CN206705769U - Microbubble water generation device - Google Patents
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Abstract
本实用新型提供微气泡水产生装置,其包括:储水桶,其为密闭桶体,且侧壁具有水位上限位置和水位下线位置;进气管路,其具有第一进气口和第一出气口,所述第一进气口连接至气源,第一出气口伸入至储水桶中且低于水位下限位置;进水管路,其具有第一进水口和第一出水口,第一进水口连接至水源,第一出水口伸入至储水桶中且高于水位上限位置;出水管路,其具有第二进水口和第二出水口,第二进水口伸入至储水桶中并低于水位下限位置,第二出水口连接至水龙头;排气管路,其具有第二进气口和第二出气口,第二进气口伸入至储水桶中并高于水位上限位置,第二出气口连通至外界。本实用新型提供的微气泡水产生装置,结构简单、使用方便、制造成本低且无需增压泵。
The utility model provides a micro-bubble water generating device, which comprises: a water storage barrel, which is a closed barrel body, and the side wall has a water level upper limit position and a water level lower line position; an air intake pipeline, which has a first air inlet and a first outlet Air port, the first air inlet is connected to the air source, the first air outlet extends into the water storage bucket and is lower than the lower limit of the water level; the water inlet pipeline has a first water inlet and a first water outlet, and the first air inlet The water outlet is connected to the water source, and the first water outlet extends into the water storage bucket and is higher than the upper limit of the water level; the water outlet pipeline has a second water inlet and a second water outlet, and the second water inlet extends into the water storage bucket and is lower than the upper limit of the water level; At the lower limit of the water level, the second water outlet is connected to the faucet; the exhaust pipeline has a second air inlet and a second air outlet, and the second air inlet extends into the water storage bucket and is higher than the upper limit of the water level. The second air outlet is connected to the outside world. The micro-bubble water generating device provided by the utility model has the advantages of simple structure, convenient use, low manufacturing cost and no booster pump.
Description
技术领域technical field
本发明属于水处理领域,尤其涉及到一种微气泡水产生装置。The invention belongs to the field of water treatment, and in particular relates to a microbubble water generating device.
背景技术Background technique
气泡水就是直接把二氧化碳以高压形态打入水中,使二氧化碳溶于水中,形成空气过饱和状态,然后减至常压,使二氧化碳析出,以微小气泡释放于水中,近年来有许多报导证实,饮用气泡水有抑制食欲、消除便秘、阻断糖类与脂肪的吸收、中和身体中的酸性等多种作用。另外夏天饮用气泡水具有散热消暑作用,碳酸气体从身体中释放出的时候会带走体内的大量热量,因此在夏天的时候喝气泡水会有很好的防暑降温作用。Sparkling water is to directly inject carbon dioxide into water under high pressure, so that carbon dioxide dissolves in water to form a supersaturated state of air, and then reduce to normal pressure, so that carbon dioxide is precipitated and released into water as tiny bubbles. In recent years, many reports have confirmed that drinking Sparkling water has many functions such as suppressing appetite, eliminating constipation, blocking the absorption of sugar and fat, and neutralizing the acidity in the body. In addition, drinking sparkling water in summer has the effect of dissipating heat and relieving heat. When the carbon dioxide gas is released from the body, it will take away a lot of heat from the body. Therefore, drinking sparkling water in summer will have a good heatstroke prevention and cooling effect.
现有的微气泡水产生装置一般包括有压缩泵(即高压水泵),与压缩泵进口相连的进水管。和与该压缩泵的出口相连接的储水桶,以及储水桶相连接的进气管和出水管。如中国专利申请公布号为CN201320755235的气泡机,工作时,压缩泵起抽水加压作用,高压气体与水同时进入储水桶,储水桶内发生气体溶解于水的过程,当打开出水口出水时,溶于水中的气体减压释放,气体将会以微小气泡的形式在水中释放出来。The existing micro-bubble water generating device generally includes a compression pump (ie a high-pressure water pump) and a water inlet pipe connected to the inlet of the compression pump. A water storage barrel connected to the outlet of the compression pump, and an air inlet pipe and a water outlet pipe connected to the water storage barrel. For example, the Chinese patent application publication number is the air bubble machine of CN201320755235. When working, the compression pump plays the role of pumping and pressurizing. The gas dissolved in water is released under reduced pressure, and the gas will be released in the water in the form of tiny bubbles.
综观现有的微气泡水装置,均需带有压缩泵,否则因储水桶内高压气体的压力太大而进水压力小,(一般自来水水压在0.1-0.3MPa,高压气体压力在0.5-0.7MPa,气体窜流到进水管内),造成储水桶内无法进水现象。但泵的存在,一方面导致装置的体积增大,成本高,另一方面需配置为其供应的电源,产品能耗增大,并且在使用过程中还具有噪声响的缺陷。Looking at the existing micro-bubble water devices, they all need to have a compression pump, otherwise the water inlet pressure is too small due to the pressure of the high-pressure gas in the water storage tank (generally, the water pressure of tap water is 0.1-0.3MPa, and the pressure of high-pressure gas is 0.5- 0.7MPa, gas channeling into the water inlet pipe), resulting in the phenomenon that water cannot enter the water storage tank. However, the existence of the pump, on the one hand, leads to an increase in the volume of the device and high cost. On the other hand, it needs to be equipped with a power supply for it, which increases the energy consumption of the product, and also has the defect of making noise during use.
发明内容Contents of the invention
本发明的一个目的是解决至少上述问题,并提供至少后面将说明的优点。It is an object of the present invention to solve at least the above-mentioned problems and to provide at least the advantages which will be described later.
本发明提供一种结构简单、使用方便、制造成本低且无需增压泵的微气泡水产生装置。The invention provides a micro-bubble water generating device with simple structure, convenient use, low manufacturing cost and no booster pump.
为了克服上述局限,本发明是通过以下技术方案实现的:In order to overcome the above-mentioned limitations, the present invention is achieved through the following technical solutions:
微气泡水产生装置,其包括:A microbubble water generating device, comprising:
储水桶,其为密闭桶体,且侧壁具有一水位上限位置和一水位下线位置;The water storage barrel is an airtight barrel body, and the side wall has a water level upper limit position and a water level lower line position;
进气管路,其具有一第一进气口和第一出气口,所述第一进气口连接至气源,所述第一出气口伸入至所述储水桶中且所述第一出气口低于所述水位下限位置;An air intake pipeline, which has a first air inlet and a first air outlet, the first air inlet is connected to an air source, the first air outlet extends into the water storage bucket, and the first air outlet The air port is lower than the lower limit of the water level;
进水管路,其具有第一进水口和第一出水口,所述第一进水口连接至水源,所述第一出水口伸入至所述储水桶中且所述第一出水口高于所述水位上限位置;The water inlet pipeline has a first water inlet and a first water outlet, the first water inlet is connected to a water source, the first water outlet extends into the water storage bucket, and the first water outlet is higher than the first water outlet The position of the upper limit of the water level;
出水管路,其具有第二进水口和第二出水口,所述第二进水口伸入至所述储水桶中并低于所述水位下限位置,所述第二出水口连接至水龙头;A water outlet pipeline, which has a second water inlet and a second water outlet, the second water inlet extends into the water storage bucket and is lower than the lower limit of the water level, and the second water outlet is connected to a faucet;
排气管路,其具有第二进气口和第二出气口,所述第二进气口伸入至所述储水桶中并高于所述水位上限位置,所述第二出气口连通至外界。The exhaust pipeline has a second air inlet and a second air outlet, the second air inlet extends into the water storage bucket and is higher than the upper limit of the water level, and the second air outlet communicates with outside world.
优选的是,所述的微气泡水产生装置还包括:Preferably, the microbubble water generating device also includes:
上水位传感器,其设置在所述水位上限位置;An upper water level sensor, which is arranged at the upper limit of the water level;
下水位传感器,其设置在所述水位下线位置。The lower water level sensor is arranged at the lower line position of the water level.
优选的是,所述的微气泡水产生装置还包括:Preferably, the microbubble water generating device also includes:
第一电磁阀,其设置在所述进水管路上;a first electromagnetic valve, which is arranged on the water inlet pipeline;
第二电磁阀,其设置在所述进气管路上;a second solenoid valve, which is arranged on the intake pipeline;
第三电磁阀,其设置在所述出水管路上;A third electromagnetic valve, which is arranged on the water outlet pipeline;
第四电磁阀,其设置在所述排气管路上;a fourth electromagnetic valve, which is arranged on the exhaust pipeline;
所述第一电磁阀、所述第二电磁阀、所述第三电磁阀、所述第四电磁阀与所述上水位传感器和所述下水位传感器电连接。The first solenoid valve, the second solenoid valve, the third solenoid valve, and the fourth solenoid valve are electrically connected to the upper water level sensor and the lower water level sensor.
优选的是,所述的微气泡水产生装置中,Preferably, in the described microbubble water generating device,
在首次使用或当所述下水位传感器检测到的水位值达到所述水位下限位置时,所述第二电磁阀和所述第三电磁阀关闭,所述第一电磁阀、所述第四电磁阀打开以接通所述进水管路和所述排气管路;When it is used for the first time or when the water level value detected by the lower water level sensor reaches the lower limit of the water level, the second solenoid valve and the third solenoid valve are closed, and the first solenoid valve and the fourth solenoid valve are closed. a valve is opened to connect the water inlet line and the exhaust line;
当所述上水位传感器检测到的水位值达到所述水位上限位置时,所述第一电磁阀、所述第四电磁阀关闭以关闭所述进水管路和所述排气管路;When the water level value detected by the upper water level sensor reaches the upper limit position of the water level, the first solenoid valve and the fourth solenoid valve are closed to close the water inlet pipeline and the exhaust pipeline;
之后打开第二电磁阀,高压气体经由所述进气管路进入所述储水桶中制得微气泡水,当进入所述储水桶中的高压气体达到预定条件时,所述第二电磁阀关闭。Afterwards, the second electromagnetic valve is opened, and the high-pressure gas enters the water storage bucket through the air intake line to produce microbubble water. When the high-pressure gas entering the water storage bucket reaches a predetermined condition, the second electromagnetic valve is closed.
优选的是,所述的微气泡水产生装置中,所述第三电磁阀在用水时打开,并在所述下水位传感器测得的水位值达到水位下限位置时关闭。Preferably, in the microbubble water generating device, the third electromagnetic valve is opened when water is used, and closed when the water level measured by the lower water level sensor reaches the lower limit of the water level.
优选的是,所述的微气泡水产生装置中,所述进气管路上所述第二电磁阀的上游还设置有压力表和减压阀。Preferably, in the microbubble water generating device, a pressure gauge and a pressure reducing valve are further arranged upstream of the second solenoid valve on the air intake pipeline.
优选的是,所述的微气泡水产生装置中,所述预定条件为储水桶内的空腔压力达到高压气体的压力,或者高压气体的流量值达到预定值,或者高压气体通入的时间达到预定时间。Preferably, in the microbubble water generating device, the predetermined condition is that the pressure of the cavity in the water storage bucket reaches the pressure of the high-pressure gas, or the flow rate of the high-pressure gas reaches a predetermined value, or the time for feeding the high-pressure gas reaches scheduled time.
本发明提供微气泡水产生装置,其包括:储水桶,其为密闭桶体,且侧壁具有一水位上限位置和一水位下线位置;进气管路,其具有一第一进气口和第一出气口,所述第一进气口连接至气源,所述第一出气口伸入至所述储水桶中且所述第一出气口低于所述水位下限位置;进水管路,其具有第一进水口和第一出水口,所述第一进水口连接至水源,所述第一出水口伸入至所述储水桶中且所述第一出水口高于所述水位上限位置;出水管路,其具有第二进水口和第二出水口,所述第二进水口伸入至所述储水桶中并低于所述水位下限位置,所述第二出水口连接至水龙头;排气管路,其具有第二进气口和第二出气口,所述第二进气口伸入至所述储水桶中并高于所述水位上限位置,所述第二出气口连通至外界。本发明提供的微气泡水产生装置,结构简单、使用方便、制造成本低且无需增压泵。The invention provides a micro-bubble water generating device, which includes: a water storage barrel, which is a closed barrel body, and the side wall has a water level upper limit position and a water level lower line position; an air intake pipeline, which has a first air inlet and a second water level. An air outlet, the first air inlet is connected to the air source, the first air outlet extends into the water storage bucket and the first air outlet is lower than the lower limit of the water level; the water inlet pipeline, its It has a first water inlet and a first water outlet, the first water inlet is connected to a water source, the first water outlet extends into the water storage bucket, and the first water outlet is higher than the upper limit of the water level; The water outlet pipeline has a second water inlet and a second water outlet, the second water inlet extends into the water storage bucket and is lower than the lower limit of the water level, and the second water outlet is connected to the faucet; Air pipeline, which has a second air inlet and a second air outlet, the second air inlet extends into the water storage bucket and is higher than the upper limit of the water level, and the second air outlet is connected to the outside world . The micro-bubble water generating device provided by the invention has the advantages of simple structure, convenient use, low manufacturing cost and no booster pump.
本发明的其它优点、目标和特征将部分通过下面的说明体现,部分还将通过对本发明的研究和实践而为本领域的技术人员所理解。Other advantages, objectives and features of the present invention will partly be embodied through the following descriptions, and partly will be understood by those skilled in the art through the study and practice of the present invention.
附图说明Description of drawings
图1是本发明提供的微气泡水产生装置的一个实施例的结构示意图;Fig. 1 is a schematic structural view of an embodiment of the microbubble water generating device provided by the present invention;
图2是本发明提供的微气泡水产生装置的一个实施例的排气状态示意图;Fig. 2 is a schematic diagram of the exhaust state of an embodiment of the microbubble water generating device provided by the present invention;
图3是本发明提供的微气泡水产生装置的一个实施例的微气泡水产生状态示意图;Fig. 3 is a schematic diagram of the microbubble water generating state of an embodiment of the microbubble water generating device provided by the present invention;
图4是本发明提供的微气泡水产生装置的一个实施例的微气泡水使用状态示意图。Fig. 4 is a schematic diagram of the use state of microbubble water of an embodiment of the microbubble water generating device provided by the present invention.
具体实施方式detailed description
下面结合附图对本发明做进一步的详细说明,以令本领域技术人员参照说明书文字能够据以实施。The present invention will be further described in detail below in conjunction with the accompanying drawings, so that those skilled in the art can implement it with reference to the description.
应当理解,本文所使用的诸如“具有”、“包含”以及“包括”术语并不配出一个或多个其它元件或其组合的存在或添加。It should be understood that terms such as "having", "comprising" and "including" as used herein do not entail the presence or addition of one or more other elements or combinations thereof.
如图1所示,本发明提供一种微气泡水产生装置,其包括:As shown in Figure 1, the present invention provides a kind of microbubble water generating device, it comprises:
储水桶16,其为密闭桶体,且侧壁具有一水位上限位置和一水位下线位置;Water storage bucket 16, it is airtight bucket body, and side wall has a water level upper limit position and a water level lower line position;
进气管路11,其具有一第一进气口和第一出气口,所述第一进气口连接至气源3,所述第一出气口伸入至所述储水桶16中且所述第一出气口低于所述水位下限位置;The air intake pipeline 11 has a first air inlet and a first air outlet, the first air inlet is connected to the air source 3, the first air outlet extends into the water storage bucket 16 and the The first air outlet is lower than the lower limit of the water level;
进水管路12,其具有第一进水口和第一出水口,所述第一进水口连接至水源1,所述第一出水口伸入至所述储水桶16中且所述第一出水口高于所述水位上限位置;The water inlet pipeline 12 has a first water inlet and a first water outlet, the first water inlet is connected to the water source 1, the first water outlet extends into the water storage bucket 16 and the first water outlet higher than the upper limit of the water level;
出水管路10,其具有第二进水口和第二出水口,所述第二进水口伸入至所述储水桶16中并低于所述水位下限位置,所述第二出水口连接至水龙头7;The water outlet pipeline 10 has a second water inlet and a second water outlet, the second water inlet extends into the water storage bucket 16 and is lower than the lower limit of the water level, and the second water outlet is connected to the faucet 7;
排气管路15,其具有第二进气口和第二出气口,所述第二进气口伸入至所述储水桶16中并高于所述水位上限位置,所述第二出气口连通至外界。The exhaust pipeline 15 has a second air inlet and a second air outlet, the second air inlet extends into the water storage bucket 16 and is higher than the upper limit of the water level, and the second air outlet connected to the outside world.
所述的微气泡水产生装置还包括:The microbubble water generating device also includes:
上水位传感器13,其设置在所述水位上限位置;Upper water level sensor 13, which is arranged at the upper limit position of the water level;
下水位传感器14,其设置在所述水位下线位置。The lower water level sensor 14 is arranged at the lower line position of the water level.
所述的微气泡水产生装置还包括:The microbubble water generating device also includes:
第一电磁阀2,其设置在所述进水管路12上;The first solenoid valve 2 is arranged on the water inlet pipeline 12;
第二电磁阀6,其设置在所述进气管路11上;The second electromagnetic valve 6 is arranged on the intake pipeline 11;
第三电磁阀8,其设置在所述出水管路10上;The third solenoid valve 8, which is arranged on the water outlet pipeline 10;
第四电磁阀9,其设置在所述排气管路15上;The fourth solenoid valve 9 is arranged on the exhaust pipeline 15;
所述第一电磁阀2、所述第二电磁阀6、所述第三电磁阀8、所述第四电磁阀9与所述上水位传感器13和所述下水位传感器14电连接。The first solenoid valve 2 , the second solenoid valve 6 , the third solenoid valve 8 , and the fourth solenoid valve 9 are electrically connected to the upper water level sensor 13 and the lower water level sensor 14 .
所述的微气泡水产生装置中,In the microbubble water generating device,
在首次使用或当所述下水位传感器14检测到的水位值达到所述水位下限位置时,所述第二电磁阀6和所述第三电磁阀8关闭,所述第一电磁阀2、所述第四电磁阀9打开以接通所述进水管路12和所述排气管路15;When it is used for the first time or when the water level value detected by the lower water level sensor 14 reaches the lower limit position of the water level, the second solenoid valve 6 and the third solenoid valve 8 are closed, and the first solenoid valve 2 and the third solenoid valve 8 are closed. The fourth solenoid valve 9 is opened to connect the water inlet pipeline 12 and the exhaust pipeline 15;
当所述上水位传感器13检测到的水位值达到所述水位上限位置时,所述第一电磁阀2、所述第四电磁阀9关闭以关闭所述进水管路12和所述排气管路15;When the water level value detected by the upper water level sensor 13 reaches the upper limit of the water level, the first electromagnetic valve 2 and the fourth electromagnetic valve 9 are closed to close the water inlet pipeline 12 and the exhaust pipe. Road 15;
之后打开第二电磁阀6,高压气体经由所述进气管路11进入所述储水桶16中制得微气泡水,当进入所述储水桶16中的高压气体达到预定条件时,所述第二电磁阀6关闭。Afterwards, the second solenoid valve 6 is opened, and the high-pressure gas enters the water storage bucket 16 through the air intake line 11 to produce microbubble water. When the high-pressure gas entering the water storage bucket 16 reaches a predetermined condition, the second Solenoid valve 6 is closed.
所述的微气泡水产生装置中,所述第三电磁阀8在用水时打开,并在所述下水位传感器14测得的水位值达到水位下限位置时关闭。In the microbubble water generating device, the third solenoid valve 8 is opened when water is used, and closed when the water level value measured by the lower water level sensor 14 reaches the lower limit of the water level.
所述的微气泡水产生装置中,所述进气管路11上所述第二电磁阀6的上游还设置有压力表5和减压阀4。In the microbubble water generating device, a pressure gauge 5 and a pressure reducing valve 4 are further arranged upstream of the second electromagnetic valve 6 on the air intake line 11 .
所述的微气泡水产生装置中,所述预定条件为储水桶内的空腔压力达到高压气体的压力,或者高压气体的流量值达到预定值,或者高压气体通入的时间达到预定时间。In the microbubble water generating device, the predetermined condition is that the cavity pressure in the water storage bucket reaches the pressure of the high-pressure gas, or the flow rate of the high-pressure gas reaches a predetermined value, or the time for feeding the high-pressure gas reaches a predetermined time.
本发明提供的微气泡水产生装置在使用时,如下所述:When the microbubble water generating device provided by the present invention is in use, it is as follows:
1)如图2所示,当首次使用或水位到达水位下限位置时,第一电磁阀2打开,同时第四电磁阀9打开,水源1向储水桶16进水,水源1可以为RO反渗透水处理设备,或其它以处理生水至可供人员达饮用要求的设备或是低温(冰)水设备,同时储水桶16内空气经排气管路15从第四电磁阀9排出,排气管路15位于上水位感应器13上方,使储水桶16不会产生气塞现象。当水位到达水位上限位置时,上水位感应器13发出信号,第一电磁阀2和第四电磁阀9同时关闭,停止供水。1) As shown in Figure 2, when it is used for the first time or the water level reaches the lower limit of the water level, the first solenoid valve 2 is opened, and the fourth solenoid valve 9 is opened at the same time, the water source 1 enters the water storage tank 16, and the water source 1 can be RO reverse osmosis Water treatment equipment, or other equipment or low temperature (ice) water equipment to process raw water to meet the drinking requirements of personnel, while the air in the water storage tank 16 is discharged from the fourth electromagnetic valve 9 through the exhaust pipeline 15, and the exhaust gas The pipeline 15 is located above the upper water level sensor 13, so that the water storage bucket 16 will not produce air lock. When the water level reaches the upper limit of the water level, the upper water level sensor 13 sends a signal, and the first solenoid valve 2 and the fourth solenoid valve 9 are simultaneously closed to stop the water supply.
2)如图3所示,第二电磁阀6打开,气源3输出高压气体(二氧化碳),经第二电磁阀6和进气管路11打入储水桶16底部水中,二氧化碳迅速溶于水中,使储水桶16中的水源变成富含大量气体的气泡水,未溶解的气泡上浮到储水桶16上部空腔,空腔压力逐渐升高,当空腔压力升高至气瓶压力时关闭第二电磁阀6,或采用通过充气时间形式控制关闭第二电磁阀6,停止气体输送。此时第一电磁阀2、第二电磁阀6、第三电磁阀8、第四电磁阀9均处理关闭状态。制好的气泡水储存在储水桶内待用。2) As shown in Figure 3, the second solenoid valve 6 is opened, and the gas source 3 outputs high-pressure gas (carbon dioxide), which is pumped into the water at the bottom of the water storage tank 16 through the second solenoid valve 6 and the air intake line 11, and the carbon dioxide is rapidly dissolved in the water, Make the water source in the water storage tank 16 become bubble water rich in a large amount of gas, and the undissolved air bubbles float up to the upper cavity of the water storage tank 16, and the cavity pressure gradually increases. When the cavity pressure increases to the gas cylinder pressure, close the second Solenoid valve 6, or the second solenoid valve 6 is controlled and closed by the form of inflation time, to stop gas delivery. At this time, the first solenoid valve 2 , the second solenoid valve 6 , the third solenoid valve 8 and the fourth solenoid valve 9 are all closed. The prepared sparkling water is stored in the water storage bucket for use.
3)如图4所示,用水时,第三电磁阀8打开,水龙头7出水口打开,此时第一电磁阀2,第二电磁阀6,第四电磁阀9处于关闭状态,储水桶16上部空腔气体压力释放,气泡水从出水管路10经水龙头7排出。3) As shown in Figure 4, when using water, the third electromagnetic valve 8 is opened, and the water outlet of the faucet 7 is opened. At this time, the first electromagnetic valve 2, the second electromagnetic valve 6, and the fourth electromagnetic valve 9 are in the closed state, and the water storage bucket 16 The gas pressure in the upper cavity is released, and the bubble water is discharged from the water outlet pipeline 10 through the faucet 7 .
当水位下降到下位时,下水位感应器14发出信号,关闭第三电磁阀8,重复步骤1)、2)所述内容操作。When the water level drops to the lower position, the lower water level sensor 14 sends a signal to close the third electromagnetic valve 8, and repeat steps 1) and 2) for the content operation.
尽管本发明的实施方案已公开如上,但其并不仅仅限于说明书和实施方式中所列运用,它完全可以被适用于各种适合本发明的领域,对于熟悉本领域的人员而言,可容易地实现另外的修改,因此在不背离权利要求及等同范围所限定的一般概念下,本发明并不限于特定的细节和这里示出与描述的图例。Although the embodiment of the present invention has been disclosed as above, it is not limited to the use listed in the specification and implementation, it can be applied to various fields suitable for the present invention, and it can be easily understood by those skilled in the art Therefore, the invention is not limited to the specific details and examples shown and described herein without departing from the general concept defined by the claims and their equivalents.
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| CN201720481090.XU CN206705769U (en) | 2017-05-03 | 2017-05-03 | Microbubble water generation device |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106946334A (en) * | 2017-05-03 | 2017-07-14 | 广州海鸥卫浴用品股份有限公司 | Microbubble water generation device |
| CN113558470A (en) * | 2021-08-25 | 2021-10-29 | 杭州老板电器股份有限公司 | Soda water pipeline machine and control method thereof |
| CN114098433A (en) * | 2021-12-22 | 2022-03-01 | 杭州老板电器股份有限公司 | Bubble water preparation device and system |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106946334A (en) * | 2017-05-03 | 2017-07-14 | 广州海鸥卫浴用品股份有限公司 | Microbubble water generation device |
| CN113558470A (en) * | 2021-08-25 | 2021-10-29 | 杭州老板电器股份有限公司 | Soda water pipeline machine and control method thereof |
| CN114098433A (en) * | 2021-12-22 | 2022-03-01 | 杭州老板电器股份有限公司 | Bubble water preparation device and system |
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