CN210973857U - Bubble eliminating device and beverage machine - Google Patents

Bubble eliminating device and beverage machine Download PDF

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Publication number
CN210973857U
CN210973857U CN201920471914.4U CN201920471914U CN210973857U CN 210973857 U CN210973857 U CN 210973857U CN 201920471914 U CN201920471914 U CN 201920471914U CN 210973857 U CN210973857 U CN 210973857U
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pump
beverage
main
water level
exhaust
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王江峰
魏佳
赵新良
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Beijing Gudian Technology Co ltd
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Beijing Gudian Technology Co ltd
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Abstract

The utility model discloses an eliminate bubble device and beverage machine for solve the unable exhaust technical problem of air in the current beverage vending equipment. The bubble eliminating device comprises a main pump and a main pipeline, the input end of the main pump is connected with a beverage barrel through the main pipeline, the output end of the main pump is connected with a liquid discharge faucet through the main pipeline, the bubble eliminating device further comprises a bypass pump and an exhaust pipeline, the input end of the bypass pump is connected with the main pipeline between the main pump and the liquid discharge faucet through the exhaust pipeline, the output end of the bypass pump is connected with a gas outlet through the exhaust pipeline, and after the beverage barrel is replaced, the main pump and the gas in the main pipeline between the main pump and the beverage barrel are discharged through the bypass pump. The beverage machine is provided with the bubble eliminating device. The utility model discloses can be with the gaseous exhaust that gets into in the beverage output pipeline when changing the beverage bucket to guarantee that the liquid flow is smooth and easy, and effectively eliminate the foam.

Description

Bubble eliminating device and beverage machine
Technical Field
The utility model relates to a beverage output device field, in particular to eliminate bubble device still relates to a beverage machine.
Background
In beverage vending locations, vending machines are often used to fill customers with beverages, and the beverage output channel includes a beverage tank, a pump, a pipe, a faucet, and other major components, wherein the beverage in the beverage tank is pushed by the pump to reach the faucet through the pipe and be output outwards. Since the beverage barrels need to be replaced often, it is inevitable that air enters through the connections. This air entering the pump will cause air lock and pipe impact, causing the outputted beverage liquid to flow out of the faucet and easily causing a large amount of foam to be outputted from the faucet.
SUMMERY OF THE UTILITY MODEL
In view of the problems existing in the prior art, the utility model provides an eliminate bubble device can be with the gaseous exhaust in the beverage delivery line to guarantee that the liquid flow is smooth and easy, and effectively eliminate the foam.
The utility model also provides a beverage machine is provided with above-mentioned bubble elimination device.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
an aspect of the utility model provides an eliminate bubble device, including main road pump and main line, the beverage bucket is connected through the main line to the input of main road pump, the flowing back tap is connected through the main line to the output of main road pump, still includes bypass pump and exhaust pipe, the input of bypass pump passes through exhaust pipe and connects the main line between the flowing back tap the main road pump with gas outlet is connected through exhaust pipe to the output of bypass pump, changes after the beverage bucket, through the bypass pump will gas outgoing in the main line between main road pump and the beverage bucket.
Optionally, a one-way check valve is arranged on a main pipeline between the main pump and the liquid discharge faucet, and an input end of the bypass pump is connected with the main pipeline between the main pump and the one-way check valve through an exhaust pipeline.
Optionally, the beverage barrel comprises a plurality of beverage barrels, and after any beverage barrel is replaced, the gas in the main pump and the main pipeline between the main pump and the beverage barrel is exhausted by the bypass pump.
Optionally, the output of the bypass pump is connected to the main line between the one-way check valve and the discharge tap through an exhaust line, from which gas is discharged.
Optionally, an exhaust tap is provided in parallel with the drain tap, the output of the bypass pump being connected to the exhaust tap by an exhaust line, gas being exhausted from the exhaust tap.
Optionally, the bubble removing device further includes a control device, and the control device is connected to the main pump and the bypass pump and controls start and stop of the main pump and the bypass pump.
Optionally, a position sensor is arranged corresponding to the beverage barrel, and the position sensor detects whether the beverage barrel is installed in place and the liquid storage amount in the beverage barrel, and sends a detection signal to the control device.
Optionally, a liquid sensor is disposed corresponding to the air outlet to detect whether liquid is output from the air outlet, the liquid sensor sends a detection signal to the control device, and when liquid is output from the air outlet, the bypass pump is closed.
Optionally, the input end of the main conduit is inserted into the beverage cartridge, close to the bottom of the beverage cartridge;
the liquid storage capacity in the beverage barrel comprises three water level states of serious low water level, low water level and high water level;
the serious low water level is that the depth of the liquid storage amount is equal to or less than the height of the input end of the main pipeline, the low water level is that the depth of the liquid storage amount is equal to or less than half of the depth in the beverage barrel, and the high water level is that the depth of the liquid storage amount is greater than half of the depth in the beverage barrel;
the low water level and the high water level are non-severe low water levels.
Optionally, the exhaust flow of the bubble elimination device comprises the following steps:
s1: initializing equipment, and returning the water level state and the reading of the positioning sensor to zero;
s2: reading the value of the current position sensor, and judging whether the water level state in the beverage barrel is a serious low water level, a non-serious low water level, a low water level or a high water level;
s3: if the current water level state is a serious low water level and the last water level state is a non-serious low water level, closing the main pump and the bypass pump to prevent the beverage from being continuously output; setting the current water level state as the serious low water level in the control device according to the current water level state no matter whether the last water level state is the serious low water level or not;
s4: if the current water level state is a low water level and the last water level state is a non-serious low water level, the control device starts the bypass pump and sets the bypass pump; setting the current water level state as a low water level in the control device according to the current water level state no matter whether the last water level state is a non-severe low water level or not;
s5: if the current water level state is a non-low water level and the last water level state is a non-serious low water level, the control device starts the bypass pump to be set; setting the current water level state as a high water level in the control device according to the current water level state no matter whether the last water level state is a non-serious low water level or not;
s6: in the control device, if the current water level state is the serious low water level, starting an addition warning, and returning to S2;
s7: in the control device, if the current water level state is a non-serious low water level, judging whether a water outlet request exists currently; if not, returning to S2;
s8: if the water outlet request is retrieved, starting the main road pump and judging whether the bypass pump is set; if not, returning to S2;
s9: if the bypass pump is set, the bypass pump exhaust is turned on and the bypass pump start set is eliminated, before returning to S2.
Optionally, the positioning sensor is a pressure sensor and is arranged below the installation position of the beverage barrel.
Optionally, the main pump is a centrifugal pump or a diaphragm pump, and the bypass pump is a diaphragm pump.
Optionally, a one-way check valve is also provided on the exhaust line between the bypass pump and the drain or exhaust tap.
Optionally, the exhaust tap is connected to a waste reservoir by a pipe.
The utility model discloses another aspect provides a beverage machine, including recognition device for read drinking cup's identification information, and send identification information still includes above the bubble removal device.
The bubble eliminating device adopting the technical scheme has the following advantages:
the utility model discloses can with the gas outgoing who gets into in the beverage delivery pipeline when changing the beverage bucket, keep being full of liquid in the beverage delivery pipeline to guarantee that the liquid flow is smooth and easy, air lock and pipeline impact phenomenon can not appear, and the foam that produces when effectively eliminating the beverage output.
Adopt above-mentioned technical scheme's beverage machine has following advantage:
the utility model discloses when filling the beverage, can be according to the output volume output liquid of predesigned, guaranteed that the volume of beverage, aspects such as taste, outward appearance realize anticipatory effect.
The utility model discloses operating condition is stable, and the fault rate is low, is particularly useful for fast food industry, unmanned place of selling.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this application, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. In the drawings:
FIG. 1 is a schematic diagram of the control principle of a prior art beverage machine;
FIG. 2 is a schematic view of the internal structure of a prior art beverage machine;
FIG. 3 is a schematic view of the external structure of a beverage machine in the prior art (position A in the figure is for placing a beverage cup);
FIG. 4 is a schematic control flow diagram of a prior art beverage machine;
FIG. 5 is a schematic structural view of a bubble elimination device in embodiment 1 of the present invention;
FIG. 6 is a schematic structural view of a bubble elimination device in embodiment 2 of the present invention;
fig. 7 is a schematic control flow diagram of an apparatus for eliminating bubbles in an embodiment of the present invention.
In the figure: 10. an identification device; 20. a control device; 30. an injection device; 31. a main circuit pump; 32. a drain tap; 33. a one-way check valve; 34. a stop valve; 35. a bypass pump; 36. an exhaust tap; 37. a one-way check valve; 38. a stop valve; 40. a display device.
Detailed Description
The design concept of the utility model is that:
to the unable exhaust problem of air in the current beverage vending equipment, the utility model provides an eliminate bubble device through setting up exhaust pipe, can be with the gas outgoing in the beverage output pipeline to it is smooth and easy to guarantee that liquid flows, and effectively eliminates the foam.
Fig. 2 is a schematic diagram of the internal structure of a beverage machine in the prior art, and the present invention is an improvement on the internal structure of the beverage machine. The prior art beverage machine can refer to the Chinese patent '201710544083.4', and will not be described in detail here.
In order to make the objects, technical solutions and advantages of the present invention clearer, embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.
Example 1
As shown in fig. 5 and 7, the present embodiment provides an apparatus for eliminating bubbles, which includes a main pump 31 and a main pipeline, wherein an input end of the main pump 31 is connected to a beverage barrel through the main pipeline, an output end of the main pump 31 is connected to a liquid discharge tap 32 through the main pipeline, the apparatus further includes a bypass pump 35 and an exhaust pipeline, an input end of the bypass pump 35 is connected to the main pipeline between the main pump 31 and the liquid discharge tap 32 through the exhaust pipeline, an output end of the bypass pump 35 is connected to a gas outlet through the exhaust pipeline, and after replacing the beverage barrel, the main pump 31 and the main pipeline between the main pump 31 and the beverage barrel are exhausted through the bypass pump 35.
In order to prevent liquid and gas from flowing backward from one end of the discharge tap 32, a one-way check valve 33 is provided on a main pipe between the main pump 35 and the discharge tap 32, and an input end of the bypass pump 35 is connected to the main pipe between the main pump 31 and the one-way check valve 33 through an exhaust pipe.
In order to prevent the backflow of liquid or gas from one end of the exhaust port, a one-way check valve 37 is also provided on the exhaust line between the bypass pump 35 and the exhaust port. Therefore, the main pipeline and the exhaust pipeline are not affected when in use.
The beverage barrel in the bubble eliminating device comprises at least one piece, and when the bubble eliminating device is applied to the beverage machine, a beverage can be output.
The beverage barrel in the bubble eliminating device can comprise a plurality of beverage barrels, and when the bubble eliminating device is applied to the beverage machine, a plurality of beverages can be output.
When a plurality of beverage barrels are included, after any beverage barrel is replaced, the gas in the main pump 31 and the main pipeline between the main pump 31 and the beverage barrel can be exhausted through the bypass pump 35.
In this embodiment, the gas outlet also uses a discharge tap 32, and the output of the bypass pump 35 is connected to the main line between the one-way check valve 33 and the discharge tap 32 through an exhaust line, and gas is discharged from the discharge tap 32. After replacement of the beverage cartridge, the bypass pump 35 is automatically activated to discharge gas from the discharge tap 32 in preparation for dispensing the beverage. When selling beverage, there is no longer gas in main road pump 31 and the main pipeline between main road pump 31 and the beverage bucket, just can not appear gas lock and pipeline impact phenomenon, also can not produce the foam.
When the bypass pump 35 is exhausting, there is gas, possibly also foam, and a small amount of liquid discharged from the discharge tap 32, and in order to remove the foam and liquid, a suitable diversion device needs to be provided below the discharge tap 32 to divert the foam and liquid discharged with the discharge.
The bubble eliminating device further comprises a control device 20, wherein the control device is connected with the main pump 31 and the bypass pump 35 and controls the start and stop of the main pump 31 and the bypass pump 35, and the control device 20 can adopt P L C.
In order to detect the amount of liquid stored in the beverage barrel, as shown in fig. 5, a position sensor is provided corresponding to the beverage barrel, and the position sensor detects whether the beverage barrel is mounted in place and the amount of liquid stored in the beverage barrel, and transmits a detection signal to the control device 20.
In order to detect whether the bypass pump 35 discharges the gas in the main line, a liquid sensor is provided corresponding to the liquid discharge tap 32 to detect whether or not the liquid is output from the liquid discharge tap 32, the liquid sensor sends a detection signal to the control device 20, and when the liquid is output from the liquid discharge tap 32, the bypass pump 35 is turned off.
The liquid sensor can detect and distinguish liquid and gas, and generate different detection signals.
Because the gas entering the main pipeline is limited, when the bypass pump 35 is started to exhaust gas, the gas entering the main pipeline can be quickly exhausted, liquid enters the exhaust pipeline along with the gas and is also output from the liquid discharge faucet 32, the liquid discharge faucet 32 is detected through the liquid sensor, once the liquid is output, the control device 20 stops the bypass pump 35, and waste of beverage is prevented.
Typically, the input end of the main line is inserted into the beverage cartridge, close to the bottom of the beverage cartridge, so that the beverage in the beverage cartridge is drained as far as possible.
In order to realize the control of the air exhaust flow, the liquid storage quantity in the beverage barrel comprises three water level states of serious low water level, low water level and high water level.
The serious low water level is that the depth of the liquid storage is equal to or less than the height of the input end of the main pipeline, the low water level is that the depth of the liquid storage is equal to or less than half of the depth in the beverage barrel, and the high water level is that the depth of the liquid storage is greater than half of the depth in the beverage barrel.
The low water level and the high water level are non-severe low water levels.
As shown in fig. 7, the air discharge flow of the bubble removing device includes the following steps:
s1: initializing equipment, and returning the water level state and the reading of the positioning sensor to zero;
s2: reading the value of the current position sensor, and judging whether the water level state in the beverage barrel is a serious low water level, a non-serious low water level, a low water level or a high water level;
s3: if the current water level state is a serious low water level and the last water level state is a non-serious low water level, closing the main pump and the bypass pump to prevent the beverage from being continuously output; setting the current water level state as the serious low water level in the control device according to the current water level state no matter whether the last water level state is the serious low water level or not;
s4: if the current water level state is a low water level and the last water level state is a non-serious low water level, the control device starts the bypass pump and sets the bypass pump; setting the current water level state as a low water level in the control device according to the current water level state no matter whether the last water level state is a non-severe low water level or not;
s5: if the current water level state is a non-low water level and the last water level state is a non-serious low water level, the control device starts the bypass pump to be set; setting the current water level state as a high water level in the control device according to the current water level state no matter whether the last water level state is a non-serious low water level or not;
s6: in the control device, if the current water level state is the serious low water level, starting an addition warning, and returning to S2;
s7: in the control device, if the current water level state is a non-serious low water level, judging whether a water outlet request exists currently; if not, returning to S2;
s8: if the water outlet request is retrieved, starting the main road pump and judging whether the bypass pump is set; if not, returning to S2;
s9: if the bypass pump is set, the bypass pump exhaust is turned on and the bypass pump start set is eliminated, before returning to S2.
It should be noted that the bypass pump start setting is preset for starting the bypass pump 35, when the bypass pump start is not set, the bypass pump 35 cannot be started, and after the bypass pump start setting, the bypass pump 35 can be started.
In this embodiment, the positioning sensor is a pressure sensor and is arranged below the installation position of the beverage barrel. When the beverage barrel is not installed in place, the in-place sensor cannot detect the pressure; after the beverage barrel is installed in place, the position sensor can detect pressure, and along with the change of the liquid storage amount in the beverage barrel, the position sensor can detect different pressure values, so that whether the beverage barrel is installed in place or not and the liquid storage amount in the beverage barrel can be detected.
Compare the liquid level detector among the prior art and detector in place, the sensor of going into the position in this embodiment can play two effects simultaneously, and circuit structure obtains simplifying.
Preferably, the main pump 31 is a centrifugal pump, the flow rate of the centrifugal pump is stable, the flow rate is stable, and the pumping amount, namely the beverage amount in the beverage cup, can be controlled only by controlling the starting time of the centrifugal pump. Of course, a flow meter may be provided to implement feedback control of the main pump 31, as required, to implement more precise control of the output. The bypass pump 35 adopts a diaphragm pump, and a high-wear-resistance food-grade silica gel diaphragm is adopted inside the bypass pump, so that the safety and the sanitation of the beverage can be ensured.
The main pump 31 may be a diaphragm pump.
When the beverage barrel is reset after being taken out, the bubble eliminating device in the embodiment can discharge gas entering the beverage output pipeline when the beverage barrel is replaced, so that the beverage output pipeline is full of liquid, thereby ensuring smooth liquid flow, avoiding the phenomena of air lock and pipeline impact and effectively eliminating foam generated during beverage output.
Example 2
As shown in fig. 6, embodiment 2 of the present invention is different from embodiment 1 in that: an exhaust tap 36 is arranged in parallel with the drain tap 32, the exhaust port uses the exhaust tap 36, and in this embodiment, the output of the bypass pump 35 is connected to the exhaust tap 36 through an exhaust line. After replacement of the beverage cartridge, the bypass pump 35 is automatically activated to vent gas from the vent tap 36 in preparation for dispensing the beverage. When selling beverage, there is no longer gas in main road pump 31 and the main pipeline between main road pump 31 and the beverage bucket, just can not appear gas lock and pipeline impact phenomenon, also can not produce the foam.
In order to prevent the liquid and gas from flowing backward from one end of the exhaust tap 36, a one-way check valve 37 is also disposed on the exhaust pipe between the bypass pump 35 and the exhaust tap 36. Therefore, the main pipeline and the exhaust pipeline are not affected when in use.
Preferably, the exhaust tap 36 is connected to the waste reservoir by a pipe. Since the gas and foam discharged from the discharge cock 36 have no utility, a recovery device is not required. Even if the liquid is discharged from the air discharging cock 36, a plurality of kinds of beverages are easily mixed and difficult to distinguish, so that the liquid can be directly discharged to a waste liquid pool without providing a recovery device.
In order to detect whether the bypass pump 35 discharges the gas in the main line, a liquid sensor is provided corresponding to the discharge tap 36 to detect whether or not liquid is output from the discharge tap 36, the liquid sensor sends a detection signal to the control device 20, and when liquid is output from the discharge tap 36, the bypass pump 35 is turned off.
The liquid sensor can detect and distinguish liquid and gas, and generate different detection signals.
Because the gas entering the main pipeline is limited, when the bypass pump 35 is started to exhaust gas, the gas entering the main pipeline can be quickly exhausted, liquid enters the exhaust pipeline subsequently and is also output from the exhaust faucet 36, the exhaust faucet 36 is detected through the liquid sensor, once the liquid is output, the control device 20 stops the bypass pump 35, and waste of beverage is prevented.
Example 3
The embodiment provides a beverage machine, which comprises an identification device and a bubble eliminating device, wherein the identification device is used for reading identification information of a beverage cup and sending the identification information, and the bubble eliminating device is described in embodiment 1 or embodiment 2.
In particular, a beverage machine for injecting a beverage into a beverage cup, comprising: identification means 10 for reading identification information of the beverage cup and transmitting the identification information; a control device 20 for receiving the identification information, acquiring the beverage type information and/or the beverage amount information corresponding to the identification information, and outputting injection control information according to the beverage type information and/or the beverage amount information; and an injection device 30 for receiving and injecting the corresponding beverage type and/or beverage amount into the beverage cup according to the injection control information.
Other detailed arrangements of the beverage maker can be referred to the prior art and will not be described in detail here.
The beverage machine of this embodiment operation is simpler, and operating personnel only need select correct drinking glass, and the beverage machine just can realize automatic the corresponding beverage of the corresponding volume of branch injection to the drinking glass, effectively reduces operating personnel's requirement.
Through setting up and eliminating the bubble device, the beverage-making machine in this embodiment can be according to the output volume output liquid of predesign when pouring into beverage, has guaranteed that the volume of beverage, taste, aspect such as outward appearance realize the expectancy effect.
It should be noted that, when the bubble eliminating device in embodiment 2 is used, the bypass pump 35, the one-way check valve 37, the exhaust tap 36 and the waste liquid tank can be disposed below the table top of the beverage machine, which will not affect the external structure and appearance of the beverage machine.
The beverage machine in the embodiment has stable working state and low failure rate, and is particularly suitable for fast food industry and unmanned selling places.
In view of the above, it is only the specific embodiments of the present invention that other modifications and variations can be made by those skilled in the art based on the above-described embodiments in light of the above teachings. It should be understood by those skilled in the art that the foregoing detailed description is for the purpose of better explaining the present invention, and the scope of the present invention should be determined by the scope of the claims.

Claims (10)

1. The utility model provides an eliminate bubble device, includes main road pump and main line, the beverage bucket is connected through the main line to the input of main road pump, the flowing back tap is connected through the main line to the output of main road pump, its characterized in that still includes bypass pump and exhaust pipe, the input of bypass pump passes through exhaust pipe and connects the main line between the main road pump with flowing back tap, the output of bypass pump passes through exhaust pipe and connects the gas outlet, changes after the beverage bucket, through the bypass pump will the gas outgoing in the main line between main road pump and the beverage bucket.
2. The bubble eliminating device according to claim 1, wherein a one-way check valve is provided on a main pipe between the main pump and the discharge tap, and an input end of the bypass pump is connected to the main pipe between the main pump and the one-way check valve through an exhaust pipe;
the beverage barrel comprises a plurality of beverage barrels, and after any beverage barrel is replaced, the gas in the main pipeline and the main pipeline between the main pipeline pump and the beverage barrel are exhausted through the bypass pump.
3. The bubble elimination apparatus of claim 2, wherein an output of the bypass pump is connected to a main line between the one-way check valve and the discharge tap through a vent line, gas being discharged from the discharge tap; or an exhaust tap is arranged in parallel with the liquid discharge tap, the output end of the bypass pump is connected with the exhaust tap through an exhaust pipeline, and gas is discharged from the exhaust tap.
4. The bubble eliminating device according to claim 3, further comprising a control device, wherein the control device is connected with the main pump and the bypass pump and controls the start and stop of the main pump and the bypass pump;
a position sensor is arranged corresponding to the beverage barrel and used for detecting whether the beverage barrel is installed in place and detecting the liquid storage amount in the beverage barrel, and sending a detection signal to the control device.
5. The bubble removing apparatus according to claim 4, wherein a liquid sensor is provided corresponding to the air discharge cock, and detects whether or not liquid is discharged from the air discharge cock, and the liquid sensor sends a detection signal to the control means, and when liquid is discharged from the air discharge cock, the bypass pump is turned off.
6. The bubble elimination device of claim 4, wherein the input end of the main conduit is inserted into the beverage barrel near the bottom of the beverage barrel;
the liquid storage capacity in the beverage barrel comprises three water level states of serious low water level, low water level and high water level;
the serious low water level is that the depth of the liquid storage amount is equal to or less than the height of the input end of the main pipeline, the low water level is that the depth of the liquid storage amount is equal to or less than half of the depth in the beverage barrel, and the high water level is that the depth of the liquid storage amount is greater than half of the depth in the beverage barrel;
the low water level and the high water level are non-severe low water levels.
7. The bubble eliminating device according to claim 4, wherein the positioning sensor is a pressure sensor and is arranged below the installation position of the beverage barrel.
8. The bubble removing apparatus according to claim 1, wherein the main pump is a centrifugal pump or a diaphragm pump, and the bypass pump is a diaphragm pump.
9. The bubble eliminating device according to claim 3, wherein a one-way check valve is also provided on the exhaust pipeline between the bypass pump and the drain tap or the exhaust tap;
the exhaust tap is connected to the waste liquid tank through a pipeline.
10. Beverage machine comprising identification means for reading identification information of a beverage cup and sending said identification information, characterized in that it further comprises a bubble elimination device according to any of claims 1 to 9.
CN201920471914.4U 2019-04-09 2019-04-09 Bubble eliminating device and beverage machine Active CN210973857U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110002387A (en) * 2019-04-09 2019-07-12 北京古点科技有限公司 A kind of elimination air bubble apparatus and beverage dispenser

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110002387A (en) * 2019-04-09 2019-07-12 北京古点科技有限公司 A kind of elimination air bubble apparatus and beverage dispenser
CN110002387B (en) * 2019-04-09 2024-04-02 北京古点科技有限公司 Bubble eliminating device and beverage machine

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