Enzymolysis device for cubilose food preparation

Through the combination of multi-stage inclined stirring blades and electric heating heat-conducting components, the problems of insufficient stirring and poor temperature control during the enzymatic hydrolysis of bird's nests are solved, and efficient enzymatic hydrolysis of bird's nests is achieved.

CN223316692UActive Publication Date: 2025-09-09NANJING FENGSHENG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422293850.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-09-09
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

The existing bird's nest enzymatic hydrolysis reaction tank has a simple stirring blade structure, which makes it difficult to fully stir and lacks effective control over the reaction temperature.

Method used

A multi-stage inclined stirring blade structure and an electric heating heat-conducting component were designed, combined with a temperature sensor and a display instrument to achieve sufficient stirring and temperature control of the enzymatic hydrolysis reaction.

Benefits of technology

The bird's nest enzymatic hydrolysis process is fully stirred and temperature controlled, which improves the enzymatic hydrolysis efficiency and reaction effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an enzymolysis device for cubilose food preparation, which solves the problems of single structure and insufficient cubilose stirring of the existing enzymolysis stirring equipment, and adopts the scheme that the enzymolysis device comprises a hollow support table and a tank body suspended at the bottom of the support table, the top of the tank body is movably sealed through a valve, and the bottom of the tank body is sealed through a valve. The top of the valve is welded to the supporting table through a connecting sleeve, a stirring motor with the output end penetrating through the connecting sleeve is further fixed to the top of the supporting table, the inner layer and the outer layer of the tank body are layered, the inner layer of the tank body is made of aluminum silicate, and a hollow circular-truncated-cone-shaped heat conduction cavity is further fixed to the bottom of the inner layer of the tank body. An electric heating type heat conduction assembly is further arranged at the position, corresponding to the heat conduction cavity, of the bottom of the outer layer of the tank body, a stirring piece in transmission with a stirring motor is further arranged in the center of the inner layer of the tank body, a feeding port is further formed in the top of the valve port, and a discharging port communicated with the inner layer of the tank body is further formed in the center of the bottom of the outer layer of the tank body. The feeding port and the discharging port are movably sealed through sealing valves.
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Description

Technical Field

[0001] The utility model relates to the technical field of bird's nest processing equipment, in particular to an enzymolysis device for preparing bird's nest food. Background Art

[0002] Enzymatic hydrolysis of bird's nests is the use of the catalytic action of biological enzymes to decompose the bird's nest raw materials from large molecular forms into small molecular forms. During the enzymatic hydrolysis of bird's nests, the bird's nests need to be fused with accumulated water to facilitate the subsequent addition of multiple proteases.

[0003] However, for the existing reaction tank used for enzymatic hydrolysis of bird's nests, its stirring blade structure is relatively simple, making it difficult to stir sufficiently, and there is a lack of control over the temperature inside the reaction chamber during the enzymatic hydrolysis reaction. Therefore, we propose an enzymatic hydrolysis device for preparing bird's nest food to solve the above problems. Utility Model Content

[0004] The technical problem to be solved by the utility model is to overcome the defects of the existing technology. The utility model proposes an enzymatic hydrolysis device for preparing bird's nest food, which can fully promote the enzymatic hydrolysis of bird's nest and control the enzymatic hydrolysis reaction temperature in real time.

[0005] In order to solve the above technical problems, the technical solution adopted by the utility model is: an enzymatic hydrolysis device for preparing bird's nest food, comprising: a hollow support platform and a tank body suspended at the bottom of the support platform, the top of the tank body is movably sealed by a valve, the top of the valve is welded to the support platform through a connecting sleeve, and a stirring motor with an output end passing through the connecting sleeve is also fixed on the top of the support platform, the tank body is layered inside and outside and the inner layer is made of aluminum silicate material, a hollow and frustum-shaped heat-conducting cavity is also fixed at the bottom of the inner layer of the tank, an electric heating heat-conducting component is also provided at the bottom of the outer layer of the tank corresponding to the heat-conducting cavity, a stirring element driven by the stirring motor is also provided at the center of the inner layer of the tank, a feed port is also provided at the top of the valve port, and a discharge port connected to the inner layer of the tank is also provided at the center of the bottom of the outer layer of the tank, and the feed port and the discharge port are both movably sealed by a sealing valve.

[0006] Furthermore, the stirring member includes a rotating shaft and stirring blades, the stirring blades include at least three groups and are wound around the axis of the rotating shaft, each stirring blade includes a horizontal plate, an external rotating plate and an internal rotating plate, the horizontal plate is connected and fixed to a fixed sleeve on the rotating shaft, the top of the external rotating plate is vertically fixed to the horizontal plate, and the other end is spliced ​​into one with the internal rotating plate, the external rotating plate and the internal rotating plate are both inclined compared to the axis of the rotating shaft, and the inclination angle of the internal rotating plate is greater than the inclination angle of the external rotating plate.

[0007] Furthermore, the bottom end of the inner rotating plate is spaced apart from the bottom of the inner layer of the tank body.

[0008] Furthermore, the heat-conducting components include at least two groups and are symmetrically arranged on the bottom surface of the outer layer of the tank body. Each of the heat-conducting components includes an electric heating rod and a circuit connector electrically connected to one end of the electric heating rod. The circuit connector is electrically connected to an external control unit.

[0009] Furthermore, a temperature sensor is provided between the inner layer of the tank body and the outer layer of the tank body, and a temperature display instrument electrically connected to the temperature sensor is provided on the top of the valve.

[0010] Furthermore, positioning rods are vertically fixed to the four corners of the support platform, and the bottom ends of the positioning rods are positioned by positioning pins.

[0011] Compared with the existing technology, the beneficial effects of the present invention include: the bird's nest aqueous solution in the tank can be fully stirred by multi-stage rotating blades with a certain inclination angle, the stirring process is more sufficient, and during the post-stirring and subsequent enzymatic hydrolysis process, heating and temperature transfer can be carried out through the electric heating rod at the bottom of the tank, and the temperature can be displayed externally with the help of a temperature display instrument. The overall structure is practical and reliable and easy to control. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The disclosure of the present invention is described with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of the present invention. In the accompanying drawings, the same reference numerals are used to refer to the same components. Among them:

[0013] Figure 1 The figure schematically shows the overall structure of the enzymatic hydrolysis device proposed according to one embodiment of the present invention;

[0014] Figure 2 The figure schematically shows the internal structure of the enzymatic hydrolysis device proposed according to one embodiment of the present invention.

[0015] Numbers in the figure: 1. Support platform; 2. Tank body; 3. Valve; 4. Connecting sleeve; 5. Stirring motor; 6. Heat transfer chamber; 7. Heat transfer component; 8. Feed inlet; 9. Discharge outlet; 10. Sealing valve; 11. Rotating shaft; 12. Stirring blade; 13. Horizontal plate; 14. Outer rotating plate; 15. Inner rotating plate; 16. Heating rod; 17. Circuit connector; 18. Temperature sensor; 19. Temperature display instrument; 20. Positioning rod; 21. Positioning pin; 22. Stirring element. DETAILED DESCRIPTION

[0016] It is easy to understand that according to the technical solution of the present invention, without changing the essential spirit of the present invention, a person skilled in the art can propose a variety of interchangeable structural methods and implementation methods. Therefore, the following specific embodiments and drawings are only illustrative of the technical solution of the present invention and should not be regarded as the entire present invention or as a limitation or restriction of the technical solution of the present invention.

[0017] According to one embodiment of the present invention, Figure 1-Figure 2 Shown.

[0018] An enzymatic hydrolysis device for preparing bird's nest food comprises: a hollow support platform 1 and a tank body 2 suspended at the bottom of the support platform 1, the top of the tank body 2 being movably sealed by a valve 3, the top of the valve 3 being welded to the support platform 1 through a connecting sleeve 4, a stirring motor 5 whose output end passes through the connecting sleeve 4 being fixed to the top of the support platform 1, the tank body 2 being layered inside and outside and the inner layer being made of aluminum silicate material, a hollow and frustum-shaped heat-conducting cavity 6 being fixed to the bottom of the inner layer of the tank body 2, an electrically heated heat-conducting component 7 being provided at the bottom of the outer layer of the tank body 2 corresponding to the heat-conducting cavity 6, a stirring member 22 being driven by the stirring motor 5 being provided at the center of the inner layer of the tank body 2, a feed port 8 being provided at the top of the valve port, a discharge port 9 being provided at the center of the outer bottom of the tank body 2 being connected to the inner layer of the tank body 2, and both the feed port 8 and the discharge port 9 being movably sealed by a sealing valve 10.

[0019] Furthermore, the stirring member 22 includes a rotating shaft 11 and stirring blades 12, and the stirring blades 12 include at least three groups and are wound around the axis of the rotating shaft 11. Each stirring blade 12 includes a horizontal plate 13, an external rotating plate 14 and an internal rotating plate 15. The horizontal plate 13 is connected and fixed to a fixed sleeve on the rotating shaft 11. The top of the external rotating plate 14 is vertically fixed to the horizontal plate 13, and the other end is spliced ​​into one with the internal rotating plate 15. The external rotating plate 14 and the internal rotating plate 15 are both inclined compared to the axis of the rotating shaft 11, and the inclination angle of the internal rotating plate 15 is greater than the inclination angle of the external rotating plate 14. The bottom end of the internal rotating plate 15 is spaced apart from the bottom of the inner layer of the tank body 2.

[0020] To control the temperature within the tank 2, in this example, the thermally conductive components 7 comprise at least two groups symmetrically disposed on the outer bottom surface of the tank 2. Each thermally conductive component 7 includes a heating rod 16 and a circuit connector 17 electrically connected to one end of the heating rod 16. The circuit connector 17 is electrically connected to an external control unit. Furthermore, a temperature sensor 18 is disposed between the inner and outer layers of the tank 2, and a temperature display instrument 19 electrically connected to the temperature sensor 18 is disposed on top of the valve 3.

[0021] Through the above structure, when raw materials such as bird's nest or accumulated water are added, it is realized through the multiple feed ports 8 on the top of the valve 3. The feed port 8 can also be connected to the feed pipeline controlled by the external flow pump to facilitate feeding. After the material feeding is completed, the stirring motor 5 is driven to rotate, driving the rotating shaft 11 to rotate in the tank body 2, and the three stirring blades 12 can be tilted centrifugally rotated, that is, two outer rotating plates 14 and inner rotating plates 15 with a certain inclination can repeatedly stir the bird's nest aqueous solution. Its own large contact area can slow down the hard contact force in the stirring contact of the bird's nest, and the multi-stage inner and outer rotation angles can segment the stirring process, which is more suitable for stirring operations of high-cost materials such as bird's nest.

[0022] Furthermore, in this embodiment, in order to facilitate the stirring reaction and the subsequent enzymatic hydrolysis reaction, two symmetrical groups of heat-conducting components 7 are also provided at the bottom of the outer layer of the tank body 2. After the circuit connector 17 is sensed and controlled by the external control unit, the heating rod is electrically heated. The heating rod transfers heat to the area of ​​the heat-conducting cavity 6 at the bottom of the inner layer of the tank body 2. The design of the heat-conducting cavity 6 can ensure the concentration of heat, and the heating effect is more obvious. During actual operation, the operator can cooperate with the temperature display instrument 19 on the top of the valve 3 for observation.

[0023] As for the overall positioning of the support platform 1 and the tank body 2, this embodiment also vertically fixes positioning rods 20 at the four corners of the support platform 1. The bottom end of the positioning rod 20 is positioned by a positioning pin 21, and the four positioning pins 21 can be embedded and fixed with the external factory floor or work surface.

[0024] The technical scope of the present invention is not limited to the contents described above. Those skilled in the art can make various deformations and modifications to the above embodiments without departing from the technical concept of the present invention, and these deformations and modifications should all fall within the scope of protection of the present invention.

Claims

1. An enzymatic hydrolysis device for preparing bird's nest food, characterized in that: include: A hollow support platform and a tank body suspended at the bottom of the support platform, the top of the tank body is movably sealed by a valve, the top of the valve is welded to the support platform through a connecting sleeve, and a stirring motor with an output end passing through the connecting sleeve is also fixed on the top of the support platform. The tank body is layered inside and outside, and the inner layer is made of aluminum silicate material. A hollow and conical heat-conducting cavity is also fixed at the bottom of the inner layer of the tank body, and an electric heating heat-conducting component is also provided at the bottom of the outer layer of the tank body corresponding to the heat-conducting cavity. A stirring element driven by the stirring motor is also provided at the center of the inner layer of the tank body. A feed port is also provided at the top of the valve, and a discharge port connected to the inner layer of the tank body is also provided at the center of the bottom of the outer layer of the tank body. Both the feed port and the discharge port are movably sealed by a sealing valve.

2. The enzymatic hydrolysis device for preparing bird's nest food according to claim 1, characterized in that: The stirring member includes a rotating shaft and stirring blades, and the stirring blades include at least three groups and are wound around the axis of the rotating shaft. Each stirring blade includes a horizontal plate, an external rotating plate and an internal rotating plate. The horizontal plate is connected and fixed to a fixed sleeve on the rotating shaft. The top of the external rotating plate is vertically fixed to the horizontal plate, and the other end is spliced ​​into one with the internal rotating plate. The external rotating plate and the internal rotating plate are both inclined compared to the axis of the rotating shaft, and the inclination angle of the internal rotating plate is greater than the inclination angle of the external rotating plate.

3. The enzymatic hydrolysis device for preparing bird's nest food according to claim 2, characterized in that: The bottom end of the inner rotating plate is spaced apart from the bottom of the inner layer of the tank body.

4. The enzymatic hydrolysis device for preparing bird's nest food according to claim 1, characterized in that: The heat-conducting components include at least two groups and are symmetrically arranged on the bottom surface of the outer layer of the tank. Each of the heat-conducting components includes a heating rod and a circuit connector electrically connected to one end of the heating rod. The circuit connector is electrically connected to an external control unit.

5. The enzymatic hydrolysis device for preparing bird's nest food according to claim 1, characterized in that: A temperature sensor is further provided between the inner layer of the tank body and the outer layer of the tank body, and a temperature display instrument electrically connected to the temperature sensor is further provided on the top of the valve.

6. The enzymatic hydrolysis device for preparing bird's nest food according to claim 1, characterized in that: Positioning rods are also vertically fixed at the four corners of the support platform, and the bottom ends of the positioning rods are positioned by positioning pins.