CN110870648A - Tea making cup - Google Patents

Tea making cup Download PDF

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Publication number
CN110870648A
CN110870648A CN201811005020.2A CN201811005020A CN110870648A CN 110870648 A CN110870648 A CN 110870648A CN 201811005020 A CN201811005020 A CN 201811005020A CN 110870648 A CN110870648 A CN 110870648A
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CN
China
Prior art keywords
cup
tea
detection device
temperature
tea making
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Granted
Application number
CN201811005020.2A
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Chinese (zh)
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CN110870648B (en
Inventor
吴秀杰
杨振宇
陈洋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kaffir Lily Industrial Co Ltd Of Anhui Province
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Kaffir Lily Industrial Co Ltd Of Anhui Province
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Application filed by Kaffir Lily Industrial Co Ltd Of Anhui Province filed Critical Kaffir Lily Industrial Co Ltd Of Anhui Province
Priority to CN201811005020.2A priority Critical patent/CN110870648B/en
Publication of CN110870648A publication Critical patent/CN110870648A/en
Application granted granted Critical
Publication of CN110870648B publication Critical patent/CN110870648B/en
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G19/00Table service
    • A47G19/12Vessels or pots for table use
    • A47G19/16Tea infusers, e.g. infusing bags, egg-shaped infuses
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G19/00Table service
    • A47G19/22Drinking vessels or saucers used for table service

Abstract

The invention discloses a tea making cup, which comprises a cup body, a cup cover and a connecting piece, wherein the connecting piece is connected between the cup body and the cup cover in a sealing way; the tea making cup further comprises a detection device and a heat conducting part, one end of the heat conducting part penetrates through the peripheral wall of the connecting piece and extends into the cup, the other end of the heat conducting part is abutted to the detection device, the detection device detects the temperature of water in the cup and displays the temperature of the water in the cup, the detection device comprises a shell, and the shell is detachably embedded in the accommodating groove. This temperature detects and shows function in the integrated cup of tea making cup, and when the user used this tea making cup, need not detect the instrument with the help of other temperatures outside the tea making cup, can know conveniently and dash and steep the temperature to can avoid dashing and steep the temperature too high or low problem that causes the tea concentration that dashes and steep too high or low excessively. In addition, the tea making cup is also provided with a vibration part for reminding a user of drinking water after the preset brewing time is reached.

Description

Tea making cup
Technical Field
The invention relates to the technical field of brewing and drinking containers, in particular to a tea making cup.
Background
The brewed mouthfeel of some brewed beverages (e.g., tea, dried fruit pieces, etc.) is greatly affected by the brewing water temperature and the brewing time period.
When a user uses the existing brewing and drinking container to brew the brewing and drinking beverages, the user cannot conveniently know the brewing water temperature and the brewing time, the brewing water temperature is too low or too high, or the brewing time is too short or too long, the concentration suitable for the user cannot be brewed, and the user experience is poor.
In view of the above, it is a technical problem to be solved by those skilled in the art to develop a drinking vessel that enables a user to know the brewing temperature and/or brewing time conveniently.
Disclosure of Invention
In order to solve the technical problem, the invention provides a tea making cup, which comprises a cup body, a cup cover and a connecting piece hermetically connected between the cup body and the cup cover, wherein the peripheral wall of the connecting piece is provided with an accommodating groove; the tea making cup further comprises a detection device and a heat conducting part, one end of the heat conducting part penetrates through the peripheral wall of the connecting piece and extends into the cup, the other end of the heat conducting part is abutted to the detection device, the detection device detects the water temperature in the cup and displays the water temperature in the cup, the detection device comprises a shell, and the shell is detachably embedded in the accommodating groove.
So set up, make the integrated interior temperature of cup of making tea detect and show the function, when the user used this cup of making tea, need not detect the instrument with the help of other temperatures outside the cup of making tea, can know conveniently and dash and steep the temperature to can avoid dashing to steep the temperature too high or low problem that causes to dash the tea concentration that steeps out too high or low excessively.
And, this kind of mode convenient to detach operation of inlaying the dress that the housing detachably of this detection device inlays the dress in the holding tank of connecting piece, when rinsing the tea making cup or when needing to charge for detection device, can dismantle detection device from the connecting piece, avoids detection device water inflow inefficacy and influences the problem that the user used when charging.
Specifically, the detection device further comprises a display screen, a temperature sensor and a controller, wherein the display screen, the temperature sensor and the controller are all positioned in the shell, and the temperature sensor extends to the outer surface of the shell and is abutted against the heat conduction component; and, the controller is configured to: and when the water temperature in the cup fed back by the temperature sensor is received, an instruction for displaying the water temperature in the cup is sent to the display screen.
Optionally, the detection device further comprises an angle sensor, located in the housing, for detecting an inclination angle of the tea making cup; and, the controller presets a predetermined angle and is configured to: and when the inclination angle detected by the angle sensor is judged to be larger than or equal to the preset angle, sending a detection starting instruction to the temperature sensor, and sending an instruction for displaying the water temperature in the cup to the display screen.
By the arrangement, the time for starting detection of the temperature detection device can be controlled, and the problem of unnecessary power consumption caused by detection in the process of no detection is solved.
Optionally, the controller is preset with a predetermined temperature and configured to: and when the water temperature in the cup fed back by the temperature sensor is judged to be higher than or equal to the preset temperature, sending an instruction for displaying the water temperature in the cup to the display screen.
So set up, can avoid the user when washing operations such as drinking cup, the problem that the display screen shows the power consumption that causes the unnecessary by mistake.
Optionally, the detection device further comprises a vibration component and/or a buzzer component, both of which are located in the housing; and, the controller also presets a predetermined time and is configured to: and sending a vibration instruction to the vibration part and/or sending a buzzing instruction to the buzzing part when the preset time is greater than or equal to the preset time since the temperature sensor is started for detection.
So set up, when dashing and steep and reach predetermined duration, the vibration part vibrates and drives whole cup of making tea vibration or buzzing part and make a sound to remind the user to drink water, avoid dashing and steep too high or low problem of tea concentration that the time is too long or short causes to dash and steep.
Optionally, the detection device further comprises an electronic control main board, and the display screen, the temperature sensor, the controller and the angle sensor are all assembled on the electronic control main board. So set up, do benefit to and improve detection device's integrated level, make its volume less to be convenient for inlay the dress in the holding tank of connecting piece.
Optionally, the detection device further comprises a storage battery assembled on the electronic control main board and a charging support for charging the storage battery, wherein the charging support is located in the shell, and one end of the charging support extends to the outer surface of the shell so as to be abutted to a probe of a charging wire; the panel of the charging support and the panel of the electric control main board are provided with mounting holes, and the panel is provided with mounting columns matched with the mounting holes. So set up, make detection device can charge repeatedly, reduce user's use cost.
Optionally, the housing has a first side and a second side opposite to the first side, the first side has an operating space from a corresponding groove wall of the accommodating groove, and the second side abuts against the corresponding groove wall of the accommodating groove in a direction opposite to an insertion direction of the detecting device. So set up, be convenient for detection device's installation and dismantlement.
Optionally, the housing includes an opening bottom case that contacts with the accommodation groove, the opening bottom case is configured to have a certain elastic silica gel bottom case. So set up, the installation and the dismantlement of detection device are further convenient for.
Optionally, the connecting member is provided with a through hole, and the heat conducting member is embedded in the through hole and is integrated with the connecting member by injection molding. So set up, can avoid the risk that cup water leaks to detection device from the junction of heat transfer part and connecting piece.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of a tea making cup provided by the present invention;
FIG. 2 is a sectional view taken along line A-A;
FIG. 3 is an enlarged schematic view of portion C of FIG. 2;
FIG. 4 is a diagram illustrating a charging state of a detection device according to an exemplary embodiment;
FIG. 5 is a sectional view taken along line B-B.
Wherein the reference numerals in fig. 1 to 5 are explained as follows:
101, 102, 103 connecting pieces, 1031 accommodating grooves, 103a convex parts, 1032 through holes, 104 filter screens, 105 upper sealing rings and 106 lower sealing rings;
200 a detection device; 20a, operation intervals, 201 open bottom cases, 2011 annular installation grooves, 202 top covers, 2021 annular bosses, 203 electric control main boards, 2031 installation columns, 204 storage batteries, 205 charging columns, 2051 installation holes, 206 temperature sensors, 207 display screens, 208 controllers, 209 angle sensors and 210 vibration parts;
301 a heat conducting column;
400 charging device, 401 enclosers, 4011 spacing portion, 402 charging wire, 403 probe, 404 power plug.
Detailed Description
In order to make those skilled in the art better understand the technical solution of the present invention, the technical solution of the present invention is further described in detail below with reference to the accompanying drawings and the detailed description.
Referring to fig. 1 to 5, fig. 1 is a schematic overall structure diagram of an embodiment of a tea making cup according to the present invention; FIG. 2 is a sectional view taken along line A-A; FIG. 3 is an enlarged schematic view of portion C of FIG. 2; FIG. 4 is a diagram illustrating a charging state of a detection device according to an exemplary embodiment; FIG. 5 is a sectional view taken along line B-B.
As shown in fig. 1 and 2, the tea making cup comprises a cup body 101, a cup lid 102, a connecting member 103 and a filter screen 104. The periphery of the upper end of the lower cup body 101 of the connecting piece 103 is in threaded connection, and the upper end of the connecting piece 103 is in threaded connection with the periphery of the lower end of the cup cover 102. The filter screen 104 is arranged in the connecting piece 103, preferably, the connecting piece 103 is made of plastic, and the filter screen 104 and the connecting piece 103 are molded into a whole.
Further, an upper seal groove 105 and a lower seal groove are provided at the upper and lower ends of the connecting member 103, respectively. An upper sealing ring 105 is arranged in the upper sealing groove, and the lower end of the cup cover 102 presses against the upper sealing ring 105 under the state that the cup cover 102 and the connecting piece 103 are screwed relatively, so that the sealing between the cup cover 102 and the connecting piece 103 is realized. Wherein, a lower sealing ring 106 is arranged in the lower sealing groove, and the upper end of the cup body 101 is pressed against the lower sealing ring 106 under the state that the connecting piece 103 is screwed relatively to the cup cover 102, thereby realizing the sealing between the connecting piece 103 and the cup body 101.
When the tea cup is used, the cup cover 102, the cup body 101 and the connecting piece 103 are detached, tea (or other brewed beverages can be made) is placed in the cup cover 102, and water is poured into the cup body 101. Then, the connecting piece 103 is screwed on the cup cover 102, the connecting piece 103 is screwed on the cup body 101, the tea making cup is inclined at a certain angle (the tea making cup can be directly inverted on a table), so that water in the cup body 101 flows into the cup cover 102 to make tea, and after making tea, the connecting piece 103 and the cup cover 102 are screwed off together, so that the tea in the cup body 101 can be drunk. The tea leaves do not enter the cup body 101 due to the filtering action of the strainer 104.
As shown in fig. 1 and 2, the tea making cup further comprises a detecting device 200, the detecting device 200 comprises a housing, a receiving slot 1031 is formed on the peripheral wall of the connecting member 103, and the housing is detachably embedded in the receiving slot 1031.
One end of the heat conducting component penetrates through the peripheral wall of the connecting piece 103 and extends into the cup, and the other end of the heat conducting component is abutted against the detection device 200, so that the detection device 200 can detect the water temperature in the cup and display the water temperature in the cup. In an embodiment, the connecting member 103 is provided with a through hole 1032, the heat conducting member includes two heat conducting pillars 301, and the heat conducting pillars 301 are embedded in the corresponding through holes 1032 and are integrally molded with the connecting member 103. So set up, can avoid the risk that cup water leaks to detection device 200 from the junction of heat transfer component and connecting piece 103.
So set up, make the integrated interior temperature of cup of making tea detect and show the function, when the user used this cup of making tea, need not detect the instrument with the help of other temperatures outside the cup of making tea, can know conveniently and dash and steep the temperature to can avoid dashing to steep the temperature too high or low problem that causes to dash the tea concentration that steeps out too high or low excessively.
Moreover, the outer shell of the detection device 200 is detachably embedded in the accommodating groove 1031 of the connecting piece 103, the embedding mode is convenient for disassembly operation, and the detection device 200 can be disassembled from the connecting piece 103 when the tea making cup is cleaned or the detection device 200 needs to be charged, so that the problems that the detection device 200 fails to feed water and the use of a user is influenced when the detection device 200 is charged are avoided.
The structure of the detecting device 200 is described in detail below:
as shown in fig. 3, the housing of the detecting device 200 includes an open bottom case 201 and a top cover 202 closing the open bottom case 201.
Specifically, as shown in fig. 3, the open bottom case 201 is located at the bottom of the receiving groove 1031, and the shape of the outer surface substantially conforms to the shape of the groove surface of the receiving groove 1031. The top cover 202 is relatively located on the top of the accommodating groove 1031, and after the accommodating groove 1031 is embedded, the top surface (the left side surface in the figure) of the top cover 202 is substantially flush with the outer peripheral surface of the connecting member 103, so that the risk that the top cover 202 protrudes out of the outer peripheral surface of the connecting member 103 to cause the detecting device 200 to easily fall out of the accommodating groove 1031 can be avoided.
Specifically, as shown in fig. 3, an annular mounting groove 2011 is provided at the opening position of the open bottom case 201, and correspondingly, the top cover 202 is provided with an annular boss 2021 adapted to the annular mounting groove 2011, the annular boss 2021 is pressed into the annular mounting groove 2011, and the bottom surface of the annular boss 2021 abuts against the groove bottom of the annular mounting groove 2011, so as to prevent over-pressing or incomplete pressing.
Specifically, the bottom case 201 is a silicone bottom case with certain elasticity. So set up, utilize the elasticity of silica gel drain pan, make its cell wall with holding tank 1031 closely contradict, be convenient for improve the fastening nature of installation, moreover, it is better to compare rigidity drain pan antidestroy nature, can prevent to dismantle and the assembling process receives wearing and tearing and causes the risk of installation fastening nature variation.
Specifically, as shown in fig. 1 and 3, the housing has a first side having an operation space 20a between a corresponding wall of the receiving groove 1031 and a second side opposite to the first side, which abuts against the corresponding wall of the receiving groove 1031 in a direction opposite to the insertion direction of the sensing device 200, that is, the corresponding wall of the receiving groove 1031 abuts against the second side in the insertion direction of the sensing device 200. In a specific embodiment, the first side is an upper side, the second side is a lower side, and a groove wall of the lower side of the accommodating groove 1031 is provided with a protrusion 103a, and the protrusion 103a abuts against the lower side of the open bottom case 201 in the insertion direction of the detecting device 200.
With this arrangement, when the detecting device 200 is mounted, the lower side of the detecting device 200 can be abutted against the protrusion 103a to achieve the pre-positioning, and then the upper side of the detecting device 200 is abutted against and pressed into the accommodating groove 1031. When the detecting device 200 is disassembled, the hand can be inserted into the operation space 20a and pushed against the upper side of the detecting device 200 from inside to outside, and the upper side is located outside the holding groove 1031, and then the detecting device 200 is lifted upwards, so that the detecting device can be disassembled. It can be seen that this arrangement facilitates the installation and removal of the test device 200.
As shown in fig. 3, the detection apparatus 200 further includes an electronic control main board 203, a storage battery 204, and a charging post 205.
Specifically, as shown in fig. 3, the charging post 205 is located inside the housing, and one end of the charging post extends to the outer surface of the housing, so as to introduce the charging current from the outside. In an exemplary embodiment, the charging post 205 extends through the open bottom case 201 to an outer surface of the open bottom case 201. Also, the charging stay 205 is provided with a mounting hole 2051.
Specifically, as shown in fig. 3, the electronic control board 203 is located in the housing, and the mounting post 2031 is provided, and the mounting post 2031 extends into the mounting hole 2051, so that the electronic control board 203 can be prevented from shaking in the housing, and the charging current can flow through the charging post 205 and the mounting post 2031 to reach the charging circuit of the electronic control board 203.
Specifically, as shown in fig. 3, the storage battery 204 is assembled on the electronic control board 203, and the charging current flows into the storage battery 204 through the charging circuit on the electronic control board 203. The storage battery 204 is arranged, so that the detection device 200 can be repeatedly charged and used, and the use cost of a user is favorably reduced.
Specifically, as shown in fig. 4, the detection device 200 is provided with a charging device 400. The charging device 400 comprises a housing 401, a charging wire 402, a probe 403 and a power plug 404, wherein one end of the charging wire 402 is connected with the housing 401, the other end of the charging wire 402 is connected with the power plug 404, the probe 403 is connected with one end of the charging wire 402 connected with the housing 401, and the probe 403 is positioned in the housing 401. In use, the detection device 200 is detached, the cover 401 is put on the housing of the detection device 200, and the probe 403 is brought into contact with the charging stay 205.
More specifically, as shown in fig. 4 and 5, the housing 401 has a front side wall, a rear side wall, a right side wall, and a top wall, and is attached to the surface of the opening bottom case 201 during use, and the left side of the top wall, the left side of the front side wall, and the left side of the rear side wall are all bent inward to form a stopper 4011, and the stopper 4011 is abutted to the opening position of the opening bottom case 201 during use.
As shown in FIG. 3, the sensing device 200 further includes a display 207, a temperature sensor 206, and a controller 208 in communication with both.
Specifically, as shown in fig. 3, the temperature sensor 206 is located inside the housing, and one end thereof extends to the outer surface of the housing to abut against the heat conductive member.
Specifically, as shown in fig. 3, the display 207 and the control component are both located in the housing, and both are assembled on the electronic control main board 203. Moreover, the display 207 faces the top cover 202, and the position of the top cover 202 opposite to the display 207 is set in a transparent and visible state so that a user can read the display.
During detection, the temperature of water in the cup is transmitted to the temperature sensor 206 through the heat conducting component, the temperature sensor 206 converts a thermal signal into an electric signal and feeds the electric signal back to the controller 208, and the controller 208 sends a cup water temperature display instruction to the display screen 207 after receiving the feedback.
As shown in fig. 3, the detecting device 200 further includes an angle sensor 209.
Specifically, as shown in fig. 3, an angle sensor 209 is located in the housing and integrated on the electronic control main board 203 for detecting the inclination angle of the tea making cup, and communicates with the controller 208 to feed back the detected inclination angle to the controller 208. And, the controller 208 presets a predetermined angle.
In the detection, the angle sensor 209 feeds back the detected tilt angle to the controller 208, and the controller 208 determines the magnitude of the tilt angle from the predetermined angle. When it is judged that the inclination angle is detected to be greater than or equal to the predetermined angle, an instruction to start detection is sent to the temperature sensor 206, and an instruction to display the temperature of the water in the cup is sent to the display screen 207. Therefore, the arrangement can control the detection time of the temperature detection device 200, and avoid the problem of unnecessary power consumption caused by detection when detection is not needed.
Specifically, since the user usually places the tea making cup upside down on the table when making tea, the predetermined angle is preferably 180 °, and at this time, when the inclination angle is detected to be equal to 180 °, an instruction to start detection is sent to the temperature sensor 206, and an instruction to display the temperature of water in the cup is sent to the display screen 207.
Specifically, the controller 208 may also preset a predetermined temperature, which may be about 80 ℃.
During the detection, the controller 208 determines the magnitude of the water temperature in the cup fed back from the temperature sensor 206 and the predetermined temperature. When the detected water temperature in the cup is judged to be higher than or equal to the predetermined temperature, an instruction for displaying the water temperature in the cup is sent to the display screen 207. By the arrangement, the problem of unnecessary power consumption caused by mistaken display of the display screen 207 when a user performs operations such as water cup washing and the like can be solved.
As shown in fig. 3, the detecting device 200 further includes a vibration unit 210 and/or a buzzer unit (not shown).
Specifically, as shown in FIG. 3, the vibration member 210 and the buzzer member may both be disposed within the housing and both in communication with the controller 208. Also, the controller 208 presets a predetermined time.
At the time of detection, when the predetermined time or more has elapsed since the start of detection by the temperature sensor 206, a vibration command is sent to the vibration unit 210 and/or a buzzer command is sent to the buzzer unit.
So set up, when dashing and steep and reach predetermined duration, vibration part 210 vibrates and drives whole tea making cup vibration or buzzing part and make a sound to remind the user to drink water, avoid dashing and steep too high or too low problem of tea concentration that the time is too long or short causes to dash and steep.
The tea making cup provided by the invention is described in detail above. The principles and embodiments of the present invention are explained herein using specific examples, which are presented only to assist in understanding the method and its core concepts. It should be noted that, for those skilled in the art, it is possible to make various improvements and modifications to the present invention without departing from the principle of the present invention, and those improvements and modifications also fall within the scope of the claims of the present invention.

Claims (10)

1. A tea making cup is characterized by comprising a cup body (101), a cup cover (102) and a connecting piece (103) connected between the cup body and the cup cover in a sealing manner, wherein a containing groove (1031) is formed in the peripheral wall of the connecting piece (103); the tea making cup further comprises a detection device (200) and a heat conducting part, one end of the heat conducting part penetrates through the peripheral wall of the connecting piece (103) and extends into the cup, the other end of the heat conducting part is abutted to the detection device (200), so that the detection device (200) can detect the water temperature in the cup and display the water temperature in the cup, the detection device (200) comprises a shell, and the shell is detachably embedded in the accommodating groove (1031).
2. A cup for making tea according to claim 1, wherein said detection means (200) further comprises a display screen (207), a temperature sensor (206) and a controller (208), all located inside said housing, said temperature sensor (206) extending to an outer surface of said housing and abutting said heat conducting member; and, the controller (208) is configured to: and when the water temperature in the cup fed back by the temperature sensor (206) is received, sending a command for displaying the water temperature in the cup to the display screen (207).
3. The tea making cup according to claim 2, wherein said detection means (200) further comprises an angle sensor (209) located within said housing for detecting an angle of inclination of said tea making cup; and the controller (208) presets a predetermined angle and is configured to: when it is determined that the tilt angle detected by the angle sensor (209) is greater than or equal to the predetermined angle, an instruction to start detection is sent to the temperature sensor (206).
4. The tea brewing cup according to claim 3, wherein the controller (208) is further preset with a predetermined temperature and configured to: when the water temperature in the cup fed back by the temperature sensor (206) is judged to be higher than or equal to the preset temperature, an instruction for displaying the water temperature in the cup is sent to the display screen (207).
5. A tea cup according to claim 3, wherein the detection means (200) further comprises a vibrating member (210) and/or a buzzer member; and the controller (208) also presets a predetermined time and is configured to: and sending a vibration instruction to the vibration part (210) and/or sending a buzzer instruction to the buzzer part when the preset time is greater than or equal to the preset time since the temperature sensor (206) is started to detect.
6. A tea making cup according to claim 3, wherein said detection device (200) further comprises an electronic control main board (203), and said display screen (207), said temperature sensor (206), said controller (208) and said angle sensor (209) are all integrated on said electronic control main board (203).
7. The tea making cup according to claim 6, wherein the detection device (200) further comprises a storage battery (204) integrated with the electronic control main board (203) and a charging post (205) for charging the storage battery (204), wherein the charging post (205) is located in the housing and has one end extending to the outer surface of the housing; the charging support column (205) and the electric control main board (203) are provided with mounting holes (2051) and mounting columns (2031) matched with the mounting holes (2051).
8. The tea cup according to any one of claims 1-7, wherein the outer shell has a first side with an operating gap (20a) to a corresponding wall of the receiving compartment (1031) and a second side opposite to the first side, which second side abuts against the corresponding wall of the receiving compartment (1031) in a direction opposite to the insertion direction of the detection means (200).
9. The tea cup according to any one of claims 1-7, wherein the housing comprises an open bottom shell (201) in contact with the receiving recess (1031), the open bottom shell (201) being provided as a silicone bottom shell having a certain elasticity.
10. A cup for brewing tea according to any one of the claims 1 to 7, wherein said connecting member (103) is provided with a through hole (1032), said heat conducting member being embedded in said through hole (1032) and being injection moulded in one piece with said connecting member (103).
CN201811005020.2A 2018-08-30 2018-08-30 Tea making cup Active CN110870648B (en)

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