CN213551258U - Tea making container - Google Patents

Tea making container Download PDF

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Publication number
CN213551258U
CN213551258U CN202022220838.5U CN202022220838U CN213551258U CN 213551258 U CN213551258 U CN 213551258U CN 202022220838 U CN202022220838 U CN 202022220838U CN 213551258 U CN213551258 U CN 213551258U
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CN
China
Prior art keywords
piece
lifting
kettle body
driven
rotating
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Active
Application number
CN202022220838.5U
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Chinese (zh)
Inventor
黄小承
李建
王国栋
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Application filed by Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd filed Critical Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
Priority to CN202022220838.5U priority Critical patent/CN213551258U/en
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Publication of CN213551258U publication Critical patent/CN213551258U/en
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Abstract

The application relates to the technical field of liquid heating appliances, and provides a tea making container which comprises a kettle body, a filtering device and a driving device; the kettle body is provided with an inner cavity; the filtering device is arranged in the inner cavity and comprises a filtering piece and a lifting assembly in transmission connection with the filtering piece; the driving device is arranged on the kettle body and is in transmission connection with the lifting assembly; wherein, one of the driving device and the lifting component is provided with a magnetic attraction piece, and the other one is provided with a matching piece; the magnetic suction piece is in non-contact adsorption connection with the mating piece; the driving device can drive the magnetic suction piece and the matching piece to move so as to drive the inner cavity of the kettle body of the lifting assembly to move up and down. Because drive arrangement is connected with the drive of lifting unit through magnetism piece and fitting piece non-contact adsorption's mode of inhaling, can will inhale the setting with inhaling the complete interval of piece and fitting piece like this, make drive arrangement relative lifting unit's the position that sets up can be more nimble, need not inhale again and inhale and lubricate between piece and the fitting piece to can not influence this container health of making tea.

Description

Tea making container
Technical Field
The application relates to the technical field of liquid heating containers, in particular to a tea making container.
Background
A tea making pot is taken as an example, and is popular among consumers due to the advantage of convenience and rapidness in tea making.
Tea making pot among the prior art generally sets up a filter equipment and a driving motor who is used for filtering tealeaves in the kettle body, and driving motor generally is through drive mechanism and filter equipment lug connection moreover, and drive mechanism is comparatively common has meshing gear train, rack and pinion cluster etc. through driving motor drive filter equipment elevating movement in the kettle body, realizes that the income water of tealeaves boils bubble and goes out the filterable function of water.
However, in the prior art, the tea making pot is directly connected with the filter device through the transmission mechanism, so that the installation position of the drive motor is limited to a certain extent, and the drive motor and the transmission mechanism are lubricated by certain oil, so that the sanitary condition of the tea making pot is easily influenced by the lubricating oil.
SUMMERY OF THE UTILITY MODEL
In view of this, the present application provides a tea making container, which is used to solve the problem that in the prior art, the driving motor of a tea making pot is directly connected with a filtering device through a transmission mechanism, so that the installation position of the driving motor is limited, and the sanitation of the tea making pot is easily affected by oil lubrication between the driving motor and the transmission mechanism.
The tea making container comprises a kettle body, a filtering device and a driving device;
the kettle body is provided with an inner cavity;
the filter device is arranged in the inner cavity and comprises a filter element and a lifting assembly in transmission connection with the filter element;
the driving device is arranged on the kettle body and is in transmission connection with the lifting assembly;
wherein, one of the driving device and the lifting component is provided with a magnetic attraction piece, and the other one is provided with a matching piece;
the magnetic suction piece is in non-contact adsorption connection with the mating piece;
the driving device can drive the magnetic attraction piece and the matching piece to move so as to drive the lifting assembly to move up and down in the inner cavity of the kettle body.
Because this drive arrangement in the container of making tea is connected with the lifting unit transmission through magnetism piece and fitting piece non-contact adsorption's mode of inhaling, can be so with inhale the setting of magnetism piece and fitting piece complete interval isolation, make drive arrangement relative lifting unit's the position that sets up can be more nimble, need not inhale again in addition and inhale and lubricate between piece and the fitting piece to can not influence this container health of making tea.
Compared with a tea making pot in which a driving motor is directly connected with a filtering device through a transmission mechanism in the prior art, the tea making container has the advantages of flexible installation position of the driving device and no influence on tea making sanitation.
In one possible embodiment, the drive device is a drive motor, and an output shaft of the drive motor is provided with a rotating member;
a driven part corresponding to the rotating part is arranged in the lifting assembly;
one of the side surfaces of the rotating part and the driven part facing each other is provided with the magnetic attraction part, and the other side surface is provided with the mating part;
when the driving motor drives the rotating piece to rotate, the driven piece can rotate synchronously under the magnetic attraction effect between the magnetic attraction piece and the matching piece.
Like this when driving motor's output shaft drives and rotates the piece when rotating, inhale the piece at magnetism, under the magnetic attraction effect of fitting piece inter attraction, rotate the piece and can rotate along with rotating the piece simultaneously, so just transmit to lifting unit of the power of driving motor output to realize the function of drive filter piece at inner chamber elevating movement, concrete mode of setting has simple structure, can be with the power stability transmission to lifting unit's function of driving motor self output.
In one possible embodiment, annular mounting stations are provided on the sides of the rotary part and the driven part facing each other;
the annular mounting station is respectively arranged concentrically with the rotating part and the driven part;
the magnetic attraction piece and the matching piece are respectively arranged into annular pieces matched with the annular installation station and are correspondingly installed on the annular installation station.
When the piece, the fitting piece are installed respectively in annular installation station to magnetism, when drive arrangement drive rotated the piece and rotated, can produce great moment of torsion between the piece, the fitting piece is inhaled to magnetism to can more stably drive the follower along with rotating the synchronous rotation of piece, have simple structure, be convenient for install the advantage of inhaling piece and fitting piece magnetism.
In one possible embodiment, a plurality of mounting stations are provided on the side faces of the rotary part and the driven part facing each other;
the plurality of mounting stations are respectively arranged in an annular array relative to the center of the rotating part and the center of the driven part;
the magnetic attraction piece and the matching piece are respectively and correspondingly arranged on the installation station.
Like this can be with a plurality of rotation pieces, follower be the annular array respectively and install in rotating piece and follower correspondingly, when drive arrangement drive rotation piece rotated, also can produce great moment of torsion between the magnetic piece of multiunit one-to-one, the fitting piece, also can realize driving the follower along with the synchronous pivoted function of rotating.
In one possible embodiment, the counterpart is made of a ferrous or magnetic material.
When the mating piece is made of an iron material, the magnetic suction piece can realize linkage of the mating piece and the mating piece in a mode of adsorbing the mating piece; when the matching piece is made of magnetic materials, the magnetic part and the matching piece can be linked in a mutual adsorption mode.
In one possible design, the tea making container further comprises a pot cover covering the opening of the pot body;
the lifting assembly is arranged on one side of the kettle cover facing the kettle body;
the driving device is arranged on the peripheral wall of the opening of the kettle body;
when the kettle cover covers the kettle body, the rotating part is arranged corresponding to the driven part.
Therefore, on one hand, the lifting component does not increase the structural complexity of the interior of the kettle body, and on the other hand, the lifting component can be conveniently taken out of the kettle body along with the kettle cover. And set up drive arrangement in the opening perisporium department of kettle body, like this the pot lid when fitting the kettle body, the follower among the lifting unit can correspond non-contact transmission with the rotation piece among the drive arrangement and be connected, and the magnetic force of inter attraction between magnetic attraction spare and the fitting piece also can make the more stable lid of pot lid fit the kettle body moreover.
In one possible design, the pot cover is provided with a through hole along the thickness direction;
the kettle cover also comprises a cover plug which can be plugged in the through hole in a detachable mode.
Like this when needs add or take out tealeaves to filter equipment, only need dismantle the lid stopper, open the through-hole can, need not to take filter equipment off from pot lid again and take off, have the function of conveniently adding or taking out tealeaves.
In one possible design, the peripheral wall of the kettle body is also provided with a handle;
the handle is provided with an installation part for installing the driving device in the inner cavity close to the kettle cover;
the kettle cover is provided with a cover pressing part for pressing the handle;
the rotating part is arranged on the mounting part, and the driven part is arranged on the cover pressing part.
Therefore, the driving device can be completely sealed and isolated, and when the kettle lid fits the kettle body, only the cover pressing part of the kettle lid and the mounting part of the handle are needed, so that the space inside the kettle body can be saved, and the handle is convenient for the alignment and the covering of the kettle lid.
In one possible design, the lifting assembly includes a stationary drum and a rotating drum;
the wall of the fixed cylinder is provided with a lifting groove;
the rotating cylinder is coaxially arranged inside the fixed cylinder, and the peripheral wall of the rotating cylinder is provided with a through lifting seam;
the lifting groove and the lifting seam are arranged in a crossed manner along the lifting direction;
the filter element is arranged in the rotary cylinder, a clamping head is further arranged on the peripheral wall of the filter element, and the clamping head penetrates through the lifting seam and abuts against the lifting groove;
the rotating cylinder is in transmission connection with the driven piece and can drive the clamping head to relatively slide along the lifting seam and the lifting groove when the driven piece rotates.
The specific setting mode of the lifting assembly has the advantages of simple and ingenious structure and convenience in driving the filter piece to move up and down.
In one possible design, the driven member is a gear;
the barrel mouth peripheral wall of the rotary barrel is at least partially provided with meshing teeth meshed with the gear.
Therefore, through the meshing transmission of the gear and the meshing teeth, when the gear rotates forwards or backwards, the rotating cylinder can rotate forwards or backwards synchronously, and the function of driving the filter piece to move upwards or downwards is realized.
Additional features and advantages of embodiments of the present application will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by the practice of embodiments of the present application. The objectives and other advantages of the embodiments of the application will be realized and attained by the structure particularly pointed out in the written description and drawings.
Drawings
Fig. 1 is a longitudinal cross-sectional view of a tea brewing vessel provided in an embodiment of the present application;
FIG. 2 is an enlarged view of a portion of FIG. 1 at I;
fig. 3 is an exploded view of a filter device in a tea making container according to an embodiment of the present application;
fig. 4 is an exploded view of the tea making container according to the embodiment of the present application;
reference numerals:
1-a kettle body;
11-a handle;
2-a filtration device;
21-a filter element;
211-a chuck;
22-a lifting assembly;
221-a stationary cylinder;
221 a-lifting groove;
222-a rotating drum;
222 a-lifting slot;
222 b-engaging teeth;
223-a follower;
3-a drive device;
31-magnetic attraction pieces;
32-a mating member;
33-a rotating member;
4-pot lid;
41-through holes;
42-a cap plug;
42-cover the pressing part.
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and together with the description, serve to explain the principles of the application.
Detailed Description
For better understanding of the technical solutions of the present application, the following detailed descriptions of the embodiments of the present application are provided with reference to the accompanying drawings.
It should be understood that the embodiments described are only a few embodiments of the present application, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
The terminology used in the embodiments of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used in the examples of this application and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise.
It should be understood that the term "and/or" as used herein is merely one type of association that describes an associated object, meaning that three relationships may exist, e.g., a and/or B may mean: a exists alone, A and B exist simultaneously, and B exists alone. In addition, the character "/" herein generally indicates that the former and latter related objects are in an "or" relationship.
It should be noted that the terms "upper", "lower", "left", "right", and the like used in the embodiments of the present application are described in terms of the angles shown in the drawings, and should not be construed as limiting the embodiments of the present application. In addition, in this context, it will also be understood that when an element is referred to as being "on" or "under" another element, it can be directly on "or" under "the other element or be indirectly on" or "under" the other element via an intermediate element.
The following describes a specific embodiment of the tea making container according to the structure of the tea making container provided in the embodiments of the present application.
Fig. 1 is a longitudinal cross-sectional view of a filter element in a tea brewing container according to an embodiment of the present application in a first position;
fig. 2 is a longitudinal cross-sectional view of a filter element in a second position of an embodiment of the present application;
fig. 3 is an exploded view of a filter device in a tea brewing container according to an embodiment of the present application;
fig. 4 is a schematic structural diagram of a rotating drum in the tea making container according to the embodiment of the present application;
as shown in fig. 1, the present application provides a tea making container, which includes a kettle body 1, a filtering device 2 and a driving device 3; the kettle body 1 is provided with an inner cavity; the filtering device 2 is arranged in the inner cavity and comprises a filtering piece 21 and a lifting assembly 22 in transmission connection with the filtering piece 21; the driving device 3 is arranged on the kettle body 1 and is in transmission connection with the lifting component 22; wherein, one of the driving device 3 and the lifting component 22 is provided with a magnetic attraction piece 31, and the other is provided with a matching piece 32; the magnetic suction piece 31 is connected with the fitting piece 32 in a non-contact adsorption manner; the driving device 3 can drive the magnetic attraction piece 31 and the matching piece 32 to move so as to drive the lifting assembly 22 to move up and down in the inner cavity of the kettle body 1.
This container of making tea when using, it can be used for splendid attire tealeaves to filter piece 21, can drive lifting unit 22 through drive arrangement 3 moreover and drive and filter piece 21 at inner chamber elevating movement to make filter piece 21 can carry out the income water of tealeaves at the inner chamber of kettle body 1 and boil and steep or go out water filtering capability. Because the drive arrangement 3 in this tea making container is connected with the transmission of lifting unit 22 through the mode of magnetism piece 31 and fitting piece 32 non-contact absorption, can be so with inhale the complete interval isolation setting of piece 31 and fitting piece 32 with magnetism, make drive arrangement 3 relative lifting unit 22's the position that sets up can be more nimble, need not inhale again and inhale and lubricate between piece 31 and the fitting piece 32 in addition to can not influence this tea making container health.
Compared with a tea making pot in which a driving motor is directly connected with a filtering device through a transmission mechanism in the prior art, the tea making container has the advantages that the installation position of the driving device 3 is flexible, and the tea making sanitation is not influenced.
In an alternative of this embodiment, the driving device 3 is a driving motor, and an output shaft of the driving motor is provided with a rotating member 33; a driven member 223 corresponding to the rotating member 33 is arranged in the lifting assembly 22; of the side faces of the rotating member 33 and the follower 223 facing each other, one is provided with the magnetic attracting member 31, and the other is provided with the mating member 32; when the driving motor drives the rotating member 33 to rotate, the driven member 223 can rotate synchronously under the magnetic attraction between the magnetic attraction member 31 and the mating member 32.
Specifically, as shown in fig. 1 and fig. 2, the driving device 3 is configured as a driving motor, and a rotating member 33 is disposed on an output shaft of the driving motor, and a driven member 223 corresponding to the rotating member 33 is disposed in the lifting assembly 22, so that the magnetic attraction member 31 and the matching member 32 can be respectively mounted in the rotating member 33 and the driven member 223, when the output shaft of the driving motor drives the rotating member 33 to rotate, the rotating member 33 can rotate along with the rotating member 33 under the magnetic attraction force between the magnetic attraction member 31 and the matching member 32, so that the power output by the driving motor is transmitted to the lifting assembly 22, and the function of driving the filter member 21 to move up and down in the inner cavity is realized.
The specific arrangement of the driving device 3 has a simple structure and can stably transmit the power output by itself to the lifting assembly 22.
It should be noted that, since the rotating member 33 can rotate around its center, the lifting assembly 22 may be specifically, but not limited to, configured as a screw nut mechanism, a rack and pinion mechanism, etc., and may convert the rotation of the rotating member 33 into the lifting motion.
In an alternative of this embodiment, annular mounting stations are provided on the mutually facing sides of the rotary member 33 and the driven member 223, respectively; the annular mounting stations are respectively arranged concentrically with the rotating part 33 and the driven part 223; the magnetic attraction piece 31 and the matching piece 32 are respectively arranged as annular pieces matched with the annular installation station and correspondingly installed on the annular installation station.
Specifically, as shown in fig. 3, the annular mounting station may be specifically configured as an annular groove, and the diameter of the annular groove may be as large as possible, so that when the magnetic attraction element 31 and the mating element 32 are respectively mounted on the annular mounting station, and when the driving device 3 drives the rotating element 33 to rotate, a large torque may be generated between the magnetic attraction element 31 and the mating element 32, so as to better drive the driven element 223 to rotate synchronously with the rotating element 33.
The arrangement mode of the annular installation station has the advantages of simple structure and convenience in installing the magnetic suction piece 31 and the matching piece 32.
In an alternative of this embodiment, a plurality of mounting stations are provided on the sides of the rotating member 33 and the driven member 223 facing each other, respectively; and a plurality of mounting stations are respectively arranged in an annular array with respect to the center of the rotating member 33 and the center of the driven member 223; the magnetic attraction piece 31 and the matching piece 32 are correspondingly arranged on the installation station respectively.
In this alternative, a plurality of installation stations are respectively disposed on the mutually facing sides of the rotating member 33 and the driven member 223, and the plurality of installation stations are respectively disposed in an annular array with respect to the center of the rotating member 33 and the center of the driven member 223, and the specific shapes of the installation stations may be configured as an arc-shaped concave groove, a circular groove, and the like, so that the plurality of rotating members 33 and the driven members 223 may be correspondingly disposed in the annular array on the rotating member 33 and the driven member 223, and similarly, when the driving device 3 drives the rotating member 33 to rotate, a large torque may be generated between the plurality of sets of one-to-one corresponding magnetic attraction members 31 and the matching members 32, and a function of driving the driven member 223 to rotate synchronously with.
In an alternative to this embodiment, the mating member 32 is made of a ferrous or magnetic material.
When the mating member 32 is made of a ferrous material, such as stainless steel, the magnetic member 31 can achieve the linkage of the two by absorbing the mating member 32; when the engaging element 32 is made of a magnetic material, such as a permanent magnet, the magnetic element 31 and the engaging element 32 can be coupled to each other in a mutually attracting manner.
In an optional scheme of the embodiment, the tea making container further comprises a pot cover 4 covering the opening of the pot body 1; the lifting component 22 is arranged on one side of the kettle cover 4 facing the kettle body 1; the driving device 3 is arranged on the peripheral wall of the opening of the kettle body 1; when the kettle lid 4 is covered on the kettle body 1, the rotating part 33 is arranged corresponding to the driven part 223.
Specifically, as shown in fig. 1 and 4, the pot lid 4 can be specifically set to be a detachable lid covering the opening of the pot body 1, and the lifting component 22 can be detachably disposed on one side of the pot lid 4 facing the pot body 1, so that the lifting component 22 does not increase the structural complexity of the inside of the pot body 1, and the lifting component 22 can be conveniently taken out of the pot body 1 along with the pot lid 4. The driving device 3 is arranged at the peripheral wall of the opening of the kettle body 1, so that when the kettle lid 4 is covered on the kettle body 1, the driven part 223 in the lifting component 22 can be in corresponding non-contact transmission connection with the rotating part 33 in the driving device 3, and the magnetic force of the mutual attraction between the magnetic part 31 and the matching part 32 can also enable the kettle lid 4 to be more stably covered on the kettle body 1.
In the alternative of the embodiment, the pot lid 4 is provided with a through hole 41 along the thickness direction; the kettle lid 4 further comprises a lid plug 42 which can be plugged into the through hole 41.
Specifically, as shown in fig. 4, the through hole 41 is formed in the thickness direction of the pot lid 4, and the through hole 41 is plugged by a detachable lid plug 42, so that when tea leaves are required to be added to or taken out from the filter device 2, only the lid plug 42 needs to be detached, the through hole 41 needs to be opened, the filter device 2 does not need to be detached from the pot lid 4, and the tea leaves can be conveniently added to or taken out from the pot lid.
In the alternative of the embodiment, the outer peripheral wall of the kettle body 1 is also provided with a handle 11; the handle 11 is provided with a mounting part for mounting the driving device 3 in the inner cavity close to the kettle cover 4; the kettle lid 4 is provided with a cover pressing part 43 for covering the handle 11; the rotor 33 is provided in the mounting portion, and the follower 223 is provided in the lid pressing portion 43.
Specifically, as shown in fig. 1 and 2, the driving device 3 is mounted on the mounting portion in the inner cavity of the handle 11, and the follower 223 is disposed on the pressing portion 43 in the pot lid 4, so that the driving device 3 can be completely sealed and isolated, and when the pot lid 4 is covered on the pot body 1, only the pressing portion 43 of the pot lid 4 and the mounting portion of the handle 11 are needed.
The handle 11 can be used for installing the driving device 3, so that the space inside the kettle body 1 is further saved, and the handle 11 is also convenient for the kettle cover 4 to be aligned and covered.
In an alternative of this embodiment, the lifting assembly 22 includes a fixed cylinder 221 and a rotary cylinder 222; the wall of the fixed cylinder 221 is provided with a lifting groove 221 a; the rotary cylinder 222 is coaxially disposed inside the fixed cylinder 221, and the peripheral wall of the rotary cylinder 222 is provided with a through lifting slit 222 a; wherein, the lifting slot 221a and the lifting slot 222a are arranged in a crossed way along the lifting direction; the filter member 21 is arranged inside the rotary cylinder 222, the outer peripheral wall of the filter member 21 is further provided with a chuck 211, and the chuck 211 passes through the lifting slot 222a and abuts against the lifting groove 221 a; the rotary cylinder 222 is drivingly connected to the follower 223, and can drive the chuck 211 to slide along the lifting slit 222a and the lifting groove 221a when the follower 223 rotates.
Specifically, as shown in fig. 3, in the above-mentioned manner of the lifting assembly 22, when the follower 223 drives the rotating cylinder 222 to rotate, the intersection positions of the lifting slit 222a of the peripheral wall of the rotating cylinder 222 and the cylinder wall of the fixed cylinder 221 and the lifting groove 221a are changed relatively, so that the chuck 211 of the peripheral wall of the filter member 21 slides relatively along the lifting slit 222a and the lifting groove 221a, and finally the function of the filter member 21 moving up and down in the rotating cylinder 222 is realized.
The specific arrangement mode of the lifting component 22 has the advantages of simple and ingenious structure and convenience in driving the filtering piece 21 to move up and down.
In an alternative of this embodiment, the follower 223 is a gear; the nozzle peripheral wall of the rotary cylinder 222 is at least partially provided with engaging teeth 222b that engage with the gear.
Specifically, as shown in fig. 3, the follower 223 is provided as a gear, and the peripheral wall of the opening of the rotary drum 222 is at least partially provided with the meshing teeth 222b, so that the gear is meshed with the meshing teeth 222b for transmission, and when the gear rotates forwards or backwards, the rotary drum 222 can rotate forwards or backwards synchronously, thereby realizing the function of driving the filter element 21 to move upwards or downwards.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the scope of protection of the present application.

Claims (10)

1. A tea brewing receptacle, comprising:
the kettle body (1) is provided with an inner cavity;
the filtering device (2) is arranged in the inner cavity and comprises a filtering piece (21) and a lifting assembly (22) in transmission connection with the filtering piece (21);
the driving device (3) is arranged on the kettle body (1) and is in transmission connection with the lifting assembly (22);
wherein, one of the driving device (3) and the lifting component (22) is provided with a magnetic attraction piece (31), and the other one is provided with a matching piece (32);
the magnetic part (31) is in non-contact adsorption connection with the mating part (32);
the driving device (3) can drive the magnetic attraction piece (31) and the matching piece (32) to move so as to drive the lifting component (22) to move up and down in the inner cavity of the kettle body (1).
2. A tea brewing container as claimed in claim 1, characterized in that the drive means (3) is a drive motor and the output shaft of the drive motor is provided with a rotary member (33);
a driven part (223) corresponding to the rotating part (33) is arranged in the lifting assembly (22);
one of the sides of the rotating member (33) and the driven member (223) facing each other is provided with the magnetic attraction member (31), and the other is provided with the mating member (32);
when the driving motor drives the rotating part (33) to rotate, the driven part (223) can synchronously rotate under the magnetic attraction effect between the magnetic attraction part (31) and the matching part (32).
3. A tea brewing container as claimed in claim 2, characterized in that an annular mounting station is provided on each of the mutually facing sides of the rotary member (33) and the driven member (223);
the annular mounting stations are respectively arranged concentrically with the rotating part (33) and the driven part (223);
the magnetic attraction piece (31) and the matching piece (32) are respectively arranged into annular pieces matched with the annular installation stations and are correspondingly installed on the annular installation stations.
4. A tea brewing container as claimed in claim 2, characterized in that a plurality of mounting stations are provided on the mutually facing sides of the rotary member (33) and the driven member (223), respectively;
and a plurality of mounting stations are respectively arranged in an annular array with respect to the center of the rotating member (33) and the center of the driven member (223);
the magnetic attraction piece (31) and the matching piece (32) are respectively and correspondingly arranged on the installation station.
5. A tea brewing container as claimed in claim 2, characterized in that the mating piece (32) is made of a ferrous or magnetic material.
6. The tea brewing container according to claim 2, further comprising a lid (4) covering the opening of the vessel body (1);
the lifting component (22) is arranged on one side of the kettle cover (4) facing the kettle body (1);
the driving device (3) is arranged on the peripheral wall of the opening of the kettle body (1);
when the kettle lid (4) covers the kettle body (1), the rotating part (33) and the driven part (223) are correspondingly arranged.
7. A tea brewing container as claimed in claim 6, characterized in that the lid (4) starts with a through hole (41) in the thickness direction;
the kettle cover (4) also comprises a cover plug (42) which can be plugged in the through hole (41) in a detachable mode.
8. A tea making container as claimed in claim 6, characterized in that the peripheral wall of the vessel body (1) is further provided with a handle (11);
the inner cavity of the handle (11) close to the kettle cover (4) is provided with a mounting part for mounting the driving device (3);
the kettle cover (4) is provided with a cover pressing part (43) for pressing the handle (11);
the rotating piece (33) is arranged on the mounting portion, and the driven piece (223) is arranged on the cover pressing portion (43).
9. The tea brewing container according to any one of claims 2-8, wherein the lifting assembly (22) comprises:
the device comprises a fixed barrel (221), wherein the barrel wall of the fixed barrel (221) is provided with a lifting groove (221 a);
a rotating cylinder (222) coaxially arranged inside the fixed cylinder (221), and a through lifting slit (222a) is arranged on the peripheral wall of the rotating cylinder (222);
wherein the lifting groove (221a) and the lifting seam (222a) are arranged in a crossed manner along the lifting direction;
the filter element (21) is arranged inside the rotary cylinder (222), a clamping head (211) is further arranged on the outer peripheral wall of the filter element (21), and the clamping head (211) penetrates through the lifting slot (222a) and abuts against the lifting groove (221 a);
the rotating cylinder (222) is in transmission connection with the driven piece (223), and can drive the clamping head (211) to relatively slide along the lifting slot (222a) and the lifting groove (221a) when the driven piece (223) rotates.
10. A tea brewing container as claimed in claim 9, characterized in that the follower (223) is a gear;
the peripheral wall of the opening of the rotary drum (222) is at least partially provided with meshing teeth (222b) that mesh with the gear.
CN202022220838.5U 2020-09-30 2020-09-30 Tea making container Active CN213551258U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022220838.5U CN213551258U (en) 2020-09-30 2020-09-30 Tea making container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022220838.5U CN213551258U (en) 2020-09-30 2020-09-30 Tea making container

Publications (1)

Publication Number Publication Date
CN213551258U true CN213551258U (en) 2021-06-29

Family

ID=76582020

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022220838.5U Active CN213551258U (en) 2020-09-30 2020-09-30 Tea making container

Country Status (1)

Country Link
CN (1) CN213551258U (en)

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