Attractive and reliable roof waterproof structure

By designing a multi-layer rainproof structure and water-impregnation sensor, the leakage problem of existing roof waterproof structures is solved, timely discovery and automatic cleaning are achieved, and the reliability and maintenance convenience of the waterproof structure are improved.

CN223226959UActive Publication Date: 2025-08-15NINGBO CHUANGLIAN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422574979.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-08-15
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

As the existing roof waterproof structure increases with the increase of use, cracks are prone to causing rainwater leakage, and leakage is usually discovered and maintained after being discovered indoors.

Method used

Design a beautiful and reliable roof waterproof structure, including a multi-layer rainproof structure and water-soaking sensor, which blocks rainwater under normal circumstances and is discharged in time through the second rain cover. The first rain cover blocks and guides rainwater into the water collection tank when leakage, and combines support components, collection components and cleaning components to achieve automatic cleaning and timely repairs.

Benefits of technology

It realizes timely detection and treatment before leakage, reduces rainwater leakage, automatically cleans components to prevent debris from being blocked, and improves the reliability of roof waterproofing and maintenance convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of roof waterproofing, in particular to an attractive and reliable roof waterproof structure which comprises a roof plate, a parapet wall, a supporting assembly, a collecting assembly, a drainage assembly and a cleaning assembly, the supporting assembly is arranged on one side of the parapet wall and located above the roof plate, a supporting plate is fixedly installed above the parapet wall, and the collecting assembly is arranged above the supporting plate. The second rain baffle is fixedly installed above the supporting plate, the first rain baffle is arranged above the supporting assembly, the first water collecting tank is fixedly installed on one side of the first rain baffle, two sets of first flow guide plates are fixedly installed in the first water collecting tank, and the water immersion sensor is located between the two sets of first flow guide plates; according to the utility model, waterproof work is carried out through the second rain baffle under the normal condition, rainwater is shielded and discharged in time, the first rain baffle is arranged to shield seepage water when the second rain baffle leaks, the seepage water is guided into the first water collecting tank to be discharged, and personnel are reminded to carry out maintenance through the water sensor.
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Description

Technical Field

[0001] The utility model relates to the technical field of roof waterproofing, in particular to an aesthetically pleasing and reliable roof waterproofing structure. Background Art

[0002] Roof waterproofing is a vital part of construction, which is directly related to the durability and living comfort of the building;

[0003] However, the current roof waterproof structure will develop cracks as it is used for a long time. Then, rainwater will seep in during heavy rain. Usually, the water seepage is not discovered until the traces of water seepage are found indoors, which makes it difficult to maintain the waterproof structure in time.

[0004] Therefore, with respect to the above-mentioned current roof waterproof structures, as the use time increases, these waterproof structures will have some cracks, and then rainwater will seep in during heavy rain. Usually, the water seepage can be discovered only after the traces of water seepage are found indoors, which makes it inconvenient to maintain the waterproof structure in time. In order to design a beautiful and reliable roof waterproof structure, a redundant design of a multi-layer rainproof structure can prevent the waterproof structure from affecting the house when leakage occurs. Utility Model Content

[0005] In order to overcome the problem that the current roof waterproof structure will develop some cracks as the use time increases, and then rainwater will seep in when it rains heavily. Usually, the water seepage can only be discovered after the signs of water seepage are found indoors, which makes it difficult to maintain the waterproof structure in time.

[0006] The technical solution of the present utility model is: a beautiful and reliable roof waterproof structure, including a roof panel, a parapet, a support assembly, a collecting assembly, a drainage assembly and a cleaning assembly. The supporting assembly is arranged on one side of the parapet, and the supporting assembly is located above the roof panel. A supporting plate is fixedly installed above the parapet, a second rain shield is fixedly installed above the supporting plate, a first rain shield is arranged above the supporting assembly, a first sump is fixedly installed on one side of the first rain shield, two groups of first guide plates are fixedly installed inside the first sump, a water immersion sensor is fixedly installed inside the first sump, the water immersion sensor is located between the two groups of first guide plates, a discharge pipe is arranged on one side of the first sump, the discharge pipe is connected with the first sump, the discharge pipe passes through the supporting plate, the collecting assembly is arranged on one side of the parapet, the drainage assembly is arranged below the collecting assembly, the cleaning assembly is arranged below the collecting assembly, and the cleaning assembly is located on one side of the drainage assembly.

[0007] Preferably, the first rain shield is installed by setting a support assembly, the second rain shield is installed by setting a support plate, the roof is shielded and protected when it rains by setting the second rain shield, the roof panel is protected when the second rain shield leaks by setting the first rain shield, rainwater falling on the first rain shield is collected by setting a first trough, the collected rainwater is guided to flow to the discharge pipe and discharged into the collecting assembly by setting a guide plate, a water immersion sensor can send a signal when rainwater is collected in the first trough, reminding outsiders that the second rain shield has leaked, the model of the water immersion sensor is WI-100, rainwater falling on the second rain shield is collected by setting a collecting assembly, rainwater collected by the collecting assembly is discharged in a centralized manner by setting a drainage assembly, and the collecting assembly can be automatically cleaned by setting a cleaning assembly.

[0008] Preferably, the support assembly includes a mounting plate and a support bracket. The mounting plate is fixedly installed on one side of the parapet. Multiple groups of mounting plates are provided. The support bracket is highly installed between the multiple groups of mounting plates. The support bracket is located below the first rain shield and is fixedly connected to the first rain shield. The support bracket is installed by setting the mounting plate, and the first rain shield is supported by setting the support bracket.

[0009] Preferably, the collection assembly includes a second water collecting trough and a second guide plate. The second water collecting trough is fixedly installed on one side of the parapet, and two sets of second guide plates are fixedly installed inside the second water collecting trough. The rainwater falling on the second rain shield is collected by setting the second water collecting trough, and the rainwater collected by the second rain collecting trough is diverted by setting the second guide plate and discharged centrally through the drainage assembly.

[0010] Preferably, the collecting assembly includes a first filter plate and a second filter plate, the second filter plate is fixedly mounted inside the second water collecting trough, the second filter plate is located on one side of the second guide plate, the first filter plate is fixedly mounted above the second filter plate, the second filter plate is fixedly connected to the second water collecting trough, the first filter plate is tilted, and the first filter plate is located above the second guide plate; the interior of the second water collecting trough is separated by setting the second filter plate, and the rainwater falling on the second rain shield is filtered by setting the first filter plate, so that the rainwater falls into the second guide plate below and is discharged in a concentrated manner, and the debris is guided to one side of the first filter plate, and the excess water in the debris can also pass through the filter plate back to the second guide plate for concentrated discharge.

[0011] Preferably, the drainage assembly includes a drain pipe and a fixing frame. The drain pipe is arranged below the second water collecting trough. The drain pipe is connected to the second water collecting trough. The drain pipe is located between the two sets of second guide plates. The fixing frame is fixedly installed on the periphery of the drain pipe. The rainwater guided by the second guide plates is discharged in a centralized manner by setting the drain pipe, and the drain pipe is installed by setting the fixing frame.

[0012] Preferably, the cleaning component includes a bottom cover, a spring hinge and a magnetic strip. The bottom cover is arranged below the second water collection tank. The bottom cover is rotatably connected by a spring hinge. There are multiple groups of spring hinges. The magnetic strip is fixedly installed on one side of the second water collection tank, and the magnetic strip is magnetically connected to the bottom cover. The bottom cover is provided to block one side of the first filter plate in the second water collection tank, and the bottom cover is installed by providing a spring hinge, and the bottom cover is kept closed, and the bottom cover is fixed by providing a magnetic strip.

[0013] Preferably, a waterproof layer is provided above the roof panel, and convex strips are fixedly installed between the roof panel and the parapet; the waterproof layer is provided to protect the roof panel, and the convex strips are provided to prevent rainwater from accumulating between the parapet and the roof panel.

[0014] Beneficial effects of the utility model:

[0015] 1. Compared with the existing roof waterproofing structures, cracks will appear in these waterproofing structures over time, and rainwater will seep in during heavy rain. Usually, the water seepage is not discovered until the traces of water seepage are found indoors, making it difficult to maintain the waterproofing structure in a timely manner. The utility model uses the second rain shield to perform waterproofing work under normal circumstances, blocking rainwater and draining it in time. When the second rain shield leaks, the first rain shield is provided to block the seepage water and guide it to the first sump for drainage. The water sensor also reminds personnel to perform maintenance.

[0016] 2. The second filter plate is used to separate the interior of the second water collection tank. The first filter plate filters the rainwater falling from the second rain shield, allowing the rainwater to fall into the second guide plate below for centralized discharge, and guide the debris to one side of the first filter plate. The excess water in the debris can also pass through the filter plate back to the second guide plate for centralized discharge, which can effectively prevent debris from clogging the drain pipe and affecting the drainage effect.

[0017] 3. Use the bottom cover to block one side of the first filter plate in the second water collection tank, install the bottom cover through the spring hinge, and keep the bottom cover closed. Fix the bottom cover with the magnetic strip. When too much debris accumulates, gravity will press the bottom cover away from the magnetic strip and rotate through the spring hinge, so that the debris falls out of the second water collection tank. There is no need to climb up to clean the water collection tank. The spring hinge will drive the bottom cover back to its original position after the debris falls out. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 Shown is a first three-dimensional structural diagram of the beautiful and reliable roof waterproof structure of the utility model;

[0019] Figure 2 Shown is a schematic diagram of the cross-sectional three-dimensional structure of the beautiful and reliable roof waterproof structure of the present utility model;

[0020] Figure 3 Shown is a schematic diagram of the cross-sectional three-dimensional structure of the first water collection tank of the beautiful and reliable roof waterproof structure of the present utility model;

[0021] Figure 4 Shown is a schematic diagram of the first cross-sectional three-dimensional structure of the second water collection tank of the beautiful and reliable roof waterproof structure of the present utility model;

[0022] Figure 5 Shown is a schematic diagram of the second cross-sectional three-dimensional structure of the second water collecting tank of the beautiful and reliable roof waterproof structure of the present utility model;

[0023] Figure 6 Shown is a second three-dimensional structural diagram of the beautiful and reliable roof waterproof structure of the utility model;

[0024] Explanation of the accompanying reference numerals: 1. Roof panel; 2. Parapet; 201. First rain shield; 202. Second rain shield; 203. Support plate; 204. First water collecting trough; 205. First guide plate; 206. Water immersion sensor; 207. Discharge pipe; 301. Mounting plate; 302. Support bracket; 401. Second water collecting trough; 402. Second guide plate; 403. First filter plate; 404. Second filter plate; 501. Drain pipe; 502. Fixing frame; 601. Bottom cover; 602. Spring hinge; 603. Magnetic strip; 701. Waterproof layer; 702. Raised strip. DETAILED DESCRIPTION

[0025] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0026] See also Figures 1-6The utility model provides an embodiment: a beautiful and reliable roof waterproof structure, including a roof panel 1, a parapet 2, a support assembly, a collection assembly, a drainage assembly and a cleaning assembly. The support assembly is arranged on one side of the parapet 2, the support assembly is located above the roof panel 1, a support plate 203 is fixedly installed above the parapet 2, a second rain shield 202 is fixedly installed above the support plate 203, a first rain shield 201 is arranged above the support assembly, and a first water collecting trough 204 is fixedly installed on one side of the first rain shield 201. On the side, two sets of first guide plates 205 are fixedly installed inside the first water collecting tank 204, the water immersion sensor 206 is fixedly installed inside the first water collecting tank 204, the water immersion sensor 206 is located between the two sets of first guide plates 205, the discharge pipe 207 is arranged on one side of the first water collecting tank 204, the discharge pipe 207 is connected to the first water collecting tank 204, the discharge pipe 207 passes through the support plate 203, the collecting component is arranged on one side of the parapet 2, the drainage component is arranged below the collecting component, and the cleaning component is arranged on the collecting component. Below, the cleaning component is located on one side of the drainage component; the first rain shield 201 is installed by setting a support component, the second rain shield 202 is installed by setting a support plate 203, the roof protection is shielded when it rains by setting the second rain shield 202, the roof plate 1 is protected by setting the first rain shield 201 when the second rain shield 202 leaks, the rainwater falling on the first rain shield 201 is collected by setting a first water collecting trough 204, and the rainwater falling on the first rain shield 201 is guided by setting a first guide plate 205. The collected rainwater flows to the discharge pipe 207 and is discharged into the collection component. By setting a water immersion sensor 206, a signal can be sent when rainwater is collected in the first sump 204 to remind outsiders that the second rain shield 202 has leaked. The model of the water immersion sensor 206 is WI-100. By setting a collection component, the rainwater falling on the second rain shield 202 can be collected, and by setting a drainage component, the rainwater collected by the collection component can be discharged in a centralized manner. By setting a cleaning component, the collection component can be automatically cleaned.

[0027] See also Figure 1-Figure 3 In this embodiment, the support assembly includes a mounting plate 301 and a support bracket 302. The mounting plate 301 is fixedly installed on one side of the parapet 2. There are multiple groups of mounting plates 301. The support bracket 302 is highly installed between the multiple groups of mounting plates 301. The support bracket 302 is located below the first rain shield 201. The support bracket 302 is fixedly connected to the first rain shield 201; the support bracket 302 is installed by setting the mounting plate 301, and the first rain shield 201 is supported by setting the support bracket 302; a waterproof layer 701 is provided above the roof panel 1, and a convex strip 702 is fixedly installed between the roof panel 1 and the parapet 2; the roof panel 1 is protected by setting the waterproof layer 701, and the convex strip 702 can prevent rainwater from accumulating between the parapet 2 and the roof panel 1.

[0028] See also Figure 4-Figure 6 In this embodiment, the collection component includes a second water collecting trough 401 and a second guide plate 402. The second water collecting trough 401 is fixedly installed on one side of the parapet 2. Two sets of second guide plates 402 are fixedly installed inside the second water collecting trough 401. The rainwater falling on the second rain shield 202 is collected by setting the second water collecting trough 401. The second guide plate 402 is set to guide the collected rainwater in the second rain collecting trough and discharge it centrally through the drainage component. The collection component includes a first filter plate 403 and a second filter plate 404. The second filter plate 404 is fixedly installed inside the second water collecting trough 401. The second filter plate 404 is located on one side of the second guide plate 402, the first filter plate 403 is fixedly installed above the second filter plate 404, the second filter plate 404 is fixedly connected to the second water collecting tank 401, the first filter plate 403 is tilted, and the first filter plate 403 is located above the second guide plate 402; the interior of the second water collecting tank 401 is divided by setting the second filter plate 404, and the rainwater falling on the second rain shield 202 is filtered by setting the first filter plate 403, so that the rainwater falls into the second guide plate 402 below and is discharged centrally, and the debris is guided to one side of the first filter plate 403 , the excess water in the debris can also be returned to the second guide plate 402 through the filter plate for centralized discharge; the drainage assembly includes a drainage pipe 501 and a fixing frame 502, the drainage pipe 501 is arranged below the second water collecting tank 401, the drainage pipe 501 is connected to the second water collecting tank 401, the drainage pipe 501 is located between the two sets of second guide plates 402, and the fixing frame 502 is fixedly installed on the periphery of the drainage pipe 501; the rainwater guided by the second guide plate 402 is discharged in a centralized manner by setting the drainage pipe 501, and the drainage pipe 501 is installed by setting the fixing frame 502; the cleaning assembly includes a bottom cover 6 01. Spring hinge 602 and magnetic strip. The bottom cover 601 is arranged below the second water collection tank 401. The bottom cover 601 is rotatably connected by the spring hinge 602. There are multiple groups of spring hinges 602. The magnetic strip 603 is fixedly installed on one side of the second water collection tank 401. The magnetic strip 603 is magnetically connected to the bottom cover 601. The bottom cover 601 is provided to block one side of the first filter plate 403 in the second water collection tank 401. The bottom cover 601 is installed by providing a spring hinge 602, and the bottom cover 601 is kept closed. The bottom cover 601 is fixed by providing a magnetic strip 603.

[0029] During operation, the second rain shield 202 is installed using the support plate 203, and the first rain shield 201 is installed using the support bracket 302;

[0030] During normal use, the second rain shield 202 is used to waterproof the roof panel 1. Rainwater falls on the second rain shield 202 and flows down the second rain shield 202 into the second water collecting tank 401.

[0031] The second guide plate 402 is used to guide and collect the rainwater that falls in, and then discharge it through the drainage pipe 501.

[0032] The first filter plate 403 is used to filter the rainwater so that debris falls on one side of the first filter plate 403, thereby preventing the debris from clogging the drain pipe 501;

[0033] When too much debris accumulates on one side of the first filter plate 403, gravity will press the bottom cover 601 away from the magnetic strip 603 and rotate through the spring hinge 602, so that the debris falls out of the second sump 401, making it easier to clean without having to climb up to clean. After the debris falls out, the spring hinge 602 will drive the bottom cover 601 to rotate back to its original position.

[0034] When the second rain shield 202 leaks, the rainwater will be blocked by the first rain shield 201 and fall into the first water collection trough 204 along the first rain shield 201. After being guided by the first guide plate 205, it will be discharged to the second collection pipe through the drain pipe 501. When the water flows through the drain pipe 501, it will trigger the water immersion sensor 206 to remind personnel to perform maintenance.

[0035] The waterproof layer 701 is used as a triple insurance to prevent the first rain shield 201 and the second rain shield 202 from leaking, and the roof panel 1 is waterproofed. The convex strips 702 can prevent rainwater falling on the roof panel 1 from accumulating at the joint between the parapet 2 and the roof panel 1, reducing leakage.

[0036] Through the above steps, the second rain shield 202 is used to perform waterproofing work under normal circumstances, to block rainwater and discharge it in time. By setting the first rain shield 201, when leakage occurs in the second rain shield 202, the seepage is blocked and guided to the first sump 204 for discharge, and the water immersion sensor 206 is used to remind personnel to perform maintenance, so as to solve the current roof waterproof structure. As the use time increases, these waterproof structures will have some cracks, and then rainwater will seep in when it rains heavily. Usually, it can only be discovered after signs of water seepage are found indoors, which makes it inconvenient to maintain the waterproof structure in time.

[0037] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. A beautiful and reliable roof waterproof structure, comprising a roof panel (1) and a parapet (2); characterized in that: The invention also includes a support assembly, a collection assembly, a drainage assembly and a cleaning assembly. The support assembly is arranged on one side of the parapet (2). The support assembly is located above the roof plate (1). A support plate (203) is fixedly installed above the parapet (2). A second rain shield (202) is fixedly installed above the support plate (203). A first rain shield (201) is arranged above the support assembly. A first water collecting trough (204) is fixedly installed on one side of the first rain shield (201). Two sets of first guide plates (205) are fixedly installed inside the first water collecting trough (204). The water immersion sensor (206) is fixedly installed inside the first water collecting trough (204), the water immersion sensor (206) is located between the two groups of first guide plates (205), the discharge pipe (207) is arranged on one side of the first water collecting trough (204), the discharge pipe (207) is connected to the first water collecting trough (204), and the discharge pipe (207) passes through the support plate (203), the collection component is arranged on one side of the parapet (2), the drainage component is arranged below the collection component, and the cleaning component is arranged below the collection component, and the cleaning component is located on one side of the drainage component.

2. The beautiful and reliable roof waterproof structure according to claim 1, characterized in that: The support assembly comprises a mounting plate (301) and a support bracket (302); the mounting plate (301) is fixedly mounted on one side of the parapet (2); a plurality of mounting plates (301) are provided; the support bracket (302) is installed at a height between the plurality of mounting plates (301); the support bracket (302) is located below the first rain shield (201); and the support bracket (302) is fixedly connected to the first rain shield (201).

3. The beautiful and reliable roof waterproof structure according to claim 1, characterized in that: The collecting assembly comprises a second water collecting trough (401) and a second guide plate (402). The second water collecting trough (401) is fixedly installed on one side of the parapet (2). Two sets of second guide plates (402) are fixedly installed inside the second water collecting trough (401).

4. The beautiful and reliable roof waterproof structure according to claim 3, characterized in that: The collecting assembly comprises a first filter plate (403) and a second filter plate (404), wherein the second filter plate (404) is fixedly mounted inside the second water collecting trough (401), the second filter plate (404) is located on one side of the second guide plate (402), the first filter plate (403) is fixedly mounted above the second filter plate (404), the second filter plate (404) is fixedly connected to the second water collecting trough (401), the first filter plate (403) is tilted, and the first filter plate (403) is located above the second guide plate (402).

5. The beautiful and reliable roof waterproof structure according to claim 3, characterized in that: The drainage assembly comprises a drainage pipe (501) and a fixing frame (502). The drainage pipe (501) is arranged below the second water collecting tank (401). The drainage pipe (501) is connected to the second water collecting tank (401). The drainage pipe (501) is located between the two sets of second guide plates (402). The fixing frame (502) is fixedly installed on the periphery of the drainage pipe (501).

6. The beautiful and reliable roof waterproof structure according to claim 3, characterized in that: The cleaning component comprises a bottom cover (601), a spring hinge (602) and a magnetic strip. The bottom cover (601) is arranged below the second water collecting tank (401). The bottom cover (601) is rotatably connected via the spring hinge (602). The spring hinge (602) is provided with multiple groups. The magnetic strip (603) is fixedly installed on one side of the second water collecting tank (401). The magnetic strip (603) is magnetically connected to the bottom cover (601).

7. The beautiful and reliable roof waterproof structure according to claim 1, characterized in that: A waterproof layer (701) is provided above the roof panel (1), and a convex strip (702) is fixedly installed between the roof panel (1) and the parapet (2).