CN219629272U - Rotary lifting tea water separation teapot - Google Patents

Rotary lifting tea water separation teapot Download PDF

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Publication number
CN219629272U
CN219629272U CN202320637625.3U CN202320637625U CN219629272U CN 219629272 U CN219629272 U CN 219629272U CN 202320637625 U CN202320637625 U CN 202320637625U CN 219629272 U CN219629272 U CN 219629272U
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rotary
lifting
cup cover
cup
tea
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CN202320637625.3U
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文国清
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W90/00Enabling technologies or technologies with a potential or indirect contribution to greenhouse gas [GHG] emissions mitigation
    • Y02W90/10Bio-packaging, e.g. packing containers made from renewable resources or bio-plastics

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Abstract

The utility model discloses a rotary lifting tea water separation teapot, and relates to the technical field of teapots; comprises a cup body, a cup cover, a tea bin and a rotary lifting assembly; the cup cover consists of a cup cover body and a cup cover connecting piece fixed on the cup cover body, wherein a plurality of outwards-protruding convex points are arranged on the outer side wall of the cup cover connecting piece; the rotary lifting assembly comprises a rotary inner container which is in a cylindrical shape and is communicated up and down, the tea bin is arranged in the rotary inner container, and the rotary lifting assembly drives the tea bin to realize lifting motion in the cup body; the inner side wall of the rotary liner is provided with a plurality of inward protruding inner protruding points, the cup cover covers the cup opening of the cup body, and the cup cover connecting piece extends into the rotary liner; the beneficial effects of the utility model are as follows: the rotary lifting function can be realized through a simpler structure, the whole manufacturing process is simplified, and the whole structure is more attractive.

Description

Rotary lifting tea water separation teapot
Technical Field
The utility model relates to a teapot, in particular to a rotary lifting tea water separation teapot.
Background
The tea culture is popular in China, many people have tea drinking preference, the mouth confusion of tea water is related to the soaking time of tea, the soaking time of tea is controlled by tea sets which are usually matched in the traditional culture, but the traditional tea sets have more accessories, the use procedure is complex, and the tea sets are not easy to carry. In order to meet the requirements of a current fast-paced life style and convenience, tea water separation devices are arranged on the market, a filter cup is arranged in a sub-cup body, and tea leaves are soaked in water or separated from the water to make tea by putting and taking out the filter cup. However, these tea water separators cannot control brewing time conveniently, require placement and removal of filter cups, and require additional placement of the removed filter cups in a container, which is inconvenient and not sanitary. On the basis, a plurality of novel teapots are developed, the filtering device is not required to be taken out from the teapot, and the filter screen can be directly lifted through the rotary motion of the operating accessory, so that the purpose of controlling the tea soaking time is achieved.
In addition, the structure of the novel teapot for driving the filter screen to lift is complex, and the teapot cover and the filter screen are generally required to be designed into specific structures so as to meet the two requirements of rotation and separation; this results in a complicated overall manufacturing process for the teapot and also affects the aesthetics of the teapot.
Disclosure of Invention
In order to overcome the defects of the prior art, the utility model provides the rotary lifting tea water separation teapot, which can realize the rotary lifting function through a simpler structure, simplifies the whole manufacturing process and has more attractive whole structure.
The technical scheme adopted for solving the technical problems is as follows: in the rotary lifting tea water separation teapot, the improvement is that the rotary lifting tea water separation teapot comprises a cup body, a cup cover, a tea bin and a rotary lifting component;
the cup cover consists of a cup cover body and a cup cover connecting piece fixed on the cup cover body, wherein a plurality of outwards-protruding convex points are arranged on the outer side wall of the cup cover connecting piece;
the rotary lifting assembly comprises a rotary inner container which is in a cylindrical shape and is communicated up and down, the tea bin is arranged in the rotary inner container, and the rotary lifting assembly drives the tea bin to realize lifting motion in the cup body; the inner side wall of the rotary liner is provided with a plurality of inward protruding inner protruding points, the cup cover covers the cup mouth of the cup body, the cup cover connecting piece stretches into the rotary liner, and when the cup cover rotates, the outer protruding points of the cup cover connecting piece are abutted against the inner protruding points of the rotary liner to drive the rotary liner to rotate.
In the structure, the rotary lifting assembly further comprises a lifting ring and a fixed outer liner; a plurality of lifting cylinders protruding outwards are arranged on the outer side of the lifting ring at equal intervals, and the top of the tea bin is placed on the lifting ring;
the rotary liner is provided with first spiral cut holes with the same number as the lifting cylinders at equal intervals, the lifting cylinders of the lifting ring are matched with the first spiral cut holes, and the lifting cylinders slide up and down along the first spiral cut holes;
the fixed outer container is in a cylindrical shape which is vertically communicated, second spiral cut holes with the same number as that of the lifting cylinders are formed in the rotary inner container at equal intervals, the rotation direction of the second spiral cut holes is opposite to that of the first spiral cut holes, the lifting cylinders penetrate through the first spiral cut holes and are clamped in the second spiral cut holes, and the rotary inner container is inserted into the rotary inner container.
In the structure, an annular anti-slip ring is arranged at the cup mouth of the cup body, and the fixed outer liner is fixed in the anti-slip ring.
In the structure, three lifting cylinders are arranged on the lifting ring at equal intervals, and the number of the first spiral cut holes and the second spiral cut holes is three.
In the structure, a plurality of magnets are arranged between the cup cover body and the cup cover connecting piece, and when the cup cover connecting piece stretches into the rotary liner, the cup cover connecting piece is adsorbed on the rotary liner through the magnets.
In the structure, the cup cover body is provided with a plurality of blind holes for accommodating the magnets.
The beneficial effects of the utility model are as follows: the rotary lifting tea water separation teapot can realize the rotary lifting function through a simpler structure, simplifies the whole manufacturing process and has more attractive whole structure.
Drawings
Fig. 1 is a first exploded view of a rotary elevating tea water separating teapot of the present utility model.
Fig. 2 is a second exploded view of a rotary lifting tea water separating teapot according to the present utility model.
Fig. 3 is a schematic structural view of the cup cover according to the present utility model.
Fig. 4 is a schematic view showing a first state of a rotary lifting tea water separating teapot according to the present utility model.
Fig. 5 is a schematic view showing a second state of the rotary lifting tea separating teapot of the present utility model.
In the figure: cup 10, lid 20, lid body 201, lid connector 202, outer protrusion 203, magnet 204, tea bin 30, rotary lifting assembly 40, rotary liner 401, inner protrusion 402, lifting ring 403, fixed outer liner 404, lifting cylinder 405, first screw-threaded aperture 406, second screw-threaded aperture 407, and anti-slip ring 50.
Detailed Description
The utility model will be further described with reference to the drawings and examples.
The conception, specific structure, and technical effects produced by the present utility model will be clearly and completely described below with reference to the embodiments and the drawings to fully understand the objects, features, and effects of the present utility model. It is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and that other embodiments obtained by those skilled in the art without inventive effort are within the scope of the present utility model based on the embodiments of the present utility model. In addition, all the coupling/connection relationships referred to in the patent are not direct connection of the single-finger members, but rather, it means that a better coupling structure can be formed by adding or subtracting coupling aids depending on the specific implementation. The technical features in the utility model can be interactively combined on the premise of no contradiction and conflict.
Referring to fig. 1 to 5, the present utility model provides a rotary lifting tea separating teapot comprising a cup 10, a cup cover 20, a tea bin 30 and a rotary lifting assembly 40. The cup cover 20 is composed of a cup cover body 201 and a cup cover connecting piece 202 fixed on the cup cover body 201, and a plurality of outwards-protruding convex points 203 are arranged on the outer side wall of the cup cover connecting piece 202. The rotary lifting assembly 40 comprises a rotary inner container 401, the rotary inner container 401 is in a cylindrical shape penetrating up and down, the tea bin 30 is arranged in the rotary inner container 401, and the rotary lifting assembly 40 drives the tea bin 30 to realize lifting motion in the cup body 10. The inner side wall of the rotary liner 401 is provided with a plurality of inward protruding inner protruding points 402, the cup cover 20 covers the cup mouth of the cup body 10, the cup cover connecting piece 202 extends into the rotary liner 401, and when the cup cover 20 rotates, the outer protruding points 203 of the cup cover connecting piece 202 are abutted against the inner protruding points 402 of the rotary liner 401 to drive the rotary liner 401 to rotate.
Further, the rotary elevating assembly 40 further includes an elevating ring 403 and a fixed outer container 404. A plurality of lifting cylinders 405 protruding outwards are arranged at equal intervals on the outer side of the lifting ring 403, and the top of the tea bin 30 is placed on the lifting ring 403. First spiral cut holes 406 with the same quantity as the lifting cylinders 405 are arranged on the rotary liner 401 at equal intervals, the lifting cylinders 405 of the lifting rings 403 are matched with the first spiral cut holes 406, and the lifting cylinders 405 slide up and down along the first spiral cut holes 406. The fixed outer container 404 is in a cylindrical shape which penetrates up and down, second spiral cut holes 407 which are the same with the lifting cylinders 405 in number are formed in the rotary inner container at equal intervals, the rotation direction of the second spiral cut holes 407 is opposite to that of the first spiral cut holes 406, the lifting cylinders 405 penetrate through the first spiral cut holes to be clamped in the second spiral cut holes, and the rotary inner container 401 is inserted into the fixed outer container 404. In this embodiment, the number of the lifting cylinder 40, the first spiral cut hole 406 and the second spiral cut hole 407 is three, the rotation direction of the first spiral cut hole 406 is clockwise, and the rotation direction of the second spiral cut hole 407 is counterclockwise.
With this structure, as shown in fig. 4 and 5, the top end of the first screw-cut hole 406 and the top end of the second screw-cut hole 407 overlap with each other, so that the lifting cylinder 405 on the lifting ring 403 passes through the first screw-cut hole 406 and is clamped on the second screw-cut hole 407; when the rotary liner 401 is rotated anticlockwise, the lifting cylinder 405 on the lifting ring 403 rotates along the first spiral cut hole 406 to slide downwards, so that the lifting cylinder 405 slides from the top overlapping position of the first spiral cut hole 406 and the second spiral cut hole 407 to the bottom overlapping position, thereby vertically and downwards moving along with the tea bin 30 connected with the lifting ring 403, and when the rotary liner 401 is rotated clockwise, the lifting ring 403 rotates along the second spiral cut hole 407 to slide upwards, and the lifting cylinder 405 slides from the bottom overlapping position to the top overlapping position, thereby vertically and upwards moving along with the tea bin 30.
In addition, an annular anti-slip ring 50 is provided at the mouth of the cup body 10, and a fixing outer container 404 is fixed in the anti-slip ring 50. A plurality of magnets 204 are arranged between the cup cover body 201 and the cup cover connector 202, and when the cup cover connector 202 extends into the rotary liner 401, the cup cover connector 202 is adsorbed on the rotary liner 401 through the magnets 204. In addition, the cup cover body 201 is further provided with a plurality of blind holes for accommodating the magnets 204.
The rotary lifting tea water separating teapot adopts the structural design of the rotary lifting assembly 40 and the cup cover connecting piece 202, so that the tea bin 30 can realize lifting movement in the cup body 10 through the rotary lifting assembly 40. Compared with the traditional teapot, the teapot has simpler structure and simpler manufacturing process. In addition, the teapot has attractive appearance and more optimized use experience.
The design of the rotary lifting assembly 40 comprises a rotary liner 401, a fixed outer liner 404 and a lifting ring 403, and the distribution of the components ensures that the tea chamber 30 can be rotated and lifted and the vertical state can be ensured. In the process of rotation and lifting, the lifting cylinder 405 slides under the mutual cooperation of the lifting ring 403 and the rotary liner 401, so that the stable lifting of the tea bin 30 is ensured. In addition, the magnet 204 can prevent the cup cover 20 from falling off the teapot when the cup cover 20 is adsorbed on the rotary inner container 401, so that the teapot can be used more conveniently.
Therefore, the rotary lifting type tea water separation teapot can realize the rotary lifting function through a simpler structure, and has the advantages of simple structure, simplified manufacturing process, attractive appearance and excellent use experience.
While the preferred embodiment of the present utility model has been described in detail, the present utility model is not limited to the embodiments, and those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present utility model, and the equivalent modifications or substitutions are included in the scope of the present utility model as defined in the appended claims.

Claims (6)

1. The rotary lifting tea water separation teapot is characterized by comprising a cup body, a cup cover, a tea bin and a rotary lifting component;
the cup cover consists of a cup cover body and a cup cover connecting piece fixed on the cup cover body, wherein a plurality of outwards-protruding convex points are arranged on the outer side wall of the cup cover connecting piece;
the rotary lifting assembly comprises a rotary inner container which is in a cylindrical shape and is communicated up and down, the tea bin is arranged in the rotary inner container, and the rotary lifting assembly drives the tea bin to realize lifting motion in the cup body; the inner side wall of the rotary liner is provided with a plurality of inward protruding inner protruding points, the cup cover covers the cup mouth of the cup body, the cup cover connecting piece stretches into the rotary liner, and when the cup cover rotates, the outer protruding points of the cup cover connecting piece are abutted against the inner protruding points of the rotary liner to drive the rotary liner to rotate.
2. The rotary lifting tea separating teapot according to claim 1, wherein the rotary lifting assembly further comprises a lifting ring and a fixed outer container; a plurality of lifting cylinders protruding outwards are arranged on the outer side of the lifting ring at equal intervals, and the top of the tea bin is placed on the lifting ring;
the rotary liner is provided with first spiral cut holes with the same number as the lifting cylinders at equal intervals, the lifting cylinders of the lifting ring are matched with the first spiral cut holes, and the lifting cylinders slide up and down along the first spiral cut holes;
the fixed outer container is in a cylindrical shape which is vertically communicated, second spiral cut holes with the same number as that of the lifting cylinders are formed in the rotary inner container at equal intervals, the rotation direction of the second spiral cut holes is opposite to that of the first spiral cut holes, the lifting cylinders penetrate through the first spiral cut holes and are clamped in the second spiral cut holes, and the rotary inner container is inserted into the rotary inner container.
3. The rotary lifting tea separating teapot according to claim 2, wherein an annular anti-slip ring is arranged at the cup mouth of the cup body, and the fixed outer liner is fixed in the anti-slip ring.
4. The rotary lifting tea water separating teapot of claim 2, wherein three lifting cylinders are arranged on the lifting ring at equal intervals, and the number of the first spiral cut holes and the second spiral cut holes is three.
5. The rotary lifting tea water separating teapot according to claim 1, wherein a plurality of magnets are arranged between the cup cover body and the cup cover connecting piece, and when the cup cover connecting piece extends into the rotary liner, the cup cover connecting piece is adsorbed on the rotary liner through the magnets.
6. The rotary lifting tea separating teapot as claimed in claim 5, wherein the cup cover body is provided with a plurality of blind holes for accommodating the magnets.
CN202320637625.3U 2023-03-27 2023-03-27 Rotary lifting tea water separation teapot Active CN219629272U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320637625.3U CN219629272U (en) 2023-03-27 2023-03-27 Rotary lifting tea water separation teapot

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320637625.3U CN219629272U (en) 2023-03-27 2023-03-27 Rotary lifting tea water separation teapot

Publications (1)

Publication Number Publication Date
CN219629272U true CN219629272U (en) 2023-09-05

Family

ID=87818178

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320637625.3U Active CN219629272U (en) 2023-03-27 2023-03-27 Rotary lifting tea water separation teapot

Country Status (1)

Country Link
CN (1) CN219629272U (en)

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