Beverage machine
By incorporating baffles and magnetic attachments into the fully automatic coffee machine, the cleaning and descaling module can be stably and easily disassembled and installed, solving the problems of inconvenient operation and liquid leakage in existing technologies, thus improving user experience and equipment hygiene.
Patent Information
- Application Number
- CN202521864149.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-08-29
AI Technical Summary
The cleaning and descaling modules of existing fully automatic coffee machines are inconvenient to operate during disassembly and installation, and are prone to jamming due to improper force, which affects user experience and equipment hygiene.
A baffle is installed at the top of the housing cavity of the body support, which creates interference with the box assembly, requiring the box assembly to be disassembled along a specific non-vertical trajectory. Combined with magnetic suction and detection elements, stable installation is ensured, providing an inclined disassembly path and reliable fixation.
The operation and stability of the cleaning and descaling module have been improved, preventing liquid sloshing and leakage, ensuring the cleanliness and hygiene of the equipment interior, and extending its service life.
Smart Images

Figure CN224671309U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beverage preparation technology, and in particular to a beverage machine. Background Technology
[0002] Fully automatic beverage machines, especially fully automatic coffee machines, have gained popularity among users due to their convenient operation. To ensure the taste and hygiene of beverages and extend the machine's lifespan, regular cleaning and descaling of the internal components is crucial. Therefore, integrating automated and intelligent cleaning and descaling functions into fully automatic coffee machines has become an important development trend.
[0003] Currently, the cleaning and descaling solutions for fully automatic coffee machines on the market mainly include manual and automatic dispensing. While automatic dispensing modules improve automation, existing designs still have shortcomings. For example, some cleaning and descaling modules require the user to lift the module to unlock it during installation and removal due to their mechanical latching structure. This unlocking and separation process requires the user to perform complex, compound actions, which is not only inconvenient but also prone to jamming due to improper force. Utility Model Content
[0004] The purpose of this utility model is to provide a beverage machine that solves the problem of poor disassembly and assembly experience of detachable components such as cleaning and descaling modules in the prior art.
[0005] To achieve the above-mentioned objectives, this utility model provides a beverage machine, comprising:
[0006] The body support defines a receiving cavity, and the bottom of the receiving cavity is provided with a conveying channel;
[0007] A box assembly is at least partially disposed within the receiving cavity, and a delivery port is provided at the bottom of the box assembly;
[0008] The receiving cavity has an upper opening located at the top of the body support, and the box assembly is operably installed in or separated from the receiving cavity through the upper opening; the upper opening is horizontally offset from the conveying channel, and a baffle is provided at the top of the receiving cavity; the box assembly is installed in the receiving cavity through the upper opening so that the conveying port is connected to the conveying channel; in the vertical direction, the baffle interferes with the box assembly.
[0009] Compared with existing technologies, the advantages of this invention are as follows: By setting a baffle at the top of the receiving cavity of the body support, the baffle interferes with the box assembly in the vertical direction. This structure cleverly prevents the box assembly from being directly removed vertically upwards. The box assembly must follow a specific non-vertical trajectory to separate from the receiving cavity. This guided, indirect disassembly path improves the user's operating experience and avoids the possibility of liquid sloshing or splashing inside the box assembly due to sudden pulling out, thereby effectively preventing leakage of residual liquid inside the box assembly during disassembly and ensuring the cleanliness and hygiene of the internal parts of the machine.
[0010] As a further improvement of one embodiment of the present invention, the baffle is located on one side of the upper opening, the baffle has a mating surface that matches the top shape of the box assembly, the box assembly can be tilted relative to the body support along the mating surface to be offset from the baffle and correspond to the upper opening, and the box assembly can be operably separated from the receiving cavity from the upper opening.
[0011] Along the direction from the upper opening to the baffle, the mating surface is configured with one of the following features:
[0012] The mating surface extends obliquely downward;
[0013] The mating surface extends downward in an arc shape;
[0014] The mating surface is at its highest position at the upper opening.
[0015] As a further improvement of one embodiment of the present invention, the bottom of the box assembly is provided with a conveying pipe, the conveying pipe defining the conveying port; the box assembly has a first side facing the baffle, and the bottom end face of the conveying pipe is inclined downward relative to the horizontal plane toward the first side.
[0016] As a further improvement of one embodiment of the present invention, the box assembly has a first side facing the baffle at the upper opening, a first magnetic attracting member is provided on the first side near the baffle, and a second magnetic attracting member is provided on the cavity wall of the receiving cavity. The box assembly is installed in the receiving cavity, and the first magnetic attracting member and the second magnetic attracting member are attracted to each other.
[0017] As a further improvement of one embodiment of the present invention, the box assembly has a first side facing the baffle at the upper opening, and a trigger portion is formed on the first side near the baffle. The body bracket is provided with a first detection element, which is used to detect the installation state of the box assembly. The first detection element is configured to be triggered by the trigger portion.
[0018] As a further improvement of one embodiment of the present invention, the receiving cavity also has a side opening located on the side of the body support, the side opening communicating with the upper opening; a part of the box assembly is located inside the receiving cavity, and another part of the box assembly is exposed from the side opening.
[0019] As a further improvement of one embodiment of the present invention, along the vertical direction, the body support includes a first support and a second support connected vertically, the first support and the second support together defining the receiving cavity; the upper opening is disposed on the first support, the side opening is disposed on the first support, or the side opening is disposed on the first support and the second support.
[0020] As a further improvement of one embodiment of the present invention, the box assembly has a first side and a second side disposed opposite to each other, the first side facing the baffle, the baffle being disposed on the first bracket, the first bracket being inclined toward the bracket cavity wall of the second side, and the inclination direction of the bracket cavity wall being consistent with the inclination direction when the box assembly is disengaged from the receiving cavity.
[0021] As a further improvement of one embodiment of the present invention, the box assembly is provided with at least two, and the at least two box assemblies are arranged side by side; the body support includes a partition, which is used to separate adjacent box assemblies; baffles are respectively provided on both sides of the partition to restrict the separation of two adjacent box assemblies from the receiving cavity in the vertical direction;
[0022] Each of the box components is provided with a first magnetic attraction element, and each partition is provided with a second magnetic attraction element corresponding to the first magnetic attraction element. The first magnetic attraction element is attracted to the corresponding second magnetic attraction element.
[0023] As a further improvement of one embodiment of the present invention, the box assembly includes a box body for containing solid cleaning agent, and the box body is provided with pressure plates and perforated support plates arranged at intervals, and the solid cleaning agent is contained between the pressure plates and the perforated support plates; as the height of the solid cleaning agent decreases, the pressure plates move toward the perforated support plates;
[0024] The body support is provided with at least two second detection elements, which are arranged one-to-one with the at least two box assemblies. The second detection elements are all arranged on the body support and away from the partition. When the pressure plate moves toward the hollow support plate to a preset position, the corresponding second detection element is triggered. The preset position indicates that the solid cleaning agent is exhausted. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a partial structural diagram of a beverage machine in one embodiment of the present invention, showing the process of tilting and disassembling or installing the box assembly.
[0027] Figure 2 for Figure 1 The front view of the beverage machine in the illustrated embodiment shows the process of tilting and disassembling or installing the box assembly.
[0028] Figure 3 for Figure 2 A schematic diagram of a beverage machine, showing the box assembly installed inside the receiving cavity.
[0029] Figure 4 for Figure 3 A schematic diagram of a single box component.
[0030] Figure 5 for Figure 3 A top view of a beverage machine.
[0031] Figure 6 For along Figure 5 Schematic diagram of the cross section along line AA.
[0032] The repeated use of reference numerals in this specification and the accompanying drawings is intended to indicate the same or similar features or elements of this application. Detailed Implementation
[0033] The present invention will now be described in detail with reference to the specific embodiments shown in the accompanying drawings. However, these embodiments do not limit the present invention, and any structural, methodological, or functional modifications made by those skilled in the art based on these embodiments are included within the protection scope of the present invention.
[0034] It should be understood that terms such as “above,” “over,” “below,” and “under,” used herein to indicate spatial relative position, are for illustrative purposes to describe the relationship of one unit or feature relative to another unit or feature as shown in the accompanying drawings. The terms “first” and “second” used herein are interchangeable to distinguish one component from another, and these terms are not intended to indicate the location or importance of individual components.
[0035] Embodiments of this utility model provide a beverage machine 100, which is particularly effective in cleaning and descaling fully automatic coffee machines and other similar equipment. Specifically, refer to... Figures 1 to 3 The beverage machine 100 of this embodiment includes a body support 20 and a box assembly 30, the box assembly 30 being detachably mounted on the body support 20. The body support 20 defines a receiving cavity 21, the bottom of which is provided with a conveying channel 211, which is connected to the water system inside the beverage machine 100 to convey liquid into the box assembly 30 through the conveying channel 211, and / or to output liquid from the box assembly 30 through the conveying channel 211.
[0036] The housing assembly 30, for example, is a cleaning module for containing solid cleaning agents, or a descaling module for containing solid descaling agents, and is at least partially disposed within the receiving cavity 21. (See reference...) Figures 4 to 6 The bottom of the box assembly 30 is provided with a delivery port 311 for liquid inlet and outlet. The delivery port 311 may include a sealing check valve 32, which opens the delivery port 311 after the box assembly 30 is installed into the receiving cavity 21 and closes the delivery port 311 when the box assembly 30 leaves the receiving cavity 21 to prevent liquid from flowing out of the box assembly 30. To facilitate the installation and removal of the box assembly 30, the receiving cavity 21 has an upper opening 212 located at the top of the body support 20. The box assembly 30 can be operably installed into or separated from the receiving cavity 21 through the upper opening 212.
[0037] The upper opening 212 and the conveying channel 211 are horizontally offset. This spatial misalignment design provides necessary space for the tilting movement of the box assembly 30, allowing it to be inserted at a certain angle during installation and then adjusted to a proper position matching the receiving cavity 21. This improves the ease and stability of assembly. Furthermore, the box assembly 30 is not directly aligned vertically with the conveying channel 211 during installation, preventing impact on the conveying channel 211 or the delivery port 311 due to its weight. This effectively protects the connection structure between the conveying channel 211 and the delivery port 311, extending the service life of the beverage machine.
[0038] Furthermore, a baffle 22 is provided at the top of the receiving cavity 21. For example, the baffle 22 can be integrally formed with the body support 20, or the baffle 22 can be a separately provided rib structure. When the box assembly 30 is installed into the receiving cavity 21 through the upper opening 212, so that the conveying port 311 is connected with the conveying channel 211, the box assembly 30 is connected to the water system inside the beverage machine 100.
[0039] The water system inside the beverage machine 100 supplies liquid to the box assembly 30, and the box assembly 30 supplies liquid to the water system inside the beverage machine 100, both through the same inlet 311. That is, the inlet and outlet of liquid in the box assembly 30 are both through the same inlet 311.
[0040] In the vertical direction, the baffle 22 interferes with the housing assembly 30. Here, "interference" means that the physical structure of the baffle 22 blocks the upward movement path of the housing assembly 30 in a purely vertical direction. This structural design makes it impossible for the housing assembly 30 to be pulled out of the receiving cavity 21 directly and vertically. It must be disassembled through a specific, non-vertical movement trajectory (e.g., tilting first and then pulling it out upward in the tilt direction).
[0041] By installing a baffle 22 at the top of the receiving cavity 21 of the machine body support 20, the baffle 22 interferes with the box assembly 30 in the vertical direction. This structure cleverly prevents the box assembly 30 from being directly removed vertically upwards. Therefore, the box assembly 30 must separate from the receiving cavity 21 along a specific non-vertical trajectory. This guided, indirect disassembly path greatly reduces the possibility of liquid sloshing or splashing inside the box assembly 30 due to sudden removal. This not only improves the user experience through a guided, smooth disassembly path, but more importantly, this structure fundamentally avoids the possibility of liquid sloshing or splashing inside the box assembly 30 due to sudden removal, effectively preventing leakage of liquid inside the box assembly 30 during disassembly and ensuring the cleanliness and hygiene of the beverage machine's interior.
[0042] Continue to refer to Figures 1 to 3 To enable the aforementioned non-vertical, guided assembly and disassembly operations, a baffle 22 is located on one side of the upper opening 212, and the baffle 22 has a mating surface 221 that matches the top shape of the box assembly 30. The box assembly 30 can be tilted relative to the body support 20 along the mating surface 221 to be offset from the baffle 22 and correspond to the upper opening 212, and the box assembly 30 can be operably separated from the receiving cavity 21 from the upper opening 212.
[0043] Specifically, the mating surface 221 can be arc-shaped or inclined. For example, the mating surface 221 may extend downwards in an arc along the direction from the upper opening 212 to the baffle 22; or the mating surface 221 may extend downwards at an incline; or the mating surface 221 may be at its highest point at the upper opening 212. Correspondingly, the top of the box assembly 30 also has a matching arc-shaped or inclined surface. In this way, when it is necessary to disassemble the box assembly 30, the user only needs to apply a slight tilting force, and the box assembly 30 can smoothly tilt and slide relative to the body support 20 along the mating surface 221, as if moving on a preset guide rail, until the box assembly 30 is misaligned with the baffle 22 and aligns with the upper opening 212. At this point, the box assembly 30 can be operably separated from the receiving cavity 21 from the upper opening 212.
[0044] This design provides precise physical guidance for the user's tilting operation, making the assembly and disassembly of the box component 30 smoother and more stable, greatly improving the user experience.
[0045] To further facilitate the tilting action and prevent structural interference or jamming during the combined tilting and lifting motion of the box assembly 30, a conveying pipe 31 is provided at the bottom of the box assembly 30, defining a conveying port 311. Furthermore, the box assembly 30 has a first side surface 331 facing the baffle 22 at the upper opening 212. The bottom end surface 312 of the conveying pipe 31 is inclined downwards relative to the horizontal plane towards the first side surface 331, ensuring that the box assembly 30 can smoothly separate from the inlet of the conveying channel 211 during tilting without being obstructed by vertical interference. Optionally, the tilt angle of the bottom end surface 312 is between 5 and 15 degrees. This tilt angle design not only ensures smooth connection and separation between the conveying pipe 31 and the conveying channel 211 but also effectively reduces the frictional resistance that may be generated during the separation of the box assembly 30, further improving the smoothness of disassembly of the box assembly 30.
[0046] With this inclined arrangement of the bottom end face 312, the conveying pipe 31 always maintains a good installation and separation path with the conveying channel 211 during the tilting process of the box assembly 30, avoiding installation and disassembly difficulties caused by structural interference.
[0047] The box assembly 30 has a first side surface 331 facing the baffle 22 at the upper opening 212. To reliably fix the box assembly 30 in the installation position, a first magnetic attractor 34 is provided on the first side surface 331 near the baffle 22, and a second magnetic attractor 24 is provided on the cavity wall of the receiving cavity 21 at a corresponding position. In one specific embodiment, the first magnetic attractor 34 can be a magnetically conductive metal sheet, and the second magnetic attractor 24 can be a permanent magnet; or, both the first magnetic attractor 34 and the second magnetic attractor 24 can be permanent magnets, as long as they are configured to attract each other. When the box assembly 30 is installed in the receiving cavity 21, the first magnetic attractor 34 and the second magnetic attractor 24 are attracted to each other.
[0048] This magnetic fixing method not only prevents the box assembly 30 from loosening and leaking when installed in the receiving cavity 21, but also provides the user with a clear "click" sound or tactile feedback when the box assembly 30 is installed in place, making the operation convenient and reliable.
[0049] Furthermore, to enable electronic monitoring of the installation status of the box assembly 30, a triggering part 35, such as a protrusion or a magnet, can be formed on the first side 331 near the baffle 22. The machine body bracket 20 is equipped with a first detection element 251, such as a micro switch or a Hall sensor. The first detection element 251 is used to detect the installation status of the box assembly 30 and is configured to be triggered by the triggering part 35. When the box assembly 30 is detected to be installed in place, the main control system of the beverage machine 100 allows the relevant program to be started. If it is not detected or is separated midway, the program is terminated, thereby avoiding equipment failure or liquid leakage caused by the program starting due to the box assembly 30 not being installed properly, and improving the automation level and safety of the beverage machine 100.
[0050] In other embodiments, the structure of the body support 20 may have different designs. For example, the receiving cavity 21 may also have a side opening 213 located on the side of the body support 20, which communicates with the upper opening 212, such that a part of the box assembly 30 is located inside the receiving cavity 21, while another part of the box assembly 30 is exposed from the side opening 213. This design not only makes it convenient for the user to grasp the box assembly 30, but also makes it easy to intuitively identify the type of the box assembly 30.
[0051] In one embodiment, along the vertical direction, the body support 20 may include a first support 201 and a second support 202 connected vertically, with the first support 201 and the second support 202 jointly defining a receiving cavity 21. This split structure is more conducive to the manufacturing of the body support 20 and the assembly of internal components. An upper opening 212 may be provided in the first support 201. A side opening 213 may be provided in the first support 201, or the side opening 213 may be provided in both the first support 201 and the second support 202. By placing the receiving cavity 21 within the space jointly defined by the first support 201 and the second support 202, the structure becomes more flexible and facilitates disassembly and maintenance. Furthermore, the first support 201 and the second support 202 can be quickly connected via snaps, screws, or other means, reducing assembly difficulty and production costs.
[0052] To better guide and support the tilting movement of the box assembly 30, the box assembly 30 has a first side 331 and a second side 332 arranged opposite to each other. A baffle 22 is disposed on the first bracket 201. The bracket cavity wall 203 of the first bracket 201 facing the second side 332 can be tilted, and the tilting direction of the bracket cavity wall 203 is consistent with the tilting direction of the box assembly 30 when it is detached from the receiving cavity 21. This provides stable support during the sliding process of the box assembly 30, prevents the box assembly 30 from shaking, and further optimizes the operating feel. At the same time, the tilting design of the bracket cavity wall 203 can also guide the box assembly 30 when it is disassembled, making the user's operation more effortless and smooth.
[0053] The beverage machine 100 of this utility model can be configured with multiple box components 30 with different functions. In one embodiment, at least two box components 30 are provided, for example, one box component 30 is constructed as a cleaning module and another box component 30 is constructed as a descaling module, and at least two box components 30 are arranged side by side. In this case, the machine body support 20 may include a partition 26, which not only physically separates adjacent box components 30, but also serves as a core structural support component. Baffles 22 can be respectively provided on both sides of the partition 26 to restrict the separation of two adjacent box components 30 from the receiving cavity 21 in the vertical direction. At the same time, each box component 30 is provided with a first magnetic suction member 34, and the partition 26 is provided with a second magnetic suction member 24 corresponding to the first magnetic suction member 34, so that the first magnetic suction member 34 can be attracted to the corresponding second magnetic suction member 24. This highly integrated design integrates the positioning, limiting and fixing functions of multiple modules into one, optimizes the internal space layout, simplifies the overall structure, and facilitates users to manage and replace various consumables in multiple box components 30 in an integrated manner.
[0054] In one embodiment, the consumable can be understood as a solid cleaning agent contained in the box assembly 30. For example, when the box assembly 30 is configured as a cleaning module, the consumable can be an alkaline solid cleaning agent for cleaning coffee oils; when the box assembly 30 is configured as a descaling module, the consumable can be an acidic solid cleaning agent for removing limescale.
[0055] To achieve automated detection of consumables, the cartridge assembly 30 may include a cartridge containing solid cleaning agents. The cartridge contains spaced-apart pressure plates 361 and perforated support plates 362, with the solid cleaning agents contained between them. The perforated support plates 362 support the solid cleaning agents and allow water flow to fully dissolve them. The pressure plates 361 are typically driven by their own weight or an elastic element (e.g., a spring). This elastic element provides a preload between the pressure plates 361 and the top of the cartridge, continuously applying a downward pressure to both the pressure plates 361 and the solid cleaning agents. Therefore, as the solid cleaning agents dissolve and decrease in height, the pressure plates 361 move synchronously toward the perforated support plates 362 under the influence of the elastic element.
[0056] Accordingly, the body support 20 is provided with at least two second detection elements 252, such as Hall sensors. Each of the at least two second detection elements 252 corresponds to one of the at least two box assemblies 30, and both are located on the body support 20 and away from the partition 26. When the pressure plate 361 moves toward the perforated support plate 362 to a preset position, the magnet on the pressure plate 361 approaches the corresponding second detection element 252 and triggers it. The preset position indicates that the solid cleaning agent is depleted. This mechanism enables real-time and reliable monitoring of the remaining consumables and automatically reminds the user to replace them, ensuring the effective execution of cleaning and descaling functions.
[0057] The installation and removal process of box assembly 30 is described in detail below. (Refer to...) Figure 2 and Figure 3 When the box assembly 30 needs to be disassembled, the user only needs to apply a tilting force to one side to the box assembly 30, and the top of the box assembly 30 will begin to tilt and slide along the mating surface 221 of the baffle 22. During this process, since the bottom end surface 312 of the conveying pipe 31 is inclined downward relative to the horizontal plane toward the first side 331, the conveying pipe 31 can smoothly tilt along with the box assembly 30 in the conveying channel 211 without being obstructed by structural interference. As the box assembly 30 continues to tilt, the attraction force between the first magnetic suction member 34 and the second magnetic suction member 24 will gradually weaken until they are completely separated. At this time, the box assembly 30 has tilted to be offset from the baffle 22 and corresponds to the upper opening 212. The user can easily remove the box assembly 30 from the upper opening 212, and the sealing check valve 32 automatically closes the conveying port 311 as the box assembly 30 is removed.
[0058] When installing the box assembly 30, the user simply aligns the box assembly 30 with the upper opening 212 and then slightly tilts it to push it into the receiving cavity 21 until the delivery tube 31 of the box assembly 30 contacts the delivery channel 211 and the top of the box assembly 30 contacts the mating surface 221 of the baffle 22. The user can then continue to apply inward force, and the box assembly 30, guided by the mating surface 221, gradually adjusts to a properly aligned position matching the receiving cavity 21. During this process, the first magnetic 34 and the second magnetic 24 gradually approach each other and eventually adhere together, reliably fixing the box assembly 30 in the installation position. Simultaneously, the trigger unit 35 also triggers the first detection element 251, sending a signal to the main control system of the beverage machine 100 that the box assembly 30 is installed correctly. At this point, the user can start the relevant procedures for use.
[0059] The design of the beverage machine 100 not only improves the ease and stability of disassembling and assembling the box component 30, but also effectively protects the internal connection structure of the equipment and extends its service life.
[0060] It should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This way of describing the specification is only for clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
[0061] The detailed descriptions listed above are merely specific descriptions of feasible implementations of this utility model, and are not intended to limit the scope of protection of this utility model. All equivalent implementations or modifications made without departing from the spirit of this utility model should be included within the scope of protection of this utility model.
Claims
1. A beverage machine, characterized in that, include: The body support defines a receiving cavity, and the bottom of the receiving cavity is provided with a conveying channel; A box assembly is at least partially disposed within the receiving cavity, and a delivery port is provided at the bottom of the box assembly; The receiving cavity has an upper opening located at the top of the body support, and the box assembly is operably installed in the receiving cavity or separated from the receiving cavity from the upper opening; the upper opening is horizontally offset from the conveying channel, and a baffle is provided at the top of the receiving cavity; the box assembly is installed in the receiving cavity from the upper opening so that the conveying port is connected to the conveying channel. Along the vertical direction, the baffle interferes with the box assembly.
2. The beverage machine according to claim 1, characterized in that, The baffle is located on one side of the upper opening. The baffle has a mating surface that matches the top shape of the box assembly. The box assembly can be tilted relative to the body support along the mating surface to be offset from the baffle and correspond to the upper opening. The box assembly is operable to separate from the receiving cavity from the upper opening. Along the direction from the upper opening to the baffle, the mating surface is configured with one of the following features: The mating surface extends obliquely downward; The mating surface extends downward in an arc shape; The mating surface is at its highest position at the upper opening.
3. The beverage machine according to claim 1, characterized in that, The box assembly has a conveying pipe at its bottom, which defines the conveying port; the box assembly has a first side facing the baffle, and the bottom end face of the conveying pipe is inclined downward relative to the horizontal plane toward the first side.
4. The beverage machine according to claim 1, characterized in that, The box assembly has a first side facing the baffle at the upper opening, a first magnetic member is provided on the first side near the baffle, and a second magnetic member is provided on the cavity wall of the receiving cavity. The box assembly is installed in the receiving cavity, and the first magnetic member and the second magnetic member are attracted to each other.
5. The beverage machine according to claim 1, characterized in that, The box assembly has a first side facing the baffle at the upper opening, and a trigger portion is formed on the first side near the baffle. The body bracket is provided with a first detection element, which is used to detect the installation status of the box assembly. The first detection element is configured to be triggered by the trigger portion.
6. The beverage machine according to claim 1, characterized in that, The receiving cavity also has a side opening located on the side of the body support, the side opening communicating with the upper opening; a portion of the box assembly is located inside the receiving cavity, and another portion of the box assembly is exposed from the side opening.
7. The beverage machine according to claim 6, characterized in that, Along the vertical direction, the body support includes a first support and a second support connected vertically, the first support and the second support together defining the receiving cavity; the upper opening is disposed on the first support, the side opening is disposed on the first support, or the side opening is disposed on the first support and the second support.
8. The beverage machine according to claim 7, characterized in that, The box assembly has a first side and a second side disposed opposite to each other. The first side faces the baffle, the baffle is disposed on the first bracket, the first bracket is inclined toward the bracket cavity wall of the second side, and the inclination direction of the bracket cavity wall is consistent with the inclination direction when the box assembly is disengaged from the receiving cavity.
9. The beverage machine according to any one of claims 1 to 8, characterized in that, The box assembly is provided with at least two, and the at least two box assemblies are arranged side by side; the body support includes a partition, which is used to separate adjacent box assemblies; baffles are respectively provided on both sides of the partition to restrict the separation of two adjacent box assemblies from the receiving cavity in the vertical direction; Each of the box components is provided with a first magnetic attraction element, and each partition is provided with a second magnetic attraction element corresponding to the first magnetic attraction element. The first magnetic attraction element is attracted to the corresponding second magnetic attraction element.
10. The beverage machine according to claim 9, characterized in that, The box assembly includes a box body for containing solid cleaning agent. The box body is provided with spaced-apart pressure plates and perforated support plates. The solid cleaning agent is contained between the pressure plates and the perforated support plates. As the height of the solid cleaning agent decreases, the pressure plates move toward the perforated support plates. The body support is provided with at least two second detection elements, which are arranged one-to-one with the at least two box assemblies. The second detection elements are all arranged on the body support and away from the partition. When the pressure plate moves toward the hollow support plate to a preset position, the corresponding second detection element is triggered. The preset position indicates that the solid cleaning agent is exhausted.