CN209789586U - Automatic tea making device - Google Patents
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- CN209789586U CN209789586U CN201920299857.6U CN201920299857U CN209789586U CN 209789586 U CN209789586 U CN 209789586U CN 201920299857 U CN201920299857 U CN 201920299857U CN 209789586 U CN209789586 U CN 209789586U
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- 241001122767 Theaceae Species 0.000 title claims abstract description 220
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 208
- 238000010438 heat treatment Methods 0.000 claims abstract description 89
- 238000005485 electric heating Methods 0.000 claims abstract description 57
- 238000001514 detection method Methods 0.000 claims abstract description 56
- 238000002347 injection Methods 0.000 claims abstract description 26
- 239000007924 injection Substances 0.000 claims abstract description 26
- 238000009835 boiling Methods 0.000 claims abstract description 18
- 238000007599 discharging Methods 0.000 claims abstract description 5
- 239000008236 heating water Substances 0.000 claims abstract description 5
- 239000007788 liquid Substances 0.000 claims description 26
- 238000006243 chemical reaction Methods 0.000 claims description 14
- 238000005303 weighing Methods 0.000 claims description 13
- 239000003302 ferromagnetic material Substances 0.000 claims description 10
- 230000003993 interaction Effects 0.000 claims description 9
- 239000000463 material Substances 0.000 claims description 6
- 238000001914 filtration Methods 0.000 claims description 5
- 238000012544 monitoring process Methods 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 5
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- 238000013461 design Methods 0.000 description 4
- 238000000034 method Methods 0.000 description 3
- 230000009471 action Effects 0.000 description 2
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- 230000008569 process Effects 0.000 description 2
- 239000000243 solution Substances 0.000 description 2
- 238000013475 authorization Methods 0.000 description 1
- 238000004891 communication Methods 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 239000003651 drinking water Substances 0.000 description 1
- 235000020188 drinking water Nutrition 0.000 description 1
- 230000006870 function Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
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- 239000011148 porous material Substances 0.000 description 1
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Abstract
the utility model provides an automatic tea making device, which comprises a tea making container, an electric control valve arranged on the tea making container and used for discharging tea water, a water heating assembly used for heating water, a water inlet pipe used for injecting water, a water injection control device arranged on the water inlet pipe and used for controlling the on-off of water flow, and an electric control assembly; the water boiling assembly comprises a heating cavity and a first electric heating element; the water inlet of the heating cavity is connected with the water inlet pipe, and the water outlet of the heating cavity is communicated with the tea making container; the electric control assembly comprises a temperature detection device for detecting the temperature of the heated water and a controller for controlling the on-off of the power supplies of the water injection control device, the first electric heating element and the electric control valve according to a detection signal and set parameters; the temperature detection device, the water injection control device, the first electric heating element and the electric control valve are all electrically connected with the controller. The utility model discloses can practice thrift the time of making tea during the use, the structure is small and exquisite relatively and can realize adding water, heating up water, making tea, go out the full-automatic of tea, operation convenient to use when using.
Description
Technical Field
The utility model relates to a tea set technical field, concretely relates to automatic device of making tea.
Background
Tea culture has a long history, tea making appliances are various, requirements for making tea are increasingly improved along with the continuous improvement of living standard of people, the water quantity, the water temperature and the like of making tea are very studied aiming at different tea varieties, correspondingly, the tea making tea set is also increasingly developed towards automation direction, various automatic or semi-automatic tea making devices are researched, for example, Chinese patent documents with the authorization publication numbers of CN205568527U, CN204683194U, CN206342271U and the like relate to automatic tea sets, however, the automatic tea set disclosed by the documents can not automatically control tea making factors such as the water temperature of making tea, the water quantity of making tea, the tea making time and the like according to different tea varieties; meanwhile, full automation of water adding, water boiling, tea making and tea discharging is not realized, and the automatic tea set is not in a true sense. The Chinese patent document with application publication number CN108784361A discloses an automatic tea making device which can better realize the full-automatic tea making function, but has the following defects: firstly, hot water required for making tea needs to wait for a certain water boiling time, and secondly, the overall device is large in size, so that the occupied position for placing the tea is large when the tea is used, and the use requirements of partial users cannot be effectively met; thirdly, the structure is relatively complex and the cost is relatively high.
SUMMERY OF THE UTILITY MODEL
The utility model aims at: to the problem among the prior art, provide one kind and practice thrift the time of making tea, the structure is small and exquisite relatively, the cost is lower relatively and can realize adding water, heating up water, making tea, play full-automatic device of making tea when using.
The technical scheme of the utility model is that: the utility model discloses an automatic tea making device, its structural feature is: the tea making device comprises a tea making container, an electric control valve arranged at the bottom or the side lower part of the tea making container and used for discharging tea water, a water boiling assembly used for heating water, a water inlet pipe used for injecting water, a water injection control device arranged on the water inlet pipe and used for controlling the on-off of water flow, and an electric control assembly; the electric control valve is an electric valve or an electromagnetic valve, the tea making container is provided with an opening for injecting water and placing tea, and the water boiling assembly comprises a heating cavity and a first electric heating element; the heating cavity is a hollow component provided with a water inlet and a water outlet, the first electric heating element is arranged on the outer side of the heating cavity, the water inlet of the heating cavity is connected with the water inlet pipe, and the water outlet of the heating cavity is communicated with the opening of the tea making container; the electric control assembly comprises a temperature detection device for detecting the temperature of the heated water and a controller for correspondingly controlling the on-off of the power supplies of the water injection control device, the first electric heating element and the electric control valve according to a detection signal and set parameters; the temperature detection device, the water injection control device, the first electric heating element and the electric control valve are all electrically connected with the controller.
The further scheme is as follows: the water injection control device is an electric water pump, an electric valve or an electromagnetic valve, and the flow rate of the electric water pump, the electric valve or the electromagnetic valve is matched with that of the water boiling assembly.
The further scheme is as follows: the electric control assembly further comprises a first water quantity detection device for detecting the tea quantity in the tea making container; the first water amount detection device is electrically connected with the controller.
The further scheme is as follows: the first water amount detection device is a weighing sensor, or the first water amount detection device is a liquid level sensor.
The further scheme is as follows: the electric control assembly further comprises a liquid level detection device for monitoring the water level in the heating cavity, and the liquid level detection device is electrically connected with the controller through signals.
The further scheme is as follows: the heating cavity is a tubular member, and the heating cavity and the first electric heating element form an electric heating water pipe together.
The further scheme is as follows: the controller comprises a signal conversion module, a CPU module, a human-computer interaction module, a relay group and a power module, wherein the CPU module is in signal electric connection with the signal conversion module, the relay group is in signal electric connection with the CPU module, and the human-computer interaction module is in electric connection with the CPU module; the temperature detection device, the first water quantity detection device and the liquid level detection device are respectively and electrically connected with a signal conversion module of the controller; the electric control valve, the first electric heating element and the water injection control device are respectively electrically connected with corresponding relays in a relay group of the controller, and the power supply module is used for providing a working power supply.
The further scheme is as follows: the tea making device also comprises a tea filtering piece arranged in the tea making container, a tea containing container used for containing tea water, and a second electric heating element used for heating the tea containing container; the electric control assembly further comprises a second water quantity detection device for detecting the tea water quantity in the tea container, the second water quantity detection device is electrically connected with the signal conversion module of the controller, the second electric heating element is electrically connected with a corresponding relay in a relay group of the controller, and the on-off state of a power supply of the second electric heating element is controlled by the controller.
The further scheme is as follows: the second water quantity detection device is a weighing sensor; the temperature detection device is a temperature sensor.
The further scheme is as follows: the automatic tea making device further comprises a support, wherein the support comprises a base, a vertical frame, a first transverse frame, a second transverse frame and a third transverse frame; the vertical frame is integrally or fixedly arranged on one side of the base; the first transverse frame is integrally or fixedly arranged at the upper end of the vertical frame; the second transverse frame is arranged on the first transverse frame and is positioned above the base; the third transverse frame is arranged on the base and is positioned below the second transverse frame;
The tea making container is arranged on the second transverse frame, and the heating cavity of the water boiling assembly is arranged on the first transverse frame and is positioned on one side of the tea making container; the tea container is arranged on the third transverse frame; the second water quantity detection device is arranged between the third transverse frame and the base; the second electric heating element is arranged on the third transverse frame and is positioned at the place where the tea container is placed.
The further scheme is as follows: the first electric heating element is a resistance heating device.
The further scheme is as follows: the first electric heating element is an electromagnetic heating coil; the material of the part of the heating cavity at least covered by the first electric heating element is ferromagnetic material, or when the material of the heating cavity is non-ferromagnetic material, a ferromagnetic material layer is arranged between the first electric heating element and the heating cavity.
The utility model discloses has positive effect: (1) the utility model discloses an automatic device of making tea, it sets up the improvement of discharge control device isotructure through the instant heating type subassembly of heating up water and cooperation, makes it compare in prior art device of the same kind, can practice thrift the required hot water latency of making tea to the saving is made tea the whole time, satisfies market user's needs. (2) The utility model discloses an automatic device of making tea, it makes it compare in prior art device of the same kind through overall structure's design, and overall structure is small and exquisite relatively, therefore puts shared position less relatively during the use, satisfies the part to the limited user demand of tea set locating place. (3) The utility model discloses an automatic device of making tea, it makes it when using through overall structure's design, can carry out automatic control to the tea-making key element such as the temperature of making tea, the water yield of making tea, the time of making tea according to the tealeaves variety of difference, therefore can steep out the tea of taste best to the tealeaves variety of difference to can realize adding water, boil water, make tea, go out tea whole automatic, degree of automation is high, uses very convenient and safe. (4) The utility model discloses an automatic device of making tea, it makes it compare in prior art device of the same kind through overall structure's design, and the structure is simple relatively, and the cost is lower relatively. (5) The utility model discloses an automatic device of making tea, its subassembly that burns water designs into the component that burns water of an instant heating type, and it is fast to heat water, can practice thrift the required hot water latency of making tea.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
Fig. 2 is a schematic structural diagram of a second embodiment of the present invention;
Fig. 3 is a schematic structural diagram of a third embodiment of the present invention;
Fig. 4 is a schematic structural diagram of a fourth embodiment of the present invention;
Fig. 5 is a schematic block diagram of the circuit structure of the present invention.
The reference numbers in the above figures are as follows:
The device comprises a support 1, a base 11, a vertical frame 12, a first transverse frame 13, a second transverse frame 14 and a third transverse frame 15; a tea making container 2 with an opening 21; a tea filter element 3; the water boiler comprises an electric control valve 4, a water boiling assembly 5, a heating cavity 51, a water inlet pipe 52, a water outlet pipe 53, a first electric heating element 54, an electromagnetic heating coil 54-1 and a ferromagnetic material layer 54-2; the tea-making machine comprises a water injection control device 6, a tea container 7, a second electric heating element 8, an electric control assembly 9, a temperature detection device 91, a liquid level detection device 92, a first weighing sensor 93, a second weighing sensor 94 and a controller 95.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
(example 1)
Referring to fig. 1, the automatic tea making device of the present embodiment mainly includes a support 1, a tea making container 2, a tea filtering member 3, an electric control valve 4, a water boiling assembly 5, a water injection control device 6, a tea container 7, a second electric heating element 8 and an electric control assembly 9.
The support 1 is used for mounting and supporting related components of the device, and in the embodiment, the support 1 mainly comprises a base 11, a vertical frame 12, a first transverse frame 13, a second transverse frame 14 and a third transverse frame 15; the vertical frame 12 is integrally or fixedly arranged on one side of the base 11; the first transverse frame 13 is integrally or fixedly arranged at the upper end of the vertical frame 12; the second cross frame 14 is disposed on the first cross frame 13 and above the base 11. Third cross member 15 in a preferred embodiment, the third cross member 15 is provided on the base 11 and below the second cross member 14.
The tea making container 2 is a hollow component, an opening 21 for injecting water and placing tea is arranged on the tea making container 2, and in the embodiment, the opening 21 is preferably arranged above the tea making container 2; tea making container 2 includes integrative or sealed fixed bottom plate and wall body that links to each other at least, and tea making container 2 is equipped with the liquid outlet that is used for going out tea, and in this embodiment, tea making container 2's liquid outlet is established on the bottom plate. The tea making container 2 is fixedly arranged on the second cross frame 14 of the bracket 1.
tea leaf filters the component that 3 are constituteed by bottom plate and wallboard, and tea leaf filters and is equipped with the filtration pore on 3's bottom plate and the wallboard, and tea leaf filters 3's shape and size and the container 2 suits of making tea, and tea leaf filters 3 and locates in the container 2 of making tea.
The electric control valve 4 can adopt an electric valve or an electromagnetic valve, the electric control valve 4 is fixedly arranged at the liquid outlet of the tea making container 2 in a sealing way, namely, in the embodiment, the electric control valve 4 is arranged on the bottom plate of the tea making container 2, and the electric control valve 4 is used for discharging tea water when in use. When the electric valve 4 is an electric valve, the electric valve is commercially available, and when the electric valve 4 is an electromagnetic valve, the electric valve is also a product in the prior art, for example, a liquid-passing electromagnetic valve disclosed in chinese patent publication No. CN 108825801A.
The water boiling assembly 5 comprises a heating chamber 51, a water inlet pipe 52, a water outlet pipe 53 and a first electric heating element 54.
The heating cavity 51 is a hollow component provided with a water inlet and a water outlet, the heating cavity 51 is integrally tubular, the water inlet of the heating cavity 51 is arranged below the heating cavity in the axial direction, and the water outlet is arranged above the heating cavity in the axial direction. The heating cavity 51 is fixedly arranged on the support 1, and preferably, the heating cavity 51 is fixedly arranged on the first cross frame 13 of the support 1 and is located at one side of the tea making container 2. One end of the water inlet pipe 52 is fixedly connected with the water inlet of the heating cavity 51 in a sealing way, and the other end of the water inlet pipe 52 is externally connected with a water source when in use; the water outlet of the heating cavity 51 is communicated with the opening 21 of the tea making container 2, in the embodiment, the communication between the water outlet of the heating cavity 51 and the opening 21 of the tea making container 2 is preferably implemented by a water outlet pipe 53, one end of the water outlet pipe 53 is fixedly connected with the water outlet of the heating cavity 51 in a sealing manner, the other end of the water outlet pipe 53 is matched with the opening 21 of the tea making container 2, and boiled water or hot water is injected into the tea making container 2 during use. The first electric heating element 54 is used for heating the heating cavity 51, and the first electric heating element 54 is arranged outside the heating cavity 51. In this embodiment, the first electric heating element 54 is a resistance heating device, and the first electric heating element 54 is disposed on the outer peripheral wall of the heating cavity 51.
The water injection control device 6 is disposed on the water inlet pipe 52 and is used for automatically controlling the water injection into the heating cavity 51, and the water injection control device 6 may be an electric water pump, an electric valve or an electromagnetic valve with a flow rate adapted to the volume of the heating cavity 51.
As a preferred mode, the tea container 7 and the second electric heating element 8 are matched with the third cross frame 15 of the bracket 1, the tea container 7 is a commercially available product with a liquid inlet, such as a tea cup, a tea bowl or a teapot, and the like, when in use, the tea container 7 is placed on the third cross frame 15, and the liquid inlet of the tea container 7 is positioned below the electric control valve 4; the second electric heating element 8 is arranged on the third cross frame 15, and the second electric heating element 8 is a resistance type heating element. In use, the second electric heating element 8 is used for heating the tea container 7 containing tea water when needed.
the electronic control assembly 9 includes a temperature detection device 91, a liquid level detection device 92, a first water amount detection device, a second water amount detection device, and a controller 95.
The temperature detecting means 91 is used for detecting the temperature of the water heated by the water boiling unit 5, and in the present embodiment, a temperature sensor is preferably used as the temperature detecting means 91. The temperature detection device 91 may be disposed on the heating cavity 51, the water outlet pipe 53 or the tea making container 2. The liquid level detection device 92 is used for detecting the water level in the heating chamber 51 to prevent the water level in the heating chamber 51 from being too low to cause dry burning of the heating chamber 51. The liquid level detecting device 92 preferably employs a liquid level sensor in this embodiment. The first water amount detecting device is used for detecting the amount of tea water in the tea making container 2, in this embodiment, the first water amount detecting device adopts a first weighing sensor 93 arranged between the first cross frame 13 and the second cross frame 14 of the bracket 1, the first water amount detecting device can also adopt a liquid level sensor (not shown) arranged on the tea making container 2, and the first water amount detecting device can also adopt a flow sensor (not shown) arranged on the water outlet pipe 53 of the water boiling component 5. Preferably, the second water amount detecting device is configured to be matched with the tea container 7 for detecting the amount of tea water in the tea container 7, and in this embodiment, the second water amount detecting device preferably adopts a second weighing sensor 94 arranged between the third cross frame 15 and the base 11 of the bracket 1.
The controller 95 may be provided on the stand 1 or may be provided independently. Referring to fig. 5, the controller 95 is mainly composed of a signal conversion module, a CPU module, a human-computer interaction module, a relay group, and a power supply module, wherein the CPU module is electrically connected with the signal conversion module by signals, the relay group is electrically connected with the CPU module by signals, and the human-computer interaction module is electrically connected with the CPU module. The signal conversion module is used for converting signals such as the water temperature detected by the temperature detection device 91, the water amount in the heating cavity 51 detected by the liquid level detection device 92, the tea water amount in the tea making container 2 detected by the first water amount detection device, the tea water amount in the tea containing container 7 detected by the second water amount detection device into signals which can be received by the CPU module and sending the signals to the CPU module, and the signal conversion module is a conventional circuit module in the prior art and the structure of the signal conversion module is not described in detail. The human-computer interaction module is preferably a touch screen and is used for setting parameter settings including tea making water quantity, tea making water temperature and tea making time according to different tea varieties and displaying the working state in real time during use; the relay group comprises a plurality of relays and is used for executing power supply on-off control on the electric control valve 4, the first electric heating element 54, the second electric heating element 8 and the water injection control device 6 according to the instruction of the CPU module; the CPU module is used for realizing the main control of the device; the CPU module comprises a CPU chip and a memory, and the program built in the CPU chip is a simple program in the prior art. The power module is used for providing a working power supply, and when the power module is used, the input end of the power module is externally connected with a mains supply. Preferably, the controller 95 further comprises an audible and visual reminding module for reminding that the tea water is drunk; the sound and light reminding module is electrically connected with the CPU module, and in the embodiment, the sound and light reminding module consists of a buzzer and an LED lamp. The functional modules of the controller 95 are well known in the art.
The temperature detection device 91, the liquid level detection device 92, the first water amount detection device, and the second water amount detection device are electrically connected to a signal conversion module of the controller 95, respectively; the electrically controlled valve 4, the first electric heating element 54, the second electric heating element 8 and the water injection control device 6 are electrically connected to corresponding relays in a relay group of the controller 95, respectively.
The use method and the working principle of the automatic tea making device of the embodiment are briefly described as follows:
When the automatic tea making device is used, a user firstly powers on the device, tea leaves needed for making tea are placed in the tea filtering pieces 3 in the tea making container 2, parameters such as tea making water quantity, tea making water temperature and tea making time are correspondingly input through the human-computer interaction module of the controller 95 according to the variety of the placed tea leaves, and the parameters are sent to the CPU module for storage; the second weighing sensor 94 detects whether the tea container 7 is placed on the third cross frame 15 in real time, if the tea container 7 is placed, the CPU module receives a signal from the second weighing sensor 94, then the water injection control device 6 is started through the relay set to enable the water inlet pipe 52 to be conducted to fill the heating cavity 51 with water, whether the heating cavity 51 is filled with water can be determined according to the flow and the connection time of the water injection control device 6, the water quantity in the heating cavity 51 can be detected in real time by the liquid level detection device 92 and a signal is fed back to the CPU module, after the water quantity in the heating cavity 51 is filled, the CPU module controls the water injection control device 6 to be closed through the relay set, meanwhile, the first electric heating element 54 is controlled to be electrified to heat the water in the heating cavity 51, the temperature detection device 91 detects the water temperature in the heating cavity 51 in real time, when the water in the heating cavity 51 is heated to a set temperature, the CPU module controls the water injection control device 6 to be started, hot water in the heating cavity 51 is injected into the tea making container 2 through the water outlet pipe 53 under the water pressure, the first electric heating element 54 continuously keeps heating the water in the heating cavity 51, the first water amount detection device such as the first weighing sensor 93 monitors the amount of the hot water added into the tea making container 2 in real time and feeds back a signal to the CPU module, after the amount of the tea making water is added to a set amount, the CPU module controls the water injection control device 6 to close through a relay group, the water injection into the tea making container 2 is stopped, the CPU module starts to time the tea making time, when the set tea making time is reached, the acousto-optic reminding module of the controller 95 sends out acousto-optic prompt to remind that the tea is well brewed and drinkable, meanwhile, the CPU module controls the electric control valve 4 to be electrically opened to inject the tea into the tea containing container 7 until the tea in the tea making container 2 is basically emptied through the relay group, the second weighing sensor 94 monitors the amount of the tea added into the tea containing container 7 in real time and feeds back a signal to the CPU module in real time, after the tea water in the tea container 7 is added to a set amount, the CPU module closes the electric control valve 4 through the relay set to stop the tea water, and a user drinks tea through the tea container 7. If the user needs to continue drinking water when the tea water in the tea container 7 is not drunk up, the tea container 7 with the tea water left is placed on the third cross frame 15, the second weighing sensor 94 sends a weight signal to the CPU module, the CPU module correspondingly determines the quantity of the tea water to be supplemented according to the quantity of the tea water left in the tea container 7, and then water, tea and tea water are added into the tea container 7 according to the actions, so that the tea-continuing action is completed. In the using process, if the tea water in the tea container 7 is cooled and needs to be heated and tea water does not need to be added, the tea container 7 can be placed on the third cross frame 15, and the controller 95 is operated to control the second electric heating element 8 to be electrified to heat the tea container 7 through the man-machine interaction module of the controller 95. In the using process, the heating cavity 51 and the first electric heating element 54 of the water boiling component 5 form an instant heating type water boiling component, the water boiling speed is high, and the waiting time of hot water needed by tea making is saved.
(example 2)
Referring to fig. 2, the automatic tea making device of the present embodiment is basically the same as embodiment 1 in other respects, except that: the liquid outlet of the tea making container 2 is arranged at the lower part of the side of the tea making container, namely the joint of the wall body of the tea making container 2 and the bottom plate, and the electric control valve 4 is arranged on the liquid outlet of the tea making container 2 in a sealing way and discharges water downwards.
(example 3)
Referring to fig. 3, the automatic tea making device of the present embodiment is basically the same as embodiment 1 in other respects, except that: the first electric heating element 54 is an electromagnetic heating coil, as shown in fig. 1 and 2; in this embodiment, the electric heating element 54 is preferably an electromagnetic heating coil 54-1, and when the electromagnetic heating coil 54-1 is used, the material of the heating cavity 51 at least at the portion covered by the first electric heating element 54 is ferromagnetic material, or when the material of the heating cavity 51 is non-ferromagnetic material, a ferromagnetic material layer 54-2 is disposed between the first electric heating element 54 and the heating cavity 51, so that the electromagnetic heating coil can heat the heating cavity 51. The electromagnetic heating coil is a prior art, and the structure and the working principle thereof are not described in detail.
(example 4)
Referring to fig. 4, the automatic tea making device of the present embodiment is basically the same as embodiment 3 in other respects, except that: the liquid outlet of the tea making container 2 is arranged at the lower part of the side of the tea making container, namely the joint of the wall body of the tea making container 2 and the bottom plate, and the electric control valve 4 is arranged on the liquid outlet of the tea making container 2 in a sealing way and discharges water downwards.
The above embodiments are illustrative of the specific embodiments of the present invention, but not limiting to the present invention, and those skilled in the relevant art can also make various changes and modifications to obtain the equivalent technical solutions without departing from the spirit and scope of the present invention, so that all equivalent technical solutions should fall under the protection scope of the present invention.
Claims (12)
1. An automatic tea making device is characterized in that: the tea making device comprises a tea making container, an electric control valve arranged at the bottom or the lateral lower part of the tea making container and used for discharging tea water, a water heating assembly used for heating water, a water inlet pipe used for injecting water, a water injection control device arranged on the water inlet pipe and used for controlling the on-off of water flow, and an electric control assembly; the electric control valve is an electric valve or an electromagnetic valve, the tea making container is provided with an opening for injecting water and placing tea, and the water boiling assembly comprises a heating cavity and a first electric heating element; the heating cavity is a hollow component provided with a water inlet and a water outlet, the first electric heating element is arranged on the outer side of the heating cavity, the water inlet of the heating cavity is connected with the water inlet pipe, and the water outlet of the heating cavity is communicated with the opening of the tea making container; the electric control assembly comprises a temperature detection device for detecting the heated water temperature and a controller for correspondingly controlling the on-off of the power supplies of the water injection control device, the first electric heating element and the electric control valve according to a detection signal and set parameters; the temperature detection device, the water injection control device, the first electric heating element and the electric control valve are all electrically connected with the controller.
2. The automatic tea brewing device of claim 1, wherein: the water injection control device is an electric water pump, an electric valve or an electromagnetic valve, and the flow rate of the electric water pump, the electric valve or the electromagnetic valve is matched with that of the water boiling assembly.
3. The automatic tea brewing device of claim 1, wherein: the electric control assembly further comprises a first water quantity detection device for detecting the tea quantity in the tea making container; the first water amount detection device is electrically connected with the controller.
4. An automatic tea brewing device according to claim 3, characterized in that: the first water quantity detection device is a weighing sensor, or the first water quantity detection device is a liquid level sensor.
5. An automatic tea brewing device according to claim 3, characterized in that: the electric control assembly further comprises a liquid level detection device for monitoring the water level in the heating cavity, and the liquid level detection device is electrically connected with the controller through signals.
6. the automatic tea brewing device of claim 1, wherein: the heating cavity is a tubular member, and the heating cavity and the first electric heating element form an electric heating water pipe together.
7. The automatic tea brewing device of claim 5, wherein: the controller comprises a signal conversion module, a CPU module, a human-computer interaction module, a relay group and a power supply module, wherein the CPU module is in signal electric connection with the signal conversion module, the relay group is in signal electric connection with the CPU module, and the human-computer interaction module is in electric connection with the CPU module; the temperature detection device, the first water quantity detection device and the liquid level detection device are respectively and electrically connected with a signal conversion module of the controller; the electric control valve, the first electric heating element and the water injection control device are respectively electrically connected with corresponding relays in a relay group of the controller, and the power supply module is used for providing a working power supply.
8. the automatic tea brewing device of claim 7, wherein: the tea making device also comprises a tea filtering piece arranged in the tea making container, a tea container used for containing tea water, and a second electric heating element used for heating the tea container; the electric control assembly further comprises a second water quantity detection device for detecting the tea water quantity in the tea container, the second water quantity detection device is electrically connected with the signal conversion module of the controller, the second electric heating element is electrically connected with a corresponding relay in a relay group of the controller, and the power on-off of the second electric heating element is controlled by the controller.
9. the automatic tea brewing device of claim 8, wherein: the second water quantity detection device is a weighing sensor; the temperature detection device is a temperature sensor.
10. The automatic tea brewing device of claim 8, wherein: the automatic tea making device also comprises a support, wherein the support comprises a base, a vertical frame, a first transverse frame, a second transverse frame and a third transverse frame; the vertical frame is integrally or fixedly arranged on one side of the base; the first transverse frame is integrally or fixedly arranged at the upper end of the vertical frame; the second transverse frame is arranged on the first transverse frame and is positioned above the base; the third transverse frame is arranged on the base and is positioned below the second transverse frame;
The tea making container is arranged on the second transverse frame, and the heating cavity of the water boiling assembly is arranged on the first transverse frame and is positioned on one side of the tea making container; the tea container is arranged on the third transverse frame; the second water quantity detection device is arranged between the third transverse frame and the base; the second electric heating element is arranged on the third transverse frame and is positioned at the place where the tea container is placed.
11. the automatic tea brewing device of claim 1, wherein: the first electric heating element is a resistance heating device.
12. The automatic tea brewing device of claim 1, wherein: the first electric heating element is an electromagnetic heating coil; the material of the part of the heating cavity at least covered by the first electric heating element is ferromagnetic material, or when the material of the heating cavity is non-ferromagnetic material, a ferromagnetic material layer is arranged between the first electric heating element and the heating cavity.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920299857.6U CN209789586U (en) | 2019-03-08 | 2019-03-08 | Automatic tea making device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920299857.6U CN209789586U (en) | 2019-03-08 | 2019-03-08 | Automatic tea making device |
Publications (1)
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN109744880A (en) * | 2019-03-08 | 2019-05-14 | 江苏中茗茶具科技有限公司 | Automatic tea making device |
| CN114129056A (en) * | 2021-12-15 | 2022-03-04 | 江门奇沛酒店设备有限公司 | A steam pressure tea making machine |
-
2019
- 2019-03-08 CN CN201920299857.6U patent/CN209789586U/en active Active
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN109744880A (en) * | 2019-03-08 | 2019-05-14 | 江苏中茗茶具科技有限公司 | Automatic tea making device |
| CN114129056A (en) * | 2021-12-15 | 2022-03-04 | 江门奇沛酒店设备有限公司 | A steam pressure tea making machine |
| CN114129056B (en) * | 2021-12-15 | 2025-04-01 | 江门奇沛酒店设备有限公司 | Steam pressure tea making machine |
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