Ultrahigh-temperature sterilization device for coconut beverage processing
By introducing a heat exchange box and an S-shaped liquid guide tube into the sterilization device, the problem of heat waste after sterilization is solved, and heat reuse and efficient cooling of the solution are achieved.
Patent Information
- Application Number
- CN202422449414.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-11
AI Technical Summary
Existing high-temperature sterilization devices lack a structure for recovering the temperature of sterilized beverages, resulting in heat waste.
A device including an ultra-high temperature sterilization box, a liquid tank and a heat exchange box was designed. Through the arrangement of an S-shaped liquid guide tube and a heat exchange tube, the heat of the sterilized solution can be used to preheat the unsterilized solution, and the heat is reused by using the heat exchange box.
It reduces heat waste, improves the cooling efficiency of the solution, and realizes full utilization of heat.
Smart Images

Figure CN223298445U_ABST
Abstract
Description
Technical Field
[0001] The utility model discloses an ultra-high temperature sterilization device for processing coconut beverages. The utility model belongs to the technical field of ultra-high temperature sterilization for processing beverages, and specifically relates to the technical field of ultra-high temperature sterilization for processing coconut beverages. Background Art
[0002] Coconut drinks include coconut juice, coconut juice drinks, freshly squeezed coconut juice, etc. These drinks usually need to be sterilized during processing in order to increase the shelf life. There are many sterilization devices on the market. Ultra-high temperature sterilization is a more common sterilization method. However, the current high-temperature sterilization device lacks a temperature recovery structure for the sterilized beverage, resulting in heat waste. For this reason, we proposed an ultra-high temperature sterilization device for coconut drink processing. Utility Model Content
[0003] The technical problem to be solved by the utility model is to overcome the existing defects and provide an ultra-high temperature sterilization device for coconut beverage processing, thereby solving the problem that the current high-temperature sterilization device lacks a temperature recovery structure for the sterilized beverage, resulting in heat waste.
[0004] To achieve the above objectives, the present invention provides the following technical solutions:
[0005] A super-high temperature sterilization device for processing coconut drinks comprises a super-high temperature sterilization box and a liquid tank, a heat exchange box is arranged between the super-high temperature sterilization box and the liquid tank, an electric control box and a liquid inlet pipe are installed on the surface of the liquid tank, a one-way valve is installed in the liquid inlet pipe, a discharge pipe is provided at the bottom end of the side of the liquid tank, and a solenoid valve is installed on the discharge pipe.
[0006] As an optimal technical solution of the present invention, a continuous S-shaped liquid guide tube is provided inside the ultra-high temperature sterilization box, and electric heating wires are distributed inside the ultra-high temperature sterilization box on the side of the S-shaped liquid guide tube. A temperature sensor is also installed inside the ultra-high temperature sterilization box, and the outside of the ultra-high temperature sterilization box is wrapped with an insulating shell.
[0007] As an optimal technical solution of the present invention, a liquid inlet transfer box and a liquid outlet transfer box are provided inside the liquid tank, the liquid inlet pipe is connected to the liquid inlet transfer box, and a conduit 1 is provided inside the liquid inlet transfer box. The conduit 1 passes through the interior of the heat exchange box and is connected to the S-shaped liquid guide pipe.
[0008] As a preferred technical solution of the present invention, the internal side of the liquid outlet transfer box is distributed with a heat dissipation pipe extending into the interior of the liquid inlet transfer box. The interior of the liquid outlet transfer box is divided into a liquid outlet end and a feed end by a partition. The liquid outlet end is connected to one end of the heat dissipation pipe, one side of the feed end is connected to one end of the heat dissipation pipe, and the other side of the feed end is connected to the drain pipe. The top of the liquid outlet transfer box is provided with a second conduit, one end of the second conduit extends into the heat exchange box, and the other end of the second conduit is connected to the feed end.
[0009] As an optimal technical solution of the present invention, the interior of the heat exchange box is provided with a heat exchange tube distributed outside the catheter one, one end of the heat exchange tube is connected to the S-shaped liquid guide tube through interface one, and the other end of the heat exchange tube is connected to the catheter two through interface two.
[0010] As a preferred technical solution of the present invention, the outer wall of the heat exchange tube is arranged in close contact with the outer wall of the conduit 1.
[0011] Compared with the prior art, the beneficial effect of the present invention is that the solution to be sterilized flows along the liquid inlet pipe, the liquid inlet transfer box, the first conduit, the S-shaped liquid guide pipe, the heat exchange pipe, the second conduit, the heat dissipation pipe, and the liquid discharge pipe, so that the heat in the sterilized solution can preheat the solution entering the first conduit later, and can also preheat the solution inside the liquid inlet transfer box, so that the heat in the solution can be fully utilized, which not only reduces the waste of heat, but also speeds up the cooling efficiency of the discharged solution. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0013] Figure 2 This is a schematic diagram of the first cross-sectional structure of the present utility model;
[0014] Figure 3 This is a schematic diagram of the second cross-sectional structure of the present utility model;
[0015] Figure 4 This is a schematic diagram of the third cross-sectional structure of the present utility model;
[0016] 1-Ultra-high temperature sterilization box; 11-S-type liquid guide tube; 12-electric heating wire; 13-temperature sensor; 14-insulation shell; 2-liquid tank; 21-liquid inlet transfer box; 22-liquid outlet transfer box; 221-liquid outlet end; 222-feed end; 23-partition; 24-heating pipe; 25-boosting pump; 26-duct 1; 27-duct 2; 3-heat exchange box; 31-interface 1; 32-interface 2; 33-heat exchange pipe; 4-electric control box; 5-liquid inlet pipe; 6-check valve; 7-drain pipe; 8-solenoid valve. DETAILED DESCRIPTION
[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0018] See also Figure 1-4 , the utility model provides a technical solution:
[0019] A super-high temperature sterilization device for processing coconut drinks comprises an super-high temperature sterilization box 1 and a liquid tank 2. A heat exchange box 3 is provided between the super-high temperature sterilization box 1 and the liquid tank 2. The heat exchange box 3 facilitates the transfer of heat from the outflowing high-temperature liquid to the incoming low-temperature liquid, thereby reusing the heat. An electric control box 4 and a liquid inlet pipe 5 are installed on the surface of the liquid tank 2. A one-way valve 6 is installed in the liquid inlet pipe 5. A drain pipe 7 is provided at the bottom end of the side of the liquid tank 2. An electromagnetic valve 8 is installed on the drain pipe 7. By controlling the operation of the electromagnetic valve 8, the drainage operation is facilitated.
[0020] A continuous S-shaped liquid guide tube 11 is provided inside the ultra-high temperature sterilization box 1. The setting of the S-shaped liquid guide tube 11 ensures that the solution can be heated to the required temperature, thereby ensuring the sterilization effect. In addition, electric heating wires 12 are distributed inside the ultra-high temperature sterilization box 1 on the side of the S-shaped liquid guide tube 11. A temperature sensor 13 is also installed inside the ultra-high temperature sterilization box 1. The outside of the ultra-high temperature sterilization box 1 is wrapped with an insulating shell 14. The operation of the electric heating wire 12 is controlled by the electric control box 4, so that the temperature inside the ultra-high temperature sterilization box 1 is within the required temperature range, ensuring the smooth progress of ultra-high temperature sterilization.
[0021] The interior of the liquid tank 2 is provided with a liquid inlet transfer box 21 and a liquid outlet transfer box 22. The liquid inlet pipe 5 is connected to the liquid inlet transfer box 21. The interior of the liquid inlet transfer box 21 is provided with a conduit 26. The conduit 26 passes through the interior of the heat exchange box 3 and is connected to the S-shaped liquid guide tube 11, ensuring that the solution can flow along the direction of the liquid inlet pipe 5, the liquid inlet transfer box 21, the conduit 26, and the S-shaped liquid guide tube 11, thereby entering the interior of the ultra-high temperature sterilization box 1 for sterilization. A booster pump 25 for pressurizing the interior of the liquid inlet transfer box 21 is provided on the surface of the liquid tank 2, thereby preventing the solution from boiling during heating.
[0022] The inner side of the liquid outlet transfer box 22 is distributed with a heat dissipation pipe 24 extending into the interior of the liquid inlet transfer box 21. The interior of the liquid outlet transfer box 22 is divided into a liquid outlet end 221 and a feed end 222 by a partition 23. The liquid outlet end 221 is connected to one end of the heat dissipation pipe 24, and one side of the feed end 222 is connected to one end of the heat dissipation pipe 24. The other side of the feed end 222 is connected to the drain pipe 7. A second conduit 27 is provided at the top of the liquid outlet transfer box 22. One end of the second conduit 27 extends into the heat exchange box 3, and the other end of the second conduit 27 is connected to the feed end 222. This ensures that the solution after passing through the heat exchange box 3 can flow along the direction of conduit 1 26, S-shaped liquid guide tube 11, heat exchange tube 33, second conduit 27, and heat dissipation pipe 24, so that heat can enter the liquid inlet transfer box 21 to heat the solution.
[0023] The interior of the heat exchange box 3 is provided with a heat exchange tube 33 distributed outside the conduit 1 26. One end of the heat exchange tube 33 is connected to the S-shaped liquid guide tube 11 through the interface 1 31, and the other end of the heat exchange tube 33 is connected to the conduit 2 27 through the interface 2 32. In this way, the temperature of the high-temperature solution just flowing out of the ultra-high temperature sterilization box 1 can heat the solution inside the conduit 1 26 through heat transfer.
[0024] The outer wall of the heat exchange tube 33 is arranged in close contact with the outer wall of the conduit 1 26, ensuring that the heat exchange tube 33 and the conduit 1 26 can contact as much as possible, thereby improving the efficiency of heat transfer.
[0025] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An ultra-high temperature sterilization device for coconut beverage processing, characterized in that: The invention comprises an ultra-high temperature sterilization box (1) and a liquid tank (2), wherein a heat exchange box (3) is provided between the ultra-high temperature sterilization box (1) and the liquid tank (2), an electric control box (4) and a liquid inlet pipe (5) are installed on the surface of the liquid tank (2), a one-way valve (6) is installed in the liquid inlet pipe (5), a liquid discharge pipe (7) is provided at the bottom end of the side of the liquid tank (2), and a solenoid valve (8) is installed on the liquid discharge pipe (7).
2. The ultrahigh temperature sterilization device for coconut beverage processing according to claim 1, characterized in that: A continuous S-shaped liquid guide tube (11) is provided inside the ultra-high temperature sterilization box (1), and electric heating wires (12) are distributed inside the ultra-high temperature sterilization box (1) on the side of the S-shaped liquid guide tube (11). A temperature sensor (13) is also installed inside the ultra-high temperature sterilization box (1), and the outside of the ultra-high temperature sterilization box (1) is wrapped with an insulating shell (14).
3. The ultrahigh temperature sterilization device for coconut beverage processing according to claim 2, characterized in that: The liquid tank (2) is provided with a liquid inlet transfer box (21) and a liquid outlet transfer box (22) inside. The liquid inlet pipe (5) is connected to the liquid inlet transfer box (21). The liquid inlet transfer box (21) is provided with a conduit 1 (26) inside. The conduit 1 (26) passes through the interior of the heat exchange box (3) and is connected to the S-shaped liquid guide pipe (11).
4. The ultrahigh temperature sterilization device for coconut beverage processing according to claim 3, characterized in that: The inner side of the liquid outlet transfer box (22) is provided with a heat dissipation pipe (24) extending into the inner side of the liquid inlet transfer box (21). The inner side of the liquid outlet transfer box (22) is divided into a liquid outlet end (221) and a feed end (222) by a partition (23). The liquid outlet end (221) is connected to one end of the heat dissipation pipe (24). One side of the feed end (222) is connected to one end of the heat dissipation pipe (24). The other side of the feed end (222) is connected to the drain pipe (7). A second conduit (27) is provided at the top end of the liquid outlet transfer box (22). One end of the second conduit (27) extends into the heat exchange box (3), and the other end of the second conduit (27) is connected to the feed end (222).
5. The ultra-high temperature sterilization device for coconut beverage processing according to claim 4, characterized in that: The heat exchange box (3) is provided with a heat exchange tube (33) distributed outside the first conduit (26). One end of the heat exchange tube (33) is connected to the S-shaped liquid guide tube (11) through the first interface (31), and the other end of the heat exchange tube (33) is connected to the second conduit (27) through the second interface (32).
6. The ultrahigh temperature sterilization device for coconut beverage processing according to claim 5, characterized in that: The outer wall of the heat exchange tube (33) is arranged in close contact with the outer wall of the conduit 1 (26).