Intelligent temperature control functional beverage production system

By incorporating heating and cooling mechanisms within the mixing container, and utilizing heating and cooling coils and temperature monitoring sensors, precise temperature control of the beverage is achieved, solving the beverage quality problems caused by uncontrollable temperature in existing technologies and ensuring stable beverage quality.

CN223788442UActive Publication Date: 2026-01-13ANHUI CHUNGU FOOD HEALTH TECH RES CO LTD
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Patent Information

Application Number
CN202423267372.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-13
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing circulating mixing tanks cannot control the temperature of raw materials, leading to the growth of microorganisms in the raw materials and affecting the quality of beverages.

Method used

The heating and cooling system uses heating and cooling coils to precisely control the temperature of the beverage inside the mixing container, and uses temperature monitoring sensors to monitor and adjust the temperature in real time.

Benefits of technology

It enables precise temperature control during beverage production, avoiding substandard beverage quality caused by excessively high or low temperatures, and ensuring stable beverage quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of beverage production, in particular to an intelligent temperature control functional beverage production system which comprises a stirring container, and temperature monitoring sensors used for monitoring beverage temperature in real time are arranged at the top and the bottom of the stirring container. A heating mechanism capable of heating and storing a heating agent is arranged beside the stirring container, a heating coil capable of being communicated with the heating mechanism is arranged in the stirring container, and the heating coil can transmit the temperature of the heating agent in the heating mechanism into the stirring container to heat beverages. A cooling coil used for cooling the beverage is arranged in the stirring container, a refrigerating mechanism used for cooling the cooling coil is further arranged beside the stirring container, and the cooling coil can be communicated with the refrigerating mechanism. The temperature is accurately controlled during beverage production, and the problem that the beverage quality does not reach the standard due to the fact that the temperature is too high or too low during beverage production is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of beverage production, and in particular to an intelligent temperature control function beverage production system. BACKGROUND

[0002] In the beverage production process, the intelligent system accurately monitors and controls the temperature of each link, ensuring that the raw material processing, mixing and blending, fermentation and filling, etc. are carried out within the optimal temperature range. It helps to maintain the best flavor of the raw materials, ensures the stability and controllability of the fermentation process, and reasonable temperature control helps to reduce microbial contamination and chemical reactions.

[0003] The patent with Chinese publication number CN220425209U discloses a circulating type mixing and batching tank, relating to the technical field of batching tank, comprising a tank body and a scraper, specifically, an internal stirring mechanism is arranged in the tank body, an external circulating mechanism is arranged on the tank body, the stirring mechanism is composed of a motor, a stirring shaft and a stirring rod, the circulating mechanism is composed of a circulating pump, a circulating discharge pipe and a circulating feed pipe, a tank cover is placed at the top end of the tank body, a fixed ring is fixedly connected to the side of the tank body away from the tank cover, a base is fixedly connected to the bottom of the fixed ring, a support plate is fixedly installed on the upper surface of the base, an electric telescopic rod is fixedly connected to the upper surface of the tank cover, a motor is fixedly connected to the center of the tank cover, and a stirring shaft is drivingly connected to the bottom end of the motor. The circulating type mixing and batching tank can conveniently clean the stirring rod by workers, and can clean the residues in the tank body by using the detachable scraper, thereby saving the time of workers and improving the work efficiency.

[0004] The circulating type mixing and batching tank in the above patent document rotates the stirring shaft by the motor during work, and then drives the stirring rod to mix the raw materials, so that the raw materials can be fully mixed. However, the existing circulating type mixing and batching tank cannot control the temperature of the raw materials during mixing, which leads to the breeding of microorganisms in the raw materials (such as fruit juice production), thereby polluting the beverage and affecting the quality of the fruit juice. Therefore, the intelligent temperature control function beverage production system is proposed. UTILITY MODEL CONTENTS

[0005] To solve the problems in the prior art, the utility model provides an intelligent temperature control function beverage production system, which delivers a heating agent to the inside of a heating coil through a heating mechanism, sets the heating coil to heat the beverage in the inside of a stirring container, and when the temperature monitoring sensor detects that the temperature in the inside of the stirring container is higher than the set value, a refrigeration mechanism cools the beverage through a cooling coil, thereby accurately controlling the temperature during beverage production and solving the problem of substandard beverage quality caused by excessively high or low temperature during beverage production.

[0006] In order to solve the prior art problems, the present application provides an intelligent temperature control function beverage production system, which comprises a stirring container, the top and bottom of the stirring container are provided with temperature monitoring sensors for monitoring the temperature of the beverage in real time, the side of the stirring container is provided with a heating mechanism capable of heating and storing heating agents, the inside of the stirring container is provided with a heating coil capable of communicating with the heating mechanism, the heating coil can transmit the temperature of the heating agent in the heating mechanism to the inside of the stirring container to heat the beverage, the inside of the stirring container is provided with a cooling coil for cooling the beverage, and the side of the stirring container is further provided with a refrigeration mechanism for cooling the cooling coil, and the cooling coil can communicate with the refrigeration mechanism.

[0007] As a technical scheme of the present application, the heating mechanism comprises a storage tank for storing heating agents, the output end of the heating coil is mounted on the storage tank, the top of the storage tank is provided with a delivery pump capable of being connected with the input end of the heating coil, and the input end of the delivery pump is mounted with a bottom pipe capable of vertically extending into the inside of the storage tank for pumping out the heating agents.

[0008] As a technical scheme of the present application, the bottom of the storage tank is mounted with a first servo motor capable of driving the driving gear to rotate, the driving gear is fixed with the output end of the first servo motor, the inside of the storage tank is provided with a spiral stirring rod for stirring the heating agents, one end of the spiral stirring rod is rotatably mounted on the storage tank, and the extension end of the spiral stirring rod is fixed with a driven gear capable of meshing with the driving gear.

[0009] As a technical scheme of the present application, the storage tank is provided with a plurality of electric heating assemblies for heating the heating agents, the electric heating assembly comprises a plurality of heating bodies vertically mounted in the inside of the storage tank, a temperature regulator capable of controlling the temperature of the heating body is fixed on the storage tank, and the temperature regulator and the heating body are electrically connected.

[0010] As a technical scheme of the present application, the refrigeration mechanism comprises a refrigerator, the inside of the refrigerator is provided with an evaporator with an output end capable of being connected with the input end of the cooling coil, the inside of the refrigerator is provided with a radiator with an input end capable of being connected with the output end of the cooling coil, the inside of the refrigerator is further provided with a compression pump for compressing the refrigerant in the cooling coil, the input end of the evaporator is capable of being connected with the output end of the compression pump, and the output end of the radiator is capable of being connected with the input end of the compression pump.

[0011] As a technical scheme of the present application, the refrigerator is provided with a fan capable of carrying away the heat generated when the refrigeration mechanism is refrigerating.

[0012] As a technical scheme of the present application, the inside of the stirring container is vertically provided with a stirring shaft for stirring the beverage, the top of the stirring container is provided with a second servo motor for driving the stirring shaft to rotate, and the top end of the stirring shaft is fixedly connected with the output end of the second servo motor.

[0013] As a technical scheme of the present application, the outside of the stirring container is fixed with a support, the heating mechanism and the refrigeration mechanism are fixed on the support, the support is further provided with a controller capable of respectively controlling the operation of the heating mechanism, the refrigeration mechanism, the temperature monitoring sensor and the second servo motor, and the controller is electrically connected with the heating mechanism, the refrigeration mechanism, the temperature monitoring sensor and the second servo motor respectively.

[0014] The present application has the following beneficial effects compared with the prior art:

[0015] The present application has the following beneficial effects compared with the prior art: BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a perspective view of the intelligent temperature control function beverage production system.

[0017] Figure 2 is a top view of the intelligent temperature control function beverage production system.

[0018] Figure 3 is Figure 2 the sectional view of A-A in the intelligent temperature control function beverage production system.

[0019] Figure 4 is a perspective view of the heating mechanism in the intelligent temperature control function beverage production system.

[0020] Figure 5 is a sectional view of the heating mechanism in the intelligent temperature control function beverage production system.

[0021] Figure 6 is an explosion view of the refrigeration mechanism in the intelligent temperature control function beverage production system.

[0022] The figure marks are: 1, stirring container; 11, support; 2, heating mechanism; 21, storage box; 22, spiral stirring rod; 221, driven gear; 222, first servo motor; 223, driving gear; 23, electric heating assembly; 231, temperature regulator; 232, heating body; 24, conveying pump; 241, bottom pipe; 3, refrigeration mechanism; 31, refrigerator; 32, compression pump; 33, evaporator; 34, radiator; 35, fan; 4, controller; 5, temperature monitoring sensor; 6, second servo motor; 61, stirring shaft; 7, cooling coil; 8, heating coil. DETAILED DESCRIPTION

[0023] In order to further understand the features, technical means and specific purposes and functions achieved by the present application, the present application will be described in further detail below in conjunction with the drawings and specific embodiments

[0024] Referring to Figures 1-6 The intelligent temperature control function beverage production system, including stirring container 1, the top and bottom of stirring container 1 are provided with temperature monitoring sensors 5 for real-time monitoring of beverage temperature, the side of stirring container 1 is provided with heating mechanism 2 capable of heating and storing heating agent, the inside of stirring container 1 is provided with heating coil 8 capable of communicating with heating mechanism 2, heating coil 8 can transfer the temperature of heating agent inside heating mechanism 2 to the inside of stirring container 1 to heat the beverage, the inside of stirring container 1 is provided with cooling coil 7 for cooling the beverage, the side of stirring container 1 is also provided with refrigeration mechanism 3 for cooling cooling coil 7, cooling coil 7 can communicate with refrigeration mechanism 3.

[0025] When temperature monitoring sensor 5 detects that the temperature of the beverage inside stirring container 1 is higher than the set value, heating mechanism 2 delivers the heated heating agent stored inside to the inside of heating coil 8, so that heating coil 8 releases the temperature of the heating agent to the inside of stirring container 1, thereby realizing that heating coil 8 heats the beverage inside stirring container 1, when temperature monitoring sensor 5 monitors that the temperature of the beverage inside stirring container 1 is lower than the set value, refrigeration mechanism 3 drives the refrigerant inside cooling coil 7 to flow rapidly, the high-speed flowing refrigerant absorbs the heat in the beverage inside stirring container 1 through cooling coil 7, the refrigerant after absorbing heat flows back to the inside of refrigeration mechanism 3 to radiate heat rapidly, so that cooling coil 7 cools the beverage inside stirring container 1, so that the temperature of the beverage inside stirring container 1 is always in a stable interval, avoiding that the large fluctuation of beverage temperature leads to unqualified beverage quality.

[0026] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, the heating mechanism 2 comprises a storage tank 21 for storing the heating agent, the output end of the heating coil 8 is mounted on the storage tank 21, and the top of the storage tank 21 is provided with a delivery pump 24 capable of being connected with the input end of the heating coil 8, and the input end of the delivery pump 24 is mounted with a bottom pipe 241 capable of extending vertically into the inside of the storage tank 21 for extracting the heating agent.

[0027] When the beverage in the stirring container 1 is heated, the delivery pump 24 extracts the heating agent in the storage tank 21 through the bottom pipe 241, and then the delivery pump 24 delivers the refrigerant to the inside of the heating coil 8, so that the heat of the heating agent is released to the inside of the stirring container 1 through the heating coil 8, thereby heating the beverage in the stirring container 1 by the heating coil 8, and the heating agent after releasing heat flows back to the inside of the storage tank 21 for repeated heating.

[0028] Referring to Figure 5 As shown, the bottom of the storage tank 21 is mounted with a first servo motor 222 capable of driving the driving gear 223 to rotate, the driving gear 223 is fixed to the output end of the first servo motor 222, the inside of the storage tank 21 is provided with a spiral stirring rod 22 for stirring the heating agent, one end of the spiral stirring rod 22 is rotatably mounted on the storage tank 21, and the extending end of the spiral stirring rod 22 is fixed with a driven gear 221 capable of engaging with the driving gear 223.

[0029] When the heating agent stored in the storage tank 21 is heated, the first servo motor 222 drives the driving gear 223 to rotate, so that the driving gear 223 drives the spiral stirring rod 22 to rotate axially through the driven gear 221, so as to stir the heating agent in the storage tank 21 by the spiral stirring rod 22, thereby making the heating agent in the storage tank 21 be heated uniformly.

[0030] Referring to Figure 5 As shown, the storage tank 21 is provided with a plurality of electric heating assemblies 23 for heating the heating agent, the electric heating assembly 23 comprises a plurality of heating bodies 232 vertically mounted in the inside of the storage tank 21, a temperature regulator 231 fixed to the storage tank 21 capable of controlling the heating bodies 232 to generate heat, and the temperature regulator 231 and the heating bodies 232 are electrically connected.

[0031] When the heating agent in the storage tank 21 is heated, a plurality of heating bodies 232 are vertically mounted in the inside of the storage tank 21, and then the temperature regulator 231 controls the heating bodies 232 to generate heat, so that the heating bodies 232 heat the heating agent in the storage tank 21.

[0032] Referring to Figure 6As shown, the refrigeration mechanism 3 comprises a refrigeration device 31, the inside of the refrigeration device 31 is provided with an evaporator 33, the output end of the evaporator 33 can be connected with the input end of the cooling coil 7, the inside of the refrigeration device 31 is provided with a radiator 34, the input end of the radiator 34 can be connected with the output end of the cooling coil 7, and the inside of the refrigeration device 31 is further provided with a compression pump 32 for compressing the refrigerant inside the cooling coil 7, the input end of the evaporator 33 can be connected with the output end of the compression pump 32, and the output end of the radiator 34 can be connected with the input end of the compression pump 32.

[0033] When the beverage inside the stirring container 1 is cooled, the compression pump 32 drives the refrigerant to flow in a fixed direction inside the evaporator 33, the radiator 34 and the cooling coil 7, when the refrigerant flows through the inside of the cooling coil 7, the cooling coil 7 conducts the heat of the beverage to the refrigerant, and then the refrigerant after absorbing heat returns to the radiator 34, and the heat in the refrigerant is dissipated to the surrounding air through the radiator 34, when the refrigerant enters the inside of the evaporator 33, the evaporator 33 again cools the refrigerant.

[0034] Referring to Figure 6 As shown, the refrigeration device 31 is provided with a fan 35 capable of taking away the heat generated by the refrigeration mechanism 3 when refrigerating.

[0035] By fixing the fan 35 in the inside of the refrigeration device 31, when the fan 35 rotates at high speed, the fan 35 can drive the air in the inside of the refrigeration device 31 to flow quickly, so that the quickly flowing air can discharge the heat in the inside of the refrigeration device 31, thereby improving the refrigeration efficiency.

[0036] Referring to Figure 1 , Figure 2 and Figure 3 As shown, the inside of the stirring container 1 is vertically provided with a stirring shaft 61 for stirring the beverage, the top of the stirring container 1 is provided with a second servo motor 6 for driving the stirring shaft 61 to rotate, and the top end of the stirring shaft 61 is fixedly connected with the output end of the second servo motor 6.

[0037] When the second servo motor 6 drives the stirring shaft 61 to rotate, the stirring shaft 61 can stir the beverage inside the stirring container 1, so that the heating of the beverage inside the stirring container 1 is more uniform, and local temperature of the beverage is avoided to be too high or too low.

[0038] Referring to Figure 1 , Figure 2 and Figure 3As shown, the outside of the stirring container 1 is fixed with a support 11, the heating mechanism 2 and the refrigeration mechanism 3 are fixed on the support 11, and the support 11 is further provided with a controller 4 capable of controlling the operation of the heating mechanism 2, the refrigeration mechanism 3, the temperature monitoring sensor 5 and the second servo motor 6 respectively, and the controller 4 is electrically connected with the heating mechanism 2, the refrigeration mechanism 3, the temperature monitoring sensor 5 and the second servo motor 6 respectively.

[0039] By fixing the controller 4 on the support 11 and electrically connecting the controller 4 with the heating mechanism 2, the refrigeration mechanism 3, the temperature monitoring sensor 5 and the second servo motor 6 respectively, the data monitored by the temperature monitoring sensor 5 in real time is transmitted to the controller 4, and then the controller 4 controls the operation of the heating mechanism 2, the refrigeration mechanism 3 and the second servo motor 6 respectively after analyzing the data.

[0040] When the temperature monitoring sensor 5 detects that the temperature of the beverage in the stirring container 1 is higher than the set value, the heating mechanism 2 delivers the heated heating agent stored in the inside to the inside of the heating coil 8, so that the heating coil 8 releases the temperature of the heating agent to the inside of the stirring container 1, thereby realizing the heating of the beverage in the stirring container 1 by the heating coil 8.

[0041] The above embodiments only express one or several embodiments of the utility model, and the description is more specific and detailed, but it cannot be understood as the limitation of the scope of the utility model. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the utility model, some modifications and improvements can be made, which belong to the protection scope of the utility model. Therefore, the protection scope of the utility model should be subject to the appended claims.

Claims

1. An intelligent temperature-controlled functional beverage production system, characterized in that, The system includes a stirring container (1), with temperature monitoring sensors (5) at the top and bottom for real-time monitoring of beverage temperature. A heating mechanism (2) for heating and storing a heating agent is provided on the side of the stirring container (1). A heating coil (8) for communicating with the heating mechanism (2) is provided inside the stirring container (1). The heating coil (8) can transfer the temperature of the heating agent inside the heating mechanism (2) to the stirring container (1) to heat the beverage. A cooling coil (7) for cooling the beverage is provided inside the stirring container (1). A refrigeration mechanism (3) for cooling the cooling coil (7) is also provided on the side of the stirring container (1). The cooling coil (7) can communicate with the refrigeration mechanism (3).

2. The intelligent temperature-controlled functional beverage production system according to claim 1, characterized in that, The heating mechanism (2) includes a storage tank (21) for storing a heating agent. The output end of the heating coil (8) is installed on the storage tank (21). A delivery pump (24) is provided on the top of the storage tank (21) and can be connected to the input end of the heating coil (8). The input end of the delivery pump (24) is equipped with a bottom pipe (241) that can extend vertically into the storage tank (21) for extracting the heating agent.

3. The intelligent temperature-controlled functional beverage production system according to claim 2, characterized in that, The bottom of the storage tank (21) is equipped with a first servo motor (222) that can drive the drive gear (223) to rotate. The drive gear (223) is fixed to the output end of the first servo motor (222). The storage tank (21) is equipped with a spiral stirring rod (22) for stirring the heating agent. One end of the spiral stirring rod (22) is rotatably mounted on the storage tank (21). The extended end of the spiral stirring rod (22) is fixed with a driven gear (221) that can mesh with the drive gear (223).

4. The intelligent temperature-controlled functional beverage production system according to claim 2, characterized in that, The storage tank (21) is provided with a plurality of electric heating components (23) for heating the heating agent. The electric heating components (23) include a plurality of heating elements (232) vertically installed inside the storage tank (21) and a temperature regulator (231) fixed on the storage tank (21) to control the temperature of the heating elements (232). The temperature regulator (231) and the heating elements (232) are electrically connected.

5. The intelligent temperature-controlled functional beverage production system according to claim 1, characterized in that, The refrigeration mechanism (3) includes a refrigerator (31), an evaporator (33) whose output end can be connected to the input end of the cooling coil (7) is provided inside the refrigerator (31), a radiator (34) whose input end can be connected to the output end of the cooling coil (7) is provided inside the refrigerator (31), and a compression pump (32) for compressing the refrigerant inside the cooling coil (7) is also provided inside the refrigerator (31). The input end of the evaporator (33) can be connected to the output end of the compression pump (32), and the output end of the radiator (34) can be connected to the input end of the compression pump (32).

6. The intelligent temperature-controlled functional beverage production system according to claim 5, characterized in that, The cooler (31) is equipped with a fan (35) that can carry away the heat generated by the cooling mechanism (3) during cooling.

7. The intelligent temperature-controlled functional beverage production system according to claim 1, characterized in that, The mixing container (1) is vertically equipped with a stirring shaft (61) for stirring the beverage. The top of the mixing container (1) is equipped with a second servo motor (6) for driving the stirring shaft (61) to rotate. The top of the stirring shaft (61) is fixedly connected to the output end of the second servo motor (6).

8. The intelligent temperature-controlled functional beverage production system according to claim 1, characterized in that, The stirring container (1) is fixed with a support bracket (11) on its exterior. The heating mechanism (2) and the cooling mechanism (3) are fixed on the bracket (11). The bracket (11) is also equipped with a controller (4) that can control the operation of the heating mechanism (2), the cooling mechanism (3), the temperature monitoring sensor (5), and the second servo motor (6) respectively. The controller (4) is electrically connected to the heating mechanism (2), the cooling mechanism (3), the temperature monitoring sensor (5), and the second servo motor (6) respectively.

Citation Information

Patent Citations

  • Circulating type mixing and burdening tank

    CN220425209U