Production device of supramolecular VC eutectic

By combining insulation components, a crushing mechanism, and a heating and stirring mechanism, the cumbersome raw material preparation problem in the production of supramolecular VC eutectics is solved, achieving an efficient and low-cost production process that supports large-scale applications.

CN224089353UActive Publication Date: 2026-04-07SHANGHAI YOUREN BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing supramolecular vitamin C eutectic production equipment involves complex independent preparation steps and mixing processes during the raw material preparation stage, leading to extended production cycles, resource waste, and increased costs.

Method used

A production device comprising an insulation component, a crushing mechanism, and a heating and stirring mechanism was designed. By combining the insulation barrel, the crushing disc, and the heating and stirring head, the raw materials are efficiently crushed and uniformly mixed, simplifying the production process.

Benefits of technology

It significantly improved production efficiency, reduced costs, and provided support for the large-scale production of supramolecular VC eutectics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a production device of supramolecular VC eutectic, which relates to the field of supramolecular VC eutectic, and comprises a heat preservation component, the heat preservation component comprises a heat preservation barrel, a plurality of guide holes are annularly arranged at the upper part of the center in the heat preservation barrel, and a crushing mechanism for crushing VC particles is arranged at the lower end of the heat preservation barrel. And a heating and stirring mechanism for fully stirring and heating the crushed VC particles and the eutectic mixture is arranged at the upper end of the heat preservation barrel, so that the problems of low production efficiency and cost increase caused by dispersion treatment of raw materials in traditional production are effectively solved. According to the production device, through close cooperation of the heat preservation assembly, the crushing mechanism and the heating and stirring mechanism, integrated operation from raw material preparation to mixing and heating is achieved, the production efficiency is remarkably improved, the production cost is reduced, and powerful support is provided for large-scale production and wide application of the supramolecular VC eutectic.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the supermolecular VC co-melting field, more specifically, especially relates to a kind of supermolecular VC co-melting production device. BACKGROUND

[0002] The supermolecular VC co-melting production device is an equipment integrating supermolecular technology and co-melting solvent preparation process. The device precisely controls the supermolecular self-assembly process, modifies active ingredients such as vitamin C (VC) using supermolecular technology, and combines with specific co-melting solvents to produce supermolecular VC co-melting with excellent solubility, stability and biological activity. The device typically includes raw material pretreatment, supermolecular assembly, co-melting solvent mixing, reaction control and product collection modules, and can efficiently and accurately complete the production process of supermolecular VC co-melting.

[0003] Under the existing technical framework, the raw material preparation stage before the production of supermolecular VC co-melting shows obvious shortcomings. The problem is that the raw materials need to go through independent preparation steps and subsequent mixing and stirring processes, which not only complicates the entire production process, but also significantly prolongs the production cycle. In addition, the separate preparation of each raw material requires a lot of effort and resources, leading to unnecessary resource waste and cost increases. Therefore, in view of the above, the existing structure and deficiencies are improved to provide a supermolecular VC co-melting production device to achieve a more practical value. UTILITY MODEL CONTENT

[0004] To solve the above technical problems, the utility model provides a supermolecular VC co-melting production device to solve the problem that the raw material preparation stage before the production of supermolecular VC co-melting shows obvious shortcomings. The problem is that the raw materials need to go through independent preparation steps and subsequent mixing and stirring processes, which not only complicates the entire production process, but also significantly prolongs the production cycle. In addition, the separate preparation of each raw material requires a lot of effort and resources, leading to unnecessary resource waste and cost increases.

[0005] The purpose and effect of the supermolecular VC co-melting production device are achieved by the following specific technical means:

[0006] A supermolecular VC co-melting production device includes a heat preservation assembly, the heat preservation assembly includes a heat preservation barrel, a plurality of guide holes are arranged annularly in the upper center of the inside of the heat preservation barrel, a crushing mechanism for crushing VC particles is provided at the lower end of the heat preservation barrel, and a heating and stirring mechanism for fully stirring and heating the crushed VC particles and co-melting is provided at the upper end of the heat preservation barrel.

[0007] Further, the crushing mechanism includes a support plate, the support plate is fixedly connected to the lower end of the heat preservation barrel, the lower end of the support plate is fixedly connected with a support frame, the lower end of the support frame is fixedly connected with a first motor, and the inside of the support frame is rotatably sleeved with a driving sleeve.

[0008] Further, the lower end center of the driving sleeve is fixedly connected to the output end of the first motor, a plurality of driving permanent magnets are fixedly embedded in the inner wall of the driving sleeve in a ring shape, a first sealing bearing is fixedly sleeved at the inside center of the support plate, an isolation sleeve is fixedly connected to the lower end center of the support plate, and the driving sleeve is rotatably sleeved on the outside of the isolation sleeve.

[0009] Further, a transmission shaft is rotatably sleeved in the inside of the isolation sleeve, a plurality of transmission permanent magnets are fixedly embedded on the outside of the transmission shaft in a ring shape, a support column is fixedly connected to the upper end center of the transmission shaft, the support column is rotatably sleeved on the inner ring of the first sealing bearing, a connecting rod is fixedly connected to the upper end center of the support column, and a crushing cutter head is fixedly connected to the upper end of the connecting rod.

[0010] Further, the heating and stirring mechanism includes a heat preservation cover, the heat preservation cover is arranged on the upper end of the heat preservation barrel, a plurality of positioning rods are fixedly connected to the lower end center of the heat preservation cover in a ring shape, the plurality of positioning rods are slidably sleeved in the plurality of guide holes, the heat preservation cover is detachably connected with the heat preservation barrel, three second sealing bearings are fixedly sleeved at the inside center of the heat preservation cover, a transmission column is fixedly sleeved on the inner ring of each of the three second sealing bearings, a connecting rod is fixedly connected to the lower end center of each of the three transmission columns, a stirring head is fixedly connected to the lower end of each of the three connecting rods, and a heating pipe is fixedly connected to the lower end center of the heat preservation cover on both sides.

[0011] Further, a positioning sleeve is fixedly connected to the upper end of the heat preservation cover, a positioning hole is formed in the inside center of the positioning sleeve, three synchronous gears are arranged in the positioning hole, the three synchronous gears are fixedly connected to the upper ends of the three transmission columns respectively, the two synchronous gears on both sides are in gear meshing transmission with the synchronous gear at the center, a protection cover is fixedly connected to the upper end of the positioning sleeve, handles are fixedly connected to the upper end center of the protection cover on both sides, a second motor is fixedly connected to the upper end center of the protection cover, and the output end of the second motor is fixedly connected with the upper end center of the synchronous gear at the center through the protection cover.

[0012] Compared with the prior art, the utility model has the advantages of:

[0013] The application can fully heat and mix the crushed VC particles and eutectics through its stirring capacity and heating function. This process not only accelerates the eutectic reaction, but also ensures uniform mixing between materials, overcoming the problems of low production efficiency and increased cost caused by dispersed processing of raw materials in traditional production. In summary, the production device realizes integrated operation from raw material preparation to mixing and heating through the close cooperation of the heat preservation assembly, crushing mechanism and heating and stirring mechanism, significantly improves production efficiency, reduces production cost, and provides strong support for large-scale production and wide application of supramolecular VC eutectics. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic diagram of a supramolecular VC eutectic production device.

[0015] Figure 2 It is a three-dimensional structure schematic diagram of a supramolecular VC eutectic production device.

[0016] Figure 3 It is a three-dimensional structure schematic diagram of a supramolecular VC eutectic production device.

[0017] Figure 4 It is a three-dimensional structure schematic diagram of a supramolecular VC eutectic production device.

[0018] Figure 5 It is a three-dimensional structure schematic diagram of a supramolecular VC eutectic production device.

[0019] Figure 6 It is a three-dimensional structure schematic diagram of a supramolecular VC eutectic production device.

[0020] Figure 7 It is a three-dimensional structure schematic diagram of a supramolecular VC eutectic production device.

[0021] In the figure, the corresponding relationship between the component name and the drawing number is as follows:

[0022] Pulverizing mechanism; 101, first motor; 102, support frame; 103, drive sleeve; 104, drive permanent magnet; 105, support plate; 106, first sealing bearing; 107, isolation sleeve; 108, transmission shaft; 109, transmission permanent magnet; 1010, support column; 1011, connecting rod; 1012, pulverizing cutter head; 2, heat preservation assembly; 201, heat preservation barrel; 202, guide hole; 3, heating and stirring mechanism; 301, heat preservation cover; 302, positioning rod; 303, second sealing bearing; 304, transmission column; 305, connecting rod; 306, stirring head; 307, heating pipe; 308, positioning sleeve; 309, positioning hole; 3010, synchronous gear; 3011, protective cover; 3012, handle; 3013, second motor. DETAILED DESCRIPTION

[0023] The embodiments of the present application will be further described below in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.

[0024] In the description of the present application, unless otherwise specified and limited, the meaning of "a plurality of" is two or more; the orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as limiting the indicated device or element to have a specific orientation, to be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0025] In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0026] Embodiment:

[0027] As shown in the accompanying Figure 1 to the accompanying Figure 7 :

[0028] The utility model provides a kind of production device of supramolecular VC eutectic, including heat preservation component 2, heat preservation component 2 includes heat preservation bucket 201, multiple guide holes 202 are arranged in annular in heat preservation bucket 201 inside center upper place, the lower end of heat preservation bucket 201 is provided with the comminuting mechanism 1 for the comminution of VC granule, the upper end of heat preservation bucket 201 is provided with the heating and stirring mechanism 3 for the full stirring and heating of VC granule after comminution and eutectic, first, high-purity VC granule is mixed with the eutectic required and placed in heat preservation bucket 201 inside, heat preservation bucket 201 as the core container of entire device, its design not only ensures the temperature stability of mixed material in processing process, but also through multiple guide holes 202 arranged in annular in inside center upper place, then, start comminuting mechanism 1, this step directly aims at the complicated process of raw material separate preparation and additional comminution in traditional production and has been optimized, comminuting mechanism 1 is located in the lower end of heat preservation bucket 201, can directly high-efficiency comminution of VC granule placed in bucket, need not beforehand separate processing, to greatly save time and resources, avoid unnecessary waste of energy, subsequently, start heating and stirring mechanism 3, the mechanism is located in the upper end of heat preservation bucket 201, by its stirring capacity and heating function, the VC granule and eutectic that have been comminuted are fully heated and stirred and mixed, this process not only accelerates the performance of eutectic reaction, but also ensures the uniform mixing between material, overcome the problem of low production efficiency and cost increase due to raw material dispersion processing in traditional production, above all, the production device is closely matched by heat preservation component 2, comminuting mechanism 1 and heating and stirring mechanism 3, realizes the integrated operation from raw material preparation to mixing and heating, significantly improves production efficiency, reduces production cost, provides powerful support for large-scale production and extensive application of supramolecular VC eutectic.

[0029] The pulverizing mechanism 1 comprises a support plate 105 fixedly connected to the lower end of the heat preservation barrel 201, a support frame 102 fixedly connected to the lower end of the support plate 105, a first motor 101 fixedly connected to the lower end of the support frame 102, a driving sleeve 103 rotatably sleeved in the support frame 102, a plurality of driving permanent magnets 104 fixedly embedded on the inner wall of the driving sleeve 103 in a ring shape, a first sealing bearing 106 fixedly sleeved at the center of the support plate 105, an isolation sleeve 107 fixedly connected to the center of the lower end of the support plate 105, the driving sleeve 103 rotatably sleeved outside the isolation sleeve 107, a transmission shaft 108 rotatably sleeved in the isolation sleeve 107, a plurality of transmission permanent magnets 109 fixedly embedded on the outer side of the transmission shaft 108 in a ring shape, a support column 1010 fixedly connected to the center of the upper end of the transmission shaft 108, the support column 1010 rotatably sleeved on the inner ring of the first sealing bearing 106, a connecting rod 1011 fixedly connected to the center of the upper end of the support column 1010, and a pulverizing cutter head 1012 fixedly connected to the upper end of the connecting rod 1011. When the first motor 101 is started, the output end drives the driving sleeve 103 to rotate. Since the inner wall of the driving sleeve 103 is fixedly embedded with a plurality of driving permanent magnets 104 in a ring shape, the driving permanent magnets 104 will generate magnetic force coupling with the transmission permanent magnets 109 arranged in a ring shape on the outer side of the transmission shaft 108, so as to drive the transmission shaft 108 to rotate synchronously in the isolation sleeve 107. The rotation of the transmission shaft 108 drives the support column 1010 and the connecting rod 1011 at the upper end of the transmission shaft 108 to rotate together. Finally, the pulverizing cutter head 1012 at the upper end of the connecting rod 1011 rotates at high speed to pulverize the VC particles in the heat preservation barrel 201.

[0030] The heating and stirring mechanism 3 comprises a heat preservation cover 301 arranged at the upper end of the heat preservation barrel 201, a plurality of positioning rods 302 arranged and fixed in a ring shape at the lower end of the heat preservation cover 301 and close to the edges of the center, the plurality of positioning rods 302 being slidably sleeved in the plurality of guide holes 202, and the heat preservation cover 301 being detachably connected with the heat preservation barrel 201, three second sealing bearings 303 being arranged and fixed in the center of the inside of the heat preservation cover 301, a transmission column 304 being fixedly sleeved on the inner ring of each of the three second sealing bearings 303, a connecting rod 305 being fixedly connected with the lower end of each of the three transmission columns 304, a stirring head 306 being fixedly connected with the lower end of each of the three connecting rods 305, a heating pipe 307 being fixedly connected with the lower end of the heat preservation cover 301 and close to the sides of the center, a positioning sleeve 308 being fixedly connected with the upper end of the heat preservation cover 301, a positioning hole 309 being formed in the center of the inside of the positioning sleeve 308, three synchronous gears 3010 being arranged in the inside of the positioning hole 309, the three synchronous gears 3010 being fixedly connected with the upper end of each of the three transmission columns 304, the two synchronous gears 3010 close to the sides being in gear meshing transmission with the synchronous gear 3010 close to the center, a protective cover 3011 being fixedly connected with the upper end of the positioning sleeve 308, a handle 3012 being fixedly connected with the upper end of the protective cover 3011 and close to the sides of the center, a second motor 3013 being fixedly connected with the upper end of the protective cover 3011 and close to the center, the output end of the second motor 3013 being fixedly connected with the upper end of the center of the synchronous gear 3010 close to the center through the protective cover 3011, the heat preservation cover 301 being slidably sleeved in the guide hole 202 at the upper end of the heat preservation barrel 201 through the plurality of positioning rods 302, so that accurate positioning is realized, the detachable connection between the heat preservation cover 301 and the heat preservation barrel 201 facilitates cleaning and maintenance, when the second motor 3013 is started, the output end of the second motor 3013 drives the synchronous gear 3010 close to the center to rotate, since the two synchronous gears 3010 close to the sides are in gear meshing transmission with the synchronous gear 3010 close to the center, the three synchronous gears 3010 rotate synchronously, since the three synchronous gears 3010 are fixedly connected with the upper end of each of the three transmission columns 304, the transmission columns 304 also rotate synchronously, the rotation of the transmission columns 304 drives the connecting rods 305 and the stirring heads 306 at the lower end of the transmission columns 304 to rotate together, so that the materials in the heat preservation barrel 201 are fully stirred, at the same time, the heating pipes 307 fixedly connected with the lower end of the heat preservation cover 301 and close to the sides of the center heat the materials, so that the smooth progress of the eutectic reaction is ensured, the crushing mechanism 1 realizes efficient crushing of VC particles through magnetic coupling, and the heating and stirring mechanism 3 realizes full stirring and heating of the materials through synchronous gear 3010 transmission and heating pipe 307 heating, the two mechanisms cooperate with each other, and the production preparation process of the supramolecular VC eutectic substance is completed.

[0031] Working principle:

[0032] When the first motor 101 starts, the output end drives the driving sleeve 103 to rotate, since a plurality of driving permanent magnets 104 are fixedly arranged in the inner wall of the driving sleeve 103 in a ring shape, the permanent magnets will generate magnetic force coupling with the transmission permanent magnets 109 arranged in a ring shape on the outer side of the transmission shaft 108, so as to drive the transmission shaft 108 to rotate synchronously inside the isolation sleeve 107, the rotation of the transmission shaft 108 drives the support column 1010 and the connecting rod 1011 on the upper end of the transmission shaft 108 to rotate, finally, the crushing cutter head 1012 on the upper end of the connecting rod 1011 rotates at high speed to crush the VC particles in the heat preservation barrel 201, the heat preservation cover 301 is sleeved on the guide hole 202 on the upper end of the heat preservation barrel 201 through a plurality of positioning rods 302, accurate positioning is realized, and the detachable connection between the heat preservation cover 301 and the heat preservation barrel 201 facilitates cleaning and maintenance, when the second motor 3013 starts, the output end drives the synchronous gear 3010 at the center to rotate, since the two synchronous gears 3010 on both sides are in gear meshing transmission with the synchronous gear 3010 at the center, the three synchronous gears 3010 will rotate synchronously, the synchronous gears 3010 are fixedly connected to the upper ends of the three transmission columns 304 respectively, so that the transmission columns 304 also rotate synchronously, the rotation of the transmission columns 304 drives the connecting rods 305 and the stirring head 306 on the lower end of the transmission columns 304 to rotate, so as to fully stir the material in the heat preservation barrel 201, meanwhile, the heating pipes 307 fixedly connected to the lower end of the heat preservation cover 301 on both sides at the center heat the material, so as to ensure the smooth progress of the eutectic reaction, the crushing mechanism 1 realizes high-efficiency crushing of the VC particles through magnetic force coupling, and the heating and stirring mechanism 3 realizes full stirring and heating of the material through the synchronous gear 3010 transmission and the heating of the heating pipes 307, and the two mechanisms cooperate with each other to complete the production preparation process of the supramolecular VC eutectic substance.

[0033] Embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

Claims

1. A production apparatus for supramolecular vitamin C eutectic, comprising a heat-insulating component (2), characterized in that: The heat preservation component (2) includes a heat preservation barrel (201). Multiple guide holes (202) are arranged in a ring at the upper center of the heat preservation barrel (201). A crushing mechanism (1) for crushing VC particles is provided at the lower end of the heat preservation barrel (201). A heating and stirring mechanism (3) for fully stirring and heating the crushed VC particles and the eutectic is provided at the upper end of the heat preservation barrel (201).

2. The apparatus for producing a supramolecular VC eutectic as described in claim 1, characterized in that: The crushing mechanism (1) includes a support plate (105), which is fixedly connected to the lower end of the heat preservation barrel (201). A support frame (102) is fixedly connected to the lower end of the support plate (105), and a first motor (101) is fixedly connected to the lower end of the support frame (102). A drive sleeve (103) is rotatably sleeved inside the support frame (102).

3. The apparatus for producing supramolecular VC eutectic as described in claim 2, characterized in that: The lower center of the drive sleeve (103) is fixedly connected to the output end of the first motor (101). Multiple driving permanent magnets (104) are fixedly embedded in a ring on the inner wall of the drive sleeve (103). A first sealed bearing (106) is fixedly sleeved at the center of the inside of the support plate (105). An isolation sleeve (107) is fixedly connected at the lower center of the support plate (105). The drive sleeve (103) is rotatably sleeved on the outside of the isolation sleeve (107).

4. The apparatus for producing a supramolecular VC eutectic as described in claim 3, characterized in that: The isolation sleeve (107) is rotatably fitted with a drive shaft (108). Multiple permanent magnets (109) are fixedly embedded in a ring on the outside of the drive shaft (108). A support column (1010) is fixedly connected to the center of the upper end of the drive shaft (108). The support column (1010) is rotatably fitted on the inner ring of the first sealed bearing (106). A connecting rod (1011) is fixedly connected to the center of the upper end of the support column (1010). A crushing disc (1012) is fixedly connected to the upper end of the connecting rod (1011).

5. The apparatus for producing a supramolecular VC eutectic as described in claim 1, characterized in that: The heating and stirring mechanism (3) includes a heat preservation cover (301), which is set on the upper end of the heat preservation barrel (201). Multiple positioning rods (302) are fixedly connected in a ring at the lower center of the heat preservation cover (301) near the edge. The multiple positioning rods (302) are slidably sleeved inside multiple guide holes (202). The heat preservation cover (301) and the heat preservation barrel (201) are detachably connected. Three second sealing bearings (303) are fixedly sleeved at the inner center of the heat preservation cover (301). Transmission columns (304) are fixedly sleeved on the inner ring of each of the three second sealing bearings (303). Connecting rods (305) are fixedly connected at the lower center of each of the three transmission columns (304). Stirring heads (306) are fixedly connected at the lower ends of each of the three connecting rods (305). Heating tubes (307) are fixedly connected at both sides of the lower center of the heat preservation cover (301).

6. The apparatus for producing a supramolecular VC eutectic as described in claim 5, characterized in that: The upper end of the heat insulation cover (301) is fixedly connected to a positioning sleeve (308). A positioning hole (309) is opened through the center of the positioning sleeve (308). Three synchronous gears (3010) are arranged inside the positioning hole (309). The three synchronous gears (3010) are respectively fixedly connected to the upper ends of three transmission columns (304). The two synchronous gears (3010) on both sides are meshed with the synchronous gear (3010) on the center. The upper end of the positioning sleeve (308) is fixedly connected to a protective cover (3011). The upper center of the protective cover (3011) is fixedly connected to both sides of the center. The upper center of the protective cover (3011) is fixedly connected to a second motor (3013). The output end of the second motor (3013) passes through the protective cover (3011) and is fixedly connected to the upper center of the synchronous gear (3010) on the center.