Tea magnetic separation structure and magnetic bubble tea cup

CN224639436UActive Publication Date: 2026-08-18ZHEJIANG YIKE TECH CO LTD
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Patent Information

Application Number
CN202521926317.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2026-08-18
Estimated Expiration
2035-09-08

AI Technical Summary

Technical Problem

[0003]为在外出时也能进行泡茶、饮茶,人们也常用保温杯进行泡茶,通过保温杯内设置的茶漏,实现对保温杯的茶叶进行格挡,避免茶叶影响饮用时的体验,但茶叶长时间浸泡在热水里,导致人们在外出饮用时,首冲的茶水的浓度随着时间越来越浓,而后二冲或多次冲泡的浓度因首冲时间过长容易变味

Benefits of technology

盖体上设置磁吸件与茶隔开口处的磁吸配件,实现茶隔通过磁吸配件能与盖体上的磁吸件进行吸附,在使用时,人们能通过将茶叶投放至茶隔内,而后将茶隔吸附在盖体上,在泡茶时,将茶杯倒置,使热水浸没茶叶,通过倒置时间的长短,可控制茶叶浸泡的程度,控制茶水的浓淡风味道,当进行饮用时,能沥干茶叶的水分,在打开杯盖时即可引用茶水,也不会因为茶隔或茶叶影响茶水的饮用。

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Abstract

This utility model discloses a magnetic tea infuser structure and a magnetic tea brewing cup, relating to drinking utensils. It aims to solve the problem of tea leaves easily spoiling in flavor when steeped in hot water for extended periods, especially when drinking out. The key technical points are: a cup lid and a tea infuser magnetically attached to the lid. The lid includes a lid body and an outer shell covering it. A magnetic element is fixedly connected to the outer surface of the lid body, and the tea infuser has a magnetic accessory at its opening. This utility model features a magnetic element on the lid body and a magnetic accessory at the opening of the tea infuser, allowing the tea infuser to be attracted to the magnetic element on the lid body. In use, tea leaves are placed into the tea infuser, which is then attached to the lid. When brewing tea, the cup is inverted to submerge the tea leaves in hot water. The steeping time can be adjusted to control the degree of steeping and the strength and flavor of the tea.
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Description

Technical Field

[0001] This utility model relates to drinking utensils, and more specifically, to a magnetic tea infuser structure and a magnetic tea cup. Background Technology

[0002] In daily life, when people brew tea, they usually need to prepare a special teapot and teacup. First, put the tea leaves into the teapot, pour in water to soak, and then pour the tea into the teacup to drink. This way of brewing tea can control the brewing time.

[0003] To make tea while out and about, people often use insulated cups. The tea strainer inside the cup helps to filter the tea leaves and prevent them from affecting the drinking experience. However, the tea leaves are steeped in hot water for a long time, causing the initial brew to become increasingly strong over time. Subsequent brews or multiple infusions may also taste different due to the prolonged initial steeping. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a magnetic tea infuser structure and a magnetic tea brewing cup.

[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a magnetic tea infuser structure, including a cup lid and a tea infuser magnetically adsorbed inside the cup lid. The cup lid includes a lid body and a shell covering the lid body. A magnetic element is fixedly connected to the outer surface of the lid body. The tea infuser is provided with a magnetic accessory located at its opening. The magnetic accessory and the magnetic element are correspondingly arranged to provide the force for the tea infuser to magnetically adsorb the cup lid. The inner wall of the lid body is also provided with a positioning structure arranged along the edge of the magnetic element.

[0006] By adopting the above technical solution, a magnetic attachment is provided on the lid and a magnetic accessory is provided at the opening of the tea strainer. The tea strainer can be attracted to the magnetic attachment on the lid through the magnetic accessory. When in use, people can put tea leaves into the tea strainer and then attach the tea strainer to the lid. When brewing tea, the teacup is inverted so that the hot water submerges the tea leaves. By controlling the length of time the cup is inverted, the degree of tea steeping can be controlled, and the strength and flavor of the tea can be controlled. When drinking, the water from the tea leaves can be drained, and the tea can be drunk directly when the lid is opened. The tea strainer or tea leaves will not affect the drinking of the tea.

[0007] The present invention is further configured such that: the longitudinal section of the tea strainer is U-shaped, the opening of the tea strainer is provided with an inwardly turned edge forming a cavity, and the magnetic accessory is disposed in the cavity of the edge.

[0008] By adopting the above technical solution, the tea strainer is turned inward to form a rim, and the magnetic accessories are set in the cavity of the rim, so that there is a large contact area between the tea strainer and the lid, which can improve the connection between the tea strainer and the lid. The magnetic accessories are covered inside the rim, so that the tea strainer and the magnetic accessories have a good connection.

[0009] The present invention is further configured such that: a groove is provided on the cover, the groove being used to accommodate the magnetic component and fit into the cover.

[0010] By adopting the above technical solution, the groove opened on the cover can accommodate the magnetic component, and the fitting connection method facilitates the assembly of the magnetic component.

[0011] The present invention is further configured such that: a heat-insulating cavity is formed between the cover and the outer shell, and a water-sealing silicone is nested on the inner surface of the cover.

[0012] By adopting the above technical solution, a heat-insulating cavity is formed between the lid and the outer shell, which can achieve heat insulation. This allows the lid to also have a heat-insulating function, slowing down the cooling rate of the water when the teacup is inverted. Furthermore, the heat insulation function can also prevent the outer shell of the lid from getting too hot, making it inconvenient for people to open the lid.

[0013] The present invention is further configured such that: the magnetic attracting component includes a ring magnet or several strong magnetic sheets, and the magnetic attracting accessory includes a metal sheet or a magnetic sheet with ferromagnetism.

[0014] By adopting the above technical solutions, if the magnetic component uses a ring magnet, the ring structure allows the tea strainer to be freely attracted during adsorption, making installation convenient. If a magnetic sheet and a strong magnetic sheet are used together, the strong magnetic sheet and the magnetic sheet can be aligned or misaligned by rotating the tea strainer, thus facilitating the adjustment of the magnetic size and the disassembly of the tea strainer.

[0015] The present invention is further configured such that: both the strong magnetic sheet and the magnetic sheet include a plurality of positive magnetic sheets and negative magnetic sheets arranged at intervals, the positive magnetic sheets and negative magnetic sheets are arranged in sequence at intervals to form a ring structure, and the positive magnetic sheets and negative magnetic sheets on the tea infuser are respectively arranged to correspond to the positive magnetic sheets and negative magnetic sheets on the lid.

[0016] By adopting the above technical solution, if strong magnetic sheets or magnetic sheets are used in combination, and the orientation of the south and north poles of adjacent strong magnetic sheets and magnetic sheets is set differently to be divided into positive magnetic sheets and negative magnetic sheets, by taking advantage of the magnetic properties that like poles repel and unlike poles attract, when disassembling, rotating the tea strainer will change the alignment relationship between the corresponding strong magnetic sheets and magnetic sheets from opposite poles to like poles, and the tea strainer can be easily disassembled by the repulsive force.

[0017] The present invention is further configured such that: a thermometer is detachably connected to the cup lid, a silicone ring is provided at the connection between the thermometer and the lid, and the temperature probe of the thermometer is located between the tea strainer and the lid.

[0018] By adopting the above technical solution, the thermometer can measure the internal temperature of the teacup. When inverted, the temperature probe can contact the tea water to directly measure the temperature of the tea water, thereby determining the brewing time or adding hot water. In addition, the silicone ring can also provide a good seal to prevent water from leaking out of the thermometer.

[0019] The present invention is further configured such that: the positioning structure includes a positioning ring ridge integrally formed on the cover body, the positioning ring ridge includes an inner ring ridge and an outer ring ridge arranged concentrically, a limiting area for limiting the edge wrapping is formed between the inner ring ridge and the outer ring ridge, and a nesting area for accommodating the sealing silicone is formed between the outer ring ridge and the inner edge of the cover body.

[0020] By adopting the above technical solution, the tea strainer can be positioned by setting the positioning ring ridge. It is divided into inner ring ridge and outer ring ridge, and the positioning area formed by the ring ridge positions the tea strainer. The outer ring ridge leaves a gap between itself and the inner wall of the lid, which can provide a place for sealing silicone to achieve nested connection. At the same time, when the cup body and the lid are connected, the outer ring ridge can also limit the deformation of the sealing silicone, thereby improving the installation firmness and sealing performance.

[0021] A magnetic tea infuser cup includes a magnetic tea infuser structure and a cup body. The cup lid is threadedly connected to the cup body, and the rim of the cup body abuts against the sealing silicone of the cup lid.

[0022] The present invention is further configured such that: the cup body includes an inner liner of the thermos cup and an outer shell of the thermos cup, and an insulation cavity is formed between the inner liner of the thermos cup and the outer shell of the thermos cup.

[0023] By adopting the above technical solution, the thermos cup has an outer shell and an inner liner, which can play a good role in heat preservation and insulation. The middle insulation cavity can block the loss of temperature and play a good role in heat insulation, so as to avoid burns when holding the cup.

[0024] In summary, this utility model has the following beneficial effects: The lid is equipped with a magnetic attachment that connects to the opening of the tea strainer. This allows the tea strainer to be magnetically attached to the lid. To use, tea leaves are placed into the tea strainer, which is then attached to the lid. When brewing tea, the teacup is inverted to submerge the tea leaves in hot water. The steeping time can be adjusted to control the strength and flavor of the tea. When ready to drink, the tea leaves are drained, and the tea can be enjoyed immediately upon opening the lid, without the tea strainer or tea leaves affecting the taste. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of this utility model; Figure 2 This is a schematic diagram of the structure of Embodiment 3 of this utility model; Figure 3 This is a cross-sectional view of Embodiment 2 of this utility model; Figure 4 for Figure 3 Enlarged view of point A in the middle; Figure 5 This is a schematic diagram of the structure of Embodiment 2 of this utility model.

[0026] In the picture: 1. Lid; 11. Lid body; 12. Outer shell; 13. Magnetic attachment; 14. Insulation cavity; 2. Tea strainer; 21. Magnetic attachment; 22. Edge; 3. Water-sealing silicone; 4. Thermometer; 5. Silicone ring; 6. Positioning ring ridge; 61. Inner ring ridge; 62. Outer ring ridge; 7. Cup body; 71. Insulated cup inner liner; 72. Insulated cup outer shell. Detailed Implementation

[0027] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0028] like Figure 1 As shown in Embodiment 1, a magnetic tea strainer structure includes a cup lid 1 and a tea strainer 2 magnetically adsorbed inside the cup lid 1. The cup lid 1 includes a lid body 11 and a shell 12 covering the lid body 11. A magnetic suction element 13 is fixedly connected to the outer surface of the lid body 11. The tea strainer 2 is provided with a magnetic suction accessory 21 located at its opening. The magnetic suction accessory 21 and the magnetic suction element 13 are correspondingly arranged to provide the force for the tea strainer 2 to magnetically adsorb the cup lid 1. The inner wall of the lid body 11 is also provided with a positioning structure arranged along the edge of the magnetic suction element 13. In this embodiment, the positioning structure realizes the positioning and limiting of the tea strainer 2 during installation. With the magnetic adsorption between the tea strainer 2 and the lid body 11 through the magnetic suction element 13 and the magnetic suction accessory 21, it is beneficial to match the magnetic suction element 13 and the magnetic suction accessory 21, so that people can quickly install the tea strainer 2 onto the lid body 11 after placing the tea leaves in the tea strainer 2.

[0029] like Figure 1 and Figure 2As shown, the longitudinal section of the tea strainer 2 is U-shaped, and the tea strainer 2 is provided with a number of filter holes (the filter holes are relatively dense, as shown in the figure). This allows the tea leaves to be trapped in the inner cavity of the tea strainer 2, and allows water to flow through the filter holes to contact or separate from the tea leaves. The opening of the tea strainer 2 is provided with an inwardly folded edge 22 with a cavity. The magnetic suction accessory 21 is disposed in the cavity of the edge 22. In this embodiment, the magnetic suction accessory 21 is wrapped inside the edge 22 by spinning. The structure of the edge 22 being folded outward not only facilitates the handling of tea leaves / tea residue, but also increases the contact area between the tea strainer 2 and the lid 11, thus ensuring the reliability of the connection between the tea strainer 2 and the lid 11.

[0030] like Figure 1 and Figure 2 As shown, a heat-insulating cavity 14 is formed between the lid 11 and the outer shell 12. The inner surface of the lid 11 is nested with water-sealing silicone 3. A groove is provided on the lid 11 to accommodate the magnetic suction component 13 and fit into the lid 11. In this embodiment, the magnetic suction component 13 is a ring magnet, and the magnetic suction accessory 21 is made of iron sheet as the metal sheet to achieve mutual attraction between the magnetic suction accessory 21 and the magnetic suction component 13. In this embodiment, the groove adopts a ring structure of the same specification as the ring magnet to achieve nested connection between the ring magnet and the groove. Through the attraction between the ring magnet and the iron sheet, the tea strainer 2 and the cup lid 1 are connected. The heat-insulating cavity 14 formed by the outer shell 12 covering the lid 11 can also block the loss of heat through the cavity. Thus, after tea leaves are placed in the tea strainer 2, the tea cup is inverted to carry out the tea brewing operation, while blocking and slowing down the loss of heat from the cup lid 1, achieving a better heat preservation effect.

[0031] The positioning structure includes a positioning ring 6 integrally formed on the lid 11. The positioning ring 6 includes an inner ring 61 and an outer ring 62 concentrically arranged. A limiting area for limiting the edge 22 is formed between the inner ring 61 and the outer ring 62. A nesting area for accommodating the sealing silicone 3 is formed between the outer ring 62 and the inner edge of the lid 11. In this embodiment, the width of the nesting area is the same as the width of the sealing silicone 3, so that the sealing silicone 3 is embedded in the nesting area. The thickness of the outer ring 62 is less than the thickness of the sealing silicone 3, so that when the sealing silicone 3 is squeezed by the cup mouth and undergoes elastic deformation, the deformed sealing silicone 3 abuts against the outer ring 62, further improving the sealing performance of the cup mouth.

[0032] like Figure 5As shown, in Embodiment 2, unlike Embodiment 1, the magnetic suction component 13 uses several fan-shaped strong magnetic sheets, while the magnetic suction accessory 21 uses magnetic sheets. Both the strong magnetic sheets and the magnetic sheets include several spaced-apart positive and negative magnetic sheets. The positive and negative magnetic sheets are arranged in a ring structure. The positive and negative magnetic sheets on the tea strainer 2 correspond to the positive and negative magnetic sheets on the lid 11, respectively. Through the spaced-apart positive and negative magnetic sheets, the magnetic suction is achieved when the tea strainer is in use as a magnetic suction device. When the positive magnetic piece of the suction component 13 corresponds to the negative magnetic piece of the magnetic suction accessory 21, the two provide mutual magnetic attraction force to achieve magnetic connection between the tea strainer 2 and the lid 11. When the tea strainer 2 is twisted so that the negative magnetic piece of the magnetic suction accessory 21 corresponds to the negative magnetic piece of the magnetic suction component 13 on the lid 11, the tea strainer 2 and the lid 11 are repulsive forces that keep them away from each other because the negative magnetic pieces are oriented to the same polarity. This allows people to remove the tea strainer 2 simply by twisting it.

[0033] like Figure 2 , Figure 3 , Figure 4 As shown in Embodiment 3: Based on Embodiment 1 or Embodiment 2, this embodiment has a thermometer 4 detachably connected to the cup lid 1. Specifically, the thermometer 4 is inserted through the lid 11, and a silicone ring 5 is provided at the connection between the thermometer 4 and the lid 11. The silicone is fully bonded to the lid 11, and the probe of the thermometer 4 passes through the silicone ring 5, so that the temperature measuring probe of the thermometer 4 is located between the tea strainer 2 and the lid 11. This allows the temperature of the tea to be measured by the thermometer 4 when the teacup is inverted, which can control the steeping time of the tea and measure the water temperature of the tea to observe whether it is suitable for drinking.

[0034] Example 4: Magnetic tea cup, including the tea infuser magnetic structure as in Example 3 and cup body 7, cup lid 1 is threadedly connected to cup body 7, the cup mouth of cup body 7 abuts against the water-sealing silicone 3 of cup lid 1, and cup body 7 includes thermos inner liner 71 and thermos outer shell 72, with a thermos cavity 14 formed between thermos inner liner 71 and thermos outer shell 72.

[0035] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.

Claims

1. A magnetic tea infuser structure, characterized in that: The cup includes a lid (1) and a tea strainer (2) magnetically attached to the lid (1). The lid (1) includes a lid body (11) and an outer shell (12) covering the lid body (11). A magnetic suction element (13) is fixedly connected to the outer surface of the lid body (11). The tea strainer (2) is provided with a magnetic suction accessory (21) located at its opening. The magnetic suction accessory (21) and the magnetic suction element (13) are correspondingly arranged to provide the force for the tea strainer (2) to magnetically attract the lid (1). The inner wall of the lid body (11) is also provided with a positioning structure along the edge of the magnetic suction element (13). The positioning structure includes a positioning ring ridge (6) integrally formed on the cover (11). The positioning ring ridge (6) includes an inner ring ridge (61) and an outer ring ridge (62) arranged concentrically. A limiting area for limiting the edge (22) is formed between the inner ring ridge (61) and the outer ring ridge (62). A nesting area for accommodating the sealing silicone (3) is formed between the outer ring ridge (62) and the inner edge of the cover (11). The cover (11) has a groove for accommodating the magnetic suction component (13) which fits into the cover (11). The magnetic suction component (13) includes a ring magnet or several strong magnetic sheets. The magnetic suction accessory (21) includes a metal sheet or a magnetic sheet with ferromagnetism. Both the strong magnetic sheet and the magnetic sheet include several positive magnetic sheets and negative magnetic sheets arranged at intervals. The positive magnetic sheets and negative magnetic sheets are arranged in a ring structure at intervals. The positive magnetic sheets and negative magnetic sheets on the tea strainer (2) are respectively arranged to correspond to the positive magnetic sheets and negative magnetic sheets on the cover (11).

2. The magnetic tea infuser structure according to claim 1, characterized in that: The longitudinal section of the tea strainer (2) is U-shaped. The opening of the tea strainer (2) is provided with an inwardly turned edge (22) forming a cavity. The magnetic accessory (21) is set in the cavity of the edge (22).

3. The magnetic tea infuser structure according to claim 2, characterized in that: A heat-insulating cavity (14) is formed between the cover (11) and the outer shell (12), and a water-sealing silicone (3) is nested on the inner surface of the cover (11).

4. The magnetic tea infuser structure according to claim 1, characterized in that: A thermometer (4) is detachably connected to the cup lid (1). A silicone ring (5) is provided at the connection between the thermometer (4) and the lid (11). The temperature probe of the thermometer (4) is located between the tea strainer (2) and the lid (11).

5. A magnetic tea infuser cup, characterized in that: Includes the tea infuser magnetic structure as described in any one of claims 1-4 and the cup body (7), wherein the cup lid (1) is threadedly connected to the cup body (7), and the cup mouth of the cup body (7) abuts against the water-sealing silicone (3) of the cup lid (1).

6. The magnetic tea cup according to claim 5, characterized in that: The cup body (7) includes an inner liner (71) and an outer shell (72), and an insulation cavity (14) is formed between the inner liner (71) and the outer shell (72).