Anti-blocking chute structure

By introducing a flow guide plate and filter rod into the rapid flow channel to prevent clogging, the problem of clogging in the rapid flow channel is solved, achieving efficient filtration of impurities and convenient cleaning, and improving the anti-clogging effect of the drainage channel.

CN223853479UActive Publication Date: 2026-01-30INNER MONGOLIA DEHONG CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202520200814.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-30
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

The existing rapid flow channel lacks anti-clogging structure, resulting in a large accumulation of floating debris and other impurities after drainage, which blocks the drainage channel.

Method used

Design a clogging-resistant rapid flow channel structure, including a flow guide channel and an anti-clogging mechanism. The flow guide mesh and filter rod intercept and filter impurities in the water flow and collect the impurities in the storage box. The structure is connected to the rapid flow channel body by a plug-in method for easy cleaning.

Benefits of technology

It achieves efficient filtration and storage of impurities in water flow, prevents clogging, and facilitates subsequent cleaning, thus improving the anti-clogging effect of drainage channels.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223853479U_ABST
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Abstract

The utility model discloses an anti-blocking torrent groove structure, relates to torrent groove technical field, including torrent groove body, diversion trench and anti-blocking mechanism, the interior of torrent groove body is equipped with diversion trench, and the diversion trench is equipped with reserved groove at the bottom of torrent groove body. According to the anti-blocking torrent groove structure, impurities in water flow can be efficiently filtered, the filtered impurities are stored in the storage frame of the anti-blocking mechanism, the anti-blocking effect is good, follow-up cleaning of blockages is facilitated, meanwhile, the anti-blocking mechanism and the torrent groove body are in butt joint in an inserted connection mode, and the anti-blocking effect is good. The bottom of the chute is provided with the bearing block for bearing, so that stable loading and unloading are facilitated, cleaning work is facilitated, and the anti-blocking chute structure solves the problems that most of existing chutes are lack of anti-blocking structures, a large number of sundries such as floating objects are accumulated in the chutes after drainage every time, and drainage channels are blocked.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of the rapid flow tank, concretely to a prevent the rapid flow tank structure of blocking. BACKGROUND

[0002] The rapid flow tank is a structure specially designed for water flow control, and the main function of the rapid flow tank is to drain water in a very short distance under the condition of a large water surface fall, so as to rapidly guide and drain water flow in the form of a ditch, reduce the water head, and prevent the water flow from scouring and damaging the surrounding environment, and the rapid flow tank is widely applied in water conservancy projects and highway projects, can control water flow, protect the riverbed and the surrounding environment, rapidly drain rainwater, prevent road waterlogging, and improve road traffic capacity and driving safety.

[0003] The rapid flow tank is a concave ditch with a certain shape, which is stacked by cement or stone bricks and soil, and when draining water, the water flow will flow into the inside of the rapid flow tank and be guided into a lake along the rapid flow tank, but the existing rapid flow tank mostly lacks a blocking prevention structure, so a large amount of floating objects and other sundries are accumulated in the inside of the rapid flow tank after each time of draining water, and the drainage channel is blocked. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a prevent the rapid flow tank structure of blocking to solve the problem that the existing rapid flow tank mostly lacks a blocking prevention structure, so a large amount of floating objects and other sundries are accumulated in the inside of the rapid flow tank after each time of draining water, and the drainage channel is blocked.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a prevent the rapid flow tank structure of blocking, including the rapid flow tank body, the flow guide groove and the blocking prevention mechanism, the inside of the rapid flow tank body is provided with the flow guide groove, and the flow guide groove is provided with two groups, the bottom of the rapid flow tank body is provided with a reserved groove, and the inside of the rapid flow tank body is provided with the blocking prevention mechanism.

[0006] The blocking prevention mechanism comprises two flow guide net plates which are symmetrically arranged in the inside of the rapid flow tank body, the side adjacent to the two flow guide net plates is equally connected with a first filter rod, the bottom of the two flow guide net plates is equally connected with a second filter rod, the bottom of the second filter rod is connected with a filter frame, and the side, away from the flow guide net plate, of the first filter rod is connected with a storage frame.

[0007] Preferably, the number of the second filter rods is greater than that of the first filter rods, and the height of the side adjacent to the two flow guide net plates is lower than that of the side away from the two flow guide net plates.

[0008] Preferably, the bottom of the two flow guide net plates is inserted with the filter frame, the filter frame is arranged in an arc shape, the storage frame is located in the middle of the filter frame, and the storage frame is arranged in an "n" shape.

[0009] Preferably, the guide groove and the reserved groove are both arranged in an arc shape, and the opening directions of the guide groove and the reserved groove are arranged in opposite directions, and the two groups of guide grooves are symmetrically located on the two sides of the reserved groove.

[0010] Preferably, the side away from each of the two guide net plates is provided with a mounting mechanism, and the mounting mechanism comprises a limiting frame connected with the rapid flow groove body.

[0011] Preferably, the limiting frames are symmetrically arranged on the two sides of the rapid flow groove body, and a limiting groove is formed in each of the limiting frames, and a limiting block is inserted into the limiting groove.

[0012] Preferably, the limiting block is connected with the guide net plate on the side adjacent to the top of the limiting block, the bottom of the limiting block abuts against the supporting block, and one side of the supporting block is connected with the rapid flow groove body.

[0013] Compared with the prior art, the beneficial effects of the anti-blocking rapid flow groove structure are as follows: the impurities in the water flow can be efficiently filtered, and the filtered impurities are stored in the storage frame of the anti-blocking mechanism, the anti-blocking effect is good, and the subsequent cleaning of the blocked objects is facilitated, at the same time, the anti-blocking mechanism and the rapid flow groove body are connected in a plug-in manner, and the bottom is provided with a supporting block for supporting, which facilitates stable loading and unloading, thereby facilitating the cleaning work, and solves the problem that the existing rapid flow grooves mostly lack anti-blocking structures, so that a large amount of floating objects and other impurities accumulate in the inside after each drainage, and the drainage channel is blocked.

[0014] 1. The anti-blocking rapid flow groove structure is used to avoid the blocking of the rapid flow groove body during the drainage process, when the water flow is guided into the inside of the rapid flow groove body along the guide net plate, the first filter rod between the guide net plate and the storage frame will intercept the large impurities carried in the water flow, at this time, the water flow and the small impurities will be guided into the inside of the filter frame, and the filtration will be completed at the second filter rod between the filter frame and the guide net plate, at this time, a large amount of impurities will be flushed into the inside of the storage frame for collection, and the water flow after filtration will be guided to the inside of the rapid flow groove body through the filter frame, the anti-blocking rapid flow groove structure can efficiently filter the impurities in the water flow, and the filtered impurities are stored in the storage frame of the anti-blocking mechanism, the anti-blocking effect is good, and the subsequent cleaning of the blocked objects is facilitated.

[0015] 2. The anti-blocking chute structure, in order to improve the cleaning efficiency of the anti-blocking mechanism, the anti-blocking mechanism is connected with the chute body through the mounting mechanism on both sides, during installation, the limiting block at the bottom of the flow guide net plate is inserted into the limiting groove in the limiting frame, at this time, the anti-blocking mechanism can only be taken out vertically upward, at the same time, the bottom of the limiting frame is provided with a supporting block abutting against the bottom of the limiting block, so that the anti-blocking mechanism can be well supported, the anti-blocking mechanism and the chute body are connected through the insertion mode, and the bottom is provided with a supporting block for supporting, so that the installation and removal are stable, thereby facilitating the cleaning work. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a front view structural schematic diagram of the chute of the utility model;

[0017] Figure 2 It is a front view structural schematic diagram of the chute of the utility model;

[0018] Figure 3 It is a front view structural schematic diagram of the chute of the utility model;

[0019] Figure 4 It is a front view structural schematic diagram of the chute of the utility model;

[0020] In the drawing: 1, chute body; 101, flow guide groove; 102, reserved groove; 2, anti-blocking mechanism; 201, flow guide net plate; 202, first filter rod; 203, second filter rod; 204, filter frame; 205, storage frame; 3, mounting mechanism; 301, limiting block; 302, limiting frame; 303, limiting groove; 304, supporting block. DETAILED DESCRIPTION

[0021] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0022] Please refer to Figures 1-4 The utility model provides a technical scheme: an anti-blocking chute structure, which comprises a chute body 1, a flow guide groove 101 and an anti-blocking mechanism 2, the chute body 1 is internally provided with the flow guide groove 101, and the flow guide groove 101 is provided with two groups, the bottom of the chute body 1 is provided with a reserved groove 102, and the chute body 1 is internally provided with the anti-blocking mechanism 2;

[0023] The anti-blocking mechanism 2 comprises two guide net plates 201 symmetrically arranged inside the body 1, the two guide net plates 201 are connected with a first filter rod 202 at the adjacent side, the two guide net plates 201 are connected with a second filter rod 203 at the bottom, the second filter rod 203 is connected with a filter frame 204, and the first filter rod 202 is connected with a storage frame 205 at the side away from the guide net plate 201;

[0024] The number of the second filter rod 203 is greater than that of the first filter rod 202, the height of the adjacent side of the two guide net plates 201 is lower than that of the side away from each other, the bottom of the two guide net plates 201 is inserted with the filter frame 204, the filter frame 204 is arranged in an arc shape, the storage frame 205 is located in the middle of the filter frame 204, and the storage frame 205 is arranged in an n shape, the guide groove 101 and the reserved groove 102 are arranged in an arc shape, the opening direction of the guide groove 101 and the reserved groove 102 is reversely arranged, and the two groups of guide grooves 101 are symmetrically arranged on both sides of the reserved groove 102.

[0025] In specific implementation, in order to avoid the body 1 from being blocked during drainage, when the water flow is guided into the body 1 through the guide net plate 201, the first filter rod 202 between the guide net plate 201 and the storage frame 205 can intercept large impurities in the water flow, and part of the water flow can directly enter the body 1 through the guide net plate 201 and the storage frame 205, at this time, the water flow and small impurities can be guided into the inside of the filter frame 204, and the filtration is completed at the second filter rod 203 between the filter frame 204 and the guide net plate 201, at this time, a large amount of impurities can be flushed into the inside of the storage frame 205 for collection, and the filtered water flow can be guided into the body 1 through the filter frame 204, wherein the number of the second filter rod 203 is greater than that of the first filter rod 202, which facilitates guiding the water flow into the body 1, effectively avoids the water flow and impurities from blocking the water inlet of the body 1, the second filter rod 203 can effectively intercept and collect the impurities that may cause blockage in the water flow, the arc-shaped arrangement of the filter frame 204 can increase the contact with the water flow and improve the filtration efficiency, the n-shaped arrangement of the storage frame 205 facilitates better storage of impurities, the anti-blocking body structure can efficiently filter the impurities in the water flow, and the filtered impurities are stored in the storage frame 205 of the anti-blocking mechanism 2, which has good anti-blocking effect and facilitates subsequent cleaning of the blocked materials.

[0026] Reference Figures 1-3It can be known that the two sides of the flow guide net plate 201 away from each other are provided with mounting mechanisms 3, the mounting mechanism 3 comprises a limiting frame 302 connected with the rapid flow groove body 1, the limiting frame 302 is symmetrically arranged on both sides of the rapid flow groove body 1, a plurality of limiting grooves 303 are formed in the limiting frame 302, a limiting block 301 is inserted into the limiting groove 303, the limiting block 301 is connected with the flow guide net plate 201 on the adjacent side, the bottom of the limiting block 301 abuts against a supporting block 304, and one side of the supporting block 304 is connected with the rapid flow groove body 1.

[0027] In specific implementation, in order to improve the cleaning efficiency of the anti-blocking mechanism 2, the mounting mechanism 3 is used to dock the two sides of the anti-blocking mechanism 2 with the rapid flow groove body 1, when mounting, the limiting block 301 at the bottom of the flow guide net plate 201 is inserted into the limiting groove 303 in the limiting frame 302, at this time, the anti-blocking mechanism 2 can only be taken out vertically upward, effectively avoiding the shaking of the anti-blocking mechanism 2 in subsequent use, affecting the drainage effect, and meanwhile, the bottom of the limiting frame 302 is provided with the supporting block 304 abutting against the bottom of the limiting block 301, so that the anti-blocking mechanism 2 can be well supported, avoiding the crushing and damage of the anti-blocking mechanism 2 after long-term use, the anti-blocking rapid flow groove structure is docked by inserting the anti-blocking mechanism 2 with the rapid flow groove body 1, and the bottom is provided with the supporting block 304 for supporting, facilitating stable mounting and dismounting, so as to facilitate the cleaning work.

[0028] In summary, when the anti-blocking rapid flow groove structure is used, the bottom of the rapid flow groove body 1 is inserted into the groove channel formed by trenching the ground through the reserved groove 102, the arc-shaped arrangement of the reserved groove 102 can cooperate with the earthwork in the middle of the groove channel to strengthen the limiting of the rapid flow groove body 1, then the limiting block 301 at the bottom of the flow guide net plate 201 is inserted into the limiting groove 303 in the limiting frame 302, at this time, the drainage work can be smoothly carried out, wherein the arc-shaped arrangement of the flow guide groove 101 facilitates the separation of water flow and the diversion of water flow from both sides to avoid single channel blockage, and further improves the anti-blocking effect, and the contents not described in detail in the description belong to the prior art known to those skilled in the art.

[0029] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.

Claims

1. A clogging-preventing flume structure comprising a flume body (1), a flow guide groove (101) and a clogging-preventing mechanism (2), characterized in that: The rapid flow tank body (1) is internally provided with two groups of flow guide grooves (101), and the rapid flow tank body (1) is internally provided with a reserved groove (102), and the rapid flow tank body (1) is internally provided with a blocking prevention mechanism (2). The blocking prevention mechanism (2) comprises two flow guide net plates (201) symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically 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arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow guide net plates (201) are symmetrically arranged in the rapid flow tank body (1), and the two flow 2. The anti-clogging flume structure according to claim 1, characterized in that: ​ 3. The anti-clogging flume structure according to claim 2, wherein: ​ 4. The anti-clogging flume structure of claim 1, wherein: ​ 5. The anti-clogging flume structure according to claim 3, wherein: ​ 6. The anti-clogging flume structure according to claim 5, wherein: ​ 7. The anti-clogging flume structure according to claim 6, wherein: ​