Rotary magnetic suction tea-water separation cup
By using the design of a rotating magnetic tea-water separator cup, the magnetic switching between the magnetic suction component and the rotating component solves the problems of inconvenient operation of the tea-water separator cup and long-term soaking of the tea container, thus achieving controllable tea-water concentration and convenient tea-water separation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-24
AI Technical Summary
Existing tea-water separator cups are inconvenient to operate, and the tea chamber is soaked for a long time, resulting in excessively high tea concentration, which affects the tea drinking experience.
The rotating magnetic tea-water separator cup uses a magnetic and rotating component inside the lid. By switching the magnetic properties of the magnetic conductor and the cylindrical magnet, the tea container can be attracted and detached, making it simple and convenient to operate.
It enables controllable tea concentration, is easy to operate, avoids prolonged soaking in the tea container, and enhances the tea drinking experience.
Smart Images

Figure CN224023305U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of tea-water separation cup, and relates to a rotary magnetic tea-water separation cup. BACKGROUND
[0002] With the improvement of people's life quality, drinking tea has become an indispensable life habit for more and more people. When the current tea cup is used to drink tea, the tea bin is easy to slide to the cup opening, resulting in poor tea drinking experience. In addition, the tea bin is soaked in tea water for a long time, the tea water concentration is too high, the taste is not good, and only some tools can be used to take out the tea bin, which is inconvenient to use.
[0003] Some tea-water separation cups appear on the market, but the existing tea-water separation cups also have the problem of inconvenient operation. Some magnetic tea-water separation cups use a gear structure to control magnetic attraction to realize the adsorption and separation of the tea bin, so as to realize tea-water separation. However, when the cup cover is operated to separate tea water, the cup cover will emit obvious gear rotation sound, thereby affecting the use experience. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a rotary magnetic tea-water separation cup, which solves the problem of inconvenient operation in the existing tea-water separation.
[0005] The utility model adopts the technical scheme that the rotary magnetic tea-water separation cup comprises a cup body and a cup cover, and a tea bin is arranged in the cup body.
[0006] The cup cover comprises a cup cover body, the cup cover body is threadedly connected to the upper end of the cup body, a magnetic attraction assembly is arranged in the cup cover body, the magnetic attraction assembly is controlled by a rotating assembly, the rotating assembly is fixed to the upper end of the cup cover body by a fixing assembly, the rotating assembly and the fixing assembly are limited by a positioning assembly, and the cup cover and the tea bin are magnetically attracted and connected by the magnetic attraction assembly.
[0007] The utility model has the characteristics that:
[0008] The magnetic attraction assembly comprises a magnetic conductor fixedly arranged at the central part in the cup cover body, a cavity is arranged at the central part of the magnetic conductor, a rotatable cylindrical magnet is arranged in the cavity, the magnetic conductor comprises two magnetic blocks and two non-magnetic blocks, the two magnetic blocks and the two non-magnetic blocks are sequentially and spacedly connected to form an integral whole, the two non-magnetic blocks are symmetrically arranged, the two magnetic blocks are symmetrically arranged, and the cylindrical magnet is connected with the rotating assembly.
[0009] The magnetic conductor is located at the central part in the upper end of the cup cover body, the upper end of the cup cover body is flush with the upper end of the magnetic conductor, and the distance between the bottom of the magnetic conductor and the bottom of the cup cover body is 0-5 mm.
[0010] The cylindrical magnet is a two-pole magnet.
[0011] The rotating assembly comprises a rotating cover, a rotating control member is connected at the center of the bottom end of the rotating cover, a groove matched with the rotating control member is formed at the center of a cylindrical magnet, the rotating control member is arranged in the groove through the fixing assembly, and the rotating cover is fixed on the upper end of the cup cover body through the fixing assembly.
[0012] The fixing assembly comprises a fixing ring, the fixing ring is fixed on the upper end of the cup cover body through a plurality of fixing bolts, a center through hole is formed at the center of the fixing ring, the diameter of the center through hole is smaller than the length of the groove, the rotating control member is arranged in the groove through the center through hole, two second limiting blocks are symmetrically arranged on the end face of the fixing ring close to the rotating cover, a first limiting block matched with the second limiting blocks is arranged on the bottom end face of the rotating cover, the first limiting block and the second limiting blocks are cross arranged, and the rotating control member is arranged at the center of the first limiting block.
[0013] The rotating control member comprises a plug-in piece and two connecting pieces, the two connecting pieces are arranged on the two sides of the plug-in piece respectively, the two connecting pieces are made of flexible material, a clamping block is arranged at the lower end of each connecting piece, the two clamping blocks are arranged in the groove through the center through hole, and the distance between the outer sides of the two connecting pieces is equal to the diameter of the center through hole.
[0014] The positioning assembly comprises a spring vertically fixed in the cup cover body, the upper end of the spring is movably arranged in the fixing ring through the cup cover body, a positioning bead is connected to the upper end of the spring, a gasket is sleeved on the positioning bead, and the positioning bead and the gasket are movably arranged in the fixing ring; a circular hole matched with the positioning bead is formed in the fixing ring, and the diameter of the circular hole is smaller than the diameter of the positioning bead and the gasket.
[0015] Two positioning holes matched with the positioning bead are formed on the bottom end face of the rotating cover.
[0016] The cup cover body, the rotating cover and the fixing ring have the same outer diameter.
[0017] The utility model discloses the beneficial effects are:
[0018] (1) the utility model discloses a rotating magnetic attraction tea and water separation cup, by setting up magnetic attraction device in the cup cover, when normal tea brewing is needed, adjusting rotating assembly makes magnetic attraction assembly not have magnetism to tea bin, at this moment, tea bin is soaked in water, can realize the demand of tea brewing, when tea bin and tea water need to be separated, rotating rotating cover 90 degrees, makes the magnetic attraction assembly in the cup cover have magnetism to tea bin, when tea bin is close to the cup cover, tea bin is adsorbed at the bottom end of the cup cover, realizes tea water separation, and it is convenient to drink and control tea water concentration, the utility model discloses magnetic attraction assembly simple and reasonable structure, convenient operation and use, and tea water concentration is controllable.
[0019] (2) The rotating magnetic tea-water separator cup of this utility model can achieve positioning of the rotating lid by setting a positioning component inside the lid, thus preventing the rotating lid from rotating. Under the action of external rotational force, the positioning bead can be easily pressed down to ensure that the rotating lid can rotate freely. When not rotating, the positioning bead can be accurately positioned, making the operation convenient. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of the rotating magnetic tea-water separator cup of this utility model;
[0021] Figure 2 This is a schematic diagram showing the disassembled structure of the lid of the rotating magnetic tea-water separation cup of this utility model;
[0022] Figure 3 This is a schematic diagram of the disassembled structure of the cylindrical magnet and the magnetic conductor in the rotating magnetic tea-water separator cup of this utility model;
[0023] Figure 4 This is a schematic cross-sectional view of the inner body of the rotating magnetic tea-water separation cup lid of this utility model;
[0024] Figure 5 This is a schematic diagram of the principle of the magnetic suction component of the rotating magnetic tea-water separator cup of this utility model when it does not have magnetic force.
[0025] Figure 6 This is a schematic diagram illustrating the principle of the magnetic attraction component of the rotating magnetic tea-water separator cup of this utility model when it has magnetic force.
[0026] Figure 7 This is a schematic diagram illustrating the principle of the magnetic adsorption component of the rotating magnetic tea-water separator cup of this utility model adsorbing the tea container;
[0027] Figure 8 This is a schematic diagram of the bottom end face structure of the rotating magnetic tea-water separator cup of this utility model;
[0028] Figure 9 This is a schematic diagram of the rotating control component in the rotating magnetic tea-water separator cup of this utility model;
[0029] Figure 10 This is a schematic diagram of the positioning component in the rotating magnetic tea-water separator cup of this utility model.
[0030] In the diagram, 1. Cup body, 2. Cup lid, 3. Tea compartment, 201. Cup lid body, 202. Rotating lid, 203. Fixing ring, 204. Cylindrical magnet, 205. Magnetic conductor, 206. Non-magnetic block, 207. Rotation control component, 208. First limiting block, 209. Second limiting block, 210. Central through hole, 211. Positioning bead, 212. Washer, 213. Spring, 214. Fixing bolt, 215. Insert connector, 216. Connector, 217. Groove. Detailed Implementation
[0031] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments.
[0032] This utility model is a rotating magnetic tea-water separator cup, such as... Figure 1 As shown, it includes a cup body 1 and a cup lid 2, and a tea compartment 3 is provided inside the cup body 1;
[0033] like Figure 2 As shown, the cup lid 2 includes a cup lid body 201, which is threadedly connected to the upper end of the cup body 1. A magnetic suction component is provided inside the cup lid body 201. The magnetic suction component is controlled by a rotating component. The rotating component is fixed to the upper end of the cup lid body 201 by a fixing component. The rotating component and the fixing component are limited by a positioning component. The cup lid 2 and the tea container 3 are magnetically connected by the magnetic suction component.
[0034] During use, the rotating component on the lid 2 controls whether the lid 2 is magnetic to the tea container 3. When it is necessary to separate the tea container 3 from the tea during the tea drinking process, the lid 2 can be used to attach the tea container 3 to the bottom of the lid 2, so that the tea is separated from the tea container 3 and the tea is not steeped for a long time and the concentration is too high.
[0035] Among them, such as Figure 3 As shown, the magnetic suction assembly includes a magnetic conductor 205 fixedly disposed at the center of the inside of the cup lid body 201. The magnetic conductor 205 has a cavity at its center, and a rotatable cylindrical magnet 204 is disposed within the cavity. The magnetic conductor 205 includes two magnetically conductive blocks and two non-magnetically conductive blocks 206. The non-magnetically conductive blocks 206 are made of brass or aluminum. The two magnetically conductive blocks and the two non-magnetically conductive blocks 206 are sequentially spaced and connected to form a whole. The two non-magnetically conductive blocks 206 are symmetrically arranged, as are the two magnetically conductive blocks. The cylindrical magnet 204 is connected to the rotating assembly. Figure 4 As shown, the magnetic conductor 205 is located at the center of the upper part of the cup lid body 201. The upper part of the cup lid body 201 is flush with the upper part of the magnetic conductor 205. The distance between the bottom of the magnetic conductor 205 and the bottom of the cup lid body 201 is 0~5mm. The cylindrical magnet 204 is a two-pole magnet.
[0036] In this invention, the rotating component controls the cylindrical magnet 204 to rotate within the cavity of the magnetic conductor 205: when the cup lid 2 is not magnetic to the tea container 3, such as Figure 5 As shown, by rotating the assembly, the two magnetic poles of the cylindrical magnet 204 are respectively aligned with two different non-magnetic blocks 206. At this time, almost all the magnetic lines of force emitted from the N pole are transmitted to the S pole through the magnetic conductivity of the magnetic conductor 205, forming a magnetic closed loop, and exhibiting no magnetism externally (the magnetism is very small and negligible). At this time, the cylindrical magnet 204 has no magnetic attraction effect on the tea container 3. When the cup lid 2 needs to have magnetism on the tea container 3, the cylindrical magnet 204 is rotated 90 degrees by rotating the assembly, as shown.Figure 6 As shown, the edges of the two magnetic poles of the cylindrical magnet 204 are aligned with the two non-magnetic blocks 206. Since the non-magnetic blocks 206 are not magnetic, the magnetic lines emanating from the N pole cannot effectively reach the S pole, forming a magnetic open loop that appears magnetic. When the tea container 3 is close to the cup lid 2, the magnetic lines of force can pass through the tea container 3 to reach the S pole, forming a closed loop. Therefore, the tea container 3 is attracted to the cup lid 2. Figure 7 As shown.
[0037] In actual operation, the two different states can be achieved simply by rotating the cylindrical magnet 204 by 90 degrees using the rotating component, making the operation simple.
[0038] like Figure 8 As shown, the rotating assembly includes a rotating cover 202, a rotating control component 207 is connected to the center of the bottom end of the rotating cover 202, a groove 217 is provided at the center of the cylindrical magnet 204 to cooperate with the rotating control component 207, the rotating control component 207 is disposed in the groove 217 through the fixing component, and the rotating cover 202 is fixed to the upper end of the cup lid body 201 by the fixing component.
[0039] like Figure 2 As shown, the fixing assembly includes a fixing ring 203, which is fixed to the upper end of the cup lid body 201 by several fixing bolts 214. A circular central through hole 210 is formed at the center of the fixing ring 203. The diameter of the central through hole 210 is smaller than the length of the groove 217. The rotation control component 207 passes through the central through hole 210 and is disposed within the groove 217. Two second limiting blocks 209 are symmetrically arranged on the end face of the fixing ring 203 near the rotating cover 202. A first limiting block 208 that cooperates with the second limiting blocks 209 is provided on the bottom end face of the rotating cover 202. The shape of the first limiting block 208 is as follows: Figure 8 As shown, the first limiting block 208 and the two second limiting blocks 209 are arranged in a cross manner, that is, the two second limiting blocks 209 are respectively set at the two notches of the first limiting block 208. The two second limiting blocks 209 limit the rotation range of the first limiting block 208, and the rotating cover 202 can only rotate within 90 degrees. The rotation control component 207 is set at the center of the first limiting block 208.
[0040] like Figure 9As shown, the rotating control member 207 includes a plug 215 and two connecting members 216, which are arranged on both sides of the plug 215. The two connecting members 216 are made of flexible material, and the lower ends of the two connecting members 216 are respectively provided with clamping blocks, the width of the clamping blocks is greater than the width of the connecting members 216, and the two clamping blocks are arranged in the grooves 217 through the central through hole 210. The distance between the outer sides of the two connecting members 216 is equal to the diameter of the central through hole 210. In this application, it is assumed that the distance between each connecting member 216 and the side of the adjacent plug 215 is A, and the width difference between each clamping block and the corresponding connecting member 216 is B. A is greater than B. The width of the clamping block can be designed according to the actual situation. This design can ensure that the rotating control member 207 can pass through the central through hole 210 under the hand squeezing, and can also ensure that the rotating control member 207 will not come out of the central through hole 210 without external force.
[0041] In practice, the fixed ring 203 is fixed on the cup cover body 201 by the fixing bolt 214. Since the two connecting members 216 are made of flexible material, the two connecting members 216 and the plug 215 can pass through the central through hole 210 of the fixed ring 203 by pressing the connecting members 216 inward. At this time, the two connecting members 216 and the plug 215 are arranged in the grooves 217 at the center of the cylindrical magnet 204. The cup cover body 201, the rotating cover 202 and the fixed ring 203 are integrated, and the outer diameters of the cup cover body 201, the rotating cover 202 and the fixed ring 203 are the same, so that the whole has aesthetic appearance.
[0042] As shown in the figure, Figure 10 The positioning assembly includes a spring 213 vertically fixed arranged in the inside of the cup cover body 201, the upper end of the spring 213 is movably arranged in the fixed ring 203 through the cup cover body 201, and the upper end of the spring 213 is connected with a positioning bead 211. The positioning bead 211 is externally sleeved with a gasket 212, and the positioning bead 211 and the gasket 212 are movably arranged in the inside of the fixed ring 203. It is worth noting that the positioning bead 211 and the gasket 212 can only move up and down, and cannot move left and right. The fixed ring 203 is provided with a circular hole matched with the positioning bead 211, and the diameter of the circular hole is smaller than the diameter of the positioning bead 211 and the gasket 212. Two positioning holes matched with the positioning bead 211 are respectively arranged on the bottom end face of the rotating cover 202.
[0043] Two positioning holes correspond to two states of the cylindrical magnet 204 with magnetism and without magnetism respectively. When the rotating cover 202 is rotated, the positioning hole at the position of the cylindrical magnet 204 with magnetism coincides with the positioning bead 211. Under the action of the restoring force of the spring 213, the positioning bead 211 is clamped in the positioning hole. When rotation is needed, the rotating cover 202 is rotated, the external force of rotation pushes the positioning bead 211 to move downward, so that the positioning bead 211 is flush with the upper end surface of the fixed ring 203, thereby realizing the rotation of the rotating cover 202. When the positioning hole at the position of the cylindrical magnet 204 without magnetism is reached, the positioning bead 211 is clamped in the second positioning hole to realize the limiting. It is worth noting that, due to the positioning of the rotating cover 202 by the positioning bead 211 without external force, the elasticity of the spring does not need to be too large. Therefore, when the rotating cover 202 is rotated by external force, only the rotating cover 202 needs to be twisted. The external force of twisting is sufficient to press the positioning bead 211 downward so that the rotating cover 202 can be normally rotated.
[0044] Working principle:
[0045] In the process of drinking tea, when it is needed to separate the tea bin 3 from the tea water, the rotating assembly on the cup cover 2 is rotated to make the magnetic attraction assembly in the cup cover 2 have magnetism to the tea bin 3, so that the tea bin 3 is adsorbed at the bottom end of the cup cover 2, the tea bin 3 is separated from the tea water, and the concentration of the tea water is prevented from being too high due to long-term soaking. When the tea bin 3 needs to be soaked in the tea water, the rotating cover on the cup cover is rotated by 90 degrees again, so that the magnetic attraction assembly in the cup cover 2 does not have magnetism to the tea bin 3, and the tea bin 3 can fall into the tea water to continue the tea soaking. The whole process only needs to be rotated by 90 degrees to realize the switching application in different scenes, and there are corresponding positioning assemblies after stopping rotation to prevent the state from changing. The structure is simple, the operation is convenient, and the practicality is wide.
[0046] Embodiment 1
[0047] The rotating magnetic attraction tea water separation cup, as shown in Figure 1 , comprises a cup body 1 and a cup cover 2, and the cup body 1 is provided with a tea bin 3.
[0048] As shown in Figure 2 , the cup cover 2 comprises a cup cover body 201, the cup cover body 201 is threadedly connected to the upper end of the cup body 1, the cup cover body 201 is provided with a magnetic attraction assembly, the magnetic attraction assembly is controlled by a rotating assembly, the rotating assembly is fixed to the upper end of the cup cover body 201 by a fixing assembly, the rotating assembly and the fixing assembly are limited by a positioning assembly, and the cup cover 2 and the tea bin 3 are magnetically attracted and connected by the magnetic attraction assembly.
[0049] Embodiment 2
[0050] On the basis of the structure of embodiment 1, as shown in Figure 3As shown, the magnetic attraction assembly comprises a magnetic conductor 205 fixedly arranged at the inner center of the cup cover body 201, the magnetic conductor 205 is provided with a cavity at the center, the cavity is provided with a rotatable cylindrical magnet 204, the magnetic conductor 205 comprises two magnetic conductive blocks and two non-magnetic conductive blocks 206, wherein the non-magnetic conductive block 206 is made of brass or aluminum material, the two magnetic conductive blocks and the two non-magnetic conductive blocks 206 are sequentially and spacedly arranged to be connected into a whole, the two non-magnetic conductive blocks 206 are symmetrically arranged, the two magnetic conductive blocks are also symmetrically arranged, and the cylindrical magnet 204 is connected with the rotating assembly. Figure 4 As shown, the magnetic conductor 205 is located at the inner center of the upper end of the cup cover body 201, the upper end of the cup cover body 201 is flush with the upper end of the magnetic conductor 205, the distance between the bottom of the magnetic conductor 205 and the bottom of the cup cover body 201 is 0-5mm, and the cylindrical magnet 204 is a two-pole magnet.
[0051] In the utility model, the rotating assembly can control the rotation of the cylindrical magnet 204 in the cavity of the magnetic conductor 205: when the cup cover 2 does not have magnetism to the tea bin 3, as shown, Figure 5 As shown, the two magnetic poles of the cylindrical magnet 204 correspond to the two different non-magnetic conductive blocks 206 through the rotating assembly, at this time, the magnetic force lines emitted by the N pole almost all pass through the magnetic conductor 205 and reach the S pole, forming a magnetic closed loop, and externally showing no magnetism (the magnetism is very small and can be ignored), at this time, the cylindrical magnet 204 does not have a magnetic attraction effect on the tea bin 3; when the cup cover 2 needs to have magnetism to the tea bin 3, the cylindrical magnet 204 is rotated by 90 degrees through the rotating assembly, as shown, Figure 6 As shown, the edge ends of the two magnetic poles of the cylindrical magnet 204 jointly correspond to the two non-magnetic conductive blocks 206, since the non-magnetic conductive blocks 206 do not have magnetic conductivity, therefore the magnetic lines emitted from the N pole cannot effectively reach the S pole, forming a magnetic open loop and externally showing magnetism, at this time, when the tea bin 3 approaches the cup cover 2, the magnetic force lines can reach the S pole through the tea bin 3, forming a closed loop, so the tea bin 3 is adsorbed on the cup cover 2, as shown, Figure 7
[0052] In actual operation, only the cylindrical magnet 204 needs to be rotated by 90 degrees through the rotating assembly to achieve the two different states, and the operation is simple.
[0053] Embodiment 3
[0054] Based on the structure of embodiment 2, as shown, Figure 8 The rotating assembly comprises a rotating cover 202, the rotating control member 207 is connected at the bottom center of the rotating cover 202, the center of the cylindrical magnet 204 is provided with a groove 217 matched with the rotating control member 207, the rotating control member 207 is arranged in the groove 217 through the fixing assembly, and the rotating cover 202 is fixed on the upper end of the cup cover body 201 through the fixing assembly.
[0055] Example 4
[0056] This embodiment is based on the structure of embodiment 3, such as Figure 2 As shown, the fixing component includes a fixing ring 203, which is fixed to the upper end of the cup lid body 201 by several fixing bolts 214. A circular central through hole 210 is provided at the center of the fixing ring 203. The diameter of the central through hole 210 is smaller than the length of the groove 217. The rotation control component 207 passes through the central through hole 210 and is disposed in the groove 217. Two second limiting blocks 209 are symmetrically provided on the end face of the fixing ring 203 near the rotating cover 202. A first limiting block 208 that cooperates with the second limiting blocks 209 is provided on the bottom end face of the rotating cover 202. The first limiting block 208 and the second limiting block 209 are arranged intersectingly. The rotation control component 207 is disposed at the center of the first limiting block 208.
[0057] Example 5
[0058] This embodiment is based on the structure of embodiment 4, such as Figure 9 As shown, the rotation control component 207 includes a plug-in component 215 and two connectors 216. The two connectors 216 are respectively disposed on both sides of the plug-in component 215. The two connectors 216 are made of flexible material. The lower ends of the two connectors 216 are respectively provided with snap-fit blocks. Both snap-fit blocks are disposed in the groove 217 through the central through hole 210. The distance between the outer sides of the two connectors 216 is equal to the diameter of the central through hole 210.
[0059] Example 6
[0060] This embodiment is based on the structure of embodiment 5, such as... Figure 10 As shown, the positioning assembly includes a spring 213 vertically fixed inside the cup lid body 201. The upper end of the spring 213 movably passes through the cup lid body 201 and is positioned inside the fixing ring 203. A positioning bead 211 is connected to the upper end of the spring 213. A gasket 212 is fitted over the positioning bead 211. Both the positioning bead 211 and the gasket 212 are movably positioned inside the fixing ring 203. It is worth noting that the positioning bead 211 and the gasket 212 can only move up and down, not left and right. A circular hole is provided on the fixing ring 203 to cooperate with the positioning bead 211. The diameter of the circular hole is smaller than the diameter of the positioning bead 211 and the gasket 212. Two positioning holes are respectively provided on the bottom end face of the rotating lid 202 to cooperate with the positioning bead 211.
[0061] Two positioning holes correspond to the two states of the cylindrical magnet 204 with magnetism and non-magnetism respectively. When the rotating cover 202 is rotated, the positioning hole at the position of the cylindrical magnet 204 with magnetism coincides with the positioning bead 211. Under the action of the restoring force of the spring 213, the positioning bead 211 is clamped in the positioning hole. When rotation is needed, the rotating cover 202 is rotated, the external force of rotation pushes the positioning bead 211 to move downward, so that the positioning bead 211 is flush with the upper end surface of the fixed ring 203, thereby realizing the rotation of the rotating cover 202. When the rotating cover 202 is rotated to the positioning hole at the position of the cylindrical magnet 204 without magnetism, the positioning bead 211 is clamped in the second positioning hole to realize limiting. It is worth noting here that since the positioning bead 211 is used to position the rotating cover 202 without external force, the elasticity of the spring does not need to be too large. Therefore, when the rotating cover 202 is rotated by external force, only the rotating cover 202 needs to be twisted. The external force of twisting is sufficient to press the positioning bead 211 downward to make the rotating cover 202 rotate normally.
Claims
1. A rotating magnetic tea-water separation cup, characterized in that, It includes cup body (1) and cup cover (2), the tea store (3) is equipped in cup body (1) inside; The cup cover (2) includes cup cover body (201), which is threadedly connected to the upper end of the cup body (1), and a magnetic attraction assembly is arranged in the cup cover body (201), the magnetic attraction assembly is controlled by a rotating assembly, the rotating assembly is fixed on the upper end of the cup cover body (201) by a fixing assembly, the rotating assembly and the fixing assembly are limited by a positioning assembly, the cup cover (2) and the tea store (3) are magnetically connected by the magnetic attraction assembly; The magnetic attraction assembly includes a magnetic conductor (205) fixedly arranged at the center of the inside of the cup cover body (201), a cavity is arranged at the center of the magnetic conductor (205), a rotatable cylindrical magnet (204) is arranged in the cavity, the magnetic conductor (205) includes two magnetic blocks and two non-magnetic blocks (206), the two magnetic blocks and the two non-magnetic blocks (206) are sequentially and spacedly connected to form an integral whole, the two non-magnetic blocks (206) are symmetrically arranged, the two magnetic blocks are symmetrically arranged, and the cylindrical magnet (204) is connected with the rotating assembly; The rotating assembly includes a rotating cover (202), a rotating control member (207) is connected to the bottom center of the rotating cover (202), a groove (217) matched with the rotating control member (207) is formed at the center of the cylindrical magnet (204), the rotating control member (207) penetrates through the fixing assembly and is arranged in the groove (217), and the rotating cover (202) is fixed on the upper end of the cup cover body (201) by the fixing assembly; The fixing assembly includes a fixing ring (203), the fixing ring (203) is fixed on the upper end of the cup cover body (201) by a plurality of fixing bolts (214), a center through hole (210) is formed at the center of the fixing ring (203), the diameter of the center through hole (210) is smaller than the length of the groove (217), the rotating control member (207) penetrates through the center through hole (210) and is arranged in the groove (217), two second limiting blocks (209) are symmetrically arranged on the end face of the fixing ring (203) close to the rotating cover (202), a first limiting block (208) matched with the second limiting block (209) is arranged on the bottom end face of the rotating cover (202), the first limiting block (208) and the second limiting block (209) are cross arranged, and the rotating control member (207) is arranged at the center of the first limiting block (208); The rotating control member (207) includes a plug-in piece (215) and two connecting pieces (216), the two connecting pieces (216) are arranged on the two sides of the plug-in piece (215), the two connecting pieces (216) are made of flexible material, a clamping block is arranged at the lower end of each connecting piece (216), the clamping blocks penetrate through the center through hole (210) and are arranged in the groove (217), and the distance between the outer sides of the two connecting pieces (216) is equal to the diameter of the center through hole (210).
2. The rotating magnetic tea-water separation cup according to claim 1, characterized in that, The magnetic conductor (205) is located at the inner center of the upper end of the cup cover body (201), the upper end of the cup cover body (201) is flush with the upper end of the magnetic conductor (205), and the distance between the bottom of the magnetic conductor (205) and the bottom of the cup cover body (201) is 0-5mm.
3. The magnetic rotating tea separating cup according to claim 2, wherein, The cylindrical magnet (204) is a two-pole magnet.
4. The magnetic rotating tea separating cup according to claim 3, wherein, The positioning assembly comprises a spring (213) vertically and fixedly arranged in the cup cover body (201), the upper end of the spring (213) is movably penetrated through the cup cover body (201) and arranged in the fixed ring (203), the upper end of the spring (213) is connected with a positioning bead (211), the positioning bead (211) is sleeved with a gasket (212), and the positioning bead (211) and the gasket (212) are movably arranged in the fixed ring (203); a circular hole matched with the positioning bead (211) is formed in the fixed ring (203), and the diameter of the circular hole is smaller than the diameter of the positioning bead (211) and the gasket (212). Two positioning holes matched with the positioning bead (211) are respectively formed in the bottom end face of the rotary cover (202).
5. The magnetic rotating tea separating cup according to claim 4, wherein, The cup cover body (201), the rotary cover (202) and the fixed ring (203) have the same outer diameter.