A damper cleaning device

CN224657598UActive Publication Date: 2026-08-21HUBEI WANGGONG ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202522057001.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-08-21
Estimated Expiration
2035-09-24

AI Technical Summary

Technical Problem

[0002]风阀是一种控制风量流向或切换气流路径的装置,主要用于工业管道系统的气流调节,因此风阀是工业管道不可或缺的一部分,但是风阀在实际使用过程中存在一些难以解决的问题:风阀在使用一段时间后密封面附着杂质(如灰尘、颗粒)会导致密封性能下降,关闭状态下仍有气流泄漏,因此需要手动清理风阀表面灰尘,过程较为耗时耗力;且风阀在使用过程中会产生静电,而静电吸附灰尘或杂质可能导致风阀部件堵塞、运转不畅,降低整体系统效率

Benefits of technology

[0011] The beneficial effects of this utility model are: during use, the dust adhering to the surface of the air valve by the cleaning component can be cleaned manually without manual cleaning, which saves more time and effort, and at the same time enhances the sealing performance of the air valve; the use of the elimination component eliminates static electricity in the air valve, reduces the generation of static electricity, and thus improves the operating efficiency of the air valve.

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Abstract

A kind of air valve cleaning device, including air valve, cleaning device, the cleaning device includes cleaning component, elimination component, cleaning component includes first air outlet, second air outlet, cleaning component also includes fan for the air outlet of first air outlet and second air outlet, first air outlet and second air outlet are communicated between the air outlet of fan by gas pipeline;The elimination component includes storage tank for storing static electricity elimination liquid, not less than one nozzle for spraying liquid in storage tank, nozzle is connected with air valve, the water jet direction of nozzle is set towards air valve air inlet, water pump in storage tank is equipped with pumping liquid, water outlet and nozzle are communicated by liquid pipeline between them.In use, the dust attached on the surface of air valve is cleaned by cleaning component without manual cleaning, more time-saving and labor-saving, and the sealing of air valve is enhanced;Static electricity in air valve is eliminated using elimination component, the generation of static electricity is reduced, so as to improve the operating efficiency of air valve.
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Description

Technical Field

[0001] This utility model belongs to the field of air valve cleaning, specifically an air valve cleaning device. Background Technology

[0002] A damper is a device that controls the flow direction of air or switches the airflow path. It is mainly used for airflow regulation in industrial pipeline systems. Therefore, dampers are an indispensable part of industrial pipelines. However, dampers have some difficult problems in actual use: after a period of use, impurities (such as dust and particles) adhere to the sealing surface of the damper, which will cause the sealing performance to decline. Even when closed, there will still be airflow leakage. Therefore, it is necessary to manually clean the dust on the surface of the damper, which is time-consuming and labor-intensive. In addition, the damper will generate static electricity during use. Static electricity can attract dust or impurities, which may cause the damper components to become blocked and operate poorly, reducing the overall system efficiency. Utility Model Content

[0003] In view of the above, this utility model provides a valve cleaning device to solve the problems mentioned in the background art.

[0004] The technical solution adopted by this utility model to solve its technical problem is: a valve cleaning device, including a valve and a cleaning device, the cleaning device being connected to the valve. The cleaning device includes a cleaning component for cleaning dust on the surface of the valve and an elimination component for reducing static electricity inside the valve. The cleaning component includes a set of first air inlets for cleaning dust on the surface of the valve and a set of second air inlets for cleaning dust at the location of the first air inlets. Both the first and second air inlets are installed on the valve, and the first and second air inlets are staggered. The cleaning component also includes a nozzle for lifting the first and second air inlets. A blower that supplies air power has a first and a second air inlet connected to the blower's outlet via a gas pipe. The static elimination component includes a storage tank for storing static eliminator liquid and at least one nozzle for spraying the liquid from the storage tank. The nozzle is connected to an air valve, and the nozzle's spray direction is directed towards the air valve's inlet. A water pump that draws out the liquid is installed inside the storage tank, and the water pump's outlet is connected to the nozzle via a liquid pipe. In use, the first and second air inlets blow air onto the air valve to clean dust from its surface, and the nozzle sprays static eliminator liquid into the air valve's inlet to reduce static electricity generation.

[0005] Furthermore, the cleaning component is equipped with a cleaning switch, the output of which is electrically connected to the input of the fan. Turning on the cleaning switch starts the fan and turning it off stops it.

[0006] Furthermore, the cleaning component is equipped with a cleaning power cord that provides power to the fan, and the cleaning power cord is connected to an external power source to provide power to the fan.

[0007] Furthermore, the elimination component is equipped with an elimination switch, the output terminal of which is electrically connected to the input terminal of the water pump. Opening the elimination switch starts the water pump, while closing it stops it.

[0008] Furthermore, the elimination component is equipped with an elimination power line that provides power to the water pump, and the water pump is powered by an external power source connected through the elimination power line.

[0009] Furthermore, the cleaning and elimination components are either fixedly connected to or detachably connected to the air valve, which can be selected according to the actual situation.

[0010] Furthermore, the cleaning component and the elimination component are connected to the air valve via a connector, which includes a clip or a screw, and can be selected according to the actual situation.

[0011] The beneficial effects of this utility model are: during use, the dust adhering to the surface of the air valve by the cleaning component can be cleaned manually without manual cleaning, which saves more time and effort, and at the same time enhances the sealing performance of the air valve; the use of the elimination component eliminates static electricity in the air valve, reduces the generation of static electricity, and thus improves the operating efficiency of the air valve. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of the connecting block of this utility model.

[0013] exist Figure 1 In the middle, 1. Air valve; 2. Cleaning component; 201. First air inlet; 202. Second air inlet; 203. Fan; 204. Cleaning switch; 205. Cleaning power cord; 206. Gas pipeline; 3. Elimination component; 301. Storage tank; 302. Nozzle; 303. Water pump; 304. Elimination switch; 305. Elimination power cord; 306. Liquid pipeline. Detailed Implementation

[0014] The present invention will be further described below with reference to the accompanying drawings and some embodiments.

[0015] exist Figure 1A valve cleaning device includes a valve 1 and a cleaning device connected to the valve 1. The valve 1 is an industrial gas flow regulating device, mainly used in ventilation and environmental protection pipeline systems in building materials, metallurgy, power and other fields. The cleaning device includes a cleaning component 2 for cleaning dust from the surface of the valve 1 and an elimination component 3 for reducing static electricity inside the valve 1. The cleaning component 2 includes a first air outlet 201 for cleaning dust from the surface of the valve 1 and a second air outlet 202 for cleaning dust from the first air outlet 201. Each set of first air outlets 201 and second air outlets 202 has at least one such outlet. Both the first air outlet 201 and the second air outlet 202 are installed on the valve 1. The first air outlet 201 and the second air outlet 202 are staggered, and the specific arrangement is not limited. The staggered arrangement of the two sets of air outlets reduces cleaning dead spots. For example, the first air outlet 201 is arranged parallel to the air inlet of the air valve 1, so that the first air outlet 201 can blow air to most of the surface of the air valve 1, while the second air outlet 202 is set facing the first air outlet 201 to clean the dust around the first air outlet 201, thereby reducing the number of cleaning dead spots. The cleaning component 2 also includes a fan 203 that provides airflow to the first air outlet 201 and the second air outlet 202. The first air outlet 201 and the second air outlet 202 are connected to the air outlet of the fan 203 through a gas pipe 206. The fan 203 is provided with an air inlet. The fan 203 draws in gas through the air inlet and discharges it through the gas pipe 206 to the first air outlet 201 and the second air outlet 202, and finally discharges it through the first air outlet 201 and the second air outlet 202 to clean the surface of the air valve 1. The static elimination component 3 includes a storage tank 301 for storing static elimination liquid and at least one nozzle 302 for spraying the liquid in the storage tank 301. Static elimination liquids are also common liquids for eliminating static electricity, such as tap water and fabric softener. Static elimination liquids should be used according to the actual situation to prevent the static elimination liquid from reacting with the gas and causing danger. The nozzle 302 is connected to the air valve 1, and the spray direction of the nozzle 302 is set towards the air inlet of the air valve 1. When the air valve 1 is opened... When in use, the static eliminator sprayed from nozzle 302 enters the air valve 1 and pipeline along with the gas, thereby achieving the purpose of eliminating or reducing static electricity. The storage tank 301 is equipped with a water pump 303 for extracting liquid. The outlet of the water pump 303 is connected to the nozzle 302 through a liquid pipeline 306. The static eliminator is placed in the storage tank 301, the water pump 303 extracts the liquid in the storage tank 301, and delivers it to the nozzle 302 through the liquid pipeline 306. Finally, it is sprayed into the air valve 1 through the nozzle 302. When in use, the first air outlet 201 and the second air outlet 202 blow air onto the air valve 1 to clean the dust on the surface of the air valve 1. The nozzle 302 sprays the static eliminator into the air inlet of the air valve 1 to reduce the generation of static electricity.

[0016] In this embodiment, the cleaning component 2 is provided with a cleaning switch 204. The output terminal of the cleaning switch 204 is electrically connected to the input terminal of the fan 203. Turning on the cleaning switch 204 will start the fan 203 to work, and turning it off will stop it from working.

[0017] In this embodiment, the cleaning component 2 is provided with a cleaning power line 205 to provide power to the fan 203. The cleaning power line 205 is connected to an external power source to provide power to the fan 203.

[0018] In this embodiment, the elimination component 3 is provided with an elimination switch 304. The output terminal of the elimination switch 304 is electrically connected to the input terminal of the water pump 303. When the elimination switch 304 is turned on, the water pump 303 starts to work, and vice versa.

[0019] In this embodiment, the elimination component 3 is provided with an elimination power line 305 to provide power to the water pump 303. The elimination power line 305 is connected to an external power source to provide power to the water pump 303.

[0020] In this embodiment, the cleaning component 2 and the static elimination component 3 are either fixedly connected to the air valve 1 or detachably connected. For a fixed connection, the first air outlet 201 and the second air outlet 202 are fixed to the surface of the air valve 1. When cleaning is required, the cleaning switch 204 is turned on. Similarly, the nozzle 302 is installed on the surface of the air valve 1. When static electricity needs to be eliminated, the elimination switch 304 is turned on. Therefore, a fixed connection can only be used with one set of air valve 1 equipment, but it is convenient as it eliminates the need for repeated disassembly. For a detachable connection, when cleaning or eliminating static electricity is required, the first air outlet 201 and the second air outlet 202 or the nozzle 302 must be manually installed on the surface of the air valve 1, and then the corresponding switch is turned on. Therefore, a detachable connection can be used with multiple sets of air valve 1 equipment, but it is more troublesome as it requires repeated disassembly. The specific usage can be selected according to the actual situation.

[0021] In this embodiment, the cleaning component 2 and the elimination component 3 are connected to the air valve 1 by a connector, which includes a buckle or a screw. The specific type of connector is not limited and can be selected according to the actual situation. For example, if a detachable connection is required, it can be connected by a buckle or the like; if a fixed connection is required, it can be connected by a screw or the like.

[0022] In this embodiment, the fan 203 is a common fan 203 device, and the specific model is not limited. It can be selected according to the actual situation, such as SWF-I type, LRB-50 series fan 203, etc.

[0023] In this embodiment, the water pump 303 is a common water pump 303 device, and the specific model is not limited. It can be selected according to the actual situation, such as the 32CQ-15 model, the IHG25-125 model water pump 303, etc.

[0024] In this embodiment, the control circuit of this utility model is a common circuit in the field of circuits. The device of this utility model can be connected to an external power source or a built-in battery through a power cord to provide power to the device. Those skilled in the art can implement it, so it will not be described in detail here.

[0025] In practical implementation, when it is necessary to clean the surface of the air valve 1, the cleaning power cord 205 is connected to an external power source, the cleaning switch 204 is turned on, and the fan 203 starts working. Air is blown through the first air outlet 201 and the second air outlet 202 to clean the dust on the surface of the air valve 1. When it is necessary to reduce or eliminate static electricity in the air valve 1, the static elimination power cord 305 is connected to an external power source, the static elimination switch 304 is turned on, the water pump 303 starts working, and static elimination liquid is sprayed into the air valve 1 through the nozzle 302, thereby achieving the purpose of reducing or eliminating static electricity.

[0026] It is worth noting that in the description of this utility model, "multiple" means two or more, unless otherwise explicitly specified. In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can also refer to a mechanical connection. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0027] It will be apparent to those skilled in the art that this utility model patent is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this utility model patent. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of this utility model patent is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be encompassed within this utility model patent. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A valve cleaning device, comprising a valve and a cleaning device, wherein the cleaning device is connected to the valve, characterized in that: The cleaning device includes a cleaning component for cleaning dust on the surface of the air valve and an elimination component for reducing static electricity inside the air valve. The cleaning component includes a first air inlet for cleaning dust on the surface of the air valve and a second air inlet for cleaning dust at the location of the first air inlet. Both the first air inlet and the second air inlet are installed on the air valve and are staggered. The cleaning component also includes a fan for providing airflow to the first air inlet and the second air inlet. The first air inlet and the second air inlet are connected to the air outlet of the fan through a gas pipe. The static elimination component includes a storage tank for storing static elimination liquid and at least one nozzle for spraying the liquid from the storage tank. The nozzle is connected to an air valve, and the spray direction of the nozzle is set towards the air inlet of the air valve. A water pump for drawing liquid is installed in the storage tank, and the outlet of the water pump is connected to the nozzle through a liquid pipe. In use, the first and second air inlets blow air onto the air valve to clean the dust on the surface of the air valve, and the nozzle sprays static elimination liquid into the air inlet of the air valve to reduce static electricity generation.

2. The air valve cleaning device according to claim 1, characterized in that: The cleaning component is equipped with a cleaning switch, and the output terminal of the cleaning switch is electrically connected to the input terminal of the fan.

3. The air valve cleaning device according to claim 1, characterized in that: The cleaning assembly is equipped with a cleaning power cord that provides power to the fan.

4. The air valve cleaning device according to claim 1, characterized in that: The elimination component is equipped with an elimination switch, and the output terminal of the elimination switch is electrically connected to the input terminal of the water pump.

5. The air valve cleaning device according to claim 1, characterized in that: The elimination assembly is equipped with an elimination power line that provides power to the water pump.

6. The air valve cleaning device according to claim 1, characterized in that: The cleaning and elimination components are either fixedly connected to or detachably connected to the air valve.

7. The air valve cleaning device according to claim 1, characterized in that: The cleaning and elimination components are connected to the air valve via connectors, which include clips or screws.