Beverage brewing device
By introducing a steam exhaust component into the beverage brewing device, water vapor is collected using the condenser section of the fan and guide vane, solving the problems of water vapor adhesion and overflow, extending service life, improving hygiene, and enhancing user experience.
Patent Information
- Application Number
- CN202423186673.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-23
AI Technical Summary
During the brewing process, the water vapor generated by the beverage brewing device adheres to the surface of the internal parts, which accelerates corrosion, shortens the service life, and provides an environment for the growth of mold and bacteria. At the same time, the disorderly overflow of water vapor affects the appearance and safety.
The system employs an exhaust assembly, including a fan, duct, and guide vanes. Water vapor is condensed and collected using the condenser section on the guide vanes. The fan drives the airflow to flow over the surface of the guide vanes, forming condensate, which is then discharged outside the casing.
It effectively reduces the adhesion and residue of moisture inside the casing, extends the life of the device, improves hygiene, enhances the user experience, and reduces the risk of burns.
Smart Images

Figure CN223759672U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beverage manufacturing technology, specifically to a beverage brewing device. Background Technology
[0002] Beverage brewing devices typically contain a hot water supply unit and a brewing unit. The brewing unit uses hot water to brew beverage ingredients to produce the drink. However, the large amount of steam generated during the brewing process adheres to the surfaces of the internal parts, accelerating corrosion and shortening the device's lifespan. Furthermore, condensation remaining inside the device creates a favorable environment for mold and bacteria growth, negatively impacting hygiene. In addition, the disorderly release of steam not only looks unsightly but also poses a risk of scalding. Utility Model Content
[0003] The present invention aims to provide a beverage brewing device that effectively reduces the water vapor generated during the beverage brewing process, prevents a large amount of water vapor from adhering to the surface of parts and remaining inside the machine body, and improves the disorderly overflow of water vapor from the machine casing.
[0004] To solve the above-mentioned technical problems, this utility model provides a beverage brewing device, comprising:
[0005] Housing, the housing having a cavity;
[0006] The brewing assembly is installed in the cavity; and,
[0007] An exhaust assembly is installed in the housing. The exhaust assembly includes a fan, an air duct, and a guide. The air duct connects the cavity and the outside of the housing. The fan is installed in the air duct. The guide is installed in the air duct or downstream of the air duct. The fan drives airflow from the cavity into the air duct, through the guide, and out to the outside of the housing. The guide is provided with a condensation section so that the airflow passing through the guide condenses on the surface of the condensation section.
[0008] Optionally, the beverage brewing device further includes a waste collection component installed in the housing;
[0009] The guide member has a drain port that connects to the waste receiving component, so that the condensate water condensed on the surface of the condensation part flows into the waste receiving component through the drain port.
[0010] The guide member is located downstream of the air duct, and a channel is formed in the guide member. One end of the channel is connected to the air duct, and the other end of the channel forms an opening that connects to the outside of the housing. The drain outlet is provided on the inner wall of the channel.
[0011] Optionally, at least a portion of the inner wall of the channel constitutes the condensation section; and / or,
[0012] The condensation section includes a partition disposed within the channel, the partition being positioned above the drain outlet.
[0013] Optionally, the upper end of the channel is connected to the air duct, the inner wall includes a bottom wall located at the lower end of the channel and extending downward at an incline, the drain outlet is opened on the bottom wall and is disposed relatively close to the lower edge of the bottom wall, the inner wall also includes a side wall extending upward from the peripheral edge of the bottom wall, and the opening is opened on the side wall.
[0014] Optionally, the opening faces forward, and the bottom wall slopes forward and downward.
[0015] Optionally, the air duct is disposed above the air guide and extends in the vertical direction, and the air supply axis of the fan extends forward and downward at an angle.
[0016] Optionally, the housing includes a front panel, and a mounting shell is detachably connected to the rear side of the front panel. The front panel forms the outer contour of the front side of the housing. The mounting shell and the front panel enclose the air duct. The rear side of the upper end of the mounting shell protrudes rearward and has an air inlet to form an installation chamber. The fan is installed in the installation chamber. The lower end of the air duct has an air outlet facing the condenser section.
[0017] Optionally, the waste receiving component includes a slag receiving box, the slag receiving box having a cavity located below the brewing component, and the drain outlet communicating with the cavity.
[0018] Optionally, the slag receiving box is removably installed on the housing from the front side along the front-rear direction, and the flow guide is stacked on the upper side of the slag receiving box so that the flow guide can move with the slag receiving box.
[0019] Optionally, the slag receiving box includes a first component and a second component arranged sequentially from front to back. The first component extends at least partially out of the front side of the housing and is provided with a handle. The second component is disposed in the cavity and is formed with the cavity.
[0020] The flow guide includes a cover plate portion placed on the upper side of the first component and a flow guide portion stacked on the upper side of the second component. The cover plate portion is connected and fixed to the first component, and the flow guide portion is at least partially embedded in the cavity and forms a channel connecting the air duct and the cavity.
[0021] Optionally, the flow guide further includes a water receiving tray, which is stacked on the upper side of the cover plate. A grille protrudes from the rear side of the water receiving tray, which is inserted into the inner side of the housing and between the air duct and the flow guide.
[0022] Optionally, the waste collection component includes a water collection tray, and the drain outlet is connected to the water collection tray.
[0023] Optionally, the condenser section is made of metal.
[0024] Optionally, the condenser section is detachably mounted to the flow guide; and / or,
[0025] The flow guide is detachably mounted on the housing.
[0026] The technical solution provided by this utility model has the following advantages:
[0027] This invention provides a beverage brewing device, including a housing, a brewing component, and a steam exhaust component. The brewing component is installed within a cavity formed by the housing and is used to brew beverages using hot water. The steam exhaust component includes a fan, an air duct, and a guide component. The air duct connects the cavity and the outside of the housing. The guide component is located in or downstream of the air duct and has a condenser section, which can be made of a material such as metal that easily condenses water vapor. When the fan is working, the water vapor generated by the brewing component is driven by the airflow from the cavity into the air duct. As it flows through the guide component, it condenses on the surface of the condenser section to form condensate. After the humidity decreases, the condensate is discharged from the housing. In this invention, the steam exhaust component is used to orderly discharge the water vapor generated during the beverage brewing process, and the guide component is used to promote the condensation of most of the liquid in the water vapor on the surface of the condenser section, forming a dry airflow before it is discharged from the housing. This effectively improves the situation where water vapor adheres to the surface of parts inside the casing and remains inside the casing, extending the service life and hygiene of the beverage brewing device. At the same time, it orderly discharges water vapor, improving the user experience and reducing the risk of scalding users. Attached Figure Description
[0028] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0029] Figure 1 A three-dimensional structural schematic diagram of an embodiment of the beverage brewing device provided by this utility model;
[0030] Figure 2 for Figure 1 A three-dimensional structural diagram of a beverage brewing device from another perspective;
[0031] Figure 3 for Figure 1 A partial three-dimensional schematic diagram of a beverage brewing device;
[0032] Figure 4 for Figure 3 Exploded view of the three-dimensional structure of the brewing device;
[0033] Figure 5 for Figure 3 A three-dimensional schematic diagram of a partial structure of a beverage brewing device from another perspective;
[0034] Figure 6 for Figure 4 A three-dimensional structural schematic diagram of one embodiment of the central guide component;
[0035] Figure 7 for Figure 6 A three-dimensional structural diagram of the central guide component from another perspective;
[0036] Figure 8 for Figure 4 A three-dimensional structural schematic diagram of another embodiment of the central guide component;
[0037] Figure 9 for Figure 4 A three-dimensional structural diagram of the intermediate slag receiving box;
[0038] Figure 10 for Figure 4 A three-dimensional schematic diagram of the mounting housing and fan;
[0039] Figure 11 for Figure 4 A three-dimensional structural diagram of the central water receiving tray.
[0040] Explanation of reference numerals in the attached figures:
[0041] 100-Beverage brewing device; 10-House casing; 11-Front panel; 20-Steam exhaust assembly; 21-Fan; 211-Air supply axis; 22-Air duct; 221-Air inlet; 222-Air outlet; 23-Flow guide; 231-Drain outlet; 232-Channel; 233-Opening; 24-Inner wall; 241-Bottom wall; 242-Side wall; 25-Cover plate; 26-Flow guide; 30-Mounting shell; 31-Mounting chamber; 40-Condensation unit; 50-Waste collection assembly; 51-Slag collection box; 510-Cavity; 511-First component; 512-Second component; 513-Handle; 52-Water tray; 521-Grate. Detailed Implementation
[0042] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. The present utility model will be described in detail below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this utility model can be combined with each other.
[0043] It should be noted that the terms "first," "second," etc., in the specification, claims, and drawings of this utility model are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.
[0044] Please see Figures 1 to 11 This utility model provides a beverage brewing device 100, which is used to prepare beverages. Specifically, it can be a coffee machine, soy milk maker, tea maker, etc., with brewing function. The beverage brewing device 100 includes a housing 10 and a brewing component. The housing 10 has a cavity, and the brewing component is disposed in the cavity, capable of brewing beverages using hot water. The specific structure and working method of the brewing component are not limited, but are specifically related to the type of beverage prepared by the beverage brewing device 100. During the brewing process, the brewing component generates a large amount of water vapor. This water vapor is high in temperature and easily condenses on the surface of parts inside the housing 10, which may not only shorten the service life of the beverage brewing device 100, but also easily lead to the growth of bacteria and mold, adversely affecting the hygiene of the beverage brewing device 100. High-temperature water vapor overflowing from the housing 10 not only raises concerns about product quality but also poses a risk of scalding.
[0045] To resolve the above issues, please refer to [link / reference]. Figures 3 to 10 The beverage brewing device 100 provided by this utility model also includes a steam exhaust component 20, which is installed on the housing 10. Specifically, the housing 10 is used to support and form the outer contour of the beverage brewing device 100 to protect its internal parts and support the entire device. The material of the housing 10 is not limited, as long as it has sufficient strength and durability. For example, the housing 10 can be made of engineering plastic or stainless steel. It is understood that the shape of the housing 10 is also not limited, as long as it can form a cavity to accommodate the brewing components.
[0046] The exhaust assembly 20 includes a fan 21, an air duct 22, and a guide vane 23, wherein the air duct 22 connects the cavity and the outside of the casing 10. The fan 21 is installed in the air duct 22, specifically, it can be installed at the air inlet, air outlet, or inside the air duct 22. The fan 21 may include a drive motor and a fan wheel. When the fan wheel rotates, it drives the airflow to flow along the air duct 22. The specific type of the fan wheel is not limited, for example, it can be an axial flow fan wheel, a centrifugal fan wheel, etc. The guide vane 23 is located in or downstream of the air duct 22. Its shape and structure are not limited, but it is preferably designed as a grille to increase the condensation area. The guide vane 23 has a condensation section 40, which can be made of a material that easily condenses water vapor, such as metal. When the fan 21 is working, the driven airflow flows from the cavity into the air duct 22, flows through the guide vane 23, and flows out to the outside of the casing 10. During this process, the water vapor generated by the brewing component is driven by the airflow from the cavity into the air duct 22. When it flows through the guide 23, it condenses on the surface of the condenser 40 to form condensate. After the humidity decreases, it is discharged from the casing 10 in an orderly manner.
[0047] In this invention, the steam exhaust assembly 20 is used to orderly discharge the water vapor generated during the beverage brewing process. The guide component 23 promotes the condensation of most of the liquid in the water vapor onto the surface of the condenser section 40, forming a dry airflow that is then discharged from the casing 10. This effectively improves the situation where water vapor adheres to the surfaces of parts inside the casing 10 and remains inside the casing 10, extending the service life and hygiene of the beverage brewing device 100. Simultaneously, the orderly discharge of water vapor enhances the user experience and reduces the risk of scalding.
[0048] It should be noted that, in this utility model, the description of directionality applies only to the beverage brewing device 100 in its assembled and normal-use state, and not to its state during production, assembly, transportation, etc. The vertical direction is basically parallel to the direction of gravity, the front-back direction is basically perpendicular to the vertical direction, and the front side is the side of the beverage brewing device 100 with the beverage outlet, while the rear side is opposite to the front side in the front-back direction.
[0049] Preferably, the condenser 40 can be a separate component, detachably assembled to the flow guide 23, or it can be integrally molded with the flow guide 23 using methods such as insert injection molding. The flow guide 23 can also be detachably assembled to the housing 10 to facilitate regular cleaning by the user and prevent excessive bacterial and mold growth due to condensation on the flow guide 23 over a long period, thus avoiding hygiene and safety hazards. In other embodiments, the flow guide 23 can also be integrally configured as the condenser 40, using a material that facilitates condensation, such as metal.
[0050] In an optional embodiment, when water vapor flows through the guide member 23, the resulting condensate is guided out of the housing 10 by the guide member 23 or collected in a specific space within the housing 10 for periodic cleaning by the user. Preferably, please refer to Figures 1 to 5 The beverage brewing device 100 also includes a waste collection component 50 installed on the housing 10. The specific structure and installation method of the waste collection component 50 are not limited; it is generally installed in the bottom area of the housing 10 and is used to collect waste materials and waste liquid generated during the beverage brewing process, as well as spilled beverages during user dispensing. In this embodiment, the guide member 23 has a drain outlet 231 communicating with the waste collection component 50, allowing condensate water condensed on the surface of the condenser 40 to flow into the waste collection component 50 through the drain outlet 231. Thus, the guide member 23 guides the condensate water to the waste collection component, facilitating the user to treat the condensate water while cleaning up brewing waste, improving the convenience of using the beverage brewing device 100 and enhancing the user experience.
[0051] Further, please refer to Figures 4 to 8 The guide element 23 is located downstream of the air duct 22. A channel 232 is formed in the guide element 23. One end of the channel 232 is connected to the air duct 22, and the other end of the channel 232 forms an opening 233 connecting to the outside of the housing 10. A drain outlet 231 is provided on the inner wall 24 of the channel 232. Figure 6 and 7 As shown, in one embodiment, the condenser 40 is at least a portion of the inner wall 24 of the channel 232, preferably the inner wall 24 includes a bottom wall 241, which constitutes the condenser 40. In another optional embodiment, such as... Figure 8 As shown, the condenser 40 includes a partition installed in the channel 232. This partition increases the contact area between the flowing air and the condensing surface, thereby improving the condensation effect. In this case, the condenser 40 is positioned above the drain outlet 231. It is understood that the above two embodiments can be implemented separately or in combination. In this embodiment, the guide member 23 plays the role of condensation diversion, that is, it promotes the rapid condensation of water vapor flowing through the channel 232 on the surface of the condenser 40 to form condensate, which is discharged from the drain outlet 231 to the waste collection component 50 for storage. The dry airflow formed after dehumidification further flows from the opening 233 to the outside of the housing 10 and is discharged in an orderly manner, which will not cause an unfavorable visual impression of the beverage brewing device 100 to the user, and at the same time avoids scalding the user.
[0052] Preferably, the upper end of the channel 232 is connected to the ventilation duct 22, and the inner wall 24 includes a bottom wall 241 located at the lower end of the channel 232 and extending downwardly at an incline, and a side wall 242 extending upward from the peripheral edge of the bottom wall 241. Preferably, the bottom wall 241 constitutes a condensation section 40. A drain outlet 231 is provided on the bottom wall 241 and is relatively close to the lower edge of the bottom wall 241, and an opening 233 is provided on the side wall 242. In this embodiment, the water vapor introduced by the ventilation duct 22 flows towards the bottom wall 241, and quickly condenses upon contact with the bottom wall 241 to form condensate. The condensate is discharged from the drain outlet 231 under the action of gravity, while the airflow rises and flows out from the opening 233. In this way, the separation of water and air is achieved by utilizing gravity, avoiding the situation where condensate splashes out from the opening 233.
[0053] Furthermore, the opening 233 faces forward, and the bottom wall 241 slopes forward and downward. This allows airflow to exit from the front of the casing 10, an area typically where a beverage outlet is located, requiring frequent cleaning by the user. Even if residual moisture remains in the airflow exiting the opening 233, it can be promptly removed. The downward slope of the bottom wall 241 causes the channel 232 to gradually increase in size near the opening 233, thus reducing airflow velocity and preventing the user from feeling the draft from the exhaust assembly 20. Preferably, the air duct 22 is positioned above the guide member 23 and extends vertically, while the air delivery axis 211 of the fan 21 slopes forward and downward. This arrangement brings the air inlet of the fan 21 closer to the moisture overflow point of the brewing assembly, improving moisture removal efficiency. Simultaneously, the air delivery axis 211 is oriented as much as possible towards the condenser 40, allowing moisture to condense immediately and reducing the probability of condensation on other component surfaces.
[0054] Preferably, please refer to Figures 3 to 5 ,as well as Figure 10 The housing 10 includes a front panel 11, preferably also made of metal. A mounting shell 30 is detachably connected to the rear side of the front panel 11. The front panel 11 forms the outer contour of the front side of the housing 10. The mounting shell 30 and the front panel 11 enclose an air duct 22. The rear part of the upper end of the mounting shell 30 protrudes rearward and has an air inlet 221 to form a mounting chamber 31. The fan 21 is installed in the mounting chamber 31. The lower end of the air duct 22 has an air outlet 222 facing the condenser section 40. In this way, the air duct 22 is formed in a simple and reliable manner, and the air inlet 221 is set to face and be close to the brewing components, improving the exhaust efficiency. The water vapor flowing through the air duct 22 can be partially condensed on the rear side of the front panel 11. The condensate formed falls into the guide 23 and is discharged to the waste discharge component through the drain 231. The water vapor discharged from the air outlet 222 is further condensed by the condenser 40. In this way, the discharged water vapor undergoes double condensation, which improves the dehumidification effect.
[0055] The location for collecting condensate can be selected as needed. In an optional embodiment, please refer to... Figure 11 The waste collection component 50 includes a water collection tray 52, and a drain outlet 231 is connected to the water collection tray 52. Condensate is collected by the water collection tray 52, making it convenient for users to clean it promptly.
[0056] In the preferred embodiment, please refer to Figures 4 to 9 The waste collection component 50 includes a slag collection box 51, which has a cavity 510 located below the brewing component, and a drain outlet 231 communicates with the cavity 510. Thus, by collecting condensate using the slag collection box 51, which has a larger volume than the drip tray 52 and requires less frequent cleaning, this design effectively reduces the frequency of cleaning the waste collection component 50 and improves the user experience.
[0057] Preferably, the slag collection box 51 is removably installed on the housing 10 from the front side in the front-rear direction to facilitate cleaning operations and improve the user experience. Specifically, the slag collection box 51 includes a first component 511 and a second component 512 arranged sequentially from front to back. The first component 511 and the second component 512 can be separately formed and connected as one piece, or they can be integrally formed. The first component 511 extends at least partially from the front side of the housing 10 and is provided with a handle 513. The specific form of the handle 513 is not limited; for example, it can be a handle mounted on the front side of the slag collection box 51, or it can be a groove formed at the bottom of the first component 511 to facilitate the user's insertion and removal operation. The second component 512 is disposed in the cavity and is formed with a cavity 510, and is located at a position basically directly below the brewing component to collect the waste generated during the brewing process. The guide member 23 is stacked on the upper side of the slag collection box 51 so that the guide member 23 can move with the insertion and removal of the slag collection box 51. In this way, while cleaning the slag receiving box 51, the guide component 23 can be cleaned simultaneously, further improving the cleaning efficiency.
[0058] Furthermore, the guide member 23 includes a cover plate 25 placed on the upper side of the first member 511 and a guide portion 26 stacked on the upper side of the second member 512. The cover plate 25 is connected and fixed to the first member 511, and the guide portion 26 is at least partially embedded in the cavity 510, forming a channel 232 connecting the ventilation channel 22 and the cavity 510. In this way, the cover plate 25 gives the upper side of the first member 511 a flat surface and an aesthetically pleasing appearance. The guide portion 26 occupies an area in the cavity 510 that will not receive slag, improving the space utilization inside the casing 10 while facilitating the extraction and removal of the guide member 23 along with the slag receiving box 51.
[0059] Preferably, please refer to Figure 5 and Figure 11The guide component 23 also includes a water receiving tray 52, which is stacked on the upper side of the cover plate 25. A grille 521 protrudes from the rear side of the water receiving tray 52. The grille 521 is inserted into the inner side of the housing 10 and between the air duct 22 and the guide component 26. The grille 521 is also made of metal, which further increases the condensation area. The condensate formed on the surface of the grille 521 falls into the guide component 23 below and is collected together with the condensate formed in the guide component 23 and discharged into the slag collection box 51.
[0060] Obviously, the embodiments described above are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, those skilled in the art can make other variations or modifications without creative effort, and all such variations or modifications should fall within the protection scope of this utility model.
Claims
1. A beverage brewing device, characterized in that, The beverage brewing device comprises: a housing having a cavity; a brewing assembly arranged in the cavity; and an exhaust assembly arranged in the housing, the exhaust assembly comprising a fan, an air duct and a flow guide, the air duct being in communication with the cavity and an outside of the housing, the fan being arranged at the air duct, the flow guide being arranged in or downstream of the air duct, the fan being configured to drive air flow from the cavity to the air duct, through the flow guide and to the outside of the housing, the flow guide being provided with a condensation portion configured to cause condensation of the air flow passing through the flow guide on a surface of the condensation portion. The beverage brewing device further comprises a waste receiving assembly arranged in the housing; 2. The beverage brewing device of claim 1, wherein, the flow guide is provided with a drain opening in communication with the waste receiving assembly, such that condensed water condensed on the surface of the condensation portion flows into the waste receiving assembly through the drain opening. The flow guide is arranged downstream of the air duct, the flow guide is formed with a channel, one end of the channel being in communication with the air duct, the other end of the channel being formed with an opening in communication with the outside of the housing, the inner wall of the channel being provided with the drain opening.
3. A beverage brewing device according to claim 2, wherein At least part of the inner wall of the channel constitutes the condensation portion; and / or 4. A beverage brewing device according to claim 3, wherein The condensation portion comprises a partition arranged in the channel, the partition being arranged above the drain opening. The channel is in communication with the air duct at an upper end thereof, the inner wall comprises a bottom wall extending downwardly and downwardly inclined at a lower end of the channel, the drain opening being arranged on the bottom wall and relatively close to a lower side edge of the bottom wall, the inner wall further comprises a side wall extending upwardly from a peripheral side edge of the bottom wall, the side wall being provided with the opening.
5. The beverage brewing device of claim 3, wherein, The opening is arranged forwardly, and the bottom wall is inclined forwardly and downwardly.
6. A beverage brewing device according to claim 5, wherein The air duct is arranged above the flow guide and extends in a vertical direction, and an air supply axis of the fan extends forwardly and downwardly.
7. The beverage brewing device of claim 5, wherein, The housing comprises a front plate, a rear side of the front plate being detachably connected with a mounting shell, the front plate constituting an external contour of a front side of the housing, the mounting shell and the front plate enclosing the air duct, a rear side of an upper end of the mounting shell being partially protruded rearwardly and provided with an air inlet to form a mounting chamber, the fan being arranged in the mounting chamber, a lower end of the air duct being provided with an air outlet facing the condensation portion.
8. A beverage brewing device according to claim 7, wherein The waste receiving assembly comprises a residue receiving box, the residue receiving box having a containing cavity below the brewing assembly, the drain opening being in communication with the containing cavity.
9. A beverage brewing device as claimed in any one of claims 2 to 8, wherein, The residue receiving box is detachably mounted in the housing from a front side of the housing in a front-rear direction, and the flow guide is stacked on an upper side of the residue receiving box, such that the flow guide can move with the residue receiving box.
10. A beverage brewing device according to claim 9, wherein The residue receiving box comprises a first member and a second member arranged in sequence from front to back, the first member being at least partially protruded from the front side of the housing and provided with a handle portion, the second member being arranged in the cavity and formed with the containing cavity.
11. The beverage brewing device of claim 10, wherein, The flow guide comprises a cover plate part covering the upper side of the first component and a flow guide part stacked on the upper side of the second component, the cover plate part is fixedly connected with the first component, the flow guide part is at least partially embedded in the cavity, and a passage is formed to communicate the air duct and the cavity.
12. The beverage brewing device of claim 11, wherein, The flow guide further comprises a water collecting tray stacked on the upper side of the cover plate part, a grid part is protruded on the rear side of the water collecting tray, the grid part is made of metal, the grid part is inserted into the inner side of the cabinet and between the air duct and the flow guide part.
13. A beverage brewing device according to any one of claims 2 to 7, wherein, The waste collecting assembly comprises the water collecting tray, and the drain port communicates the water collecting tray.
14. The beverage brewing device of any one of claims 1 to 7, wherein, The condensing part is made of metal.
15. The beverage brewing device of any one of claims 1 to 7, wherein, The condensing part is detachably assembled with the flow guide; and / or, The flow guide is detachably assembled with the cabinet.