Beverage apparatus

By incorporating heating elements and water outlet clearance space into beverage equipment, the problem of beverage equipment being unable to meet high-temperature brewing and cooking requirements is solved, achieving stable heating of liquid temperature and diversified use.

CN119453747BActive Publication Date: 2026-01-23JIANGSU KINGCLEAN INTELLIGENT APPLIANCE CO LTD +2
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Patent Information

Application Number
CN202310999451.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-09
Publication Date
2026-01-23
Estimated Expiration
2043-08-09

AI Technical Summary

Technical Problem

Existing beverage equipment cannot meet the requirements of brewing and cooking at high temperatures, and the water flowing into the beverage container suffers significant heat loss during the transportation process.

Method used

Heating elements and water outlet clearance spaces are installed in beverage equipment. The heating elements heat the cup body, and the water outlet clearance space design reduces heat loss and ensures the stability of liquid temperature.

Benefits of technology

It enables high-temperature heating of liquids, meeting the diverse brewing and cooking needs of beverage equipment and improving the temperature control accuracy and efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a beverage equipment, which comprises a cup assembly, the cup assembly comprising a cup, a first coupler and a heating assembly for heating liquid in the cup; a bottom wall of the cup is provided with a first water outlet; the first coupler is arranged at the bottom of the cup, the first coupler is provided with a water outlet avoiding space penetrating through the first coupler, and the first coupler is used at least for power supply of the heating assembly; in the projection along the cup axis direction, the projection of the first water outlet is located in the projection range of the water outlet avoiding space. The beverage equipment of the embodiment of the application can reheat the cup assembly through the arrangement of the heating assembly, so as to meet some brewing and cooking requirements with relatively high temperature, and better meet the diversity of the beverage equipment.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of beverage equipment, in particular to a beverage equipment. BACKGROUND

[0002] With the improvement of people's living standards, the application of beverage equipment such as water dispenser, beverage machine and juice machine in life is more and more widely. In order to meet the brewing function, some water dispensing equipment, such as the beverage machine provided in the patent document with application number 202021450472.4, increases the beverage container. However, even if the beverage container is increased, the water flow delivered to the beverage container is easy to lose heat during the delivery process and cannot meet the requirements of some brewing and cooking requirements with relatively high temperature. SUMMARY

[0003] Problems to be solved by the application

[0004] In order to solve the problem that the beverage equipment cannot meet the brewing and cooking requirements with relatively high temperature, a beverage equipment capable of meeting the brewing requirements with relatively high temperature is provided.

[0005] Solutions for solving the problem

[0006] The embodiment of the present application provides a beverage equipment, which comprises:

[0007] a water storage tank for storing liquid;

[0008] a cup assembly for receiving liquid from the water storage tank; the cup assembly comprises a cup, a first coupler and a heating assembly for heating liquid in the cup; a bottom wall of the cup is provided with a first water outlet;

[0009] the first coupler is arranged at the bottom of the cup, and the first coupler is provided with a water outlet avoiding space penetrating through the first coupler, and the first coupler is at least used for supplying power to the heating assembly;

[0010] In the projection along the cup axis direction, the projection of the first water outlet is located in the projection range of the water outlet avoiding space.

[0011] Optionally, the cup assembly further comprises a first water outlet pipe arranged at the first water outlet, and the first water outlet pipe is arranged in the water outlet avoiding space.

[0012] Optionally, the heating assembly comprises two conductive contacts arranged at the bottom of the cup, and a plurality of heating elements in thermal contact with the bottom of the cup; the plurality of heating elements are electrically connected with the two conductive contacts.

[0013] Optionally, the heating element is a heating sheet.

[0014] Optionally, the heat generating component comprises a plurality of heat generating branch circuits; at least one of the plurality of heat generating branch circuits has at least two heat generating elements, and the heat generating elements in the same heat generating branch circuit are connected in series.

[0015] Optionally, the first water outlet and the water outlet avoiding space are coaxially distributed.

[0016] Optionally, the beverage device further comprises a water outlet seat, the water outlet seat further comprises a second water outlet pipe; the second water outlet pipe is movably arranged on the water outlet seat; the second water outlet pipe is movable to switch between a first position and a second position; when the second water outlet pipe is in the first position, the liquid in the cup body can flow out from the first water outlet;

[0017] The beverage device further comprises a sealing structure, which is used to realize sealed butt joint of the second water outlet pipe and the first water outlet pipe when the second water outlet pipe is in the first position, so as to isolate the inner cavity of the second water outlet pipe from external devices.

[0018] Optionally, when the cup body assembly is installed on the water outlet seat and the second water outlet pipe is in the first position, the second water outlet pipe is located outside the first water outlet pipe.

[0019] Optionally, the sealing structure comprises:

[0020] a second sealing ring, which is annular; when the second water outlet pipe is in the first position, the second sealing ring is in sealed butt joint with the side wall of the first water outlet pipe and the side wall of the second water outlet pipe.

[0021] Optionally, the second sealing ring is sleeved on the first water outlet pipe.

[0022] Optionally, the second water outlet pipe has a butt joint end close to the first water outlet pipe;

[0023] When the second water outlet pipe is in the first position, the second sealing ring is in sealed abutment with the butt joint end of the second water outlet pipe.

[0024] Optionally, the beverage device further comprises a water outlet seat, the water outlet seat is provided with a second coupler, the second coupler is also provided with a water outlet avoiding space penetrating through the second coupler; the water outlet avoiding space of the second coupler communicates with the water outlet avoiding space of the first coupler.

[0025] Optionally, the first coupler comprises a first butt joint wall and a plurality of first conductive elements; the plurality of first conductive elements are arranged on the first butt joint wall at intervals; the first butt joint wall forms the side wall of the water outlet avoiding space of the first coupler;

[0026] The second coupler comprises a docking body; the docking body has a docking groove matched with the first docking wall;

[0027] The inner side wall of the docking groove is in sealing abutment with the second sealing ring, and the inner side wall of the docking groove is formed as a side wall of the water outlet avoiding space of the second coupler.

[0028] Optionally, the ratio of the area of the first water outlet to the bottom area of the cup body is 0.1-0.5.

[0029] Optionally, the first coupler comprises a first docking wall, and the first docking wall is annular; the first docking wall is arranged around the water outlet avoiding space.

[0030] Optionally, the first coupler further comprises a plurality of first conductive members; the first conductive members are arranged on the first docking wall.

[0031] The beverage device further comprises a water outlet seat, and the water outlet seat is provided with a second coupler; the second coupler is provided with a plurality of second conductive members corresponding to the first conductive members one by one.

[0032] When the first conductive members and the second conductive members are in a powered state, the first conductive members realize power supply to the heating assembly by contacting the second conductive members.

[0033] Optionally, the first conductive members are annularly arranged on the outer side of the first docking wall.

[0034] Optionally, the outer side of the first docking wall is provided with a plurality of conductive accommodation grooves arranged in sequence, and the first conductive members and the conductive accommodation grooves correspond to each other one by one; the first conductive members are located in the corresponding conductive accommodation grooves.

[0035] Optionally, the first conductive members are fan ring columns.

[0036] Optionally, the water outlet seat and the cup body assembly are detachably connected.

[0037] Optionally, the cup body assembly is provided with a first locking part, and the water outlet seat is provided with a second locking part; the first locking part and the second locking part are locked and connected.

[0038] Optionally, the first locking part and the second locking part are clamping parts; the first locking part and the second locking part are buckled and connected.

[0039] Optionally, the first locking part comprises a first circumferential limiting part and a first longitudinal limiting part; the second locking part comprises a second circumferential limiting part matched with the first circumferential limiting part and a second longitudinal limiting part matched with the first longitudinal limiting part.

[0040] Optionally, the cup assembly is provided with a first annular positioning part, and the water outlet seat is provided with a second annular positioning part matched with the first annular positioning part.

[0041] Optionally, the first annular positioning part is a positioning slot extending in the circumferential direction, and the second annular positioning part is a positioning piece matched with the positioning slot, and the second annular positioning part can slide in the circumferential direction in the first annular positioning part.

[0042] Optionally, the beverage device further comprises a cup cover assembly capable of covering the cup body, and the cup cover assembly is provided with a water inlet opening communicating with the inside of the cup body, and the water inlet opening is used for adding liquid into the cup body.

[0043] Optionally, the beverage device further comprises:

[0044] a raw water tank;

[0045] a machine body comprising a purified water tank, a filter assembly, a pipeline and a shell, the purified water tank, the filter assembly and the pipeline are located in the shell, the filter assembly communicates the raw water tank and the purified water tank, the inlet of the pipeline communicates with the purified water tank, the outlet of the pipeline communicates with the inside of the cup body, and the storage water tank is the purified water tank.

[0046] Optionally, the beverage device further comprises:

[0047] a water receiving container arranged at the bottom side of the cup assembly, and the water receiving container is used for receiving the liquid flowing out through the first water outlet.

[0048] Optionally, the beverage device further comprises:

[0049] a heating structure located in the shell, and the heating structure is used for heating the liquid in the pipeline flowing to the cup body.

[0050] Optionally, the water outlet seat is fixed on the shell; and / or,

[0051] the cup assembly protrudes from the machine body.

[0052] Optionally, the first coupler is coaxial with the first water outlet.

[0053] Optionally, at least part of the first water outlet pipe is coaxial with the first coupler.

[0054] Optionally, the first coupler is coaxial with the second coupler.

[0055] Optionally, the beverage device further comprises a temperature sensor located in the cup body, the temperature sensor being configured to detect the temperature of the liquid in the cup body, and the first coupler is electrically connected to the temperature sensor and configured to supply power to the temperature sensor.

[0056] Effects of the Invention

[0057] The beverage device described above, by the arrangement of the heating assembly, can reheat the cup assembly to meet some brewing and cooking requirements with higher temperature, and better meet the diversification of the beverage device. BRIEF DESCRIPTION OF DRAWINGS

[0058] Figure 1 The structural schematic diagram of the beverage device provided by an embodiment of the present application is shown in the figure.

[0059] Figure 1 a The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure. Figure 1 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure.

[0060] Figure 1 b The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure. Figure 1 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure.

[0061] Figure 2 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure. Figure 1 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure.

[0062] Figure 3 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure. Figure 2 The sectional view of the cup assembly is shown in the figure.

[0063] Figure 4 The sectional view of the cup assembly is shown in the figure. Figure 2 The sectional view of the first coupler is shown in the figure.

[0064] Figure 5 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure. Figure 1 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure.

[0065] Figure 6 The sectional view of the cup assembly is shown in the figure. Figure 5 The sectional view of the cup assembly is shown in the figure.

[0066] Figure 7 The sectional view of the cup assembly is shown in the figure. Figure 6 The top view of the first housing is shown in the figure.

[0067] Figure 8 The sectional view of the cup assembly is shown in the figure. Figure 6 The sectional view of the cup assembly is shown in the figure.

[0068] Figure 9 The sectional view of the cup assembly is shown in the figure. Figure 6 The structural schematic diagram of the beverage device in which the water receiving container is installed and the cup cover assembly is in the closed state is shown in the figure.

[0069] Figure 10 for Figure 5 A cross-sectional view of the water outlet from another direction.

[0070] Figure 11 a for Figure 1 A cross-sectional view of the middle cup body assembly and the water outlet seat after assembly (the second water outlet pipe is located in the second position).

[0071] Figure 11 b A cross-sectional view of the cup assembly and water outlet seat after assembly, provided for another embodiment of this application (the second water outlet pipe is located in the first position).

[0072] Figure 11 c for Figure 11 a A magnified view of part A in the image.

[0073] Figure 11 d for Figure 11 b A magnified view of part C.

[0074] Figure 12 for Figure 11 a A bottom view of the bottom wall of the middle cup.

[0075] Figure 13 for Figure 11 a A cross-sectional view of the middle cup.

[0076] Figure 14 for Figure 5 A cross-sectional view of the water outlet from another direction.

[0077] Figure 15a for Figure 2 A partial structural diagram of the cup assembly is shown.

[0078] Figure 15b for Figure 2 Middle cup body components and Figure 5 A cross-sectional view of the beverage equipment when the water outlet is not properly installed.

[0079] Figure 15c for Figure 2 Middle cup body components and Figure 5 A cross-sectional view of the beverage equipment when the center water outlet is in place.

[0080] Figure 16a A cross-sectional view of the cup assembly and water outlet provided in another embodiment of this application after assembly.

[0081] Figure 16b for Figure 16a A magnified view of part B in the image.

[0082] Figure 17 for Figure 16b A schematic diagram of the structure of the filter element.

[0083] Figure 18aFig. 1 is a schematic structural diagram of a beverage equipment according to an embodiment of the present application. Figure 16a Fig. 2 is a schematic structural diagram of a cup assembly of the beverage equipment.

[0084] Figure 18b Fig. 3 is a schematic structural diagram of a water outlet seat of the beverage equipment. Figure 16a Fig. 4 is a schematic structural diagram of a cross section of the water outlet seat.

[0085] Figure 18c Fig. 5 is a schematic structural diagram of the water outlet seat after removing a second coupler. Figure 18b Fig. 6 is a schematic structural diagram of a cross section of the water outlet seat after removing the second coupler.

[0086] Figure 18d Fig. 7 is a schematic structural diagram of a local cross section of the cup assembly. Figure 18b Fig. 8 is a schematic structural diagram of a local cross section of the cup assembly after removing the second coupler.

[0087] Figure 19 Fig. 9 is a schematic structural diagram of a principle structure of the beverage equipment according to an embodiment of the present application. Figure 18a Fig. 10 is a schematic structural diagram of a principle structure of the beverage equipment according to another embodiment of the present application.

[0088] Figure 20 DETAILED DESCRIPTION

[0089] In order to make the technical solutions and beneficial effects of the present application more obvious and easy to understand, the following will be described in detail by way of listing specific embodiments. The drawings are not necessarily drawn to scale, and local features can be enlarged or reduced to more clearly show the details of local features; unless otherwise defined, the technical and scientific terms used herein have the same meaning as the technical and scientific terms in the technical field to which the present application belongs.

[0090] In the description of the present application, the orientations or positional relationships indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "height", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of simplified description of the present application, and do not indicate that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, i.e. cannot be understood as limiting the present application.

[0091] In the present application, the terms "first" and "second" are only used for the purpose of clear description, and cannot be understood as the relative importance of the indicated features or the number of the indicated technical features. Therefore, the features defined with "first" and "second" can explicitly include at least one of the features. In the description of the present application, the meaning of "multiple" is at least two, such as two, three, etc.; the meaning of "several" is at least one, such as one, two, three, etc.; except for explicit specific limitations.

[0092] ​In the present application, unless otherwise explicitly defined, the terms "mounting", "connecting", "connecting", "fixing", "arranging" and the like should be understood in a broad sense. For example, "connecting" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through intermediate medium, or the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0093] In the present application, unless otherwise explicitly defined, the first feature "on", "over", "above" and "on", "below", "under", "below" or "below" the second feature can be direct contact between the first feature and the second feature, or indirect contact between the first feature and the second feature through intermediate medium. Moreover, the first feature "over", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate that the horizontal height of the first feature is higher than the horizontal height of the second feature. The first feature "under", "below" and "below" the second feature can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than the horizontal height of the second feature.

[0094] Referring to Figures 1 to 13 , the beverage equipment provided by an embodiment of the present application comprises a water storage tank, a cup assembly 110 and a water outlet seat 120. The water storage tank is used for storing liquid, and the cup assembly 110 is used for receiving liquid from the water storage tank. The cup assembly 110 comprises a cup body 111 and a first coupler 112 arranged at the bottom of the cup body 111. The first coupler 112 comprises a first connecting wall 112a and a plurality of first conductive parts 112b. The plurality of first conductive parts 112b are arranged on the first connecting wall 112a at intervals. The water outlet seat 120 is provided with a second coupler 121. The second coupler 121 is provided with a plurality of second conductive parts 121a corresponding to the first conductive parts 112b one by one.

[0095] The cup assembly 110 described above, since the plurality of first conductive parts 112b are arranged on the first connecting wall 112a, without the need for multi-circle arrangement, thereby avoiding the area of the bottom wall being relatively large. Figure 15a 、 Figure 15b and Figure 15c As shown in the above cup assembly 110, the plurality of first conductive parts 112b can be arranged on one connecting wall 112a.

[0096] Specifically, it can be understood that the plurality of first conductive parts 112b include a zero line conductive part, a fire line conductive part, a ground line conductive part, two signal line conductive parts, and a spare conductive part. The spare conductive part can not be electrically connected with any of the zero line, the fire line, the ground line, or the signal line, and is in a non-use state. Exemplarily, if the zero line conductive part, the fire line conductive part, the ground line conductive part, or the signal conductive part is damaged, the spare conductive part can be used for replacement.

[0097] The cup body 111 is provided with a heating assembly 117 for heating the liquid in the cup body 111. It can be understood that the first coupler 112 and the second coupler 121 are arranged to supply power to the heating assembly 117 so that the heating assembly 117 generates heat.

[0098] The first abutment wall 112a is annular.

[0099] The first coupler 112 is provided with a water outlet avoiding space 112c penetrating through the first coupler 112, and the second coupler 121 is also provided with a water outlet avoiding space 112c penetrating through the second coupler 121. When the cup assembly 110 is installed in the water outlet seat 120 and the second coupler 121 is assembled with the first coupler 112, the water outlet avoiding space 112c on the first coupler 112 and the water outlet avoiding space 112c on the second coupler 121 are abutted to form a water outlet space for the liquid flowing out of the first water outlet 111a.

[0100] The first abutment wall 112a is arranged around the water outlet avoiding space 112c on the first coupler 112, that is, the first abutment wall 112a is formed as a side wall of the water outlet avoiding space 112c on the first coupler 112. It should be noted that the water outlet seat 120 further includes a second water outlet pipe 128. When the cup assembly 110 is installed in the water outlet seat 120, the second water outlet pipe 128 is inserted into the water outlet avoiding space 112c on the second coupler 121. The water in the cup 111 can flow out through the second water outlet pipe 128. The water outlet avoiding space 112c is used for the liquid flowing out of the first water outlet 111a to pass through, for the purpose of avoiding.

[0101] The water outlet avoiding space 112c provided on the first coupler 112 can make the liquid flowing out of the first water outlet 111a share the same space with the first coupler 112, without occupying the space at the bottom of the cup assembly 110 to avoid the liquid flowing out of the first water outlet 111a, which is beneficial to improve the utilization rate of the space at the bottom of the cup assembly 110 and reduce the area of the bottom of the cup assembly 110.

[0102] More specifically, the first connecting wall 112a is in the shape of a circular ring. It can be understood that in other embodiments, the first connecting wall 112a is not limited to the shape of a circular ring, but can also be in the shape of a square ring or any other regular or irregular shape.

[0103] The outer side of the first connecting wall 112a is provided with a plurality of conductive accommodation grooves 112d arranged in sequence at intervals, and a plurality of first conductive members 112b correspond to the plurality of conductive accommodation grooves 112d one-to-one. The first conductive member 112b is located in the corresponding conductive accommodation groove 112d. On the one hand, through the conductive accommodation groove 112d, the first conductive member 112b can be conveniently positioned and installed; on the other hand, by spacing the plurality of first conductive members 112b through the conductive accommodation groove 112d, the phenomenon of short circuit can be avoided.

[0104] Specifically, the first conductive member 112b is in the shape of a fan ring column, which is convenient for electrical contact with the second conductive member 121a. It can be understood that in other embodiments, the first conductive member 112b is not limited to the shape of a fan ring column, but can also be in any other regular or irregular shape.

[0105] In the embodiments of the present application, in addition to being arranged in the shape of a fan ring column around the outer side of the first connecting wall 112a as shown in Figure 4 , the first conductive member 112b can also be in the shape of a ring.

[0106] Figures 16a to 19 An example of a partial cross-sectional view of a beverage device provided by another embodiment is shown.

[0107] As shown in Figure 18a , in some optional embodiments, the first connecting wall 112a is in the shape of a ring, the plurality of first conductive members 112b are ring-shaped members with different inner diameters, and the axes of the plurality of first conductive members 112b coincide with the axis of the first connecting wall 112a.

[0108] Compared with the corresponding embodiment, Figures 1 to 15c , in the embodiment shown in Figures 16a to 19 , the number of the first connecting wall 112a is at least one. If the number of the first connecting wall 112a is a plurality, it means two or more. The inner diameters of the plurality of first connecting walls 112a are different, and the axes of the plurality of first connecting walls 112a coincide. The water outlet avoiding space 112c on the first coupler 112 is formed by the first connecting wall 112a with the smallest inner diameter among the plurality of first connecting walls 112a. That is, the first connecting wall 112a with the smallest inner diameter forms the water outlet avoiding space 112c on the first coupler 112.

[0109] For a circular ring, the axis of the first conductive member 112b is the center of the circle in which the first conductive member 112b is located. For a rectangular ring, the axis of the first conductive member 112b is the intersection of the two diagonals of the rectangle in which the first conductive member 112b is located.

[0110] Taking a circular ring as an example: the first butt wall 112a is in the shape of a circular ring, and the plurality of first conductive members 112b are circular members with different diameters and the same center, and the centers of the plurality of first conductive members 112b coincide with the center of the circle in which the first butt wall 112a is located.

[0111] The first conductive member 112b can be installed in at least one of the following ways: one first conductive member 112b is installed on one side of one first butt wall 112a; one first conductive member 112b is installed on each of the opposite sides of one first butt wall 112a; the first coupler 112 further has a plurality of slots (not shown) coaxial with the first butt wall 112a and spaced apart, and the first conductive member 112b is clamped or inserted into the slots.

[0112] The plurality of first conductive members 112b on the first coupler 112 of one beverage device can be installed in different ways as described above. For example, as shown in Figure 18a The number of first conductive members 112b is five, the number of first butt walls 112a is three, and for distinction, they are respectively denoted as first butt wall 112a (A), first butt wall 112a (B), and first butt wall 112a (C). The first butt wall 112a (B) is located between the first butt wall 112a (A) and the first butt wall 112a (C), and among the three first butt walls 112a, the inner diameter of the first butt wall 112a (A) is the smallest, and the inner diameter of the first butt wall 112a (C) is the largest. A slot (not shown) is provided between the first butt wall 112a (A) and the first butt wall 112a (B). One first conductive member 112b can be installed on the inner side of the first butt wall 112a (A), one first conductive member 112b can be installed on each of the opposite sides of the first butt wall 112a (B), one first conductive member 112b can be installed in the slot, and this first conductive member 112b installed in the slot can conduct electricity on both sides because there is no obstruction on both sides. One first conductive member 112b can be installed on the inner side of the first butt wall 112a (C). In this way, the installation of the five first conductive members 112b is achieved. It can be understood that for the installation of the ring-shaped first conductive member 112b as shown in Figure 18a The installation of the ring-shaped first conductive member 112b as shown in

[0113] The first conductive member 112b is in the shape of a ring. It can be understood that in other embodiments, the first conductive member 112b is not limited to being in the shape of a circular ring, but can also be in the shape of a square ring or other regular or irregular shapes.

[0114] Referring to Figure 3 The bottom wall of the cup body 111 is provided with a first water outlet 111a. The ratio of the area of the first water outlet 111a to the bottom area of the cup body 111 is 0.1-0.5. Thus, the liquid in the cup body 111 can flow out smoothly.

[0115] The cup body assembly 110 further comprises a first water outlet pipe 116 provided at the first water outlet 111a, and the first conductive member 112b is spaced apart from the first water outlet pipe 116 to reduce the risk of the first conductive member 112b being wetted.

[0116] The water outlet avoiding space 112c on the first coupler 112 is used for the first water outlet pipe 116 communicating with the first water outlet 111a to pass through. The water outlet avoiding space 112c on the second coupler 121 is used for the second water outlet pipe 128 communicating with the first water outlet pipe 116 to pass through. The water outlet avoiding space 112c on the second coupler can be coaxial with the water outlet avoiding space 112c on the first coupler 112.

[0117] The liquid flowing out of the first water outlet 111a enters the first water outlet pipe 116, and then enters the second water outlet pipe 128 from the first water outlet pipe 116. Generally, in order to avoid the first water outlet 111a and reduce the influence of the liquid on the first conductive member 112b, the first water outlet 111a is spaced apart from the first coupler 112, but this will result in a larger diameter of the bottom of the cup body assembly 110. In the embodiment of the application, the water outlet avoiding space 112c is used to accommodate the first water outlet pipe 116 and the second water outlet pipe 128, so that the first water outlet pipe 116 and the first coupler 112 occupy the same space, which is conducive to reducing the bottom area of the cup body assembly 110. The inner wall of the water outlet avoiding space 112c on the first coupler 112 and the water outlet avoiding space 112c on the second coupler 121 will not be in contact with the liquid, the liquid is located in the first water outlet pipe 116 and the second water outlet pipe 128, and the first conductive member 112b will not be affected because the water outlet avoiding space 112c is provided on the first coupler 112.

[0118] Referring to Figure 4 The first conductive member 112b is spaced apart and surrounds the outside of the first butt wall 112a, so as to better space apart the first conductive member 112b from the first water outlet pipe 116, thereby reducing the risk of the first conductive member 112b being wetted.

[0119] In some optional embodiments, in the projection along the axis direction of the cup body 111, the projection of the first water outlet 111a is located within the projection range of the upper water outlet avoiding space 112c of the first coupler 112. The inner diameter of the first water outlet 111a can be less than or equal to the inner diameter of the upper water outlet avoiding space 112c of the first coupler 112, and the inner diameter of at least a partial region of the first water outlet pipe 116 is less than the inner diameter of the upper water outlet avoiding space 112c of the first coupler 112, so as to be arranged in the upper water outlet avoiding space 112c of the first coupler 112.

[0120] In some optional embodiments, the upper water outlet avoiding space 112c of the first coupler 112 is coaxially distributed with the first water outlet 111a.

[0121] In some optional embodiments, the upper water outlet avoiding space 112c of the first coupler 112, the first water outlet 111a, the first water outlet pipe 116 and the second water outlet pipe 128 are coaxially distributed.

[0122] The water outlet seat 120 is detachably connected with the cup body assembly 110, so as to, on the one hand, facilitate the disassembly of the cup body assembly 110, thereby realizing the cleaning of the cup body 111 in the cup body assembly 110; on the other hand, after the cup body assembly 110 is detached from the water outlet seat 120, the power supply of the first coupler 112 is disconnected, thereby avoiding the risk of short circuit; on the other hand, it is also convenient for the maintenance of the cup body assembly 110 and the water outlet seat 120.

[0123] Referring to Figure 2 , Figure 5 and Figure 18a , the cup body assembly 110 is provided with at least one first locking portion 114, and the water outlet seat 120 is provided with at least one second locking portion 123; the first locking portion 114 and the second locking portion 123 are locked and connected to realize the locking of the cup body assembly 110 and the water outlet seat 120.

[0124] Exemplarily, if the number of the first locking portion 114 is multiple, the multiple first locking portions 114 are distributed at intervals along the circumferential direction of the cup body assembly 110. The interval between each adjacent two first locking portions 114 can be the same.

[0125] Specifically, the first locking portion 114 and the second locking portion 123 are both clamping portions; the first locking portion 114 and the second locking portion 123 are buckled and connected. Of course, it can be understood that in other embodiments, the first locking portion and the second locking portion are not limited to clamping portions, but can also be other lockable structures.

[0126] As Figure 5As shown, the first locking portion 114 includes a first circumferential limiting portion 114a and a first longitudinal limiting portion 114b. The second locking portion 123 includes a second circumferential limiting portion 123a matched with the first circumferential limiting portion 114a, and a second longitudinal limiting portion 123b matched with the first longitudinal limiting portion 114b.

[0127] In some embodiments, the cup assembly 110 is provided with a first annular positioning portion 115, and the water outlet seat 120 is provided with a second annular positioning portion 124 matched with the first annular positioning portion 115. Thus, when the cup assembly 110 and the water outlet seat 120 are assembled, on the one hand, the cup assembly 110 and the water outlet seat 120 can be quickly aligned, thereby improving the assembly speed of the cup assembly 110 and the water outlet seat 120; on the other hand, the first conductive part 112b and the corresponding second conductive part 121a can be accurately aligned, avoiding the phenomenon that the first conductive part 112b and the second conductive part 121a cannot be electrically connected or short-circuited due to alignment errors.

[0128] Specifically, the first annular positioning portion 115 is a positioning slot extending in the circumferential direction. The second annular positioning portion 124 is a positioning part matched with the positioning slot. The second annular positioning portion 124 can slide in the circumferential direction within the first annular positioning portion 115. Of course, it can be understood that the structure of the first annular positioning portion 115 and the second annular positioning portion 124 is not limited to this, and can also be any structure that can achieve positioning, such as a wedge-shaped structure, etc., as long as the cup assembly 110 and the water outlet seat 120 can be positioned.

[0129] Figure 15b and Figure 15c The cross-sectional view of the beverage equipment is exemplarily shown, wherein D is the assembly position of the first locking portion 114 and the second locking portion 123, and E is the assembly position of the first longitudinal limiting portion 114b and the second longitudinal limiting portion 123b.

[0130] When the water outlet seat 120 is assembled with the cup assembly 110, the first locking portion 114 of the cup assembly 110 can be aligned and contacted with the second locking portion 123 on the water outlet seat 120. At this time, as shown in Figure 15b , the cup assembly 110 and the water outlet seat 120 are in an un-assembled state. Then, the water outlet seat 120 is rotated in the circumferential direction of the water outlet seat 120, and / or the cup assembly 110 is rotated in the circumferential direction of the cup assembly, so that the first circumferential limiting portion 114a and the second circumferential limiting portion 123a abut to prevent the water outlet seat 120 and / or the cup assembly 110 from continuing to rotate, and the first longitudinal limiting portion 114b and the second longitudinal limiting portion 123b abut to limit the relative movement between the water outlet seat 120 and the cup assembly 110 in the longitudinal direction. At this time, as shown in Figure 15c , the cup assembly 110 and the water outlet seat 120 are assembled in place.

[0131] After the water outlet base 120 is assembled with the cup assembly 110, the water outlet base 120 and the cup assembly 110 are coaxial or substantially coaxial, and the longitudinal direction can be understood as the axial direction. The rotation directions of the cup assembly 110 and the water outlet base 120 are opposite.

[0132] After the first locking part 114 of the cup assembly 110 is in alignment and contact with the second locking part 123 on the water outlet base 120, the first annular positioning part 115 is also in alignment and contact with the second annular positioning part 124. When the water outlet base 120 and / or the cup assembly 110 rotate, the first annular positioning part 115 also rotates relative to the second annular positioning part 124. If the first annular positioning part 115 is a positioning slot extending in the circumferential direction, and the second annular positioning part 124 is a positioning piece matched with the positioning slot, the positioning piece is in different positions of the positioning slot before and after the water outlet base 120 and / or the cup assembly 110 rotate.

[0133] Exemplarily, as shown in Figure 2 , the first annular positioning part 115 can be arranged on the first coupler 112, and as shown in Figure 5 , the second annular positioning part 124 can be arranged on the second coupler 121.

[0134] When the cup assembly 110 and the water outlet base 120 are assembled in place, it also means that the first coupler 112 and the second coupler 121 are assembled in place, and the first conductive part 112b and the corresponding second conductive part 121a are precisely aligned. When the cup assembly 110 and the water outlet base 120 are not assembled in place, it also means that the first coupler 112 and the second coupler 121 are not assembled in place, and it cannot be guaranteed that the first conductive part 112b and the corresponding second conductive part 121a are precisely aligned.

[0135] It can be understood that, for the beverage device shown in Figures 2 to 11 a , Figure 11 c , and Figures 12 to 15c , since the plurality of first conductive parts 112b are spaced apart and arranged on the same first abutting wall 112a, in order to ensure that the first conductive part 112b and the corresponding second conductive part 121a are aligned when the first coupler 112 and the second coupler 121 are assembled in place, the first annular positioning part 115 and the second annular positioning part 124 need to be arranged. For the beverage device shown in Figures 16a to 19 , since the first conductive part 112b is annular, when the first coupler 112 and / or the second coupler 121 rotate, the first conductive part 112b is more easily aligned with the corresponding second conductive part 121a, and therefore, for the beverage device embodiments shown in Figure 11 b , Figure 11 d , and Figures 16a to 19 , the first annular positioning part 115 and the second annular positioning part 124 can not be arranged.

[0136] The cooperation of the first ring positioning part 115 and the second ring positioning part 124 can achieve the preliminary positioning of the first conductive part 112b and the corresponding second conductive part 121a, and the cooperation of the first locking part 114 and the second locking part 123 can further improve the accuracy of the positioning of the first conductive part 112b and the corresponding second conductive part 121a.

[0137] Referring to Figures 6 to 8 , the second conductive part 121a includes a coupling contact part 121b for electrically contacting the first conductive part 112b. The second coupler 121 includes a docking body 121d. The docking body 121d has a docking groove 121e matched with the first docking wall 112a. A first via hole 121f corresponding to the second conductive part 121a is arranged on the bottom wall of the docking groove 121e. The coupling contact part 121b is inserted into the corresponding first via hole 121f, and there is a gap between the coupling contact part 121b and the side wall of the first via hole 121f, so that the water flow flowing into the docking groove 121e and located near the second conductive part 121a can fall through the first via hole 121f, avoiding the accumulation of water flow around the second conductive part 121a, thereby avoiding the short circuit phenomenon.

[0138] It can be understood that the groove wall of the docking groove 121e not only includes the bottom wall, but also includes the inner side wall 121g and the outer side wall 121g spacedly distributed in the docking groove 121e. In addition to arranging the first via hole 121f on the bottom wall of the docking groove 121e, the first via hole 121f can also be arranged on other groove walls of the docking groove 121e.

[0139] The water outlet seat 120 further includes a base shell for carrying the second coupler 121. The base shell has a drain port lower than the first via hole 121f and in communication with the first via hole 121f. The water flow passing through the first via hole 121f can flow out through the drain port. Flowing out can refer to flowing out of the water outlet seat 120, for example, if the beverage equipment is placed on a table top, flowing out can refer to flowing out of the water outlet seat 120 into a water collecting box.

[0140] Exemplarily, as shown in Figure 6 , Figure 8 , Figure 9 , Figure 18c and Figure 18d , the base shell includes a first shell 125 and a second shell 127 located at the bottom side of the first shell 125. The drain port includes a second via hole 125c located on the first shell 125 and a drain hole 127a located on the second shell 127. The second via hole 125c is lower than the first via hole 121f, and the drain hole 127a is lower than the second via hole 125c. The water flow passing through the first via hole 121f can flow to the drain hole 127a through the second via hole 125c and flow out through the drain hole 127a.

[0141] The first shell 125 is provided with a coupler mounting position 125a matched with the docking body 121d. The coupler mounting position 125a is provided with a mounting position bottom wall 125b located at the bottom side of the docking body 121d. Exemplarily, a second through hole 125c is opened on the mounting position bottom wall 125b. The water flow passing through the first through hole 121f can flow out through the second through hole 125c, so as to timely drain the water flow passing through the first through hole 121f.

[0142] Specifically, one second through hole 125c can correspond to one second conductive part 121a, or can be arranged in correspondence with a plurality of second conductive parts 121a. Referring to Figure 7 The first shell 125 shown is provided with five second through holes 125c. Among them, Figure 7 The second through hole 125c located at the upper side is arranged in correspondence with two second conductive parts 121a. The second through hole 125c located at the lower side is arranged in correspondence with one second conductive part 121a. It can be understood that in another embodiment, the arrangement of the second through hole 125c is not limited to this, as long as the second conductive part 121a is arranged in the second through hole 125c.

[0143] Referring to Figure 6 and Figure 18d The coupler mounting position 125a is further provided with a first sealing ring 126, which is sealingly attached to the second coupler 121, for example, the first sealing ring 126 is sealingly attached to the outer edge of the docking body 121d of the second coupler 121. Thus, the second coupler 121 and the coupler mounting position 125a are sealingly connected, avoiding water flow and the like from falling into through the edge of the second coupler 121. In addition, Figure 6 In the embodiment shown, the second conductive part 121a further includes a power contact part 121c, and the power contact part 121c is located at the bottom side of the docking body 121d and protrudes from the outer edge of the docking body 121d. The docking body 121d and the coupler mounting position 125a are sealingly connected to prevent the power contact part 121c from being damp.

[0144] Referring to Figure 6 and Figure 9The water outlet base 120 further comprises a second housing 127 located at the bottom side of the first housing 125. The bottom side of the second housing 127 is provided with a drain hole 127a and a water guide avoiding hole 127b. The drain hole 127a is in communication with the water guide avoiding hole 127b. The water outlet base 120 further comprises a second water outlet pipe 128 inserted into the water guide avoiding hole 127b, and the second water outlet pipe 128 has a gap with the sidewall of the water guide avoiding hole 127b. Thus, the water flow out of the second through hole 125c can flow out through the drain hole 127a and the gap between the second water outlet pipe 128 and the sidewall of the water guide avoiding hole 127b in sequence. This can avoid liquid remaining in the water outlet base 120, thereby avoiding damage or injury to the devices in the water outlet base 120 due to moisture, and improving the service life of the water outlet base 120.

[0145] In addition, after the first locking portion 114 and the second locking portion 123 are locked, the connection strength between the cup assembly 110 and the water outlet base 120 is increased, thereby the sealing tightness of the sealing part in the beverage equipment can be increased. For example, compared with the water outlet base 120 without the cup assembly 110, after the first locking portion 114 and the second locking portion 123 are locked, the cup assembly 110 can increase the pressure on the water outlet base 120 by at least its own gravity, and under the action of this pressure, the sealing effect of the first sealing ring 126 can be increased at least.

[0146] Referring to Figure 9 The drain hole 127a is arranged on the sidewall of the water guide avoiding hole 127b. Of course, it can be understood that in another possible implementation, the drain hole is not limited to being arranged on the sidewall of the avoiding hole, but can also be arranged at any other position, as long as the drain hole is in communication with the water guide avoiding hole and the water flow in the drain hole can flow into the water guide avoiding hole.

[0147] Referring to Figure 5 , Figure 10 and Figure 18d The water outlet base 120 comprises a first housing 125 provided with a coupler mounting position 125a matched with the docking body 121d. As shown in Figure 10 and Figure 18b , the first housing 125 is provided with a third through hole 125d offset from the coupler mounting position 125a. Thus, the water flow falling on the water outlet base 120 and offset from the coupler mounting position 125a can flow down through the third through hole 125d. It can be understood that the water flow flowing down through the third through hole 125d can also flow out through the drain hole 127a and the gap between the second water outlet pipe 128 and the sidewall of the water guide avoiding hole 127b in sequence.

[0148] Figure 5 and Figure 10In the illustrated embodiment, the second locking portion 123 is arranged on the first housing 125. The second locking portion 123 covers the third through hole 125d. Thus, in the case that the water flow can be discharged, the third through hole 125d can also be avoided from being exposed, and further, the impurities in the environment can be avoided from entering the water outlet seat 120 through the third through hole 125d.

[0149] Optionally, as Figure 18b illustrated in the illustrated embodiment, the second locking portion 123 can also not cover the third through hole 125d.

[0150] In the present application, the third through hole 125d and the second locking portion 123 are both two and one-to-one correspondence. It can be understood that in another embodiment, the number of third through holes 125d is not limited to two, but also can be one or more than two. Similarly, in another embodiment, the third through hole 125d and the second locking portion 123 are not limited to one-to-one correspondence. Specifically, the second locking portion 123 can correspond to one or more third through holes 125d, or can not correspond to any third through hole 125d.

[0151] Of course, it can be understood that in another embodiment, the third through hole 125d can also not be covered by the second locking portion 123, or not completely covered by the second locking portion 123.

[0152] In addition, it can be understood that Figure 5 and Figure 10 In the illustrated embodiment, the third through hole 125d is a square hole. It can be understood that in another embodiment, the third through hole 125d can be a regular or irregular shape such as a circular hole.

[0153] Referring to Figure 1 , Figure 11 a , Figure 11 b and Figure 12 , the cup assembly 110 further comprises a heating assembly 117 for heating the liquid in the cup 111, and a first water outlet pipe 116. The beverage device further comprises a water receiving container 160 arranged at the bottom side of the cup assembly 110. The water receiving container 160 is used to receive the liquid flowing out of the first water outlet pipe 116.

[0154] The arrangement of the heating assembly 117 can reheat the liquid flowing into the cup 111, so that the temperature of the liquid flowing into the receiving container is higher, so as to meet more demands of people on the water flow.

[0155] Specifically, the heating assembly 117 includes two conductive contacts 117a arranged at the bottom of the cup body 111, and a plurality of heating elements 117b in thermal contact with the bottom of the cup body 111. The plurality of heating elements 117b are electrically connected to the two conductive contacts 117a. The heating elements 117b generate heat after being powered on, so as to transmit heat to the liquid in the cup body 111 through the bottom wall of the cup body 111, thereby heating the liquid in the cup body 111. It can be understood that the bottom wall of the cup body 111 can conduct heat. Therefore, the heat generated by the heating elements 117b can be transmitted to the liquid in the cup body 111 through the bottom wall of the cup body 111.

[0156] Specifically, the heating elements 117b are heating fins attached to the bottom wall of the cup body 111 to transmit heat to the bottom wall of the cup body 111. The heating fins are attached to the bottom wall of the cup body 111, and the heating fins and the bottom wall of the cup body 111 have a large contact area, so as to better transmit heat to the liquid in the cup body 111. Of course, it can be understood that in another embodiment, the heating element is not limited to a heating fin, but can also be any other component that can generate heat after being powered on.

[0157] Referring to Figure 12 , the heating elements 117b are arranged on the bottom wall of the cup body 111 in a substantially uniform manner, so that the bottom wall of the cup body 111 can be heated more uniformly, and thus the liquid in the cup body 111 can be heated more uniformly.

[0158] More specifically, Figure 12 In the embodiment shown, the heating elements 117b are all fan ring-shaped and share a common center. It can be understood that in another embodiment, the shape of the heating elements 117b is not limited to a fan ring shape, but can also be any other regular or irregular shape.

[0159] The heating assembly 117 includes three heating branch circuits 117c. In the heating branch circuit 117c, there are three or five heating elements 117b, and the heating elements 117b in the same heating branch circuit 117c are connected in series. Specifically, Figure 12 In the embodiment shown, three heating branch circuits 117c are selected by the dashed line frame. It can be understood that the dashed line only serves to frame the heating branch circuit 117c, and does not exist on the bottom wall of the heating assembly 117 or the cup body 111.

[0160] It can be understood that in another embodiment, the number of heating elements in the heating branch circuit is not limited to three or five, but can also be one, two, four, or more than five.

[0161] In addition, the heating elements 117b are arranged away from the dry burning element and the fuse element on the first coupler 112. The dry burning element and the fuse element are in thermal contact with the cup bottom wall 111c of the cup body 111, so as to cut off the power supply of the heating assembly 117 by the first coupler 112 when the temperature of the cup bottom wall 111c is too high.

[0162] Referring to Figure 11 a and Figure 11 b , the second water outlet pipe 128 is movably arranged in the water outlet seat 120. The second water outlet pipe 128 is movable to switch between a first position and a second position. When the second water outlet pipe 128 is in the first position, the liquid in the cup body 111 can flow out of the first water outlet 111a, and the second water outlet pipe 128 is located outside the first water outlet pipe 116, see Figure 11 b . Referring to Figure 11 a , the second water outlet pipe 128 is in the second position, and at this time, the liquid in the cup body 111 cannot flow out of the first water outlet 111a. The beverage device further comprises a sealing structure 130. The sealing structure 130 is used to realize the sealing butt joint of the second water outlet pipe 128 and the first water outlet pipe 116 when the second water outlet pipe 128 is in the first position, so as to isolate the inner cavity of the second water outlet pipe 128 from the external device. Thus, the evaporation of water vapor in the water flow through the second water outlet pipe 128 to the external device is avoided, thereby avoiding the external device from being damp, and improving the service life of the external device.

[0163] Specifically, it can be understood that the external device includes the second conductive part 121a in the second coupler 121, all electrical elements located on the second coupler 121 such as the power pin electrically connected with the second coupler 121, and the heating element located at the bottom of the cup body 111.

[0164] Specifically, the sealing structure 130 comprises a second sealing ring 131. When the second water outlet pipe 128 is in the first position, the second sealing ring 131 is annular; the second sealing ring 131 is in sealing butt joint with the side wall of the first water outlet pipe 116 and the side wall of the second water outlet pipe 128, see Figure 11 b . The second sealing ring 131 is sleeved on the first water outlet pipe 116, that is, the inner side surface of the second sealing ring 131 is sealingly fitted with the outer side surface of the first water outlet pipe 116, so as to realize the sealing butt joint of the second sealing ring 131 and the side wall of the first water outlet pipe 116. It can be understood that in another embodiment, the sealing butt joint manner of the second sealing ring and the side wall of the first water outlet pipe is not limited to this, and the sealing butt joint with the side wall of the first water outlet pipe can be realized.

[0165] The second water outlet pipe 128 has a butt joint end 128a close to the first water outlet pipe 116. When the second water outlet pipe 128 is in the first position, the second sealing ring 131 is in sealing abutment with the butt joint end 128a of the second water outlet pipe 128. It can be understood that the inner diameter of the second water outlet pipe 128 is greater than the outer diameter of the first water outlet pipe 116, so that the second water outlet pipe 128 can be partially sleeved on the first water outlet pipe 116, so that the water flow in the first water outlet pipe 116 can smoothly flow into the second water outlet pipe 128.

[0166] The second coupler 121 comprises a docking body 121d. The docking body 121d has a docking groove 121e matching the first docking wall 112a. As shown in Figure 6 and Figure 11 c , the inner side wall 121g of the docking groove 121e is in sealing abutment with the second sealing ring 131. Thus, the inner cavity of the second water outlet pipe 128 is further isolated from external devices, so as to better protect the external devices.

[0167] Of course, it can be understood that in other embodiments, the way to achieve the sealing docking of the first water outlet pipe and the second water outlet pipe is not limited to this. For example, the sealing docking of the first water outlet pipe and the second water outlet pipe can also be achieved by the way that the docking body is in sealing docking with the second sealing ring, and the second sealing ring is in sealing docking with the second water outlet pipe.

[0168] For the activity mode of the second water outlet pipe, see the driving mode of the water outlet nozzle in the application file with the application number CN202021450472.4, which will not be repeated here. It can be understood that in other embodiments, the way to drive the second water outlet pipe to move is not limited to the way described in CN202021450472.4, but can also be any other way that can drive the second water outlet pipe to move.

[0169] Referring to Figure 3 and Figure 13 , the cup body 111 comprises a cup side wall 111b and a cup bottom wall 111c. It can be understood that the cup bottom wall 111c is in sealing docking with the cup side wall 111b. The cup bottom wall 111c is formed of a heat-conducting material to achieve the aforementioned heat-conducting function. Optionally, the cup side wall 111b is at least partially formed of a heat-insulating material to achieve a heat-insulating function; or the cup side wall 111b is formed of a transparent material to facilitate the user to see the situation inside the inner cavity of the cup body 111, thereby achieving an aesthetic effect.

[0170] Optionally, the edge of the cup bottom wall 111c is provided with an annular groove 111e matching the bottom of the cup side wall 111b. The cup bottom wall 111c of the cup body 111 is fixedly connected with the cup side wall 111b by edible glue. It can be understood that in other embodiments, the fixing way of the cup bottom wall 111c of the cup body 111 and the cup side wall 111b is not limited to this, but can also be achieved by any other way.

[0171] Referring to Figure 3 , Figures 11 a to 11 c , and Figure 13The first water outlet pipe 116 has an edge 116a matching the side wall of the first water outlet 111a at one end. The edge 116a is annular and sealingly overlaps the side wall of the first water outlet 111a, i.e. can overlap the bottom wall of the cup body 111, to prevent the liquid in the cup body 111 from flowing out through the gap between the first water outlet pipe 116 and the first water outlet 111a. In addition, the first water outlet pipe 116 overlaps the side wall of the first water outlet 111a, which can also prevent the first water outlet pipe 116 from slipping off the first water outlet 111a.

[0172] Further, the inner side of the side wall of the first water outlet 111a is provided with an overlapping groove 111d matching the edge 116a. The overlapping groove 111d can realize the positioning of the edge 116a, i.e. the positioning of the first water outlet pipe 116, and can prevent the first water outlet pipe 116 from moving in a direction substantially parallel to the cup bottom wall 111c. It can be understood that the overlapping groove 111d is also annular.

[0173] The cup body assembly 110 further comprises a third sealing ring 118. The third sealing ring 118 is located in the overlapping groove 111d and sealingly abuts the edge 116a, thereby realizing the sealing overlap of the edge 116a and the inner wall of the overlapping groove 111d, i.e. the sealing overlap of the edge 116a and the side wall of the first water outlet 111a.

[0174] Specifically, the third sealing ring 118 has an L-shaped cross section, which increases the contact area of the third sealing ring 118 with the inner surface of the overlapping groove 111d and also increases the contact area of the third sealing ring 118 with the edge 116a, thereby improving the sealing performance between the edge 116a and the overlapping groove 111d.

[0175] Further, the outer side of the first water outlet pipe 116 is provided with external threads. As shown in Figure 11 c The cup body assembly 110 further comprises a fixing member 119 for fixing the first water outlet pipe 116, and the fixing member 119 has internal threads matching the external threads on the first water outlet pipe 116. The fixing member 119 is located on the bottom side of the cup body 111 and abuts the cup bottom wall 111c of the cup body 111. That is, the fixing member 119 can prevent the first water outlet pipe 116 from moving in a direction pointing to the inner cavity of the cup body 111. Therefore, the fixing member 119 and the edge 116a jointly act to keep the first water outlet pipe 116 relatively fixed with the cup body 111, so as to ensure the sealing performance between the edge 116a and the overlapping groove 111d, i.e. the sealing performance between the first water outlet pipe 116 and the side wall of the first water outlet 111a.

[0176] As shown in Figure 11 cAs shown, specifically, the cup assembly 110 includes a protective housing 1110 disposed at the bottom of the cup body 111. Along the axial direction of the first outlet 111a, the fixing member 119 abuts against the protective housing 1110, and the protective housing 1110 abuts against the bottom wall 111c of the cup body 111, so as to achieve the abutment between the fixing member 119 and the bottom wall 111c of the cup body 111.

[0177] The protective housing 1110 may be part of the first coupler 112. For example, the protective housing 1110 may be a coupler bracket in the first coupler 112 that carries the first conductive element 112b, and the aforementioned docking body 121d may be part of the coupler bracket.

[0178] It is understandable that the cup assembly 110 may not have a fixing member 119 for securing the first water outlet pipe 116. For example... Figure 11 b and Figure 11 d The first water outlet pipe 116 shown has no fixing part 19.

[0179] See Figure 11 c The cup assembly 110 also includes a filter element 1111 disposed in the inner cavity of the first water outlet pipe 116. Specifically, the filter element 1111 is disposed at one end of the first water outlet pipe 116 near the inner cavity of the cup assembly 111 to prevent filtered substances from accumulating in the first water outlet pipe 116, thereby preventing water from flowing out smoothly, and also to prevent the first water outlet pipe 116 from accumulating in the first water outlet pipe 116, which would increase the number of times the first water outlet pipe 116 needs to be cleaned and make it difficult to clean.

[0180] Optionally, the filter element 1111 is detachably mounted on the first water outlet pipe 116, thereby facilitating the cleaning of the first water outlet pipe 116 and the filter element 1111.

[0181] Specifically, the first water outlet pipe 116 includes an installation section 116c near the inner cavity of the cup body 111, and a main body section 116d located in the installation section 116c away from the inner cavity of the cup body 111; the inner diameter of the installation section 116c is larger than the inner diameter of the main body section 116d; the filter element 1111 abuts against the side wall of the installation section 116c. This prevents the filter element 1111 from moving away from the cup body 111, allowing the filter element 1111 to be more stably fixed at the end of the first water outlet pipe 116 near the inner cavity of the cup body 111.

[0182] Optionally, the side of the filter element 1111 may be entirely abutted against the side wall of the mounting section 116c, or it may be partially abutted against the side wall of the mounting section 116c.

[0183] See Figure 11 cThe cup assembly 110 further comprises a valve assembly 1112 arranged in the inner cavity of the first water outlet pipe 116. Specifically, the valve assembly 1112 comprises a valve core 1112a, a reset member 1112b, and a valve sealing member 1112c. The valve core 1112a is arranged in the inner cavity of the first water outlet pipe 116 and is movable to switch between a sealing position and an open position. The valve core 1112a is movable to drive the valve sealing member 1112c to move. When the valve core 1112a is in the sealing position, the valve core 1112a is movable under the action of an external force to overcome the reset force of the reset member 1112b to the open position. When the valve core 1112a is in the open position, the valve core 1112a is restored to the sealing position under the action of the reset member 1112b. When the valve core 1112a is in the sealing position, the valve sealing member 1112c blocks the first water outlet pipe 116 to block the water flow through the first water outlet pipe 116. When the valve core 1112a is in the open position, there is a gap between the valve sealing member 1112c and the inner side wall of the first water outlet pipe 116, so that the water flow can flow out through the first water outlet pipe 116.

[0184] Specifically, the inner side wall of the first water outlet pipe 116 is provided with a valve limiting ring 116b. The valve sealing member 1112c is located on the side of the valve limiting ring 116b close to the inner cavity of the cup 111 and is fixedly arranged on the valve core 1112a. The valve core 1112a is movable along the extension direction of the first water outlet pipe 116 to switch between the sealing position and the open position. The reset member 1112b is arranged on the side of the valve limiting ring 116b away from the inner cavity of the cup 111. Specifically, the reset member 1112b is an elastic reset member. Along the extension direction of the first water outlet pipe 116, the reset member 1112b is in abutment with the valve limiting ring 116b and the valve core 1112a at both ends.

[0185] It can be understood that the valve limiting ring 116b is sealingly connected with the inner side wall of the first water outlet pipe 116. Optionally, Figure 11 c In the illustrated embodiment, the valve limiting ring 116b is integrally formed with the first water outlet pipe 116. It should be noted that in another embodiment, the valve limiting ring and the first water outlet pipe can also be formed respectively and sealingly and fixedly connected by welding or the like.

[0186] More specifically, the side wall of the valve core 1112a is provided with an annular anti-falling groove, the valve sealing member 1112c covers one end of the valve core 1112a close to the inner cavity of the cup 111, and the bottom side of the valve sealing member 1112c is provided with an anti-falling part matched with the annular anti-falling groove, so that the valve sealing member 1112c can be more stably fixed on the valve core 1112a.

[0187] Figure 11 a and Figure 11 cExemplarily, the structural state of the beverage device when the second water outlet pipe 128 is in the second position is shown. At this time, the valve assembly 1112 is in a sealing state with the inner wall of the first water outlet pipe 116, the valve core 1112a is in a sealing position, and the liquid in the cup 111 cannot flow out from the first water outlet 111a through the first water outlet pipe, as shown in Figure 11 c As shown, there is a gap H between the side wall of the second water outlet pipe 128 and the second sealing ring 131. Figure 11 b And Figure 11 d Exemplarily, the structural state of the beverage device when the second water outlet pipe 128 is in the first position is shown. The inner rib of the second water outlet pipe 128 lifts the valve core 1112a, the valve assembly 1112 no longer has a sealing effect on the first water outlet pipe 116, the valve core 1112a is in an open position, and the liquid in the cup 111 can flow out from the first water outlet 111a through the first water outlet pipe 116. Moreover, the side wall of the second water outlet pipe 128 is in sealing abutment with the second sealing ring 131, and the gap H between the side wall of the second water outlet pipe 128 and the second sealing ring 131 disappears to isolate the inner cavity of the second water outlet pipe 128 from external devices. The inner rib of the second water outlet pipe 128 is located inside the side wall of the second water outlet pipe 128.

[0188] Referring to Figure 14 And Figure 18c The second shell 127 is provided with a water blocking piece 127c on the inside; the water outlet seat 120 is provided with a motor 129, which is located on the side of the water blocking piece 127c away from the drain hole 127a, so as to isolate the motor 129 from the drain hole 127a and prevent water flow from flowing onto the motor 129 and also prevent water flow from flowing into the interior of the beverage device through the motor 129.

[0189] Referring to Figure 15a The first coupler 112 is provided with a conductive spring 112e. The conductive spring 112e is used to abut against and electrically contact the conductive contact 117a, thereby supplying power to the heating assembly 117. Compared with the conventional mode of realizing electrical contact through a wire, the conductive spring 112e is used to electrically contact the conductive contact 117a in the present application. The conductive spring 112e is not prone to aging due to heat, and the thermal contact between the conductive spring 112e and the heating element 117b is not prone to damage, thereby increasing the service life of the conductive spring 112e and the first coupler 112, saving design space without the need to provide a heat insulation structure for the wire.

[0190] In addition, the conductive spring 112e has elasticity and abuts against the conductive contact 117a, which can better ensure the electrical connection between the conductive spring 112e and the conductive contact 117a. In addition, the contact area between the conductive spring 112e and the conductive contact 117a is large, which can also better electrically connect the conductive spring 112e and the conductive contact 117a.

[0191] Optionally, the conductive spring 112e is a copper spring. It can be understood that the conductive spring 112e is not limited to the copper spring, but can also be formed of other conductive materials.

[0192] Referring to Figure 16a and Figure 16b , another embodiment of the present application provides a beverage device, the side wall of the first water outlet 111a has an extension section 111f extending from the bottom wall of the cup body 111 to the bottom side; and the first water outlet pipe 116 is partially arranged in the first water outlet 111a. On the one hand, the extension section 111f increases the depth of the first water outlet 111a, increases the contact area of the first water outlet 111a and the first water outlet pipe 116, and reduces the pressure of the side wall of the first water outlet 111a; on the other hand, the extension section 111f increases the length of the first water outlet pipe 116 extending into the first water outlet 111a, increases the contact area of the first water outlet pipe 116 and the first water outlet 111a, and reduces the pressure of the side wall of the first water outlet pipe 116; in one aspect, the extension section 111f increases the length of the first water outlet pipe 116 extending into the first water outlet 111a, which can effectively avoid excessive inclination of the first water outlet pipe 116.

[0193] Further, the cup body assembly further comprises a fourth sealing ring 1113, the fourth sealing ring 1113 has a sealing insertion slot 1113a matched with the extension section 111f; and the inner side wall of the sealing insertion slot 1113a is in annular sealing abutment with the first water outlet pipe 116. On the one hand, the contact surface of the fourth sealing ring 1113 and the extension section 111f is substantially U-shaped, which increases the contact area of the fourth sealing ring 1113 and the extension section 111f, and further increases the sealing between the fourth sealing ring 1113 and the extension section 111f.

[0194] As shown in Figure 16b , the fourth sealing ring 1113 is located between the extension section 111f and the coupler support of the first coupler 112 (i.e. the protective shell 1110), and the fourth sealing ring 1113 is also in sealing abutment with the coupler support of the first coupler 112, so as to further limit the liquid flow direction of the water outlet 111a to the first coupler 112, and reduce the contact of the electrical elements including the first conductive part 112b in the first coupler 112 with the liquid.

[0195] Referring to Figure 16b and Figure 17 , in the embodiment, the filter 1111 is arranged in the inner cavity of the cup body 111; the filter 1111 is fixedly arranged on the bottom wall of the cup body 111 and covers the first water outlet 111a.

[0196] Specifically, the filter 1111 is provided with a clamping piece 1111a. The clamping piece 1111a is inserted into the first water outlet pipe 116 and abuts against and is fixed to the inner side wall of the first water outlet pipe 116. Thus, the filter 1111 is fixed to the first water outlet pipe 116.

[0197] More specifically, referring to Figure 17 , the clamping piece 1111a is provided with three abutting portions 1111b which are uniformly distributed in the circumferential direction. The abutting portions 1111b abut against the inner side wall of the first water outlet pipe 116. It can be understood that, in other embodiments, the distribution manner of the abutting portions 1111b is not limited to this, and the number of the abutting portions 1111b is also not limited to this, as long as the abutting portions 1111b can abut against the inner side wall of the first water outlet pipe 116 to achieve the fixation of the filter 1111 to the first water outlet pipe 116.

[0198] Referring to Figure 18a , the bottom wall of the cup assembly 110 is provided with a water leakage hole 1114. When the user accidentally places the cup assembly 110 in a position with water, the liquid is stored in the cavity where the water leakage hole 1114 is located. The cavity is isolated from the first coupler 112, and when the user takes the cup assembly 110, the liquid stored in the cup assembly 110 is discharged through the water leakage hole 1114, so as to avoid the devices in the cup assembly 110 from being damp or immersed in water, and improve the service life of the cup assembly 110.

[0199] As shown in Figure 19 , in some embodiments, the cup assembly 110 further includes a third housing 1116. The third housing 1116 has a bottom wall of the cup assembly 110. The third housing 1116 is used to carry the first coupler 112. The third housing 1116 is provided with a water containing groove 1116a along the circumferential direction of the first coupler 112. The water leakage hole 1114 is located on the bottom wall of the water containing groove 1116a. The side wall of the water containing groove 1116a close to the first coupler 112 serves as a water retaining wall 1116b to limit the flow of liquid in the water containing groove 1116a to the first coupler 112, so as to reduce the influence of the liquid on the electrical elements on the first coupler 112.

[0200] As shown in Figure 19 , the electrical elements on the first coupler 112 include a first conductive piece 112b and a power supply contact terminal 112f connected to the first conductive piece 112b. The power supply contact terminal 112f extends from the first coupler 112 into the water containing groove 1116a.

[0201] As shown in Figure 19 , the third housing 1116 is connected to the cup side wall 111b. The cup bottom wall 111c is located between the cup side wall 111b and the third housing 1116.

[0202] As shown in Figure 18aAs shown, the bottom wall of the cup assembly 110 is also provided with a plurality of support protrusions 1115. The distance between the support protrusions 1115 and the water outlet seat 120 is less than the distance between the electrical elements on the first coupler 112 and the water outlet seat 120. The support protrusions 1115 protrude towards the water outlet seat 120. When the cup assembly 110 is separated from the water outlet seat 120 and placed on a support surface such as a table, the cup assembly 110 contacts the support surface through the support protrusions 1115, which serves as support and anti-skid function. In addition, the support protrusions 1115 can reduce the contact area between the bottom wall of the cup assembly 110 and the support surface, thereby reducing the wear of the support surface. At the same time, the support protrusions 1115 protrude from the bottom wall of the cup assembly 110, so that even if the support surface has some water stains, the support protrusions 1115 can isolate the water stains and serve as a certain waterproof function.

[0203] The distance between the support protrusions 1115 and the water outlet seat 120 is less than the distance between the electrical elements on the first coupler 112 and the water outlet seat. That is, the support protrusions 1115 are located at the lowest part of the cup assembly 110, which can better reduce the influence of water stains on the support surface on the electrical elements on the first coupler 112.

[0204] As shown in Figure 1 and Figure 20 In some embodiments, the beverage device further comprises a cup cover assembly 140, which can be coupled to the cup 111. The cup cover assembly 140 has a water inlet that is in communication with the interior of the cup 111, and the water inlet is used to add liquid to the cup 111.

[0205] The cup cover assembly 140 has a closed state and an open state relative to the cup 111. When the cup cover assembly 140 is in the closed state, the cup cover assembly 140 is coupled to the cup 111.

[0206] Figure 1 and Figure 1 a Exemplarily, a structural schematic diagram of the beverage device is shown when the cup cover assembly 140 is in the closed state. Figure 1 b Exemplarily, a structural schematic diagram of the beverage device is shown when the cup cover assembly 140 is in the open state.

[0207] Exemplarily, as shown in Figure 20As shown, the beverage device further comprises a sensor 150b and a water inlet and outlet control valve, the sensor is installed at the inlet of the cup cover assembly 140 or the cup body 111, and the water inlet and outlet control valve and the sensor 150b are electrically connected with the controller; when the cup cover assembly 140 is closed on the cup body 111, i.e. the cup cover assembly 140 is in the closed state, the sensor 150b generates an induction signal, and the controller can control the water inlet and outlet control valve to control the liquid to enter the cup body 111 through the water inlet; when the cup cover assembly 140 and the cup body 111 are in the open state, the sensor 150b does not generate an induction signal, and no liquid enters the cup body 111 through the water inlet.

[0208] As shown in Figure 20 The water inlet and outlet control valve can comprise a plurality of electromagnetic valves 156, of course, in other feasible embodiments, the water inlet and outlet control valve can also be one electromagnetic valve.

[0209] Therefore, in the embodiment of the application, by controlling the cup cover assembly 140 to be in the open state relative to the cup body 111, the water can be stopped; by controlling the cup cover assembly 140 to be in the closed state relative to the cup body 111, the water can be added to the cup body 111, and the water can also be stopped when the water amount reaches the predetermined water amount and / or a stop water adding instruction is received.

[0210] As shown in Figure 20 In some embodiments, the beverage device further comprises a raw water tank 159 and a machine body 150, the machine body comprises a purified water tank 152, a filter assembly 153 and a pipeline 154. In combination with Figure 1 As shown, the beverage device further comprises a shell 151, the purified water tank 152, the filter assembly 153 and the pipeline 154 are located in the shell 151, the filter assembly 153 communicates the raw water tank 159 and the purified water tank 152, the inlet of the pipeline 154 communicates with the purified water tank 152, the outlet of the pipeline 154 communicates with the water inlet of the cup cover assembly 140, and the cup cover assembly 140 is connected to the shell 151.

[0211] The raw water tank 159 can be used to store tap water or spring water, etc., the filter assembly 153 is used to filter and purify the water in the raw water tank 159 to obtain purified water, and the purified water is stored in the purified water tank 152. The pipeline 154 is at least used to deliver the water in the purified water tank 152 to the cup body 111.

[0212] The water storage tank is the purified water tank 152 in an example of washing the floor.

[0213] Exemplarily, the filter assembly 153 comprises an activated carbon filter element, a reverse osmosis filter element, etc.

[0214] The purified water in the purified water tank 152 enters the cup body 111 through the water inlet of the cup cover assembly 140 to brew the food in the cup body 111, and then the heating element 117b can continue to heat the liquid in the cup body 111, and then the liquid in the cup body 111 flows to the second water outlet pipe 128 through the first water outlet 111a and the first water outlet pipe 116, and finally flows to the water receiving container 160 through the second water outlet pipe 128 for the user to drink.

[0215] In some embodiments, the beverage device further comprises a heating structure 155, the heating structure 155 is located in the shell 151, the heating structure 155 is located between the purified water tank 152 and the water inlet of the cup cover assembly 140, and the heating structure 155 is used to heat the liquid in the pipeline 154 flowing to the water inlet of the cup cover assembly 140.

[0216] The heating structure 155 can heat the liquid in the pipeline 154, so that the liquid entering the cup body 111 is a liquid with a higher temperature. The user's demand for drinking hot water or brewing tea can be met.

[0217] As shown in Figure 20 , the heating structure 155 can be a heating pipe.

[0218] Taking brewing tea as an example, the beverage device of the embodiment of the application is further described. The cup cover assembly 140 is pivotally connected to the machine body 150, so that the cup cover assembly 140 can be rotated to switch between the closed state and the open state. The pipeline 154 at least includes a tea outlet in communication with the water inlet of the cup cover assembly 140. Before brewing tea, tea leaves can be placed in the cup body 111, and the cup cover assembly 110 and the water outlet seat 120 are assembled in place, so that the first conductive part 112b in the first coupler 112 contacts the second conductive part 121a in the second coupler 121 to supply power to the heating assembly 117 at the bottom of the cup cover assembly 110. After the cup cover assembly 140 is in the closed state and the cup cover assembly 110 is assembled in place, an instruction is applied by key operation or touch operation on the screen of the control screen 150a connected to the machine body 150, and the purified water in the purified water tank 152 is heated, and then injected into the cup body 111 through the tea outlet 154b of the pipeline 154 to brew the tea leaves for brewing tea. When the water injection is completed, the water injection is automatically stopped, at this time the thick film heating disc (i.e. the heating assembly 117) starts to heat at full power to start brewing tea, at this time the temperature sensor 170 in the cup body 111 can be used to detect the water temperature, when the water in the cup body 111 starts to boil, the power is reduced to 100W for micro-brewing, and the heating is stopped after about 2 to 3 minutes. Figure 11 c As shown in Figure 11 bAs shown, the motor 129 (which can be a stepper motor in particular) drives the lever to be raised, and the raised lever pushes the second water outlet pipe 128 upward, which in turn pushes the valve core 1112a upward, and the valve core 1112a moves to the open position, and the valve seal 1112c no longer blocks the first water outlet pipe 116, so that tea water can flow into the second water outlet pipe 128 through the first water outlet pipe 116, and then flow into the cup (i.e. the water receiving container 160) below the second water outlet pipe 128. After the tea water in the cup body 111 is drained, the stepper motor is reversed to return to the original position, and the valve core 1112a returns to the sealing position.

[0219] The water receiving container 160 can be a cup, and can also be a water jug with an open upper portion, as shown in Figure 1 a and Figure 1 b .

[0220] When the first coupler 112 and the second coupler 121 are installed in place, they can not only be electrically connected to the heating assembly 117 to provide power to the heating assembly 117, but also be electrically connected to the temperature sensor 170 to provide power to the temperature sensor 170. The first coupler 112 can be electrically connected to the heating assembly 117 and the temperature sensor 170 through the first conductive member 112b, respectively.

[0221] The temperature sensor 170 can be located inside the cup body 111 to detect the temperature of the liquid in the cup body 111. Figure 11 a The temperature sensor 170 is shown as being installed on the cup bottom wall 111c of the cup body 111. The temperature sensor 170 is not limited to being installed on the cup bottom wall 111c, and can also be installed on the side wall of the cup body 111 or other positions inside the cup body 111, and the present disclosure does not limit the installation position of the temperature sensor 170.

[0222] When the temperature sensor 170 detects that the temperature of the liquid in the cup body 111 does not reach the preset temperature, the heating assembly 117 can heat at a first power until the temperature sensor 170 detects that the liquid in the cup body 111 reaches the preset temperature, and then the heating assembly 117 can heat at a second power for a certain period of time (e.g. 2-3 minutes) and then stop heating; or, the heating assembly 117 can stop heating immediately after the temperature sensor 170 detects that the liquid in the cup body 111 reaches the preset temperature. The preset temperature can be 100°C, the second power can be 100w, and the first power can be greater than the second power, without limitation.

[0223] The water outlet seat 120 is fixed on the machine body, and as shown in Figure 1 , the handle 111g of the cup body assembly 110 can be directly held and rotated to remove the cup body assembly 110 from the machine body. Figure 1The cup assembly 110 of the water drinking device is shown, at this time, the spring (i.e. the reset member 1112b) of the valve core 1112a pushes the valve core 1112a to seal, the first water outlet pipe 116 will not leak water, and the cup assembly 110 can be cleaned.

[0224] As shown in the cup assembly 110 of the water drinking device, the spring (i.e. the reset member 1112b) of the valve core 1112a pushes the valve core 1112a to seal, the first water outlet pipe 116 will not leak water, and the cup assembly 110 can be cleaned. Figure 20 As shown, the water outlet seat 120 below can also have a heat preservation water collecting box 150c, and the cup 111 can be placed in the heat preservation water collecting box 150c to heat the tea in the cup 111.

[0225] The water flowing out of the tea outlet 154b of the pipeline 154 is heated by the heating structure 155, so that the tea leaves in the cup 111 can be brewed before brewing tea, and the water in the cup 111 can be heated by the heating assembly 117 according to the type of the brewed tea.

[0226] In some embodiments, the water outlet seat 120 is fixed on the shell 151. The cup cover assembly 140 and the water outlet seat 120 are both mounted on the shell, and the cup assembly 110 can not be mounted on the shell. The cup assembly 110 can be supported by the water outlet seat 120, and the cup assembly 110 can be separated from the machine body when adding tea leaves, without the need to carry the cup cover assembly 140 and the water outlet seat 120, which is more convenient to use.

[0227] As shown in the cup assembly 110 of the water drinking device, the spring (i.e. the reset member 1112b) of the valve core 1112a pushes the valve core 1112a to seal, the first water outlet pipe 116 will not leak water, and the cup assembly 110 can be cleaned. Figure 20 As shown, the pipeline 154 can also include a water outlet 154a, which is separately arranged from the tea outlet 154b. The water outlet 154a can provide hot water heated by the heating structure 155, or provide pure water not heated by the heating structure 155, or provide pure water not heated by the heating structure 155, to meet different needs. Figure 20 The arrows on the pipeline 154 indicate the direction of water flow.

[0228] In addition, the pipeline 154 can also be provided with a booster pump 157b, a flow pump 157a and a water vapor separator 158. The water vapor separator 158 is in communication with the water outlet and the pure water tank, so that the vapor is discharged into the pure water tank 152, and the water in the pure water tank 152 cannot directly flow out of the water outlet 154a, avoiding water dripping from the water outlet 154a.

[0229] In some embodiments, the tea outlet 154b is higher than the highest liquid level line of the pure water tank 152. Since water cannot flow upwards, this can reduce the problem of dripping from the tea outlet 154b when not in use.

[0230] As shown in the cup assembly 110 of the water drinking device, the spring (i.e. the reset member 1112b) of the valve core 1112a pushes the valve core 1112a to seal, the first water outlet pipe 116 will not leak water, and the cup assembly 110 can be cleaned. Figure 1As shown, in some embodiments, the cup assembly 110 is arranged protruding from the body 150. The beverage device of the embodiments of the present application not only includes the cup assembly 110 and the water outlet seat 120 for brewing tea, but also includes the body 150 for providing clean water and having a heating function, and is more functional and can meet more needs.

[0231] The different embodiments of the present application or the different technical features can be combined arbitrarily to form new embodiments without conflict. It should be understood that the above embodiments are exemplary and are not intended to include all possible embodiments included in the claims. Various modifications and changes can also be made to the above embodiments without departing from the scope of the present disclosure. Similarly, the technical features of the above embodiments can also be combined arbitrarily to form additional embodiments of the present application that can not have been explicitly described. Therefore, the above embodiments only express several embodiments of the present application and do not limit the protection scope of the patent of the present application.

Claims

1. A beverage equipment, characterized in that, The beverage equipment includes: Water storage tanks are used to store liquids; A cup assembly (110) is used to receive liquid from the water storage tank; the cup assembly (110) includes a cup body (111), a first coupler (112), and a heating element (117) for heating the liquid in the cup body (111); the bottom wall of the cup body (111) is provided with a first water outlet (111a); the cup assembly (110) is provided with a grip. The first coupler (112) is located at the bottom of the cup body (111), and the first coupler (112) is provided with a water outlet clearance space (112c) that passes through the first coupler (112). The first coupler (112) is used to supply power to the heating component (117). In the projection along the axis of the cup body (111), the projection of the first outlet (111a) is located within the projection range of the outlet clearance space (112c) of the first coupler (112). The beverage device further includes: a water outlet base (120), on which a second coupler (121) is provided, and the second coupler (121) is also provided with a water outlet clearance space (112c) that passes through the second coupler (121); the water outlet clearance space (112c) of the second coupler (121) is connected to the water outlet clearance space (112c) of the first coupler (112).

2. The beverage equipment according to claim 1, characterized in that, The cup assembly (110) also includes a first water outlet pipe (116) disposed at the first water outlet (111a), and the first water outlet pipe (116) passes through the water outlet clearance space (112c).

3. The beverage equipment according to claim 1, characterized in that, The heating component (117) includes two conductive contacts (117a) disposed at the bottom of the cup body (111) and a plurality of heating elements (117b) that are in thermal contact with the bottom of the cup body (111); the plurality of heating elements (117b) are electrically connected to the two conductive contacts (117a).

4. The beverage equipment according to claim 3, characterized in that, The heating element (117b) is a heating plate.

5. The beverage equipment according to claim 4, characterized in that, The heating component (117) includes a plurality of heating branch circuits (117c); at least one of the plurality of heating branch circuits (117c) has at least two heating elements (117b), and the heating elements (117b) in the same heating branch circuit (117c) are connected in series.

6. The beverage equipment according to claim 1, characterized in that, The first outlet (111a) and the outlet clearance space (112c) are coaxially distributed.

7. The beverage equipment according to claim 2, characterized in that, The water outlet base (120) further includes a second water outlet pipe (128); the second water outlet pipe (128) is movably disposed on the water outlet base (120); the second water outlet pipe (128) is movable to switch between a first position and a second position; when the second water outlet pipe (128) is in the first position, the liquid in the cup body (111) can flow out from the first water outlet (111a); The beverage device also includes a sealing structure (130), which is used to achieve a sealed connection between the second water outlet pipe (128) and the first water outlet pipe (116) when the second water outlet pipe (128) is in the first position, so as to isolate the inner cavity of the second water outlet pipe (128) from external devices.

8. The beverage equipment according to claim 7, characterized in that, When the cup assembly (110) is installed on the water outlet seat (120) and the second water outlet pipe (128) is in the first position, the second water outlet pipe (128) is located outside the first water outlet pipe (116).

9. The beverage equipment according to claim 7, characterized in that, The sealing structure (130) includes: The second sealing ring (131) is annular; when the second water outlet pipe (128) is in the first position, the second sealing ring (131) is sealed and connected to the side wall of the first water outlet pipe (116) and the side wall of the second water outlet pipe (128).

10. The beverage equipment according to claim 9, characterized in that, The second sealing ring (131) is fitted onto the first water outlet pipe (116).

11. The beverage equipment according to claim 10, characterized in that, The second outlet pipe (128) has a connecting end (128a) close to the first outlet pipe (116); When the second water outlet pipe (128) is in the first position, the second sealing ring (131) and the mating end (128a) of the second water outlet pipe (128) are sealed and abutted.

12. The beverage equipment according to any one of claims 9 to 11, characterized in that, The first coupler (112) includes a first docking wall (112a) and a plurality of first conductive elements (112b); the plurality of first conductive elements (112b) are spaced apart on the first docking wall (112a); the first docking wall (112a) forms the side wall of the water outlet clearance space (112c) of the first coupler (112); The second coupler (121) includes a docking body (121d); the docking body (121d) has a docking groove (121e) that matches the first docking wall (112a); The inner wall of the docking groove (121e) is sealed and abuts against the second sealing ring (131), and the inner wall of the docking groove (121e) forms the side wall of the water outlet clearance space (112c) of the second coupler (121).

13. The beverage equipment according to claim 1, characterized in that, The ratio of the area of ​​the first water outlet (111a) to the bottom area of ​​the cup body (111) is 0.1 to 0.5; The grip is a handle (111g) for the user to rotate to install and / or remove the cup assembly (110).

14. The beverage equipment according to claim 1, characterized in that, The first coupler (112) includes a first docking wall (112a), which is annular; the first docking wall (112a) is arranged around the water outlet clearance space (112c).

15. The beverage equipment according to claim 14, characterized in that, The first coupler (112) further includes a plurality of first conductive elements (112b); the first conductive elements (112b) are disposed on the first mating wall (112a); The water outlet seat (120) is provided with a second coupler (121); the second coupler (121) is provided with a plurality of second conductive elements (121a) that correspond one-to-one with the first conductive element (112b); When the first conductive element (112b) and the second conductive element (121a) are energized, the first conductive element (112b) supplies power to the heating component (117) by contacting the second conductive element (121a).

16. The beverage equipment according to claim 15, characterized in that, The first conductive element (112b) is spaced around the outside of the first docking wall (112a).

17. The beverage equipment according to claim 16, characterized in that, The outer surface of the first docking wall (112a) is provided with a plurality of conductive receiving grooves (112d) arranged sequentially at intervals, and a plurality of first conductive elements (112b) correspond one-to-one with a plurality of conductive receiving grooves (112d); the first conductive elements (112b) are located in the corresponding conductive receiving grooves (112d).

18. The beverage equipment according to claim 17, characterized in that, The first conductive element (112b) is in the shape of a fan-shaped ring column.

19. The beverage equipment according to any one of claims 15-18, characterized in that, The water outlet (120) is detachably connected to the cup assembly (110).

20. The beverage equipment according to claim 19, characterized in that, The cup assembly (110) is provided with a first locking part (114), and the water outlet seat (120) is provided with a second locking part (123); the first locking part (114) and the second locking part (123) are locked together.

21. The beverage equipment according to claim 20, characterized in that, The first locking part (114) and the second locking part (123) are both engaging parts; the first locking part (114) and the second locking part (123) are snap-fit ​​connected.

22. The beverage equipment according to claim 21, characterized in that, The first locking part (114) includes a first circumferential limiting part (114a) and a first longitudinal limiting part (114b); the second locking part (123) includes a second circumferential limiting part (123a) that matches the first circumferential limiting part (114a) and a second longitudinal limiting part (123b) that matches the first longitudinal limiting part (114b).

23. The beverage equipment according to claim 19, characterized in that, The cup assembly (110) is provided with a first circumferential positioning part (115), and the water outlet seat (120) is provided with a second circumferential positioning part (124) that matches the first circumferential positioning part (115).

24. The beverage equipment according to claim 23, characterized in that, The first circumferential positioning part (115) is a positioning slot extending in the circumferential direction; the second circumferential positioning part (124) is a positioning member that matches the positioning slot; the second circumferential positioning part (124) can slide in the circumferential direction within the first circumferential positioning part (115).

25. The beverage equipment according to claim 1, characterized in that, The beverage device further includes: a cup lid assembly capable of covering the cup body; the cup lid assembly has a water inlet communicating with the interior of the cup body (111), the water inlet being used to add liquid into the cup body (111).

26. The beverage equipment according to claim 1, characterized in that, The beverage equipment also includes: Raw water tank (159); The body (150) includes: a water purification tank (152), a filter assembly (153), a pipeline (154), and a shell (151). The water purification tank (152), the filter assembly (153), and the pipeline (154) are all located inside the shell (151). The filter assembly (153) connects the raw water tank (159) and the water purification tank (152). The inlet of the pipeline (154) is connected to the water purification tank (152). The outlet of the pipe (154) is connected to the interior of the cup body (111); The water storage tank is the clean water tank (152).

27. The beverage equipment according to claim 26, characterized in that, The beverage equipment also includes: A water receiving container (160) is disposed on the bottom side of the cup body assembly (110), and the water receiving container (160) is used to receive the liquid flowing out through the first water outlet (111a).

28. The beverage equipment according to claim 26, characterized in that, The beverage equipment also includes: A heating structure (155) is located inside the outer shell (151) and is used to heat the liquid in the pipe (154) leading to the cup body (111).

29. The beverage equipment according to claim 28, characterized in that, The water outlet seat (120) is fixed to the outer casing (151); and / or, The cup assembly (110) protrudes from the body (150).

30. The beverage equipment according to claim 1, characterized in that, The first coupler (112) is coaxial with the first outlet (111a).

31. The beverage equipment according to claim 2, characterized in that, At least a portion of the first outlet pipe (116) is coaxial with the first coupler (112).

32. The beverage equipment according to claim 1, characterized in that, The first coupler (112) is coaxial with the second coupler (121).

33. The beverage equipment according to claim 1, characterized in that, The beverage device further includes a temperature sensor (170), which is located inside the cup body (111); the temperature sensor (170) is used to detect the temperature of the liquid inside the cup body (111), and the first coupler (112) is electrically connected to the temperature sensor (170), and the first coupler (112) is also used to power the temperature sensor.

Citation Information

Patent Citations

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