Torrent drainage tank

Through the combined structure of components such as U-frame and plug-in cylinder, the construction quality problem of rapid drainage tanks on highway slopes is solved, and the effect of stabilizing support and reducing construction complexity is achieved.

CN223293131UActive Publication Date: 2025-09-02XUCHANG GUANGLI HIGHWAY ENG CONSTR CO LTD
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Patent Information

Application Number
CN202422450166.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-09-02
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

In highway construction, the prior art when excavating pits on slopes is used to install rapid drainage tanks, the construction quality is difficult to ensure, which can easily lead to damage to the groove body.

Method used

The combined structure of components such as U-frame, plug-in cylinder, plug-in column, top rod and pull rod is adopted to fix the rapid flow groove body through plug-in and support, reduce the need for trimming the inner wall of the pit groove, and use limit plates and studs to adjust the height difference of the plug-in column to increase the stability of the U-frame.

Benefits of technology

The construction quality of excavated trenches on the slope is reduced, the installation stability of the rapid trenches is improved, and the damage to the trenches is avoided due to ground sinking.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223293131U_ABST
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Abstract

The utility model provides a torrent drainage tank which comprises a torrent tank body, a barrier strip is fixedly connected to the bottom of the torrent tank body, a U-shaped frame is arranged on the torrent tank body in a sleeved mode, two vertical portions of the U-shaped frame are attached to two parallel side faces of the torrent tank body respectively, a plurality of ejector rods used for supporting the barrier strip are installed on a horizontal portion in the U-shaped frame, and the ejector rods are connected with the barrier strip. The bottom of the U-shaped frame is fixedly connected with two inserting cylinders, inserting columns used for being inserted into the ground are inserted into the inserting cylinders, and the lower ends of the inserting columns are fixedly connected with pointed ends.
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Description

Technical Field

[0001] The utility model relates to a rapid flow ditch, belonging to the field of highway engineering. Background Art

[0002] During highway construction, it is necessary to install rapid drainage chutes on the slopes of the highway shoulders. Highway rapid drainage chutes are designed to quickly drain water from the road surface during road traffic, ensuring road safety during heavy rainfall. When laying the rapid drainage chutes, it is necessary to excavate a pit on the slope of the highway shoulder to prevent the rapid drainage chutes. After excavation, the inner walls of the pits need to be trimmed to meet the requirements for placing the rapid drainage chutes. The inner walls of the pits also need to be vibrated to prevent damage to the rapid drainage chutes due to ground subsidence in the later stages. This method has a high impact on the construction quality of the pits, so it is necessary to design a rapid drainage chutes that can reduce the construction quality of pits excavated on slopes. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a rapid water sluice to solve the problems raised in the above background technology. The utility model reduces the construction quality of excavating pits on slopes.

[0004] In order to achieve the above-mentioned purpose, the present invention is implemented through the following technical solutions: a rapid water drain trough, including a rapid water trough body, a baffle bar is connected and fixed to the bottom of the rapid water trough body, a U-shaped frame is sleeved on the rapid water trough body, the two vertical parts of the U-shaped frame are respectively fitted with the two parallel side faces of the rapid water trough body, a plurality of top rods for supporting the baffle bar are installed on the horizontal part of the U-shaped frame, two plug-in tubes are connected and fixed to the bottom of the U-shaped frame, a plug-in column for being inserted into the ground is inserted in the plug-in column, and a pointed head is connected and fixed to the lower end of the plug-in column.

[0005] Furthermore, a limit plate is provided in the connecting tube for limiting the length of the plug-in column inserted in the connecting tube. A threaded hole is provided in the middle of one side of the limit plate. A stud is threadedly connected in the threaded hole. The upper end of the stud is in contact with the lower surface of the horizontal part of the U-shaped frame, and the lower end of the stud is flush with the lower end of the connecting tube. The upper surface of the plug-in column is recessed downward to form a blind hole, and the lower end of the stud is inserted in the blind hole.

[0006] Furthermore, a detachable pulling rod is installed at the upper position of the two vertical parts of the U-shaped frame, and an end of the pulling rod away from the U-shaped frame is connected and fixed with an anchor plate for being submerged in the ground.

[0007] Furthermore, internal threaded sleeves are installed at the upper positions of the two vertical parts of the U-shaped frame, the outer surface of the end of the pulling rod away from the anchor plate is processed with external threads, and the end of the pulling rod processed with external threads is threadedly connected to the internal threaded sleeve.

[0008] Furthermore, a lap plate is connected and fixed to the inclined lower end of the rapid flow trough body, and the bottom of the rapid flow trough body is recessed downward on one side away from the lap plate to form a lap groove, and the lap plate on one rapid flow trough body is inserted into the lap groove of another rapid flow trough body.

[0009] Furthermore, the upper end of the push rod is processed with a bevel, the bottom of the rapids trough body is in contact with the bevel, and a triangular block is connected and fixed to the upper position of the side of the push rod facing the baffle, and one side of the triangular block is in contact with one side of the baffle.

[0010] Furthermore, the cross section of the rapid flow trough body is U-shaped, and the upper positions of the two vertical parts of the rapid flow trough body are connected and fixed with edge guards, and the edge guards and the rapid flow trough body are an integrally formed structure.

[0011] Beneficial effects of the utility model:

[0012] 1. After excavating a trench on the slope of the highway shoulder, insert a plug post at the appropriate position at the bottom of the trench, then put the two plug-in cylinders on the U-shaped frame on the corresponding plug posts, and then place the rapids trough body in the U-shaped frame, so that the top rod in the U-shaped frame supports the baffle at the bottom of the rapids trough body, so that the top rod, U-shaped frame and plug posts can support the rapids trough body, without the need to trim the inner wall of the trench, which reduces the construction quality of the trench excavated on the slope.

[0013] 2. Install pull rods on both vertical parts of the U-shaped frame so that the structure formed by the pull rods and anchor plates is submerged in the ground. The pull rods and anchor plates work together to limit the position of the U-shaped frame. The pull rods and anchor plates increase the rooting range of the U-shaped frame in the ground and improve the stability of the U-shaped frame installation.

[0014] 3. When the heights of the plug posts that match the two plug-in cylinders at the bottom of the U-shaped frame are inconsistent, adjust the relative position between the limit plate and the stud so that after the structure formed by the limit plate and the stud is inserted into the plug-in cylinder, the position of the limit plate in the plug-in cylinder changes, and then when the plug-in cylinder is sleeved on the plug post, the limit plate limits the length of the plug post inserted in the plug-in cylinder, so that the two plug posts of different heights at the bottom of the U-shaped frame can support the U-shaped frame. When the plug-in cylinder is sleeved on the plug post, one end of the stud is inserted in the blind hole, so that the stud does not affect the insertion of the plug post in the plug-in cylinder. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Other features, objects and advantages of the present invention will become more apparent from the detailed description of the non-limiting embodiments with reference to the following drawings:

[0016] Figure 1 This is a structural diagram of a rapid flow drain trough of the utility model;

[0017] Figure 2This is a three-dimensional diagram of a rapid water trough according to the present invention from another perspective;

[0018] Figure 3 This is a schematic diagram of the assembly of a top rod, a plug-in tube and a U-shaped frame in a rapid water discharge trough of the utility model;

[0019] Figure 4 This is a schematic diagram of the exploded assembly of a plug post, a stud, a limit plate, a plug-in tube and a U-shaped frame in a rapid water drain trough of the utility model;

[0020] Figure 5 This is a three-dimensional diagram of a column inserted in a rapid water trough of the utility model;

[0021] In the figure: 1- rapids trough body, 2- overlapping plate, 3- plug-in column, 4- pointed head, 5- plug-in tube, 6- anchor plate, 7- pulling rod, 8- U-shaped frame, 9- overlapping groove, 10- edge guard, 11- stop bar, 12- top rod, 13- inclined surface, 14- triangle block, 15- internal threaded sleeve, 16- limit plate, 17- stud, 18- blind hole. DETAILED DESCRIPTION

[0022] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0023] See also Figure 1-Figure 3 The top end of the U-shaped frame 8 is respectively fitted with two parallel side surfaces of the rapid trough body 1 and a plurality of top rods 12 for supporting the barrier bar 11 are installed in the horizontal part of the U-shaped frame 8, wherein the upper end of the top rod 12 is processed with an inclined surface 13, and the bottom of the rapid trough body 1 is fitted with the inclined surface 13, and a triangular block 14 is connected and fixed to the upper position of the side of the top rod 12 facing the barrier bar 11, and one side of the triangular block 14 is fitted with one side of the barrier bar 11. The triangular block 14 and the inclined surface 13 increase the contact area between the top rod 12 and the bottom of the rapid trough body 1 and the barrier bar 11.

[0024] See Figure 1-Figure 5Two plug-in tubes 5 are connected and fixed at the bottom of the U-shaped frame 8, and a plug-in column 3 for being inserted into the ground is inserted in the plug-in tube 5. The lower end of the plug-in column 3 is connected and fixed with a pointed head 4. After excavating a trench on the slope 13 of the highway shoulder, the plug-in column 3 is inserted at a suitable position at the bottom of the trench, and then the two plug-in tubes 5 on the U-shaped frame 8 are respectively sleeved on the corresponding plug-in column 3, and then the rapid trough body 1 is placed in the U-shaped frame 8, so that the top rod 12 in the U-shaped frame 8 supports the baffle 11 at the bottom of the rapid trough body 1, so that the top rod 12, U-shaped frame 8 and plug-in column 3 can support the rapid trough body 1, and there is no need to trim the inner wall of the trench, which reduces the construction quality of excavating the trench on the slope.

[0025] See Figure 4 and Figure 5 , a limit plate 16 is provided in the plug-in tube 5 for limiting the length of the plug-in column 3 inserted in the plug-in tube 5. A threaded hole is opened in the middle of one side of the limit plate 16. A stud 17 is threadedly connected in the threaded hole. The upper end of the stud 17 contacts the lower surface of the horizontal part of the U-shaped frame 8. The lower end of the stud 17 is flush with the lower end of the plug-in tube 5. The upper surface of the plug-in column 3 is recessed downward to form a blind hole 18. The lower end of the stud 17 is inserted in the blind hole 18. When the height of the plug-in column 3 matched with the two plug-in tubes 5 at the bottom of the U-shaped frame 8 is inconsistent, adjust the limit plate 16 and the stud The relative position between 17 makes the structure formed by the limit plate 16 and the stud 17 change its position in the plug-in tube 5 after the limit plate 16 and the stud 17 are inserted into the plug-in tube 5, and then when the plug-in tube 5 is sleeved on the plug-in column 3, the limit plate 16 limits the length of the plug-in column 3 inserted in the plug-in tube 5, so that the two plug-in columns 3 of different heights at the bottom of the U-shaped frame 8 can support the U-shaped frame 8. When the plug-in tube 5 is sleeved on the plug-in column 3, one end of the stud 17 is inserted in the blind hole 18, so that the stud 17 does not affect the insertion of the plug-in column 3 in the plug-in tube 5.

[0026] See Figure 1-Figure 3 , a detachable pulling rod 7 is installed at the upper position of the two vertical parts of the U-shaped frame 8, wherein the upper position of the two vertical parts of the U-shaped frame 8 is installed with an internal threaded sleeve 15, and the outer surface of the end of the pulling rod 7 away from the anchor plate 6 is processed with an external thread, so that the end of the pulling rod 7 processed with the external thread is threadedly connected to the internal threaded sleeve 15, completing the assembly of the pulling rod 7 and the U-shaped frame 8, and the end of the pulling rod 7 away from the U-shaped frame 8 is connected and fixed with an anchor plate 6 for being submerged in the ground, and the pulling rod 7 is installed on the two vertical parts of the U-shaped frame 8, so that the structure formed by the pulling rod 7 and the anchor plate 6 is submerged in the ground, so that the pulling rod 7 and the anchor plate 6 work together to limit the position of the U-shaped frame 8, and the pulling rod 7 and the anchor plate 6 increase the rooting range of the U-shaped frame 8 in the ground, thereby improving the stability of the installation of the U-shaped frame 8.

[0027] See Figure 1A lap plate 2 is fixed to the inclined lower end of the rapid flow trough body 1, and the bottom of the rapid flow trough body 1 is recessed downward on one side away from the lap plate 2 to form a lap groove 9, so that the lap plate 2 on one rapid flow trough body 1 is inserted into the lap groove 9 of another rapid flow trough body 1, thereby realizing the lap connection of two adjacent rapid flow trough bodies 1.

[0028] Although this specification is described according to implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. 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 rapid flow trough, comprising a rapid flow trough body (1), characterized in that: The bottom of the rapid flow trough body (1) is connected and fixed with a baffle (11), the rapid flow trough body (1) is sleeved with a U-shaped frame (8), the two vertical parts of the U-shaped frame (8) are respectively fitted with two parallel side surfaces of the rapid flow trough body (1), the horizontal part of the U-shaped frame (8) is installed with a plurality of top rods (12) for supporting the baffle (11), the bottom of the U-shaped frame (8) is connected and fixed with two plug-in cylinders (5), the plug-in cylinders (5) are inserted with plug-in columns (3) for being inserted into the ground, and the lower ends of the plug-in columns (3) are connected and fixed with pointed heads (4).

2. A rapid water trough according to claim 1, characterized in that: A limit plate (16) is provided in the plug-in tube (5) for limiting the length of the plug-in column (3) inserted in the plug-in tube (5). A threaded hole is provided in the middle of one side of the limit plate (16). A stud (17) is threadedly connected in the threaded hole. The upper end of the stud (17) contacts the lower surface of the horizontal portion of the U-shaped frame (8). The lower end of the stud (17) is flush with the lower end of the plug-in tube (5). The upper surface of the plug-in column (3) is recessed downward to form a blind hole (18). The lower end of the stud (17) is inserted in the blind hole (18).

3. The rapid water trough according to claim 1, characterized in that: A detachable pulling rod (7) is installed at the upper position of the two vertical parts of the U-shaped frame (8), and an end of the pulling rod (7) away from the U-shaped frame (8) is connected and fixed with an anchor plate (6) for being submerged in the ground.

4. A rapid water sluice according to claim 3, characterized in that: Internal threaded sleeves (15) are installed at the upper positions of the two vertical parts of the U-shaped frame (8), and the outer surface of the end of the pulling rod (7) away from the anchor plate (6) is processed with external threads, and the end of the pulling rod (7) processed with external threads is threadedly connected to the internal threaded sleeve (15).

5. The rapid water trough according to claim 1, characterized in that: A lap plate (2) is connected and fixed to the inclined lower end of the rapid flow trough body (1); a side of the bottom of the rapid flow trough body (1) away from the lap plate (2) is recessed downward to form a lap groove (9); and a lap plate (2) on one rapid flow trough body (1) is inserted into the lap groove (9) of another rapid flow trough body (1).

6. The rapid water trough according to claim 1, characterized in that: The upper end of the push rod (12) is processed with an inclined surface (13), and the bottom of the rapid flow trough body (1) is in contact with the inclined surface (13). A triangular block (14) is connected and fixed to the upper position of the side of the push rod (12) facing the baffle (11), and one side of the triangular block (14) is in contact with one side of the baffle (11).

7. The rapid water trough according to claim 1, characterized in that: The cross section of the rapid flow trough body (1) is U-shaped, and edge guards (10) are connected and fixed to the upper positions of the two vertical parts of the rapid flow trough body (1), and the edge guards (10) and the rapid flow trough body (1) are an integrally formed structure.