Beverage mixing cup assembly

The modular beverage mixing cup system integrates heating and frothing functions within a sealed environment, addressing resource waste and safety issues in beverage preparation, enhancing efficiency and cleanliness.

CN223095322UActive Publication Date: 2025-07-15BEIJING KACHA XIONGYI EQUIPMENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422354937.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-07-15
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

In the prior art, the production of hot cup beverages requires independent heating equipment, and the production of milk foam beverages requires artificial foaming. The liquid discharge pipeline exposed to an open environment poses food safety risks. The liquid discharge splash generated by the impact of liquid supply of liquid pumps increases the difficulty of cleaning.

Method used

The beverage mixing cup assembly consisting of a support frame, fastener, cylinder, liquid discharge, etc. is used to control the liquid flow rate and angle through the drive parts and limiting plates on the support plate, and heat and foam with steam nozzles. The liquid discharge port is connected through pipes to avoid exposure, realizing automatic mixing and cleaning.

Benefits of technology

It realizes automated beverage production without independent heating equipment, reduces manual intervention, improves food safety, reduces cleaning difficulty, and prevents liquid splashing.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223095322U_ABST
    Figure CN223095322U_ABST
Patent Text Reader

Abstract

The utility model relates to a beverage mixing cup assembly which comprises a supporting frame, a fastener arranged on the supporting frame, a cylinder body connected to the fastener, a locking ring limiting the positions of the cylinder body and the fastener, a supporting plate arranged on the supporting frame, a liquid outlet piece rotating on the supporting plate, a waste water level arranged on the supporting plate and a first plate limiting the rotating angle of the cylinder body. A stock solution pipeline is arranged on the fastener; a plastic tube is arranged at the top of the liquid outlet piece; the plastic pipe communicates with the cylinder body; the first rotating piece is arranged on the supporting plate; when the liquid outlet piece is vertical, the liquid outlet piece discharges liquid into the cup; when the liquid outlet piece rotates to correspond to the waste water level, the waste liquid can be discharged. The problem of food safety risk caused by exposure of the liquid outlet pipeline and the liquid outlet in a normal-temperature and open environment is solved; outlet liquid generated under the impact of liquid supplied by a liquid pump splashes on the periphery of a liquid outlet to form dense residues, the cleaning work of operation and maintenance personnel is increased, and the residues between liquid outlet pipes are very difficult to clean.
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Description

Technical Field

[0001] The utility model relates to the field of beverage production, in particular to a beverage mixing cup assembly. Background Art

[0002] In the prior art, the production of hot cup beverages requires the configuration of independent heating equipment, such as water heaters, steam engines or coffee machines, resulting in waste of many resources such as space, cost and manpower; the production of beverages with milk foam characteristics requires manual operation, cooperation with steam foaming, or cooperation with expensive milk foam foaming equipment, and the waste form is the same as above; each beverage production needs to be manually intervened in real time, and the use scenario of the equipment is limited; the liquid outlet pipeline and the liquid outlet are exposed in a normal temperature and open environment, there is a food safety risk; the liquid splashing generated under the impact of the liquid pump for liquid supply forms dense residues around the liquid outlet, increasing the cleaning work of the operation and maintenance personnel, and it is very difficult to clean the residues between the liquid outlet pipes. Summary of the Utility Model

[0003] By providing a beverage mixing cup assembly in an embodiment of the present application, the problems in the prior art are solved that the production of hot cup beverages requires the configuration of independent heating equipment; the production of beverages with milk foam characteristics requires manual operation, cooperation with steam foaming, or cooperation with expensive milk foam foaming equipment, and the waste form is the same as above; the liquid outlet pipeline and the liquid outlet are exposed in a normal temperature and open environment, there is a food safety risk; the liquid splashing generated under the impact of the liquid pump for liquid supply forms dense residues around the liquid outlet, increasing the cleaning work of the operation and maintenance personnel, and it is very difficult to clean the residues between the liquid outlet pipes.

[0004] The technical solution adopted in the embodiment of the present application is as follows.

[0005] A beverage mixing cup assembly includes a support frame, a fastener arranged on the support frame, a cylinder body connected to the fastener, a lock ring for restricting the positions of the cylinder body and the fastener, a support plate arranged on the support frame, a liquid outlet member rotatable on the support plate, a waste water level arranged on the support plate, and a first plate for restricting the rotation angle of the cylinder body; a stock solution pipeline is arranged on the fastener; a first spray head is arranged at the middle of the fastener; the first spray head faces the cylinder body; a second spray head is arranged on the side of the fastener; the second spray head faces the inner side of the fastener; a plastic pipe is arranged at the top of the liquid outlet member; the plastic pipe communicates with the cylinder body; a first rotating member is arranged on the support plate; when the liquid outlet member is vertical, the liquid outlet member discharges the liquid into the cup; when the liquid outlet member rotates until it corresponds to the waste water level, the waste liquid can be discharged.

[0006] As a further improvement of the above technical solution: a second plate is provided at the bottom of the cylinder block; a clamping block is provided on the second plate; the first plate is arranged on the support plate; a first groove and a second groove are formed on the first plate; the first groove is vertically formed; a third groove is communicated with the bottom of the first groove; the third groove is arc-shaped; the second groove corresponds to the first groove in shape; two sets of clamping blocks are provided; one set of clamping blocks is arranged in the first groove, and the other set of clamping blocks is arranged in the second groove; when the clamping blocks are located in the third groove, the cylinder block is inclined at an angle.

[0007] As a further improvement of the above technical solution: a steam spray head is provided on the side of the cylinder block.

[0008] As a further improvement of the above technical solution: 11 sets of stock solution pipelines are provided.

[0009] As a further improvement of the above technical solution: a first driving member is provided on the support plate; a pressing roller is provided at the driving end of the first driving member; a first limiting plate is provided on the support plate; the pressing roller corresponds to the first limiting plate; the plastic pipe is located between the pressing roller and the first limiting plate.

[0010] As a further improvement of the above technical solution: a second driving member is provided on the support plate; the driving end of the second driving member is connected to the liquid outlet member; the waste liquid level rotates on the support plate; a second limiting plate is provided on the support plate; the second limiting plate limits the position of the waste liquid level.

[0011] One or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages:

[0012] 1. Since a fastener is provided on the support frame, the fastener is in the shape of a circular plate and has an extension edge on the side. The primary liquid pipeline is passed through the fastener, and 11 groups of primary liquid pipelines are arranged in an array. Different liquids are injected into the cylinder body through the primary liquid pipelines, so as to perform operations such as mixing, heating or cooling. A second plate is provided at the bottom of the cylinder body, and two groups of second plates are arranged oppositely. A clamping block is provided on the second plate, and two groups of clamping blocks are arranged oppositely. A support plate is provided on the support member, and a first plate is provided on the support plate. A first groove and a second groove are formed on the first plate, and both the first groove and the second groove are vertically formed. The bottom of the first groove communicates with a third groove, and the third groove is arc-shaped. The center of the third groove corresponds to the bottom of the second groove. When the clamping block slides in the first groove and the second groove, the cylinder body moves up and down. When the bottom clamping block is at the bottom of the second groove, the cylinder body can be rotated until the upper clamping block slides in the third groove. At this time, the cylinder body is inclined at an angle, and at this time, the staff can clean the inside. A locking ring is provided on the fastener, and the locking ring restricts the fastener on the cylinder body. A liquid outlet member is provided on the support plate. A plastic pipe is provided at the top inlet of the liquid outlet member, and the other end of the plastic pipe communicates with the liquid outlet end of the cylinder body. When the liquid outlet member is vertical, the liquid outlet member discharges the liquid into the cup body. A first driving member is provided on the support plate, and a pressing roller is provided on the first driving member. A first limiting plate is provided on the other side of the pressing roller, and the first limiting plate corresponds to the pressing roller. The plastic pipe is between the first limiting plate and the pressing roller. When the first driving member is driven so that the pressing roller contacts the plastic pipe and fits the plastic pipe against the first limiting plate, the transmission area of the plastic pipe becomes smaller and smaller, thereby controlling the flow rate of the liquid. When the internal area of the plastic pipe is completely compressed, the cylinder body is sealed, so that the liquid flow is cut off. A second driving member is provided on the support plate, and the acting end of the second driving member is connected to the liquid outlet member. The second driving member drives the liquid outlet member to rotate so that the liquid outlet member is in a liquid discharging or sewage discharging state. When the liquid outlet member corresponds to the waste water level, the first driving member is opened to discharge the excess liquid. At the same time, the excess liquid inside the cylinder body is cleaned through the first spray head and the second spray head, and then discharged into the waste water level and discharged. A second limiting plate is provided on the support plate, and the second limiting plate restricts the angle of the waste water level to prevent the angle from tilting too much and not corresponding to the liquid outlet member. Furthermore, operations such as heating and foaming the internal liquid through the steam spray head are realized; and the liquid outlet ports are all connected through pipelines and are not exposed to the open environment, and the flow rate is controlled by the first driving member to prevent the liquid from splashing due to too fast flow rate. Description of the Drawings

[0013] Figure 1 Structural schematic diagram of the beverage mixing cup assembly in the present utility model.

[0014] Figure 2 Cross-sectional view of the beverage mixing cup assembly in the present utility model.

[0015] Figure 3 Front view of the beverage mixing cup assembly in the present utility model.

[0016] Figure 4 is Figure 1 A partial enlarged view of A in

[0017] In the figure: 1, support frame; 2, fastener; 21, stock solution pipeline; 22, first nozzle; 23, second nozzle; 3, cylinder block; 31, second plate; 311, clamping block; 32, steam nozzle; 4, locking ring; 5, support plate; 51, first driving member; 511, pressing roller; 52, first limiting plate; 53, second driving member; 54, second limiting plate; 6, liquid outlet member; 61, plastic pipe; 7, waste water level; 9, first plate; 91, first groove; 92, second groove; 93, third groove. Specific embodiments

[0018] In the embodiment of the present application, by providing a beverage mixing cup assembly, the problems in the prior art are solved: for the production of hot cup beverages, independent heating equipment needs to be configured; for the production of beverages with milk foam characteristics, it needs to be carried out manually, in cooperation with steam foaming, or in cooperation with expensive milk foam foaming equipment, and the waste form is the same as above; the liquid outlet pipeline and the liquid outlet are exposed to the normal temperature and open environment, there is a food safety risk; the liquid splashing generated under the impact of the liquid pump for liquid supply forms dense residues around the liquid outlet, increasing the cleaning work of the operation and maintenance personnel, and it is very difficult to clean the residues between the liquid outlet pipes.

[0019] The technical solutions in the embodiments of the present application are to solve the above problems, and the general idea is as follows

[0020] In order to better understand the above technical solutions, the above technical solutions will be described in detail below in conjunction with the specification drawings and specific embodiments.

[0021] A beverage mixing cup assembly includes a support frame 1, a fastener 2 arranged on the support frame 1, a cylinder block 3 connected to the fastener 2, a locking ring 4 that restricts the positions of the cylinder block 3 and the fastener 2, a support plate 5 arranged on the support frame 1, a liquid outlet member 6 rotatable on the support plate 5, a waste water level 7 arranged on the support plate 5, and a first plate 9 that restricts the rotation angle of the cylinder block 3; a stock solution pipeline 21 is arranged on the fastener 2; a first nozzle 22 is arranged at the middle of the fastener 2; the first nozzle 22 faces the cylinder block 3; a second nozzle 23 is arranged on the side of the fastener 2; the second nozzle 23 faces the inside of the fastener 2; a plastic pipe 61 is arranged at the top of the liquid outlet member 6; the plastic pipe 61 is communicated with the cylinder block 3; when the liquid outlet member 6 is vertical, the liquid outlet member 6 discharges the liquid into the cup; when the liquid outlet member 6 rotates until it corresponds to the waste water level 7, the waste liquid can be discharged.

[0022] A second plate 31 is provided at the bottom of the cylinder block 3; a clamping block 311 is provided on the second plate 31; the first plate 9 is arranged on the support plate 5; a first groove 91 and a second groove 92 are formed on the first plate 9; the first groove 91 is vertically formed; a third groove 93 communicates with the bottom of the first groove 91; the third groove 93 is arc-shaped; the second groove 92 corresponds to the shape of the first groove 91; two groups of clamping blocks 311 are provided; one group of clamping blocks 311 is arranged in the first groove 91, and the other group of clamping blocks 311 is arranged in the second groove 92; when the clamping block 311 is located in the third groove 93, the cylinder block 3 is inclined at an angle.

[0023] A steam nozzle 32 is provided on the side of the cylinder block 3.

[0024] 11 groups of stock solution pipelines 21 are provided.

[0025] A first driving member 51 is provided on the support plate 5; a pressing roller 511 is provided at the driving end of the first driving member 51; a first limiting plate 52 is provided on the support plate 5; the pressing roller 511 corresponds to the first limiting plate 52; the plastic pipe 61 is located between the pressing roller 511 and the first limiting plate 52.

[0026] A second driving member 53 is provided on the support plate 5; the driving end of the second driving member 53 is connected to the liquid outlet member 6; the waste water level 7 rotates on the support plate 5; a second limiting plate 54 is provided on the support plate 5; the second limiting plate 54 limits the position of the waste water level 7.

[0027] A fastener 2 is provided on the support frame 1. The fastener 2 is in the shape of a circular plate and has an extension along its side. A stock solution pipeline 21 passes through the fastener 2. There are 11 groups of the stock solution pipelines 21 arranged in an array. Different liquids are injected into the cylinder block 3 through the stock solution pipelines 21, so as to perform operations such as mixing, heating or cooling. A second plate 31 is provided at the bottom of the cylinder block 3. There are two groups of the second plates 31 arranged oppositely. A clamping block 311 is provided on the second plate 31. There are two groups of the clamping blocks 311 arranged oppositely. A support plate 5 is provided on the support member. A first plate 9 is provided on the support plate 5. A first groove 91 and a second groove 92 are formed on the first plate 9. Both the first groove 91 and the second groove 92 are vertically formed. The bottom of the first groove 91 communicates with a third groove 93. The third groove 93 is arc-shaped. The center of the third groove 93 corresponds to the bottom of the second groove 92. When the clamping block 311 slides in the first groove 91 and the second groove 92, the cylinder block 3 moves up and down. When the bottom clamping block 311 is at the bottom of the second groove 92, the cylinder block 3 can be rotated until the upper clamping block 311 slides in the third groove 93. At this time, the cylinder block 3 is inclined at an angle. At this time, the staff can clean the inside. A locking ring 4 is provided on the fastener 2. The locking ring 4 restricts the fastener 2 on the cylinder block 3. A liquid outlet member 6 is provided on the support plate 5. A plastic pipe 61 is provided at the top inlet of the liquid outlet member 6. The other end of the plastic pipe 61 communicates with the liquid outlet end of the cylinder block 3. When the liquid outlet member 6 is vertical, the liquid outlet member 6 discharges the liquid into the cup body. A first driving member 51 is provided on the support plate 5. A pressing roller 511 is provided on the first driving member 51. A first limiting plate 52 is provided on the other side of the pressing roller 511. The first limiting plate 52 corresponds to the pressing roller 511. The plastic pipe 61 is between the first limiting plate 52 and the pressing roller 511. When the first driving member 51 is driven so that the pressing roller 511 contacts the plastic pipe 61 and fits the plastic pipe 61 against the first limiting plate 52, the transmission area of the plastic pipe 61 becomes smaller and smaller, so as to control the flow rate of the liquid. When the internal area of the plastic pipe 61 is completely compressed, the cylinder block 3 is sealed, so that the liquid flow is cut off. A second driving member 53 is provided on the support plate 5. The acting end of the second driving member 53 is connected to the liquid outlet member 6. The second driving member 53 drives the liquid outlet member 6 to rotate so that the liquid outlet member 6 is in a liquid discharging or sewage discharging state. When the liquid outlet member 6 corresponds to the waste water level 7, the first driving member 51 is opened to discharge the excess liquid. At the same time, the excess liquid inside the cylinder block 3 is cleaned through the first spray head 22 and the second spray head 23, and then discharged into the waste water level 7 and discharged. A second limiting plate 54 is provided on the support plate 5. The second limiting plate 54 limits the angle of the waste water level 7 to prevent its angle from tilting too much and not corresponding to the liquid outlet member 6.

[0028] Since the support frame 1 is provided with a fastener 2, the fastener 2 is in the shape of a circular plate and has an extension edge on the side. A stock solution pipeline 21 is penetrated through the fastener 2. 11 groups of stock solution pipelines 21 are arranged in an array. Different liquids are injected into the cylinder block 3 through the stock solution pipelines 21, so as to perform operations such as mixing, heating or cooling. A second plate 31 is arranged at the bottom of the cylinder block 3. Two groups of second plates 31 are arranged oppositely. A clamping block 311 is arranged on the second plate 31. Two groups of clamping blocks 311 are arranged oppositely. A support plate 5 is arranged on the support member. A first plate 9 is arranged on the support plate 5. A first groove 91 and a second groove 92 are formed in the first plate 9. The first groove 91 and the second groove 92 are both vertically formed. A third groove 93 is communicated with the bottom of the first groove 91. The third groove 93 is arc-shaped. The center of the third groove 93 corresponds to the bottom of the second groove 92. When the clamping block 311 slides in the first groove 91 and the second groove 92, the cylinder block 3 moves up and down. When the bottom clamping block 311 is at the bottom of the second groove 92, the cylinder block 3 can be rotated until the upper clamping block 311 slides in the third groove 93. At this time, the cylinder block 3 is inclined at an angle. At this time, the staff can clean the interior. A locking ring 4 is arranged on the fastener 2. The locking ring 4 restricts the fastener 2 on the cylinder block 3. A liquid outlet member 6 is arranged on the support plate 5. A plastic pipe 61 is arranged at the top inlet of the liquid outlet member 6. The other end of the plastic pipe 61 is communicated with the liquid outlet end of the cylinder block 3. When the liquid outlet member 6 is vertical, the liquid outlet member 6 discharges the liquid into the cup body. A first driving member 51 is arranged on the support plate 5. A pressing roller 511 is arranged on the first driving member 51. A first limiting plate 52 is arranged on the other side of the pressing roller 511. The first limiting plate 52 corresponds to the pressing roller 511. The plastic pipe 61 is between the first limiting plate 52 and the pressing roller 511. When the first driving member 51 is driven so that the pressing roller 511 contacts the plastic pipe 61 and fits the plastic pipe 61 against the first limiting plate 52, the transmission area of the plastic pipe 61 becomes smaller and smaller, so as to control the flow rate of the liquid. When the internal area of the plastic pipe 61 is completely compressed, the cylinder block 3 is sealed, so that the liquid flow is cut off. A second driving member 53 is arranged on the support plate 5. The acting end of the second driving member 53 is connected to the liquid outlet member 6. The second driving member 53 drives the liquid outlet member 6 to rotate so that the liquid outlet member 6 is in a liquid discharging or sewage discharging state. When the liquid outlet member 6 corresponds to the waste water level 7, the first driving member 51 is opened to discharge the excess liquid. At the same time, the excess liquid inside the cylinder block 3 is cleaned through the first spray head 22 and the second spray head 23, and then discharged into the waste water level 7 and discharged. A second limiting plate 54 is arranged on the support plate 5. The second limiting plate 54 limits the angle of the waste water level 7 to prevent its angle from tilting too much and not corresponding to the liquid outlet member 6. Furthermore, operations such as heating and foaming the internal liquid through the steam spray head 32 are realized; and the liquid outlets are all connected through pipelines and are not exposed to the open environment, and the flow rate is controlled by the first driving member 51 to prevent the liquid from splashing due to too fast flow rate.

[0029] Although the preferred embodiments of the present utility model have been described, those skilled in the art can make additional changes and modifications once they learn the basic creative concept. Therefore, the appended claims are intended to be construed to include the preferred embodiments as well as all changes and modifications falling within the scope of the present utility model.

[0030] Obviously, those skilled in the art can make various changes and modifications to the present utility model without departing from the spirit and scope of the present utility model. Thus, if these modifications and variations of the present utility model fall within the scope of the claims of the present utility model and its equivalent technologies, the present utility model is also intended to include these modifications and variations.

Claims

1. A drink mixing cup assembly, characterized in that, It includes a support frame (1), a fastener (2) arranged on the support frame (1), a cylinder block (3) connected to the fastener (2), a lock ring (4) restricting the positions of the cylinder block (3) and the fastener (2), a support plate (5) arranged on the support frame (1), a liquid outlet member (6) rotatable on the support plate (5), a waste water level (7) arranged on the support plate (5), and a first plate (9) restricting the rotation angle of the cylinder block (3); a stock solution pipeline (21) is arranged on the fastener (2); a first spray head (22) is arranged at the middle of the fastener (2); the first spray head (22) faces the cylinder block (3); a second spray head (23) is arranged on the side edge of the fastener (2); the second spray head (23) faces the inner side of the fastener (2); a plastic pipe (61) is arranged at the top of the liquid outlet member (6); the plastic pipe (61) communicates with the cylinder block (3); when the liquid outlet member (6) is vertical, the liquid outlet member (6) discharges the liquid into a cup; when the liquid outlet member (6) rotates until it corresponds to the waste water level (7), the waste liquid can be discharged.

2. The drink mixing cup assembly according to claim 1, wherein, A second plate (31) is arranged at the bottom of the cylinder block (3); a clamping block (311) is arranged on the second plate (31); the first plate (9) is arranged on the support plate (5); a first groove (91) and a second groove (92) are formed on the first plate (9); the first groove (91) is vertically formed; the bottom of the first groove (91) communicates with a third groove (93); the third groove (93) is arc-shaped; the second groove (92) corresponds to the shape of the first groove (91); there are two groups of clamping blocks (311); one group of clamping blocks (311) is arranged in the first groove (91), and the other group of clamping blocks (311) is arranged in the second groove (92); when the clamping block (311) is located in the third groove (93), the cylinder block (3) is inclined at an angle.

3. The drink mixing cup assembly according to claim 1, characterized in that, A steam spray head (32) is arranged on the side edge of the cylinder block (3).

4. The drink mixing cup assembly according to claim 1, wherein There are 11 groups of the stock solution pipelines (21).

5. The drink mixing cup assembly according to claim 2, characterized in that, A first driving member (51) is arranged on the support plate (5); a pressing roller (511) is arranged at the driving end of the first driving member (51); a first limiting plate (52) is arranged on the support plate (5); the pressing roller (511) corresponds to the first limiting plate (52); the plastic pipe (61) is located between the pressing roller (511) and the first limiting plate (52).

6. The drink mixing cup assembly according to claim 2, wherein, A second driving member (53) is arranged on the support plate (5); the driving end of the second driving member (53) is connected to the liquid outlet member (6); the waste water level (7) is rotatable on the support plate (5); a second limiting plate (54) is arranged on the support plate (5); the second limiting plate (54) restricts the position of the waste water level (7).