IP Library Granted Patent US 11,564,407
Granted Patent B2
US 11,564,407 · App. 16/670,076 · Granted Jan 31, 2023

Device for synthesizing carbonated water and system for preparing carbonated water

Inventor: Qiyi Long (Shenzhen, CN)
Assignee: CINO TECHNOLOGY (SHENZHEN) LIMITED
A23L2/54B01F23/2331B01F23/2362B01F23/2363B01F23/237621
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Quick Facts
Patent No.
US 11,564,407
App. No.
16/670,076
Granted
Jan 31, 2023
Kind
B2
Abstract

A device for synthesizing carbonated water includes: a device shell, in which a stirring chamber is defined; a rotation shaft, which is accommodated in the stirring chamber; a blade structure, which is accommodated in the stirring chamber and rotatable around the rotation shaft; sidewall ribs, which are distributed in the stirring chamber and arranged on a sidewall of the device shell, each sidewall rib comprising one or more collision interfaces; an input unit, which is arranged on the device shell, positioned below the blade structure, communicated with the stirring chamber, and operable to receive water and carbon dioxide; and an output unit, which is arranged on the device shell, positioned above the blade structure, communicated with the stirring chamber, and operable to deliver carbonated water with a predetermined concentration.

Claims (57)

1. A device for synthesizing carbonated water, comprising:

a device shell, in which a stirring chamber is defined;

a rotation shaft, which is accommodated in the stirring chamber;

a blade structure, which is accommodated in the stirring chamber and rotatable around the rotation shaft;

a plurality of sidewall ribs, which are distributed in the stirring chamber and arranged on a sidewall of the device shell, each sidewall rib being one or more collision interfaces;

a plurality of blade ribs, which are arrange on the blade structure, each blade rib being one or more collision interfaces;

wherein the collision interface provides a solid and tough collision surface and configured to convert momentum into a great water-gas pressure;

an input unit, which is arranged on the device shell, positioned below the blade structure, communicated with the stirring chamber, and operable to receive water and carbon dioxide; and

an output unit, which is arranged on the device shell, positioned above the blade structure, communicated with the stirring chamber, and operable to deliver carbonated water with a predetermined concentration;

wherein the blade structure comprises a lower turbine and an upper turbine arranged above the lower turbine;

wherein the lower turbine is uniformly provided with several blades, and the lower turbine is rotatable about the rotation shaft to stir the water and the carbon dioxide flowing through the blades;

wherein the upper turbine is provided with blades, the blade shape of the upper turbine is different from that of the lower turbine, and the upper turbine and the lower turbine are rotatable independently of one other;

wherein the blades of the lower turbine are straight blades that are projected as straight lines in a direction of the rotation shaft the blades of the upper turbine are spiral blades that are projected as curve lines in the direction of the rotation shaft; and the output unit is positioned above the upper turbine.

2. The device according to claim 1 , wherein the device shell comprises an upper cover and a lower cover that are connected in a sealing fashion; wherein

a first receiving chamber is defined inside the lower cover and a second receiving chamber is defined inside the upper cover, the first receiving chamber and the second receiver chamber cooperating with each other to define the stirring chamber; and

the plurality of sidewall ribs are arranged on a sidewall of the lower cover.

3. The device according to claim 2 , wherein the first receiving chamber is a cylindrical chamber and the second receiving chamber is a tapered chamber; wherein a tapered top of the second receiving chamber is the output unit.

4. The device according to claim 3 , wherein the rotation shaft coincides with an axial line of the first receiving chamber and the output unit is arranged on the axial line.

5. A device for synthesizing carbonated water, comprising:

a device shell, in which a stirring chamber is defined;

a rotation shaft, which is accommodated in the stirring chamber;

a blade structure, which is accommodated in the stirring chamber and rotatable around the rotation shaft;

a plurality of sidewall ribs, which are distributed in the stirring chamber and arranged on a sidewall of the device shell, each sidewall rib being one or more collision interfaces;

a plurality of blade ribs, which are arrange on the blade structure, each blade rib being one or more collision interfaces;

wherein the collision interface provides a solid and tough collision surface and configured to convert momentum into a great water-gas pressure;

a water input unit, which is arranged on the device shell, positioned below the blade structure, communicated with the stirring chamber, and operable to deliver water;

a carbon dioxide input unit, which is arranged on an opposite side of the water input unit, communicated with the stirring chamber, and operable to deliver carbon dioxide; and

an output unit, which is arranged on the device shell, positioned above the blade structure, communicated with the stirring chamber, and operable to deliver carbonated water with a predetermined concentration;

wherein the blade structure comprises a lower turbine and an upper turbine arranged above the lower turbine;

wherein the lower turbine is uniformly provided with several blades, and the lower turbine is rotatable about the rotation shaft to stir the water and the carbon dioxide flowing through the blades;

wherein the upper turbine is provided with blades, the blade shape of the upper turbine is different from that of the lower turbine, and the upper turbine and the lower turbine are rotatable independently of one other;

wherein the blades of the lower turbine are straight blades that are projected as straight lines in a direction of the rotation shaft; the blades of the upper turbine are spiral blades that are protected as curve lines in the direction of the rotation shaft; and the output unit is positioned above the upper turbine.

6. The device according to claim 5 , wherein the device shell comprises an upper cover and a lower cover that are connected in a sealing fashion; wherein a first receiving chamber is defined inside the lower cover and a second receiving chamber is defined inside the upper cover, the first receiving chamber and the second receiver chamber cooperating with each other to define the stirring chamber; and the plurality of sidewall ribs are arranged on a sidewall of the lower cover.

7. The device according to claim 6 , wherein the first receiving chamber is a cylindrical chamber and the second receiving chamber is a tapered chamber; wherein a tapered top of the second receiving chamber is the output unit.

8. The device according to claim 7 , wherein the rotation shaft coincides with an axial line of the first receiving chamber and the output unit is arranged on the axial line.

9. A system for preparing carbonated water, comprising: one or a plurality of devices for synthesizing carbonated water, a water source, a gas source, and communication pipe; wherein

each device for synthesizing carbonated water comprises:

a device shell, in which a stirring chamber is defined;

a rotation shaft, which is accommodated in the stirring chamber;

a blade structure, which is accommodated in the stirring chamber and rotatable around the rotation shaft;

a plurality of sidewall ribs, which are distributed in the stirring chamber and arranged on a sidewall of the device shell, each sidewall rib being one or more collision interfaces;

a plurality of blade ribs, which are arrange on the blade structure, each blade rib being one or more collision interfaces;

wherein the collision interface provides a solid and tough collision surface and configured to convert momentum into a great water-gas pressure;

at least one input unit, which are arranged on the device shell, positioned below the blade structure, communicated with the stirring chamber, and operable to receive water and carbon dioxide; and

an output unit, which is arranged on the device shell, positioned above the blade structure, communicated with the stirring chamber, and operable to deliver carbonated water with a predetermined concentration;

the water source and the gas source are connected to the at least one input unit of one of the devices for synthesizing carbonated water; and

the plurality of devices for synthesizing carbonated water are cascaded and connected in series sequentially via the communication pipes:

wherein the blade structure comprises a lower turbine and an upper turbine arranged above the lower turbine;

wherein the lower turbine is uniformly provided with several blades, and the lower turbine is rotatable about the rotation shaft to stir the water and the carbon dioxide flowing through the blades;

wherein the upper turbine is provided with blades, the blade shape of the upper turbine is different from that of the lower turbine, and the upper turbine and the lower turbine are rotatable independently of one other;

wherein the blades of the lower turbine are straight blades that are projected as straight lines in a direction of the rotation shaft; the blades of the upper turbine are spiral blades that are projected as curve lines in the direction of the rotation shaft; and the output unit is positioned above the upper turbine.

10. The system according to claim 9 , wherein when the water source and the gas source are connected to one input unit of one of the devices for synthesizing carbonated water, the system further comprises: a three-way connector; wherein

the three-way connector comprises a first conduit joint, a second conduit joint and a third conduit joint that are in communication with each other;

the water source and the gas source are connected to the first conduit joint and the second conduit joint of the three-way connector respectively, and the third conduit joint is connected to the one input unit of one of the devices for synthesizing carbonated water.

11. The system according to claim 9 , wherein the at least one input unit comprises a water input unit and a carbon dioxide input unit, the carbon dioxide input unit is arranged on an opposite side of the water input unit;

the water source and the gas source are connected to the water input unit and the carbon dioxide input unit of the carbonated water synthesis device respectively.

12. The system according to claim 9 , further comprising: a throttle valve; wherein the throttle valve is connected to an output unit of one of the devices for synthesizing carbonated water, and operable to regulate an output flow rate of carbonated water.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2019
From: LONG, QIYI
To: CINO TECHNOLOGY (SHENZHEN) LIMITED
Reel/Frame 051030/0539 →
Priority Claims (2)
CN 201710682361.2 · Aug 10, 2017 · national
CN 201810032006.5 · Jan 12, 2018 · national
Continuity (2)
Continuation PCTCN2018072874 · Jan 16, 2018
Related Publication 20200060314A1 · Feb 27, 2020
Cited By (2)
US 12,533,643 US 12,541,660