Cup cover structure of tea-water separation cup
By designing a force switch in the cup lid structure of the tea water separation cup to drive the rotation of the rotation shaft, weaken the magnetic attraction, and achieve smooth separation and reset between the bin body and the cup lid, the problem of unstable tea concentration caused by tea bin separation is solved, and the convenience and comfort of use are improved.
Patent Information
- Application Number
- CN202422517021.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-17
AI Technical Summary
When the existing tea water separation cup is inverted, the tea chamber is prone to break away from the lid due to the repulsion of the magnetic parts, resulting in the tea soup being too thick or bitter, affecting the drinking experience.
A cup lid structure of a tea water separation cup is designed, and the rotation shaft is driven by the force switch, so that the first magnetic suction member is displaced relative to the second magnetic suction member, gradually weakening the magnetic attraction, achieving smooth separation between the silo and the silo, and ensuring the re-magnetic adsorption of the cup lid and the silo after reset.
The separation operation between the cup lid and the silo body is simplified, the user's convenience and comfort are improved, the tea soup concentration problem is avoided due to the tea silo separation, and the stability and convenience of tea water separation are ensured.
Smart Images

Figure CN223169525U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of daily necessities, and particularly relates to a cup cover structure of a tea-water separation cup. Background Art
[0002] The traditional beverage brewing cup design includes an inner cavity for storing brewing materials such as tea leaves and brewed slices, as well as boiling water. By soaking, the active ingredients in the brewing materials are gradually released and dissolved in the water. However, it is difficult to effectively control the concentration of the active ingredients of the brewing materials in the tea water with this design. To solve this problem, beverage brewing cups with filter cartridges have been introduced in the market. By placing the brewing materials in the filter cartridge and then putting the filter cartridge into the cup body and adding boiling water for soaking. However, when using such beverage brewing cups, the brewing time and the concentration of the tea water still cannot be freely adjusted, and the usability is limited.
[0003] In the prior art, the Chinese patent "Magnetic Absorption Beverage Brewing Cup" with the publication number CN218528392U proposes a design of a tea-water separation cup with a detachable tea bin. This design utilizes the interaction of magnetic components. Under normal conditions, the third magnetic component repels the first magnetic component, causing the moving frame to move outwards, and the third magnetic component is misaligned with the first magnetic component; when the brewing materials are soaked to the required concentration, the beverage brewing cup is inverted, and the tea bin moves to the cup mouth under the action of gravity and is adsorbed on the inner bottom surface of the cup cover under the action of the attractive force between the first magnetic component and the second magnetic component. When the beverage brewing cup is placed upright again, the tea bin still adheres to the inner bottom surface of the cup cover, realizing the separation of the brewing materials and water, thereby controlling the soaking time. When continuous soaking is required, manually push the pushing part to move the moving frame inwards, so that the third magnetic component moves between the first magnetic component and the second magnetic component and coincides. The tea bin is separated from the cup cover under the repulsive force between the third magnetic component and the second magnetic component and sinks to the bottom of the cup body.
[0004] Although the above magnetic absorption beverage brewing cup realizes the separation of tea and water and the control of the soaking time to a certain extent, there are still deficiencies. In actual use, when the cup body is inverted, although the tea bin is adsorbed on the inner bottom surface of the cup cover under the action of the attractive force between the first magnetic component and the second magnetic component, the third magnetic component is still located between the first magnetic component and the second magnetic component, and only the horizontal position changes, and there is still a certain repulsive force on the second magnetic component. Therefore, due to this repulsive force, in the case of slight shaking or vibration, the tea bin is likely to separate from the cup cover, unable to be firmly adsorbed and fixed and fall and stay in the tea water, resulting in too strong or bitter tea soup and affecting the drinking experience. Summary of the Invention
[0005] The utility model provides a cup lid structure for a tea and water separation cup, which can ensure the stable adsorption between the cup lid and the warehouse body while simplifying the separation operation of the cup lid and the warehouse body conveniently and quickly. The user only needs to toggle the force switch to drive the rotating shaft to rotate, so that the first magnetic attraction part is displaced relative to the second magnetic attraction part, and the magnetic attraction between the two is gradually weakened, so that the warehouse body and the cup lid are separated smoothly and easily without the need for complicated structures and steps or excessive force, which significantly improves the convenience and comfort of user use. After the force switch is reset, the first magnetic attraction part can drive the rotating shaft to rotate to the corresponding position by its own weight, ensuring that the cup lid can be magnetically adsorbed to the warehouse body again when the cup is inverted.
[0006] The technical solution of the utility model is a cup cover structure for a tea-water separation cup, comprising a cup cover and a chamber magnetically adsorbed to the bottom of the cup cover by a magnetic attraction component. The cup cover comprises an upper cover body and a lower cover body, and a receiving chamber is provided between the upper cover body and the lower cover body; a separation component is rotatably provided in the receiving chamber;
[0007] The magnetic attraction component includes a first magnetic attraction component and a second magnetic attraction component, the first magnetic attraction component is connected to the separation component, and the second magnetic attraction component is connected to the warehouse body;
[0008] The separation assembly includes a rotating shaft connected to the upper end of the first magnetic member, and the first magnetic member is rotatably disposed in the accommodating cavity via the rotating shaft;
[0009] The cup cover is provided with an operating mechanism, which includes a force switch and a first toggle rod arranged at the bottom of the force switch, and a second toggle rod is provided on one side of the first toggle rod corresponding to the rotating shaft; when the force switch is displaced by external force, the first toggle rod connected to the force switch contacts and drives the second toggle rod to displace, thereby driving the rotating shaft connected to the second toggle rod to rotate, and causing the first magnetic part to swing upward around the rotating shaft relative to the second magnetic part, and the first magnetic part gradually reduces the magnetic attraction to the second magnetic part, thereby separating the warehouse body from the cup cover.
[0010] Preferably, a third toggle rod is laterally provided below the first toggle rod of the rotating shaft, the first toggle rod is located between the second toggle rod and the third toggle rod, and a limit block is provided below the corresponding third toggle rod of the accommodating cavity, and the position of the third toggle rod is limited by the limit block.
[0011] Preferably, a switch chute is provided at the top of the cup lid. The force-applying switch is provided with a protruding button. A horizontal opening is formed at the top of the cup lid for the protruding button to pass through. The force-applying switch is slidably arranged in the switch chute. When the protruding button is toggled, the force-applying switch is driven to slide along the direction of the switch chute, so that the force-applying switch moves from left to right or from right to left. When the force-applying switch moves from left to right, it pushes the second toggle rod to displace and drives the rotating shaft to rotate to separate the container body from the cup lid. When the force-applying switch moves from right to left, it pushes the third toggle rod to displace and drives the rotating shaft to reset.
[0012] Preferably, a switch chute is provided on one side of the cup lid. The force-applying switch is provided with a protruding button. A horizontal opening is formed on one side of the cup lid for the protruding button to pass through. The force-applying switch is slidably arranged in the switch chute. When the protruding button is toggled, the force-applying switch is driven to slide along the direction of the switch chute, so that the force-applying switch moves from left to right or from right to left. When the force-applying switch moves from left to right, it pushes the second toggle rod to displace and drives the rotating shaft to rotate to separate the container body from the cup lid. When the force-applying switch moves from right to left, it pushes the third toggle rod to displace and drives the rotating shaft to reset.
[0013] Preferably, a reset spring is provided between the force-applying switch and the cup lid.
[0014] Preferably, rotating grooves are respectively provided at both ends of the accommodating cavity corresponding to the rotating shaft. Both ends of the rotating shaft are movably installed in the rotating grooves at both ends. Fixed convex columns are provided at the positions of the upper cover body corresponding to the rotating grooves. When the upper cover body and the lower cover body are buckled together, the fixed convex columns and the rotating grooves cooperate with each other to limit the rotating shaft between the two; a supporting bracket is provided at the bottom of the accommodating cavity corresponding to the position of the rotating shaft. The supporting bracket is provided with a U-shaped opening upwards for supporting the rotating shaft. The supporting bracket is provided with a supporting column extending below the axis of the rotating shaft directly opposite.
[0015] Preferably, the first magnetic part is connected to the rotating shaft through the upper cover and the lower cover. The rotating shaft is fixedly connected to the upper end of the upper cover. A cavity for placing the first magnetic part is provided between the upper cover and the lower cover. The upper cover and the lower cover are buckled together to fix the first magnetic part. The bottom of the lower cover is provided with an arc surface and a magnetic through hole is provided in the middle. An arc groove is provided at the position of the accommodating cavity corresponding to the arc surface of the lower cover.
[0016] Preferably, a first water outlet is provided at the top of the upper cover body, and a second water outlet is provided at the bottom of the lower cover body. The positions of the first water outlet and the second water outlet correspond to each other and are communicated with each other. A sealing ring is provided between the upper cover body and the lower cover body at the connection between the first water outlet and the second water outlet.
[0017] Preferably, the upper cover body is provided with a flip cover on one side of the first water outlet through a movable hinge shaft, the flip cover is buckled at the first water outlet and is provided with a sealing member for sealing the first water outlet, the upper cover body is respectively provided with an upper convection hole and a drainage hole connected to the accommodating cavity, the bottom of the lower cover body is provided with a lower convection hole, a convection channel is provided between the upper convection hole and the lower convection hole, and the flip cover is provided with a sealing protrusion for opening or closing the upper convection hole at a position corresponding to the upper convection hole.
[0018] Preferably, a receiving groove for receiving the flip cover is provided on the top of the upper cover body, the first water outlet protrudes higher than the upper cover body, and the height of the flip cover when placed in the receiving groove is lower than the height of the first water outlet.
[0019] Compared with the prior art, the present invention has the following beneficial effects. While ensuring the stable adsorption between the cup lid and the warehouse body, it can simplify the separation operation of the cup lid and the warehouse body conveniently and quickly. The user only needs to toggle the force switch to drive the rotating shaft to rotate, so that the first magnetic suction part is displaced relative to the second magnetic suction part, and the magnetic attraction between the two is gradually weakened, thereby smoothly and easily achieving the separation of the warehouse body and the cup lid. There is no need for complicated structures and steps or applying excessive force, which significantly improves the convenience and comfort of user use. After the force switch is reset, the first magnetic suction part can drive the rotating shaft to rotate to the corresponding position by its own weight, ensuring that the cup lid can be magnetically adsorbed to the warehouse body again when the cup is inverted. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the decomposition structure of the cup cover of the present invention;
[0021] Figure 2 This is a schematic diagram of the connection relationship between the lower cover and the separation assembly of the utility model;
[0022] Figure 3 This is a schematic cross-sectional view of the cup cover of the present invention;
[0023] Figure 4 This is a schematic diagram of the cross-sectional structure of the cup cover and cup body of the present invention;
[0024] Figure 5 This is a schematic diagram of the state of the separation operation of the bin body and the cup cover of the utility model;
[0025] Figure 6 This is a schematic diagram of the utility model in the open state of the flip cover;
[0026] Figure 7 This is a schematic diagram of the bottom of the cup cover of the present invention;
[0027] Among them, 1. Cup cover, 11. Upper cover body, 12. Lower cover body, 13. Switch slide, 14. Horizontal opening, 16. First water outlet, 17. Second water outlet, 18. Sealing ring, 19. Accommodation groove, 2. Magnetic component, 21. First magnetic component, 22. Second magnetic component, 23. Upper cover, 24. Lower cover, 25. Arc surface, 26. Magnetic through hole, 3. Warehouse body, 4. Accommodation cavity, 41. Rotating groove, 42. Fixed boss, 43. Support Frame, 44. Supporting boss, 45. Arc groove, 5. Separation component, 51. Rotation shaft, 52. Second toggle lever, 53. Third toggle lever, 54. Limit block, 6. Operating mechanism, 61. Force switch, 62. First toggle lever, 63. Raised button, 64. Return spring, 7. Flip cover, 71. Active hinge shaft, 72. Blocking piece, 73. Sealing protrusion, 8. Convection channel, 81. Upper convection hole, 82. Drain hole, 83. Lower convection hole. DETAILED DESCRIPTION
[0028] The following will be combined with the embodiments and drawings to clearly and completely describe the concept, specific structure and technical effects of the present invention so as to fully understand the purpose, scheme and effect of the present invention. It should be noted that the embodiments and features in the embodiments of this application can be combined with each other unless there is a conflict.
[0029] It should be noted that, unless otherwise specified, when a feature is referred to as being "fixed" or "connected" to another feature, it may be directly fixed or connected to the other feature or indirectly fixed or connected to the other feature. Furthermore, terms such as "upper," "lower," "left," "right," "top," and "bottom" used in this disclosure are intended solely to describe the relative positions of the components of the disclosure as shown in the accompanying drawings.
[0030] In addition, unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art. The terms used in this specification are only for describing specific embodiments and are not intended to limit the present invention. The term "and / or" as used herein includes any combination of one or more of the related listed items.
[0031] It should be understood that although the terms first, second, third, etc. may be used to describe various elements in the present disclosure, these elements should not be limited to these terms. These terms are only used to distinguish elements of the same type from each other. For example, a first element may also be referred to as a second element, and similarly, a second element may also be referred to as a first element without departing from the scope of the present disclosure.
[0032] like Figures 1 to 7As shown in the figure, a cup lid structure of a tea-water separation cup includes a cup lid 1 and a bin body 3 magnetically adsorbed below the cup lid 1 through a magnetic adsorption assembly 2. The cup lid 1 includes an upper lid body 11 and a lower lid body 12, and a receiving cavity 4 is provided between the upper lid body 11 and the lower lid body 12; a separation assembly 5 is rotatably provided in the receiving cavity 4; the magnetic adsorption assembly 2 includes a first magnetic adsorption member 21 and a second magnetic adsorption member 22, the first magnetic adsorption member 21 is connected to the separation assembly 5, and the second magnetic adsorption member 22 is connected to the bin body 3; the separation assembly 5 includes a rotating shaft 51, the rotating shaft 51 is connected to the upper end of the first magnetic adsorption member 21, and the first magnetic adsorption member 21 is rotatably provided in the receiving cavity 4 through the rotating shaft 51; the cup lid 1 is provided with an operating mechanism 6, the operating mechanism 6 includes a force application switch 61 and a first toggle lever 62 provided at the bottom of the force application switch 61, and a second toggle lever 52 is correspondingly provided on one side of the rotating shaft 51; when the force application switch 61 is displaced under an external force, the first toggle lever 62 connected to the force application switch 61 contacts and drives the second toggle lever 52 to displace, thereby driving the rotating shaft 51 connected to the second toggle lever 52 to rotate, and causing the first magnetic adsorption member 21 to swing upward relative to the second magnetic adsorption member 22 around the rotating shaft 51, and the magnetic attraction of the first magnetic adsorption member 21 to the second magnetic adsorption member 22 gradually decreases, so that the bin body 3 is separated from the cup lid 1.
[0033] As Figure 4 shown in the figure is a schematic diagram of the state where the bin body 3 and the cup lid 1 are adsorbed and fixed in the normal state. Under the action of its own weight, the first magnetic adsorption member 21 keeps facing downward and magnetically adsorbs with the second magnetic adsorption member 22 provided on the bin body 3, so as to realize the adsorption and fixation between the bin body 3 and the cup lid 1.
[0034] As Figure 5 shown in the figure is a schematic diagram of the state of separating the bin body 3 from the cup lid 1. The user moves the force application switch 61 from left to right, so that the first toggle lever 62 contacts and pushes the second toggle lever 52 provided on the rotating shaft 51 to rotate leftward around the rotating shaft 51 by a certain angle, thereby causing the rotating shaft 51 connected and fixed to the second toggle lever 52 to rotate, and driving the first magnetic adsorption member 21 provided below the rotating shaft 51 to rotate and displace from the middle to the left following the rotating shaft 51. At this time, the position of the first magnetic adsorption member 21 changes from facing the second magnetic adsorption member 22 to offsetting to the left of the second magnetic adsorption member 22. During this offset process, the magnetic attraction of the first magnetic adsorption member 21 to the second magnetic adsorption member 22 gradually decreases until the second magnetic adsorption member 22 is disengaged from the magnetic attraction of the first magnetic adsorption member 21, so that the separation between the bin body 3 and the cup lid 1 is achieved, and the bin body 3 can fall into the water to soak tea leaves, decoction pieces and other beverages.
[0035] In an embodiment, the first magnetic member 21 is reset by its own weight. After the user resets the force switch 61 manually or by providing a reset spring 64 between the force switch 61 and the cup cover 1, the first magnetic member 21 has its own weight and is arranged below the rotating shaft 51. After the above-mentioned separation operation, the first magnetic member 21 is in a state of being offset to the left. Once the force switch 61 is reset, the first toggle rod 62 is separated from the second toggle rod 52, and the rotating shaft 51 is no longer restricted. At this time, the first magnetic member 21 can drive the rotating shaft 51 to rotate from the left to the right according to its own weight until the first magnetic member 21 rotates to the bottom due to the action of gravity, thereby achieving reset, ensuring that the cup cover 1 can re-achieve magnetic adsorption with the warehouse body 3 when the cup is inverted.
[0036] like Figure 1 and Figure 2 As shown, in order to prevent the first magnetic component 21 from being unable to flip and reset by gravity, the rotating shaft 51 is laterally provided with a third toggle rod 53 below the first toggle rod 62. Since the first toggle rod 62 is located between the second toggle rod 52 and the third toggle rod 53, when the force switch 61 moves from left to right to separate the bin body 3 and the cup cover 1, one side of the first toggle rod 62 first contacts the second toggle rod 52 and drives the second toggle rod 52 and the rotating shaft 51 to rotate to the right with the rotating shaft 51 as the axis. Correspondingly, the third toggle rod 53 is also synchronously rotated to the right with the rotating shaft 51 as the axis and contacts the other side of the first toggle rod 62, thereby realizing the rotation stroke limit of the rotating shaft 51 and preventing the rotating shaft 51 from being driven by the force switch 61 to rotate excessively.
[0037] When the user manually resets the force switch 61 or drives the force switch 61 to move from right to left through the reset spring 64, the first toggle rod 62 drives the third toggle rod 53 and the rotating shaft 51 in contact with it to rotate to the left, thereby synchronously resetting the force switch 61 and the first magnetic component 21.
[0038] Correspondingly, since the first magnetic member 21 can drive the rotating shaft 51 to rotate and displace from the left to the right according to its own weight, this method can drive the rotating shaft 51 and the second toggle rod 52 to self-reset through the first magnetic member 21. The second toggle rod 52 contacts the first toggle rod 62 and correspondingly drives the force switch 61 connected to the first toggle rod 62 to reset from right to left. Therefore, in this embodiment, there is no need for the user to manually operate the force switch 61, and the self-reset of the force switch 61 and the first magnetic member 21 can be achieved synchronously.
[0039] A limit block 54 is provided below the corresponding third toggle rod 53 through the accommodating cavity, and the position of the third toggle rod 53 is limited by the limit block 54. The limit block 54 has two functions. First, when the first magnetic component 21 is reset and drives the rotating shaft 51 to rotate, it can limit the position to prevent the rotating shaft 51 from rotating excessively to the left; second, in normal conditions, the third toggle rod 53 and the limit block 54 can limit the rotating shaft 51 to the left to prevent the first magnetic component 21 from swinging due to shaking and causing it to separate from the second magnetic component 22.
[0040] like Figure 1 and Figure 2 As shown, a switch slot 13 is provided on the top of the cup cover 1, and a force switch 61 is provided with a raised button 63. A horizontal opening 14 is provided on the top of the cup cover 1 for the raised button 63 to pass through. The force switch 61 is slidably set in the switch slot 13. When the raised button 63 is toggled, the force switch 61 is driven to slide and displace along the direction of the switch slot 13, so that the force switch 61 moves from left to right or from right to left. The force switch 61 moves from left to right, pushing the second toggle rod 52 to move, driving the rotating shaft 51 to rotate and separate the compartment body 3 and the cup cover 1. The force switch 61 moves from right to left, pushing the third toggle rod 53 to move, driving the rotating shaft 51 to reset.
[0041] Among them, the force switch 61 is not only set on the top of the cup cover 1, but also can be set on one side of the cup cover 1. Specifically, a switch slide groove 13 is provided on one side of the cup cover 1, and the force switch 61 is provided with a raised button 63. A horizontal opening 14 is opened on one side of the cup cover 1 for the raised button 63 to pass through. The force switch 61 is slidably set in the switch slide groove 13. When the raised button 63 is toggled, the force switch 61 is driven to slide along the direction of the switch slide groove 13, so that the force switch 61 moves from left to right or from right to left. The force switch 61 moves from left to right, pushing the second toggle rod 52 to move, driving the rotating shaft 51 to rotate and separate the bin body 3 and the cup cover 1. The force switch 61 moves from right to left, pushing the third toggle rod 53 to move, driving the rotating shaft 51 to reset.
[0042] In addition, the first toggle rod 62 of the force switch 61 can be pressed, twisted, etc. to drive the second toggle rod 52 to move and realize the rotation of the rotating shaft 51.
[0043] like Figures 1 to 3 As shown, the accommodating cavity 4 is respectively provided with a rotation groove 41 at both ends corresponding to the rotation shaft 51, and the two ends of the rotation shaft 51 are movably installed in the rotation groove 41 at both ends. The upper cover body 11 is provided with a fixed boss 42 at the position corresponding to the rotation groove 41. When the upper cover body 11 and the lower cover body 12 are buckled with each other, the fixed boss 42 and the rotation groove 41 cooperate with each other to limit the rotation shaft 51 therebetween, so that the rotation shaft 51 will not disengage, thereby ensuring the stable rotation of the rotation shaft 51.
[0044] At the position of the bottom of the accommodating cavity 4 corresponding to the rotating shaft 51, a supporting bracket 43 is provided. The supporting bracket 43 is provided with a U-shaped opening upwards for supporting the rotating shaft 51. The supporting bracket 43 extends a supporting column 44 below the axis of the rotating shaft 51. The setting of the supporting bracket 43 and the supporting column 44 directly provides the lower support for the rotating shaft 51, significantly improving the bearing capacity. This helps to reduce the shaking or offset of the rotating shaft 51 during rotation due to load or external force, and effectively reduces the wear of the rotating shaft 51 during operation. This reduces the failure rate caused by wear, improves the reliability and operation efficiency of the equipment, and thus significantly improves the stability of the rotation of the entire rotating shaft 51; at the same time, the supporting column 44 provided below the axis of the rotating shaft 51 can effectively disperse the stress generated by the rotating shaft 51 and its attached load to the supporting area of the supporting column 44, avoiding the structural damage of the rotating shaft 51 caused by stress concentration.
[0045] As Figure 3 shown, for the specific connection between the first magnetic part 21 and the rotating shaft 51, the first magnetic part 21 is connected to the rotating shaft 51 by providing an upper cover 23 and a lower cover 24. The rotating shaft 51 is fixedly connected to the upper end of the upper cover 23. There is a cavity for placing the first magnetic part 21 between the upper cover 23 and the lower cover 24. The upper cover 23 and the lower cover 24 are buckled to fix the first magnetic part 21. The upper cover 23 and the lower cover 24 ensure the stability of the first magnetic part 21 during operation, and can also effectively prevent damage to the first magnetic part 21 caused by corrosion of external impurities, affecting the magnetism of the first magnetic part 21, thereby extending its service life; when the magnetic force of the first magnetic part 21 weakens after long-term use, the upper cover 23 and the lower cover 24 can be disassembled and replaced.
[0046] The bottom of the lower cover 24 is provided with an arc surface 25 and a magnetic attraction through hole 26 in the middle. The accommodating cavity 4 is provided with an arc groove 45 at the position corresponding to the arc surface 25 of the lower cover 24. The arc surface 25 provided at the bottom of the lower cover 24 is matched with the arc groove 45 at the corresponding position of the accommodating cavity 4. Compared with a plane, the arc surface 25 and the arc groove 45 can reduce the distance between the first magnetic part 21 and the second magnetic part 22, effectively utilizing the space inside the equipment and achieving a compact and efficient layout; at the same time, the magnetic attraction through hole 26 provided in the middle helps to reduce the loss during the magnetic force transmission process, enabling the magnetic force of the first magnetic part 21 to act on the second magnetic part 22 more concentratedly and efficiently through the magnetic attraction through hole 26, which effectively improves the magnetic attraction stability performance and efficiency between the first magnetic part 21 and the second magnetic part 22.
[0047] The top of the upper cover body 11 is provided with a first water outlet 16, and the bottom of the lower cover body 12 is provided with a second water outlet 17. The first water outlet 16 and the second water outlet 17 are in corresponding positions and communicate with each other. Through the first water outlet 16 and the second water outlet 17, users can drink without unscrewing the cup lid 1. A sealing ring 18 is provided between the upper cover body 11 and the lower cover body 12 at the connection between the first water outlet 16 and the second water outlet 17. The sealing ring 18 seals the connection between the first water outlet 16 and the second water outlet 17 to prevent liquids such as water from flowing into the accommodation cavity 4 through the connection between the two, affecting the normal operation of components such as the rotating shaft 51.
[0048] As Figure 6 shown in Figure 7 the figure, on one side of the first water outlet 16 of the upper cover body 11, a flip cover 7 is provided through a movable hinge shaft 71. The flip cover 7 is buckled at the first water outlet 16 and is provided with a blocking member 72 for blocking the first water outlet 16. The upper cover body 11 is respectively provided with an upper convection hole 81 and a drainage hole 82 communicating with the accommodation cavity 4. By providing the drainage hole 82, water accumulation inside the accommodation cavity 4 is avoided. The bottom of the lower cover body 12 is provided with a lower convection hole 83. A convection channel 8 is communicated between the upper convection hole 81 and the lower convection hole 83, and the lower convection hole 83 is communicated with the inside of the cup body. By the mutual cooperation of the upper convection hole 81, the convection channel 8, and the lower convection hole 83, when drinking, especially when drinking hot drinks, if the water cup is completely sealed, as the drinking progresses, negative pressure may be formed inside the cup, resulting in difficulty for the hot drink to flow out smoothly and even possibly causing the water cup to be sucked in. At this time, the upper convection hole 81, the convection channel 8, and the lower convection hole 83 can cooperate as air inlet holes to balance the air pressure inside and outside the cup, prevent the generation of negative pressure, and ensure the smooth outflow of the hot drink. The flip cover 7 is provided with a sealing convex block 73 for opening or blocking the upper convection hole 81 at a position corresponding to the upper convection hole 81. When the flip cover 7 is flipped and buckled at the first water outlet 16 through the movable hinge shaft 71, the sealing convex block 73 provided on the flip cover 7 can be driven synchronously to block the upper convection hole 81, thereby preventing the liquid inside the cup from flowing out through the upper convection hole 81 when the cup is inverted; when the flip cover 7 is flipped open at the first water outlet 16 through the movable hinge shaft 71, the sealing convex block 73 provided on the flip cover 7 can be driven synchronously to open the upper convection hole 81, enabling users to drink normally and smoothly.
[0049] As Figure 1 shown in Figure 6 the figure, the top of the upper cover body 11 is provided with a receiving groove for receiving the flip cover 7. The first water outlet 16 protrudes above the upper cover body 11. When the flip cover 7 is flipped open at the first water outlet 16, it can be placed in the receiving groove 19. Since the height of the flip cover 7 when placed in the receiving groove 19 is lower than the height of the first water outlet 16, when users drink through the first water outlet 16, the flip cover 7 will not be too close to the user's face, causing obstruction and affecting drinking.
[0050] As described above, these are only the preferred embodiments of the present invention. The present invention is not limited to the above-mentioned implementation manners. As long as the same means can achieve the technical effects of the present invention, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present disclosure shall be included within the scope of protection of the present disclosure and shall fall within the scope of protection of the present invention. Within the scope of protection of the present invention, various different modifications and variations can be made to its technical solutions and / or implementation manners.
Claims
1. The cup lid structure of a tea-water separation cup, comprising a cup lid (1) and a bin body (3) magnetically adsorbed below the cup lid (1) through a magnetic attraction component (2), characterized in that, The cup lid (1) includes an upper lid body (11) and a lower lid body (12), and a receiving cavity (4) is provided between the upper lid body (11) and the lower lid body (12); a separating component (5) is rotatably provided in the receiving cavity (4); The magnetic attraction component (2) includes a first magnetic attraction member (21) and a second magnetic attraction member (22), the first magnetic attraction member (21) is connected to the separating component (5), and the second magnetic attraction member (22) is connected to the cartridge body (3); The separating component (5) includes a rotating shaft (51), the rotating shaft (51) is connected to the upper end of the first magnetic attraction member (21), and the first magnetic attraction member (21) is rotatably arranged in the receiving cavity (4) through the rotating shaft (51); The cup lid (1) is provided with an operating mechanism (6), the operating mechanism (6) includes a force application switch (61) and a first toggle rod (62) provided at the bottom of the force application switch (61), and a second toggle rod (52) is correspondingly provided on one side of the rotating shaft (51) relative to the first toggle rod (62); when an external force acts on the force application switch (61) and causes displacement, the first toggle rod (62) connected to the force application switch (61) contacts the second toggle rod (52) and drives its displacement, thereby driving the rotating shaft (51) connected to the second toggle rod (52) to rotate, and causing the first magnetic attraction member (21) to swing upward relative to the second magnetic attraction member (22) around the rotating shaft (51), and the magnetic attraction force of the first magnetic attraction member (21) on the second magnetic attraction member (22) gradually decreases during the displacement process, so that the cartridge body (3) is separated from the cup lid (1).
2. The cup lid structure of a tea separation cup according to claim 1, characterized in that, The rotating shaft (51) is horizontally provided with a third toggle rod (53) below the first toggle rod (62), the first toggle rod (62) is located between the second toggle rod (52) and the third toggle rod (53), and a limiting stop block (54) is provided in the receiving cavity (4) corresponding to the lower part of the third toggle rod (53) to limit the position of the third toggle rod (53).
3. The cup lid structure of a tea-water separation cup according to claim 2, characterized in that, The top of the cup lid (1) is provided with a switch chute (13), the force application switch (61) is provided with a protruding button (63), the top of the cup lid (1) is provided with a horizontal opening (14) for the protruding button (63) to pass through, the force application switch (61) is slidably arranged in the switch chute (13), and when the protruding button (63) is toggled, it drives the force application switch (61) to slide and displace along the direction of the switch chute (13), so that the force application switch (61) moves from left to right or from right to left. When the force application switch (61) moves from left to right, it pushes the second toggle rod (52) to displace and drives the rotating shaft (51) to rotate to separate the cartridge body (3) from the cup lid (1). When the force application switch (61) moves from right to left, it pushes the third toggle rod (53) to displace and drives the rotating shaft (51) to reset.
4. The cup lid structure of a tea-water separation cup according to claim 2, characterized in that, One side of the cup lid (1) is provided with a switch chute (13). The force-applying switch (61) is provided with a protruding button (63). A transverse opening (14) for the protruding button (63) to pass through is formed on one side of the cup lid (1). The force-applying switch (61) is slidably arranged in the switch chute (13). When the protruding button (63) is toggled, it drives the force-applying switch (61) to slide and displace along the direction of the switch chute (13), so that the force-applying switch (61) moves from left to right or from right to left. When the force-applying switch (61) moves from left to right, it pushes the second toggle rod (52) to displace and drives the rotating shaft (51) to rotate, separating the bin body (3) from the cup lid (l). When the force-applying switch (61) moves from right to left, it pushes the third toggle rod (53) to displace and drives the rotating shaft (51) to reset.
5. The cup lid structure of a tea water separation cup according to claim 3 or 4, characterized in that A return spring (64) is arranged between the force-applying switch (61) and the cup lid (1).
6. The cup lid structure of a tea-water separation cup according to claim 1, characterized in that, Rotating grooves (41) are respectively arranged at both ends of the accommodating cavity (4) corresponding to the rotating shaft (51). Both ends of the rotating shaft (51) are movably installed in the rotating grooves (41) at both ends. Fixed convex columns (42) are arranged at the positions of the upper cover body (11) corresponding to the rotating grooves (41). When the upper cover body (11) and the lower cover body (12) are buckled together, the fixed convex columns (42) and the rotating grooves (41) cooperate with each other to limit the rotating shaft (51) therebetween. A supporting bracket (43) is arranged at the bottom of the accommodating cavity (4) corresponding to the position of the rotating shaft (51). The supporting bracket (43) is provided with a U-shaped opening upwards for supporting the rotating shaft (51). A supporting column (44) is arranged at the bottom of the supporting bracket (43) extending directly below the axis of the rotating shaft (51).
7. The cup lid structure of a tea-water separation cup according to claim 1, characterized in that, The first magnetic member (21) is connected to the rotating shaft (51) by means of an upper cover (23) and a lower cover (24). The rotating shaft (51) is fixedly connected to the upper end of the upper cover (23). A cavity for placing the first magnetic member (21) is arranged between the upper cover (23) and the lower cover (24). The upper cover (23) and the lower cover (24) are buckled together to fix the first magnetic member (21). The bottom of the lower cover (24) is provided with an arc surface (25) and a magnetic through hole (26) is arranged in the middle. An arc groove (45) is arranged in the accommodating cavity (4) corresponding to the arc surface (25) of the lower cover (24).
8. The cup lid structure of a tea-water separation cup according to claim 1, characterized in that, A first water outlet (16) is arranged at the top of the upper cover body (11). A second water outlet (17) is arranged at the bottom of the lower cover body (12). The first water outlet (16) and the second water outlet (17) are opposite in position and communicate with each other. A sealing ring (18) is arranged between the upper cover body (11) and the lower cover body (12) at the connection between the first water outlet (16) and the second water outlet (17).
9. The cup lid structure of a tea-water separation cup according to claim 8, characterized in that, On one side of the first water outlet (16), the upper cover body (11) is provided with a flip cover (7) through a movable hinge shaft (71). The flip cover (7) is buckled at the first water outlet (16) and is provided with a blocking member (72) for blocking the first water outlet (16). The upper cover body (11) is respectively provided with an upper convection hole (81) and a drain hole (82) communicated with the accommodation cavity (4). The bottom of the lower cover body (12) is provided with a lower convection hole (83). A convection channel (8) is communicated between the upper convection hole (81) and the lower convection hole (83). The flip cover (7) is provided with a sealing convex block (73) for opening or blocking the upper convection hole (81) at a position corresponding to the upper convection hole (81).
10. The cup lid structure of a tea separation cup according to claim 9, characterized in that, A receiving groove (19) for receiving the flip cover (7) is formed at the top of the upper cover body (11). The first water outlet (16) protrudes above the upper cover body (11). When the flip cover (7) is placed in the receiving groove (19), its height is lower than that of the first water outlet (16).
Citation Information
Patent Citations
Magnetic type brewing and drinking cup
CN218528392U