheme: A seepage prevention and water stop structure for hydraulic buildings, including a base, a first baffle is fixedly arranged on the top of the base, a side plate is movably connected to the side of the first baffle, and a long plate is fixedly installed on the surface of the base;

[0006] On the top surface of the first baffle, an inclined plate is fixedly installed. On the top surface of the inclined plate, a fixed block is fixedly installed. A partition is slidably connected to the surface of the fixed block. A connecting block is fixedly connected to the side end of the partition. A first bolt is threadedly connected to the surface of the connecting block. An electric telescopic rod is fixedly arranged at the inner side end of the inclined plate. A second baffle is fixedly connected to the inner side of the side plate. A sealing strip is fixedly arranged at the side end of the surface of the second baffle.

[0007] Further, four fixed blocks are fixedly arranged on the top surface of the inclined plate. Two partitions are symmetrically arranged on the top surface of the inclined plate. Grooves are provided at the positions where the two partitions contact the two corresponding fixed blocks. The first bolt passes through the connecting block and contacts the top end of the side plate.

[0008] Further, the end of the electric telescopic rod protrudes from the inside of the inclined plate and contacts the side plate. Two second baffles are symmetrically arranged on the inner back side of the first baffle. The sealing strip is arranged at the positions where the first baffle contacts the second baffle and where the side plate contacts the wall.

[0009] Further, a chute is provided on the top surface of the base. A slider is slidably connected to the inside of the chute. Two round blocks are fixedly arranged on the top of the slider. A rotating shaft is rotatably connected to the side surface of the round block. A support rod is fixedly connected to the surface of the rotating shaft. A cushion block is contacted by the end of the support rod. A clamping block is fixedly installed on the side surface of the slider. A second bolt is threadedly connected to the surface of the clamping block.

[0010] Further, two chutes are symmetrically provided on the top of the base. One slider is conveniently arranged inside the two chutes. Grooves matching the shape of the surface of the rotating shaft are provided at the positions where the top of the slider contacts the rotating shaft. Each of the two rotating shafts is connected to one rotating shaft.

[0011] Further, round blocks and rotating shafts corresponding to the slider are arranged on the surface of the cushion block. The second bolt passes through the clamping blocks on both sides of the slider and contacts the base.

[0012] The beneficial effects of the present utility model are as follows: First, when the base contacts the wall with the first baffle, the inclined plate is installed on the top of the base. Then, the electric telescopic rod is started to push the side plate to separate from the side of the base. The partition moves along the position of the fixed block on the surface of the second baffle. The side plate takes the second baffle out of the inner back side of the first baffle. The connecting block connected to the partition is fixed to the top of the side plate by the first bolt passing through it, so that the coverage range of the first baffle covering the wall can be adjusted. At this time, the sealing strip is used to seal the connection where the second baffle separates from the first baffle and the position where the side plate contacts the wall, so that the first baffle can be adjusted according to the coverage range of the wall under the action of the second baffle;

[0013] Secondly, after the first baffle is sealed by the sealing strip when it contacts the wall, remove the second bolt. The slider can move inside the chute. At this time, push the position of the support rod, and the support rod rotates by virtue of the positions of the rotating shafts at both ends, achieving the adjustment of the angle of the support rod, so that the support rod can support the first baffle at the corresponding position according to needs. At this time, use the second bolt to pass through the clamping block and contact the base, so that the support rod can support the first baffle at multiple positions. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Other features, objects and advantages of the present utility model will become more apparent from the following detailed description of non-limiting embodiments read in conjunction with the accompanying drawings:

[0015] Figure 1 is a three-dimensional structural schematic diagram of an anti-seepage and water-stop structure of a water conservancy building according to the present utility model;

[0016] Figure 2 is a schematic diagram of the three-dimensional structure of the inclined plate in an anti-seepage and water-stop structure of a water conservancy building according to the present utility model;

[0017] Figure 3 is a schematic diagram of the three-dimensional structure of the support rod in an anti-seepage and water-stop structure of a water conservancy building according to the present utility model.

[0018] In the figure: 1, base; 101, first baffle; 2, side plate; 3, long plate; 4, inclined plate; 401, fixed block; 402, partition; 403, connecting block; 404, first bolt; 5, electric telescopic rod; 6, second baffle; 601, sealing strip; 7, chute; 701, slider; 702, round block; 703, rotating shaft; 704, support rod; 8, cushion block; 9, clamping block; 901, second bolt. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] In order to make the technical means, creative features, achieved purposes and functions of the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0020] Please refer to Figure 1 and Figure 2, the present utility model provides a technical solution: a water conservancy building anti-seepage and water-stop structure, including a base 1, a first baffle 101 is fixedly arranged on the top of the base 1, a side plate 2 is movably connected to the side surface of the first baffle 101, and a long plate 3 is fixedly installed on the surface of the base 1; four fixing blocks 401 are fixedly arranged on the top surface of the inclined plate 4, two partition plates 402 are symmetrically arranged on the top surface of the inclined plate 4, grooves are provided at the positions where the two partition plates 402 contact the two corresponding fixing blocks 401, and a first bolt 404 passes through the connecting block 403 and contacts the top end of the side plate 2. The end of the electric telescopic rod 5 protrudes from the inside of the inclined plate 4 and contacts the side plate 2, and two second baffles 6 are symmetrically arranged on the inner back side of the first baffle 101, and sealing strips 601 are arranged at the positions where the first baffle 101 contacts the second baffle 6 and the side plate 2 and at the positions where the side plate 2 contacts the wall.

[0021] An inclined plate 4 is fixedly installed on the top surface of the first baffle 101, fixing blocks 401 are fixedly installed on the top surface of the inclined plate 4, a partition plate 402 is slidably connected to the surface of the fixing block 401, a connecting block 403 is fixedly connected to the side end of the partition plate 402, a first bolt 404 is threadedly connected to the surface of the connecting block 403, an electric telescopic rod 5 is fixedly arranged at the inner side end of the inclined plate 4, a second baffle 6 is fixedly connected to the inner side of the side plate 2, and a sealing strip 601 is fixedly arranged at the side end of the surface of the second baffle 6.

[0022] Please refer to Figure 1 and Figure 3 , a chute 7 is provided on the top surface of the base 1, a slider 701 is slidably connected to the inside of the chute 7, two round blocks 702 are fixedly arranged on the top of the slider 701, a rotating shaft 703 is rotatably connected to the side surface of the round block 702, a support rod 704 is fixedly connected to the surface of the rotating shaft 703, a cushion block 8 contacts the end of the support rod 704, a clamping block 9 is fixedly installed on the side surface of the slider 701, and a second bolt 901 is threadedly connected to the surface of the clamping block 9.

[0023] Two chutes 7 are symmetrically provided on the top of the base 1, and a slider 701 is conveniently arranged inside the two chutes 7. Grooves matching the shape of the surface of the rotating shaft 703 are provided at the positions where the top of the slider 701 contacts the rotating shaft 703, and each of the two rotating shafts 703 is connected to one rotating shaft 703. The cushion block 8 is provided with round blocks 702 and rotating shafts 703 corresponding to the slider 701, and the second bolt 901 passes through the clamping blocks 9 on both sides of the slider 701 and contacts the base 1.

[0024] Specific implementation method: First, when it is necessary to adjust the first baffle 101 according to the range of the covered wall, when the base 1 contacts the wall with the first baffle 101, by installing the inclined plate 4 on the top of the base 1, the electric telescopic rod 5 can be activated to push the side plate 2 away from the side of the base 1. Then, the partition plate 402 moves along the position of the fixed block 401 on the surface of the second baffle 6. At the same time, the side plate 2 takes out the second baffle 6 from the inside of the back side of the first baffle 101. Then, the connecting block 403 connected to the end of the partition plate 402 is fixed to the top of the side plate 2 by passing through the first bolt 404, so that the range of the first baffle 101 covering the wall is adjusted. At this time, the second baffle 6 is sealed at the connection where it separates from the first baffle 101 and the position where the side plate 2 contacts the wall by using the sealing strip 601, so that the first baffle 101 can be adjusted according to the range of the covered wall under the action of the second baffle 6;

[0025] Secondly, when it is necessary for the support rod 704 to support the first baffle 101 at multiple positions, after the first baffle 101 is sealed by the sealing strip 601 when it contacts the wall, by removing the second bolt 901, the position of the slider 701 can be moved inside the chute 7. At the same time, the position of the support rod 704 is pushed, so that the support rod 704 rotates by virtue of the positions of the rotating shafts 703 at both ends, achieving the adjustment of the angle of the support rod 704. At the same time, the support rod 704 can support the first baffle 101 at the corresponding position as needed. At this time, the second bolt 901 is passed through the clamping block 9 to contact the base 1, so that the support rod 704 can support the first baffle 101 at multiple positions.

[0026] Although this specification is described according to the implementation methods, not each implementation method 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 implementation methods that can be understood by those skilled in the art.

Claims

1. A water conservancy building anti-seepage and water-stopping structure, comprising a base (1), characterized in that: A first baffle (101) is fixedly arranged on the top of the base (1), a side plate (2) is movably connected to the side of the first baffle (101), and a long plate (3) is fixedly mounted on the surface of the base (1); A sloping plate (4) is fixedly mounted on the top surface of the first baffle plate (101), a fixing block (401) is fixedly mounted on the top surface of the sloping plate (4), a partition plate (402) is slidably connected to the surface of the fixing block (401), a connecting block (403) is fixedly connected to the side end of the partition plate (402), a first bolt (404) is threadedly connected to the surface of the connecting block (403), an electric telescopic rod (5) is fixedly arranged on the inner side end of the sloping plate (4), a second baffle plate (6) is fixedly connected to the inner side of the side plate (2), and a sealing strip (601) is fixedly arranged on the surface side end of the second baffle plate (6).

2. The anti-seepage and water-stopping structure of a hydraulic construction according to claim 1, characterized in that: Four fixing blocks (401) are fixedly arranged on the top surface of the inclined plate (4), two partition plates (402) are symmetrically arranged on the top surface of the inclined plate (4), grooves are provided at positions where the two partition plates (402) contact the fixing blocks (401) at two corresponding positions, and a first bolt (404) passes through the connecting block (403) and contacts the top end of the side plate (2).

3. The anti-seepage and water-stopping structure of a hydraulic construction according to claim 1, characterized in that: The end of the electric telescopic rod (5) protrudes from the inside of the inclined plate (4) and contacts the side plate (2); two second baffles (6) are symmetrically arranged on the inner back side of the first baffle (101); and the sealing strip (601) is arranged at a position where the first baffle (101) contacts the side plate (2) and the second baffle (6) and at a position where the side plate (2) contacts the wall.

4. The anti-seepage and water-stopping structure of a hydraulic construction according to claim 1, characterized in that: A slide groove (7) is provided on the top surface of the base (1), a slider (701) is slidably connected inside the slide groove (7), two round blocks (702) are fixedly arranged on the top of the slider (701), the side of the round block (702) is rotatably connected to a rotating shaft (703), a support rod (704) is fixedly connected to the surface of the rotating shaft (703), the end of the support rod (704) contacts a cushion block (8), a clamping block (9) is fixedly installed on the side of the slider (701), and a second bolt (901) is threadedly connected to the surface of the clamping block (9).

5. The anti-seepage and water-stopping structure of a hydraulic construction according to claim 4, characterized in that: Two slide grooves (7) are symmetrically provided on the top of the base (1), and a slider (701) is conveniently arranged inside the two slide grooves (7). A groove matching the surface shape of the rotating shaft (703) is provided at the position where the top of the slider (701) contacts the rotating shaft (703), and the two ends of the rotating shaft (703) are respectively connected to a rotating shaft (703).

6. The anti-seepage and water-stopping structure of a hydraulic construction according to claim 4, characterized in that: A round block (702) and a rotating shaft (703) corresponding to the slider (701) are arranged on the surface of the cushion block (8), and the second bolt (901) passes through the clamping blocks (9) on both sides of the slider (701) and contacts the base (1).