A storage device for use in water distribution construction or repair

By designing a combination of irregularly shaped panels with telescopic rods, screws, and rubber pads, the problems of poor appearance quality and damage to the exterior walls during the construction or maintenance of drainage systems were solved, achieving stable and balanced placement of items and improving construction efficiency and appearance quality.

CN224531941UActive Publication Date: 2026-07-21HEBEI CONSTR GRP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI CONSTR GRP
Filing Date
2025-07-24
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing support devices used for the construction or maintenance of drainage systems often lead to problems such as poor appearance quality of the drainage system after construction, incorrect slope, and damage to the exterior walls.

Method used

A design was created that includes two irregularly shaped panels arranged side by side. Each panel consists of two L-shaped folded plate structures connected by telescopic rods and screws. The uppermost vertical plate of the irregularly shaped panel rests against the exterior wall of the building, while the lower horizontal plate is fixed to the soil with fixing bolts. The horizontal support plate of the irregularly shaped panel is used to place items, and rubber pads are used to increase friction to ensure stability and balance.

Benefits of technology

It improves the appearance quality and construction integrity during the construction or maintenance of drainage systems, avoids the damage to the exterior walls caused by traditional methods, and enhances construction efficiency and applicability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of for water dispersion construction or maintenance's article placing device. Its structure includes two side -by-side arrangement's special-shaped plate, and each special-shaped plate is connected by two L type folding plate structure upside and downside;Upper L type folding plate structure includes first vertical plate and first horizontal plate, and lower L type folding plate structure includes second vertical plate and second horizontal plate, and first horizontal plate end portion is connected with second vertical plate upper end;The length of first horizontal plate is greater than water dispersion width;When water dispersion construction or maintenance, first vertical plate outer side face is abutted to building outer wall, and second horizontal plate is fixed in the soil outside water dispersion by fixed bolt. The utility model can be stably placed in water dispersion, and first horizontal plate can carry air conditioner outdoor unit, distribution box and other articles, ensure the integrity and appearance quality of water dispersion maintenance construction, avoid the problem that air conditioner outdoor unit, distribution box and other articles may appear in traditional water dispersion maintenance construction, such as brick, reinforcement support, outer wall shot fixing, improve construction quality.
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Description

Technical Field

[0001] This utility model relates to a construction tool, specifically a device for placing objects during the construction or maintenance of drainage systems. Background Technology

[0002] As the construction industry enters a new stage of high-quality development, the requirements for construction quality and safety have become particularly stringent. Every detail in the construction process receives unprecedented attention to ensure the superior quality of the final product. Outdoor drainage, as a fundamental yet crucial aspect of building construction, directly impacts the overall aesthetics and functionality of the building.

[0003] A drainage apron is a sloping surface around the perimeter of a building to protect its foundation from rainwater erosion. This slope directs rainwater away from the roof, creating a drainage channel that is an effective way to protect the building's foundation. Drainage aprons are often installed towards the end of construction, but at this stage, items such as air conditioner units and electrical boxes may be stored in the area, which can interfere with construction. Furthermore, items placed on the drainage apron can also hinder future repairs.

[0004] In existing technologies, the following methods are commonly used to place items during the construction or maintenance of drainage systems: 1. Installing reinforcing bars on the exterior wall and placing items such as air conditioner units and electrical boxes on the bars. The reinforcing bars are then removed after construction. This method damages the exterior wall and is time-consuming and labor-intensive. 2. Setting up reinforcing bar supports (or reinforcing bar brackets) and placing items at the drainage location on them. However, since the height of these supports is usually only 5cm or 10cm, it still affects construction. 3. Using brick supports to place items on raised bricks. This method requires removing the brick supports later and then constructing the brick-supported area. Because the brick-supported area is added later, it can lead to uneven drainage, inconsistent slope, and an unsightly appearance. These problems not only affect the building's appearance but may also impact the drainage of the drainage system later on. Utility Model Content

[0005] The purpose of this utility model is to provide a storage device for the construction or maintenance of a drainage system, so as to solve the problems that existing storage devices for the construction or maintenance of drainage systems often lead to poor appearance quality, incorrect slope, and damage to the exterior wall of the drainage system after construction.

[0006] This utility model is implemented as follows:

[0007] A storage device for use during the construction or maintenance of a drainage system includes two identical irregularly shaped plates arranged side by side. Each irregularly shaped plate is composed of two L-shaped folded plate structures connected sequentially from top to bottom with the same folding direction. The upper L-shaped folded plate structure includes a first vertical plate and a first horizontal plate, and the lower L-shaped folded plate structure includes a second vertical plate and a second horizontal plate. The free end of the first horizontal plate is connected to the upper end of the second vertical plate. The two irregularly shaped plates are connected together by corresponding horizontal plates and corresponding vertical plates. The length of the first horizontal plate is greater than the width of the drainage system. During the construction or maintenance of the drainage system, the outer side of the first vertical plate rests against the exterior wall of the building, and the second horizontal plate is fixed in the soil outside the drainage system by fixing bolts. The first horizontal plate is used to place items such as air conditioner outdoor units and electrical distribution boxes.

[0008] In the above scheme, preferably, the two opposite sides of the two first horizontal plates are connected by a telescopic rod and a screw, the two opposite sides of the two first vertical plates are connected by a telescopic rod, and the two opposite sides of the two second vertical plates are connected by a telescopic rod.

[0009] In the above scheme, preferably, the telescopic rod includes two fixed sleeves and one insertion rod. The two fixed sleeves are respectively set on the opposite sides of the horizontal or vertical plate of the L-shaped folding plate structure. The insertion rod is inserted into the two fixed sleeves and can slide within the fixed sleeves.

[0010] In the above scheme, preferably, a limiting mechanism is provided at the ends of the insertion rod and the fixed sleeve to prevent the insertion rod from slipping out of the fixed sleeve.

[0011] In the above-described scheme, preferably, fixing sleeves are fixedly installed at the middle positions of the two opposite sides of the two first horizontal plates. A screw passes laterally through the outer side of one of the first horizontal plates, exits through the fixing sleeve, and extends into the fixing sleeve on the side of the other first horizontal plate. The inner wall of the fixing sleeve on the side of the other first horizontal plate is provided with an internal thread that matches the external thread of the screw. By rotating the screw and adjusting its length, the distance between the two irregularly shaped plates can be adjusted.

[0012] In the above scheme, preferably, a rotary knob is provided at the end of the screw that extends out of the first horizontal plate.

[0013] In the above scheme, preferably, a rubber pad is provided on the outer side of the first vertical plate. By providing the rubber pad, the friction between the first vertical plate and the outer wall of the building can be increased.

[0014] In the above scheme, preferably, the first vertical plate, the second vertical plate, the first horizontal plate, and the second horizontal plate are all made of 3mm thick stainless steel plate.

[0015] This utility model connects two irregularly shaped panels via telescopic rods and screws. The uppermost vertical panel of the irregularly shaped panels rests against the exterior wall of the building, while the lowermost horizontal panel is fixed to the soil outside the drainage ditch using bolts, allowing the irregularly shaped panels to be stably placed above the drainage ditch. The horizontal support plate (i.e., the first horizontal plate) within the irregularly shaped panels can support items such as air conditioner outdoor units and electrical distribution boxes, ensuring the integrity and appearance quality of the drainage ditch maintenance work. This avoids the problems that may occur in traditional drainage ditch maintenance work, such as the need for brick supports, steel reinforcement brackets, and drilling holes in the exterior wall for fixing items like air conditioner outdoor units and electrical distribution boxes, thus improving construction quality. The even distribution of the telescopic rods and screws, along with the coordinated use of the fixing bolts and rubber pads, provides uniform support to the horizontal support plate (i.e., the first horizontal plate) of the irregularly shaped panels, enhancing the stability and balance of the overall structure. The screws and their end knobs allow workers to quickly adjust the spacing between the irregularly shaped panels without the need for additional tools, improving construction efficiency. By adjusting the length of the screws, different items can be placed, enhancing the applicability of the tools. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model.

[0017] Figure 2 This is a reference diagram showing the usage state of this utility model.

[0018] In the diagram: 1. First vertical plate; 2. Rubber pad; 3. Telescopic rod; 4. Screw; 5. Rotary knob; 6. Second horizontal plate; 7. Fixing bolt; 8. First horizontal plate; 9. Second vertical plate. Detailed Implementation

[0019] like Figure 1 As shown, the storage device for construction or maintenance of drainage systems provided by this utility model includes two irregularly shaped plates arranged side by side, with identical structures. Each irregularly shaped plate consists of two L-shaped folded plates connected sequentially to form a stepped or stepped structure. Specifically, each irregularly shaped plate includes a first vertical plate 1, a second vertical plate 9, a first horizontal plate 8, and a second horizontal plate 6. The first vertical plate 1 and the first horizontal plate 8 are connected to form a first L-shaped folded plate structure, and the second vertical plate 9 and the second horizontal plate 6 are connected to form a second L-shaped folded plate structure. The first L-shaped folded plate structure is located on top, and the second L-shaped folded plate structure is located on the bottom, with the two L-shaped folded plate structures folding in the same direction. When connected, the free end of the first horizontal plate 8 is connected to the upper end of the second vertical plate 9, achieving sequential connection of the two L-shaped folded plate structures. The connection of the two L-shaped folded plate structures forms a stepped or stepped structure, creating a "W"-shaped structure similar to a right-angled structure.

[0020] The first vertical plate 1, the second vertical plate 9, the first horizontal plate 8, and the second horizontal plate 6 are all made of 3mm thick stainless steel plate. The stainless steel material, with its corrosion resistance and wear resistance, ensures the stability and reliability of the irregular plate in long-term use.

[0021] In this embodiment, two irregularly shaped plates are arranged side by side and connected by a telescopic rod 3 and a screw 4. Specifically, the two opposite sides of the two first horizontal plates 8 are connected by a telescopic rod 3 and a screw 4, the two opposite sides of the two first vertical plates 1 are connected by a telescopic rod 3, and the two opposite sides of the two second vertical plates 9 are connected by a telescopic rod 3.

[0022] Taking the first horizontal plate 8 as an example, the structure of the telescopic rod 3 is as follows: Fixed sleeves are fixedly installed on the two opposite sides of the two first horizontal plates 8. The two fixed sleeves are connected by a rod, with both ends of the rod inserted into the two fixed sleeves. Moving the first horizontal plate 8 allows the rod to move within the fixed sleeves, thus achieving a sliding connection between the two fixed sleeves. A limiting mechanism is provided at the ends of the rod and the fixed sleeves to prevent the rod from slipping out of the fixed sleeves. The limiting mechanism can be based on existing technology; for example, it can be limited by using a ball bearing and a slot. A ball bearing is installed on the rod, and a slot is provided on the fixed sleeve. When the rod slides within the fixed sleeve, the ball bearing is compressed into the rod wall. Once the rod is about to slip out of the fixed sleeve, the ball bearing springs into the slot of the fixed sleeve, locking the positions of both and preventing the rod from slipping out.

[0023] The two opposite sides of the two first horizontal plates 8 are connected by two telescopic rods 3 and a screw 4. The screw 4 is located in the middle of the side of the first horizontal plate 8, and the two telescopic rods 3 are respectively located on both sides of the screw 4, that is, the two telescopic rods 3 are respectively located at the ends of the side of the first horizontal plate 8.

[0024] The two first vertical plates 1 and the two second vertical plates 9 are connected by telescopic rods 3.

[0025] The screw 4 has the following structure: a fixing sleeve is fixedly installed at the middle of the two opposite sides of the two first horizontal plates 8. The screw 4 passes through the first horizontal plate 8 from the outer side of one of the first horizontal plates 8 and exits through the fixing sleeve, extending into the fixing sleeve on the side of the other first horizontal plate 8. The inner wall of the fixing sleeve on the side of the other first horizontal plate 8 is provided with an internal thread. The external thread of the screw 4 matches the internal thread on the inner wall of the fixing sleeve, so that the distance between the two first horizontal plates 8 can be adjusted under the drive of the screw 4.

[0026] A rotary knob 5 is provided at the end of the screw 4 extending to the outside of the first horizontal plate 8 to facilitate manual rotation of the screw 4. Normally, the rotary knob 5 is pressed against the outer edge of the first horizontal plate 8. When the screw 4 is rotated by the rotary knob 5, the end of the screw 4 can move forward or backward along the internal thread of the fixing sleeve away from the rotary knob 5. The inner wall of the fixing sleeve near the rotary knob 5 may or may not have an internal thread. A hole is provided on the first horizontal plate 8 through which the screw 4 passes for the screw 4 to pass.

[0027] The distance between the two first horizontal plates 8 is adjusted by screw 4, and the telescopic rod 3 extends and retracts accordingly. When the distance between the two first horizontal plates 8 is adjusted to a suitable distance, both screw 4 and telescopic rod 3 stop moving, and the connection between the two irregular plates is achieved by screw 4 and telescopic rod 3. The cooperation between screw 4 and telescopic rod 3 makes the connection between the two irregular plates highly stable.

[0028] A rubber pad 2 is provided on the side of the first vertical plate 1 away from the first horizontal plate 8. When installed, the rubber pad 2 rests against the exterior wall of the building. Figure 2 As shown. Rubber pads 2 are installed to enhance the friction between the first vertical plate 1 and the outer wall.

[0029] The length of the first horizontal plate 8 is greater than the width of the drainage apron. Therefore, when the device is placed at the drainage apron location, the first vertical plate 1 rests against the building's exterior wall via rubber pads 2, and the first horizontal plate 8 is positioned above the drainage apron. The vertical distance between the first horizontal plate 8 and the drainage apron is determined by the height of the second vertical plate 9. The second vertical plate 9 is typically set at a suitable height to meet the construction requirements of the drainage apron below the first horizontal plate 8. The second horizontal plate 6, connected to the second vertical plate 9, is placed on the ground outside the drainage apron and is fixed to the ground by fixing bolts 7. Each second horizontal plate 6 is fixed by two fixing bolts 7, providing uniform support and enhancing the overall structural balance and stability. The outer edge of the second horizontal plate 6 can be designed as an outwardly sloping structure.

[0030] With the help of the fixing bolts 7 and the first vertical plate 1, the storage device can be stably and firmly fixed above the apron. Items such as air conditioner outdoor units and distribution boxes can be placed on the two first horizontal plates 8, and the distance between the two first horizontal plates 8 can be adjusted according to the size of the items. During apron construction or maintenance, workers can easily carry out construction or maintenance below the first horizontal plates 8. Because the setting of this storage device can ensure that the apron construction is completed in one go, it ensures the integrity and appearance quality of the apron maintenance construction, and it can also place items at the apron location.

Claims

1. A device for placing objects during the construction or maintenance of drainage systems, characterized in that, It includes two identical irregularly shaped plates arranged side by side. Each irregularly shaped plate is composed of two L-shaped folded plate structures connected sequentially from top to bottom with the same folding direction. The upper L-shaped folded plate structure includes a first vertical plate and a first horizontal plate, and the lower L-shaped folded plate structure includes a second vertical plate and a second horizontal plate. The free end of the first horizontal plate is connected to the upper end of the second vertical plate. The two irregularly shaped plates are connected together by corresponding horizontal and vertical plates. The length of the first horizontal plate is greater than the width of the drainage. During the construction or maintenance of the drainage, the outer side of the first vertical plate rests against the outer wall of the building, and the second horizontal plate is fixed in the soil outside the drainage by fixing bolts.

2. The device for placing objects during the construction or maintenance of a drainage system according to claim 1, characterized in that, The two opposite sides of the two first horizontal plates are connected by telescopic rods and screws, the two opposite sides of the two first vertical plates are connected by telescopic rods, and the two opposite sides of the two second vertical plates are connected by telescopic rods.

3. The device for placing objects during the construction or maintenance of a drainage system according to claim 2, characterized in that, The telescopic rod includes two fixed sleeves and one insertion rod. The two fixed sleeves are respectively set on the opposite sides of the horizontal or vertical plate of the L-shaped folding plate structure. The insertion rod is inserted into the two fixed sleeves and can slide within the fixed sleeves.

4. The device for placing objects during the construction or maintenance of a drainage system according to claim 3, characterized in that, A limiting mechanism is provided at the ends of the insertion rod and the fixed sleeve to prevent the insertion rod from slipping out of the fixed sleeve.

5. The device for placing objects during the construction or maintenance of a drainage system according to claim 2, characterized in that, Fixed sleeves are fixedly installed at the middle of the two opposite sides of the two first horizontal plates. The screw passes through the first horizontal plate laterally from the outer side of one of the first horizontal plates and exits through the fixed sleeve, extending into the fixed sleeve on the side of the other first horizontal plate. The inner wall of the fixed sleeve on the side of the other first horizontal plate is provided with an internal thread that matches the external thread of the screw.

6. The device for placing objects during the construction or maintenance of a drainage system according to claim 5, characterized in that, A rotary knob is provided at the end of the screw that extends out of the first horizontal plate.

7. The device for placing objects during the construction or maintenance of a drainage system according to claim 1, characterized in that, A rubber pad is provided on the outer side of the first vertical plate.

8. The device for placing objects during the construction or maintenance of a drainage system according to claim 1, characterized in that, The first vertical plate, the second vertical plate, the first horizontal plate, and the second horizontal plate are all made of 3mm thick stainless steel plate.