Slide rail magnetic suction tea making cup
By incorporating magnets and a spherical tea compartment on the outer wall of the cup, combined with a sliding rail and knob structure, the problems of magnets occupying space and tea compartment fixation are solved, achieving the convenience of tea and water separation and the flexibility of tea brewing.
Patent Information
- Application Number
- CN202520520558.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-03-21
AI Technical Summary
Existing tea-water separator cups have magnets built into the tea compartment, which limits the capacity, makes cleaning inconvenient, causes the magnets to corrode easily, and the fixed position of the tea compartment cannot be adjusted, affecting the flexibility of tea brewing.
Design a sliding magnetic tea cup with a magnet on the outer wall of the cup. The tea container is spherical and can be suspended and rolled up and down via a sliding rail and a sliding knob. The sliding knob is equipped with a damping component to adjust the height of the tea container. The tea container rolls in point contact with the inner wall of the cup.
Avoiding magnets taking up space in the tea compartment, improving cleaning convenience, reducing friction damage, allowing for free adjustment of the tea immersion depth, and controlling the tea concentration.
Smart Images

Figure CN223653640U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of water cup, concretely relates to a slide rail magnetic suction bubble tea cup. BACKGROUND
[0002] In order to facilitate tea drinking, and adjust tea concentration, people designed tea-water separation cup, usually set up magnet on cup cover and tea bin respectively, to utilize magnetic force to make tea bin magnetic suction under cup cover, or immerse in tea water. The above-mentioned tea-water separation cup has the following disadvantages: magnet is built-in tea bin, resulting in tea bin capacity limitation, inconvenient cleaning, and magnet long-term contact with water is easy to corrode; need cup cover and tea bin cooperation to realize tea-water separation, cannot adapt to open tea cup; tea bin position cannot be adjusted autonomously, cannot freely adjust immersion depth, influence bubble tea flexibility. SUMMARY
[0003] The utility model provides a slide rail magnetic suction bubble tea cup for above-mentioned technical problem, and the utility model discloses the purpose of the application is realized through the following technical schemes:
[0004] A slide rail magnetic suction bubble tea cup, it includes cup body, and the tea bin that moves and sets in cup body, the outer wall of cup body is equipped with slide rail, slide rail extends along the height direction of cup body, the slide button that slides is arranged on slide rail, and the magnet is assembled on slide button;The tea bin is spherical metal bin, and the leakage hole is formed in the tea bin;When the slide button is at rest, the tea bin can hover and be adsorbed on the inner wall of cup body under the action of the magnetic force of magnet, and point contact is formed with the inner wall of cup body;When the slide button slides along the slide rail, the tea bin can roll up and down under the action of the magnetic force of magnet, so as to adjust the height of tea bin in cup body;The slide button is assembled with the damping member that can make it hover in the track at any height.
[0005] As preferred, the slide button includes the sliding block matched with the slide rail, and the knob externally arranged on the outside of the slide rail, the sliding block and the knob are connected through a connecting column.
[0006] As preferred, the sliding block is provided with the assembly groove for assembling the magnet, and the magnet is embedded in the assembly groove, and the groove opening of the assembly groove faces the outer wall of the cup body.
[0007] As preferred, the slide rail is protruded on the outer wall of the cup body and is integrally formed with the cup body, the upper end of the slide rail is a closed end, and the lower end is an open end, and the open end is provided with a sealing buckle member.
[0008] As preferred, the slide rail includes the U-shaped surrounding edge and the inward edge formed on the U-shaped surrounding edge, the U-shaped surrounding edge defines a strip-shaped sliding groove matched with the sliding block, and the width of the strip-shaped sliding groove is matched with the width of the sliding block.
[0009] As preferred, the inner converging edge defines a strip-shaped opening for the external placement of the knob, the connecting column is arranged in the strip-shaped opening, and the damping member is a silica gel damping ring assembled on the connecting column; the inner wall of the knob is supported on the inner converging edge, and the widths of the slider and the knob are greater than the width of the strip-shaped opening.
[0010] As preferred, the inner wall of the cup body is formed with a straight wall extending along the height direction of the cup body, the straight wall corresponds to the position of the slide rail, and the tea bin is in point contact with the straight wall and rolls along the straight wall to roll and lift.
[0011] As preferred, the tea bin is a shaft-symmetrical structure formed by two hemispherical bin buckles, the leakage holes are strip-shaped holes arranged on the two hemispherical bin buckles, and a plurality of strip-shaped holes are distributed in a diverging manner with the vertex of each hemispherical bin buckle as the center.
[0012] Compared with the prior art, the utility model has the following technical effects: the magnet is arranged on the outer wall of the cup body, the space of the tea bin is avoided, and the cleaning convenience is improved, the tea and water can be separated without the cup cover, the tea bin is in point contact with the inner wall of the cup body and rolls to lift, the friction damage of the tea bin to the cup body can be reduced, and the tea stains can be effectively prevented from gathering in a single contact area; the tea bin can stop at any point, the tea and water immersion depth is freely adjusted, and the purpose of controlling the tea brewing concentration is achieved. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a structural schematic view of the utility model;
[0014] Figure 2 It is a sectional view of the utility model;
[0015] Figure 3 It is a structural schematic view of the cup body 20 in the utility model;
[0016] Figure 4 It is a structural schematic view of the slide knob in the utility model;
[0017] Figure 5 It is a structural schematic view of the tea bin 10 in the utility model;
[0018] Marked in the figure: tea bin 10; leakage hole 11; cup body 20; slide rail 21; U-shaped surrounding edge 211; inner converging edge 212; sealing buckle member 30; slide knob 40; slider 41; magnet 42; knob 44; connecting column 45. DETAILED DESCRIPTION
[0019] The utility model will be further described in combination with the embodiments shown in the drawings:
[0020] Referring to Figures 1-5The embodiment discloses a magnetic bubble tea cup with a sliding rail 21, which comprises a cup body 20 and a tea bin 10 movably arranged in the cup body 20.
[0021] A sliding rail 21 is arranged on the outer wall of the cup body 20 and extends along the height direction of the cup body 20. A sliding knob 40 is slidably arranged on the sliding rail 21. A magnet 42 is arranged on the sliding knob 40 and the cup body 20. The magnet 42 is arranged on the outer wall of the cup body 20 to avoid occupying the space of the tea bin 10 and improve the cleaning convenience. The tea and water can be separated without a cup cover. The tea bin 10 is magnetically matched with the magnet 42 on the sliding knob 40.
[0022] The tea bin 10 is a spherical metal bin. A leakage hole 11 is arranged on the tea bin 10. When the sliding knob 40 is at rest, the tea bin 10 can be suspended and adsorbed on the inner wall of the cup body 20 under the magnetic force of the magnet 42 and is in point contact with the inner wall of the cup body 20. When the sliding knob 40 slides along the sliding rail 21, the tea bin 10 can roll up and down under the magnetic force of the magnet 42 to adjust the height of the tea bin 10 in the cup body 20. A damping member is arranged on the sliding knob 40 to enable the sliding knob 40 to be suspended at any height in the track. The tea bin 10 is in point contact with the inner wall of the cup body 20 and rolls up and down, which can reduce the friction damage of the cup body caused by the tea bin 10 and effectively prevent tea stains from gathering in a single contact area. The tea bin 10 can be stopped at any point to freely adjust the immersion depth of tea and water and to control the concentration of the tea.
[0023] The sliding knob 40 comprises a sliding block 41 matched with the sliding rail 21 and a knob 44 arranged outside the sliding rail 21. The sliding block 41 is connected with the knob 44 through a connecting column 45. An assembly groove for assembling the magnet 42 is arranged on the sliding block 41. The groove opening of the assembly groove faces the outer wall of the cup body 20.
[0024] The sliding rail 21 is protruded on the outer wall of the cup body 20 and is integrally formed with the cup body 20. The upper end of the sliding rail 21 is a closed end and the lower end is an open end. A sealing buckle 30 is clamped on the open end. The above-mentioned structure of the sliding rail 21 is convenient for forming and assembling the sliding knob 40. The sliding rail 21 comprises a U-shaped surrounding edge 211 and an inwardly-retracted edge 212 formed on the surrounding edge 211. The U-shaped surrounding edge 211 defines a strip-shaped sliding groove matched with the sliding block 41. The width of the strip-shaped sliding groove is matched with the width of the sliding block 41. The inwardly-retracted edge 212 defines a strip-shaped opening for arranging the knob 44. The connecting column 45 is arranged in the strip-shaped opening. The damping member is a silica gel damping ring assembled on the connecting column. The silica gel damping ring is in interference contact with the sliding rail 21 to provide sufficient friction force to enable the sliding knob 40 to be suspended at a required position. The inner wall of the knob 44 is supported on the inwardly-retracted edge 212. The width of the sliding block 41 and the knob 44 is greater than the width of the strip-shaped opening to avoid the sliding knob 40 from being pulled out.
[0025] In the embodiment, the tea bin 10 is a axis-symmetrical structure, which is formed by two half-sphere bins, and the leakage holes 11 are strip holes formed on the two half-sphere bins, and a plurality of strip holes are distributed in divergent shape with the vertex of each half-sphere bin as the center, so that the tea bin 10 has stable gravity center and can better cooperate with the magnet 42; in order to further improve the cooperation degree of the tea bin 10 and the slide button 40, the inner wall of the cup body 20 is formed with a straight wall extending along the height direction of the cup body 20, the straight wall corresponds to the position of the slide rail 21, the tea bin 10 is in point contact with the straight wall and rolls along the straight wall to roll and lift.
[0026] It should be understood that, in the claims and specification of the utility model, all "include" should be understood as open meaning, that is, its meaning is equivalent to "at least include", and should not be understood as closed meaning, that is, its meaning should not be understood as "only include".
[0027] The above is only a specific implementation of the utility model, but the protection scope of the utility model is not limited to this, and the changes, modifications, additions or replacements made by the person skilled in the art within the essential scope of the utility model should be covered in the protection scope of the utility model.
Claims
1. A sliding rail magnetic bubble tea cup, characterized by, The cup includes a cup body and a tea bin movably arranged in the cup body. A slide rail is arranged on the outer wall of the cup body and extends along the height direction of the cup body. A slide button is slidably arranged on the slide rail, and a magnet is assembled on the slide button. The tea bin is a spherical metal bin, and a leakage hole is arranged on the tea bin. When the slide button is at rest, the tea bin can be suspended and adsorbed on the inner wall of the cup body under the magnetic force of the magnet and is in point contact with the inner wall of the cup body. When the slide button slides along the slide rail, the tea bin can roll up and down under the magnetic force of the magnet to adjust the height of the tea bin in the cup body. A damping member is assembled on the slide button to enable the slide button to hover at any height in the track.
2. The slide rail magnetic bubble tea cup according to claim 1, wherein, The slide button includes a sliding block matched with the slide rail and a knob externally arranged outside the slide rail. The sliding block and the knob are connected through a connecting column.
3. The slide rail magnetic bubble tea cup according to claim 2, wherein, An assembly groove for assembling the magnet is arranged on the sliding block, and the magnet is embedded in the assembly groove. The groove opening of the assembly groove faces the outer wall of the cup body.
4. The slide rail magnetic bubble tea cup according to claim 3, wherein, The slide rail is protruded on the outer wall of the cup body and is integrally formed with the cup body. The upper end of the slide rail is a closed end, and the lower end is an open end. A sealing buckle member is clamped on the open end.
5. The slide rail magnetic bubble tea cup according to claim 4, wherein, The slide rail includes a U-shaped surrounding edge and an inwardly converging edge formed on the U-shaped surrounding edge. The U-shaped surrounding edge defines a strip-shaped sliding groove matched with the sliding block. The width of the strip-shaped sliding groove is matched with the width of the sliding block.
6. The slide rail magnetic bubble tea cup according to claim 5, wherein, The inwardly converging edge defines a strip-shaped opening for externally arranging the knob. The connecting column is arranged in the strip-shaped opening. The damping member is a silica gel damping ring assembled on the connecting column. The inner wall of the knob is supported on the inwardly converging edge, and the widths of the sliding block and the knob are greater than the width of the strip-shaped opening.
7. The slide rail magnetic bubble tea cup according to any one of claims 1-6, wherein, A flat wall extending along the height direction of the cup body is formed on the inner wall of the cup body and corresponds to the position of the slide rail. The tea bin is in point contact with the flat wall and rolls up and down along the flat wall.
8. The slide rail magnetic bubble tea cup according to claim 7, wherein, The tea bin is an axisymmetric structure formed by two hemispherical bin buckles. The leakage hole is a strip-shaped hole arranged on the two hemispherical bin buckles. A plurality of strip-shaped holes are distributed in a diverging manner with the apex of each hemispherical bin buckle as the center.