Magnetic tea-water separation cup with side wall stirring and overturning structure
By incorporating a toggle-flipping mechanism on the side wall of the lid of the magnetic tea-water separator cup, the jamming problem of traditional control structures is solved, achieving convenient one-handed operation, cost reduction, and improved product performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-13
- Publication Date
- 2026-03-31
AI Technical Summary
The existing magnetic tea-water separator cup has a jamming control structure, is inconvenient to operate with one hand, has many parts, is difficult to assemble, and is costly.
The cup lid adopts a side-wall toggle flipping structure. The flipping component is controlled by a toggle switch on the side wall of the lid, which drives the gear to rotate. This achieves a smooth control process, simplifies the structure, and reduces the number of parts and assembly difficulty.
It improves the ease of one-handed operation, reduces product costs, and ensures long-term stability and durability.
Smart Images

Figure CN224055723U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of daily necessities technology, specifically a magnetic tea-water separation cup with a side-wall flipping structure. Background Technology
[0002] In the existing technology system of magnetic tea-water separator cups, the control structure mainly has the following typical methods: one is the translational control structure, which usually uses a button on the lid to drive the magnetic block to move in parallel, thereby changing the magnetic attraction between the tea container and the lid. However, due to the limited internal space of the cup, the translational stroke of the magnetic block is limited, and the requirements for setting the magnetic attraction parameters are extremely strict. An unreasonable attraction setting can easily cause the tea container to fail to separate smoothly from the lid.
[0003] The second type is the slider control structure, which is generally controlled by a slider that can slide radially inside the cup lid. When the button is pressed down, the downward pressure is transmitted through the force-bearing inclined surface at the top of the slider, causing the first and second magnetic blocks fixed on the slider to misalign, thereby causing the tea container to detach from the cup lid; however, this structure lacks linearity in the process of converting the vertical motion stroke into the radial motion stroke, and is prone to jamming in actual operation.
[0004] In addition, a few structures use gear rotation to drive the magnet to rotate in a circle. Although this can solve the problem of the filter screen being difficult to fall off due to the strong attraction of the magnet on the same plane, the linkage design of this structure is complicated, with many parts, difficult assembly and high cost. Moreover, the control mechanism is mostly located on the top surface, which makes it inconvenient to operate with one hand and greatly affects the ease of use. Utility Model Content
[0005] To overcome the shortcomings of existing technologies, the purpose of this utility model is to provide a magnetic tea-water separator cup with a side-wall actuating flip structure. This design effectively solves the jamming problem that easily occurs in the control process of traditional slider control structures through an innovative side-mounted gear control method, and significantly improves the convenience of one-handed operation and optimizes product performance; at the same time, it reduces the number of parts, lowers the assembly difficulty and production cost.
[0006] The technical solution of this utility model is as follows:
[0007] A magnetic tea-water separator cup with a side-wall flipping structure includes a cup body, a cup lid at the mouth of the cup body, a filter screen inside the cup, and first magnetic blocks at the upper and lower ends of the filter screen. The cup lid includes a lower lid and an upper lid. The lower lid has a barrel-shaped, upward-opening placement groove inside. A flipping component is rotatably installed in the placement groove. The flipping component includes a left driven gear and a right driven gear that rotate vertically. An installation chamber is fixedly connected between the left driven gear and the right driven gear. A second magnetic block that is attracted to and repelled by the first magnetic block in a relative position is provided in the installation chamber.
[0008] A rotating disk is rotatably mounted between the lower cover and the upper cover. The main body of the rotating disk is a disk body located in the cavity between the upper cover and the lower cover. The side wall of the disk body has a knob that passes through a notch in the side wall of the upper cover. The lower end face of the rotating disk has an arc-shaped drive rack that meshes with the left driven gear or the right driven gear. The double driven gear is easy to install (the single-sided gear is easy to install in the wrong direction), which reduces the defect rate and reduces the product cost.
[0009] Furthermore, the inner wall of the mounting groove is provided with two support beams along the diameter direction, and the two support beams are provided with recessed slots at corresponding positions. A left driven gear and a right driven gear are rotatably installed on the two recessed slots respectively. The bottom of the mounting groove is also provided with at least one limiting post, and when there are multiple limiting posts, they are distributed in a ring at intervals. The rotating disk is provided with one or more arc-shaped limiting holes distributed in a ring at intervals, and the limiting holes match the limiting posts at corresponding positions. The limiting posts pass through the rotating disk and are connected to the upper cover.
[0010] Furthermore, the installation chamber includes a hemispherical upper shell and a lower shell, with a second magnetic block fastened and fixed to the upper shell and the lower shell, and the left driven gear and the right driven gear are symmetrically fixed to the outer wall of the lower shell.
[0011] Furthermore, an outer cover is fitted onto the outer wall of the upper cover and lower cover, and the side wall of the outer cover is provided with a sliding hole for a knob that corresponds to the notch on the side wall of the upper cover.
[0012] Compared with the prior art, the advantages of this utility model are as follows:
[0013] 1. This utility model achieves smooth control by using a knob on the side wall of the cup lid to drive the gear to rotate and control the flipping component. Compared with traditional control methods (such as control mechanisms located on the top surface), users do not need to change their hand posture, which has excellent ergonomics and allows for convenient one-handed operation.
[0014] 2. The hemispherical lower shell of this utility model has a driven gear and a driving shaft fixedly connected to both ends in sequence. The symmetrical arrangement makes the structure simple and easy to assemble (single-sided gear installation is prone to incorrect orientation and high defect rate), and the cost is low.
[0015] 3. The arc-shaped limiting hole on the rotating disk of this utility model cooperates with its matching limiting post to limit the rotation stroke. The design structure is simple and ensures stability and durability during long-term use. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this utility model.
[0017] Figure 2 This is an exploded view of the cup lid of this utility model.
[0018] Reference numerals in the attached diagram: 1. Cup body; 2. Cup lid; 2-1. Upper lid; 2-1.1. Side wall notch; 2-2. Lower lid; 2-2.1. Support beam; 2-2.2. Limiting post; 2-3. Screw; 2-4. Outer cover; 2-4.1. Toggle sliding hole; 3. Filter screen; 4. First magnetic block; 5. Flipping component; 5-1. Left driven gear; 5-2. Right driven gear; 5-3. Mounting chamber; 5-3.1. Upper housing; 5-3.2. Lower housing; 5-4. Second magnetic block; 6. Rotating disk; 6-1. Toggle; 6-2. Rack; 6-3. Limiting hole. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0020] A magnetic tea-water separator cup with a side-wall flipping structure includes a cup body 1, a cup lid 2 at the mouth of the cup body, a filter screen 3 inside the cup, and first magnetic blocks 4 at the upper and lower ends of the filter screen. The cup lid 2 includes a lower lid body 2-2 and an upper lid body 2-1. The lower lid body has a barrel-shaped upward-opening placement groove inside, and a flipping component 5 is rotatably installed in the placement groove. The flipping component includes a left driven gear 5-1 and a right driven gear 5-2 that rotate vertically. An installation chamber 5-3 is fixedly connected between the left driven gear and the right driven gear. A second magnetic block 5-4 that is attracted and repelled by the first magnetic block 4 in a relative position is provided in the installation chamber.
[0021] A rotating disk 6 is rotatably mounted between the lower cover 2-2 and the upper cover 2-1. The main body of the rotating disk is a disk body, which is located in the cavity between the upper cover 2-1 and the lower cover 2-2. The side wall of the disk body has a knob 6-1 that passes through the notch 2-1.1 on the side wall of the upper cover 2-1. The lower end face of the rotating disk 6 has an arc-shaped driving rack 6-2 that meshes with the left driven gear 5-1 or the right driven gear 5-2. The double driven gears are easy to install (single-sided gears are easy to install in the wrong direction), which reduces the defect rate and reduces product costs.
[0022] Furthermore, the inner wall of the placement groove is provided with two support beams 2-2.1 along the diameter direction. The two support beams are provided with recessed slots at corresponding positions. The left driven gear 5-1 and the right driven gear 5-2 are rotatably installed on the two recessed slots respectively. The bottom of the placement groove is also provided with at least one limiting post 2-2.2. When there are multiple limiting posts, they are distributed along the annular interval. The rotating disk 6 is provided with one or more arc-shaped limiting holes 6-3 distributed along the annular interval. The limiting holes match the limiting posts 2-2.2 at the corresponding positions. The limiting posts 2-2.2 pass through the rotating disk 6 and are connected to the upper cover 2-1 with screws 2-3. The rotating disk 6 rotates within the range between the two ends of the arc-shaped limiting holes 6-3.
[0023] Furthermore, the installation chamber includes a hemispherical upper shell 5-3.1 and a lower shell 5-3.2. The upper shell and the lower shell are fastened and fixed with a second magnetic block 5-4. The left driven gear 5-1 and the right driven gear 5-2 are symmetrically fixed on the outer wall of the lower shell 5-3.2.
[0024] Furthermore, an outer cover 2-4 is fitted onto the outer walls of the upper cover 2-1 and the lower cover 2-2, and the side wall of the outer cover is provided with a knob sliding hole 2-4.1 corresponding to the notch on the side wall of the upper cover 2-1.
[0025] Working principle of this utility model:
[0026] In normal conditions, the rotating disk 6 is in its original position, and the second magnetic block 5-4 and the first magnetic block 4 are attracted by opposite poles. The filter screen 3 is attracted to the cup lid by magnetic attraction. When the tea concentration in the cup is not high enough, push the knob 6-1 to rotate the rotating disk 6. The active rack 6-2 below the rotating disk 6 rotates along with it, and drives the driven gear 5-1 or 5-2 to rotate together. In this way, the horizontal rotation is converted into the vertical rotation of the flipping part 5. The second magnetic block 5-4 installed in the flipping part 5 also rotates. The attraction between the second magnetic block 5-4 and the first magnetic block 4 decreases, and the filter screen 3 falls into the cup body 1. When the tea concentration in the cup reaches the required level, first, return the rotating disk 6 to its original position, invert the cup, and the filter screen 3 will be attracted to the cup lid 2.
[0027] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A magnetic tea and water separation cup with a side wall poking and overturning structure, comprising a cup body, a cup cover is arranged at a mouth of the cup body, a filter screen is arranged in the cup body, and a first magnetic block is arranged at an upper end and a lower end of the filter screen respectively, characterized in that, The cup cover comprises a lower cover body and an upper cover body, the lower cover body is internally provided with a barrel-shaped installation slot which is upwardly open, a turnover piece is rotatably installed in the installation slot, the turnover piece comprises a left driven gear and a right driven gear which rotate in the vertical direction, the left driven gear and the right driven gear are fixedly connected with an installation bin, the installation bin is internally provided with a second magnetic block which is in a mutually attracting or repelling relationship with a first magnetic block in a relative position. A rotating disc is rotatably installed between the lower cover body and the upper cover body, and the lower end surface of the rotating disc is provided with a gear rack which is engaged with the left driven gear or the right driven gear.
2. The magnetic tea and water separation cup with side wall poking and turning structure according to claim 1, characterized in that, The inner wall of the installation slot is provided with two support beams in the diametric direction, and the left driven gear and the right driven gear are rotatably installed on the two support beams respectively.
3. The magnetic tea-water separation cup with side wall poking overturning structure according to claim 1 or 2, characterized in that, The bottom of the installation slot is further provided with at least one limiting column, and the limiting columns are distributed in a ring shape when there are multiple limiting columns.
4. The magnetic tea-water separation cup with side wall poking and turning structure according to claim 3, characterized in that, One or more arc-shaped limiting holes are distributed in a ring shape on the rotating disc, and the limiting holes are matched with the limiting columns in the corresponding positions.
5. The magnetic tea and water separation cup with side wall poking and turning structure according to claim 1, characterized in that, The installation bin comprises a hemispherical upper shell and a lower shell, the second magnetic block is fixedly connected between the upper shell and the lower shell, and the left driven gear and the right driven gear are symmetrically fixed on the outer wall of the lower shell.
6. The magnetic tea and water separation cup with side wall poking and turning structure according to claim 1, characterized in that, The main body of the rotating disc is a disc body, the disc body is located in a cavity between the upper cover body and the lower cover body, and the side wall of the disc body is provided with a knob which passes through a notch in the side wall of the upper cover body.
7. The magnetic tea and water separation cup with side wall poking and turning structure according to claim 1, characterized in that, The outer wall of the upper cover body and the lower cover body is sleeved with an outer cover, and the side wall of the outer cover is provided with a knob sliding hole which is matched with the notch in the side wall of the upper cover body.