Intelligent tea brewing machine
Through intelligent control and mechanical design, the intelligent tea brewing machine uses energy storage separation members and side-pushing members to solve the problem of liquid gushing out when the tea brewing machine is poured, and achieves stable liquid turbulence.
Patent Information
- Application Number
- CN202510790651.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-13
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2045-06-13
AI Technical Summary
When pouring, existing tea art machines can easily cause the remaining liquid that has not flowed out to continue pouring into the tea cup, causing the liquid in the tea cup to gush out.
An intelligent tea brewing art machine is designed, including energy storage separation members and side pushing members. By driving the motor, the rotation and position change of the pouring tea set is controlled, and components such as limiting plates, gear transmissions and separation rings are used to prevent the remaining liquid from pouring.
Effectively prevent the unflowed liquid from pouring into the tea cup, preventing the liquid in the tea cup from pouring out, and improving the stability and safety of pouring.
Smart Images

Figure CN120284121A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of tea art machines, and particularly relates to an intelligent brewing tea art machine. Background Art
[0002] In the prior art, when using a tea art machine to pour into a tea cup, it is easy for the remaining liquid that has not flowed out to continue to pour into the tea cup, resulting in the liquid in the tea cup overflowing. Therefore, there is an urgent need for improvement.
[0003] The present invention attempts to alleviate or at least mitigate such problems or defects by providing a new or otherwise improved tea art machine. Summary of the Invention
[0004] In view of one or more of the above-mentioned defects or improvement requirements in the prior art, the present invention provides an intelligent brewing tea art machine, which has the advantage of avoiding the situation that the remaining liquid that has not flowed out continues to pour into the tea cup, resulting in the liquid in the tea cup overflowing.
[0005] To achieve the above object, the present invention provides an intelligent brewing tea art machine, which includes a tea art machine body. Inside the tea art machine body, there is a housing, a driving motor, a fan and a placement hopper. A limiting plate is arranged at the output end of the driving motor. A tilting tea set is arranged on the limiting plate. Inside the tea art machine body, there is also a water storage box. A leakage plate is arranged inside the water storage box. A limiting ring is arranged inside the leakage plate. The intelligent brewing tea art machine further includes: An energy storage and separation member, which is composed of an energy storage member and a separation member connected to the energy storage member. Among them, the energy storage member can pass through the limiting ring. When the liquid injected into the tea cup on the energy storage member reaches a first predetermined value, the energy storage member can be activated to displace, so as to drive the separation member to move and push away the tilting tea set located above the tea cup. A side pushing member, which is detachably installed on one side wall of the water storage box, and the side pushing member is linked with the energy storage member of the energy storage and separation member. The side pushing member can be pulled when the energy storage member displaces. When the side pushing member generates a pulling action, it can push the tea cup on the energy storage member to move, so that the tea cup on the energy storage member is out of the tilting range of the tilting tea set.
[0006] As a further improvement of the present invention, the energy storage member of the energy storage and separation member includes: A base, which is arranged inside the water storage box. An energy storage rod is slidably arranged inside the base. A first spring, which is slidably arranged on the energy storage rod. A placement plate, which is connected to the energy storage rod, and the placement plate can pass through the limiting ring. A pressure wheel, which is rotatably arranged at the tail end of the energy storage rod. An internal seat is located in the water storage box, a limiting rod is slidably arranged on the internal seat, a step plate is arranged on one end of the limiting rod, a second spring is slidably sleeved on the limiting rod, and the second spring is located between the internal seat and the step plate; The tooth plate is arranged on the step plate, and the tooth plate extends along the length direction of the step plate.
[0007] As a further improvement of the present invention, the step plate has a first side surface and a second side surface, and there is a length difference between the first side surface and the second side surface. In the initial position, the step plate can interfere with the pressure wheel through the first side surface, wherein when the pressure wheel is pressed downward, it can move from the first side surface to the second side surface and interfere with the second side surface, and the step plate tends to move to the right.
[0008] As a further improvement of the present invention, in the initial position, the placement plate can pass through the limiting ring, and the highest point of the placement plate is flush with the highest point of the limiting ring, the energy storage rod is between the base and the placement plate, and the energy storage rod is in a relaxed state.
[0009] As a further improvement of the present invention, the separation element of the energy storage separation component includes: A first rotating shaft is rotatably arranged in the water storage box, and has two sets of first gears on the first rotating shaft, one set of the first gears is meshed with the toothed plate, and the other set of the first gears is sleeved with a belt; A second rotating shaft is rotatably arranged in the water storage box, and a second gear is provided on the second rotating shaft, and the belt passes around the second gear; A transverse plate, which is arranged in the water storage box and is penetrated by the second rotating shaft; A half gear is arranged at a tail end of the second rotating shaft, a swing rod is provided on the half gear, and an insertion rod is arranged on the swing rod; A cross plate is rotatably arranged on the horizontal plate, and has a plurality of groups of toggle grooves on the cross plate, so that the cross plate can be rotated when the insertion rod passes through the toggle grooves; A column wheel disposed on the cross plate; The outer cylinder is arranged in the water storage box, an inner cylinder is slidably arranged in the outer cylinder, a separation ring is arranged on the inner cylinder, and a follower rod which can slide in the column wheel is arranged in the middle of the inner cylinder.
[0010] As a further improvement of the present invention, a ball is provided on one end of the follower rod that penetrates into the column wheel, and a driving groove is also provided in the column wheel. The driving groove is formed by connecting multiple groups of continuous V-grooves. In the initial position, the ball of the follower rod is located at the lowest point of the multiple groups of continuous V-grooves.
[0011] As a further improvement of the present invention, in the initial position, the separation ring is located above the placement plate, and the separation ring can cover the teacup therein, and when the separation ring moves upward, the pouring tea set located above the teacup can be pushed away.
[0012] As a further improvement of the present invention, the rocker rod can extend along the cross-sectional circle center of the half gear toward the cross-sectional circle radius of the half gear, and the insertion rod can pass through the toggle groove of the cross plate.
[0013] As a further improvement of the present invention, the side thrust member comprises: An integrated frame, which is detachably mounted on a side wall of the water storage box; A displacement plate is rotatably arranged in the integrated frame, a third spring is detachably mounted on the displacement plate, and one end of the third spring is connected to the bottom surface of the integrated frame; A step block is detachably arranged on the displacement plate, an abutting step is formed between the step block and the displacement plate, a V-shaped lever is rotatably arranged on the step block, and the V-shaped lever is rotatably connected to the integrated frame; A pressure ring is rotatably arranged in the integrated frame, a pressure plate is detachably arranged on the pressure ring, a connecting rod is also detachably installed on the pressure ring, and the connecting rod is rotatably connected to the energy storage separation component. In the initial position, the pressure plate and the interference step are in mutual interference.
[0014] As a further improvement of the present invention, the V-shaped lever can pass through the energy storage separation component, and the V-shaped lever can interfere with the teacup on the energy storage separation component.
[0015] In general, compared with the prior art, the above technical solution conceived by the present invention has the following beneficial effects: 1. The intelligent tea brewing machine of the present invention, through the arranged energy storage separation component, the staff turns on the driving motor to rotate the pouring tea set, so as to pour the liquid in the pouring tea set into the teacup. When the liquid in the teacup reaches the first predetermined value, the placing plate can be moved down along the limiting ring, and the energy storage rod can be moved down and the first spring can be compressed. When the pressing wheel moves down, it moves from the first side surface to the second side surface, and the tooth plate moves right. When the tooth plate moves right, it can drive the first rotating shaft to rotate and then drive the belt to rotate, so as to drive the second gear and the half gear to rotate. Then, each time the insertion rod penetrates into the cross plate, the cross plate can be dialed to rotate, and the column wheel can be driven to rotate at the same time. When the column wheel rotates, the follower rod can be driven to move in the driving groove of the column wheel, and the inner cylinder and the separation ring can be pulled up. When the separation ring moves up, the pouring tea set located above the teacup can be pushed away, which can effectively prevent the residual liquid that has not flowed out of the pouring tea set from continuing to pour into the teacup, causing the liquid in the teacup to gush out. 2. The intelligent tea brewing machine of the present invention, through the arranged side push component, when the staff moves the limit rod to the right, can pull the connecting rod to move right, and can simultaneously rotate the pressure ring and the pressing plate, and make the pressing plate press the displacement plate downward, and make the V-shaped lever flip over. Initially, the V-shaped lever is in contact with the teacup, so when the V-shaped lever flips over, it can push the teacup to produce a deviation movement, so that the teacup on the energy storage component is out of the pouring range of the pouring tea set, and can again prevent the remaining liquid in the pouring tea set from continuing to flow into the teacup, causing the liquid in the teacup to gush out, so as to promote the use of the energy storage separation component. On the other hand, when the limit rod moves to the right, a traction object can be generated to reduce the impact force generated by the pressure wheel when it drops instantly, which causes the rapid movement impact brought by the tooth plate and causes the inner cylinder to move upward rapidly. The impact force is too large. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the intelligent tea brewing machine of the present invention; Figure 2 This is a disassembled diagram of the intelligent tea brewing machine of the present invention; Figure 3 From another perspective, the present invention Figure 2 Schematic diagram of the structure when Figure 4 It is a schematic structural diagram of the water storage box and the drain plate of the present invention when they are combined; Figure 5 It is a schematic diagram of the structure of the water storage box and the drain plate when they are separated; Figure 6 From another perspective, the present invention Figure 5 Schematic diagram of the structure when Figure 7 It is a schematic structural diagram of the energy storage separation component and the side thrust component of the present invention when they are combined with each other; Figure 8 This is a schematic structural diagram of the energy storage separation component and the side push component in combination from another perspective of the present invention; Figure 9 For the present invention Figure 8 An enlarged view of part A; Figure 10 For the present invention Figure 8 An enlarged view of part B.
[0017] In all the drawings, the same reference numerals represent the same technical features, specifically: 1, the tea art machine body; 11, the outer shell; 12, the drive motor; 13, the limit plate; 14, the tilting tea set; 15, the fan; 16, the placement hopper; 2, the water storage box; 21, the drain plate; 22, the limit ring; 3, the energy storage separation component; 31, the base; 32, the energy storage rod; 33, the first spring; 34, the placement plate; 35, the pressure wheel; 36, the built-in seat; 37, the limit rod; 371, the second spring; 372, the stepped plate; 373, the toothed plate; 374, the first rotating shaft; 375, the first gear; 376, the belt; 38, the second rotating shaft; 381, the second gear; 382, the cross plate; 383, the half gear; 384, the swing rod; 385, the insertion rod; 386, the cross plate; 387, the column wheel; 388, the follower rod; 39, the outer cylinder; 391, the inner cylinder; 392, the separation ring; 4, the side push component; 41, the integrated frame; 42, the displacement plate; 43, the third spring; 44, the stepped block; 45, the V-shaped lever; 46, the pressure ring; 47, the pressure piece; 48, the connecting rod. Specific Embodiments
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.
[0019] The terms used herein are only for describing specific embodiments and are not intended to limit the present invention. The terms "including", "comprising", etc. used herein indicate the presence of the described features, steps, operations, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, or components.
[0020] All the terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art, unless otherwise defined. It should be noted that the terms used here should be interpreted as having a meaning consistent with the context of this specification, and should not be interpreted in an idealized or overly rigid manner.
[0021] In the embodiment, byFigures 1-10 Provided is an intelligent brewing tea art machine, including a tea art machine body 1. Inside the tea art machine body 1, there is a housing 11, a drive motor 12, a fan 15 and a placement hopper 16. A limit plate 13 is arranged at the output end of the drive motor 12. There is a tilting tea set 14 on the limit plate 13. Inside the tea art machine body 1, there is also a water storage box 2. There is a leakage plate 21 inside the water storage box 2. A limit ring 22 is arranged inside the leakage plate 21. It further includes: an energy storage separation component 3, which is composed of an energy storage component and a separation component connected to the energy storage component. Among them, the energy storage component can pass through the limit ring 22. When the liquid injected into the teacup on the energy storage component reaches a first predetermined value, the energy storage component can be activated to displace, so as to drive the separation component to move and push the tilting tea set 14 above the teacup away; a side push component 4, which is detachably installed on one side wall of the water storage box 2, and the side push component 4 is linked with the energy storage component of the energy storage separation component 3. The side push component 4 can be pulled when the energy storage component displaces. When the side push component 4 generates a pulling action, it can push the teacup on the energy storage component to move, so that the teacup on the energy storage component is out of the tilting range of the tilting tea set 14.
[0022] The present invention is based on an overall idea that, through the energy storage separation component 3, the staff turns on the driving motor 12 to rotate the pouring tea set 14 to pour the liquid in the pouring tea set 14 into the teacup. When the liquid in the teacup reaches a first predetermined value, the placement plate 34 can be moved down along the limit ring 22, and the energy storage rod 32 can be moved down and squeeze the first spring 33 to compress. When the pressing wheel 35 moves down from the first side to the second side, the tooth plate 373 moves to the right. After the rotation, the first rotating shaft 374 can be driven to rotate and then the belt 376 can be driven to rotate, so as to drive the second gear 381 and the half gear 383 to rotate, and then each time the insertion rod 385 penetrates into the cross plate 386, the cross plate 386 can be driven to rotate, and the column wheel 387 can be driven to rotate at the same time. When the column wheel 387 rotates, the follower rod 388 can be driven to move in the driving groove of the column wheel 387, and the inner cylinder 391 and the separation ring 392 can be pulled up. When the separation ring 392 moves up, the pouring tea set 14 located above the teacup can be moved. By pushing away, it is possible to effectively prevent the remaining liquid in the poured tea set 14 from continuing to pour into the tea cup, thereby causing the liquid in the tea cup to gush out. By arranging the side push member 4, the staff can pull the connecting rod 48 to move right when the limit rod 37 moves right, and can simultaneously rotate the pressing ring 46 and the pressing sheet 47, so that the pressing sheet 47 presses the displacement plate 42 downward, and the V-shaped lever 45 is turned over. Initially, the V-shaped lever 45 is in contact with the tea cup, so when the V-shaped lever 45 is turned over, it can The teacup is pushed to produce a deviation movement so that the teacup on the energy storage component is out of the pouring range of the pouring tea set 14, which can again prevent the remaining liquid in the pouring tea set 14 from continuing to pour into the teacup and causing the liquid in the teacup to gush out, so as to promote the use of the energy storage separation component 3. On the other hand, when the limit rod 37 moves to the right, a traction object can be generated to reduce the impact force generated by the pressing wheel 35 when it is instantly descended, resulting in the rapid movement impact of the tooth plate 373, which causes the inner cylinder 391 to move upward rapidly due to excessive impact force.
[0023] Next, the energy storage separation component 3 is given a more specific structure and construction for further explanation. The energy storage component of the energy storage separation component 3 includes a base 31, which is arranged in the water storage box 2, and an energy storage rod 32 is slidably arranged in the base 31; a first spring 33, which is slidably arranged on the energy storage rod 32; a placement plate 34, which is connected to the energy storage rod 32, and the placement plate 34 can pass through the limit ring 22; a pressure wheel 35, which is rotatably arranged at the tail end of the energy storage rod 32; a built-in seat 36, which is located in the water storage box 2 A limiting rod 37 is slidably arranged on the built-in seat 36, a step plate 372 is arranged on one end of the limiting rod 37, a second spring 371 is slidably sleeved on the limiting rod 37, and the second spring 371 is located between the built-in seat 36 and the step plate 372; a tooth plate 373 is arranged on the step plate 372, and the tooth plate 373 extends along the length direction of the step plate 372; the separation member of the energy storage separation member 3 includes a first rotating shaft 374, which is rotatably arranged in the water storage box 2, and has two sets of first rotating shafts 374. Gears 375, wherein one set of first gears 375 and the toothed plate 373 are meshed with each other, wherein another set of first gears 375 is sleeved with a belt 376; a second rotating shaft 38, which is rotatably arranged in the water storage box 2, has a second gear 381 on the second rotating shaft 38, and the second gear 381 is passed around by the belt 376; a transverse plate 382, which is arranged in the water storage box 2, and the transverse plate 382 is passed through by the second rotating shaft 38; a half gear 383, which is arranged at one end of the second rotating shaft 38, has a swing rod 384 on the half gear 383, A plug rod 385 is arranged on the rocker arm 384; a cross plate 386 is rotatably arranged on the horizontal plate 382, and a plurality of groups of toggle grooves are provided on the cross plate 386, and the cross plate 386 can rotate when the toggle grooves are penetrated by the plug rod 385; a column wheel 387 is arranged on the cross plate 386; an outer cylinder 39 is arranged in the water storage box 2, and an inner cylinder 391 is slidably arranged in the outer cylinder 39, a separation ring 392 is provided on the inner cylinder 391, and a follower rod 388 that can slide in the column wheel 387 is provided in the middle of the inner cylinder 391.
[0024] Next, the use principle and effect of the energy storage separation component 3 are further explained. The staff turns on the driving motor 12 to rotate the pouring tea set 14 to pour the liquid in the pouring tea set 14 into the teacup. When the liquid in the teacup reaches a first predetermined value, the placement plate 34 can move down along the limiting ring 22, and at the same time, the energy storage rod 32 moves down and squeezes the first spring 33 to compress. When the pressure wheel 35 moves down from the first side to the second side, the tooth plate 373 moves right. When the tooth plate 373 moves right, it can drive the first rotating shaft 374 to rotate and then drive the belt 376 to rotate. The second gear 381 and the half gear 383 are driven to rotate, so that each time the insertion rod 385 penetrates into the cross plate 386, the cross plate 386 can be driven to rotate, and the column wheel 387 can be driven to rotate at the same time. When the column wheel 387 rotates, the follower rod 388 can be driven to move in the driving groove of the column wheel 387, and the inner tube 391 and the separation ring 392 can be pulled upward. When the separation ring 392 moves upward, the pouring tea set 14 located above the teacup can be pushed away, which can effectively prevent the remaining liquid in the pouring tea set 14 from continuing to pour into the teacup, causing the liquid in the teacup to gush out.
[0025] In some embodiments, more specifically, in order to further enhance the elastic energy storage effect of the step plate 372 on the pressure wheel 35, a first side surface and a second side surface are provided on the step plate 372, and there is a length difference between the first side surface and the second side surface. In the initial position, the step plate 372 can interfere with the pressure wheel 35 through the first side surface, wherein when the pressure wheel 35 is pressed and moved downward, it can move from the first side surface to the second side surface and interfere with the second side surface, and the step plate 372 tends to move to the right.
[0026] In some embodiments, in order to prevent the placement plate 34 from tipping over during the downward movement, in the initial position, the placement plate 34 can pass through the limiting ring 22, and the highest point of the placement plate 34 is flush with the highest point of the limiting ring 22, the energy storage rod 32 is between the base 31 and the placement plate 34, and the energy storage rod 32 is in a relaxed state.
[0027] In some embodiments, in order to enable the follower rod 388 to slide more smoothly in the column wheel 387, a ball is provided on one end of the follower rod 388 that penetrates into the column wheel 387, and a drive groove is also provided in the column wheel 387. The drive groove is formed by connecting multiple groups of continuous V-grooves. In the initial position, the ball of the follower rod 388 is located at the lowest point of the multiple groups of continuous V-grooves.
[0028] In some embodiments, in order to enable the separation ring 392 to cover the teacup and enable the separation ring 392 to touch the pouring tea set 14 in time to push the pouring tea set 14 away, in the initial position, the separation ring 392 is located above the placement plate 34, and the separation ring 392 can cover the teacup therein. When the separation ring 392 moves up, the pouring tea set 14 located above the teacup can be pushed away.
[0029] In some embodiments, more specifically, in order to ensure that the insertion rod 385 can be inserted into the cross plate 386 more smoothly, the rocker arm 384 can extend along the cross-sectional center of the half gear 383 toward the cross-sectional radius of the half gear 383, and the insertion rod 385 can pass through the toggle groove of the cross plate 386.
[0030] Next, the side push member 4 is given a more specific structure and construction as a whole for further explanation. The side push member 4 includes an integrated frame 41, which is detachably mounted on a side wall of the water storage box 2; a displacement plate 42, which is rotatably arranged in the integrated frame 41, and a third spring 43 is detachably mounted on the displacement plate 42, and one end of the third spring 43 is connected to the bottom surface of the integrated frame 41; a step block 44, which is detachably arranged on the displacement plate 42, and the step block 4 4 and the displacement plate 42 form a conflicting step, a V-shaped lever 45 is rotatably arranged on the step block 44, and the V-shaped lever 45 is rotatably connected to the integrated frame 41; a pressing ring 46 is rotatably arranged in the integrated frame 41, a pressing sheet 47 is detachably arranged on the pressing ring 46, a connecting rod 48 is also detachably installed on the pressing ring 46, and the connecting rod 48 is rotatably connected to the energy storage separation component 3, and in the initial position, the pressing sheet 47 and the conflicting step conflict with each other; Next, the overall use principle and effect of the side push member 4 are further explained. When the staff makes the limit rod 37 move to the right, the connecting rod 48 can be pulled to move to the right, and the pressure ring 46 and the pressure plate 47 can be rotated at the same time, and the pressure plate 47 can be pressed to move the displacement plate 42 downward, and the V-shaped lever 45 can be turned over. Initially, the V-shaped lever 45 is in contact with the teacup. Therefore, when the V-shaped lever 45 is turned over, the teacup can be pushed to produce a deviation movement, so that the teacup on the energy storage component is out of the pouring range of the pouring tea set 14, and the remaining liquid in the pouring tea set 14 that has not flowed out can be prevented from continuing to pour into the teacup, causing the liquid in the teacup to gush out, so as to promote the use of the energy storage separation member 3. On the other hand, when the limit rod 37 moves to the right, a traction object can be generated to reduce the impact force generated by the pressure wheel 35 when it is instantly descended, resulting in the rapid movement impact brought by the tooth plate 373, which causes the inner cylinder 391 to move upward rapidly. The impact force is too large.
[0031] In some embodiments, more specifically, in order to enable the V-shaped lever 45 to interfere with the teacup, the V-shaped lever 45 can pass through the energy storage separation component 3 , and the V-shaped lever 45 can interfere with the teacup on the energy storage separation component 3 .
[0032] In summary, through the arranged energy storage separation component 3, the staff turns on the driving motor 12 to rotate the pouring tea set 14 to pour the liquid in the pouring tea set 14 into the teacup. When the liquid in the teacup reaches the first predetermined value, the placement plate 34 can move down along the limit ring 22, and at the same time, the energy storage rod 32 moves down and squeezes the first spring 33 to compress. When the pressure wheel 35 moves down from the first side to the second side, the tooth plate 373 moves to the right. When the tooth plate 373 moves to the right, it can drive the first rotating shaft The rotation of the belt 374 drives the second gear 381 and the half gear 383 to rotate, and each time the rod 385 penetrates into the cross plate 386, the cross plate 386 can be moved to rotate, and the column wheel 387 can be driven to rotate at the same time. When the column wheel 387 rotates, the follower rod 388 can be driven to move in the driving groove of the column wheel 387, and the inner cylinder 391 and the separation ring 392 can be pulled upward. When the separation ring 392 moves upward, the pouring tea set 14 located above the teacup can be pushed away, which can effectively In order to prevent the remaining liquid in the pouring tea set 14 from continuing to pour into the tea cup and causing the liquid in the tea cup to gush out, the staff can pull the connecting rod 48 to move right when the limit rod 37 moves right, and can simultaneously rotate the pressing ring 46 and the pressing piece 47, so that the pressing piece 47 presses the displacement plate 42 to move downward, and the V-shaped lever 45 is turned over. Initially, the V-shaped lever 45 is in contact with the tea cup, so when the V-shaped lever 45 is turned over, it can push the tea cup. The cup produces a deviation movement so that the teacup on the energy storage component is out of the pouring range of the pouring tea set 14, which can again prevent the remaining liquid in the pouring tea set 14 from continuing to pour into the teacup and causing the liquid in the teacup to gush out, so as to promote the use of the energy storage separation component 3. On the other hand, when the limit rod 37 moves to the right, a traction object can be generated to reduce the impact force generated by the pressing wheel 35 when it is instantly descended, resulting in the rapid movement impact of the tooth plate 373, which causes the inner cylinder 391 to move upward rapidly and has too large an impact force.
[0033] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent brewing tea art machine, comprising a tea art machine body (1), inside which there is a housing (11), a driving motor (12), a fan (15) and a placing hopper (16). A limiting plate (13) is arranged at the output end of the driving motor (12), and there is a tilting tea set (14) on the limiting plate (13). Inside the tea art machine body (1), there is also a water storage box (2), inside which there is a leakage plate (21), and a limiting ring (22) is arranged inside the leakage plate (21). It is characterized in that, Further comprising: An energy storage separation member (3), which is composed of an energy storage member and a separation member connected to the energy storage member. Among them, the energy storage member can pass through the limit ring (22). When the liquid injected into the teacup on the energy storage member reaches a first predetermined value, the energy storage member can be activated to displace, so as to drive the separation member to move and push away the pouring tea set (14) located above the teacup; A side push member (4), which is detachably installed on one side wall of the water storage box (2), and the side push member (4) is linked with the energy storage member of the energy storage separation member (3). The side push member (4) can be pulled when the energy storage member displaces. After the side push member (4) generates a pulling action, it can push the teacup on the energy storage member to move, so that the teacup on the energy storage member is out of the pouring range of the pouring tea set (14); The energy storage member of the energy storage separation member (3) includes: A base (31), which is arranged in the water storage box (2), and an energy storage rod (32) is slidably arranged in the base (31); A first spring (33), which is slidably arranged on the energy storage rod (32); A placement plate (34), which is connected to the energy storage rod (32), and the placement plate (34) can pass through the limit ring (22); A pressure wheel (35), which is rotatably arranged at the tail end of the energy storage rod (32); An inner seat (36), which is located in the water storage box (2), a limit rod (37) is slidably arranged on the inner seat (36), a stepped plate (372) is arranged at one tail end of the limit rod (37), a second spring (371) is slidably sleeved on the limit rod (37), and the second spring (371) is located between the inner seat (36) and the stepped plate (372); A toothed plate (373), which is arranged on the stepped plate (372), and the toothed plate (373) extends along the length direction of the stepped plate (372); The separation member of the energy storage separation member (3) includes: A first rotating shaft (374), which is rotatably arranged in the water storage box (2). There are two groups of first gears (375) on the first rotating shaft (374). One group of the first gears (375) meshes with the toothed plate (373), and a belt (376) is sleeved on the other group of the first gears (375); A second rotating shaft (38), which is rotatably arranged in the water storage box (2). There is a second gear (381) on the second rotating shaft (38), and the second gear (381) is bypassed by the belt (376); A cross plate (382), which is arranged in the water storage box (2), and the cross plate (382) is passed through by the second rotating shaft (38); A semi-gear (383), which is arranged at one tail end of the second rotating shaft (38). There is a swing rod (384) on the semi-gear (383), and a plug rod (385) is arranged on the swing rod (384); A cross plate (386) is rotatably arranged on the transverse plate (382), and has a plurality of groups of toggle grooves on the cross plate (386). When the insertion rod (385) passes through the toggle grooves, the cross plate (386) can be rotated; A column wheel (387) disposed on the cross plate (386); An outer cylinder (39) is arranged in the water storage box (2), an inner cylinder (391) is slidably arranged in the outer cylinder (39), a separation ring (392) is provided on the inner cylinder (391), and a follower rod (388) is provided in the middle of the inner cylinder (391) and is capable of sliding in the column wheel (387).
2. The intelligent brewing tea art machine according to claim 1, characterized in that, The step plate (372) has a first side surface and a second side surface, and there is a length difference between the first side surface and the second side surface. In the initial position, the step plate (372) can contact the pressure wheel (35) through the first side surface. When the pressure wheel (35) is pressed downward, it can move from the first side surface to the second side surface and contact the second side surface. The step plate (372) has a tendency to move to the right.
3. The intelligent brewing tea art machine according to claim 2, wherein In the initial position, the placement plate (34) can pass through the limiting ring (22), and the highest point of the placement plate (34) is flush with the highest point of the limiting ring (22), the energy storage rod (32) is between the base (31) and the placement plate (34), and the energy storage rod (32) is in a relaxed state.
4. The intelligent brewing tea art machine according to claim 3, characterized in that A ball is provided on one end of the follower rod (388) that penetrates into the column wheel (387), and a driving groove is also provided in the column wheel (387). The driving groove is formed by connecting a plurality of groups of continuous V-grooves. In the initial position, the ball of the follower rod (388) is located at the lowest point of the plurality of groups of continuous V-grooves.
5. The intelligent brewing tea art machine according to claim 4, characterized in that, In the initial position, the separation ring (392) is located above the placement plate (34), and the separation ring (392) is capable of covering the tea cup therein; when the separation ring (392) moves upward, the tea pouring set (14) located above the tea cup is pushed away.
6. The intelligent brewing tea art machine according to claim 5, wherein The swing rod (384) can extend along the cross-sectional center of the half gear (383) toward the cross-sectional radius of the half gear (383), and the insertion rod (385) can pass through the toggle groove of the cross plate (386).
7. The intelligent brewing tea art machine according to claim 6, characterized in that, The thrust member (4) comprises: An integrated frame (41) which is detachably mounted on a side wall of the water storage box (2); A displacement plate (42) is rotatably arranged in the integrated frame (41), a third spring (43) is detachably mounted on the displacement plate (42), and a tail end of the third spring (43) is connected to the bottom surface of the integrated frame (41); a step block (44) which is detachably arranged on the displacement plate (42), a contact step being formed between the step block (44) and the displacement plate (42), a V-shaped lever (45) being rotatably arranged on the step block (44), and the V-shaped lever (45) being rotatably connected to the integrated frame (41); A pressure ring (46) is rotatably arranged within the integrated frame (41). A pressure piece (47) is detachably arranged on the pressure ring (46). A connecting rod (48) is also detachably installed on the pressure ring (46), and the connecting rod (48) is rotatably connected to the energy storage separation member (3). In the initial position, the pressure piece (47) abuts against the abutting step.
8. The intelligent brewing tea art machine according to claim 7, characterized in that, The V-shaped lever (45) can pass through the energy storage separation member (3), and the V-shaped lever (45) can abut against the tea cup on the energy storage separation member (3).
Citation Information
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