Ice tea drinking water dispenser
By designing an ice tea drink water dispenser equipped with a tea liquid bottle and ice water mixing system, the problem that existing water dispensers cannot provide ice tea drinks conveniently and quickly is solved, and users can quickly obtain the effect of ice tea drinks.
Patent Information
- Application Number
- CN202421642426.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-11
AI Technical Summary
Existing water dispensers generally do not have tea drink functions, which makes it difficult for people to enjoy iced tea drinks conveniently and quickly, especially when they are busy working, they cannot obtain iced tea drinks in time.
An ice tea drink water dispenser is designed, including a tea liquid bottle, tea liquid water circuit, ice water storage gallbladder, ice water mixing water circuit and mixing water circuit. The concentrated tea liquid and ice water are mixed through the pump and flow directly out of the ice tea outlet, allowing users to obtain ice tea immediately.
It enables users to drink iced tea without waiting, meeting the needs of specific groups of people, especially providing a convenient and fast iced tea drinking experience when they are busy working.
Smart Images

Figure CN222942147U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water dispensers, in particular to an ice tea water dispenser. Background Art
[0002] With the improvement of living standards and the acceleration of work pace, it is necessary to provide convenient and fast beverages and drinking water. Now the use of single-function water dispensers has been widely accepted and used, bringing great convenience to users, but after solving the problem of drinking water, people have put forward the requirement of being able to enjoy beverages conveniently and quickly.
[0003] Especially nowadays, people pay more attention to health preservation, and drinking tea has gradually become a trend. In the existing technology, water dispensers are generally not equipped with tea drinking functions. People need to brew tea by themselves, which is troublesome. Some people like to drink iced tea. The brewed tea needs to be cooled to warm before being placed in the refrigerator for freezing. It takes a long time to drink iced tea, which makes people unable to enjoy iced tea when they are busy at work. Utility Model Content
[0004] The technical problem to be solved by the utility model is to provide an ice tea and water dispenser to solve one or more technical problems existing in the prior art and at least provide a beneficial choice or create conditions.
[0005] The solution of the utility model to solve the technical problem is:
[0006] Iced tea dispenser, including:
[0007] Tea liquid bottle;
[0008] a first tea liquid water path, the first tea liquid water path being in communication with the tea liquid bottle, and the first tea liquid water path being provided with a first tea liquid pump;
[0009] An ice water storage tank, wherein the ice water storage tank is equipped with a refrigeration device;
[0010] An ice-water mixing water channel, the ice-water mixing water channel is connected to the ice-water storage tank, and the ice-water mixing water channel is provided with an ice-water mixing pump;
[0011] The first mixing water channel, the first tea liquid water channel and the ice water mixing water channel are both connected to the first mixing water channel; the end of the first mixing water channel is connected to an ice tea outlet.
[0012] Through the above technical scheme, concentrated tea liquid is pumped out to the first tea liquid water channel by the first tea liquid pump, and then the concentrated tea liquid flows from the first tea liquid water channel into the first mixing water channel; warm water is pumped out to the ice water mixing water channel by the warm water mixing pump, and then the ice water flows from the ice water mixing water channel into the first mixing water channel, the ice water and concentrated tea liquid are mixed in the first mixing water channel and finally flow out from the ice tea outlet nozzle, so that people can get ice tea immediately and drink it without waiting, so that people can enjoy ice tea after busy work to meet the needs of specific groups of people.
[0013] As a further improvement of the above technical solution, it also includes:
[0014] a second tea liquid water path, the second tea liquid water path being in communication with the tea liquid bottle, and the second tea liquid water path being provided with a second tea liquid pump;
[0015] Boiling water storage tank;
[0016] A boiled water mixing water channel, the boiled water mixing water channel is connected to the boiled water storage tank, and the boiled water mixing water channel is provided with a boiled water mixing pump;
[0017] a second mixing water channel, the boiled water mixing water channel and the second tea liquid water channel are both connected to the second mixing water channel;
[0018] A hot tea water spout is connected to the second mixing water channel.
[0019] Through the above technical scheme, concentrated tea liquid is pumped out to the second tea liquid water channel by the second tea liquid pump, and then the concentrated tea liquid flows from the second tea liquid water channel into the second mixing water channel; boiled water is pumped out to the boiled water mixing water channel by the boiled water mixing pump, and then boiled water flows from the boiled water mixing water channel into the second mixing water channel, boiled water and concentrated tea liquid are mixed in the second mixing water channel and finally flow out from the hot tea outlet, so that people can obtain hot tea, and people can choose hot tea or iced tea, thereby adapting to the needs of different groups of people.
[0020] As a further improvement of the above technical solution, it also includes:
[0021] a third tea liquid water path, the third tea liquid water path being in communication with the tea liquid bottle, and the third tea liquid water path being provided with a third tea liquid pump;
[0022] Warm water storage tank;
[0023] A warm water mixing water channel, the warm water mixing water channel is connected to the warm water storage tank, and the warm water mixing water channel is provided with a warm water mixing pump;
[0024] a third mixing water channel, the warm water mixing water channel and the third tea liquid water channel are both connected to the third mixing water channel;
[0025] A warm tea water outlet is connected to the third mixing water channel.
[0026] Through the above technical scheme, concentrated tea liquid is pumped out to the third tea liquid water channel by the third tea liquid pump, and then the concentrated tea liquid flows into the third mixing water channel from the third tea liquid water channel; warm water is pumped out to the warm water mixing water channel by the warm water mixing pump, and then the warm water flows into the third mixing water channel from the warm water mixing water channel, the warm water and concentrated tea liquid are mixed in the third mixing water channel and finally flow out from the warm tea outlet nozzle, so that people can get warm tea and drink it without waiting, so that people can enjoy warm tea after busy work, and people can choose hot tea, warm tea or iced tea to meet the needs of different groups of people.
[0027] As a further improvement of the above technical solution, it also includes:
[0028] A cold water circuit, wherein the cold water circuit is provided with a water inlet solenoid valve;
[0029] A first heat exchanger, wherein the first heat exchanger is provided with a first cold water channel and a first hot water channel; the inlet of the first cold water channel is connected to the cold water circuit, and the outlet of the first cold water channel is connected to the boiled water storage tank; the inlet of the first hot water channel is connected to the boiled water storage tank or the warm water storage tank, and the outlet of the first hot water channel is connected to the ice water storage tank.
[0030] Through the above technical scheme, by setting up the first heat exchanger, the warm water flowing from the warm water storage tank to the ice water storage tank can be cooled down, and the cold water flowing from the water source to the boiling water storage tank can be preheated, which can effectively increase the cooling speed of the liquid in the ice water storage tank and reduce the energy consumption of the water dispenser.
[0031] As a further improvement of the above technical solution, it also includes a second heat exchanger, which is provided with a second cold water channel and a second hot water channel; the inlet of the second cold water channel is connected to the cold water circuit, and the outlet of the second cold water channel is connected to the boiled water storage tank; the inlet of the second hot water channel is connected to the boiled water storage tank, and the outlet of the second hot water channel is connected to the warm water storage tank.
[0032] Through the above technical solution, by setting up a second heat exchanger, the boiled water flowing from the boiled water storage tank to the warm water storage tank can be cooled, and the cold water flowing from the water source to the boiled water storage tank can be preheated, which can effectively increase the speed of heating the boiled water and reduce the energy consumption of the water dispenser.
[0033] As a further improvement of the above technical solution, the cold water circuit is provided with a water purification filter.
[0034] Through the above technical solution, the water purification filter can filter the inflowing cold water.
[0035] As a further improvement of the above technical solution, a second ultraviolet sterilization device is provided in the warm water storage tank.
[0036] Through the above technical scheme, a second ultraviolet sterilization device is arranged in the warm water storage tank, which can sterilize the warm water in the warm water storage tank, thereby avoiding the massive growth of bacteria in the warm water storage tank, which is beneficial to ensuring the safety of water drinkers.
[0037] As a further improvement of the above technical solution, a first ultraviolet sterilization device is provided in the tea liquid bottle.
[0038] Through the above technical solution, the first ultraviolet sterilization device can sterilize the concentrated tea in the tea bottle, thereby preventing the massive growth of bacteria in the concentrated tea, thereby ensuring the safety of tea drinkers.
[0039] As a further improvement of the above technical solution, a third ultraviolet sterilization device is provided in the ice water storage tank.
[0040] Through the above technical solution, a third ultraviolet sterilization device is arranged in the ice water storage tank, which can sterilize the water in the ice water storage tank, thereby avoiding the massive growth of bacteria in the ice water storage tank, which is beneficial to ensuring the safety of water drinkers.
[0041] As a further improvement of the above technical solution, a plurality of flow-disturbing protrusions are provided in the pipe of the first mixing water channel.
[0042] Through the above technical solution, since the temperature of the ice water is low and the molecular movement is inactive, the concentrated tea liquid is difficult to diffuse in the ice water, resulting in the concentrated tea liquid being unable to be evenly mixed with the ice water. By setting the spoiler protrusions, the flow of the ice water passing through can be disrupted, so that the concentrated tea liquid can be better mixed with the ice water, thereby obtaining a more uniform ice tea to ensure the quality of the tea.
[0043] The beneficial effects of the utility model are: people can get ice tea immediately and drink it without waiting, so that people can enjoy ice tea after busy work, thereby meeting the needs of specific groups of people.
[0044] The utility model is used in the technical field of water dispensers. BRIEF DESCRIPTION OF THE DRAWINGS
[0045] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following is a brief description of the drawings required for the description of the embodiments. Obviously, the drawings described are only part of the embodiments of the present utility model, not all of the embodiments, and those skilled in the art can also obtain other design solutions and drawings based on these drawings without creative work.
[0046] Figure 1It is a schematic diagram of the overall structure of an embodiment of the utility model;
[0047] Figure 2 It is a schematic diagram of the cross-sectional structure of the first mixing water channel of an embodiment of the utility model.
[0048] In the figure, 100, boiling water storage tank; 110, boiling water heating device; 120, second water level detection device; 130, third water level detection device; 200, warm water storage tank; 210, heat preservation structure; 220, first water level detection device; 230, overflow port; 240, second ultraviolet sterilization device; 300, tea bottle; 310, first ultraviolet sterilization device; 400, third mixing waterway; 410, warm water mixing waterway; 411, warm water mixing pump; 420, third tea waterway; 421, third tea pump; 430, warm tea water outlet; 500, second mixing waterway; 510, boiling water mixing waterway; 511 , boiling water mixing pump; 520, second tea liquid water circuit; 521, second tea liquid pump; 530, hot tea water outlet; 600, warm water replenishment pipeline; 700, cold water water circuit; 710, second heat exchanger; 720, water purification filter; 730, water inlet solenoid valve; 740, one-way valve; 750, first heat exchanger; 800, ice water storage tank; 810, third ultraviolet sterilization device; 820, refrigeration device; 900, first mixing water circuit; 901, spoiler protrusion; 910, first tea liquid water circuit; 911, first tea liquid pump; 920, ice water mixing water circuit; 921, ice water mixing pump; 930, ice tea water outlet. DETAILED DESCRIPTION
[0049] The following will clearly and completely describe the concept, specific structure and technical effects of the utility model in combination with the embodiments and drawings, so as to fully understand the purpose, characteristics and effects of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of them. Based on the embodiments of the utility model, other embodiments obtained by technicians in this field without creative work are all within the scope of protection of the utility model. In addition, all the connection / connection relationships mentioned in the text do not refer to the direct connection of components, but refer to the formation of a better connection structure by adding or reducing connection accessories according to the specific implementation situation. The various technical features in the invention can be combined interchangeably without conflicting with each other.
[0050] Reference Figure 1 and Figure 2 The water dispenser with tea drinking function includes a boiled water storage tank 100, a warm water storage tank 200, an ice water storage tank 800 and a tea liquid bottle 300. The boiled water storage tank 100, the warm water storage tank 200, the ice water storage tank 800 and the tea liquid bottle 300 are all fixedly installed inside the water dispenser.
[0051] The boiled water storage tank 100 is used to boil cold water into boiled water and store the boiled water. Specifically, in this embodiment, the boiled water storage tank 100 is a round can-shaped structure. The boiled water storage tank 100 is set as a round can-shaped structure, so that the boiled water storage tank 100 has better pressure resistance.
[0052] In other embodiments, the boiled water storage tank 100 may also be configured as a square tank structure, and those skilled in the art may select the specific structure of the boiled water storage tank according to actual needs.
[0053] Specifically, in the present embodiment, a boiling water heating device 110 is provided in the boiling water storage tank 100 . The boiling water heating device 110 is configured as a heating tube. The boiling water heating device 110 is used to heat the boiling water in the boiling water storage tank 100 to boiling.
[0054] A second water level detection device 120 and a third water level detection device 130 are installed in the boiled water storage tank 100. The second water level detection device 120 is installed at the upper end of the boiled water storage tank 100, and the third water level detection device 130 is installed at the lower end of the boiled water storage tank 100. The second water level detection device 120 and the third water level detection device 130 are respectively used to detect the water level in the boiled water storage tank 100.
[0055] When the water level of the boiled water storage tank 100 reaches the height of the second water level detection device 120, water intake is stopped so that the water level in the boiled water storage tank 100 is maintained at a certain water level during the heating process; when the water level of the boiled water storage tank 100 is lower than the height of the third water level detection device 130, water intake is started to avoid the water level of the boiled water storage tank 100 being too low.
[0056] Specifically, in this embodiment, the upper end of the boiled water storage tank 100 is connected with a pressure relief capillary for reducing the pressure of the boiled water storage tank.
[0057] Specifically, in this embodiment, an insulation structure 210 is installed in the warm water storage tank 200. The insulation structure 210 is configured as a heating pipe. The insulation structure 210 is used to insulate and heat the warm boiled water stored in the warm water storage tank 200, so that the temperature of the warm water in the warm water storage tank 200 is maintained within a certain range.
[0058] The warm water storage tank 200 is provided with a first water level detection device 220, which is used to detect the water level of the warm water storage tank 200 to prevent the water level in the warm water storage tank 200 from being too high.
[0059] Specifically, in this embodiment, the warm water storage tank 200 is further provided with an overflow port 230 , and the overflow port 230 is arranged above the first water level detection device 220 .
[0060] By providing the overflow port 230, when the water level in the warm water storage tank 200 is higher than the overflow port 230, the excess water will also be discharged through the overflow port 230 and connected to the external drainage facilities to ensure that the water level of the warm water storage tank 200 is below a certain height.
[0061] Specifically, in this embodiment, a second ultraviolet sterilization device 240 is provided in the warm water storage tank 200. The second ultraviolet sterilization device 240 is provided in the warm water storage tank 200, which can sterilize the warm water in the warm water storage tank 200, thereby preventing a large number of bacteria from growing in the warm water storage tank 200, which is beneficial to ensuring the safety of the drinker.
[0062] The ice water storage tank 800 is used to cool down warm water and store the cooled water. A refrigeration device 820 is installed in the ice water storage tank 800. Specifically, in this embodiment, the refrigeration device 820 is configured as a semiconductor refrigeration sheet.
[0063] A third ultraviolet sterilizing device 810 is installed in the ice water storage tank 800. The third ultraviolet sterilizing device 810 is arranged in the ice water storage tank 800 to sterilize the water in the ice water storage tank 800, thereby preventing the bacteria in the ice water storage tank 800 from growing in large quantities, which is beneficial to ensuring the safety of the drinker.
[0064] The ice water storage tank 800 is provided with a fourth water level monitoring device, and the fourth water level monitoring device is arranged at the upper end of the ice water storage tank 800 .
[0065] The ice water storage tank 800 is connected to an ice water mixing water path 920 , and the ice water mixing water path 920 is provided with an ice water mixing pump 921 , and the ice water mixing pump 921 is used to pump out the ice water in the ice water storage tank 800 .
[0066] Specifically, in this embodiment, the boiled water storage tank 100 is connected to a boiled water mixing water path 510 and a cold water water path 700 .
[0067] The boiled water mixing water channel 510 is provided with a boiled water mixing pump 511 , and the boiled water mixing pump 511 is used to pump boiled water out of the boiled water storage tank 100 .
[0068] The boiled water storage tank 100 and the warm water storage tank 200 are connected via a warm water replenishment pipeline 600. The warm water replenishment pipeline 600 is provided with a warm water replenishment pump.
[0069] Specifically, in the present embodiment, the warm water storage tank 200 is connected to a warm water mixing water path 410 , and the warm water mixing water path 410 is provided with a warm water mixing pump 411 , and the warm water mixing pump 411 is used to pump out the warm water in the warm water storage tank 200 .
[0070] The warm water storage tank 200 is connected to the ice water storage tank 800 through an ice water replenishment pipeline. The ice water replenishment pipeline is provided with an ice water replenishment pump.
[0071] Specifically, in this embodiment, a second heat exchanger 710 and a first heat exchanger 750 are disposed between the boiled water storage tank 100 and the cold water circuit 700. The first heat exchanger 750 and the second heat exchanger 710 are disposed in parallel.
[0072] The cold water circuit 700 is connected to a water source, and a water purification filter 720 , a water inlet solenoid valve 730 , and a one-way valve 740 are sequentially arranged in the cold water circuit 700 along a direction from the water source to the second heat exchanger 710 .
[0073] The water purification filter 720 is used to filter and remove impurities from the water flowing into the cold water channel 700 from the water source to purify the water.
[0074] The water inlet solenoid valve 730 is used to control whether cold water enters.
[0075] The flow direction of the one-way valve 740 is from the water source toward the second heat exchanger 710 and the first heat exchanger 750. The one-way valve 740 is used to prevent water from flowing back from the second heat exchanger 710 or the first heat exchanger 750 to the cold water circuit 700.
[0076] The second heat exchanger 710 is provided with a second cold water channel and a second hot water channel. The flow of liquid in the second cold water channel and the second hot water channel can realize heat transfer between the liquids in the second cold water channel and the second hot water channel, so that the cold water in the second cold water channel is preheated and the hot water in the second hot water channel is cooled.
[0077] The inlet of the second cold water channel is connected to one end of the one-way valve 740 away from the water inlet solenoid valve 730 , and the outlet of the second cold water channel is connected to the boiled water storage tank 100 .
[0078] The inlet of the second hot water channel is connected to the boiled water storage tank 100 , and the outlet of the second hot water channel is connected to the warm water storage tank 200 via the warm water replenishment pipeline 600 .
[0079] By providing the second heat exchanger 710, the boiled water flowing from the boiled water storage tank 100 to the warm water storage tank 200 can be cooled, and the cold water flowing from the water source to the boiled water storage tank 100 can be preheated, which can effectively increase the speed of heating the boiled water and reduce the energy consumption of the water dispenser.
[0080] The first heat exchanger 750 is provided with a first cold water channel and a first hot water channel. The flow of liquid in the first cold water channel and the first hot water channel can realize heat transfer between the liquid in the first cold water channel and the first hot water channel, so that the cold water in the first cold water channel is preheated and the hot water in the first hot water channel is cooled.
[0081] The inlet of the first cold water channel is connected to one end of the one-way valve 740 away from the water inlet solenoid valve 730 , and the outlet of the first cold water channel is connected to the boiled water storage tank 100 .
[0082] The inlet of the first hot water channel is connected to the warm water storage tank 200, and the outlet of the first hot water channel is connected to the ice water storage tank 800 through an ice water replenishing pipeline.
[0083] By providing the first heat exchanger 750, the warm water flowing from the warm water storage tank 200 to the ice water storage tank 800 can be cooled, and the cold water flowing from the water source to the boiling water storage tank 100 can be preheated, which can effectively increase the cooling speed of the liquid in the ice water storage tank 800 and reduce the energy consumption of the water dispenser.
[0084] The tea liquid bottle 300 is used to contain concentrated tea liquid.
[0085] Specifically, in the present embodiment, a first ultraviolet sterilization device 310 is fixedly installed in the tea bottle 300. The first ultraviolet sterilization device 310 can sterilize the concentrated tea in the tea bottle 300, thereby preventing bacteria from growing in large quantities in the concentrated tea, thereby ensuring the safety of tea drinkers.
[0086] Specifically, in the present embodiment, the tea liquid bottle 300 is connected to the third tea liquid water channel 420 , the second tea liquid water channel 520 and the first tea liquid water channel 910 .
[0087] Specifically, the first tea liquid water channel 910 is provided with a first tea liquid pump 911 , and the first tea liquid pump 911 is used to pump out the concentrated tea liquid in the tea liquid bottle 300 .
[0088] Specifically, the third tea liquid water channel 420 is provided with a third tea liquid pump 421 , and the third tea liquid pump 421 is used to pump out the concentrated tea liquid in the tea liquid bottle 300 .
[0089] Specifically, the second tea liquid water channel 520 is provided with a second tea liquid pump 521, and the second tea liquid pump 521 is used to pump out the concentrated tea liquid in the tea liquid bottle 300. The second tea liquid water channel 520 is in communication with the second mixing water channel 500.
[0090] The water dispenser is also provided with a first mixing water channel 900, the first tea liquid water channel 910 and the ice water mixing water channel 920 are both connected to the first mixing water channel 900, and the end of the first mixing water channel 900 is connected to an ice tea water outlet 930, and the ice tea water outlet 930 is fixedly installed on the outer wall of the water dispenser.
[0091] The concentrated tea in the first tea liquid waterway 910 and the ice water in the ice water mixing waterway 920 flow into the first mixing waterway 900 and mix, so that the concentrated tea is diluted into tea drink, and finally flows out from the hot tea spout 530 to provide ice tea for people.
[0092] Specifically, in this embodiment, a plurality of flow-disturbing protrusions 901 are evenly distributed in the pipe of the first tea liquid water channel 910 .
[0093] Specifically, in this embodiment, the spoiler protrusion 901 is a convex point structure. In other embodiments, the spoiler protrusion 901 can also be set as a spirally extended strip structure. Those skilled in the art can select the specific shape of the spoiler protrusion 901 according to actual needs.
[0094] Since the temperature of ice water is relatively low and the molecular motion is inactive, it is difficult for concentrated tea liquid to diffuse in the ice water, resulting in the concentrated tea liquid being unable to be evenly mixed with the ice water. By providing the spoiler protrusion 901, the flow of the ice water passing through can be disrupted, so that the concentrated tea liquid can be better mixed with the ice water, thereby obtaining a more uniform ice tea to ensure the quality of the tea.
[0095] The water dispenser is also provided with a third mixing water channel 400, the third tea liquid water channel 420 and the warm water mixing water channel 410 are both connected to the third mixing water channel 400, and the end of the third mixing water channel 400 is connected to a warm tea water outlet 430, and the warm tea water outlet 430 is fixedly installed on the outer wall of the water dispenser.
[0096] The concentrated tea in the third tea waterway 420 and the warm water in the warm water mixing waterway 410 flow into the third mixing waterway 400 and mix, so that the concentrated tea is diluted into tea drink, and finally flows out from the hot tea spout 530 to provide warm tea for people.
[0097] The water dispenser is also provided with a second mixing water channel 500, the second tea liquid water channel 520 and the boiled water mixing water channel 510 are both connected to the second mixing water channel 500, and the end of the second mixing water channel 500 is connected to the hot tea water outlet 530, and the hot tea water outlet 530 is fixedly installed on the outer wall of the water dispenser.
[0098] The concentrated tea in the second tea liquid waterway 520 and the boiled water in the boiled water mixing waterway 510 flow into the second mixing waterway 500 and mix, so that the concentrated tea is diluted into tea drink, and finally flows out from the hot tea spout 530 to provide hot tea for people.
[0099] People can choose hot tea flowing out from the hot tea spout 530 or warm tea flowing out from the warm tea spout 430, thereby meeting the needs of different groups of people.
[0100] The preferred implementation modes of the present invention are specifically described above, but the present invention is not limited to the described embodiments. Those skilled in the art may make various equivalent modifications or substitutions without violating the spirit of the present invention, and these equivalent modifications or substitutions are all included in the scope defined by the claims of this application.
Claims
1. Ice tea drinking water dispenser, characterized by: include: Tea liquid bottle; a first tea liquid water path, the first tea liquid water path being in communication with the tea liquid bottle, and the first tea liquid water path being provided with a first tea liquid pump; An ice water storage tank, wherein the ice water storage tank is equipped with a refrigeration device; An ice-water mixing water channel, the ice-water mixing water channel is connected to the ice-water storage tank, and the ice-water mixing water channel is provided with an ice-water mixing pump; The first mixing water channel, the first tea liquid water channel and the ice water mixing water channel are both connected to the first mixing water channel; the end of the first mixing water channel is connected to an ice tea outlet.
2. The ice tea drinking machine according to claim 1, characterized in that: Also includes: a second tea liquid water path, the second tea liquid water path being in communication with the tea liquid bottle, and the second tea liquid water path being provided with a second tea liquid pump; Boiling water storage tank; A boiled water mixing water channel, the boiled water mixing water channel is connected to the boiled water storage tank, and the boiled water mixing water channel is provided with a boiled water mixing pump; a second mixing water channel, the boiled water mixing water channel and the second tea liquid water channel are both connected to the second mixing water channel; A hot tea water spout is connected to the second mixing water channel.
3. The ice tea drinking machine according to claim 2, characterized in that: Also includes: a third tea liquid water path, the third tea liquid water path being in communication with the tea liquid bottle, and the third tea liquid water path being provided with a third tea liquid pump; Warm water storage tank; A warm water mixing water channel, the warm water mixing water channel is connected to the warm water storage tank, and the warm water mixing water channel is provided with a warm water mixing pump; a third mixing water channel, the warm water mixing water channel and the third tea liquid water channel are both connected to the third mixing water channel; A warm tea water outlet is connected to the third mixing water channel.
4. The ice tea drinking machine according to claim 3, characterized in that: Also includes: A cold water circuit, wherein the cold water circuit is provided with a water inlet solenoid valve; A first heat exchanger, wherein the first heat exchanger is provided with a first cold water channel and a first hot water channel; The inlet of the first cold water channel is connected to the cold water circuit, and the outlet of the first cold water channel is connected to the boiled water storage tank; the inlet of the first hot water channel is connected to the boiled water storage tank or the warm water storage tank, and the outlet of the first hot water channel is connected to the ice water storage tank.
5. The ice tea drinking machine according to claim 4, characterized in that: It also includes a second heat exchanger, which is provided with a second cold water channel and a second hot water channel; the inlet of the second cold water channel is connected to the cold water circuit, and the outlet of the second cold water channel is connected to the boiled water storage tank; the inlet of the second hot water channel is connected to the boiled water storage tank, and the outlet of the second hot water channel is connected to the warm water storage tank.
6. The ice tea drinking machine according to claim 4, characterized in that: The cold water circuit is provided with a water purification filter.
7. The ice tea drinking machine according to claim 3, characterized in that: A second ultraviolet sterilization device is arranged in the warm water storage tank.
8. The ice tea drinking machine according to claim 1, characterized in that: A first ultraviolet sterilizing device is arranged in the tea liquid bottle.
9. The ice tea drinking machine according to claim 1, characterized in that: A third ultraviolet sterilization device is arranged in the ice water storage tank.
10. The ice tea drinking machine according to claim 1, characterized in that: A plurality of flow-disturbing protrusions are arranged in the pipe of the first mixing water channel.