Cup cover and tea making cup
By adopting the arc-shaped guide structure of the main cover, top cover and translation part and the magnetic suction piece design in the brewing tea cup, the problem of difficulty in controlling the tea water concentration of the tea cup is solved, and the precise adjustment of the tea water concentration and the simple appearance of the cup lid are achieved.
Patent Information
- Application Number
- CN202422580637.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-10-24
AI Technical Summary
It is difficult to effectively control the tea concentration of existing tea cups, and the concentration of tea leaves is difficult to control after a long period of soaking in water.
A cup cover design is adopted, including the main cover, the top cover and the translation member. Through the cooperation of the arc-shaped guide structure and the magnetic suction member, the top cover is rotated to drive the translation member to move, causing the magnetic suction member to be misaligned with the magnetic suction member on the tea chamber, thereby controlling the drop timing of the tea chamber and realizing the adjustment of the tea concentration.
By rotating the top cover to control the adsorption and drop of the tea bin, the precise adjustment of the tea concentration is achieved, and the appearance design of the cup cover is simplified.
Smart Images

Figure CN223054240U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cups and relates to a cup lid and a tea-making cup. Background Art
[0002] In daily life, most of the common tea-separating cups achieve tea-water separation by setting a tea strainer or an independent tea bin in the cup body. Although this can achieve the effect of tea-water separation, the problem that follows is that the tea leaves are soaked in water for a long time, and it is not easy to control the concentration of the tea water.
[0003] A Chinese patent document discloses a magnetic cup with the authorization announcement number of CN219438764U. By pushing the slider to drive the elastic reset member to slide, the separation magnet moves horizontally away from the magnetizable member. After the suction force of the separation magnet attracting the magnetizable member decreases and is less than the gravity of the tea bin, the tea bin falls to the bottom of the cup body under the action of gravity to achieve the separation of the tea bin. Although it can control the concentration of the tea water, the slider design is not conducive to the simplicity of the cup lid appearance. Summary of the Invention
[0004] The utility model aims at the problems existing in the prior art and provides a cup lid and a tea-making cup, aiming to overcome the defect that it is not easy to control the concentration of the tea water in the tea-making cup by using a tea-making cup different from the prior art.
[0005] The utility model is realized as follows:
[0006] A cup lid, characterized in that it includes a main lid, a top lid rotatably arranged relative to the main lid, and a translation member movably arranged relative to the main lid. The translation member is located between the main lid and the top lid and can move relative to the main lid. The top lid is provided with an arc-shaped guiding structure. The translation member has a connecting portion that cooperates with the first position or the second position of the arc-shaped guiding structure. The distance from the first position to the rotation axis of the top lid is farther than the distance from the second position to the rotation axis of the top lid. The translation member is provided with a first magnetic attracting member.
[0007] Preferably, the arc-shaped guiding structure includes a first arc-shaped rib and a second arc-shaped rib. The first arc-shaped rib and the second arc-shaped rib are spaced apart to form an arc-shaped groove, and the connecting portion is embedded in the arc-shaped groove.
[0008] Preferably, the main lid has a receiving cavity, and a mounting member is fixed in the receiving cavity. The translation member is movably mounted on the mounting member.
[0009] Preferably, the mounting member has a chute with an opening facing downwards. The translation member is movably arranged in the chute. The mounting member has a through hole, and the connecting portion passes through the through hole and extends to the top lid to cooperate with the guiding structure.
[0010] Preferably, a limiting portion is provided on the inner side of the slide groove to prevent the translation member from disengaging downward from the slide groove.
[0011] Preferably, the translation member has a first step surface higher than the lower end surface of the translation member, and the limiting portion abuts against the first step surface.
[0012] Preferably, the main cover has a first blocking portion and a second blocking portion on its inner side wall, and the top cover has a protrusion on its inner wall, wherein the protrusion is located between the first blocking portion and the second blocking portion to limit a rotation angle of the top cover relative to the main cover.
[0013] Preferably, the middle part of the mounting member has a mounting column protruding upward, the mounting column is provided with a torsion spring, the first end of the torsion spring is fixed to the mounting member, and the second end of the torsion spring abuts against the top cover;
[0014] The top cover is provided with a first anti-rotation portion, and the mounting member is provided with a second anti-rotation portion, and the first anti-rotation portion and the second anti-rotation portion abut against each other to prevent the top cover from rotating relative to the mounting member under the action of the torsion spring;
[0015] The upper end surface of the bottom wall of the main cover is provided with a limiting convex rib, and the outer side wall of the slide groove abuts against the limiting convex rib to prevent the mounting member from rotating relative to the main cover;
[0016] The limiting part is provided with a guiding inclined surface, and the upper end of the side wall of the translation member is provided with a clearance opening, and the guiding inclined surface corresponds to the clearance opening, so that the translation member is conveniently installed in the slide groove;
[0017] The mounting column is provided with a mounting hole, the inner top wall of the top cover is provided with a mounting shaft, and the mounting shaft is inserted into the mounting hole.
[0018] A tea brewing cup, characterized in that it includes a cup body, a tea compartment and the above-mentioned cup cover, wherein the tea compartment is provided with a second magnetic component, so that when the connecting part is coordinated in the first position or the second position, the first magnetic component and the second magnetic component are attracted to each other, and when the connecting part is coordinated in the second position or the first position, the first magnetic component and the second magnetic component are misaligned.
[0019] Preferably, a transparent connecting piece is provided between the cup body and the cup cover, the lower end of the connecting piece is connected to the cup body through a thread, and the upper end of the connecting piece is connected to the main cover through a thread;
[0020] Preferably, a concave groove is provided on the lower end surface of the bottom wall of the cup cover, and a convex portion is provided on the top of the tea bin, and when the tea bin is adsorbed on the cup cover, the convex portion is embedded in the concave groove.
[0021] The utility model has the following beneficial effects: By rotating the top cover, the translation member can be driven to move, so that the first magnetic attraction member can be misaligned with the second magnetic attraction member on the tea bin, thereby controlling the dropping timing of the tea bin. When the translation member returns to the starting position and the tea-making cup is inverted, the tea bin will be re-attracted to the top cover, thereby controlling the tea-making concentration. Description of the Drawings
[0022] Figure 1 It is a schematic structural diagram of the tea-making cup;
[0023] Figure 2 It is a schematic structural diagram of the adsorption of the tea bin of the tea-making cup;
[0024] Figure 3 It is a schematic structural diagram of the dropping of the tea bin of the tea-making cup;
[0025] Figure 4 It is a schematic structural diagram of the top cover;
[0026] Figure 5 It is a partial schematic diagram of the cup cover;
[0027] Figure 6 It is a schematic structural diagram of the main cover;
[0028] Figure 7 It is a schematic structural diagram of the installation member;
[0029] Figure 8 It is a schematic diagram of the structure of the translation member.
[0030] Explanation of the reference numerals in the drawings: 100, cup cover; 110, concave groove; 200, main cover; 210, accommodating cavity; 220, limiting rib; 230, reinforcing rib; 240, first blocking portion; 250, second blocking portion; 260, clamping groove; 270, sealing groove; 280, sealing member; 300, top cover; 310, guiding structure; 311, first position; 312, second position; 313, first arc-shaped rib; 314, second arc-shaped rib; 315, arc-shaped groove; 320, convex block; 330, first anti-rotation portion; 340, mounting shaft; 341, third step surface; 350, clamping rib; 400, translation member; 410, connecting portion; 420, mounting opening; 421, second step surface; 430, first step surface; 440, first magnetic attraction member; 450, relief opening; 500, installation member; 510, sliding groove; 511, limiting portion; 512, guiding inclined surface; 520, through opening; 530, mounting post; 531, mounting hole; 532, fourth step surface; 540, torsion spring; 550, fixing groove; 560, second anti-rotation portion; 600, tea bin; 610, second magnetic attraction member; 620, convex portion; 700, cup body; 800, connecting member. Detailed Description of the Embodiment
[0031] The following will further elaborate on the specific implementation manners of the present utility model in conjunction with the accompanying drawings of the embodiments, so that the technical solutions of the present utility model are easier to understand and master. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0032] A tea-making cup provided in this embodiment, as Figure 1-8 shown, includes a cup body 700, a tea bin 600, and a cup lid 100. The cup lid 100 includes a main lid 200, a top lid 300 rotatably arranged relative to the main lid 200, and a translation member 400 movably arranged relative to the main lid 200. The translation member 400 is located between the main lid 200 and the top lid 300 and can move relative to the main lid 200. An arc-shaped guiding structure 310 is provided on the top lid 300. A connecting portion 410 on the translation member 400 cooperates with a first position 311 or a second position 312 of the arc-shaped guiding structure 310. The distance from the first position 311 to the rotation axis of the top lid 300 is farther than the distance from the second position 312 to the rotation axis of the top lid 300. Rotating the top lid 300 can push the connecting portion 410 to translate towards or away from the rotation axis position. A first magnetic member 440 is provided on the translation member 400. When the connecting portion 410 cooperates with the first position 311 of the guiding structure 310, the translation member 400 is at the starting position at this time. A second magnetic member 610 is provided on the tea bin 600. The second magnetic member 610 and the first magnetic member 440 attract each other. By rotating the top lid 300 to drive the translation member 400 to move, the first magnetic member 440 can be misaligned with the second magnetic member 610 on the tea bin 600, thereby controlling the dropping timing of the tea bin 600. When the translation member 400 returns to the starting position and the tea-making cup is inverted, the tea bin 600 will be re-attached to the cup lid 100.
[0033] As Figure 8 shown, the translation member 400 has an installation opening 420. The lower end inner wall of the installation opening 420 has a second step surface 421. The first magnetic member 440 is embedded in the installation opening 420. The second step surface 421 supports the first magnetic member 440 to prevent the first magnetic member 440 from falling off downward. Both the first magnetic member 440 and the second magnetic member 610 are magnets. In other alternative embodiments, one of the first magnetic member 440 and the second magnetic member 610 is a magnet, and the other is a metal member that can be attracted to the magnet.
[0034] As Figure 4As shown, the arc-shaped guiding structure 310 includes a first arc-shaped rib 313 and a second arc-shaped rib 314. The first arc-shaped rib 313 and the second arc-shaped rib 314 are spaced apart to form an arc-shaped groove 315. The connecting portion 410 is embedded in the arc-shaped groove 315, and when the top cover 300 is rotated, the connecting portion 410 moves in the arc-shaped groove 315.
[0035] As Figure 5 , 6 shown, the main cover 200 has a receiving cavity 210. An installation member 500 is fixed in the receiving cavity 210. The translation member 400 is movably installed on the installation member 500. The installation member 500 has a chute 510 with an opening facing downwards. The translation member 400 is movably disposed in the chute 510. On the upper end surface of the bottom wall of the main cover 200, there is a limiting rib 220. The outer side wall of the chute 510 abuts against the limiting rib 220 to prevent the installation member 500 from rotating relative to the main cover 200. On the outer side wall of the limiting rib 220, there is a reinforcing rib 230, which can strengthen the strength of the limiting rib 220 and prevent the limiting rib 220 from deforming when subjected to a large external force, resulting in the installation member 500 rotating relative to the main cover 200.
[0036] As Figure 8 shown, the installation member 500 has a through hole 520. The connecting portion 410 passes through the through hole 520 and extends to cooperate with the guiding structure 310 of the top cover 300. When the translation member 400 moves relative to the installation member 500, the connecting portion 410 translates in the through hole 520, and the through hole 520 can define the maximum displacement of the translation member 400 from the starting position relative to the installation member 500.
[0037] As Figure 7 shown, a limiting portion 511 is provided on the inner side of the chute 510. The translation member 400 has a first stepped surface 430 that is higher than the lower end surface of the translation member 400, which can reduce the distance from the translation member 400 to the bottom of the main cover 200, thereby reducing the distance from the first magnetic member 440 to the bottom of the main cover 200, and can improve the adsorption force of the first magnetic member 440 on the tea bin 600 at the bottom of the cup cover 100. The limiting portion 511 abuts against the first stepped surface 430 to prevent the translation member 400 from disengaging downward from the chute 510.
[0038] As Figure 4As shown, on the inner sidewall of the main cover 200, there are a first blocking portion 240 and a second blocking portion 250. On the inner wall of the top cover 300, a bump 320 is provided. The bump 320 is located between the first blocking portion 240 and the second blocking portion 250 to define the rotation angle of the top cover 300 relative to the main cover 200. The angle between the first blocking portion 240 and the second blocking portion 250 is 90 degrees. When the connecting portion 410 cooperates with the first position 311 of the arc-shaped guiding structure 310, at this time, the bump 320 abuts against the first blocking portion 240, preventing the connecting portion 410 from disengaging from the first position 311 of the arc-shaped guiding structure 310, ensuring that the first magnetic component 440 and the second magnetic component 610 can be aligned. When the top cover 300 is rotated so that the connecting portion 410 cooperates with the second position 312 of the arc-shaped guiding structure 310, at this time, the bump 320 abuts against the second blocking portion 250 to prevent the connecting portion 410 from disengaging from the second position 312 of the arc-shaped guiding structure 310.
[0039] As Figure 5 shown, in the middle of the mounting member 500, there is a mounting post 530 protruding upward. A torsion spring 540 is provided on the mounting post 530. The first end of the torsion spring 540 is fixed on the mounting member 500, and the second end of the torsion spring 540 abuts against the top cover 300. The mounting member 500 has a fixing groove 550. One end of the torsion spring 540 is fitted in the fixing groove 550, and the second section of the torsion spring 540 abuts against the sidewall of the second arc-shaped rib 314. When the top cover 300 is rotated so that the translation member 400 is displaced from the starting position and the rotational force applied to the top cover 300 is withdrawn, the top cover 300 can be reset under the action of the torsion spring 540, thereby driving the translation member 400 to reset.
[0040] In order to enable the connecting member 800 to be accurately fitted in the arc-shaped groove 315, during installation, first, the translation member 400 is installed on the mounting member 500, and then the connecting member 800 is fitted in the arc-shaped groove 315, that is, the mounting member 500 already installed with the translation member 400 and the torsion spring 540 is assembled with the top cover 300. At this time, the mounting member 500 and the top cover 300 will rotate relative to each other under the action of the torsion spring 540. As Figure 4 、 5 、7 shown, on the top cover 300, a first anti-rotation portion 330 is provided, and on the mounting member 500, a second anti-rotation portion 560 is provided. The first anti-rotation portion 330 and the second anti-rotation portion 560 abut against each other to prevent the top cover 300 from rotating relative to the mounting member 500 under the action of the torsion spring 540;
[0041] As Figure 7 、 8As shown, the limiting portion 511 has a guiding inclined surface 512, and the upper end of the side wall of the translation member 400 has a relief opening 450. The guiding inclined surface 512 corresponds to the relief opening 450, facilitating the installation of the translation member 400 in the sliding groove 510;
[0042] As Figure 4 , 5 shown, the mounting post 530 has a mounting hole 531, and the inner top wall of the top cover 300 has a mounting shaft 340. The mounting shaft 340 is inserted into the mounting hole 531, which plays a role in positioning and connecting when the mounting member 500 and the top cover 300 are installed. In this embodiment, the lower end of the mounting shaft 340 has a third step surface 341, and the mounting hole 531 has a fourth step surface 532. When the top cover 300 is installed on the main cover 200, the third step surface 341 and the fourth step surface 532 are in contact, limiting the mounting member 500 downward to prevent the mounting member 500 from moving upward relative to the main cover 200. In other alternative embodiments, the step surface may not be provided on the mounting shaft 340, and the fourth step surface 532 is provided in the mounting hole 531 or the mounting hole 531 is a plug hole, and the bottom of the mounting shaft 340 directly abuts against the fourth step surface 532 or the plugging portion.
[0043] As Figure 2 , 3 shown, the outer side wall of the main cover 200 has a clamping groove 260 and a sealing groove 270. A sealing member 280 is embedded in the sealing groove 270, which can prevent sundries such as dust and water from entering between the top cover 300 and the main cover 200 from the outside; the top cover 300 has a clamping rib 350, and the clamping groove 260 cooperates with the clamping rib 350 to prevent the top cover 300 from falling off the main cover 200.
[0044] As Figure 1-3As shown, in this embodiment, when the connecting portion 410 is engaged with the first position 311, the first magnetic member 440 is at the central position of the translation member 400. At this time, the first magnetic member 440 and the second magnetic member 610 are attracted to each other, and the tea bin 600 is adsorbed on the bottom of the cup lid 100. Rotate the top cover 300 so that the mating position of the connecting portion 410 and the guiding structure 310 moves from the first position 311 to the second position 312, thereby driving the translation member 400 to translate. At this time, the first magnetic member 440 and the second magnetic member 610 are misaligned, and the attractive force between the first magnetic member 440 and the second magnetic member 610 decreases or disappears. The tea bin 600 falls off the bottom of the cup lid 100 under its own gravity and drops into the interior of the cup body 700. In other alternative embodiments, adjust the position of the first magnetic member 440 on the translation member 400 so that when the translation member 400 is in the starting position, the connecting portion 410 is engaged with the second position 312, the first magnetic member 440 and the second magnetic member are attracted to each other, and the rotation of the top cover 300 drives the translation member 400 to translate, causing the first magnetic member 440 and the second magnetic member 610 to be misaligned.
[0045] A transparent connecting member 800 is provided between the cup body 700 and the cup lid 100. The lower end of the connecting member 800 is connected to the cup body 700 by a thread, and the upper end of the connecting member 800 is connected to the main lid 200 by a thread. The state of adsorption or dropping of the tea bin 600 in the cup body 700 can be observed through the transparent connecting member 800. In other alternative embodiments, the main lid 200 can be directly connected to the cup body 700.
[0046] A concave groove 110 is provided on the lower end surface of the bottom wall of the main lid 200, and a convex portion 620 is provided on the top of the tea bin 600. When the tea bin 600 is adsorbed on the cup lid 100, the convex portion 620 is embedded in the concave groove 110. The embedding of the convex portion 620 in the concave groove 110 can reduce the thickness of the barrier between the first magnetic member 440 and the second magnetic member 610, thereby enabling the tea bin 600 to be more stably adsorbed on the bottom of the cup lid 100 and facilitating the centering of the tea bin 600. When separating the tea from the water, turn the tea cup over with the cup lid 100 facing down. The tea bin 600 will approach the cup lid 100 under the action of its own gravity and be adsorbed on the bottom of the cup lid 100 under the adsorption of the first magnetic member 440 and the second magnetic member 610.
Claims
1. A cup lid, characterized in that, It includes a main cover (200), a top cover (300) rotatably arranged relative to the main cover (200), and a translation member (400) movably arranged relative to the main cover (200). The translation member (400) is located between the main cover (200) and the top cover (300) and can move relative to the main cover (200). An arc-shaped guiding structure (310) is provided on the top cover (300). A connecting portion (410) on the translation member (400) cooperates with a first position (311) or a second position (312) of the arc-shaped guiding structure (310). The distance from the first position (311) to the rotation axis of the top cover (300) is farther than the distance from the second position (312) to the rotation axis of the top cover (300). A first magnetic attracting member (440) is provided on the translation member (400).
2. A cup lid according to claim 1, characterized in that, The arc-shaped guiding structure (310) includes a first arc-shaped rib (313) and a second arc-shaped rib (314). The first arc-shaped rib (313) and the second arc-shaped rib (314) are spaced apart to form an arc-shaped groove (315). The connecting portion (410) is embedded in the arc-shaped groove (315).
3. A cup lid according to claim 1, characterized in that, The main cover (200) has a receiving cavity (210). A mounting member (500) is fixed in the receiving cavity (210). The translation member (400) is movably mounted on the mounting member (500).
4. A cup lid according to claim 3, characterized in that, The mounting member (500) has a chute (510) with an opening facing downwards. The translation member (400) is movably arranged in the chute (510). The mounting member (500) has a through hole (520). The connecting portion (410) passes through the through hole (520) and extends to the top cover (300) to cooperate with the guiding structure (310).
5. A cup lid according to claim 4, wherein, A limiting portion (511) is provided on the inner side of the chute (510) to prevent the translation member (400) from disengaging from the chute (510) downwards.
6. A cup lid according to claim 5, characterized in that, The translation member (400) has a first step surface (430) higher than the lower end surface of the translation member (400). The limiting portion (511) abuts against the first step surface (430).
7. A cup lid according to claim 1, characterized in that, A first blocking portion (240) and a second blocking portion (250) are provided on the inner side wall of the main cover (200). A convex block (320) is provided on the inner wall of the top cover (300). The convex block (320) is located between the first blocking portion (240) and the second blocking portion (250) to define the rotation angle of the top cover (300) relative to the main cover (200).
8. A cup lid according to claim 5, characterized in that, The middle part of the mounting member (500) has an upwardly protruding mounting post (530). A torsion spring (540) is provided on the mounting post (530). The first end of the torsion spring (540) is fixed on the mounting member (500). The second end of the torsion spring (540) abuts against the top cover (300); A first anti-rotation portion (330) is provided on the top cover (300), and a second anti-rotation portion (560) is provided on the mounting member (500). The first anti-rotation portion (330) and the second anti-rotation portion (560) are in contact with each other to prevent the top cover (300) from rotating relative to the mounting member (500) under the action of the torsion spring (540); A limiting rib (220) is provided on the upper end surface of the bottom wall of the main cover (200), and the outer side wall of the sliding groove (510) is in contact with the limiting rib (220) to prevent the mounting member (500) from rotating relative to the main cover (200); A guiding inclined surface (512) is provided on the limiting portion (511), and a relief opening (450) is provided at the upper end of the side wall of the translating member (400). The guiding inclined surface (512) and the relief opening (450) correspond to each other to facilitate the installation of the translating member (400) in the sliding groove (510); A mounting hole (531) is provided on the mounting post (530), and a mounting shaft (340) is provided on the inner top wall of the top cover (300). The mounting shaft (340) is inserted into the mounting hole (531).
9. A tea-making cup, characterized in that, It includes a cup body (700), a tea bin (600) and the cup cover (100) as claimed in claim 1. A second magnetic attracting member (610) is provided on the tea bin (600) so that when the connecting portion (410) is fitted to the first position (311) or the second position (312), the first magnetic attracting member (440) and the second magnetic attracting member (610) attract each other, and when the connecting portion (410) is fitted to the second position (312) or the first position (311), the first magnetic attracting member (440) and the second magnetic attracting member (610) are misaligned.
10. A tea-making cup according to claim 9, characterized in that, A transparent connecting member (800) is provided between the cup body (700) and the cup cover (100). The lower end of the connecting member (800) is connected to the cup body (700) by a thread, and the upper end of the connecting member (800) is connected to the main cover (200) by a thread; A concave groove (110) is provided on the lower end surface of the bottom wall of the cup cover (100), and a convex portion (620) is provided on the top of the tea bin (600). When the tea bin (600) is adsorbed on the cup cover (100), the convex portion (620) is embedded in the concave groove (110).
Citation Information
Patent Citations
Magnetic cup
CN219438764U