Storage barrel structure and beverage making machine

By designing a detachable storage cylinder structure and sealing components, the problem of cleaning dead corners in the storage cylinder of beverage making machines has been solved, achieving convenient cleaning and improved beverage hygiene.

CN223873746UActive Publication Date: 2026-02-06NINGBO HAOJIA ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202520158314.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-02-06
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

The storage tank structure of existing beverage making machines has cleaning dead spots, making it difficult to clean thoroughly and affecting the hygiene and taste of the beverages.

Method used

A storage cylinder structure is designed, including a storage chamber, a feed inlet, a discharge outlet, and an installation opening. The connecting components are detachable and installable. It is equipped with a feed groove and a through hole. The feed cover plate is movably connected. Combined with a sealing component and a positioning groove, it ensures smooth entry of raw materials and prevents contaminants from entering.

Benefits of technology

It enables easy disassembly and cleaning of the storage container, avoids cleaning dead spots, ensures beverage hygiene, and improves cleaning efficiency and beverage quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a storage barrel structure and a beverage making machine, and belongs to the technical field of beverage making machines. A material storage barrel structure is used for a beverage making machine and comprises a material storage barrel, the material storage barrel is provided with a material storage cavity, the material storage barrel is provided with a feeding port, a discharging port and an installation opening, and the feeding port, the discharging port and the installation opening are communicated with the material storage cavity; the connecting assembly is detachably arranged on the storage barrel, at least part of the connecting assembly is matched with the mounting opening, at least part of the connecting assembly extends into the storage cavity, the part, extending into the storage cavity, of the connecting assembly is provided with a feeding groove, and the connecting assembly is provided with a through hole used for communicating the feeding groove with the storage cavity; and the feeding cover plate is arranged at the feeding hole in a covering manner. And the connecting assembly is detachably installed on the material storage barrel, so that a user can conveniently disassemble, clean and maintain the device, and cleaning dead corners are avoided. The part, extending to the storage cavity, of the connecting assembly is provided with a feeding groove and a through hole, it is guaranteed that raw materials enter the storage cavity smoothly, and raw material splashing is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of beverage manufacturing machine, in particular to a kind of storage cylinder structure and beverage manufacturing machine. BACKGROUND

[0002] The existing storage cylinder structure of beverage manufacturing machine has the problem of cleaning dead angle in long-term use. These cleaning dead angles are usually manifested in the existence of gap or irregular surface at the connection between the storage cylinder structure and the machine body, which is easy to accumulate dirt and difficult to clean. Or the opening of the storage cylinder structure is too small and there is a cleaning dead angle at the corner, which is difficult to clean the inside thoroughly. These problems not only increase the difficulty and time of cleaning and maintenance, but also may affect the health and taste of the beverage. SUMMARY

[0003] Therefore, it is necessary to provide a storage cylinder structure and beverage manufacturing machine to solve the problem of cleaning dead angle in the existing storage cylinder structure of beverage manufacturing machine.

[0004] A storage cylinder structure for a beverage manufacturing machine, comprising: a storage cylinder provided with a storage cavity, the storage cylinder is provided with a feeding port, a discharging port and a mounting opening, the feeding port, the discharging port and the mounting opening are respectively communicated with the storage cavity; a connecting assembly is detachably arranged on the storage cylinder, at least part of the connecting assembly is matched with the mounting opening, at least part of the connecting assembly extends into the storage cavity, the part of the connecting assembly extending into the storage cavity is provided with a feeding groove, the connecting assembly is provided with a through hole for communicating the feeding groove and the storage cavity, the connecting assembly is provided with a mounting gap communicated with the storage cavity; a feeding cover plate is arranged at the feeding port, the feeding cover plate is arranged opposite to the feeding groove, and one side of the feeding cover plate is movably connected with at least one side edge of the feeding port.

[0005] The first aspect of the application discloses a storage cylinder structure. The storage cylinder is provided with a storage cavity, a feed inlet and a discharge outlet, which realizes the storage, feeding and discharging of beverage raw materials and provides a basic container for the beverage manufacturing process. The design of the installation opening provides accurate alignment for the installation of the connecting assembly, making the connecting assembly easy to install and disassemble, and facilitating cleaning and maintenance. The connecting assembly can be detachably installed on the storage cylinder, making it convenient for users to disassemble, clean and maintain, avoiding dead cleaning corners and improving cleaning efficiency. The part of the connecting assembly extending into the storage cavity is provided with a feed groove, and the connecting assembly is provided with a through hole for communicating the feed groove and the storage cavity, ensuring that the raw materials smoothly enter the storage cavity and avoiding splashing of the raw materials. The connecting assembly is adapted to the installation opening, making the assembly of the storage cylinder structure more convenient and fast. The connecting assembly is provided with an installation gap communicating with the storage cavity, which can enable the entire cylinder assembly to be stably installed with the machine as a whole, and at the same time, allows the stirring equipment of the machine to extend into the storage cavity to stir the material evenly. The feed cover plate is arranged at the feed inlet, effectively preventing dust and foreign matter from entering the storage cavity and ensuring the hygiene of the beverage. One side of the feed cover plate is movably connected with at least one side edge of the feed inlet, which is convenient for users to open and close and add raw materials.

[0006] In one embodiment, the connecting assembly includes a mounting portion and a feeding portion, the feeding portion is arranged on the mounting portion, the mounting portion is adapted to the installation opening, and the feeding portion extends into the storage cavity, the feeding portion is provided with the feed groove and the through hole, the groove of the feed groove is in abutment with the inner wall of the storage cavity, and the feed groove is arranged opposite to the feed inlet. By adapting the mounting portion to the installation opening, it is ensured that the connecting assembly can be stably installed on the storage cylinder, avoiding loosening or falling off, and improving the reliability and stability of the overall structure. The feeding portion extends into the storage cavity, and the feed groove and the through hole arranged on the feeding portion can guide the material to smoothly enter the storage cavity, reducing the loss and retention of the material during the entering process. The groove of the feed groove is in abutment with the inner wall of the storage cavity, further improving the installation stability between the connecting assembly and the storage cylinder. The design of the feed groove arranged opposite to the feed inlet facilitates the feeding operation of the operator.

[0007] In one embodiment, the through hole is located at least one side edge of the groove bottom of the feed groove, and the groove bottom of the feed groove is radially inclined to the side where the through hole is located. By locating the through hole at least one side edge of the groove bottom of the feed groove, and radially inclining the groove bottom of the feed groove to the side where the through hole is located, a region guiding the flow of material is formed, which can effectively guide the flow of material to the through hole, ensuring the smoothness of feeding. In addition, the design of the through hole located at the edge of the groove bottom makes the groove bottom become a barrier to prevent the splashing of the material, ensuring the safety of the user when adding the material and ensuring the cleanliness of the working environment.

[0008] In one of the embodiments, the feeding groove is outwardly folded at the groove opening to form a folded portion, and the folded portion is in abutment with the inner wall of the storage cavity. By outwardly folding the feeding groove at the groove opening to form a folded portion, and making the folded portion in abutment with the inner wall of the storage cavity, the sealing performance of the connection between the feeding groove and the storage cavity is enhanced. In addition, the abutment of the folded portion with the inner wall of the storage cavity also has the functions of positioning and fixing, further improving the mounting stability between the connection assembly and the storage cylinder, and avoiding loosening of the structure of the storage cylinder during use.

[0009] In one of the embodiments, a sealing assembly is further included, the connection assembly is provided with an adaptive groove, the sealing assembly is adapted with the adaptive groove, and at least part of the sealing assembly is in abutment with the inner wall of the storage cavity. By adapting the sealing assembly with the adaptive groove, and making at least part of the sealing assembly in abutment with the inner wall of the storage cavity, an effective sealing structure is formed, which prevents leakage of materials from the connection between the connection assembly and the storage cylinder, ensures effective storage of the materials, and avoids waste of the materials and environmental pollution. The connection structure between the storage cylinder, the connection assembly and the sealing assembly is simple, further eliminating the cleaning dead angle of the structure of the storage cylinder, and improving the cleaning efficiency. In addition, the adaptive design of the sealing assembly and the adaptive groove makes the sealing assembly easy to be detached from the connection assembly, facilitating thorough cleaning of the connection assembly and the sealing assembly.

[0010] In one of the embodiments, one side groove wall of the adaptive groove is extended to form a protruding portion, and the protruding portion is in abutment with the edge of the mounting opening. By the abutment of the protruding portion with the edge of the mounting opening, an additional fixing point is formed, enhancing the connection stability between the connection assembly and the storage cylinder. At the same time, the contact area between the connection assembly and the storage cylinder is increased, improving the stability of the structure, and effectively preventing loosening of the storage cylinder during use.

[0011] In one of the embodiments, the storage cylinder is provided with a boss, at least one side edge of the feeding port is extended inwardly to form the boss, at least part of the feeding cover plate on the side facing the feeding port is in contact with the boss, and the boss is used to support the feeding cover plate. By extending the boss from the edge of the feeding port, the boss provides stable support for the feeding cover plate, preventing the feeding cover plate from sinking due to stress during use, and ensuring the normal working state of the feeding cover plate. The contact and overlap of the feeding cover plate with the boss form a tight sealing structure, preventing dust and other pollutants from entering the storage cylinder through the connection between the feeding cover plate and the storage cylinder, and ensuring the hygiene of the materials.

[0012] In one of the embodiments, the hopper is provided with a first movable slot and a second movable slot, which are located on the same side of the feeding port and arranged oppositely, and at least part of the feeding cover plate is adapted to the first movable slot and the second movable slot. By arranging the first movable slot and the second movable slot on the same side of the feeding port and adapting at least part of the feeding cover plate to the first movable slot and the second movable slot, the feeding cover plate can be moved and rotated relative to at least one side edge of the feeding port, realizing the function of adding material to the feeding port by lifting the feeding cover plate, which is convenient for users to use.

[0013] In one of the embodiments, the feeding cover plate is provided with a first connecting protrusion and a second connecting protrusion, which are adapted to the first movable slot and the second movable slot, respectively. By adapting the first connecting protrusion and the second connecting protrusion to the first movable slot and the second movable slot, the reliability of the connection between the feeding cover plate and the hopper is ensured, preventing the feeding cover plate from accidentally falling off during use. The design of the connecting protrusion and the movable slot enables the feeding cover plate to be moved and rotated relative to at least one side edge of the feeding port with the connecting protrusion as the axis. The connection structure between the feeding cover plate and the hopper is simple, further eliminating the cleaning dead angle of the hopper structure. At the same time, the structure design of the feeding cover plate is simple, which is convenient for users to add material, and effectively prevents dust and other pollutants from entering the hopper cavity from the feeding port, avoiding the pollution of the material.

[0014] In one of the embodiments, the feeding cover plate includes a cover plate body and a gripping portion, the cover plate body is movably connected to the hopper, the gripping portion is arranged on the cover plate body, the gripping portion is located on the side of the cover plate body away from the hopper, and the gripping portion forms an angle with the plane where the cover plate body is located. By arranging the gripping portion on the side of the cover plate body away from the hopper and forming an angle between the gripping portion and the plane where the cover plate body is located, it is convenient for the operator to grasp and open the feeding cover plate, improving the operation efficiency and safety. Preferably, the gripping portion is integrally formed with the cover plate body, which can further eliminate the cleaning dead angle. The anti-slip protrusions are arranged on the gripping portion, and the anti-slip protrusions are seamlessly smooth with the joint surface of the gripping portion. The structure design of the anti-slip protrusions not only plays a role in preventing slipping when the user contacts the gripping portion, but also avoids the existence of cleaning dead angle of the feeding cover plate.

[0015] In one of the embodiments, the feeding cover plate is provided with a buckle on one side facing the feeding port, and the buckle is adapted to be buckled with at least one side edge of the feeding port. By buckling the buckle with the edge of the feeding port, a tight sealing structure is formed, further improving the sealing between the feeding cover plate and the storage cylinder. When the beverage making machine is running, the storage cylinder structure is not shaken, so that the feeding cover plate is opened relative to the feeding port, and the buckling structure of the buckle with the edge of the feeding port effectively prevents dust and other pollutants from entering the inside of the storage cavity from the feeding port, polluting the material.

[0016] In one of the embodiments, the storage cylinder is provided with a positioning groove in the storage cavity, and at least part of the connecting assembly extending into the storage cavity is adapted to the positioning groove. By providing the positioning groove in the storage cylinder and adapting at least part of the connecting assembly extending into the storage cavity to the positioning groove, the connecting assembly can be precisely positioned to prevent the connecting assembly from shifting and falling off during use. In addition, the design of the positioning groove simplifies the installation process of the connecting assembly and improves the assembly efficiency

[0017] A beverage making machine comprises: a rack assembly; a stirrer provided on the rack assembly, the stirrer being adapted to the mounting opening; a locking member provided on the rack assembly; a storage cylinder structure as described above provided on the rack assembly and the stirrer, at least part of the storage cylinder structure covering the outside of the stirrer, at least part of the storage cylinder structure being detachably connected with the locking member, the locking member being used to control the connection and disconnection of the storage cylinder structure with the rack assembly.

[0018] The second aspect of the present application discloses a beverage making machine, by integrating the storage cylinder structure, the stirrer and the locking member and other structures on the rack assembly, the overall structure of the beverage making machine is more compact, saving space, the stirrer is adapted to the mounting opening, ensuring that the stirrer can extend into the inside of the storage cylinder structure through the mounting opening, so that the beverage raw materials can be fully mixed, improving the taste and quality of the beverage. The storage cylinder structure is detachably connected with the rack assembly through the locking member, so that the storage cylinder structure can be easily disassembled for cleaning and maintenance, ensuring the hygiene and safety of the beverage making machine. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 is a perspective view of the storage cylinder structure;

[0020] Figure 2 is a sectional view of the storage cylinder structure;

[0021] Figure 3 is a structural schematic view of the storage cylinder structure;

[0022] Figure 4 is a perspective view of the storage cylinder;

[0023] Figure 5 is a sectional view of the storage cylinder;

[0024] Figure 6 is a perspective view of the connecting assembly;

[0025] Figure 7 is a structural schematic view of the feeding cover plate and the storage cylinder.

[0026] In the drawings, the correspondence between the reference signs and the names of the components is as follows:

[0027] 1. The storage cylinder, 112. The boss, 101. The storage cavity, 102. The feeding port, 103. The first movable slot, 104. The second movable slot, 105. The discharging port, 106. The mounting opening, 107. The positioning slot;

[0028] 2. The connecting assembly, 21. The mounting portion, 211. The protruding portion, 22. The feeding portion, 221. The folded portion, 201. The feeding slot, 202. The through hole, 203. The fitting slot;

[0029] 3. The feeding flip cover, 31. The cover plate body, 311. The first connecting protrusion, 312. The second connecting protrusion, 313. The buckle, 32. The gripping portion;

[0030] 4. The sealing assembly. DETAILED DESCRIPTION

[0031] In order to enable a more clear understanding of the above-mentioned objects, features and advantages of the present application, the present application will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0032] In the following description, a lot of specific details are set forth in order to facilitate a thorough understanding of the present application, however, the present application can also be implemented in other different ways from those described herein, and therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.

[0033] Some embodiments of the present application will be described below with reference to the drawings.

[0034] Embodiment 1, as Figures 1 to 7As shown, the embodiment discloses a storage cylinder structure for a beverage manufacturing machine, comprising: a storage cylinder 1, the storage cylinder 1 is provided with a storage cavity 101, the storage cylinder 1 is provided with a feeding port 102, a discharging port 105 and a mounting opening 106, the feeding port 102, the discharging port 105 and the mounting opening 106 are communicated with the storage cavity 101 respectively; a connecting assembly 2, the connecting assembly 2 is detachably arranged on the storage cylinder 1, at least part of the connecting assembly 2 is matched with the mounting opening 106, at least part of the connecting assembly 2 extends into the storage cavity 101, the part of the connecting assembly 2 extending into the storage cavity 101 is provided with a feeding groove 201, the connecting assembly 2 is provided with a through hole 202 for communicating the feeding groove 201 and the storage cavity 101, the connecting assembly 2 is provided with a mounting gap communicated with the storage cavity 101; a feeding cover plate 3, the feeding cover plate 3 is arranged at the feeding port 102, the feeding cover plate 3 is arranged opposite to the feeding groove 201, one side of the feeding cover plate 3 is movably connected with at least one side edge of the feeding port 102.

[0035] The first aspect of the present application discloses a storage cylinder structure, by providing the storage cylinder 1 with the storage cavity 101, the feeding port 102 and the discharging port 106, the storage, feeding and discharging of the beverage raw materials are realized, and a basic container is provided for the beverage manufacturing process. The design of the mounting opening 106 provides accurate positioning for the installation of the connecting assembly 2, so that the connecting assembly 2 can be conveniently installed and detached, and cleaning and maintenance are facilitated. The connecting assembly 2 is detachably installed on the storage cylinder 1, which facilitates users to detach, clean and maintain, avoids the existence of cleaning dead angles, and improves the cleaning efficiency. The part of the connecting assembly 2 extending into the storage cavity 101 is provided with the feeding groove 201, and the connecting assembly 2 is provided with the through hole 202 for communicating the feeding groove 201 and the storage cavity 101, so as to ensure that the raw materials smoothly enter the storage cavity 101 and avoid splashing of the raw materials. The connecting assembly 2 is matched with the mounting opening 106, so that the assembly of the storage cylinder structure is more convenient and fast. The connecting assembly 2 is provided with the mounting gap communicated with the storage cavity 101, so that the whole cylinder assembly can be stably installed with the machine as a whole, and at the same time, the stirring equipment of the machine can extend into the storage cavity 101 to stir the materials evenly. The feeding cover plate 3 is arranged at the feeding port 102, which effectively prevents dust and foreign matters from entering the storage cavity 101 and ensures the hygiene of the beverage. One side of the feeding cover plate 3 is movably connected with at least one side edge of the feeding port 102, which facilitates users to open and close and add raw materials.

[0036] As Figure 2 and Figure 3As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further limited in that: the connecting assembly 2 comprises a mounting portion 21 and a feeding portion 22, the feeding portion 22 is arranged on the mounting portion 21, the mounting portion 21 is adapted to the mounting opening 106, and the feeding portion 22 extends into the storage cavity 101, the feeding portion 22 is provided with a feeding groove 201 and a through hole 202, the groove of the feeding groove 201 abuts against the inner wall of the storage cavity 101, and the feeding groove 201 is arranged opposite to the feeding port 102. By adapting the mounting portion 21 to the mounting opening 106, it is ensured that the connecting assembly 2 can be stably mounted on the storage barrel 1, avoiding loosening or falling off, and improving the reliability and stability of the overall structure. The feeding portion 22 extends into the storage cavity 101, and the feeding groove 201 and the through hole 202 arranged on the feeding portion 22 can guide the material to smoothly enter the storage cavity 101, reducing the loss and stagnation of the material during the entering process. The groove of the feeding groove 201 abuts against the inner wall of the storage cavity 101, further improving the mounting stability between the connecting assembly 2 and the storage barrel 1. The design that the feeding groove 201 is arranged opposite to the feeding port 102 facilitates the feeding operation of the operator.

[0037] As shown in the drawings, Figure 3 and Figure 6 in addition to the features of the above embodiments, the present embodiment is further limited in that: the through hole 202 is located at least one side edge of the groove bottom of the feeding groove 201, and the groove bottom of the feeding groove 201 is radially inclined to the side where the through hole 202 is located. By locating the through hole 202 at least one side edge of the groove bottom of the feeding groove 201, and radially inclining the groove bottom of the feeding groove 201 to the side where the through hole 202 is located, a region guiding the flow of material is formed, which can effectively guide the material to flow to the through hole 202, ensuring the smoothness of feeding. In addition, the design that the through hole 202 is located at the edge of the groove bottom makes the groove bottom become a barrier to prevent material from splashing, ensuring the safety of the user when adding material, and ensuring the cleanliness of the working environment.

[0038] As shown in the drawings, Figure 2 and Figure 6 in addition to the features of the above embodiments, the present embodiment is further limited in that: the groove of the feeding groove 201 is outwardly folded and extended to form a folded portion 221, and the folded portion 221 abuts against the inner wall of the storage cavity 101. By outwardly folding and extending the groove of the feeding groove 201 to form a folded portion 221, and abutting the folded portion 221 against the inner wall of the storage cavity 101, the sealing property of the connection between the feeding groove 201 and the storage cavity 101 can be enhanced. In addition, the abutment of the folded portion 221 and the inner wall of the storage cavity 101 also has the effect of positioning and fixing, further improving the mounting stability between the connecting assembly 2 and the storage barrel 1, avoiding loosening of the storage barrel structure during use.

[0039] As shown in the drawings, Figure 2 and Figure 3As shown, in addition to the features of the above embodiments, the present embodiment is further limited in that: the connecting assembly 2 is provided with an adaptive slot 203, the sealing assembly 4 is adapted to the adaptive slot 203, and at least part of the sealing assembly 4 abuts the inner wall of the storage cavity 101. By adapting the sealing assembly 4 to the adaptive slot 203 and abutting the inner wall of the storage cavity 101, an effective sealing structure is formed to prevent material from leaking from the connection between the connecting assembly 2 and the storage barrel 1, ensuring effective storage of the material and avoiding waste and environmental pollution. The connection structure between the storage barrel 1, the connecting assembly 2 and the sealing assembly 4 is simple, further eliminating the cleaning dead angle of the storage barrel structure and improving the cleaning efficiency. Moreover, the adaptive design of the sealing assembly 4 and the adaptive slot 203 makes it easy to detach the sealing assembly 4 from the connecting assembly 2, facilitating thorough cleaning of the connecting assembly 2 and the sealing assembly 4.

[0040] As shown in Figure 3 and Figure 6 , in addition to the features of the above embodiments, the present embodiment is further limited in that: one side wall of the adaptive slot 203 extends to form a protruding portion 211, and the protruding portion 211 abuts the edge of the installation opening 106. By abutting the protruding portion 211 with the edge of the installation opening 107, an additional fixing point is formed, enhancing the connection stability between the connecting assembly 2 and the storage barrel 1. At the same time, the contact area between the connecting assembly 2 and the storage barrel 1 is increased, improving the stability of the structure and effectively preventing the storage barrel from loosening during use.

[0041] As shown in Figure 5 and Figure 7 , in addition to the features of the above embodiments, the present embodiment is further limited in that: the storage barrel 1 is provided with a boss 112, at least one side edge of the feed inlet 102 extends inward to form the boss 112, and at least part of the feed cover plate 3 on the side facing the feed inlet 102 contacts the boss 112, which is used to support the feed cover plate 3. By extending the edge of the feed inlet 102 to form the boss 112, the boss 112 provides stable support for the feed cover plate 3, preventing the feed cover plate 3 from sinking due to stress during use and ensuring the normal working state of the feed cover plate 3. The contact and overlap of the feed cover plate 3 and the boss 112 form a tight sealing structure, preventing dust and other pollutants from entering the storage barrel 101 through the connection between the feed cover plate 3 and the storage barrel 1, ensuring the hygiene of the material.

[0042] As shown in Figure 5 and Figure 7As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further defined as: the storage cylinder 1 is provided with a first movable groove 103 and a second movable groove 104, the first movable groove 103 and the second movable groove 104 are located on the same side of the feed port 102 and are oppositely arranged, and at least part of the feed cover plate 3 is adapted to the first movable groove 103 and the second movable groove 104. By arranging the first movable groove 103 and the second movable groove 104 on the same side of the feed port 102, and adapting at least part of the feed cover plate 3 to the first movable groove 103 and the second movable groove 104 respectively, the feed cover plate 3 can be pivotally rotated relative to at least one side edge of the feed port 102, realizing the function of adding material to the feed port 102 by lifting the feed cover plate 3, and facilitating user use.

[0043] As shown in the drawings, Figure 5 and Figure 7 As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further defined as: the feed cover plate 3 is provided with a first connecting protrusion 311 and a second connecting protrusion 312, and the first connecting protrusion 311 and the second connecting protrusion 312 are adapted to the first movable groove 103 and the second movable groove 104 respectively. By adapting the first connecting protrusion 311 and the second connecting protrusion 312 to the first movable groove 103 and the second movable groove 104, the reliability of the connection between the feed cover plate 3 and the storage cylinder 1 is ensured, preventing the feed cover plate 3 from accidentally falling off during use. The design of the connecting protrusion and the movable groove ensures that the feed cover plate 3 can be pivotally rotated relative to at least one side edge of the feed port 102 with the connecting protrusion as the axis. The connection structure between the feed cover plate 3 and the storage cylinder 1 is simple, further eliminating the cleaning dead angle of the storage cylinder structure. At the same time, the structural design of the feed cover plate 3 is simple, facilitating user to add material, and effectively preventing dust and other pollutants from entering the storage cavity 101 from the feed port 102, avoiding the pollution of the material.

[0044] As shown in the drawings, Figure 1 and Figure 7As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further defined as: the feeding cover plate 3 comprises a cover plate body 31 and a gripping portion 32, the cover plate body 31 is movably connected with the storage cylinder 1, the gripping portion 32 is arranged on the cover plate body 31, the gripping portion 32 is located on the side of the cover plate body 31 away from the storage cylinder 1, and the gripping portion 32 forms an angle with the plane where the cover plate body 31 is located. By arranging the gripping portion 32 on the side of the cover plate body 31 away from the storage cylinder 1, and forming an angle between the gripping portion 32 and the plane where the cover plate body 31 is located, it is convenient for the operator to grasp and open the feeding cover plate, and the operation efficiency and safety are improved. Preferably, the gripping portion 32 is integrally formed with the cover plate body 31, which can further eliminate the cleaning dead angle. The anti-slip protrusions are arranged on the gripping portion 32, and the anti-slip protrusions are seamlessly smooth with the joint surface of the gripping portion 32. The structural design of the anti-slip protrusions not only plays a role in preventing slipping when the user contacts the gripping portion 32, but also avoids the existence of a cleaning dead angle in the feeding cover plate 3.

[0045] As shown in the drawings, Figure 7 In addition to the features of the above embodiments, the present embodiment is further defined as: the feeding cover plate 3 is provided with a buckle 313 on the side facing the feeding port 102, and the buckle 313 is adaptively buckled with at least one side edge of the feeding port 102. By adaptively buckling the buckle 313 with the edge of the feeding port 102, a tight sealing structure is formed, further improving the sealing between the feeding cover plate 3 and the storage cylinder 1. Avoiding that the beverage making machine is vibrated during operation, so that the feeding cover plate 3 is opened relative to the feeding port 102, and the adaptive buckling structure of the buckle 313 with the edge of the feeding port 102 effectively prevents dust and other pollutants from entering the inside of the storage cavity 101 from the feeding port 102, polluting the material.

[0046] As shown in the drawings, Figure 2 and Figure 5 In addition to the features of the above embodiments, the present embodiment is further defined as: the storage cylinder 1 is provided with a positioning groove 107, the positioning groove 107 is located in the storage cavity 101, and at least part of the connecting assembly 2 extending into the storage cavity 101 is adapted with the positioning groove 107. By arranging the positioning groove 107 in the storage cylinder 1, and adapting at least part of the connecting assembly 2 extending into the storage cavity 101 with the positioning groove 107, the connecting assembly 2 can be precisely positioned, preventing the connecting assembly 2 from deviating and falling off during use. In addition, the design of the positioning groove 107 simplifies the installation process of the connecting assembly 2, improving the assembly efficiency

[0047] Embodiment 2, as shown in the drawings, Figures 1 to 7As shown, the embodiment discloses a beverage manufacturing machine, comprising: a rack assembly; a stirrer, the stirrer is arranged on the rack assembly, the stirrer is matched with a mounting opening; a locking piece, the locking piece is arranged on the rack assembly; a storage cylinder structure as described above, the storage cylinder structure is arranged on the rack assembly and the stirrer, the storage cylinder structure covers at least part of the stirrer, at least part of the storage cylinder structure is detachably connected with the locking piece, and the locking piece is used for controlling the connection and disconnection of the storage cylinder structure and the rack assembly.

[0048] The second aspect of the application discloses a beverage manufacturing machine, by integrating the storage cylinder structure, the stirrer and the locking piece and other structures on the rack assembly, so that the overall structure of the beverage manufacturing machine is more compact, saves space, the stirrer is matched with the mounting opening, and it is ensured that the stirrer can extend to the inside of the storage cylinder structure through the mounting opening, so that the beverage raw materials can be fully mixed, and the taste and quality of the beverage are improved. The storage cylinder structure is detachably connected with the rack assembly through the locking piece, so that the storage cylinder structure can be conveniently disassembled for cleaning and maintenance, and the hygiene and safety of the beverage manufacturing machine are ensured.

[0049] The technical features of the above-mentioned embodiments can be combined arbitrarily, in order to make the description simple, not all possible combinations of the technical features in the above-mentioned embodiments are described, however, as long as the combination of the technical features does not exist contradictory, it should be considered that it is the scope of the present application.

[0050] The above-mentioned embodiments only express several implementation manners of the present application, the description is more specific and detailed, but it should not be understood as the limitation of the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. A cartridge structure for a beverage making machine, characterized by, The utility model relates to a kind of material storage barrel and its connecting assembly, including: Material storage barrel (1), the material storage barrel (1) is equipped with storage cavity (101), the material storage barrel (1) is opened with feed inlet (102), discharge port (105) and installation open mouth (106), feed inlet (102), discharge port (105) and installation open mouth (106) are communicated with storage cavity (101) respectively; Connecting assembly (2), the connecting assembly (2) is detachably arranged on the material storage barrel (1), at least part of the connecting assembly (2) is adapted with the installation open mouth (106), at least part of the connecting assembly (2) extends into storage cavity (101), the part of the connecting assembly (2) extending into storage cavity (101) is equipped with feed groove (201), the connecting assembly (2) is equipped with through hole (202) for communicating feed groove (201) and storage cavity (101), the connecting assembly (2) is opened with installation gap being communicated with storage cavity (101); Feed cover plate (3), the feed cover plate (3) is covered in feed inlet (102), the feed cover plate (3) is oppositely arranged with feed groove (201), one side of the feed cover plate (3) is movably connected with at least one side edge of feed inlet (102).

2. The cartridge structure of claim 1, wherein, The connecting assembly (2) includes mounting portion (21) and feed portion (22), the feed portion (22) is arranged on the mounting portion (21), the mounting portion (21) is adapted with the installation open mouth (106), the feed portion (22) extends into the storage cavity (101), the feed portion (22) is equipped with the feed groove (201) and the through hole (202), the slot of the feed groove (201) is abutted with the inner wall of the storage cavity (101), and the feed groove (201) is oppositely arranged with the feed inlet (102).

3. The cartridge structure of claim 2, wherein, The through hole (202) is located at at least one side edge of the groove bottom of the feed groove (201), and the groove bottom of the feed groove (201) is radially inclined to the side where the through hole (202) is located. And / or the slot of the feed groove (201) is outwardly folded to form a folding portion (221), and the folding portion (221) is abutted with the inner wall of the storage cavity (101).

4. The cartridge structure of claim 1, wherein, Further comprising sealing assembly (4), the connecting assembly (2) is equipped with adaptive groove (203), the sealing assembly (4) is adapted with the adaptive groove (203), and at least part of the sealing assembly (4) is abutted with the inner wall of the storage cavity (101).

5. The cartridge structure of claim 4, wherein, One side groove wall of the adaptive groove (203) extends to form a protruding portion (211), and the protruding portion (211) is abutted with the edge of the installation open mouth (106).

6. The cartridge structure of claim 1, wherein, The material storage barrel (1) is equipped with boss (112), at least one side edge of the feed inlet (102) extends inward to form the boss (112), at least part of the feed cover plate (3) towards one side of the feed inlet (102) is in contact with the boss (112), and the boss (112) is used to support the feed cover plate (3).

7. The cartridge structure of claim 1, wherein, The storage cylinder (1) is provided with a first movable groove (103) and a second movable groove (104), the first movable groove (103) and the second movable groove (104) are located on the same side of the feeding port (102) and are oppositely arranged, and at least part of the feeding cover plate (3) is matched with the first movable groove (103) and the second movable groove (104).

8. The cartridge structure of claim 7, wherein, The feeding cover plate (3) is provided with a first connecting protrusion (311) and a second connecting protrusion (312), and the first connecting protrusion (311) and the second connecting protrusion (312) are matched with the first movable groove (103) and the second movable groove (104) respectively.

9. The cartridge structure of claim 1, wherein, The feeding cover plate (3) comprises a cover plate body (31) and a gripping part (32), the cover plate body (31) is movably connected with the storage cylinder (1), the gripping part (32) is arranged on the cover plate body (31), the gripping part (32) is located on the side of the cover plate body (31) away from the storage cylinder (1), and the gripping part (32) forms an included angle with the plane where the cover plate body (31) is located. And / or one side of the feeding cover plate (3) towards the feeding port (102) is provided with a buckle (313), the buckle (313) is matched with at least one side edge of the feeding port (102) and is buckled. And / or the storage cylinder (1) is provided with a positioning groove (107), the positioning groove (107) is located in the storage cavity (101), and at least part of the connecting assembly (2) extending into the storage cavity (101) is matched with the positioning groove (107).

10. A beverage making machine characterized by, Comprise: A rack assembly; A stirrer, the stirrer is arranged on the rack assembly, and the stirrer is matched with the installation opening (106); A locking member, the locking member is arranged on the rack assembly; The storage cylinder structure according to any one of claims 1-9 is arranged on the rack assembly and the stirrer, at least part of the storage cylinder structure covers the outside of the stirrer, at least part of the storage cylinder structure is detachably connected with the locking member, and the locking member is used for controlling the connection and disassembly of the storage cylinder structure and the rack assembly.