Locking brewing device, beverage brewing device and beverage machine
11627828 · 2023-04-18
Assignee
Inventors
Cpc classification
A47J31/3633
HUMAN NECESSITIES
A47J31/407
HUMAN NECESSITIES
A47J31/3695
HUMAN NECESSITIES
International classification
A47J31/40
HUMAN NECESSITIES
Abstract
A locking brewing device includes a seat body configured to mount a material cup and including a piston chamber with an open end and a closed end, a piston slidably and sealedly arranged in the piston chamber and configured to lock a beverage capsule in the material cup, and a liquid guide piercing tube arranged at a surface of the piston that faces the open end of the piston chamber and being configured to pierce the beverage capsule in the material cup and deliver liquid. The piston and the closed end of the piston chamber form a pressure medium chamber having an opening, and the piston includes a liquid inlet passage in communication with the liquid guide piercing tube.
Claims
1. A locking brewing device comprising: a seat body configured to mount a material cup, a piston chamber with an open bottom end and a closed top end being formed in the seat body; a piston slidably and sealedly arranged in the piston chamber and configured to lock a beverage capsule in the material cup; and a liquid guide piercing tube arranged at a surface of the piston that faces the open bottom end of the piston chamber and being configured to pierce the beverage capsule in the material cup and deliver liquid; wherein: the piston and the closed top end of the piston chamber form a pressure medium chamber having an opening; the piston includes a liquid inlet passage in communication with the liquid guide piercing tube; and the closed top end of the piston chamber includes the opening of the pressure medium chamber, and an orifice used as a liquid inlet of the liquid inlet passage.
2. The locking brewing device according to claim 1, wherein the piston is configured to move in a direction away from the closed top end of the piston chamber under a pressure of a medium in the pressure medium chamber.
3. The locking brewing device according to claim 1, wherein the opening is formed in the closed top end of the piston chamber.
4. The locking brewing device according to claim 1, wherein: the liquid inlet passage includes a tube inside the pressure medium chamber; and the orifice connected to the tube is formed in the closed top end of the piston chamber.
5. The locking brewing device according to claim 4, wherein: the piston includes a piston body and a rod body that serves as the tube; the rod body includes an axial hollow passage that serves as the liquid inlet passage; and the rod body extends into and is slidably and sealedly fitted in the orifice.
6. The locking brewing device according to claim 5, wherein: a protrusion extending toward the pressure medium chamber is formed at the closed top end of the piston chamber; and the opening and the orifice are formed in the protrusion and extend axially.
7. The locking brewing device according to claim 1, further comprising: an elastic reset member arranged between the piston and the seat body, and being configured to drive the piston to move in a direction towards the closed top end of the piston chamber.
8. The locking brewing device according to claim 7, wherein: an axial groove is formed in an inner side surface of the chamber wall of the piston chamber; the piston includes: a guide wall extending toward the pressure medium chamber; and a radial extension part formed at an outer side surface of the guide wall and arranged in the axial groove, the radial extension part being configured to move axially along the axial groove; and the elastic reset member is arranged in the axial groove and abuts against the radial extension part.
9. The locking brewing device according to claim 1, wherein: a protrusion extending toward the pressure medium chamber is formed at the closed top end of the piston chamber; a guide space is formed between the protrusion and a side wall of the pressure medium chamber; and the piston includes a guide wall extending toward the pressure medium chamber and arranged inside the guide space.
10. The locking brewing device according to claim 1, further comprising: a beverage capsule sealing gasket provided at the surface of the piston that faces the open bottom end of the piston chamber, and including: a convex arc surface configured to abut against a sealing film of the beverage capsule; and an elastic skirt arranged around the convex arc surface and configured to press a circumference of the beverage capsule; wherein the liquid guide piercing tube penetrates through the convex arc surface.
11. The locking brewing device according to claim 10, wherein the liquid guide piercing tube penetrates through the convex arc surface at a center of the convex arc surface.
12. The locking brewing device according to claim 1, wherein the seat body includes a guide groove at the open bottom end of the piston chamber and configured to allow a guide edge of the material cup to be drawn out or inserted.
13. The locking brewing device according to claim 1, wherein the closed top end of the piston chamber includes a piston body configured to be detachably mounted to the seat body.
14. The locking brewing device according to claim 1, further comprising: a beverage capsule sealing gasket provided at the surface of the piston that faces the open bottom end of the piston chamber; wherein: an outer diameter of the beverage capsule sealing gasket is greater than or equal to an outer diameter of a top surface of the beverage capsule; and the liquid guide piercing tube penetrates through the beverage capsule sealing gasket.
15. A beverage brewing device comprising: a material cup with a brewing chamber; and a locking brewing device including: a seat body configured to mount the material cup, a piston chamber with an open bottom end and a closed top end being formed in the seat body; a piston slidably and sealedly arranged in the piston chamber and configured to lock a beverage capsule in the material cup; and a liquid guide piercing tube arranged at a surface of the piston that faces the open bottom end of the piston chamber and being configured to pierce the beverage capsule in the material cup and deliver liquid; wherein: the piston and the closed top end of the piston chamber form a pressure medium chamber having an opening; the piston includes a liquid inlet passage in communication with the liquid guide piercing tube; and the closed top end of the piston chamber includes the opening of the pressure medium chamber, and an orifice used as a liquid inlet of the liquid inlet passage.
16. The beverage brewing device according to claim 15, wherein: the material cup is mounted at the open bottom end of the piston chamber; and the piston is configured to move, under a pressure of a medium in the pressure medium chamber, from an open position where the liquid guide piercing tube is away from the brewing chamber to a locked position where the liquid guide piercing tube extends into the brewing chamber.
17. A beverage machine comprising: a beverage brewing device including: a material cup with a brewing chamber; and a locking brewing device including: a seat body configured to mount the material cup, a piston chamber with an open bottom end and a closed top end being formed in the seat body; a piston slidably and sealedly arranged in the piston chamber and configured to lock a beverage capsule in the material cup; and a liquid guide piercing tube arranged at a surface of the piston that faces the open bottom end of the piston chamber and being configured to pierce the beverage capsule in the material cup and deliver liquid; wherein: the piston and the closed top end of the piston chamber form a pressure medium chamber having an opening; the piston includes a liquid inlet passage in communication with the liquid guide piercing tube; and the closed top end of the piston chamber includes the opening of the pressure medium chamber, and an orifice used as a liquid inlet of the liquid inlet passage; and a liquid supply system in communication with the opening of the pressure medium chamber and the liquid inlet passage.
18. The beverage machine according to claim 17, wherein the liquid supply system is configured to: supply the liquid to the pressure medium chamber through the opening to drive the piston to move from an open position where the liquid guide piercing tube is away from the brewing chamber to a locked position where the liquid guide piercing tube extends into the brewing chamber to pierce the beverage capsule in the brewing chamber; and supply the liquid to the liquid inlet passage when the piston is at the locked position.
19. The beverage machine according to claim 17, wherein: the liquid supply system includes a control valve in communication with the opening of the pressure medium chamber and the liquid inlet passage; and a back pressure valve is provided in a tube line connecting the control valve and the liquid inlet passage, the back pressure valve being configured to: be closed when the liquid is supplied via the control valve and the opening to the pressure medium chamber; and be opened to supply the liquid to the liquid inlet passage when a pressure applied to the back pressure valve reaches an opening threshold.
20. The beverage machine according to claim 19, wherein: the liquid supply system further includes a water pump, a water tank, and a solenoid valve; the control valve includes a four-way valve arranged at an outlet end of the water pump, three outlets of the control valve being in communication with the opening of the pressure medium chamber, the liquid inlet passage, and the water tank, respectively; the solenoid valve is provided between the four-way valve and the water tank, the solenoid valve being configured to: be closed when the water pump operates to supply the liquid; and be opened when the water pump stops to allow the liquid inside the pressure medium chamber to return to the water tank via the solenoid valve.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The accompanying drawings, which constitute a part of the present disclosure, are used to provide a further understanding of the present disclosure. The illustrative embodiments of the present disclosure and their description are used to explain the present disclosure, but don't constitute any undue limitation to the present disclosure. In the figures:
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REFERENCE NUMBERS
(13) 1—brewing chamber; 2—material cup; 3—seat body; 4—liquid guide piercing tube; 5—piston; 6—open end; 7—closed end; 8—piston chamber; 9—opening; 10—pressure medium chamber; 11—liquid inlet passage; 12—orifice; 13—piston body; 14—rod body; 15—protrusion; 16—elastic reset member; 17—guide space; 18—guide wall; 19—radial extension part; 20—axial groove; 21—beverage capsule sealing gasket; 22—convex arc surface; 23—elastic skirt; 24—guide groove; 25—needle disk; 26—support plate; 27—needle; 28—elastic member; 29—cylinder part; 30—annular space; 31—guide hole; 32—guide arm; 33—limiting hook; 34—flow guide groove; 35—flow guide channel; 36—beverage capsule; 37—back pressure valve; 38—water pump; 39—four-way valve; 40—water tank; 41—solenoid valve.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(14) Hereunder some embodiments of the present disclosure will be described in detail with reference to the accompanying drawings. It should be understood that the embodiments described here are only provided to describe and explain the present disclosure rather than constituting any limitation to the present disclosure.
(15) It is noted that the embodiments and the features in the embodiments in the present disclosure can be combined freely, provided that there is no conflict between them.
(16) Hereunder the present disclosure will be detailed in embodiments with reference to the accompanying drawings.
(17) As shown in
(18) Of course, in the locking brewing device provided by the present disclosure, the piston chamber 8 and the piston 5 may be circular, elliptical or square. Furthermore, in a case that the piston chamber 8 and the piston 5 are of an elliptical or circular structure, it is easier to reduce the space occupied by the piston chamber 8 and the piston 5. Of course, accordingly the closed end 7 may be circular, elliptical or square, where, in a case that the end face of the closed end 7 is elliptical or circular, the opening 9 and the orifice 12 described below can be formed more easily.
(19) With the technical scheme, since the piston 5 is slidably and sealedly arranged in the piston chamber 8 and can move from the open position to the locked position under the pressure of the medium in the pressure medium chamber 10 (e.g., liquid pressure or gas pressure), in the open position, the user can place a beverage capsule to be used in the brewing chamber 1 because the liquid guide piercing tube 4 is away from the brewing chamber 1; then, for example, an external liquid supply system supplies liquid to the pressure medium chamber 10 through the opening 9 so that the pressure in the pressure medium chamber 10 increases and the piston 5 is driven to move from the open position towards the locked position, where the piston 5 locks the beverage capsule 36 placed in the brewing chamber 1, while the liquid guide piercing tube 4 pierces the beverage capsule 36 placed in the brewing chamber 1 to supply liquid to prepare beverage. After the beverage is prepared, the external liquid supply system stops the liquid supply, and, for example, the medium in the pressure medium chamber 10 flows back and further drives the piston 5 to return to its initial position, or the piston 5 returns to its initial position under the action of an elastic reset member to drive the medium in the pressure medium chamber 10 to flow back, so that the piston returns to the open position, and the user can take out the used beverage capsule 36. If needed, the user may place a new beverage capsule in the pressure medium chamber again and repeat the above procedures. Thus, with the locking brewing device provided by the present disclosure, the user only has to place and take out beverage capsules, but doesn't have to press and operate the locking brewing device to lock the beverage capsule as in the existing technologies. Therefore, the beverage brewing device has reliable working performance, and the user can lock the beverage capsule conveniently and reliably without performing any pressing operation.
(20) It should be understood that the liquid inlet passage 11 in the locking brewing device provided by the present disclosure may be arranged in a variety of forms, as long as external liquid can be introduced into the liquid guide piercing tube 4 through the liquid inlet passage 11; of course, after the liquid guide piercing tube 4 pierces the beverage capsule, the liquid will be introduced into the beverage capsule to brew beverage.
(21) For example, in one structure, flow passages that can communicate with each other can be formed in the piston 5 and the chamber wall of the piston chamber 8. In that case, within the sliding range of the piston 5, the flow passage in the piston 5 may always communicate with the flow passage in the chamber wall of the piston chamber 8, or the flow passage in the piston 5 may communicate with the flow passage in the chamber wall of the piston chamber 8 only when the piston 5 slides to the locked position, so that the external liquid flows through flow passage in the piston 5 and the flow passage in the chamber wall of the piston chamber 8 that communicate with each other into the liquid guide piercing tube 4.
(22) Alternatively, in another structure, in order to facilitate manufacturing, reduce the production cost, and facilitate assembling, preferably, referring to the structure shown in
(23) In addition, in order to reduce the internal space of the pressure medium chamber 10 occupied by the hose or bellow and increase the sliding stroke of the piston 5, preferably, in the structure shown in
(24) Of course, the orifice 12 may be used as a liquid inlet of the liquid inlet passage 11. For example, in the structure shown in
(25) The closed end 7 may be formed integrally with the seat body 3. Alternatively, in order to facilitate processing and assembling, preferably, in order to facilitate assembling, the closed end 7 may be detachably assembled to the seat body 3; for example, the closed end 7 may be formed by another piston body; in other words, the closed end 7 is a piston body detachably assembled with the seat body 3.
(26) In addition, in the locking brewing device provided by the present disclosure, the piston 5 may be a piston body without a rod body simply, as long as the piston body can slide stably and reliably in the pressure medium chamber 10 to adjust the position. In that case, a bellow may be used, for example, one end of the bellow is connected to the orifice 12, and the other end of the bellow is connected to an interface on the piston body, and the liquid guide piercing tube 4 communicates with the interface.
(27) Alternatively, in another structure, the piston 5 may comprise a piston body 13 and a rod body 14 that serves as the above-mentioned tube. As shown in
(28) Furthermore, to facilitate the connection of the rod body 14, preferably, as shown in
(29) In addition, as shown above, after the beverage preparation is completed, the piston 5 should move from the locked position to the open position, so that the medium in the pressure medium chamber 10 (e.g., liquid) can flow back, and thereby the piston 5 can be sucked to return to the open position;
(30) Alternatively, an elastic reset member 16 may be connected to the piston 5 to drive the piston 5 to reset; for example, an elastic reset member 16 capable of driving the piston 5 back to the open position may be arranged between the piston 5 and the seat body 3, where the elastic reset member 16 is in an energy storage state in the locked position. When the fluid supply to the pressure medium chamber 10 is stopped, the pressure in the pressure medium chamber 10 will decrease; at that point, the elastic reset member 16 will release elastic energy and drive the piston 5 to reset, and thereby further drive the fluid in the pressure medium chamber 10 to flow back.
(31) Furthermore, as shown in
(32) Moreover, to avoid the space in the piston chamber 8 occupied by the elastic reset member 16, preferably, as shown in
(33) In addition, in order to further improve the locking effect of the beverage capsule and facilitate the liquid guide piercing tube 4 to pierce into the beverage capsule easily, preferably, as shown in
(34) Moreover, in the locking brewing device provided by the present disclosure, in order to facilitate placing and taking out the beverage capsule, preferably, the locking brewing device is detachably assembled with the material cup 2. For example, as shown in
(35) Furthermore, to facilitate the user to more intuitively feel the placement of the material cup 2 and further ascertain that the material cup 2 is inserted to the correct position, preferably, in the locking brewing device provided by the present disclosure, a magnet capable of attracting the guide edge of the material cup is provided at an end of the guide groove 24. Thus, when the material cup 2 is about to be inserted to the correct position, the magnet will attract the material cup 2, giving the user a more intuitive feeling on the insertion of the material cup 2 to the correct position.
(36) Of course, on the basis of any of the above aspects, the locking brewing device provided by the present disclosure may employ a material cup 2 in any appropriate form, such as the material cup 2 shown in
(37) In addition, the present disclosure further provides a beverage brewing device, which comprises a material cup 2 with a brewing chamber 1 and the locking brewing device according to any of the above aspects, where the material cup 2 is mounted on the open end, preferably is detachably mounted on the open end, the piston 5 can move from the open position where the liquid guide piercing tube 4 is away from the brewing chamber 1 to the locked position where the liquid guide piercing tube 4 extends into the brewing chamber 1 to pierce the beverage capsule placed in the brewing chamber 1, under the pressure of the medium in the pressure medium chamber 10.
(38) Of course, the brewing chamber 1 has a beverage outlet, preferably, in the height direction of the brewing chamber, the beverage outlet is formed at the lowest position of the brewing chamber.
(39) Thus, as described above, with the beverage brewing device provided by the present disclosure, the user only needs to place and take out beverage capsules, but doesn't have to press and operate the locking brewing device to lock the beverage capsule as in the existing technologies.
(40) Therefore, the beverage brewing device has reliable working performance, and the user can lock the beverage capsule conveniently and reliably without performing any pressing operation.
(41) In addition, the material cup 2 may employ the structure shown in
(42) Thus, after the beverage capsule is used, the support plate 26 will move from the locked position to the initial position, that is to say, the used beverage capsule will be pushed out from the brewing chamber 1; in the initial position, there is a gap between the edge of the sealing film of the beverage capsule 36 and the sealing film supporting surface of the brewing chamber 1, so that the user can conveniently take the beverage capsule; thus, the user doesn't have to take the beverage capsule directly and inconveniently from the brewing chamber 1 in a state that the beverage capsule is closely fitted with the sealing film supporting surface of the brewing chamber 1, and a problem that the user's hand is scalded by the hot beverage capsule or contaminated by the residual beverage is avoided.
(43) Furthermore, after the beverage capsule is naturally placed on the support plate 26, the needle 27 will not pierce the beverage capsule naturally, even if the needle 27 protrudes from the support plate 26.
(44) To facilitate placing the beverage capsule 36 steadily and levelly, preferably, in the initial position, the needle 27 is below the support plate 26. Thus, the beverage capsule 36 can be placed on the support plate 26 levelly and steadily, and the user's hand will not be injured by the needle 27 since the needle 27 doesn't protrude above the support plate 26.
(45) Of course, in the beverage brewing device provided by the present disclosure, the needle disk 25 may be fixedly connected to the material cup 2, while the support plate 26 may be slidably connected to the material cup 2; alternatively, in order to simplify the structure and effectively utilize the fixedly arranged needle disk 25, preferably, as shown in
(46) In addition, to prevent the support plate 26 from popping out, a limiting structure may be formed between the support plate 26 and the material cup 2. For example, a limiting boss may extend from the side wall of the brewing chamber 1, and the support plate 26 abuts against the limiting boss in the initial position.
(47) Alternatively, a guide hole 31 is formed in the needle disk 25, a guide arm 32 is formed on the support plate 26, and a limiting hook 33 is formed on the front end of the guide arm 32, where the guide arm 32 is fitted in the guide hole 31, and, in the initial position, the limiting hook 33 abuts against the bottom surface of the needle disk 25, so as to limit the position of the support plate 26 in the initial position; especially, in a case that an elastic member is arranged between the support plate 26 and the needle disk 25 as described below, the elastic member can facilitate the support plate 26 to return to its initial position from the locked position, so as to eject the used beverage capsule out of the brewing chamber 1.
(48) As shown above, after the brewing is finished, the return of the support plate 26 may be implemented in a variety of forms. For example, an elastic member may be arranged between the bottom surface of the support plate 26 and the brewing chamber 1; alternatively, as shown in
(49) Of course, the elastic member may be in a variety of structural forms. For example, as shown in
(50) Furthermore, to facilitate assembling the spring stably and reliably, as shown in
(51) Moreover, after the needle 27 pierces the beverage capsule 36, the prepared beverage will flow out along the needle 27. Therefore, to facilitate the outflow of the beverage, preferably, as shown in
(52) In addition, when the beverage flows out, a part of the beverage will flow onto the support plate 26 and the needle disk 25. Thus, as shown in
(53) The present disclosure further provides a beverage machine. As shown in
(54) Thus, in the open position, since the liquid guide piercing tube 4 is away from the brewing chamber 1, the user may place a beverage capsule to be used in the brewing chamber 1 at this point; then, for example, an external liquid supply system supplies liquid to the pressure medium chamber 10 through the opening 9, so that the pressure in the pressure medium chamber 10 increases, and the piston 5 is driven to move from the open position to the locked position; in the locked position, the piston 5 locks the beverage capsule 36 placed in the brewing chamber 1, while the liquid guide piercing tube 4 pierces the beverage capsule 36 placed in the brewing chamber 1 and supplies liquid to prepare beverage. After the beverage is prepared, the external liquid supply system stops the liquid supply, and, for example, the medium in the pressure medium chamber 10 flows back and further drives the piston 5 to return to its initial position, or the piston 5 returns to its initial position under the action of an elastic reset member to drive the medium in the pressure medium chamber 10 to flow back, so that the piston returns to the open position, and the user can take out the used beverage capsule 36. If needed, the user may place a new beverage capsule in the pressure medium chamber again and repeat the above procedures. Thus, with the beverage machine provided by the present disclosure, the user only has to place and take out beverage capsules, but doesn't have to press and operate the locking brewing device to lock the beverage capsule as in the existing technologies. Therefore, the beverage brewing device has reliable working performance, and the user can lock the beverage capsule conveniently and reliably without performing any pressing operation.
(55) Of course, the liquid supply system may be in a variety of structural forms. For example, in one structural form, the liquid supply system comprises a separate tube line communicating with the liquid inlet passage 11 and a separate tube line connected with the opening 9, and uses separate and different water pumps to supply water.
(56) Alternatively, the liquid supply system may employ a same water pump, and can automatically supply liquid to the pressure medium chamber 10 first, and then automatically supply hot water needed for preparing beverage to the liquid inlet passage 11 after the water supply to the pressure medium chamber 10 reaches a certain degree. Thus, as shown in
(57) Thus, when the liquid supply system supplies liquid to the pressure medium chamber 10, another liquid stream will also flow directly to the back pressure valve 37 via the control valve, or the liquid stream may be heated up, for example, by a heating unit (arranged between the control valve and the back pressure valve 37), and then flow to the back pressure valve 37. At that point, the back pressure valve 37 is closed and bears certain pressure. As the piston 5 moves to the locked position, the pressure on the back pressure valve 37 reaches an opening threshold, and thereby the back pressure valve 37 is opened. In that way, for example, hot water heated by the heating unit enters into the beverage capsule 36 through the liquid inlet passage 11 and the liquid guide piercing tube 4 to prepare beverage.
(58) Of course, when the beverage preparation is completed and the liquid in the pressure medium chamber 10 flows back, the back pressure valve 37 may be closed.
(59) Moreover, to facilitate the backflow of the liquid in the pressure medium chamber 10, preferably, as shown in
(60) Thus, after the beverage capsule is placed, the water pump 38 operates to pump water, and three tube lines are formed via the four-way valve 39. A first water stream flows to the solenoid valve 41, which is closed at this point; a second water stream flows to the back pressure valve 37 via a heating unit, which is closed; a third water stream flows to the opening 9 and enters into the pressure medium chamber 10, and pushes the piston 5 to move downward from the open position to the locked position to lock the beverage capsule. In the locked position, the liquid guide piercing tube pierces the beverage capsule. At that point, the pressure in the second water supply tube line gradually rises to the opening pressure threshold of the back pressure valve, e.g., 3-5 Bar; then the back pressure valve is opened, and the second water stream is injected into the beverage capsule through the liquid guide piercing tube 4, and beverage brewing is started. After the beverage brewing is completed, the water pump stops; at that time, the solenoid valve 41 is opened, the water in the first tube line returns to the water tank 40, and the piston is reset to the open position, preferably under resilience force of the elastic reset member 16 (e.g., a spring), and thereby a work cycle is completed; if needed, the user may take out the used beverage capsule, for example, preferably by jacking the used beverage capsule out of the brewing chamber 1 by means of the support plate, place a new beverage capsule in the brewing chamber 1, and repeat the above process to brew beverage.
(61) Of course, the liquid supply system may further comprise an appropriate thermistor, such as an NTC, to sense the corresponding aspect of water. For example, an NTC may be arranged in the tube line between the water tank and the heating unit to sense the water inlet temperature; an NTC may be arranged at the water outlet of the heating unit to sense the water outlet temperature.
(62) In addition, it should be noted that the specific technical features described in above specific embodiments may be combined in any appropriate form, provided that there is no conflict among them. To avoid unnecessary repetition, various possible combinations are not described specifically in the present disclosure.
(63) Moreover, different embodiments of the present disclosure may also be combined freely as needed, as long as the combinations don't deviate from the idea and spirit of the present disclosure. Such combinations shall also be deemed as falling in the scope disclosed in the present disclosure.