Liquid outlet equipment with functions of distinguishing and full-pipeline cold insulation

By incorporating a refrigeration refrigerator and a fan circulation system into the liquid dispensing equipment, the problem of storing liquid beverages at room temperature in traditional liquid dispensing machines has been solved, achieving full-pipeline cold preservation and improving the quality and safety of beverages.

CN224038973UActive Publication Date: 2026-03-27HOSHIZAKI (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In traditional liquid dispensing machines, liquid beverages are stored at room temperature in the pipes, which affects the taste of the beverages and poses food safety risks.

Method used

Design a liquid dispensing device with functional differentiation and full pipeline cold insulation, including a refrigerator, a liquid dispensing mechanism and a weighing mechanism. The pipeline cold compartment is separated by a partition, and insulation material and a fan are installed in the cold compartment. Cold air is circulated through the air duct to keep the pipeline at a low temperature.

Benefits of technology

To ensure that liquid beverages are kept at low temperatures throughout the entire process, prevent loss of taste and spoilage, improve user experience, and avoid food safety issues.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses liquid outlet equipment with functional distinguishing and full-pipeline cold insulation, which comprises a refrigerator (1), a liquid outlet mechanism (2) and a weighing mechanism (3) are arranged at the top of the refrigerator (1), and the weighing mechanism (3) is positioned below a liquid outlet head (4) of the liquid outlet mechanism (2). The liquid outlet mechanism (2) is internally provided with a partition plate (5), the partition plate (5) divides the liquid outlet mechanism (2) into a pipeline cold bin (6), a heat preservation material layer is arranged on the inner wall of the pipeline cold bin (6), a material cold bin (7) is arranged in the refrigerator (1), n material containers (8) are arranged in the material cold bin (7), a bottom plate (9) is arranged at the bottom of the pipeline cold bin (6), and an air inlet is formed in the bottom plate (9). Meanwhile, the top end face of the bottom plate (9) is further provided with an air duct (10) corresponding to the air inlet, and a fan (11) is arranged at the air inlet.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of refrigeration equipment, especially a function area divides and full pipeline cold -keeping liquid outlet equipment. BACKGROUND

[0002] In recent years, in the catering industry such as milk tea, coffee, bar, a liquid outlet machine appears. The liquid outlet machine is provided with a plurality of different containers, each container contains different liquid drinks, and when using, different pumps are used to pump the drinks to the liquid outlet head and flow into the cup below the liquid outlet head. Some drinks are best tasted in low temperature environment, or need to be stored in low temperature environment, so the above containers with different drinks are placed in the refrigerator at the bottom of the liquid outlet machine, but the pipeline of the traditional liquid outlet machine transporting drinks is in normal temperature environment, and after a pipeline completes the liquid outlet operation, the liquid drink in the pipeline will not return to the corresponding container, but is stored in the pipeline;

[0003] This will cause two problems, first, when taking drinks, the first part of the drink must be normal temperature drink, which may affect the taste of some drinks or cannot meet the needs of customers;

[0004] If the external environment is hot, the drinks in the pipeline will breed bacteria in high temperature environment, and even will be spoiled, which will cause food safety hazards and risks.

[0005] Therefore, a method or device is needed to solve the above problems. SUMMARY

[0006] The utility model discloses to solve the above -mentioned insufficient of prior art, propose a kind of simple structure, clever design, layout is reasonable, can guarantee that drink keeps low temperature state in the whole process of circulation, to prevent affecting taste and metamorphic functional area divides and full pipeline cold -keeping liquid outlet equipment.

[0007] The technical solution of the utility model is: a kind of functional area divides and full pipeline cold -keeping liquid outlet equipment, including refrigeration refrigerator 1, the top of refrigeration refrigerator 1 is provided with liquid outlet mechanism 2 and weighing mechanism 3, and the weighing mechanism 3 is below the liquid outlet head 4 of liquid outlet mechanism 2, it is characterized by: the partition 5 is provided in liquid outlet mechanism 2, the partition 5 is separated into pipeline cold store 6 in liquid outlet mechanism 2, the inner wall of pipeline cold store 6 is provided with insulating material layer,

[0008] The refrigeration refrigerator 1 is provided with a material cold bin 7, the material cold bin 7 is provided with n material containers 8, the bottom of the pipeline cold bin 6 is provided with a bottom plate 9, the bottom plate 9 is provided with an air inlet, and the top end surface of the bottom plate 9 is also provided with an air duct 10 corresponding to the air inlet, and a fan 11 is arranged at the air inlet,

[0009] The pipeline cold bin 6 is provided with n peristaltic pumps 12, the inlet of each peristaltic pump 12 is connected with a material container 8 through a silica gel pipeline, and the outlets of all the peristaltic pumps 12 are connected with the liquid outlet head 4 through silica gel pipelines,

[0010] A square hole 13 is formed in the top plate of the refrigeration refrigerator 1, the bottom plate 9 is located above the square hole 13, the bottom plate 9 is provided with a through hole corresponding to the square hole 13, all the silica gel pipelines connected between the material containers 8 and the peristaltic pumps 12 penetrate through the square hole 13 and the through hole, and a return air inlet 14 is further arranged on the bottom plate.

[0011] The top end outlet of the air duct 10 is located at the top of the material cold bin 7.

[0012] Compared with the prior art, the utility model has the advantages of:

[0013] The liquid outlet equipment with the function division and the whole pipeline cold insulation of the structure form has the advantages of simple structure, ingenious design and reasonable layout, and it is designed according to the problems existing in the traditional liquid outlet machine, and a special structure is designed, a pipeline cold bin is directly separated in the liquid outlet mechanism, the pipeline for conveying liquid material and the peristaltic pump are arranged in the pipeline cold bin, a fan and an air duct are further arranged in the pipeline cold bin, the cold energy in the material cold bin can be introduced into the pipeline cold bin, so that the pipeline cold bin can always keep a low temperature state, the liquid material in the pipeline can be effectively prevented from being affected or deteriorated due to high temperature, the user experience is improved, and the food safety problem is avoided. The manufacturing process of the liquid outlet machine is simple, and the manufacturing cost is low, so it has many advantages, and it is especially suitable for popularization and application in the field, and the market prospect is very wide. DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic view of the embodiment of the utility model.

[0015] Figure 2 It is a structure schematic view of the embodiment of the utility model (remove the liquid outlet mechanism and the weighing mechanism).

[0016] Figure 3 It is a structure schematic view of the liquid outlet mechanism in the embodiment of the utility model.

[0017] Figure 4 It is a sectional view (direction one) of the embodiment of the utility model.

[0018] Figure 5 This is a cross-sectional view (direction two) of an embodiment of this utility model. Detailed Implementation

[0019] The specific embodiments of this utility model will be described below with reference to the accompanying drawings. Figures 1 to 5 As shown: A liquid dispensing device with functional differentiation and full-pipeline cold insulation includes a refrigerator 1. A liquid dispensing mechanism 2 and a weighing mechanism 3 are arranged on the top of the refrigerator 1, with the weighing mechanism 3 located below the liquid dispensing head 4 of the liquid dispensing mechanism 2. A partition 5 is arranged inside the liquid dispensing mechanism 2, dividing it into a pipeline cold compartment 6. An insulation material layer is provided on the inner wall of the pipeline cold compartment 6.

[0020] The refrigerator 1 is equipped with a material cold compartment 7, which contains n material containers 8. The bottom of the pipe cold compartment 6 is provided with a base plate 9, on which an air inlet is provided. At the same time, an air duct 10 corresponding to the air inlet is provided on the top surface of the base plate 9. A fan 11 is provided at the air inlet.

[0021] Inside the pipeline cold chamber 6, there are n peristaltic pumps 12. The inlet of each peristaltic pump 12 is connected to a material container 8 through a silicone tube, and the outlets of all peristaltic pumps 12 are connected to the liquid outlet head 4 through silicone tubes.

[0022] A square hole 13 is provided on the top plate of the refrigerator 1. The bottom plate 9 is located above the square hole 13. A through hole corresponding to the square hole 13 is provided on the bottom plate 9. All silicone tubes connecting the material container 8 and the peristaltic pump 12 pass through the square hole 13 and the through hole. At the same time, a return air vent 14 is also provided on the bottom plate.

[0023] The functional distinctions and working process of the liquid outlet device with full pipeline cold preservation in this utility model embodiment are as follows: During operation, the refrigeration system installed in the refrigerator 1 generates cold energy and delivers the cold energy to the material cold chamber 7, so that the liquid material stored in each material container 8 can maintain a low temperature.

[0024] When a beverage needs to be served to a user, the user sends an instruction through the panel on the dispensing mechanism 2 to select the type of beverage they want. After receiving the instruction, the control system will control the peristaltic pump 12 corresponding to the beverage to work, drawing the beverage from its material container 8 and delivering it to the dispensing head 4, where it flows into a cup placed below the dispensing head 4. During this process, the weighing mechanism 3 continuously weighs the overall mass of the cup and automatically sends a signal to the control system after reaching the trigger value. The control system then controls the peristaltic pump 12 to stop working, and the operator can then remove the cup filled with the desired beverage from the weighing mechanism 3 and deliver it to the customer.

[0025] In the standby state, the silica gel pipeline between the peristaltic pump 12 and the material container 8, and the silica gel pipeline between the peristaltic pump 12 and the liquid outlet head 4 are filled with liquid beverage, and this part of the liquid beverage will not return to the corresponding material container 8. During this process, the control system controls the fan 11 to work, introduces the cold energy in the material cold bin 7 into the air duct 10, and blows it into the inner cavity of the pipeline cold bin 6 through the outlet of the air duct 10. Since the outlet of the air duct 10 is located at the top of the pipeline cold bin 6, and the density of cold air is relatively high, the cold air will flow from top to bottom, and finally return to the material cold bin 7 through the air return port 14 opened on the bottom plate 9, realizing the circulating flow of cold air, so as to ensure the refrigeration effect in the pipeline cold bin 6.

[0026] The pipeline cold bin 6 creates a low-temperature environment for all silica gel pipelines inside it, that is, the liquid beverage temporarily stored therein is kept in a low-temperature state. On the one hand, it can ensure the taste, and on the other hand, it can prevent deterioration due to high temperature and avoid food safety problems.

[0027] It should be noted that under the cooperative control of the control system, the motor of the refrigeration system in the refrigeration refrigerator 1 and the motor driving the liquid outlet mechanism 2 can be started and stopped simultaneously, thereby realizing more accurate temperature control.

Claims

1. A liquid outlet device with functional area division and full pipeline cold preservation, comprising a refrigeration refrigerator (1), the top of the refrigeration refrigerator (1) is provided with a liquid outlet mechanism (2) and a weighing mechanism (3), and the weighing mechanism (3) is located below the liquid outlet head (4) of the liquid outlet mechanism (2), characterized in that: The liquid outlet mechanism (2) is provided with a partition (5), which separates a pipeline cold bin (6) in the liquid outlet mechanism (2), and the inner wall of the pipeline cold bin (6) is provided with a heat preservation material layer, ​ The cold storage refrigerator (1) is provided with a material cold bin (7), the material cold bin (7) is provided with n material containers (8), the bottom of the pipeline cold bin (6) is provided with a bottom plate (9), the bottom plate (9) is provided with an air inlet, and the top surface of the bottom plate (9) is also provided with an air duct (10) corresponding to the air inlet, and a fan (11) is arranged at the air inlet, The pipeline cold bin (6) is provided with n peristaltic pumps (12), the inlet of each peristaltic pump (12) is connected with a material container (8) through a silica gel pipeline, and the outlets of all the peristaltic pumps (12) are connected with the liquid outlet head (4) through silica gel pipelines, A square hole (13) is formed in the top plate of the cold storage refrigerator (1), the bottom plate (9) is located above the square hole (13), the bottom plate (9) is provided with a through hole corresponding to the square hole (13), all the silica gel pipelines connected between the material containers (8) and the peristaltic pumps (12) penetrate through the square hole (13) and the through hole, and the bottom plate is also provided with an air return opening (14).

2. The liquid outlet device with functional area division and full-pipeline cold insulation according to claim 1, characterized in that: The top outlet of the air duct (10) is located at the top of the material cold bin (7).