Sterilization equipment for producing and processing cordyceps militaris solid beverage

By combining a screen plate and cam mechanism with ultraviolet sterilization lamps and an air heat pump, the problem of insufficient sterilization in solid beverage production equipment is solved, achieving a comprehensive and efficient sterilization effect.

CN224055310UActive Publication Date: 2026-03-31SHANXI KAIHAO BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In existing solid beverage production equipment, one side of the solid beverage is not effectively sterilized during the sterilization process, resulting in insufficient sterilization.

Method used

The system employs a screen plate and cam mechanism in conjunction with ultraviolet sterilization lamps and an air heat pump. The screen plate vibrates to disperse the material, and combined with multi-angle ultraviolet irradiation and high-temperature gas sterilization, it ensures that both the surface and interior of the material are fully sterilized.

Benefits of technology

It achieves comprehensive and efficient sterilization of solid beverages, improves the sterilization effect, and ensures the complete elimination of microorganisms on all surfaces and inside the powdered material.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses sterilization equipment for producing and processing cordyceps sinensis solid beverage, which relates to the technical field of sterilization for producing and processing solid beverage and comprises a sterilization box, a screen plate is horizontally and slidably arranged in the sterilization box, one side of the screen plate is connected with a connecting plate, and the other side of the connecting plate is connected with a push plate. A cam is rotationally arranged on one side of the push plate, when the cam rotates, the end connecting plate and the screen plate can be driven by the push plate to horizontally slide in a reciprocating manner, and a first servo motor for driving the cam to rotate is arranged on one side of the sterilization box; according to the utility model, the two groups of sterilization pieces are symmetrically arranged in a staggered manner, and the ultraviolet sterilization lamps distributed in a linear array are arranged. When solid beverage powder is dispersed and falls through the screen plate, multi-angle ultraviolet irradiation can fully cover all surfaces of the powder, surface bacteria are quickly and efficiently killed, and compared with a traditional single-side ultraviolet sterilization mode, the design is more comprehensive in irradiation and ensures full sterilization.
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Description

Technical Field

[0001] This utility model relates to the field of sterilization technology in the production and processing of solid beverages, specifically a sterilization device for the production and processing of Cordyceps sinensis and Ginseng solid beverages. Background Technology

[0002] Solid beverages refer to solid products made primarily from sugar, milk and dairy products, eggs or egg products, fruit juice or edible plant extracts, with the addition of appropriate excipients or food additives. Each 100 grams of the finished product contains no more than 5 grams of water. Solid beverages belong to the category of soft drinks and are mainly divided into protein-type solid beverages and ordinary solid beverages. They are available in powder, granule, or block form, such as soy crystal powder, malted milk powder, instant coffee, chrysanthemum crystals, etc.

[0003] A Chinese patent (publication number: CN220441814U) discloses a sterilization device for solid beverage production and processing, comprising a box body, an air pump installed at the bottom of the box body, a connecting pipe installed inside the box body, the inner wall of the bottom end of the connecting pipe contacting and cooperating with the air outlet pipe of the air pump, a frustum-shaped guide plate installed at the bottom of the box body, the connecting pipe passing through the frustum-shaped guide plate, and two ultraviolet lamps distributed on the left and right sides installed on the inner wall of the top surface of the box body.

[0004] During use, the above-mentioned equipment sterilizes solid beverages by evenly dispersing them on a circular guide plate and then using ultraviolet lamps installed at the top of the chamber. However, since the solid beverages are piled on the guide plate, only one side of the solid beverages can be sterilized, while the side closest to the guide plate cannot be effectively sterilized.

[0005] To address these issues, we designed a sterilization device for the production and processing of Cordyceps sinensis solid beverages. Utility Model Content

[0006] The purpose of this invention is to provide a sterilization device for the production and processing of Cordyceps sinensis and ginseng solid beverages, so as to solve the problems mentioned in the background art.

[0007] To solve the above-mentioned technical problems, this utility model provides a sterilization device for the production and processing of Cordyceps sinensis solid beverage, including a sterilization chamber. A screen plate is horizontally slidably arranged inside the sterilization chamber. A connecting plate is connected to one side of the screen plate, and a push plate is connected to the other side of the connecting plate. A cam is rotatably arranged on one side of the push plate.

[0008] When the cam rotates, it can slide horizontally back and forth through the push plate drive end connecting plate and the screen plate. A first servo motor that drives the cam to rotate is provided on one side of the sterilization box.

[0009] A return spring is connected to the other side of the screen plate, and the other end of the return spring is connected to the inner wall of the sterilization chamber. Two sets of sterilization components are connected inside the sterilization chamber.

[0010] Furthermore, a drive rack is provided below the screen plate, a transmission gear is meshed on the drive rack, a connecting shaft is connected to the transmission gear, a rotary joint is connected to the bottom of the sterilization chamber, the end of the connecting shaft away from the transmission gear is rotatably connected to the rotary joint, an air heat pump is connected to one side of the sterilization chamber, a delivery pipe is connected between the air heat pump and the rotary joint, and a shovel plate is connected to the connecting shaft.

[0011] Furthermore, each sterilization unit is connected to multiple ultraviolet sterilization lamps, which are arranged in a linear array, and the multiple ultraviolet sterilization lamps in the two sterilization units are arranged symmetrically and alternately.

[0012] Furthermore, the connecting shaft has multiple air jets that are equally spaced along the axis of the connecting shaft, and the shovel plate has a cavity that is connected to some of the air jets.

[0013] Furthermore, a connecting block is connected to the bottom of the screen plate, and the other end of the connecting block is connected to the drive rack.

[0014] Furthermore, an installation cylinder is connected inside the sterilization chamber, and a separating feed rack is rotatably connected inside the installation cylinder. A second servo motor that drives the separating feed rack to rotate is connected to the rear side of the sterilization chamber.

[0015] Furthermore, the separating unloading rack includes a drive shaft rotatably connected inside the mounting cylinder and a plurality of separating plates connected to the drive shaft.

[0016] Furthermore, a fixed plate is connected to one side of the sterilization chamber, the cam is rotatably connected to one side of the fixed plate, and the first servo motor is connected to the other side of the fixed plate.

[0017] Compared with the prior art, the beneficial effects of this utility model are:

[0018] 1. Two sets of sterilization components are symmetrically and alternately arranged, containing ultraviolet sterilization lamps distributed in a linear array. When solid beverage powder is dispersed and falls through the sieve plate, multi-angle ultraviolet irradiation can fully cover all surfaces of the powder, quickly and efficiently killing surface bacteria. Compared with traditional single-sided ultraviolet sterilization, this design provides more comprehensive irradiation and ensures thorough sterilization.

[0019] 2. The high-temperature gas generated by the air heat pump enters the equipment through the delivery pipe and rotary joint. Part of it is used to heat the shovel plate to achieve contact heat transfer, and the other part is directly sprayed into the sterilization chamber to create a high-temperature environment. The rotating shovel plate turns the material, allowing the high-temperature gas to fully penetrate the gaps in the powder and deeply kill the microorganisms inside the particles and in hidden places. Attached Figure Description

[0020] Figure 1 This is a three-dimensional structural diagram of the overall external structure of this utility model;

[0021] Figure 2 This is a plan view of the present invention;

[0022] Figure 3 This is a side view of the present invention;

[0023] Figure 4 This is a rear view of the present invention;

[0024] Figure 5 This utility model Figure 3 Enlarged view of point A in the middle.

[0025] In the diagram: 1. Sterilization chamber; 2. Screen plate; 3. Connecting plate; 4. Push plate; 5. Cam; 6. First servo motor; 7. Drive rack; 8. Transmission gear; 9. Connecting shaft; 10. Shovel plate; 11. Air heat pump; 12. Conveying pipe; 13. Rotary joint; 14. Connecting block; 15. Mounting cylinder; 16. Separating feed rack; 17. Second servo motor; 18. Feeding frame; 19. Return spring; 20. Fixing plate; 21. Sterilization component; 22. Air jet nozzle. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Please see Figure 1-5 This utility model provides a technical solution: a sterilization device for the production and processing of Cordyceps sinensis and ginseng solid beverage, including a sterilization chamber 1, a screen plate 2 horizontally slidingly arranged inside the sterilization chamber 1, a connecting plate 3 connected to one side of the screen plate 2, a push plate 4 connected to the other side of the connecting plate 3, and a cam 5 rotatably arranged on one side of the push plate 4.

[0028] When the cam 5 rotates, it can slide horizontally back and forth through the push plate 4 to drive the connecting plate 3 and the screen plate 2. A first servo motor 6 that drives the cam 5 to rotate is provided on one side of the sterilization box 1.

[0029] A reset spring 19 is connected to the other side of the screen plate 2. The other end of the reset spring 19 is connected to the inner wall of the sterilization chamber 1. Two sets of sterilization components 21 are connected inside the sterilization chamber 1.

[0030] It should be noted that the top of the sterilization chamber 1 is connected to a feed frame 18 for feeding materials.

[0031] In practice, the first servo motor 6 drives the cam 5 to rotate, and the cam 5 pushes the push plate 4 to make the screen plate 2 slide back and forth horizontally within the sterilization chamber 1. The return spring 19 ensures that the screen plate 2 is reset. After the solid beverage falls into the screen plate 2 from above, the vibration of the screen plate 2 disperses the powdered material and causes it to fall through the sieve holes, forming a dispersed state similar to "snowfall". The two sets of sterilization components 21 are located on the left and right sides below the screen plate 2, respectively. During the falling process, the sterilization components 21 sterilize the material with ultraviolet light from all directions. In this setting, the vibration of the screen plate 2 makes the material fall in a dispersed state, avoiding accumulation, and the multi-angle sterilization components 21 along the falling path ensure that all surfaces of the material are irradiated.

[0032] See Figure 1-5 A drive rack 7 is provided below the screen plate 2. A transmission gear 8 is meshed on the drive rack 7. A connecting shaft 9 is connected to the transmission gear 8. A rotary joint 13 is connected to the bottom of the sterilization chamber 1. The end of the connecting shaft 9 away from the transmission gear 8 is rotatably connected to the rotary joint 13. An air heat pump 11 is connected to one side of the sterilization chamber 1. A delivery pipe 12 is connected between the air heat pump 11 and the rotary joint 13. A shovel plate 10 is connected to the connecting shaft 9.

[0033] Multiple air jets 22 are provided on the connecting shaft 9 at equal intervals along the axis of the connecting shaft 9, and a cavity is provided inside the shovel plate 10, and the cavity and some of the air jets 22 are interconnected.

[0034] In practice, when the screen plate 2 slides, the drive rack 7 at the bottom moves synchronously, meshing with the transmission gear 8 to rotate, driving the connecting shaft 9 and the shovel plate 10 to rotate. The high-temperature gas generated by the air heat pump 11 enters the connecting shaft 9 through the delivery pipe 12 and the rotary joint 13, and is injected into the cavity of the shovel plate 10 through part of the jet nozzle 22 on the connecting shaft 9 to heat the shovel plate 10. The rotating shovel plate 10 turns the material on one hand, dispersing the accumulated powder, and on the other hand, it can reheat the solid beverage area at high temperature. The high-temperature gas ejected from the other part of the jet nozzle 22 can heat the sterilization chamber 1 to form a high-temperature sterilization environment. This setting uses a combination of high-temperature sterilization and ultraviolet sterilization to improve the sterilization effect.

[0035] See Figure 1-5 Each sterilization unit 21 is connected to multiple ultraviolet sterilization lamps, and the multiple ultraviolet sterilization lamps are arranged in a linear array. The multiple ultraviolet sterilization lamps in the two sterilization units 21 are arranged symmetrically and alternately.

[0036] In practice, this setting can increase the sterilization range of the ultraviolet sterilization lamp, ensuring that the powder receives multi-angle irradiation during its falling trajectory, thereby improving the sterilization effect.

[0037] See Figure 1-5The bottom of the screen plate 2 is connected to a connecting block 14, and the other end of the connecting block 14 is connected to the drive rack 7.

[0038] In practice, the connecting block 14 fixes the screen plate 2 to the drive rack 7, forming a stable transmission structure. When the screen plate 2 slides back and forth, the connecting block 14 drives the drive rack 7 to move synchronously, ensuring that the transmission gear 8 rotates, thereby causing the connecting shaft 9 and the shovel plate 10 to rotate.

[0039] See Figure 1-5 The sterilization chamber 1 is connected to an installation cylinder 15, and a separating feed rack 16 is rotatably connected inside the installation cylinder 15. A second servo motor 17 that drives the separating feed rack 16 to rotate is connected to the rear side of the sterilization chamber 1.

[0040] The separating feeder 16 includes a drive shaft rotatably connected within the mounting cylinder 15 and a plurality of separating plates connected to the drive shaft.

[0041] In practice, the second servo motor 17 drives the drive shaft of the dividing feed rack 16 to rotate, which drives multiple dividing plates to rotate synchronously. The dividing plates are radially distributed, dividing the material channel in the mounting cylinder 15 into multiple independent areas. When the solid beverage powder entering the sterilization chamber 1 falls to the dividing feed rack 16, the material falls evenly onto the screen plate 2 in a thin layer, avoiding large accumulation.

[0042] See Figure 1-5 A fixed plate 20 is connected to one side of the sterilization chamber 1, a cam 5 is rotatably connected to one side of the fixed plate 20, and a first servo motor 6 is connected to the other side of the fixed plate 20.

[0043] In practice, this setup facilitates the installation of the first servo motor 6 and the cam 5, allowing the push plate 4 to reciprocate smoothly in the horizontal direction when the cam 5 rotates.

[0044] Working principle: Solid beverage powder enters the sterilization chamber 1 from the feeding frame 18 at the top of the sterilization chamber 1. The second servo motor 17 drives the drive shaft of the separating feed rack 16 to rotate, which drives the radially distributed partition plates to rotate synchronously. The partition plates divide the material channel into multiple independent areas, so that the powder falls evenly into the screen plate 2 below in a thin layer, avoiding large accumulation.

[0045] The first servo motor 6 drives the cam 5 to rotate. The cam 5 pushes the push plate 4 to drive the screen plate 2 to slide back and forth horizontally in the sterilization chamber 1. The reset spring 19 ensures that the screen plate 2 is reset. The vibration of the screen plate 2 causes the powder to fall through the sieve holes, forming a dispersion state similar to "snowfall".

[0046] Two sets of sterilization components 21 are symmetrically and alternately arranged on the left and right sides below the screen plate 2. Each set contains multiple ultraviolet sterilization lamps arranged in a linear array. When the falling powder passes through the ultraviolet irradiation area, each surface is irradiated from multiple angles to achieve all-round surface sterilization.

[0047] When the screen plate 2 slides, the drive rack 7 at the bottom moves synchronously through the connecting block 14, meshes with the transmission gear 8 to rotate, drives the connecting shaft 9 and the shovel plate 10 to rotate, and the rotating shovel plate 10 continuously turns the material, further dispersing the accumulated powder and increasing the exposed area of ​​the material.

[0048] At the same time, the high-temperature gas generated by the air heat pump 11 enters the connecting shaft 9 through the delivery pipe 12 and the rotary joint 13. Part of the high-temperature gas is injected into the cavity of the shovel plate 10 through the jet nozzle 22 on the connecting shaft 9, heating the surface of the shovel plate 10 and performing secondary sterilization on the material through contact heat transfer. Another part of the jet nozzle 22 directly sprays high-temperature gas into the sterilization chamber 1, forming a high-temperature sterilization environment.

Claims

1. A sterilization equipment for producing and processing Cordyceps sinensis solid beverage, comprising a sterilization box (1), characterized in that, The screen plate (2) is horizontally slidably arranged in the sterilization box (1), one side of the screen plate (2) is connected with a connecting plate (3), the other side of the connecting plate (3) is connected with a push plate (4), one side of the push plate (4) is rotatably provided with a cam (5), wherein, When the cam (5) rotates, the push plate (4) can drive the connecting plate (3) and the screen plate (2) to reciprocatingly horizontally slide, one side of the sterilization box (1) is provided with a first servo motor (6) for driving the cam (5) to rotate; The other side of the screen plate (2) is connected with a reset spring (19), the other end of the reset spring (19) is connected to the inner wall of the sterilization box (1), and two groups of sterilization components (21) are connected in the sterilization box (1).

2. The solid beverage production and processing of cordyceps and ginseng sterilization equipment according to claim 1, characterized in that: A driving rack (7) is arranged below the screen plate (2), a transmission gear (8) is meshingly connected to the driving rack (7), a connecting shaft (9) is connected to the transmission gear (8), a rotary joint (13) is connected to the bottom of the sterilization box (1), one end of the connecting shaft (9) away from the transmission gear (8) is rotatably connected to the rotary joint (13), an air heat pump (11) is connected to one side of the sterilization box (1), a conveying pipe (12) is connected between the air heat pump (11) and the rotary joint (13), and a shovel plate (10) is connected to the connecting shaft (9).

3. The solid beverage production and processing of cordyceps and ginseng sterilization equipment according to claim 1, characterized in that: A plurality of ultraviolet sterilization lamps are connected in each group of sterilization components (21), and the plurality of ultraviolet sterilization lamps are linearly arranged, and the plurality of ultraviolet sterilization lamps in the two groups of sterilization components (21) are symmetrically and staggeredly arranged.

4. The solid beverage production and processing of cordyceps and ginseng sterilization equipment according to claim 2, characterized in that: A plurality of air injection holes (22) are formed in the connecting shaft (9) at equal intervals along the axis direction of the connecting shaft (9), a cavity is formed in the shovel plate (10), and the cavity and part of the air injection holes (22) are in communication.

5. The solid beverage production and processing of cordyceps and ginseng sterilization equipment according to claim 2, characterized in that: A connecting block (14) is connected to the bottom of the screen plate (2), and the other end of the connecting block (14) is connected with the driving rack (7).

6. The solid beverage production and processing of cordyceps and ginseng sterilization equipment according to claim 1, characterized in that: An installation cylinder (15) is connected in the sterilization box (1), a separation and discharging frame (16) is rotatably connected in the installation cylinder (15), and a second servo motor (17) is connected to the rear side of the sterilization box (1) for driving the separation and discharging frame (16) to rotate.

7. The solid beverage production and processing of cordyceps and ginseng sterilization equipment according to claim 6, characterized in that: The separation and discharging frame (16) comprises a driving shaft rotatably connected in the installation cylinder (15) and a plurality of separation plates connected to the driving shaft.

8. The solid beverage production and processing of cordyceps and ginseng sterilization equipment according to claim 1, characterized in that: A fixed plate (20) is connected to one side of the sterilization box (1), the cam (5) is rotatably connected to one side of the fixed plate (20), and the first servo motor (6) is connected to the other side of the fixed plate (20).

Citation Information

Patent Citations

  • Sterilization device for producing and processing solid beverage

    CN220441814U