Noni enzyme stock solution extraction separator

By introducing a feeding mechanism and a servo motor-driven circular pusher plate into the Noni enzyme extract separator, the problem of pulp blockage was solved, achieving high-efficiency separation of pulp and enzyme extract, thus improving production efficiency and equipment stability.

CN223655215UActive Publication Date: 2025-12-12HAINAN HUAYONG BIOENGINEERING CO LTD
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Patent Information

Application Number
CN202423164883.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-21
Publication Date
2025-12-12
Estimated Expiration
2034-12-21

AI Technical Summary

Technical Problem

In the existing technology, during the extraction of Noni enzyme stock solution, the pulp fiber easily clogs the feed inlet of the centrifugal separator, resulting in a reduction in processing speed and affecting production efficiency and equipment operation.

Method used

A noni enzyme stock extract separator was designed, which includes a feeding mechanism. A circular pusher plate driven by a servo motor moves up and down in the feed tube, pushing the pulp downward to avoid blockage, and uses centrifugal force to quickly separate the pulp from the enzyme stock.

Benefits of technology

It effectively prevents fruit pulp blockage, improves processing speed and separation efficiency, shortens the production cycle, and ensures the normal operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a morinda citrifolia enzyme stock solution extraction separator, and relates to the technical field of separators, the morinda citrifolia enzyme stock solution extraction separator comprises a bottom plate and a centrifugal separator, the upper end opening of the centrifugal separator is fixedly provided with a feeding pipe, the upper end of the feeding pipe is fixedly provided with a feeding hopper, and the upper end of the centrifugal separator is provided with a discharging mechanism; and the discharging mechanism comprises a special-shaped plate and a round push plate, a supporting frame is fixedly installed at the lower end of the special-shaped plate, a servo motor is fixedly installed at the upper end of the supporting frame, a seesaw is movably installed in a protruding part of the upper end of the special-shaped plate, and a double-disc assembly is rotatably installed in the special-shaped plate. According to the morinda citrifolia enzyme extraction device, fibers or pulp which is not completely crushed in a morinda citrifolia enzyme stock solution can be prevented from being blocked in the feeding pipe, the reduction of the processing speed of the morinda citrifolia enzyme stock solution is prevented, the extraction efficiency is not influenced, and the normal operation of equipment is not influenced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of separator, especially to a morinda citrifolia enzyme stock solution extraction separator. BACKGROUND

[0002] The morinda citrifolia enzyme stock solution contains various enzymes, such as protease, amylase, lipase, etc. Protease can help to decompose protein, making it into smaller peptide segments and amino acids, which is helpful for human body to digest and absorb protein. The quality of the morinda citrifolia enzyme stock solution is crucial for its application. If impurities such as fruit residue remain in the stock solution, it may affect the activity and stability of the enzyme. These impurities will be removed by the separator before subsequent storage and use, ensuring the stable quality of the enzyme stock solution.

[0003] However, in the prior art, during the extraction of the morinda citrifolia enzyme stock solution, if the morinda citrifolia enzyme stock solution contains too much fiber or unbroken fruit pulp, it is easy to block the feed inlet of the centrifugal separator, thus it is necessary to reduce the processing speed, limiting the number of morinda citrifolia fruits processed per unit time, which not only affects the extraction efficiency, but also affects the normal operation of the equipment. Therefore, a morinda citrifolia enzyme stock solution extraction separator is proposed. SUMMARY

[0004] The utility model discloses a morinda citrifolia enzyme stock solution extraction separator to solve the problem of the prior art that the feed inlet of the centrifugal separator is easily blocked, thus the processing speed has to be reduced, limiting the number of morinda citrifolia fruits processed per unit time, which not only affects the production efficiency, but also affects the normal operation of the equipment.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a morinda citrifolia enzyme stock solution extraction separator, comprising a bottom plate and a centrifugal separator, the upper end opening of the centrifugal separator is fixedly installed with a feed pipe, the upper end of the feed pipe is fixedly installed with a feed hopper, and the upper end of the centrifugal separator is provided with a discharging mechanism.

[0006] The discharging mechanism comprises a special-shaped plate and a round push plate, the lower end of the special-shaped plate is fixedly installed with a support frame, the upper end of the support frame is fixedly installed with a servo motor, the inside of the protruding part of the upper end of the special-shaped plate is movably installed with a flap, the inside of the special-shaped plate is rotatably installed with a double-disc assembly, the inside of the double-disc assembly is rotatably installed with a movable piece, the upper part of the movable piece is movably connected with one end of the flap, the other end of the flap is movably connected with a connecting rod, the upper end of the special-shaped plate is installed with a guide cylinder, the inside of the guide cylinder is slidably inserted with a push column, the upper end of the push column is fixedly connected with the lower end of the round push plate, and the lower end of the connecting rod is movably connected with the protruding part of the upper end of the push column.

[0007] Preferably, the upper end of the centrifugal separator is fixedly provided with four groups of supporting rods.

[0008] Preferably, the output end of the servo motor is fixedly connected with a side protruding part of the double-disc assembly, and the lower end of the supporting frame is fixedly connected with the upper end of the centrifugal separator.

[0009] Preferably, the lower part of the circular push plate is located in the interior of the feeding hopper, and the diameter of the circular push plate is smaller than the inner diameter of the feeding pipe.

[0010] Preferably, the upper ends of the four groups of supporting rods are fixedly connected with the lower surface of the feeding hopper.

[0011] Preferably, the open end of the centrifugal separator is fixedly provided with a discharging pipe, and the lower end of the centrifugal separator is fixedly connected with the upper end of the bottom plate.

[0012] Compared with the prior art, the centrifugal separator has the advantages and positive effects that:

[0013] In the centrifugal separator, the connecting rod drives the downward pushing column to move in the interior of the guide cylinder, and the downward pushing column drives the circular push plate to move up and down, so that the circular push plate moves up and down in the interior of the feeding pipe, and the pulp in the morinda officinalis root ferment raw liquid in the feeding pipe moves downward, thereby preventing the fibers or unbroken pulp in the morinda officinalis root ferment raw liquid from being blocked in the interior of the feeding pipe, preventing the processing speed of the morinda officinalis root ferment raw liquid from being reduced, and not only not affecting the extraction efficiency, but also not affecting the normal operation of the equipment. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 A three-dimensional structure schematic view of the morinda officinalis root ferment raw liquid extraction separator is provided in the centrifugal separator.

[0015] Figure 2 A structure schematic view of the feeding hopper and the downward feeding mechanism in the morinda officinalis root ferment raw liquid extraction separator is provided in the centrifugal separator.

[0016] Figure 3 A top view of the downward feeding mechanism in the morinda officinalis root ferment raw liquid extraction separator is provided in the centrifugal separator.

[0017] Figure 4 A front structure schematic view of the morinda officinalis root ferment raw liquid extraction separator is provided in the centrifugal separator.

[0018] Legend: 1, bottom plate; 11, centrifugal separator; 12, feed pipe; 13, feed hopper; 14, support rod; 15, discharge pipe; 2, discharging mechanism; 21, special-shaped plate; 22, support frame; 23, round push plate; 24, servo motor; 25, flap; 26, double-disc assembly; 27, movable piece; 28, connecting rod; 29, guide cylinder; 210, push-down column. DETAILED DESCRIPTION

[0019] In order to enable the above-mentioned purposes, features and advantages of the present application to be more clearly understood, the present application will be further described below with reference to the drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0020] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in a variety of ways beyond the specific details set forth herein, and the present application is not limited to the specific embodiments described below.

[0021] Embodiment one: as shown in the present application provides a kind of noni enzyme stock solution extraction separator, including bottom plate 1 and centrifugal separator 11, the upper end opening of centrifugal separator 11 is fixedly installed with feed pipe 12, the upper end of feed pipe 12 is fixedly installed with feed hopper 13, the upper end of centrifugal separator 11 is provided with discharging mechanism 2; Figure 1 Figure 4 Discharging mechanism 2 includes special-shaped plate 21 and round push plate 23, the lower end of special-shaped plate 21 is fixedly installed with support frame 22, the upper end of support frame 22 is fixedly installed with servo motor 24, the inside of protruding part of special-shaped plate 21 upper end is movably installed with flap 25, special-shaped plate 21 is rotatably installed with double-disc assembly 26 in the inside, double-disc assembly 26 is rotatably installed with movable piece 27 in the inside, the upper part of movable piece 27 is movably connected with one end of flap 25, the other end of flap 25 is movably connected with connecting rod 28, the upper end of special-shaped plate 21 is installed with guide cylinder 29, the inside of guide cylinder 29 is slidably inserted with push-down column 210, the upper end of push-down column 210 is fixed with the lower end of round push plate 23, the lower end of connecting rod 28 is movably connected with the protruding part of the upper end of push-down column 210, the output end of servo motor 24 is fixed with the protruding part of one side of double-disc assembly 26, the lower end of support frame 22 is fixed with the upper end of centrifugal separator 11, the lower part of round push plate 23 is located in the inside of feed hopper 13, the diameter of round push plate 23 is less than the inner diameter of feed pipe 12, the opening end of centrifugal separator 11 is fixedly installed with discharge pipe 15, the lower end of centrifugal separator 11 is fixed with the upper end of bottom plate 1.

[0022] Discharging mechanism 2 includes special-shaped plate 21 and round push plate 23, the lower end of special-shaped plate 21 is fixedly installed with support frame 22, the upper end of support frame 22 is fixedly installed with servo motor 24, the inside of protruding part of special-shaped plate 21 upper end is movably installed with flap 25, special-shaped plate 21 is rotatably installed with double-disc assembly 26 in the inside, double-disc assembly 26 is rotatably installed with movable piece 27 in the inside, the upper part of movable piece 27 is movably connected with one end of flap 25, the other end of flap 25 is movably connected with connecting rod 28, the upper end of special-shaped plate 21 is installed with guide cylinder 29, the inside of guide cylinder 29 is slidably inserted with push-down column 210, the upper end of push-down column 210 is fixed with the lower end of round push plate 23, the lower end of connecting rod 28 is movably connected with the protruding part of the upper end of push-down column 210, the output end of servo motor 24 is fixed with the protruding part of one side of double-disc assembly 26, the lower end of support frame 22 is fixed with the upper end of centrifugal separator 11, the lower part of round push plate 23 is located in the inside of feed hopper 13, the diameter of round push plate 23 is less than the inner diameter of feed pipe 12, the opening end of centrifugal separator 11 is fixedly installed with discharge pipe 15, the lower end of centrifugal separator 11 is fixed with the upper end of bottom plate 1.

[0023] ​The specific settings and effects of the embodiment are described below. The servo motor 24 is started, the output end of the servo motor 24 drives the one side protruding part of the double disc assembly 26 to rotate, the double disc assembly 26 rotates in the inside of the special-shaped plate 21, the movable part 27 is driven by the double disc assembly 26 to rotate, the movable part 27 drives the flap 25 to move in the inside of the protruding part of the special-shaped plate 21, one end of the flap 25 moves up and down, the other end of the flap 25 drives the connecting rod 28 to move up and down, the connecting rod 28 drives the lower pushing column 210 to move in the inside of the guide cylinder 29, the lower pushing column 210 drives the round pushing plate 23 to move up and down, so that the round pushing plate 23 moves up and down in the inside of the feeding pipe 12, and the pulp in the morinda officinalis essence liquid in the feeding pipe 12 is pushed to move down, so that the fiber or unbroken pulp in the morinda officinalis essence liquid is prevented from being blocked in the feeding pipe 12, the processing speed of the morinda officinalis essence liquid is prevented from being reduced, the extraction efficiency is not affected, and the normal operation of the equipment is not affected.

[0024] The guide cylinder 29 is arranged to guide the lower pushing column 210, facilitate the stable movement of the lower pushing column 210 and the round pushing plate 23, and the support frame 22 is arranged to support the special-shaped plate 21.

[0025] The centrifugal separator 11 is arranged to utilize strong centrifugal force to make the solid pulp quickly settle or be thrown to the edge of the separator in a short time, so as to be effectively separated from the morinda officinalis essence liquid, greatly improve the separation efficiency, and shorten the production cycle.

[0026] Embodiment two: as shown in Figure 1 , Figure 2 and Figure 4 , the upper end of the feeding pipe 12 is fixedly installed with a feeding hopper 13, the upper end of the centrifugal separator 11 is fixedly installed with four groups of support rods 14, and the upper ends of the four groups of support rods 14 are fixed to the lower surface of the feeding hopper 13.

[0027] The effect of the whole embodiment is that the feeding hopper 13 is arranged to facilitate the continuous addition of the morinda officinalis essence liquid into the inside of the feeding pipe 12, and the four groups of support rods 14 are arranged to support the feeding hopper 13 and increase the stability of the feeding hopper 13.

[0028] The method for using and the working principle of the device are as follows: firstly, the morinda officinalis essence stock solution is added into the inside of the feeding hopper 13, the morinda officinalis essence stock solution enters the inside of the centrifugal separator 11 through the feeding pipe 12, then the servo motor 24 is started, the output end of the servo motor 24 drives the one side protruding part of the double disc assembly 26 to rotate, the double disc assembly 26 rotates in the inside of the special-shaped plate 21, at the same time, the double disc assembly 26 drives the movable part 27 to rotate, the movable part 27 is movable in the middle of the double disc assembly 26, the movable part 27 drives the flap 25 to move up and down in the inside of the protruding part of the special-shaped plate 21, one end of the flap 25 moves up and down, at the same time, the other end of the flap 25 drives the connecting rod 28 to move up and down, the connecting rod 28 drives the lower pushing column 210 to move in the inside of the guide cylinder 29, at the same time, the lower pushing column 210 drives the round pushing plate 23 to move up and down, so that the round pushing plate 23 moves up and down in the inside of the feeding pipe 12, in turn, the pulp in the morinda officinalis essence stock solution in the inside of the feeding pipe 12 can be pushed to move down and enter the inside of the centrifugal separator 11, then the centrifugal separator 11 is operated, the centrifugal separator 11 can utilize the strong centrifugal force, so that the solid pulp is rapidly settled or thrown to the edge of the separator in a short time, thereby being effectively separated from the morinda officinalis essence stock solution, the separation efficiency is greatly improved, and the production cycle is shortened.

[0029] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms, any skilled person in the art can change or modify the above disclosed technical content into equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made according to the technical essence of the present application to the above embodiments still belongs to the protection scope of the present application technical scheme.

Claims

1. A Morinda officinalis ferment stock solution extractor comprising a base plate (1) and a centrifugal separator (11), characterized in that: The upper end opening of the centrifugal separator (11) is fixedly installed with a feeding pipe (12), the upper end of the feeding pipe (12) is fixedly installed with a feeding hopper (13), and the upper end of the centrifugal separator (11) is provided with a discharging mechanism (2). The discharging mechanism (2) comprises a special-shaped plate (21) and a circular push plate (23), the lower end of the special-shaped plate (21) is fixedly installed with a support frame (22), the upper end of the support frame (22) is fixedly installed with a servo motor (24), the inside of the upper end protruding part of the special-shaped plate (21) is movably installed with a flap (25), the special-shaped plate (21) is rotatably installed with a double-disc assembly (26), the double-disc assembly (26) is rotatably installed with a movable piece (27), one end of the flap (25) is movably connected with the upper part of the movable piece (27), the other end of the flap (25) is movably connected with a connecting rod (28), the upper end of the special-shaped plate (21) is installed with a guide cylinder (29), the inside of the guide cylinder (29) is slidably inserted with a downward pushing column (210), the upper end of the circular push plate (23) is fixed with the lower end of the downward pushing column (210), and the lower end of the connecting rod (28) is movably connected with the protruding part of the upper end of the downward pushing column (210).

2. A Morinda officinalis extract separator according to claim 1, characterized in that: The upper end of the centrifugal separator (11) is fixedly installed with four groups of support rods (14).

3. A Morinda officinalis extract separator according to claim 1, characterized in that: The output end of the servo motor (24) is fixed with one side protruding part of the double-disc assembly (26), and the lower end of the support frame (22) is fixed with the upper end of the centrifugal separator (11).

4. A Morinda officinalis extract separator according to claim 3, characterized in that: The lower part of the circular push plate (23) is located in the inside of the feeding hopper (13), and the diameter of the circular push plate (23) is smaller than the inner diameter of the feeding pipe (12).

5. A Morinda officinalis extract separator according to claim 2, characterized in that: The upper ends of the four groups of support rods (14) are fixed with the lower surface of the feeding hopper (13).

6. A Morinda officinalis extract separator according to claim 1, characterized in that: The open end of the centrifugal separator (11) is fixedly installed with a discharging pipe (15), and the lower end of the centrifugal separator (11) is fixed with the upper end of the bottom plate (1). The open end of the centrifugal separator (11) is fixedly installed with a discharging pipe (15), and the lower end of the centrifugal separator (11) is fixed with the upper end of the bottom plate (1).