Building outer wall water seepage testing device for building management

By designing a building exterior wall seepage testing device with spray components and flow control valves, the problem of traditional devices being unable to adjust the water volume has been solved, enabling precise control and real-time monitoring of the sprayed water volume, thus improving the accuracy and convenience of seepage testing.

CN223769685UActive Publication Date: 2026-01-06王长波
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Patent Information

Application Number
CN202520094959.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-01-06
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Traditional building exterior wall seepage testing devices cannot adjust the amount of water sprayed, making it impossible to effectively test the seepage situation of building exterior walls.

Method used

A building exterior wall seepage testing device was designed, comprising a spraying assembly, a flow control valve, and a control module. Through the cooperation of pipelines and a water pump, the flow control valve of each spraying head is controlled to adjust the water volume of each head, and the water level is monitored in real time through a liquid level sensor and a display module.

Benefits of technology

It enables precise adjustment of the spray water volume, improving the accuracy and convenience of seepage testing. Users can monitor the water level in real time and control the opening or closing of each group of flow control valves through the display module.

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Abstract

The utility model provides a building outer wall water seepage testing device for building management, which belongs to the technical field of testing devices, mainly aims at the problem that the existing testing device cannot adjust the sprayed water quantity, and adopts the technical scheme that the building outer wall water seepage testing device comprises a bottom plate, a water collecting tank is arranged at the top of the bottom plate, and a display module is arranged on one side of the water collecting tank; a liquid level sensor is arranged at the top of the water collecting tank, a liquid level probe is arranged at the bottom of the liquid level sensor, a spraying tank is arranged on one side of the water collecting tank, a spraying assembly is arranged in the spraying tank, a pipeline is arranged between the spraying assembly and the water collecting tank, the spraying assembly and the water collecting tank are connected through the pipeline, and a control module is arranged between the water collecting tank and the spraying tank. Through the arrangement of the liquid level sensor and the liquid level probe, the remaining water in the water collecting tank can be detected, and through the cooperation of the spraying assembly and the control module, when the spraying assembly sprays water to the outer wall, the sprayed water amount can be adjusted.
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Description

Technical Field

[0001] This utility model belongs to the field of testing device technology, and more specifically, it relates to a building exterior wall seepage testing device for building management. Background Technology

[0002] During the use of buildings, the problem of water seepage in their exterior walls has gradually become prominent, posing a considerable challenge to building management. Water seepage in exterior walls refers to defects in the materials and structure of the wall construction, which allow rainwater and surface water to enter the indoor environment, causing leaks in parts such as walls, floors, and ceilings. Therefore, it is necessary to test the water seepage in exterior walls. However, traditional testing devices often cannot adjust the amount of water sprayed. Utility Model Content

[0003] To address the aforementioned technical problems, this utility model provides a building exterior wall seepage testing device for building management, which solves the technical problem that traditional testing devices often cannot adjust the amount of water sprayed.

[0004] The purpose and effectiveness of this utility model, a building exterior wall seepage testing device for building management, are achieved through the following specific technical means:

[0005] A building exterior wall seepage testing device for building management includes a base plate, a water collection tank on the top of the base plate, a display module on one side of the water collection tank, a liquid level sensor on the top of the water collection tank, a liquid level probe on the bottom of the liquid level sensor, a spraying box on one side of the water collection tank, a spraying assembly inside the spraying box, a pipeline connecting the spraying assembly and the water collection tank, and a control module between the water collection tank and the spraying box.

[0006] As a further embodiment of this utility model, the spraying assembly includes a diversion pipe, multiple sets of spray nozzles, and multiple sets of flow control valves. The diversion pipe is disposed inside the spraying box. One end of the diversion pipe is provided with two sets of confluence ports, and the other end of the diversion pipe is provided with multiple sets of diversion ports. One end of each set of diversion ports is provided with multiple sets of flow control valves, and one end of each set of flow control valves is provided with multiple sets of spray nozzles.

[0007] As a further embodiment of this utility model, the spray box is provided with two sets of diversion supports, the diversion pipe is provided on the top of the two sets of diversion supports, one end of the multiple sets of flow control valves is connected to the multiple sets of diversion ports respectively, and one end of the multiple sets of spray nozzles is connected to the multiple sets of flow control valves respectively.

[0008] As a further embodiment of this utility model, the bottom of the spray box is connected to the base plate by screws, and the two ends of the spray box are respectively provided with a detachable first cover plate and a second cover plate. Multiple sets of flow control valves are all installed through one end of the first cover plate, one end of the pipeline passes through the second cover plate and is connected to one end of the diversion pipe, and multiple sets of flow control valves are all electrically connected to the control module.

[0009] As a further embodiment of this utility model, a water tank cover is provided on the top of the water collection tank, an installation groove is provided through the top of the water tank cover, an installation frame is provided in the installation groove, a transparent glass plate is provided in the installation frame, and the liquid level sensor is provided at the bottom of the water tank cover.

[0010] As a further embodiment of this utility model, the top of the water tank cover is provided with a water inlet, a water inlet is provided with a water inlet, a sealing plug is provided inside the water inlet, and a lifting element is provided on the top of the sealing plug.

[0011] As a further embodiment of this utility model, four sets of clips are provided on one side of the water collection tank, and the four sets of clips are respectively located at the four corners of the display module, with the display module being clipped into the four sets of clips.

[0012] As a further embodiment of this utility model, two sets of water pipe supports are provided on the top of the base plate. The two sets of water pipe supports are symmetrical along the central axis of the base plate. The pipeline is provided on the top of the two sets of water pipe supports. Two sets of water pipe fixing parts are respectively clamped on the top of the two sets of water pipe supports. A water pump is provided at one end of each set of water pipe supports. Both sets of water pumps are connected to the pipeline. Two sets of one-way valves are provided on both sides of the water collection tank. Both sets of one-way valves are connected to the pipeline.

[0013] As a further embodiment of this utility model, a control box is provided between the water collection tank and the spraying tank, the control module is located inside the control box, and a protective cover is provided on the top of the control box.

[0014] As a further embodiment of this utility model, the top of the base plate is provided with multiple sets of indicator lights, and the multiple sets of indicator lights and the liquid level sensor are all electrically connected to the control module.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. Through the cooperation of pipelines and water pumps, water can enter the distributor through the pipelines. The distributor divides the water flow into multiple groups of water flow and enters the flow control valves. Through the cooperation of the flow control valves and the control module, the flow control valves of each group can be controlled, thereby adjusting the water volume sprayed from each spray nozzle. The control module can also control the opening or closing of each group of flow control valves, solving the problem that traditional testing devices often cannot adjust the water volume.

[0017] 2. By combining a liquid level sensor and a liquid level probe, the water level in the collection tank can be detected and displayed on the display module. Alternatively, users can view the remaining water level in the collection tank through the transparent glass plate on top, improving convenience. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of a building exterior wall seepage testing device for building management according to this utility model;

[0019] Figure 2 This is an exploded view of a building exterior wall seepage testing device for building management according to this utility model;

[0020] Figure 3 This is a schematic diagram of the display module in a building exterior wall seepage testing device for building management according to this utility model;

[0021] Figure 4 This is a schematic diagram of the disassembled spraying component in a building exterior wall seepage testing device for building management according to this utility model.

[0022] Figure 5 This is a schematic diagram of the control module in a building exterior wall seepage testing device for building management according to this utility model.

[0023] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0024] 100. Base plate; 101. Water collection tank; 102. Water tank cover; 103. Mounting frame; 104. Transparent glass plate; 105. Liquid level probe; 106. Liquid level sensor; 107. Clip; 108. Display module; 109. Water injection pipe; 110. Sealing plug; 111. Lifting component; 112. One-way valve; 113. Pipeline; 114. Water pump; 115. Water pipe bracket; 116. Water pipe fastener; 117. Spray box; 118. Diverter pipe; 119. Manifold; 120. Diverter port; 121. Flow control valve; 122. Spray nozzle; 123. Diverter bracket; 124. First cover plate; 125. Second cover plate; 126. Control box; 127. Control module; 128. Protective cover; 129. Indicator light. Detailed Implementation

[0025] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0026] Example:

[0027] As attached Figure 1 To be continued Figure 5 As shown:

[0028] This utility model provides a building exterior wall seepage testing device for building management, including a base plate 100, a water collection tank 101 on the top of the base plate 100 for holding water for exterior wall seepage testing, a display module 108 (LCD1602 type) on one side of the water collection tank 101, and the display module 108 is electrically connected to a control module 127. A liquid level sensor 106 (WX-26A type) is installed on the top of the water collection tank 101, and a liquid level probe 105 is installed at the bottom of the liquid level sensor 106. Through the cooperation of the liquid level probe 105 and the liquid level sensor 106, the liquid level sensor 106 can monitor the water collection tank. The remaining water level in the collection tank 101 is detected, and the detection data is sent to the control module 127. The control module 127 then forwards the data. The user can view the remaining water level through the display module 108. A spray box 117 is provided on one side of the collection tank 101. A spraying component is provided in the spray box 117. A pipeline 113 is provided between the spraying component and the collection tank 101. The pipeline 113 is used to transport water in the collection tank 101. The spraying component and the collection tank 101 are connected through the pipeline 113. The control module 127 is provided between the collection tank 101 and the spray box 117. The control module 127 can be a TMS320F2812 model.

[0029] The spraying assembly includes a diversion pipe 118, multiple sets of spray nozzles 122, and multiple sets of flow control valves 121. The diversion pipe 118 is installed inside the spray box 117 and is used to divide the water flow into multiple sets of water flow. One end of the diversion pipe 118 is provided with two sets of confluence ports 119, through which water enters the diversion pipe 118. The other end of the diversion pipe 118 is provided with multiple sets of diversion ports 120, through which water enters the flow control valves 121. Multiple sets of flow control valves 121 are respectively provided at one end of the multiple sets of diversion ports 120, and multiple sets of spray nozzles 122 are respectively provided at one end of the multiple sets of flow control valves 121. The spray nozzles 122 are used to spray water on the wall surface to conduct a water seepage test.

[0030] The spray box 117 is equipped with two sets of diversion brackets 123. Diversion pipes 118 are located on the top of the two sets of diversion brackets 123. One end of multiple sets of flow control valves 121 is connected to multiple sets of diversion ports 120. One end of multiple sets of spray nozzles 122 is connected to multiple sets of flow control valves 121. The bottom of the spray box 117 is connected to the base plate 100 by screws. The two ends of the spray box 117 are respectively equipped with a detachable first cover plate 124 and a second cover plate 125. Multiple sets of flow control valves 121 are all installed through one end of the first cover plate 124. One end of the pipeline 113 passes through the second cover plate 125 and is connected to one end of the diversion pipe 118. Multiple sets of flow control valves 121 are all electrically connected to the control module 127. The flow control valves 121 can be of model ACU10FA-MC. The control module 127 can control each set of flow control valves 121, thereby adjusting the water volume sprayed by each spray nozzle 122.

[0031] The top of the water collection tank 101 is provided with a water tank cover 102. The top of the water tank cover 102 has a through-hole for installation groove. The installation groove is provided with an installation frame 103. The installation frame 103 is provided with a transparent glass plate 104. The liquid level sensor 106 is provided at the bottom of the water tank cover 102. Users can directly view the remaining water in the water collection tank 101 through the transparent glass plate 104, which improves convenience.

[0032] The top of the water tank cover 102 is provided with a water inlet, and a water inlet pipe 109 is provided inside the water inlet. A sealing plug 110 is installed inside the water inlet pipe 109. A lifting element 111 is provided on the top of the sealing plug 110. The user can pull out the sealing plug 110 by pinching the lifting element 111, and then inject water into the water collection tank 101 through the water inlet pipe 109.

[0033] Four sets of clips 107 are provided on one side of the water collection tank 101. The four sets of clips 107 are respectively located at the four corners of the display module 108, and the display module 108 is clipped into the four sets of clips 107. Two sets of water pipe supports 115 are provided on the top of the base plate 100. The two sets of water pipe supports 115 are symmetrical along the central axis of the base plate 100. The pipe 113 is located on the top of the two sets of water pipe supports 115, and two sets of water pipe fixing parts 1 are respectively clipped on the top of the two sets of water pipe supports 115. 16. The middle section of the pipeline 113 is fixed by the cooperation of the water pipe fastener 116 and the water pipe bracket 115. A water pump 114 is installed at one end of each of the two sets of water pipe brackets 115. Both sets of water pumps 114 are connected to the pipeline 113. The water pumps 114 can pump the water in the water collection tank 101 into the diversion pipe 118. Two sets of one-way valves 112 are installed on both sides of the water collection tank 101. Both sets of one-way valves 112 are connected to the pipeline 113.

[0034] A control box 126 is provided between the water collection tank 101 and the spray box 117. The control module 127 is located inside the control box 126, and a protective cover 128 is provided on the top of the control box 126.

[0035] The top of the base plate 100 is provided with multiple sets of indicator lights 129. The multiple sets of indicator lights 129 and the liquid level sensor 106 are all electrically connected to the control module 127. The multiple sets of indicator lights 129 are also electrically connected to the flow control valve 121. Users can determine the opening and closing of the flow control valve 121 by the on and off of the indicator lights 129.

[0036] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. A building management building outer wall water seepage testing device, comprising a bottom plate (100), characterized in that: The bottom plate (100) is provided with a water collecting tank (101) on the top, one side of the water collecting tank (101) is provided with a display module (108), the top of the water collecting tank (101) is provided with a liquid level sensor (106), the bottom of the liquid level sensor (106) is provided with a liquid level probe (105), one side of the water collecting tank (101) is provided with a spraying tank (117), the spraying tank (117) is provided with a spraying assembly, and the spraying assembly and the water collecting tank (101) are provided with a pipeline (113) therebetween.

2. The building management building exterior wall water leakage testing device according to claim 1, characterized in that: The spraying assembly comprises a shunt pipe (118), a plurality of spraying nozzles (122) and a plurality of flow control valves (121), the shunt pipe (118) is arranged in the spraying tank (117), two groups of converging ports (119) are arranged at one end of the shunt pipe (118), a plurality of shunt ports (120) are arranged at the other end of the shunt pipe (118), a plurality of the flow control valves (121) are arranged at one end of a plurality of the shunt ports (120) respectively, and a plurality of the spraying nozzles (122) are arranged at one end of a plurality of the flow control valves (121) respectively.

3. The building wall water leakage testing device for building management according to claim 2, characterized in that: The spraying tank (117) is provided with two groups of shunt supports (123), the shunt pipe (118) is arranged on the top of the two groups of shunt supports (123), a plurality of the flow control valves (121) are connected with a plurality of the shunt ports (120) at one end respectively, and a plurality of the spraying nozzles (122) are connected with a plurality of the flow control valves (121) at one end respectively.

4. The building wall water leakage testing device for building management according to claim 3, characterized in that: The spraying tank (117) is connected with the bottom plate (100) by screws, detachable first and second cover plates (124) and (125) are arranged at both ends of the spraying tank (117) respectively, a plurality of the flow control valves (121) are arranged at one end of the first cover plate (124), one end of the pipeline (113) penetrates through the second cover plate (125) and is connected with one end of the shunt pipe (118), and a plurality of the flow control valves (121) are electrically connected with the control module (127).

5. The building wall water leakage testing device for building management according to claim 1, characterized in that: The top of the water collecting tank (101) is provided with a water tank cover (102), the top of the water tank cover (102) is provided with a mounting groove, the mounting groove is provided with a mounting frame (103), the mounting frame (103) is provided with a transparent glass plate (104), and the liquid level sensor (106) is arranged at the bottom of the water tank cover (102).

6. The building wall water leakage testing device for building management according to claim 5, characterized in that: The top of the water tank cover (102) is provided with a water inlet, the water inlet is provided with a water inlet pipe (109), the water inlet pipe (109) is provided with a sealing plug (110), and the top of the sealing plug (110) is provided with a lifting piece (111).

7. The building wall water leakage testing device for building management according to claim 1, characterized in that: The water collecting tank (101) is provided with four sets of clamping pieces (107) on one side, and the four sets of clamping pieces (107) are arranged at four corners of the display module (108), and the display module (108) is clamped in the four sets of clamping pieces (107).

8. The building wall water leakage testing device for building management according to claim 1, characterized in that: The bottom plate (100) is provided with two sets of water pipe supports (115) on the top, the two sets of water pipe supports (115) are symmetrical along the central axis of the bottom plate (100), the pipeline (113) is arranged on the top of the two sets of water pipe supports (115), two sets of water pipe fixing pieces (116) are clamped on the top of the two sets of water pipe supports (115) respectively, and a water pump (114) is arranged at one end of the two sets of water pipe supports (115). The two sets of water pumps (114) are connected with the pipeline (113), and the two sides of the water collecting tank (101) are respectively provided with two sets of one-way valves (112), and the two sets of one-way valves (112) are connected with the pipeline (113).

9. The building wall water leakage testing device for building management according to claim 1, characterized in that: The water collecting tank (101) and the spraying tank (117) are provided with a control box (126), the control module (127) is arranged in the control box (126), and the control box (126) is provided with a protection cover (128) on the top.

10. The building wall water leakage testing device for building management according to claim 1, characterized in that: The bottom plate (100) is provided with a plurality of indicator lights (129) on the top, and the plurality of indicator lights (129) and the liquid level sensor (106) are electrically connected with the control module (127).