Structure for quickly arranging water baffle

By designing a water-retaining plate structure, the problems of heavy sandbag cofferdams, high labor requirements, and susceptibility to erosion were solved. This resulted in a water-retaining wall that can be quickly deployed and has a good water-blocking effect, reducing labor and material costs and making it suitable for sudden rainfall situations.

CN224092393UActive Publication Date: 2026-04-07NANJING YINMAO LEAD-ZINC MINING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In existing technologies, sandbag cofferdams are heavy, require a large amount of labor, are slow, are easily eroded and damaged, have poor water-blocking effect, and have a short lifespan.

Method used

It adopts a water-blocking structure, including water-blocking side plates, water-blocking bottom plates, diagonal braces, locking blocks, support legs and rotating shafts. It can be quickly assembled through detachable connection and snap-fit ​​method. It uses engineering plastic materials and is equipped with anti-slip pads and water-proof rubber layers to form a water-blocking wall that can be quickly deployed.

Benefits of technology

It achieves rapid construction, simple operation, good water-blocking effect, and long service life, reducing labor and material costs, lowering the risk of flooding, and is suitable for sudden rainfall.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224092393U_ABST
    Figure CN224092393U_ABST
Patent Text Reader

Abstract

The utility model discloses a fast arrangement water fender structure which comprises a water fender body, and the water fender body comprises a water retaining side plate, a water retaining bottom plate, an inclined strut, a clamping block, a supporting foot and a rotating shaft. The water retaining side plate and the water retaining bottom plate are rotationally connected through a rotating shaft, supporting legs are connected to the four corners of the upper surface of the water retaining side plate, supporting legs are connected to the corners of the upper surfaces of the two ends of the side, away from the rotating shaft, of the water retaining bottom plate, and an anti-skid pad is connected to the top of each supporting leg. The upper surface of the water retaining side plate and the upper surface of the water retaining bottom plate are detachably connected through inclined struts, and the inclined struts enable the included angle between the water retaining side plate and the water retaining bottom plate to be 90 degrees. The upper surfaces of the water retaining side plates are further connected with clamping blocks, and the lower surfaces of the water retaining side plates and the lower surface of the water retaining bottom plate are jointly connected with a whole water-resisting layer; the clamping blocks between the multiple water retaining side plates are connected with the same strip-shaped rod in a clamped mode, so that the multiple water retaining side plates are connected side by side. The utility model has the advantages of simple operation, fast assembly speed, good water retaining effect and long service life.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model mainly relates to the safe field, and the related work such as preventing and treating water, such as ground various key area water retaining, underground filling stope temporary emergency water retaining and so on, specifically, a kind of fast arrangement water retaining board structure. BACKGROUND

[0002] During the sudden storm in summer, it is common that heavy rain pours into ground parking lot or similar area, and sandbag is generally piled as cofferdam. Sandbag is heavy and in large quantity, and the process of piling sandbag requires more labor, and the speed of piling sandbag is slow, and sandbag cofferdam is easily affected by water flow and wind force, and is easily washed and damaged, and the effect is not good, and the service life is relatively short. SUMMARY

[0003] The utility model provides a kind of fast arrangement water retaining board structure to solve the technical problems of the prior art, and the fast arrangement water retaining board structure is simple to operate, and the speed of assembling is fast, and the water retaining effect is good, and the service life is long.

[0004] To achieve the above technical purpose, the technical scheme adopted by the utility model is:

[0005] A kind of fast arrangement water retaining board structure, including water retaining board body, the water retaining board body includes water retaining side plate, water retaining bottom plate, inclined strut, clamping block, supporting leg and rotating shaft;

[0006] The water retaining side plate is rotatably connected with the water retaining bottom plate by rotating shaft, four corner positions on the upper surface of the water retaining side plate are all connected with supporting leg, the upper surface corner position of both ends of the side of the water retaining bottom plate away from the rotating shaft is all connected with supporting leg, the top of each supporting leg is all connected with antiskid pad, the upper surface of the water retaining side plate and the upper surface of the water retaining bottom plate are detachably connected by inclined strut, and the water retaining side plate and the water retaining bottom plate are at 90 degrees by inclined strut;The upper surface of the water retaining side plate is also connected with clamping block, and the lower surface of the water retaining side plate and the water retaining bottom plate is commonly connected with whole water barrier layer;The clamping block between multiple water retaining side plates is clamped with the same bar to realize the side-by-side connection between multiple water retaining side plates.

[0007] As a further improved technical scheme of the utility model, the supporting leg has 6, and the antiskid pad is triangular rubber pad, and the triangular rubber pad is bonded on the top of the supporting leg.

[0008] As a further improved technical scheme of the utility model, the rotating shaft includes multiple round tubes and long pins, both ends of one side of the water retaining side plate are connected with round tube, and the middle part of the water retaining bottom plate is connected with round tube, and the long pin is inserted into one round tube on the water retaining side plate, the round tube in the middle part of the water retaining bottom plate and another round tube on the water retaining side plate in sequence to realize the detachable connection between the water retaining side plate and the water retaining bottom plate.

[0009] As a further improved technical scheme of the utility model, the diagonal brace comprises a fixing foot, a connecting support rod and a short bolt, the water retaining side plate upper surface and the water retaining bottom plate upper surface are both connected with the fixing foot, the hole at one end of the connecting support rod is detachably connected with the hole on the fixing foot of the water retaining side plate through the short bolt, and the hole at the other end of the connecting support rod is detachably connected with the hole on the fixing foot of the water retaining bottom plate through the short bolt.

[0010] As a further improved technical scheme of the utility model, the clamping block is an L-shaped clamping block, the water retaining side plate upper surface is connected with one end of the clamping block so that a clamping groove is formed between the water retaining side plate upper surface and the clamping block, and one strip-shaped rod is clamped into the clamping groove between the water retaining side plate upper surface and the clamping block of each water retaining side plate so as to realize the side-by-side connection between the plurality of water retaining side plates.

[0011] As a further improved technical scheme of the utility model, the whole water retaining layer adopts water retaining rubber, and the water retaining rubber is bonded to the lower surfaces of the water retaining side plate and the water retaining bottom plate.

[0012] As a further improved technical scheme of the utility model, the fixing foot, the clamping block, the supporting leg and the round pipe in the rotating shaft in the water retaining side plate, the water retaining bottom plate and the diagonal brace are all made of engineering plastic.

[0013] The utility model has the advantages of:

[0014] When an emergency occurs, the water retaining plate body can be quickly pulled out, the water retaining side plate is turned over by 90 degrees, the short bolt and the connecting support rod are fixed, the water retaining side plate is placed at the required position, the clamping grooves between the upper surfaces of each water retaining side plate and the clamping blocks are clamped by square steel, and the water retaining wall is completed. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a side view of the water retaining side plate and the water retaining bottom plate in the water retaining plate structure arranged quickly.

[0016] Figure 2 It is a top view of the water retaining side plate in the water retaining plate structure arranged quickly.

[0017] Figure 3 It is a top view of the water retaining bottom plate in the water retaining plate structure arranged quickly.

[0018] Figure 4 It is a structure schematic view of the rotating shaft in the water retaining plate structure arranged quickly.

[0019] Figure 5The structural exploded view of the inclined strut in the quickly arranged water retaining plate structure.

[0020] Figure 6 The structural schematic view of the foot and the non-slip pad in the quickly arranged water retaining plate structure.

[0021] Figure 6 The top view of the foot (a).

[0022] Figure 6 The right side view of the foot (b).

[0023] Figure 6 The right side view of the foot after the top of the foot is bonded with the non-slip pad (c).

[0024] Figure 6 The top view of the non-slip pad (d).

[0025] Figure 7 The effect picture of the multiple quickly arranged water retaining plate structures being placed in superposition. DETAILED DESCRIPTION

[0026] The specific embodiments of the utility model are further explained below according to the drawings:

[0027] A quickly arranged water retaining plate structure, comprising a water retaining plate body, as shown in Figure 1 , the water retaining plate body comprises a water retaining side plate 1, a water retaining bottom plate 2, an inclined strut 3, a clamping block 4, a foot 5 and a rotating shaft 6.

[0028] As shown in Figures 1-3 , the water retaining side plate 1 and the water retaining bottom plate 2 are rotationally connected through the rotating shaft 6, four corner positions of the upper surface of the water retaining side plate 1 are all fixedly connected with the foot 5, the upper surface corner positions of both ends of the side, away from the rotating shaft 6, of the water retaining bottom plate 2 are all fixedly connected with the foot 5 through welding, the top of each foot 5 is bonded with the non-slip pad 7, the upper surface of the water retaining side plate 1 and the upper surface of the water retaining bottom plate 2 are detachably connected through the inclined strut 3 and the inclined strut 3 makes the included angle between the water retaining side plate 1 and the water retaining bottom plate 2 be 90 degrees; the upper surface of the water retaining side plate 1 is further connected with two clamping blocks 4, and the lower surfaces of the water retaining side plate 1 and the water retaining bottom plate 2 are commonly connected with the whole water isolation layer 8; the clamping blocks 4 between the multiple water retaining side plates 1 are clamped with the same bar-shaped rod to realize the side-by-side connection between the multiple water retaining side plates 1. Figure 2 and Figure 3 The foot 5 in

[0029] The foot 5 and the non-slip pad 7, as shown in Figure 6 , the foot 5 is six, the non-slip pad 7 is a triangular rubber pad, and the triangular rubber pad is bonded on the top of the foot 5. The foot 5 has the following functions: 1. strengthening the strength of the corner; 2. heightening, facilitating placement; 3. preventing slipping.

[0030] As shown in Figures 2-4 , the rotating shaft 6 includes a plurality of round tubes 6-1 and long pins 6-2, both ends of one side of the water retaining side plate 1 are welded and fixedly connected with the round tubes 6-1, the middle part of the water retaining bottom plate 2 is welded and fixedly connected with the round tube 6-1, the long pin 6-2 is inserted into the round tube 6-1 on the water retaining side plate 1, the round tube 6-1 in the middle part of the water retaining bottom plate 2 and the other round tube 6-1 on the water retaining side plate 1 in turn, thereby realizing detachable connection between the water retaining side plate 1 and the water retaining bottom plate 2. The tail part of the long pin 6-2 is provided with a hole, and a bent iron pin is inserted into the hole to prevent the long pin 6-2 from sliding out of the round tube 6-1.

[0031] As shown in Figure 5 , the inclined support 3 includes four fixed feet 3-1, a connecting support rod 3-2 and two short pins 3-3, the middle part of the upper surface of the water retaining side plate 1 and the middle part of the upper surface of the water retaining bottom plate 2 are respectively welded and fixedly connected with two fixed feet 3-1, one short pin 3-3 is inserted into the hole at one end of the connecting support rod 3-2 and the holes of the two fixed feet 3-1 on the water retaining side plate 1, thereby realizing detachable connection between the connecting support rod 3-2 and the fixed feet 3-1, the other short pin 3-3 is inserted into the hole at the other end of the connecting support rod 3-2 and the holes of the two fixed feet 3-1 on the water retaining bottom plate 2, thereby realizing detachable connection between the connecting support rod 3-2 and the fixed feet 3-1, the tail part of the short pin 3-3 is provided with a hole, and an iron pin is inserted into the hole to prevent the short pin 3-3 from sliding out of the hole of the fixed feet 3-1 or the hole at one end of the connecting support rod 3-2. The iron pin on the short pin 3-3 between one end of the connecting support rod 3-2 and the holes of the two fixed feet 3-1 on the water retaining bottom plate 2 is removed, and the short pin 3-3 is removed, the water retaining side plate 1 and the water retaining bottom plate 2 are placed flat, and can be placed in the shape as shown in Figure 7 , a plurality of flat water retaining plates are stacked, thereby forming the structure as shown in Figure 7 . The short pin 3-3 is made of round steel.

[0032] The clamping block 4 is an L-shaped clamping block, the upper surface of the water retaining side plate 1 is connected with one end of the clamping block 4, thereby forming a clamping groove between the upper surface of the water retaining side plate 1 and the clamping block 4, and a strip-shaped rod is clamped into the clamping groove between the upper surface of each water retaining side plate 1 and the clamping block 4, thereby realizing side-by-side connection between a plurality of water retaining side plates 1. The strip-shaped rod is made of square steel.

[0033] The whole water retaining layer 8 is made of a 10mm-thick waterproof, anti-skid and wear-resistant rubber layer (waterproof rubber layer), which is bonded to the lower surfaces of the water retaining side plate 1 and the water retaining bottom plate 2.

[0034] The water-blocking side plate 1, water-blocking bottom plate 2, fixed feet 3-1 in the diagonal brace 3, clamping blocks 4, support feet 5, and the round tube 6-1 in the rotating shaft 6 are all made of engineering plastics. Support feet 5 are made of plastic angle iron, and the height of the plastic angle iron is higher than the height of fixed feet 3-1.

[0035] After the water-retaining side plate 1 and the water-retaining bottom plate 2 are flipped 90 degrees, the connecting support rod 3-2 and the short pin 3-3 in the diagonal brace 3 are connected to the fixing feet 3-1 that are already fixed on the water-retaining side plate 1 and the water-retaining bottom plate 2, forming a structure as shown in the figure. Figure 1 The diagram shows an independent water-retaining plate structure. Multiple identical water-retaining plate structures can be overlapped and finally secured with square steel and the slots between the upper surface of each water-retaining side plate 1 and the locking block 4. The specific overlap length can be adjusted according to site requirements. Multiple water-retaining plate structures are arranged side by side and fixed with square steel to form a water-retaining wall.

[0036] like Figure 7 As shown, when stored, the water-blocking side plate 1 and the water-blocking bottom plate 2 can be rotated and laid flat for storage; the water-blocking side plate 1 and the water-blocking bottom plate 2 use a rubber layer to prevent water from splashing and slipping; making them easy to arrange, recycle and reuse.

[0037] Materials were cut according to the design. Except for the pins and the connecting support rod 3-2 on the back, all other parts were made of engineering plastics to reduce weight. Each fastener was welded to its designed position. Then, the water-retaining side plate 1 and the water-retaining bottom plate 2 were assembled using long pins 6-2, short pins 3-3, and connecting support rods 3-2. First, a 90-degree angle structure was assembled. Then, a water-resistant rubber layer was glued to the front (lower surface) of the water-retaining side plate 1 and the water-retaining bottom plate 2, starting from the water-retaining side plate 1 and continuing to the entire water-retaining bottom plate 2. Because the plate is designed to be rotatable and flat, the length of the water-resistant rubber layer required for the water-retaining side plate 1 and the water-retaining bottom plate 2 at a 90-degree angle is larger than that at a 180-degree angle. Therefore, a certain margin (about 1 / 4 of the outer diameter of the rotating shaft) needs to be left in the rotation axis area to ensure the movement of the rotating shaft.

[0038] In case of an emergency, quickly pull out the main body of the water-blocking plate, rotate the water-blocking side plate 1 90 degrees and fix it with short pins 3-3 and connecting support rods 3-2, place it in the required position, and then arrange them side by side. Use square steel to clamp the groove between the upper surface of each water-blocking side plate 1 and the clamping block 4, and the water-blocking wall is completed.

[0039] The advantages of this invention lie in its rapid molding speed, its ability to block water during most rainfall scenarios, its simplicity and convenience, and its ability to effectively reduce labor costs, material costs, and operation time, while significantly reducing the risk of flooding. The overall weight and volume of the rapid-deployment water-blocking structure of this invention are prepared and improved according to actual requirements, ensuring that the final water-blocking wall can completely stop the water flow.

[0040] The scope of protection of this utility model includes, but is not limited to, the above embodiments. The scope of protection of this utility model is defined by the claims. Any substitutions, modifications, or improvements to this technology that are easily conceived by those skilled in the art shall fall within the scope of protection of this utility model.

Claims

1. A quick-deployment water-baffle structure, characterized in that: The system includes a water-blocking plate body, which includes a water-blocking side plate (1), a water-blocking bottom plate (2), a diagonal brace (3), a locking block (4), a support leg (5), and a rotating shaft (6). The water-blocking side plate (1) and the water-blocking bottom plate (2) are rotatably connected by a rotating shaft (6). The four corners of the upper surface of the water-blocking side plate (1) are connected with feet (5). The two corners of the upper surface of the side of the water-blocking bottom plate (2) away from the rotating shaft (6) are connected with feet (5). Each foot (5) is connected with an anti-slip pad (7). The upper surface of the water-blocking side plate (1) and the upper surface of the water-blocking bottom plate (2) are detachably connected by a diagonal brace (3), and the diagonal brace (3) makes the angle between the water-blocking side plate (1) and the water-blocking bottom plate (2) 90 degrees. The upper surface of the water-blocking side plate (1) is also connected with a locking block (4). The lower surfaces of the water-blocking side plate (1) and the water-blocking bottom plate (2) are connected together with a whole water-proof layer (8). The locking blocks (4) between multiple water-blocking side plates (1) are locked with the same strip rod to realize the side-by-side connection between multiple water-blocking side plates (1).

2. The rapid deployment water-blocking plate structure according to claim 1, characterized in that: There are 6 legs (5), and the anti-slip pad (7) is a triangular rubber pad that is attached to the top of the leg (5).

3. The rapid deployment water-blocking plate structure according to claim 1, characterized in that: The rotating shaft (6) includes multiple round tubes (6-1) and a long pin (6-2). Both ends of one side of the water-blocking side plate (1) are connected to round tubes (6-1), and the middle part of the water-blocking bottom plate (2) is connected to a round tube (6-1). The long pin (6-2) is inserted into one round tube (6-1) on the water-blocking side plate (1), the round tube (6-1) in the middle of the water-blocking bottom plate (2), and another round tube (6-1) on the water-blocking side plate (1) in sequence, thereby realizing the detachable connection between the water-blocking side plate (1) and the water-blocking bottom plate (2).

4. The rapid deployment water-blocking plate structure according to claim 1, characterized in that: The diagonal brace (3) includes a fixed foot (3-1), a connecting support rod (3-2), and a short pin (3-3). The upper surface of the water-blocking side plate (1) and the upper surface of the water-blocking bottom plate (2) are both connected to the fixed foot (3-1). The hole at one end of the connecting support rod (3-2) is detachably connected to the hole on the fixed foot (3-1) on the water-blocking side plate (1) through the short pin (3-3). The hole at the other end of the connecting support rod (3-2) is detachably connected to the hole on the fixed foot (3-1) on the water-blocking bottom plate (2) through the short pin (3-3).

5. The rapid deployment water-blocking plate structure according to claim 1, characterized in that: The card block (4) is an L-shaped card block. The upper surface of the water-blocking side plate (1) is connected to one end of the card block (4), so that a card groove is formed between the upper surface of the water-blocking side plate (1) and the card block (4). A strip rod is inserted into the card groove between the upper surface of each water-blocking side plate (1) and the card block (4), thereby realizing the side-by-side connection between multiple water-blocking side plates (1).

6. The rapid deployment water-blocking plate structure according to claim 1, characterized in that: The entire waterproof layer (8) is made of waterproof rubber, which is bonded to the lower surface of the water-blocking side plate (1) and the water-blocking bottom plate (2).

7. The rapid deployment water-blocking plate structure according to claim 1, characterized in that: The fixed feet (3-1), clamps (4), supports (5), and the round tubes (6-1) in the water-blocking side plate (1), water-blocking bottom plate (2), diagonal brace (3), and rotating shaft (6) are all made of engineering plastics.