Noni enzyme stock solution classification screening device
By using a multi-stage screening device and a servo motor-driven screening mechanism, the problem of low purity of Noni enzyme stock solution in traditional devices has been solved, achieving efficient separation and reuse of components.
Patent Information
- Application Number
- CN202423147322.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Traditional screening devices are unable to effectively separate impurities of different sizes and properties in Noni enzyme concentrate, resulting in low product purity.
A multi-stage screening device is adopted, including a first screening component and a second screening component. The reciprocating swing of the screening component is realized by a disc driven by a servo motor and a linkage mechanism, which performs the first and second filtration screenings on the Noni enzyme stock solution respectively. Combined with the valve control of the receiving component, the separation and transfer of components are realized.
This improved the final purity of the Noni enzyme and enabled the separation and reuse of impurities, reducing losses.
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Figure CN223570177U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to noni enzyme stock solution processing technical field especially relates to a noni enzyme stock solution grading screening device. BACKGROUND
[0002] Noni enzyme is a kind of enzyme product extracted from noni fruit by fermentation. Noni fruit is rich in various nutrients, including vitamins (such as vitamin C, vitamin B family, etc.), minerals (such as potassium, magnesium, etc.), amino acids and various bioactive components (such as selenone, polysaccharide, etc.). After these components are fermented into noni enzyme, their biological activity and nutritional value are still high, and they have many potential benefits for human health, such as enhancing immunity, improving digestive system function, antioxidant, etc. With the increasing demand for health and natural products, the market size of noni enzyme is gradually expanding. Therefore, ensuring the quality and purity of noni enzyme stock solution has become a key link in the production process.
[0003] However, the traditional screening device usually only uses a single aperture screen or a simple filtering method. For noni enzyme stock solution, which is a complex liquid, a single screening method cannot effectively separate impurities of different sizes and properties. For example, there may be large noni fruit pulp fragments that have not been completely decomposed, fine fibers and microbial metabolic precipitates in noni enzyme stock solution, resulting in low purity of the final product. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the problems in the prior art and provides a noni enzyme stock solution grading screening device.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a noni enzyme stock solution grading screening device, comprising a bottom plate, an L-shaped frame and a bottom block, the upper side of the L-shaped frame is overlapped with a pouring mechanism, the upper side of the pouring mechanism is fixedly connected with a grading screen mechanism, the grading screen mechanism comprises a first screen assembly, a second screen assembly, a receiving assembly, a servo motor, a disc, a short shaft, a connecting rod and a second connecting buckle, the first screen assembly is fixedly connected above the second screen assembly, the second screen assembly is rotatably connected above the receiving assembly, the aperture of the first screen assembly is larger than that of the second screen assembly, the connecting rod is movably connected with the second screen assembly through the second connecting buckle, the connecting rod is movably connected with the disc through the short shaft, and the short shaft is fixedly connected at the edge position of the disc.
[0006] Preferably, the second connecting buckle is fixedly connected to the outer side of the second screen assembly, and the disc is fixedly installed on the output shaft of the servo motor.
[0007] Preferably, the receiving assembly comprises an embedded block, a ring plate, a circular plate, a conical tube and a valve, the circular plate is fixedly connected to the bottom of the ring plate, and the embedded block is fixedly connected to the inner side wall of the ring plate.
[0008] Preferably, the conical tube is fixedly connected to the outside of the opening of the ring plate, and the valve is fixedly communicated with the conical tube.
[0009] Preferably, the lower end of the second screen assembly is movably connected with the embedded block.
[0010] Preferably, the pouring mechanism comprises a servo motor, a first connecting buckle and a bearing plate, the servo motor and the ring plate are fixedly connected to the upper side of the bearing plate, the first connecting buckle is fixedly connected to the edge of the bearing plate, and the output end of the servo motor is movably connected with the first connecting buckle.
[0011] Preferably, the other end of the servo motor is movably connected with the upper end of the L-shaped frame, the L-shaped frame is fixedly connected to the edge of the bottom plate, the bearing plate is overlapped at the edge of the L-shaped frame, the bearing plate is rotatably connected with the bottom block, and the bottom block is fixedly connected to the upper side edge of the bottom plate.
[0012] Compared with the prior art, the utility model has the advantages and positive effects that:
[0013] 1、In the utility model, through the circumferential motion of the short shaft, under the connecting action of the connecting rod, the first screen assembly and the second screen assembly swing back and forth at a small angle, the morinda officinalis essence solution is poured from the first screen assembly, the first screen assembly filters and selects the morinda officinalis essence solution for the first time, the larger morinda officinalis fruit pulp fragments and fibers that are not completely decomposed are retained, the second screen assembly filters and selects the morinda officinalis essence solution for the second time, the fine fibers and small particles are screened out, and the relatively pure morinda officinalis essence solution is temporarily stored in the receiving assembly, the components in the solution are separated and separately treated subsequently through multi-stage filtering and screening, the final purity of the morinda officinalis essence is improved, and the screened other components can be reused.
[0014] 2、In the utility model, the bearing plate rotates around the connecting point of the bottom block under stress, the bearing plate is turned and inclined, the valve corresponding to the receiving assembly is opened, the relatively pure morinda officinalis essence solution is transferred out through the conical tube and the valve, and is subjected to subsequent processing, then the valves in the second screen assembly and the first screen assembly are opened in turn, the internal materials are cleaned out in turn, different components are subjected to different treatment and reuse, and consumption is reduced. DRAWINGS
[0015] Figure 1 A three-dimensional structure schematic view of the morinda officinalis essence solution grading and screening device is provided for the utility model.
[0016] Figure 2 A front view of a noni enzyme stock solution grading and screening device is provided for the utility model;
[0017] Figure 3 A perspective structural schematic diagram of a grading screen mechanism in the noni enzyme stock solution grading and screening device is provided for the utility model;
[0018] Figure 4 A perspective structural schematic diagram of a local part of the grading screen mechanism in the noni enzyme stock solution grading and screening device is provided for the utility model.
[0019] Legend: 1, bottom plate; 2, L-shaped frame; 3, bottom block; 4, pouring mechanism; 41, electric cylinder; 42, first connecting buckle; 43, bearing plate; 5, grading screen mechanism; 51, first screen assembly; 52, second screen assembly; 53, receiving assembly; 531, embedded block; 532, ring plate; 533, round plate; 534, conical tube; 535, valve; 54, servo motor; 55, disc; 56, short shaft; 57, connecting rod; 58, second connecting buckle. DETAILED DESCRIPTION
[0020] In order to more clearly understand the above-mentioned purposes, features and advantages of the utility model, the utility model will be further described below in combination with the drawings and examples. It should be noted that the embodiments of the present application and the features in the examples can be combined with each other without conflict.
[0021] 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 also be implemented in other ways different from those described herein, therefore, the present application is not limited to the specific embodiments disclosed in the following description.
[0022] Example one: as Figure 1 - Figure 4The utility model provides a kind of moringa oleifera enzyme stock graded screening device, including bottom plate 1, L-shaped frame 2 and bottom block 3, upside of L-shaped frame 2 is overlapped with pouring mechanism 4, upside of pouring mechanism 4 is fixedly connected with graded screen mechanism 5, graded screen mechanism 5 includes first sieve assembly 51, second sieve assembly 52, receiving assembly 53, servo motor 54, disc 55, short shaft 56, connecting rod 57 and second connecting buckle 58, first sieve assembly 51 is fixedly connected in the just above of second sieve assembly 52, second sieve assembly 52 is rotatably connected in the above of receiving assembly 53, the aperture of first sieve assembly 51 is greater than the aperture of second sieve assembly 52, connecting rod 57 is movably connected with second sieve assembly 52 by second connecting buckle 58, connecting rod 57 is movably connected with disc 55 by short shaft 56, short shaft 56 is fixedly connected at the edge position of disc 55, second connecting buckle 58 is fixedly connected at the outside of second sieve assembly 52, disc 55 is fixedly installed in the output shaft of servo motor 54, receiving assembly 53 includes inlay block 531, ring plate 532, round plate 533, conical tube 534 and valve 535, round plate 533 is fixedly connected at the bottom of ring plate 532, inlay block 531 is fixedly connected at the inner side wall of ring plate 532, conical tube 534 is fixedly connected at the opening outside of ring plate 532, valve 535 is fixedly communicated with conical tube 534, the lower end of second sieve assembly 52 is movably connected with inlay block 531.
[0023] The specific settings and functions of this embodiment are described below: By starting the servo motor 54, the output shaft of the servo motor 54 drives the disc 55 to rotate, thereby causing the short shaft 56 connected to it to perform circular motion. When the short shaft 56 moves away from the receiving component 53, it applies a pulling force to the connecting rod 57. Under the connection of the second connecting buckle 58, it pulls the second sieve component 52. The bottom of the second sieve component 52 moves inside the receiving component 53, so the first sieve component 51 and the second sieve component 52 tilt to one side at a certain angle. When the short shaft 56 moves closer to the receiving component 53, it applies a pushing force to the connecting rod 57, causing the first sieve component 51 and the second sieve component 52 to tilt to the other side at a certain angle. Under continuous operation, the first sieve component 51 and the second sieve component 52 swing back and forth at a small angle, putting the Noni enzyme stock solution into the first sieve component 51. The two-stage sieve assembly 52 and the receiving assembly 53 have the same structure, differing only in size. Both the first sieve assembly 51 and the second sieve assembly 52 have through holes in their circular plates 533. The aperture of the second sieve assembly 52 is smaller than that of the first sieve assembly 51. The receiving assembly 53 does not have through holes in its circular plates 533. The circular plates 533 in the first sieve assembly 51 perform the first filtration of the noni enzyme concentrate, retaining larger, incompletely decomposed noni fruit pulp fragments and fibers. The circular plates 533 in the second sieve assembly 52 perform the second filtration of the noni enzyme concentrate, removing fine fibers and small particle sediments. Finally, the relatively pure noni enzyme liquid is temporarily stored in the receiving assembly 53. Through multi-stage filtration, the components in the concentrate are separated and subsequently processed individually, improving the final purity of the noni enzyme and allowing for the reuse of other filtered components.
[0024] Example 2: Figure 1 - Figure 4 As shown, the material pouring mechanism 4 includes an electric cylinder 41, a first connecting buckle 42, and a load-bearing plate 43. The servo motor 54 and the ring plate 532 are both fixedly connected to the upper side of the load-bearing plate 43. The first connecting buckle 42 is fixedly connected to the edge of the load-bearing plate 43. The output end of the electric cylinder 41 is movably connected to the first connecting buckle 42. The other end of the electric cylinder 41 is movably connected to the upper end of the L-shaped frame 2. The L-shaped frame 2 is fixedly connected to the edge of the base plate 1. The load-bearing plate 43 overlaps the edge of the L-shaped frame 2. The load-bearing plate 43 is rotatably connected to the base block 3. The base block 3 is fixedly connected to the upper edge of the base plate 1.
[0025] The effect achieved by the whole embodiment is that the movable rod of the electric cylinder 41 is controlled to retract periodically, thereby pulling the first connecting buckle 42, and then exerting an upward force on the edge of the load-bearing plate 43, at this time, the load-bearing plate 43 rotates around the connecting point with the bottom block 3, so that the load-bearing plate 43 is turned and tilted, the valve 535 corresponding to the receiving assembly 53 is opened, and the relatively pure morinda officinalis extract liquid is transferred out through the conical pipe 534 and the valve 535 for subsequent processing, then the valves 535 in the second screen assembly 52 and the first screen assembly 51 are opened in turn, and the internal materials are cleaned out in turn, different components are processed and reused differently, and consumption is reduced.
[0026] The method for using the device and the working principle are as follows: the servo motor 54 is started, the output shaft of the servo motor 54 drives the disc 55 to rotate, thereby making the short shaft 56 connected with the disc 55 make a circular motion, when the short shaft 56 moves away from the receiving assembly 53, a pulling force is exerted on the connecting rod 57, the second screen assembly 52 is pulled under the connection of the second connecting buckle 58, the bottom of the second screen assembly 52 moves in the receiving assembly 53, so that the first screen assembly 51 and the second screen assembly 52 are tilted to a certain angle on one side, when the short shaft 56 moves towards the receiving assembly 53, a pushing force is exerted on the connecting rod 57, so that the first screen assembly 51 and the second screen assembly 52 are tilted to a certain angle on the other side, under continuous operation, the first screen assembly 51 and the second screen assembly 52 make a small-angle back-and-forth swing, the morinda officinalis extract raw liquid is poured from the first screen assembly 51, the circular plate 533 with a through hole in the first screen assembly 51 performs the first filtering and screening on the morinda officinalis extract raw liquid, the larger morinda officinalis fruit pulp fragments and fibers that are not completely decomposed are retained therein, the circular plate 533 with a through hole in the second screen assembly 52 performs the second filtering and screening on the morinda officinalis extract raw liquid, the fine fibers and small particles are screened out, and finally the relatively pure morinda officinalis extract liquid is temporarily stored in the receiving assembly 53, the movable rod of the electric cylinder 41 is controlled to retract periodically, thereby pulling the first connecting buckle 42, and then exerting an upward force on the edge of the load-bearing plate 43, at this time, the load-bearing plate 43 rotates around the connecting point with the bottom block 3, so that the load-bearing plate 43 is turned and tilted, the valve 535 corresponding to the receiving assembly 53 is opened, and the relatively pure morinda officinalis extract liquid is transferred out through the conical pipe 534 and the valve 535 for subsequent processing, then the valves 535 in the second screen assembly 52 and the first screen assembly 51 are opened in turn, and the internal materials are cleaned out in turn.
[0027] The above merely describes preferred embodiments of the present application, and is not intended to limit the present application in other forms, and any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields with equivalent changes, but any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present application without departing from the technical scheme of the present application still falls within the protection scope of the present application.
Claims
1. A Morinda officinalis ferment stock solution grading and screening device, comprising a base plate (1), an L-shaped frame (2) and a bottom block (3), characterized in that: The upper side of the L-shaped frame (2) is overlapped with a pouring mechanism (4), the upper side of the pouring mechanism (4) is fixedly connected with a grading screen mechanism (5), the grading screen mechanism (5) comprises a first screen assembly (51), a second screen assembly (52), a receiving assembly (53), a servo motor (54), a disc (55), a short shaft (56), a connecting rod (57) and a second connecting buckle (58), the first screen assembly (51) is fixedly connected above the second screen assembly (52), the second screen assembly (52) is rotatably connected above the receiving assembly (53), the aperture of the first screen assembly (51) is larger than that of the second screen assembly (52), the connecting rod (57) is movably connected with the second screen assembly (52) through the second connecting buckle (58), the connecting rod (57) is movably connected with the disc (55) through the short shaft (56), and the short shaft (56) is fixedly connected at the edge of the disc (55).
2. A Morinda officinalis ferment raw liquid grading screening device according to claim 1, characterized in that: The second connecting buckle (58) is fixedly connected to the outer side of the second screen assembly (52), and the disc (55) is fixedly installed on the output shaft of the servo motor (54).
3. A Morinda officinalis ferment stock solution grading and screening device according to claim 2, characterized by: The receiving assembly (53) comprises an embedded block (531), a ring plate (532), a circular plate (533), a conical pipe (534) and a valve (535), the circular plate (533) is fixedly connected to the bottom of the ring plate (532), and the embedded block (531) is fixedly connected to the inner side wall of the ring plate (532).
4. The Morinda officinalis ferment stock solution grading and screening device according to claim 3, characterized in that: The conical pipe (534) is fixedly connected to the outside of the opening of the ring plate (532), and the valve (535) is fixedly communicated with the conical pipe (534).
5. A Morinda officinalis ferment stock solution grading and screening device according to claim 4, characterized by: The lower end of the second screen assembly (52) is movably connected with the embedded block (531).
6. A Morinda officinalis ferment stock solution grading and screening device according to claim 5, characterized by: The pouring mechanism (4) comprises an electric cylinder (41), a first connecting buckle (42) and a bearing plate (43), the servo motor (54) and the ring plate (532) are fixedly connected to the upper side of the bearing plate (43), the first connecting buckle (42) is fixedly connected to the edge of the bearing plate (43), and the output end of the electric cylinder (41) is movably connected with the first connecting buckle (42).
7. A Morinda officinalis ferment stock solution grading and screening device according to claim 6, characterized by: The other end of the electric cylinder (41) is movably connected with the upper end of the L-shaped frame (2), the L-shaped frame (2) is fixedly connected to the edge of the bottom plate (1), the bearing plate (43) is overlapped at the edge of the L-shaped frame (2), the bearing plate (43) is rotatably connected with the bottom block (3), and the bottom block (3) is fixedly connected to the upper side edge of the bottom plate (1).