Magnetic trigger automatic tea infusion separation anti-over-extraction teapot

CN224612302UActive Publication Date: 2026-08-11GUANGDONG HAILEA GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

现有技术中的茶壶在煮茶时主要是将茶叶与水混合,这种方法能够将茶叶的色泽与香气快速的融入茶汤中,但是由于茶叶长时间浸泡在茶汤中同样会影响到茶汤的口感

Benefits of technology

通过磁吸的原理,通过磁性驱动件来驱动所述磁性封水塞往复运动,以连通或阻断所述出水通道,从而方便快捷的实现茶汤分离,有效防止了茶叶过萃而影响茶汤的口感。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to tea set technical field especially is involved a kind of magnetic attraction trigger automatic tea soup separation anti over extraction teapot.The technology includes kettle body and cup body for accommodating tea leaves in kettle body, handle connected on kettle body, installation protrusion is formed with in the bottom of cup body and protrudes downward, vertical water outlet passage is opened in the upper center of installation protrusion, installation hole is opened in the middle of installation protrusion and is horizontally arranged, magnetic water seal plug is independently worn in installation hole, multiple water outlet holes are opened in the lower part of installation protrusion and are connected with water outlet passage, magnetic drive element that can drive magnetic water seal plug left and right movement to communicate or block water outlet passage is equipped in handle.The principle of magnetic attraction, the magnetic water seal plug reciprocating motion is driven by magnetic drive element, to communicate or block water outlet passage, so that tea soup separation is conveniently and quickly realized, tea leaf over extraction is effectively prevented and the taste of tea soup is affected.
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Description

Technical Field

[0001] This utility model belongs to the field of teaware technology, and in particular relates to a magnetically triggered automatic tea soup separation teapot to prevent over-extraction. Background Technology

[0002] Tea drinking has a long history in my country, and tea culture is very popular. A teapot is indispensable for brewing and enjoying tea. Current teapots primarily mix tea leaves with water when brewing tea. This method allows the color and aroma of the tea leaves to quickly infuse into the tea soup. However, the prolonged steeping of tea leaves in the soup can also affect the taste of the tea.

[0003] Therefore, there is an urgent need to design a magnetically triggered automatic tea infusion separation teapot to overcome the shortcomings of the existing technology. Utility Model Content

[0004] The purpose of this invention is to provide a magnetically triggered automatic tea infusion separation teapot that prevents over-extraction. Based on the principle of magnetic attraction, it can quickly and conveniently separate tea infusion, preventing over-extraction of tea leaves from affecting the taste of the tea infusion.

[0005] The aforementioned magnetically triggered automatic tea infusion separation and anti-over-extraction teapot includes a teapot body, a cup body inside the teapot body for holding tea leaves, and a handle connected to the teapot body. A mounting protrusion is formed by protruding downwards at the bottom of the cup body. A vertical water outlet channel is opened at the center of the upper part of the mounting protrusion. A horizontally arranged mounting hole is opened in the middle of the mounting protrusion. A magnetic water-sealing plug is independently installed in the mounting hole. Multiple water outlet holes connected to the water outlet channel are circumferentially opened at the lower part of the mounting protrusion. A magnetic drive component is provided in the handle, which can drive the magnetic water-sealing plug to move left and right to connect or block the water outlet channel.

[0006] The teapot described in this application utilizes the principle of magnetic attraction. By changing the direction of the magnetic poles of the magnetic drive component, the magnetic water-sealing plug is driven to move back and forth, thus connecting or blocking the water outlet channel. This allows for convenient and quick separation of tea and infusion, effectively preventing over-extraction of tea leaves and ensuring the tea's flavor. Furthermore, the convenient tea-infusion separation allows for adjustment of the steeping time according to personal preference, thereby regulating the tea's concentration—a multi-benefit approach.

[0007] Furthermore, the magnetic water seal plug has an inverted T-shaped structure, with its vertical portion passing through the mounting hole and its horizontal portion confined outside the mounting hole.

[0008] By using the above-described method to set up a T-shaped magnetic water seal plug, the lateral portion of the magnetic water seal plug can be fully subjected to force, ensuring that the magnetic water seal plug can be subjected to force and move when the magnetic drive changes the direction of the magnetic pole, so as to block or connect the water outlet channel through the magnetic water seal plug.

[0009] Furthermore, the magnetic water seal plug includes a driven magnet and a sealing plunger vertically connected to the center of the left side of the driven magnet. The sealing plunger is disposed in the mounting hole, and a through hole is provided at the end of the sealing plunger away from the driven magnet.

[0010] Based on the above design, driven by the magnetic actuator, the magnetic water seal can move left or right to change the position of the through hole. When the magnetic water seal connects the upper and lower parts of the water outlet channel, the through hole and the water outlet channel at least partially overlap in the vertical direction. When the magnetic water seal blocks the upper and lower parts of the water outlet channel, the through hole and the water outlet channel do not overlap in the vertical direction. Therefore, the magnetic water seal, driven by the magnetic actuator, conveniently controls the opening and closing of the water outlet channel, allowing for tea-in-soup separation as needed.

[0011] Furthermore, a limiting ring is formed on the side of the sealing plunger near the driven magnet, and a limiting groove that mates with the limiting ring is formed on the side of the mounting hole near the driven magnet.

[0012] Based on the above design, the left and right movement of the sealing plunger is limited by the cooperation of the limiting groove and the limiting ring, thereby ensuring that the water outlet channel is blocked or connected after the sealing plunger moves left and right.

[0013] Furthermore, a water-collecting groove with a larger opening at the top and a smaller opening at the bottom is formed at the inner bottom of the cup body, and this water-collecting groove is located directly above the water outlet channel.

[0014] Based on the above design, the water collection groove allows the water or tea in the cup to be completely discharged into the pot through the water outlet channel and outlet hole, thus avoiding the phenomenon of residue in the cup affecting the taste of the tea.

[0015] Furthermore, the magnetic drive is rotatably disposed within the receiving cavity via a rotating shaft, one end of which extends out of the handle and is connected to the drive.

[0016] Based on the above design, the magnetic drive component is an ordinary magnet. The drive component can drive the cavity to rotate, thereby causing the magnetic drive component to rotate as well. In other words, the drive component can change the direction of the magnetic field of the magnetic drive component, thereby realizing the movement of the magnetic water seal plug by magnetic force.

[0017] Furthermore, a limiting block for limiting the drive component is fixed on the surface of the handle.

[0018] Based on the above design, the position of the limit block before and after rotation is limited by the setting of the limit block, thereby ensuring that the magnetic drive can be set parallel to the magnetic water seal plug before and after rotation, thus ensuring that there is a maximum working area between the magnetic drive and the magnetic water seal plug to drive the movement of the magnetic water seal plug, and ensuring that the magnetic water seal plug can reliably realize the on / off control of the water outlet channel.

[0019] Furthermore, the magnetic drive is fixed in the receiving cavity, a power module for supplying power to the magnetic drive is provided inside the handle, and a control switch is also provided on the handle, which can control the direction of the magnetic field of the magnetic drive.

[0020] Based on the above design, the magnetic drive component is an electromagnet. Therefore, the power module is used to supply power to the magnetic drive component. By setting a control switch on the handle, it is easier to drive the magnetic water seal to move by changing the magnetic field direction of the magnetic drive component, thereby achieving the control of tea soup separation. The operation is convenient and the use is simple.

[0021] Furthermore, a power interface is provided at the lower end of the handle, which is electrically connected to the power module.

[0022] Based on the above design, the power module can be conveniently recharged through the power interface, ensuring that the power module can continuously and reliably supply power to the magnetic drive component, thereby ensuring that the magnetic drive component can continuously have sufficient magnetic force to drive the magnetic water seal to move left and right to achieve tea and water separation.

[0023] Furthermore, a tea strainer is provided inside the cup, and a lid is placed on top of the cup, with the lid positioned above the tea strainer.

[0024] Based on the above design, by using a cup lid and a tea strainer together, not only can the temperature of the water in the cup be prevented from dropping rapidly when brewing tea, but it can also effectively filter the tea leaves.

[0025] Compared with the prior art, the present invention has the following beneficial effects: Using the principle of magnetic attraction, the magnetic water seal is driven to reciprocate by a magnetic drive component to connect or block the water outlet channel, thereby conveniently and quickly separating the tea soup and effectively preventing over-extraction of tea leaves from affecting the taste of the tea soup. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of the present utility model; Figure 2 for Figure 1 Internal structure diagram; Figure 3 for Figure 2 A magnified view of part A in the diagram; Figure 4 for Figure 3 A diagram showing the state of the tea liquor during separation; Figure 5 This is a schematic diagram of the cross-section of the magnetic drive component; Figure 6 This is a schematic diagram of the structure of the magnetic water seal plug; Figure 7 This is a schematic diagram of the structure of Embodiment 2 of the present invention; Figure 8 This is a schematic diagram of Example 2.

[0027] The components in the diagram are named as follows: 1. Kettle body; 2. Cup body; 201. Water collection groove; 3. Cup lid; 4. Tea strainer; 5. Handle; 6. Receiving cavity; 7. Magnetic drive component; 8. Mounting protrusion; 801. Protrusion; 802. Water outlet channel; 803. Water outlet hole; 804. Limiting groove; 805. Mounting hole; 9. Magnetic sealing plug; 901. Driven magnet; 902. Sealing plunger; 903. Through hole; 904. Limiting ring; 10. Rotating shaft; 11. Drive component; 12. Power module; 13. Control switch; 14. Power interface; 15. Limiting block. Detailed Implementation

[0028] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

[0029] Example 1: See appendix Figure 1 - Appendix Figure 6This embodiment proposes a magnetically triggered automatic tea infusion separation and anti-over-extraction teapot, including a teapot body 1 with a top opening, a cup body 2 located inside the teapot body 1 for holding tea leaves, and a handle 5 connected to the teapot body 1. The cup body 2 is supported at the opening of the teapot body 1 by a step protruding outward at the top. A tea strainer 4 is provided inside the cup body 2, and a cup lid 3 is provided above the tea strainer 4, covering the top opening of the cup body 2. Thus, by using the cooperation of the cup lid 3 and the tea strainer 4, not only can the temperature of the water in the cup body 2 be prevented from dropping rapidly during tea brewing, but it can also effectively filter the tea leaves. The bottom of the cup body 2 protrudes downward to form a mounting protrusion 8. The mounting protrusion 8 includes a columnar protrusion 801. A vertical water outlet channel 802 is opened at the upper center of the protrusion 801. A horizontally arranged mounting hole 805 is opened in the middle of the protrusion 801. A magnetic water sealing plug 9 is independently installed in the mounting hole 805. A plurality of water outlet holes 803 connected to the water outlet channel 802 are circumferentially opened in the lower part of the protrusion 801. A magnetic drive member 7 is provided in the lower part of the handle 5, which can drive the magnetic water sealing plug 9 to move left and right to connect or block the water outlet channel 802.

[0030] The teapot described in this embodiment utilizes the principle of magnetic attraction. By changing the direction of the magnetic poles of the magnetic drive component 7, the magnetic water-sealing plug 9 is driven to reciprocate left and right, thereby connecting or blocking the water outlet channel 802. This facilitates quick and easy separation of tea and infusion, effectively preventing over-extraction of tea leaves and its impact on the taste of the tea. Furthermore, the convenient tea-infusion separation allows for adjustment of the steeping time according to personal preference, thus regulating the tea concentration – a multi-benefit feature. In addition, the multiple circumferentially arranged water outlets 803 allow water to flow from around the mounting protrusion 8 during tea-infusion separation, effectively enhancing the aesthetics and usability of the teapot.

[0031] In this example, the top edge of the tea strainer 4 extends outwards to form a supporting flange, which supports the tea strainer 4 within the cup body 2. This design allows for quick and easy assembly and disassembly, enabling easy cleaning of the tea strainer 4.

[0032] See appendix Figure 3 The magnetic water-sealing plug 9 has an inverted T-shaped structure, with its vertical portion passing through the mounting hole 805 and its horizontal portion confined outside the mounting hole 805. By adopting this T-shaped structure, the magnetic water-sealing plug 9 can fully utilize its horizontal portion to bear force, ensuring that it can move under force when the magnetic drive 7 changes the direction of its magnetic poles. This allows the magnetic water-sealing plug 9 to block or connect the water outlet channel 802.

[0033] The specific structure of the magnetic water-sealing plug 9 is as follows: Figure 6As shown, the magnetic water-sealing plug 9 includes a driven magnet 901 and a sealing plunger 902 vertically connected to the center of the left side of the driven magnet 901. The sealing plunger 902 can be equipped with components such as sealing rings to improve the water-blocking effect when needed. The sealing plunger 902 is located in the mounting hole 805, and a through hole 903 is provided at the end of the sealing plunger 902 away from the driven magnet 901.

[0034] In other words, the entire horizontal portion of the magnetic water-sealing plug 9 is made of magnetic material and oriented towards the magnetic drive component 7. This ensures a sufficiently large working area between the magnetic drive component 7 and the magnetic water-sealing plug 9, allowing the horizontal portion of the plug 9 to fully bear force. This allows the magnetic drive component 7 to be fully subjected to the attractive or repulsive force of the plug 9, ensuring that the magnetic drive component 7 can drive the plug 9 to move left or right, changing the position of the through hole 903. When the magnetic water-sealing plug 9 connects the upper and lower parts of the water outlet channel 802, the through hole 903 and the water outlet channel 802 at least partially overlap in the vertical direction. When the magnetic water-sealing plug 9 blocks the upper and lower parts of the water outlet channel 802, the through hole 903 and the water outlet channel 802 do not overlap in the vertical direction. Therefore, when the magnetic water-sealing plug 9 is driven by the magnetic drive component 7, the opening and closing of the water outlet channel 802 can be conveniently controlled, allowing for tea soup separation as needed.

[0035] Furthermore, a limiting ring 904 is formed on the side of the sealing plunger 902 near the driven magnet 901, and a limiting groove 804 that mates with the limiting ring 904 is formed on the side of the mounting hole 805 near the driven magnet 901. For details of the mating structure, please refer to the appendix. Figure 2 and attached Figure 3 The limiting groove 804 and the limiting ring 904 work together to limit the left and right movement of the sealing plunger 902, thereby ensuring that the water outlet channel 802 is blocked or connected after the sealing plunger 902 moves left and right.

[0036] From the appendix Figure 3 It can also be seen that a water collection groove 201 with a larger opening at the top and a smaller opening at the bottom is formed at the bottom of the cup body 2, and the water collection groove 201 is located directly above the water outlet channel 802.

[0037] By setting the water collection groove 201, the water or tea soup in the cup body 2 can be completely discharged into the pot body 1 through the water outlet channel 802 and the water outlet hole 803, thereby avoiding the phenomenon that the cup body 2 has residue that affects the taste of the tea soup.

[0038] In this example, the magnetic drive 7 is a common magnet. The magnetic drive 7 is rotatably disposed in the receiving cavity 6 via a rotating shaft 10. One end of the rotating shaft 10 extends out of the handle 5 and is connected to the drive 11.

[0039] Based on the above method, the drive component 11 can drive the receiving cavity 6 to rotate, thereby causing the magnetic drive component 7 to rotate accordingly. In other words, the drive component 11 can change the magnetic field direction of the magnetic drive component 7, thereby driving the magnetic sealing plug 9 to move by changing the direction of the magnetic force.

[0040] from Figure 1 and Figure 5 It can also be seen that a limiting block 15 for limiting the drive component 11 is fixed on the surface of the handle 5. By setting the limiting block 15, the position of the limiting block 15 before and after rotation is limited, thereby ensuring that the magnetic drive component 7 can be arranged parallel to the magnetic water seal plug 9 before and after rotation. This ensures that there is a maximum working area between the magnetic drive component 7 and the magnetic water seal plug 9 to drive the movement of the magnetic water seal plug 9, and ensures that the magnetic water seal plug 9 can reliably realize the on / off control of the water outlet channel 802.

[0041] Based on the above structural design, the specific principle of the teapot described in this embodiment is as follows: The teapot is based on the principle of magnetic attraction. The driving component 11 rotates the magnetic driving component 7, changing the orientation of the magnetic driving component 7 toward the magnetic water-sealing plug 9. This alters the direction of the magnetic field of the magnetic driving component 7, causing it to exert an attractive or repulsive force on the magnetic water-sealing plug 9. This drives the magnetic water-sealing plug 9 to move closer to or away from the magnetic driving component 7, thereby connecting or blocking the water outlet channel 802. For example: When the right end of the magnetic water seal 9 is the S pole, if the magnetic drive 7 is to generate an attractive force on the magnetic water seal 9 to drive the magnetic water seal 9 to move to the right, thereby connecting the water outlet channel 802 so that the tea soup in the cup body 2 can be discharged into the pot body 1 to prevent over-extraction, then the drive 11 drives the magnetic drive 7 to rotate around the rotating shaft 10, so that the N pole of the magnetic drive 7 faces the magnetic water seal 9 to generate an attractive force to drive the magnetic water seal 9 to move to the right; conversely, if the magnetic drive 7 is to generate a repulsive force on the magnetic water seal 9 to drive the magnetic water seal 9 to move to the left, thereby blocking the water outlet channel 802 so that the water can be retained in the cup body 2 to soak and extract the tea leaves in the tea strainer 4, then the drive 11 drives the magnetic drive 7 to rotate back to the initial position, so that the S pole of the magnetic drive 7 faces the magnetic water seal 9 to generate a repulsive force to drive the magnetic water seal 9 to move to the left.

[0042] Example 2: See appendix Figure 7The difference between this embodiment and embodiment 1 is that the magnetic drive 7 is an electromagnet, the magnetic drive 7 is fixed in the receiving cavity 6 opened at the lower part of the handle 5, a power module 12 for supplying power to the magnetic drive 7 is also provided in the handle 5, and a control switch 13 is also provided on the top of the handle 5, the control switch 13 is used to control the direction of the magnetic field of the magnetic drive 7.

[0043] The power module 12 is used to supply power to the magnetic drive component 7. By setting the control switch 13 on the handle 5, it is easier to drive the magnetic water seal to move by changing the magnetic field direction of the magnetic drive component 7, so as to realize the control of tea soup separation. It is convenient to operate and simple to use.

[0044] In specific implementation, the power module 12 can be a storage battery, or a combination of a power connector for connecting to mains power and AC / DC conversion modules, and can be selected according to the power of the magnetic drive 7 to drive the magnetic sealing plug 9 to move.

[0045] from Figure 7 It can also be seen that a power interface 14 is provided at the lower end of the handle 5, which is electrically connected to the power module 12. The power interface 14 can conveniently replenish the power module 12, ensuring that the power module 12 can continuously and reliably supply power to the magnetic drive 7, thereby ensuring that the magnetic drive 7 can continuously have sufficient magnetic force to drive the magnetic water seal 9 to move left and right to achieve tea and water separation.

[0046] Based on the working principle of electromagnets, it is known that the magnetic field direction of the magnetic drive component 7 can be changed in two ways: one is by changing the direction of the current in its coil, and the other is by changing the winding direction of the coil. This embodiment uses the method of changing the winding direction of the coil. Specifically, two coils with different directions are wound inside the magnetic drive component 7. By controlling the switch 13 to connect the different coils respectively, the magnetic poles of the magnetic drive component 7 are changed. The circuit principle is as follows: Figure 8 As shown. In Figure 8 In the diagram, E represents the power module 12, R1 and R2 represent two coils with different winding directions in the magnetic drive 7, and S represents the control switch 13. By pressing the control switch 13, coil R1 or R2 can be connected to the circuit. Since coils R1 and R2 have different winding directions, the magnetic poles of the magnetic drive 7 will change accordingly. When the magnetic poles of the magnetic water seal 9 are known, the corresponding coil R1 or R2 can be selected to conduct electricity, so that the magnetic drive 7 generates an attractive or repulsive force on the magnetic water seal 9, thereby driving the magnetic water seal 9 to move closer to or away from the magnetic drive 7, thereby connecting or blocking the water outlet channel 802.

[0047] During implementation, the control switch 13 can also adopt a three-point mode. In addition to the two points used to select coils R1 and R2, the third point is left unused, thereby disconnecting the entire circuit. This is to avoid adverse effects such as misoperation and safety risks caused by powering on the circuit when the teapot is not in use.

[0048] Therefore, the specific principle of the teapot described in this embodiment is as follows: The teapot is based on the principle of magnetic attraction. By controlling the switch 13 to connect coils with different winding directions within the magnetic drive component 7 to the circuit, the magnetic poles change, causing the magnetic drive component 7 to exert an attractive or repulsive force on the magnetic water seal 9. This drives the magnetic water seal 9 to move closer to or away from the magnetic drive component 7, thereby connecting or blocking the water outlet channel 802. For example: When the right end of the magnetic water seal 9 is the N pole, if the magnetic drive 7 is to exert an attractive force on the magnetic water seal 9 to drive it to move to the right, thereby connecting the water outlet channel 802 so that the tea soup in the cup body 2 can be discharged into the pot body 1 to prevent over-extraction, then the coil in the magnetic drive 7 that generates the S pole magnetic field direction is connected to the circuit by controlling the switch 13. Conversely, if the magnetic drive 7 is to exert a repulsive force on the magnetic water seal 9 to drive it to move to the left, thereby blocking the water outlet channel 802 so that the water can be retained in the cup body 2 to soak and extract the tea leaves in the tea strainer 4, then the coil in the magnetic drive 7 that generates the N pole magnetic field direction is connected to the circuit by controlling the switch 13.

[0049] In summary, the teapot described in this embodiment utilizes the principle of magnetic attraction. By changing the direction of the magnetic field of the magnetic drive component 7, the magnetic water-sealing plug 9 is driven to reciprocate, thereby connecting or blocking the water outlet channel 802. This facilitates quick and easy separation of tea and infusion, effectively preventing over-extraction of tea leaves and ensuring the taste of the tea. It also effectively solves the problem of inconvenient tea-infusion separation in existing technologies. Furthermore, the steeping time can be adjusted according to personal preference to regulate the concentration of the tea.

Claims

1. A magnetically triggered automatic tea infusion separation teapot to prevent over-extraction, comprising a teapot body (1) and a cup (2) located inside the teapot body (1) for holding tea leaves, and a handle (5) connected to the teapot body (1), characterized in that: A mounting protrusion (8) is formed at the bottom of the cup body (2). A vertical water outlet channel (802) is provided at the upper center of the mounting protrusion (8). A horizontally arranged mounting hole (805) is provided in the middle of the mounting protrusion (8). A magnetic water seal plug (9) is independently installed in the mounting hole (805). A plurality of water outlet holes (803) connected to the water outlet channel (802) are provided in the lower part of the mounting protrusion (8). A magnetic drive (7) is provided in the handle (5) to drive the magnetic water seal plug (9) to move left and right to connect or block the water outlet channel (802).

2. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to claim 1, characterized in that: The magnetic water seal plug (9) has an inverted T-shaped structure, with its vertical part passing through the mounting hole (805) and its horizontal part being confined outside the mounting hole (805).

3. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to claim 2, characterized in that: The magnetic water seal plug (9) includes a driven magnet (901) and a sealing plunger (902) vertically connected to the center of the left side of the driven magnet (901). The sealing plunger (902) is located in the mounting hole (805), and a through hole (903) is provided at the end of the sealing plunger (902) away from the driven magnet (901).

4. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to claim 3, characterized in that: A limiting ring (904) is formed on the side of the sealing plunger (902) near the driven magnet (901), and a limiting groove (804) that cooperates with the limiting ring (904) is formed on the side of the mounting hole (805) near the driven magnet (901).

5. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to claim 1, characterized in that: A water collection groove (201) with a larger opening at the top and a smaller opening at the bottom is formed in the inner bottom of the cup body (2), and the water collection groove (201) is located directly above the water outlet channel (802).

6. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to any one of claims 1-5, characterized in that: The magnetic drive (7) is rotatably disposed in the receiving cavity (6) via a rotating shaft (10), one end of which extends out of the handle (5) and is connected to the drive (11).

7. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to claim 6, characterized in that: A limiting block (15) for limiting the drive member (11) is fixed on the surface of the handle (5).

8. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to any one of claims 1-5, characterized in that: The magnetic drive (7) is fixed in the receiving cavity (6). A power module (12) for supplying power to the magnetic drive (7) is provided in the handle (5). A control switch (13) is also provided on the handle (5). The control switch (13) can control the magnetic field direction of the magnetic drive (7).

9. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to claim 8, characterized in that: A power interface (14) is provided at the lower end of the handle (5), and the power interface (14) is electrically connected to the power module (12).

10. The magnetically triggered automatic tea infusion separation and anti-over-extraction teapot according to claim 1, characterized in that: A tea strainer (4) is provided inside the cup body (2), and a cup lid (3) is provided on the top of the cup body (2), with the cup lid (3) located above the tea strainer (4).