Artificial intelligence high-temperature sterilization equipment for beverage processing
By introducing interlaced cooling plates and multifunctional components into the beverage processing equipment, the problem of cooling time after high-temperature sterilization is solved, efficient sterilization and cooling is achieved, and production efficiency and safety are improved.
Patent Information
- Application Number
- CN202422260372.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The existing beverage processing is complex and time-consuming after high-temperature sterilization, which affects production efficiency.
A device including a sterilization tank and a cooling box is designed. The sterilization tank is connected to the cooling box through a liquid conduit. The cooling box is equipped with an interlaced cooling plate. The cooling plate is used to increase the residence time of the beverage in the cooling box, and combined with heating components, agitating components and ultraviolet sterilization lamps, to achieve fast and efficient sterilization and cooling.
It achieves rapid cooling of beverages after high-temperature sterilization, improves production efficiency, ensures the hygiene, safety and uniform cooling effect of beverages, and reduces the number of equipment and space.
Smart Images

Figure CN223142792U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of sterilization equipment, and particularly relates to an artificial intelligence high-temperature sterilization equipment for beverage processing. Background Art
[0002] Sterilization treatment is a key link in beverage processing, aiming to kill or remove harmful organisms such as microorganisms, bacteria, molds, and yeasts in beverages to ensure the hygienic safety of beverages, extend their shelf life, and prevent spoilage and bad flavors caused by microbial contamination.
[0003] When the existing beverages are sterilized, high temperature is usually used for sterilization. After sterilization, the beverages in a high-temperature state are then introduced into a cooling container for cooling treatment. More equipment is required and the time consumed is relatively long. For this reason, we have proposed an artificial intelligence high-temperature sterilization equipment for beverage processing to solve the above problems. Content of the Utility Model
[0004] The purpose of the utility model is to provide an artificial intelligence high-temperature sterilization equipment for beverage processing to solve the problems existing in the background art.
[0005] To achieve the above technical purpose, the technical solution adopted by the utility model is as follows:
[0006] An artificial intelligence high-temperature sterilization equipment for beverage processing includes a sterilization tank. The upper part of the outer side of the sterilization tank is communicated with a feed pipe, and the opening at the upper end of the feed pipe is sealed and blocked by a sealing cover. A heating component is arranged at the lower side inside the sterilization tank. A cooling box is placed at the lower end of the sterilization tank. A liquid guide pipe is communicated between the sterilization tank and the cooling box. An electromagnetic valve is arranged on the outer side of the liquid guide pipe. A cooling component is arranged inside the cooling box. Support feet are fixed at the four corners of the lower end of the cooling box. A liquid outlet pipe is communicated at the central position of the lower end of the cooling box, and a control switch is arranged on the outer side of the liquid outlet pipe.
[0007] The cooling component includes a plurality of cooling plates, and each of the cooling plates is uniformly distributed and fixed inside the cooling box from top to bottom, and gaps are alternately distributed between each of the cooling plates and the inner wall of the cooling box.
[0008] The heating component heats the beverage inside the sterilization tank to achieve the purpose of sterilization. Then, the beverage is transported into the cooling box through the liquid guide pipe, and the cooling component cools the beverage, so that the beverage can be produced quickly.
[0009] Among them, after the beverage enters the cooling box from the liquid guide pipe, the beverage will first come into contact with the upper surfaces of the respective cooling plates, and at this time, the beverage can be cooled. Since the cooling assembly is composed of a plurality of the cooling plates, these cooling plates are evenly distributed and fixed inside the cooling box from top to bottom. A gap is deliberately left between each cooling plate and the inner wall of the cooling box, and the design of these gaps is staggered, which can increase the travel length of the beverage flow, thereby increasing the time in the cooling box, enabling the beverage to have more sufficient time for cooling, and further ensuring the uniformity and efficiency of the cooling effect;
[0010] Among them, the respective support feet lift the cooling box, facilitating the beverage to be discharged from the liquid outlet pipe after the staff turns on the control switch.
[0011] Further defined, the heating assembly includes a heating plate. A partition is provided inside the sterilization tank. The heating plate is installed and attached to the lower end of the partition, and a conducting wire is electrically connected to the side of the heating plate.
[0012] Further defined, a plurality of ultraviolet germicidal lamps are provided at the lower ends of the respective cooling plates.
[0013] Further defined, a stirring assembly is provided inside the sterilization tank. The stirring assembly includes a motor. The motor is installed in the middle of the upper end of the sterilization tank. A rotating rod is fixed to the output shaft of the motor. A plurality of stirring blades arranged in a circle are provided on the outer side of the end of the rotating rod extending into the sterilization tank, and a plurality of through holes are provided on the surfaces of the respective stirring blades.
[0014] Further defined, a pressure relief valve is provided at the upper end of the sterilization tank, and a thermometer is provided on the outer side of the sterilization tank.
[0015] The beneficial effects of the present utility model:
[0016] 1. By providing a plurality of cooling plates arranged in a staggered manner, the beverage after high-temperature sterilization can be spread out for rapid cooling, and at the same time, the residence time of the beverage in the cooling box is increased, thereby improving the cooling efficiency
[0017] 2. By providing a pressure relief valve to prevent the internal pressure of the sterilization tank from being unbalanced, it protects the personal safety of the staff; at the same time, the application of the thermometer and the artificial intelligence system also makes the operation of the equipment more intelligent and controllable.
[0018] 3. By driving the rotating rod to rotate with the motor and driving the stirring blades to rotate with the rotating rod, the beverage can be heated more evenly inside the sterilization tank, thereby improving the sterilization effect.
[0019] 4. By setting up an ultraviolet germicidal lamp, the beverage can be subjected to secondary sterilization treatment, further ensuring the cleanliness and hygiene of the beverage, and facilitating consumption and preservation. Description of the Drawings
[0020] The present utility model can be further illustrated by the non-limiting embodiments given in the drawings.
[0021] Figure 1 is a schematic structural diagram of the artificial intelligence high-temperature sterilization equipment for beverage processing of the present utility model;
[0022] Figure 2 is Figure 1 an enlarged schematic structural diagram of the position A in
[0023] Figure 3 is a schematic cross-sectional structural diagram of the artificial intelligence high-temperature sterilization equipment for beverage processing of the present utility model.
[0024] The main element symbols are explained as follows:
[0025] Sterilization tank 100, feed pipe 101, sealing cover 102, cooling tank 103, liquid guide pipe 104, electromagnetic valve 105, support feet 106, liquid outlet pipe 107, control switch 108, heating plate 200, partition plate 201, conducting wire 202, cooling plate 203, ultraviolet germicidal lamp 204, motor 300, rotating rod 301, stirring blade 302, through hole 303, air release valve 304, thermometer 305. Detailed Embodiments
[0026] In order to enable those skilled in the art to better understand the present utility model, the technical solutions of the present utility model will be further described below in conjunction with the drawings and embodiments.
[0027] Embodiment 1:
[0028] As Figures 1 - 3 shown, the artificial intelligence high-temperature sterilization equipment for beverage processing includes a sterilization tank 100. The upper part of the outer side of the sterilization tank 100 is communicated with a feed pipe 101. The upper opening of the feed pipe 101 is sealed and blocked by a sealing cover 102. A heating assembly is provided on the lower side inside the sterilization tank 100. A cooling tank 103 is placed at the lower end of the sterilization tank 100. A liquid guide pipe 104 is communicated between the sterilization tank 100 and the cooling tank 103. An electromagnetic valve 105 is provided on the outer side of the liquid guide pipe 104. A cooling assembly is provided inside the cooling tank 103. Support feet 106 are fixed at the four corners of the lower end of the cooling tank 103. A liquid outlet pipe 107 is communicated at the central position of the lower end of the cooling tank 103. A control switch 108 is provided on the outer side of the liquid outlet pipe 107;
[0029] The cooling assembly includes a number of cooling plates 203, and each cooling plate 203 is evenly distributed and fixed inside the cooling tank 103 from top to bottom, and there are staggered gaps between each cooling plate 203 and the inner wall of the cooling tank 103.
[0030] The sterilization tank 100 can not only store beverages, but also perform high-temperature sterilization treatment on the beverages under the action of the heating assembly to heat the beverages. After the sterilization, when the electromagnetic valve 105 is opened, the beverages will be transported to the inside of the cooling tank 103 by the liquid guide pipe 104, and the cooling assembly is relied on to cool the beverages, so that the production efficiency of the beverages can be improved;
[0031] Among them, the support feet 106 can support the cooling tank 103 and the sterilization tank 100, raise the cooling tank 103, facilitate the beverages to enter the inside of the liquid outlet pipe 107 due to their own gravity, and the control switch 108 can control the opening or closing of the liquid outlet pipe 107 to let the beverages drain out.
[0032] When producing beverages: First, open the sealing cover 102, pour the beverages into the sterilization tank 100 through the feed pipe 101, then cover the sealing cover 102 to make the inside of the sterilization tank 100 in a sealed state. During the heating process of the heating assembly, the inside of the sterilization tank 100 will be in a high-temperature state, so that high-temperature sterilization treatment of the beverages can be achieved. Then, after heating at a high temperature for a period of time, the electromagnetic valve 105 will automatically open to allow the beverages to be transported from the liquid guide pipe 104 to the inside of the cooling tank 103. When the beverages enter the inside of the cooling tank 103, the beverages will first come into contact with the upper surface of the uppermost cooling plate 203. After that, when the beverages spread out on the surface of the cooling plate 203, the beverages can be cooled. At the same time, the staggered gaps between each cooling plate 203 and the cooling tank 103 can increase the time for the beverages to stay inside the cooling tank 103, so that the beverages have a longer time to cool down. Finally, open the control switch 108, and the beverages will drain out through the liquid outlet pipe 107, so that the production of the beverages can be completed.
[0033] In this embodiment, by arranging a plurality of cooling plates 203 arranged in a staggered manner, the beverages after high-temperature sterilization can be spread out for rapid cooling. At the same time, the travel during the flow of the beverages is increased, so that the beverages have more time to stay inside the cooling tank 103. In this way, without a large number of machines and equipment, the production efficiency of the beverages can also be improved.
[0034] Embodiment Two:
[0035] Such as Figures 1 - 3As shown in the figure, on the basis of Embodiment 1, other components of the artificial intelligence high-temperature sterilization equipment for beverage processing are further described. The heating component includes a heating plate 200. A partition 201 is provided inside the sterilization tank 100. The heating plate 200 is installed and attached to the lower end of the partition 201. A conducting wire 202 is electrically connected to the circumferential side of the heating plate 200.
[0036] Several ultraviolet germicidal lamps 204 are provided at the lower end of each cooling plate 203.
[0037] A stirring component is provided inside the sterilization tank 100. The stirring component includes a motor 300. The motor 300 is installed in the middle of the upper end of the sterilization tank 100. A rotating rod 301 is fixed to the output shaft of the motor 300. Several stirring blades 302 arranged in a circle are provided on the outer side of the end of the rotating rod 301 extending into the sterilization tank 100. Several through holes 303 are provided on the surface of each stirring blade 302.
[0038] A pressure relief valve 304 is provided at the upper end of the sterilization tank 100, and a thermometer 305 is provided outside the sterilization tank 100.
[0039] In this embodiment, as a power transmission medium, the conducting wire 202 can connect to external power and provide electric energy for the heating plate 200, so that the heating plate 200 generates heat after being powered on. Since the heating plate 200 is in close contact with the partition 201, the temperature of the heating plate 200 can be transferred to the partition 201 through heat transfer, and the partition 201 is heated up, thereby indirectly heating the contacted beverage to achieve the purpose of sterilization.
[0040] When the beverage is laid flat on the upper surface of each cooling plate 203, each ultraviolet germicidal lamp 204 can also sterilize the surface of the beverage, which can further ensure the hygienic safety and taste of the beverage.
[0041] When the motor 300 is started, the motor 300 can drive the rotating rod 301 to rotate, and the rotating rod 301 drives each stirring blade 302 to rotate. During the rotation of the stirring blade 302, the beverage will achieve a turbulent flow effect through each through hole 303, making the beverage inside the sterilization tank 100 heat more evenly and improving the sterilization effect of the beverage.
[0042] The pressure relief valve 304 is used to discharge the pressure inside the sterilization tank 100, effectively preventing potential hazards to the personal safety of the staff caused by the pressure imbalance inside the sterilization tank 100; at the same time, the thermometer 305 can monitor the temperature inside the sterilization tank 100 in real time, accurately transmit the real-time data changes of these temperatures to the control center of the factory area, and through the centralized processing of the control center and the precise setting of the artificial intelligence system by the staff, the artificial intelligence can more intelligently control the opening timing of the electromagnetic valve 105, ensuring that the beverage can quickly enter the next cooling process, thereby significantly improving the production efficiency of the beverage.
[0043] The above embodiments merely exemplarily illustrate the principles and effects of the present utility model, rather than being used to limit the present utility model. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present utility model. Therefore, all equivalent modifications or changes completed by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the present utility model should still be covered by the claims of the present utility model.
Claims
1. An artificial intelligence high-temperature sterilization device for beverage processing, characterized in that: It includes a sterilization tank (100). The upper part outside the sterilization tank (100) is communicated with a feed pipe (101). The opening at the upper end of the feed pipe (101) is sealed and blocked by a sealing cover (102). A heating component is provided on the lower side inside the sterilization tank (100). A cooling box (103) is placed at the lower end of the sterilization tank (100). A liquid guide pipe (104) is communicated between the sterilization tank (100) and the cooling box (103). An electromagnetic valve (105) is provided on the outer side of the liquid guide pipe (104). A cooling component is provided inside the cooling box (103). Support feet (106) are fixed at the four corners of the lower end of the cooling box (103). A liquid outlet pipe (107) is communicated at the central position of the lower end of the cooling box (103). A control switch (108) is provided on the outer side of the liquid outlet pipe (107); The cooling component includes a number of cooling plates (203). Each of the cooling plates (203) is uniformly distributed and fixed inside the cooling box (103) from top to bottom. And there are staggered gaps between each of the cooling plates (203) and the inner wall of the cooling box (103).
2. The beverage processing artificial intelligence high-temperature sterilization equipment according to claim 1, characterized in that: The heating component includes a heating plate (200). A partition plate (201) is provided inside the sterilization tank (100). The heating plate (200) is installed and attached to the lower end of the partition plate (201). A conducting wire (202) is electrically connected to the circumferential side of the heating plate (200).
3. The beverage processing artificial intelligence high-temperature sterilization equipment according to claim 1, characterized in that: A number of ultraviolet germicidal lamps (204) are provided at the lower end of each of the cooling plates (203).
4. The beverage processing artificial intelligence high-temperature sterilization equipment according to claim 1, wherein: A stirring component is provided inside the sterilization tank (100). The stirring component includes a motor (300). The motor (300) is installed in the middle of the upper end of the sterilization tank (100). A rotating rod (301) is fixed to the output shaft of the motor (300). A number of stirring blades (302) arranged circumferentially are provided on the outer side of the end of the rotating rod (301) extending into the sterilization tank (100). A number of through holes (303) are formed on the surface of each of the stirring blades (302).
5. The beverage processing artificial intelligence high-temperature sterilization equipment according to claim 1, characterized in that: A pressure relief valve (304) is provided at the upper end of the sterilization tank (100). A thermometer (305) is provided on the outer side of the sterilization tank (100).