Intelligent brewing tea art machine

The intelligent tea brewing machine solves the problems of unsuitable tea temperature, tea stains, and broken tea residue in traditional tea brewing methods through the coordinated action of the control panel and various components. It achieves suitable tea temperature and tea stain removal, simplifies the operation steps, and improves tea quality and safety.

CN115607000BActive Publication Date: 2026-05-29WEIHAI RUIMU PRECISON TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
WEIHAI RUIMU PRECISON TECH CO LTD
Filing Date
2022-09-08
Publication Date
2026-05-29

Smart Images

  • Figure CN115607000B_ABST
    Figure CN115607000B_ABST
Patent Text Reader

Abstract

The present application relates to the technical field of tea making machine, and relates to an intelligent tea making machine. The intelligent tea making machine comprises a tea table, a control panel is arranged on the top of the tea table, an installation seat is connected to the upper portion of the tea table, a water distribution port is arranged on the installation seat, a liquid outlet pipe is rotatably connected to the lower side of the installation seat, a tea scale cleaning assembly for cleaning the inner wall of the liquid outlet pipe is arranged between the tea table and the liquid outlet pipe, and a cleaning piece for removing tea scale and a filter piece for solid-liquid separation are sequentially arranged on the tea scale cleaning assembly from bottom to top. The present application realizes the function of timing tea pouring through the control panel, changes the traditional pouring mode of tea water, presses the sealing piece to transfer the tea water in the tea making cup, prevents the tea water from being directly poured and spilled, separates the solid and liquid of the tea water through the filter piece, prevents the outlet flow rate of the tea water from being too fast, and guides the downward flowing tea crumbs to avoid the accumulation and blockage of the tea crumbs.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of tea brewing machine technology, and more specifically, to an intelligent tea brewing machine. Background Technology

[0002] The beneficial components in tea include tea polyphenols, tea pigments, and tea polysaccharides. Tea polyphenols are soluble components and are the main substances with health benefits. Tea pigments have the effects of delaying aging and beautifying the skin. Tea polysaccharides have the effects of anti-radiation, increasing the number of white blood cells, and improving immunity. As a result, people are drinking more and more tea.

[0003] Traditional tea brewing methods are entirely based on the drinker's habits and behaviors, resulting in an uncontrollable brewing process. External factors can easily cause the tea to become too cold, too strong, or too hot to drink. Tea brewing machines, on the other hand, control parameters such as brewing time and temperature through data, freely adjusting the strength of the tea to maximize the utilization value of the tea leaves and save water and electricity as much as possible. However, after prolonged use, a large amount of tea residue will remain in the tea discharge pipe of the tea brewing machine. During the tea discharge process, some broken tea leaves will flow into the teacup, affecting the taste of the tea if consumed directly. Furthermore, after the tea leaves are heated and opened, some tea water will remain in the tea leaves, resulting in incomplete tea water poured into the teacup. Also, when the tea is discharged, most of the tea water flows directly into the teacup, causing the tea in the cup to be too hot to drink directly. Summary of the Invention

[0004] The main objective of this invention is to provide an intelligent tea brewing machine to solve the problems in the prior art.

[0005] This invention is achieved through the following technical implementation: an intelligent tea brewing machine, comprising a tea table, a control panel on the top of the tea table, a mounting base on the upper part of the tea table, a mounting frame fixedly connected to the top of the mounting base, a water inlet on the mounting base, a liquid outlet pipe rotatably mounted on the mounting base below the water inlet, a tea stain cleaning component for cleaning the inner wall of the liquid outlet pipe installed between the tea table and the liquid outlet pipe, a teacup transfer component for clamping and limiting the teacup, symmetrically arranged clamping elements for positioning on the teacup transfer component, a teacup placed inside the clamping element, and symmetrically fixed elements for limiting the teacup to the clamping element. The tea cup has a handle fixedly attached to it, and a lid is rotatably connected to the mouth of the tea cup via a rotating rod. A torsion spring is fitted on the rotating rod of the lid and is fixedly connected to the tea cup and the lid. A sealing element is slidably provided in the middle of the lid. The upper part of the tea cup has symmetrically arranged slots. The lid has symmetrically slidably connected locking elements that slidably engage with the slots of the tea cup. An elastic element is fixedly connected between the locking elements and the lid. The tea stain cleaning component and the tea cup transfer component are both electrically connected to the control panel. The filter separates the tea leaves and tea water into solid and liquid components. The cleaning component cleans the tea by contacting and rotating against the inner wall of the outlet pipe.

[0006] Furthermore, the tea stain cleaning component includes a fixed housing, which is fixedly installed on the tea table. A spline rod is slidably connected to the fixed housing. A cleaning component and a filter component are arranged sequentially from bottom to top on the spline rod. A first driving component is installed inside the fixed housing. The telescopic end of the first driving component is fixedly connected to the spline rod. A second driving component is installed on the tea table below the fixed housing. The output shaft of the second driving component is driven by a bevel gear to the spline rod. A fixed gear is connected to the upper end of the liquid outlet pipe. A power component is installed on one side of the mounting base. A spur gear that drives the fixed gear is installed at the output end of the power component. The first driving component, the second driving component, and the power component are all electrically connected to the control panel.

[0007] Furthermore, the teacup transfer assembly includes a third driving component, which is installed within a mounting frame. The mounting frame has a sliding groove. A fourth driving component is symmetrically arranged on the mounting base within the mounting frame. A first rack is slidably connected to the mounting base near the mounting frame. An elastic element connects the first rack to the mounting base. A mounting shell is provided within the mounting frame, and a T-slot is provided on the mounting shell. The telescopic ends of both the third and fourth driving components are connected to sliding blocks that slidably engage with the T-slots of the mounting shell. A rotating shell is rotatably connected to the front of the mounting shell, and the rotating shell is sequentially fixed to the mounting frame from front to back. The rotating housing has a sliding groove for limiting the circular disc and a transmission gear that meshes with the first rack. The rotating housing is provided with a sliding groove, and the second rack is slidably arranged in the sliding groove of the rotating housing. The clamping member is rotatably connected to the rotating housing via a shaft. One end of the two clamping members is connected to a snap fastener for fastening and fixing. The rotating rod of the snap fastener is provided with a torsion spring that is fixedly connected to the snap fastener and the clamping member. The upper part of the shaft of the clamping member is fixedly connected to the first gear that meshes with the second rack. The lower part of the shaft of the clamping member is provided with a torsion spring. The two ends of the torsion spring are fixedly connected to the clamping member and the rotating housing, respectively. The third and fourth driving members are both electrically connected to the control panel.

[0008] Furthermore, the second rack frame is symmetrically connected with limiting parts for positioning the clamping parts, and the clamping parts are provided with limiting grooves that contact and cooperate with the limiting parts on the side near the limiting parts.

[0009] Furthermore, it also includes a pressing plate, which is slidably connected to the upper part of the handle. The pressing plate has a Z-shaped structure adapted to the handle. An elastic element is connected between the pressing plate and the handle. A squeezing element for releasing the fastener is fixed on the pressing plate. The squeezing element is slidably connected to the handle.

[0010] Furthermore, it also includes a partition fixed inside the tea cup. A sliding rod is slidably mounted in the middle of the partition, and a fixed plate made of magnetic material is connected to the upper end of the sliding rod. A toothed groove is provided at the lower part of the sliding rod. A second gear meshing with the toothed groove of the sliding rod is rotatably connected to the bottom of the partition. A guide is provided at the bottom of the tea cup, and a rack plate meshing with the second gear is slidably mounted on the guide. The rack plate and the sliding rod are intersected. An elastic element is fixed between the rack plate and the guide. A through hole is provided on the side of the tea cup near the handle, and a guide wheel is provided in the through hole. A pull rope for moving the sliding rod is installed on the rack plate. The pull rope passes around the guide wheel and is fixed to the rotating rod of the tea cup lid. Positioning elements with Z-shaped structures are symmetrically fixed on the tea cup lid. A tea holding component for separating tea leaves from water is provided on the fixed plate.

[0011] Furthermore, the tea-holding component includes a mesh frame set inside the teacup. The bottom of the mesh frame has an annular ring that fits the fixing plate, and the bottom of the mesh frame has a conical structure for tea to flow out. The mesh frame is symmetrically equipped with rails, and a mesh cover is slidably installed between adjacent rails. One of the two rails has a U-shaped structure at its upper end for the mesh cover to swing open.

[0012] Furthermore, it also includes two pressing parts, both of which are rotatably connected to the teacup lid. The pressing parts are provided with arc-shaped grooves that slide with the locking parts, and elastic elements are fixedly connected between adjacent pressing parts.

[0013] Furthermore, it also includes symmetrically arranged agitators, which are fixed to the filter element and are adapted to the conical surface of the filter element.

[0014] Furthermore, it also includes a fifth drive unit, which is set on the tea table. The telescopic end of the fifth drive unit is equipped with a spraying component that slides with the mounting base. Both the fifth drive unit and the spraying component are electrically connected to the control panel.

[0015] Compared with the prior art, the present invention has the following advantages:

[0016] This invention enables timed tea pouring via a control panel. By changing the traditional way of pouring tea, pressing the sealing element transfers the tea from the teacup, preventing direct spillage. A filter separates the tea into solid and liquid components, preventing excessively fast flow. The conical structure of the filter buffers the impact of the downward flow and guides loose tea leaves, preventing them from clogging the filter's pores. The tea flows slowly into the teacup through the outlet pipe. The centrifugal force generated by the rotating cleaning element ensures it adheres tightly to the inner wall of the outlet pipe. The friction between the rotating cleaning element and the outlet pipe cleans the inner wall. Simultaneously, water is injected into the outlet pipe to further clean its inner wall. The Z-shaped structure of the outlet pipe prolongs the time the tea spends within it, extending the time for heat dissipation and slightly lowering the temperature of the tea entering the cup, preventing burns and ensuring a more suitable drinking temperature.

[0017] By using a mesh frame and mesh cover, the tea leaves are confined within the mesh frame, preventing a large amount of broken tea leaves from remaining in the liquid outlet tube and reducing the formation of tea stains in the liquid outlet tube. The pressing plate moves the squeezing part downwards, squeezing the two locking parts away from each other. The clamping part swings back to its original position under the action of the torsion spring, releasing the fixation on the tea cup. The two pressing parts move closer together, causing the locking parts on them to move out of the locking slots of the tea cup. The tea cup lid opens the tea cup under the action of the torsion spring. The above operation simplifies the steps.

[0018] The rotating and up-and-down movement of the agitator throws the broken tea leaves off the filter. The rotation of the agitator also quickly throws the accumulated broken tea leaves into the horizontal tube of the liquid outlet pipe. At the same time, the water injection and water flow work together to flush out all the broken tea leaves, preventing some of them from sticking to the inner wall of the liquid outlet pipe. Attached Figure Description

[0019] Figure 1 This is a perspective view of the present invention.

[0020] Figure 2 This is a sectional perspective view of the tea table of the present invention.

[0021] Figure 3 This is a perspective view of the mounting base of the present invention.

[0022] Figure 4 This is a perspective view of the liquid outlet tube of the present invention.

[0023] Figure 5 This is a cross-sectional perspective view of the filter element of the present invention.

[0024] Figure 6 This is a perspective view of the mounting shell of the present invention.

[0025] Figure 7 This is a cross-sectional perspective view of the rotating shell of the present invention.

[0026] Figure 8 This is a perspective view of the clamping component of the present invention.

[0027] Figure 9 This is a perspective view of the tea cup of the present invention.

[0028] Figure 10 This is a cross-sectional perspective view of the tea cup of the present invention.

[0029] Figure 11 This is a cross-sectional perspective view of the wire frame of the present invention.

[0030] Figure 12 This is a perspective view of the pressing component of the present invention.

[0031] In the attached diagrams: 1. Tea table; 2. Mounting base; 3. Mounting frame; 4. Water outlet; 5. Liquid outlet pipe; 6. Fixed shell; 7. Spline rod; 8. First driving component; 9. Second driving component; 10. Filter component; 11. Cleaning component; 12. Fixed gear; 13. Power component; 14. Spur gear; 15. Third driving component; 16. Fourth driving component; 17. Sliding block; 18. First rack and pinion frame; 19. Mounting shell; 191. Rotating shell; 20. Transmission gear; 21. Circular disc; 22. Second rack and pinion frame; 23. Limiting part; 24. Clamping component; 25. Limiting groove; 2 6. Buckle, 27. First gear, 28. Tea cup, 29. Limiting component, 30. Handle, 31. Tea cup lid, 32. Sealing component, 33. Locking component, 34. Pressing plate, 35. Extrusion component, 36. Partition, 37. Sliding rod, 38. Fixing plate, 39. Second gear, 40. Guide component, 41. Rack plate, 42. Pull rope, 43. Positioning component, 44. Mesh frame, 45. Track frame, 46. Mesh cover, 47. Pressing component, 48. Arc groove, 49. Swinging component, 50. Fifth driving component, 51. Spraying component, 52. Heater, 53. Water inlet. Detailed Implementation

[0032] The present invention will now be described in detail with reference to the accompanying drawings.

[0033] Example 1

[0034] Intelligent tea brewing machine, such as Figures 1-10As shown, the device includes a tea table 1, a control panel on the right side of the upper surface of the tea table 1, a mounting base 2 connected to the upper part of the tea table 1, a heater 52 mounted on the left side of the tea table 1, the heater 52 being located below the mounting base 2, a mounting frame 3 fixedly connected to the rear part of the upper surface of the mounting base 2, the rear wall of the mounting frame 3 being fixedly connected to the tea table 1, and water inlets 53 located on both the tea table 1 above the heater 52 and on the left side of the mounting frame 3. A water pump is connected between the water inlet 53 and a water bucket, the water pump being used to draw water from the water bucket and circulate it through the container. The water is discharged through the inlet 53. A water outlet 4 is located on the right side of the mounting base 2. A liquid outlet pipe 5 is rotatably connected to the mounting base 2 below the water outlet 4. A tea stain cleaning assembly is installed between the tea table 1 and the liquid outlet pipe 5. The tea stain cleaning assembly is used to clean the inner wall of the liquid outlet pipe 5. Two cleaning elements 11 for removing tea stains are slidably mounted on the tea stain cleaning assembly. A filter element 10 for solid-liquid separation is fixed to the cleaning assembly. The filter element 10 is located above the cleaning elements 11 and is conical. The mounting frame 3 is equipped with... A teacup transfer assembly is provided for clamping and limiting. The teacup transfer assembly has symmetrically arranged clamping members 24 for positioning. A teacup 28 is placed inside the clamping member 24. Two sets of limiting members 29 for limiting and cooperating with the clamping member 24 are fixed to the outer ring surface of the teacup 28. Each set of limiting members 29 consists of two parts. A handle 30 is fixed to the front wall of the teacup 28 by bolts. A teacup lid 31 is rotatably connected to the upper part of the teacup 28 via a rotating rod. A torsion spring is sleeved on the rotating rod of the teacup lid 31, with its two ends... The tea cup 28 and the tea cup lid 31 are not fixedly connected. The tea cup lid 31 has a slidable sealing element 32 in the middle. A spring is fixed between the sealing element 32 and the tea cup lid 31. The upper part of the tea cup 28 has symmetrical slots. The left and right parts of the tea cup lid 31 are respectively slidably connected to the slots of the tea cup 28 and the locking element 33 is fixed between the locking element 33 and the tea cup lid 31. The heater 52, water inlet 53, water pump, tea stain cleaning component and tea cup transfer component are all electrically connected to the control panel.

[0035] like Figures 3-5As shown, the tea stain cleaning assembly includes a fixed housing 6, which is fixedly connected to the right side of the tea table 1. A spline rod 7 is slidably connected to the middle of the fixed housing 6. Two cleaning components 11 are slidably connected to the upper part of the spline rod 7, and a spring is fixed between the cleaning components 11 and the spline rod 7. A filter component 10 is fixedly connected to the upper end of the spline rod 7. A first driving component 8, which is an electric push rod, is bolted to the top inside the fixed housing 6. The lower end of the telescopic rod of the first driving component 8 is fixed to the lower part of the spline rod 7 through a connecting plate. Next, a second drive component 9 is embedded in the tea table 1 on the lower side of the fixed shell 6. The second drive component 9 is a servo motor. The output shaft of the second drive component 9 is driven by a bevel gear to the spline rod 7. A fixed gear 12 is connected to the upper part of the liquid outlet pipe 5. A power component 13 is installed on the mounting base 2 on the left side of the liquid outlet pipe 5 by bolts. The power component 13 is a stepper motor. A spur gear 14 that drives the fixed gear 12 is installed at the output end of the power component 13. The first drive component 8, the second drive component 9 and the power component 13 are all electrically connected to the control panel.

[0036] like Figure 3 and Figures 6-10As shown, the teacup transfer assembly includes a third drive component 15, which is installed on the right wall of the mounting frame 3. A sliding groove is provided at the lower part of the mounting frame 3. Fourth drive components 16 are respectively embedded in the left and right parts of the mounting base 2, located within the mounting frame 3. Both the third drive component 15 and the fourth drive component 16 are electro-hydraulic push rods, electrically connected to the control panel. A first rack frame 18 is slidably connected to the top of the mounting base 2, located in front of the fourth drive component 16. A spring connects the first rack frame 18 to the mounting base 2. A mounting shell 19 is provided inside the mounting frame 3. T-shaped grooves are provided on the upper, lower, and right sides of the mounting shell 19. Sliding blocks 17 are connected to the telescopic ends of the third drive component 15 and the two fourth drive components 16. The three sliding blocks 17 slide in cooperation with the three T-shaped grooves of the mounting shell 19. A rotating shell 191 is rotatably connected to the front of the mounting shell 19. A circular disc 21 and a transmission gear 20 are fixedly connected to the housing 191 from front to back. The circular disc 21 is limited to the sliding groove of the mounting frame 3. The transmission gear 20 meshes with the first rack frame 18. The rotating housing 191 is provided with a sliding groove, and a second rack frame 22 is slidably arranged in the sliding groove of the rotating housing 191. The second rack frame 22 is symmetrically connected with limiting parts 23 for positioning the clamping member 24. The rear part of the clamping member 24 is provided with a limiting groove 25 that contacts and engages with the limiting parts 23. The clamping member 24 is rotatably connected to the rotating housing 191 via a shaft. A snap fastener 26 for fastening and fixing is rotatably connected to the clamping member 24 via a rotating rod. A torsion spring is sleeved on the outside of the rotating rod of the snap fastener 26. The two ends of the torsion spring are fixedly connected to the snap fastener 26 and the clamping member 24 respectively. A first gear 27 that meshes with the second rack frame 22 is fixedly connected to the upper part of the shaft of the clamping member 24. A torsion spring is sleeved on the lower part of the shaft of the clamping member 24. The two ends of the torsion spring are fixedly connected to the clamping member 24 and the rotating housing 191 respectively.

[0037] When using this invention, the user places the wastewater collection bucket directly below the outlet of the liquid outlet pipe 5, places the kettle on the heater 52, and adds an appropriate amount of water to the kettle through the water inlet 53 on the lower side via the control panel. The user then activates the heater 52 via the control panel to heat the water in the kettle. The user places an appropriate amount of tea leaves into the tea infuser 28, pours the hot water from the kettle into the tea infuser 28, and closes the tea infuser lid 31 onto the tea infuser 28. The torsion spring of the tea infuser lid 31 is tightened, and the lid is secured in the slot of the tea infuser 28 by the locking member 33. With the teacup lid 31 fixed, the user moves the teacup 28 toward the second rack and pinion 22. After the teacup 28 contacts the second rack and pinion 22, it continues to move, causing the teacup 28 to push the second rack and pinion 22 backward. The backward movement of the second rack and pinion 22 is transmitted through the first gear 27, causing the two clamping members 24 to come together. The two clamping members 24 coming together drive the buckle members 26 on them to engage. The two clamping members 24 are located in the adjacent upper and lower limiting members 29 respectively. The limiting members 29 and the clamping members 24 cooperate to fix the teacup 28 and prevent the teacup 28 from sliding during the movement.

[0038] After steeping the tea leaves in hot water for a period of time, the user activates the fourth drive unit 16 on the left side via the control panel. The fourth drive unit 16, through its sliding block 17, pushes the mounting shell 19 upwards, causing the sliding block 17 of the third drive unit 15 to slide and limit its engagement with the mounting shell 19. The first rack and pinion 18, under the action of its spring, remains engaged with the transmission gear 20. The user then activates the third drive unit 15 via the control panel, which, through its sliding block 17, moves the mounting shell 19 to the right. During this rightward movement, the mounting shell 19 disengages from the limiting engagement of the left sliding block 17 and moves to the right. The limiting engagement of the side sliding block 17, through the engagement of the first rack frame 18, causes the transmission gear 20 to rotate clockwise, the circular disk 21 to slide in the sliding groove of the mounting frame 3, and the sliding groove of the mounting frame 3 guides the movement of the circular disk 21. The clockwise rotation of the transmission gear 20 drives the parts on the rotating shell 191 to rotate, causing the tea cup 28 to rotate clockwise. When the mounting shell 19 moves to the right and engages with the sliding block 17 on the right side, the sliding groove of the mounting frame 3 supports the left side of the mounting shell 19. When the mounting shell 19 moves to the right and disengages from the sliding groove of the mounting frame 3, the sliding block 17 on the right side provides support for the mounting shell 19.

[0039] When the tea cup 28 moves directly above the water inlet 4, it completes a 180° clockwise rotation. The seal 32 is located on the underside of the tea cup 28. The user activates the right-side fourth drive unit 16 via the control panel, which, through the sliding block 17, moves the mounting shell 19 downwards. This downward movement of the mounting shell 19, via its components, moves the tea cup 28 downwards. The water inlet 4 pushes the seal 32 to open the outlet of the tea cup 28. The tea-washing water and some broken tea leaves in the tea cup 28 flow into the outlet pipe 5. The filter 10 filters the tea-washing water and broken tea leaves in the outlet pipe 5, leaving broken tea leaves in the upper part of the outlet pipe 5. The tea-washing water flows into the wastewater collection bucket through the outlet pipe 5. The user, via the control panel, activates the right-side fourth drive unit 16, which, through the sliding block 17, moves the mounting shell 19 downwards. The upper movement resets the sealing element 32, which, under the action of its spring, closes the outlet of the tea cup 28. The user then uses the control panel to move the third drive element 15 to the left via the sliding block 17, causing the mounting shell 19 to move to the left and reset. The tea cup 28 then rotates counterclockwise to reset, positioning the sealing element 32 on the upper side of the tea cup 28. The user then uses the control panel to move the fourth drive element 16 on the left side to the sliding block 17, causing the mounting shell 19 to move downwards and reset, placing the tea cup 28 on the upper side of the mounting base 2. The user then moves the two locking elements 33 together out of the slots of the tea cup 28. The tea cup lid 31, under the action of its torsion spring, opens the tea cup 28. The user then pours an appropriate amount of hot water into the tea cup 28 to brew the tea. Finally, the user closes the tea cup 28 with the tea cup lid 31.

[0040] During the tea brewing time, the user activates the first drive unit 8 via the control panel. The operation of the first drive unit 8 causes the spline rod 7 to move the filter element 10 and the cleaning element 11 up and down. The filter element 10 moves downward, causing the broken tea leaves on it to move downward to the liquid outlet pipe 5. At this time, the user injects water into the water inlet 4 to flush out the broken tea leaves in the water inlet 4 and the liquid outlet pipe 5. The user then activates the first drive unit 8 via the control panel to reset the filter element 10 by moving the spline rod 7.

[0041] After the tea is brewed, the user activates the power unit 13 via the control panel. This, through the spur gear 14 and fixed gear 12, causes the outlet pipe 5 to rotate 180° and then close. At this point, the power unit 13 self-locks, fixing the position of the outlet pipe 5 after rotation, and the outlet of the outlet pipe 5 is directly above the teacup. The user repeats this operation, causing the teacup 28 to move downwards again. The water distributor 4 pushes the sealing element 32 to open the outlet of the teacup 28, allowing the tea in the teacup 28 to flow into the water distributor 4. The filter element 10 filters the tea in the water distributor 4, leaving any loose tea leaves inside. The tea flows into the teacup through the outlet pipe 5. Because the outlet pipe 5 has a Z-shaped structure, it prolongs the time the tea flows in the outlet pipe 5, increasing the time for heat dissipation in the tea and lowering the temperature of the tea flowing into the teacup. This makes it easier for the user to remove the teacup and drink the tea. The user repeats the above operation to reset the teacup 28 and place it on top of the mounting base 2. When it is necessary to brew tea again, the user repeats the above operation. When it is not necessary to brew tea, the user opens the two latches 26 to release the restriction on the teacup 28, and the user removes the teacup 28 and cleans the tea leaves inside.

[0042] After the teacup is removed, the user rotates the outlet pipe 5 180° via the control panel, positioning the outlet of the outlet pipe 5 directly above the wastewater collection bucket. The user then pours water into the dividing port 4, which flows downwards through the outlet pipe 5 into the wastewater collection bucket. The user then activates the first drive unit 8 and the second drive unit 9 via the control panel. The second drive unit 9 provides power to rotate the spline rod 7 via a bevel gear. The rotation of the spline rod 7 drives the filter element 10 and the cleaning element 11 to rotate. The rotation of the cleaning element 11 generates centrifugal force, causing it to adhere tightly to the inner wall of the outlet pipe 5. The friction generated by the cleaning element 11 adhering to and rotating against the inner wall of the outlet pipe 5 cleans the tea stains on the inner wall of the outlet pipe 5. The first drive unit 8 moves the spline rod 7 up and down, and the up-and-down movement and rotation of the spline rod 7, along with the cleaning element 11, thoroughly cleans the inner wall of the outlet pipe 5 where broken tea is stored.

[0043] When it is necessary to pour tea at a set time, the user can set it through the control panel, and the control panel will pour tea at the set time according to the instructions, without the need for the user to operate it.

[0044] Example 2

[0045] Based on Example 1, such as Figure 10 As shown, it also includes a pressing plate 34, which is slidably connected to the upper part of the handle 30. The pressing plate 34 has a Z-shaped structure that is adapted to the structure of the handle 30. A spring is connected between the pressing plate 34 and the handle 30. A pressing member 35 for releasing the buckle 26 is fixedly connected to the rear part of the pressing plate 34. The pressing member 35 is slidably connected to the handle 30.

[0046] like Figure 10 and Figure 11 As shown, it also includes a partition 36, which is fixedly connected inside the tea cup 28. A sliding rod 37 is slidably provided in the middle of the partition 36. A fixed plate 38, made of magnetic material, is fixedly connected to the upper end of the sliding rod 37. A toothed groove is provided in the lower part of the sliding rod 37. A second gear 39, which meshes with the toothed groove of the sliding rod 37, is rotatably connected to the right part of the lower surface of the partition 36. A guide member 40 is bolted to the tea cup 28 below the partition 36. A rack plate 41, which meshes with the second gear 39, is slidably provided on the left part of the guide member 40. The rack plate 41 and the sliding rod 37 are intersected. A spring is fixedly connected between the rack plate 41 and the guide member 40. A through hole is provided in the front part of the tea cup 28. A guide wheel is provided in the lower part of the through hole of 28. A pull rope 42 for moving the sliding rod 37 is installed on the front wall of the rack plate 41. The pull rope 42 passes around the guide wheel and is fixed to the rotating rod of the teacup lid 31. The left and right parts of the teacup lid 31 are respectively fixed to the positioning parts 43 by bolts. The positioning parts 43 have a Z-shaped structure. A mesh frame 44 is set on the top of the fixed plate 38 by magnetic attraction. The bottom of the mesh frame 44 is provided with an annular ring that matches the fixed plate 38. The bottom of the mesh frame 44 has a conical structure for tea to flow out. A track frame 45 is symmetrically arranged on the mesh frame 44. A mesh cover 46 is slidably arranged between adjacent track frames 45. The upper part of the front track frame 45 has a U-shaped structure for the mesh cover 46 to swing open.

[0047] like Figure 12 As shown, it also includes two pressing parts 47, which are rotatably connected to the teacup lid 31. The inner sides of the two pressing parts 47 are provided with arc-shaped grooves 48 that slide with the locking part 33. A spring is fixed between the front parts of adjacent pressing parts 47.

[0048] like Figure 5 As shown, it also includes a symmetrical swinging member 49, which is fixed to the conical surface of the filter element 10 and is adapted to the conical surface of the filter element 10.

[0049] Before rinsing the tea leaves, the user opens the mesh cover 46 and places the tea leaves into the mesh frame 44. The user then closes the mesh cover 46 to cover the tea leaves in the mesh frame 44. The user places the mesh frame 44 on the fixing plate 38. Since the fixing plate 38 is made of magnetic material, the mesh frame 44 is attracted and fixed by the magnetic force of the fixing plate 38. When rinsing the tea, the user pours hot water from the kettle into the tea brewing cup 28 to rinse the tea leaves in the mesh frame 44. The user then swings the tea cup lid 31 backward to close the tea brewing cup 28. The positioning component 43 will press down on the mesh cover 46 to limit the tea leaves in the mesh frame 44. During the process of the teacup lid 31 rotating backward, the teacup lid 31 rotates backward and winds the pull rope 42 through the rotating rod. The winding of the pull rope 42 will pull the rack plate 41 forward. The forward movement of the rack plate 41 will cause the sliding rod 37 to move downward through the mesh groove of the second gear 39 and the sliding rod 37. The downward movement of the sliding rod 37 will cause the mesh frame 44 to move downward through the fixed plate 38, so that the water in the teacup 28 submerges the tea leaves in the mesh frame 44.

[0050] The user clamps the teacup 28 with the two clamping parts 24 and the limiting parts 29. The user repeats the above operation to drain the tea water from the teacup 28. Because the mesh frame 44 and the mesh cover 46 work together to intercept broken tea leaves, the amount of broken tea leaves flowing out is reduced, thus reducing the amount of tea stains in the liquid outlet pipe 5. The user repeats the above operation to place the teacup 28 on top of the mounting base 2. The user moves the two pressing parts 47 relative to each other. The relative movement of the two pressing parts 47 drives the relative movement of the two locking parts 33, causing the two locking parts 33 to move out of the locking slots of the teacup 28. The relative movement of the two pressing parts 47 simplifies the opening operation of the teacup lid 31. Under the action of the torsion spring on the teacup lid 31, the teacup 28 is opened. The user pours an appropriate amount of hot water into the teacup 28 again to brew the tea. The user then closes the teacup 28 with the teacup lid 31.

[0051] During the tea brewing time, the user repeats the above operation to flush out the broken tea leaves from the water inlet 4 and the liquid outlet 5. The user then repeats the above operation to empty all the tea from the teacup 28. After all the tea in the teacup 28 is emptied, the user removes the teacup and repeats the above operation to place the teacup 28 on top of the mounting base 2. When brewing is not required, the user repeats the above operation to cause the filter element 10 to rotate and move the agitator 49 up and down, dislodging the broken tea leaves. Simultaneously, the user adds water, and the rotation of the agitator 49 quickly flings the accumulated broken tea leaves into the horizontal tube of the liquid outlet 5, flushing out all the broken tea leaves through the water flow. To prevent broken tea leaves from adhering to the inner wall of the dispensing pipe 5, the user moves the pressing plate 34 to drive the squeezing member 35 downward. The downward movement of the squeezing member 35 causes the two locking members 26 to move away from each other, releasing the two locking members 26 from engaging. Under the action of the torsion springs on them, the two clamping members 24 move away from each other, releasing the fixation on the tea cup 28. The two clamping members 24 moving away from each other cause the second rack frame 22 to move forward through the first gear 27. The forward movement of the second rack frame 22 pushes the tea cup 28 forward, assisting the user in removing the tea cup 28. The user then cleans the tea leaves inside the tea cup 28. The downward movement of the squeezing member 35 simplifies the process of releasing the two clamping members 24.

[0052] Example 3

[0053] Based on Example 2, such as Figure 3 As shown, it also includes a fifth drive unit 50, which is set on the tea table 1. The fifth drive unit 50 is an electric push rod. The telescopic end of the fifth drive unit 50 is bolted to a spraying component 51 that slides with the mounting base 2. Both the fifth drive unit 50 and the spraying component 51 are electrically connected to the control panel.

[0054] When rinsing the outlet pipe 5, the fifth drive unit 50 is activated through the control panel to move the spraying unit 51 directly above the container. The user then uses the control panel to spray water from the spraying unit 51 to rinse the tea leaves and parts inside the outlet pipe 5. After the cleaning is completed, the user turns off the spraying unit 51 through the control panel and activates the fifth drive unit 50 to reset the spraying unit 51.

[0055] The present application has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of the present application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of the present application. Therefore, the content of this specification should not be construed as a limitation of the present application.

Claims

1. An intelligent tea brewing machine, characterized by: The system includes a tea table (1), a control panel on the top of the tea table (1), a mounting base (2) on the upper part of the tea table (1), a mounting frame (3) fixed to the top of the mounting base (2), a water outlet (4) on the mounting base (2), a liquid outlet pipe (5) rotatably mounted on the mounting base (2) below the water outlet (4), a tea stain cleaning component for cleaning the inner wall of the liquid outlet pipe (5) is installed between the tea table (1) and the liquid outlet pipe (5), a tea cup transfer component for clamping and limiting is provided on the mounting frame (3), clamping parts (24) for positioning are symmetrically provided on the tea cup transfer component, a tea brewing cup (28) is provided inside the clamping part (24), and limiting parts (29) for limiting and cooperating with the clamping part (24) are symmetrically fixed on the tea brewing cup (28). 28) A handle (30) is fixedly attached to the top. The mouth of the tea cup (28) is connected to the tea cup lid (31) by a rotating rod. The rotating rod of the tea cup lid (31) is fitted with a torsion spring that is fixedly attached to the tea cup (28) and the tea cup lid (31). A sealing element (32) is slidably provided in the middle of the tea cup lid (31). The upper part of the tea cup (28) is symmetrically provided with slots. The tea cup lid (31) is symmetrically slidably connected with a locking element (33) that slides with the slot of the tea cup (28). An elastic element is fixedly connected between the locking element (33) and the tea cup lid (31). The tea stain cleaning component and the tea cup transfer component are both electrically connected to the control panel. The filter element (10) performs solid-liquid separation of tea leaves and tea water. The tea stain cleaning component contacts the inner wall of the liquid outlet pipe (5) and rotates to generate friction for cleaning. The tea stain cleaning assembly includes a fixed housing (6), which is fixedly installed on the tea table (1). The fixed housing (6) is slidably connected to a spline rod (7). The spline rod (7) is provided with a cleaning component (11) and a filter component (10) from bottom to top. A first drive component (8) is installed inside the fixed housing (6). The telescopic end of the first drive component (8) is fixedly connected to the spline rod (7). A second drive component (9) is installed on the tea table (1) below the fixed housing (6). The output shaft of the second drive component (9) is driven by the spline rod (7) through a bevel gear. A fixed gear (12) is connected to the upper end of the liquid outlet pipe (5). A power component (13) is installed on one side of the mounting base (2). A spur gear (14) that drives the fixed gear (12) is installed at the output end of the power component (13). The first drive component (8), the second drive component (9), and the power component (13) are all electrically connected to the control panel.

2. The intelligent tea brewing machine as described in claim 1, characterized in that, The teacup transfer assembly includes a third drive component (15), which is installed in the mounting frame (3). The mounting frame (3) has a sliding groove. A fourth drive component (16) is symmetrically arranged in the mounting frame (3) on the mounting base (2). A first rack frame (18) is slidably connected to the side of the mounting base (2) near the mounting frame (3). An elastic element is connected between the first rack frame (18) and the mounting base (2). A mounting shell (19) is provided in the mounting frame (3). A T-shaped groove is provided on the mounting shell (19). The telescopic ends of the third drive component (15) and the fourth drive component (16) are connected to sliding blocks (17) that slide in cooperation with the T-shaped groove of the mounting shell (19). A rotating shell (191) is rotatably connected to the front of the mounting shell (19). The rotating shell (191) is fixed with the sliding groove of the mounting frame (3) from front to back. The rotating housing (191) is provided with a sliding groove and a second rack (22) is slidably provided in the sliding groove of the rotating housing (191). The clamping member (24) is rotatably connected to the rotating housing (191) through a shaft. One end of the two clamping members (24) is connected to a snap fastener (26) for fastening and fixing. The rotating rod of the snap fastener (26) is provided with a torsion spring that is fixedly connected to the snap fastener (26) and the clamping member (24). The upper part of the shaft of the clamping member (24) is fixedly connected to the first gear (27) that meshes with the second rack (22). The lower part of the shaft of the clamping member (24) is provided with a torsion spring. The two ends of the torsion spring are fixedly connected to the clamping member (24) and the rotating housing (191) respectively. The third driving member (15) and the fourth driving member (16) are both electrically connected to the control panel.

3. The intelligent tea brewing machine as described in claim 2, characterized in that, The second rack (22) is symmetrically connected with a limiting part (23) for positioning the clamping part (24), and a limiting groove (25) is provided on the side of the clamping part (24) near the limiting part (23) to contact and cooperate with it.

4. The intelligent tea brewing machine as described in claim 1, characterized in that, It also includes a pressing plate (34), which is slidably connected to the upper part of the handle (30). The pressing plate (34) is a Z-shaped structure adapted to the handle (30). An elastic element is connected between the pressing plate (34) and the handle (30). A squeezing element (35) for releasing the buckle (26) is fixed on the pressing plate (34). The squeezing element (35) is slidably connected to the handle (30).

5. The intelligent tea brewing machine as described in claim 4, characterized in that, It also includes a partition (36), which is fixed inside the tea cup (28). A sliding rod (37) is slidably provided in the middle of the partition (36). A fixed plate (38) is connected to the upper end of the sliding rod (37). The fixed plate (38) is made of magnetic material. A toothed groove is provided in the lower part of the sliding rod (37). A second gear (39) that meshes with the toothed groove of the sliding rod (37) is rotatably connected to the bottom of the partition (36). A guide (40) is provided at the bottom inside the tea cup (28). A rack plate (41) that meshes with the second gear (39) is slidably provided on the guide (40). 1) The sliding rod (37) is intersected with the rack plate (41) and the guide (40) are fixedly connected with an elastic element. A through hole is provided on the side of the tea cup (28) near the handle (30). A guide wheel is provided in the through hole of the tea cup (28). A pull rope (42) for moving the sliding rod (37) is installed on the rack plate (41). The pull rope (42) passes around the guide wheel and is fixedly connected to the rotating rod of the tea cup lid (31). A positioning element (43) is symmetrically fixed on the tea cup lid (31). The positioning element (43) has a Z-shaped structure. A tea holding component for separating tea leaves from water is provided on the fixed plate (38).

6. The intelligent tea brewing machine as described in claim 5, characterized in that, The tea-holding component includes a mesh frame (44), which is set inside the tea cup (28). The bottom of the mesh frame (44) is provided with an annular ring that is compatible with the fixed plate (38), and the bottom of the mesh frame (44) is a conical structure for tea to flow out. The mesh frame (44) is symmetrically provided with rail frames (45), and a mesh cover (46) is slidably provided between adjacent rail frames (45). The upper end of one of the two rail frames (45) is a U-shaped structure for the mesh cover (46) to swing open.

7. The intelligent tea brewing machine as described in claim 5, characterized in that, It also includes two pressing parts (47), both of which are rotatably connected to the teacup lid (31). The pressing parts (47) are provided with arc-shaped grooves (48) that slide with the locking parts (33), and elastic parts are fixedly connected between adjacent pressing parts (47).

8. The intelligent tea brewing machine as described in claim 1, characterized in that, It also includes symmetrically arranged swinging members (49), which are fixed to the filter element (10) and are adapted to the conical surface of the filter element (10).

9. The intelligent tea brewing machine as described in claim 1, characterized in that, It also includes a fifth drive unit (50), which is set on the tea table (1). The telescopic end of the fifth drive unit (50) is equipped with a spraying component (51) that slides with the mounting base (2). Both the fifth drive unit (50) and the spraying component (51) are electrically connected to the control panel.