Purification device for fat filling
By using a design with a bladed shaft and auxiliary stirring assembly in the purification device for fat filling, the problem of insufficient stirring of raw materials on the inner wall of the mixing drum is solved, achieving uniform mixing and rapid separation of raw materials and improving processing efficiency.
Patent Information
- Application Number
- CN202422134863.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-09-02
AI Technical Summary
In existing purification devices for fat filling, the raw materials on the inner wall of the mixing drum are difficult to be fully stirred, resulting in low processing efficiency. Furthermore, the raw materials adhering to the inner wall are difficult to fall off, affecting the overall processing efficiency.
The agitator uses a shaft with multiple blades for stirring, and the auxiliary stirring component and the feeding component work together to ensure that the raw materials are mixed evenly and that the raw materials on the inner wall are continuously falling off. The drive motor drives the shaft to rotate, which assists in stirring and tapping the inner wall, thereby improving the thoroughness of stirring.
It achieves uniform mixing and rapid separation of raw materials, improves mass transfer efficiency, ensures efficient purification process, avoids accumulation of materials adhering to the inner wall, and improves overall processing efficiency.
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Figure CN223569717U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the medical cosmetology instrument technical field, concretely relates to a purification device for fat filling. BACKGROUND
[0002] With the growth of age, the collagen of human body will gradually lose, and the supplement of collagen can make the skin tight and full, which is one of the common cosmetic methods in the medical cosmetic process; since collagen is the extracellular matrix component, it exists in the body in the form of insoluble macromolecular structure, and is combined with proteoglycan, glycoprotein and the like, so the preparation of collagen needs to be purified to remove or separate other unnecessary substances; because collagen has low immunogenicity, in the prior art, livestock and poultry source animal tissues are the main way for people to obtain natural collagen and collagen peptides, but low immunogenicity does not mean no antigenicity, in the medical cosmetic industry, when injecting and filling collagen into some important positions (such as the position around the eyes), it is still necessary to inject immunosuppressive drugs first for safety, obviously, this usually has certain risks, in the medical cosmetic industry, there is also a liposuction slimming cosmetic method, that is, the excess fat of the human body is removed and sucked out, which can effectively achieve the purpose of slimming, these autologous fat includes oil and collagen, in order to solve the problem that allogenic collagen still has antigenicity, a device capable of purifying autologous collagen is needed, which uses autologous fat as raw material after liposuction and liposuction surgery to purify autologous collagen protein for filling around the eyes
[0003] For example, Chinese patent publication No. CN215742328U discloses an autologous collagen protein purification device around the eyes, which comprises a stirring cylinder and a centrifugal device, the centrifugal device is located below the stirring cylinder, an injection port is formed in the stirring cylinder, a circulating water cooling layer is covered on the side wall of the stirring cylinder, a collection cylinder is arranged in the centrifugal device, and the inlet of the collection cylinder is connected with the outlet of the stirring cylinder; the autologous fat is crushed by the stirring cylinder as a primary mechanical separation, the injection port can inject a separation agent as a secondary drug separation, the centrifugal device extracts autologous collagen protein from the separated mixture, and the circulating water cooling layer prevents high temperature during stirring from damaging the structure of autologous collagen protein; the device can effectively separate and purify autologous collagen protein from autologous fat, which is used for filling around the eyes, avoids the immune rejection reaction of allogenic collagen protein, and improves the safety of the operation.
[0004] The above-mentioned application still has the following problems: the stirring rod in the stirring cylinder lacks stirring of the raw material on the inner side wall of the stirring cylinder, and the raw material adhered to the inner side wall of the stirring cylinder is difficult to fall off, which affects the overall processing efficiency.
[0005] Therefore, there is a need for a purification device for fat filling to solve the problems raised in the above background. UTILITY MODEL CONTENT
[0006] The utility model discloses a kind of purification devices for fat filling, to solve the problems presented in the above background art.
[0007] To achieve the above object, the utility model provides the following technical scheme: a kind of purification devices for fat filling, including processing bucket, the top end lateral wall center of the processing bucket is rotatably connected with shaft rod, a plurality of annularly distributed blade plates c are fixed on the side surface of the shaft rod, auxiliary stirring subassembly is provided in the inside of the processing bucket and is transmissionally connected with the shaft rod, driving motor is fixed on the top end lateral surface of the processing bucket, the output end of the driving motor is coaxially fixed with the top end of the shaft rod, discharging assembly is provided outside the processing bucket, the bottom of the processing bucket is fixed with the discharge pipe that is communicated with the inside of processing bucket, feeding opening is formed on the top end lateral wall of the processing bucket, second cover plate is hinged in the feeding opening.
[0008] It needs to be explained in the scheme that the auxiliary stirring subassembly includes connecting seat b fixed on the side surface of the shaft rod, connecting rod is fixed on the side surface of the connecting seat b, connecting seat a is fixed on the end of the connecting rod away from the connecting seat b, shaft rod a is rotatably connected in the connecting seat a, a plurality of annularly distributed blade plates a are fixed on the side surface of the shaft rod a, gear is fixed on the top end of the shaft rod a, and the inside lateral wall of the processing bucket is fixed with the gear ring meshing connection.
[0009] It is further worth mentioning that the discharging assembly includes spring sheet fixed on the side surface of the shaft rod, end plate is fixed on the end of the spring sheet away from the shaft rod, arc-shaped lug b is fixed on the outside lateral wall of the processing bucket, the arc-shaped lug b is provided with a plurality of and a plurality of arc-shaped lug b is annularly distributed, and arc-shaped lug a is fixed on the side surface of the end plate and is slidably matched with the arc-shaped lug b.
[0010] It needs to be further explained that the bottom end of the shaft rod is fixed with bottom connecting rod, and helical blade is fixed on the side surface of the bottom connecting rod and located in the inside of the discharge pipe.
[0011] As a preferred implementation, the bottom end of the discharge pipe is hinged with the first cover plate, and the outside lateral wall of the first cover plate is fixed with handle.
[0012] As a preferred implementation, the bottom end outside lateral wall of the processing bucket is fixed with leg rod, the leg rod is provided with two and two leg rods are symmetrically distributed, the bottom end of two leg rods is commonly fixed with bottom plate, and the top end side surface of the bottom plate is placed with collecting box.
[0013] Compared with prior art, the utility model provides a kind of purification devices for fat filling, at least includes following beneficial effects:
[0014] (1) the output end of the driving motor drives the shaft to rotate, thereby driving the plurality of leaf plates c to agitate the raw materials in the processing barrel, which can ensure uniform mixing of the raw materials during the purification process, so that various components can be fully contacted, thereby accelerating the purification reaction or physical separation process, which helps to improve the mass transfer efficiency, i.e. to speed up the transfer of substances between liquid, solid or gas phases, so that the reactants or impurities in the purification process can be removed faster.
[0015] (2) the auxiliary stirring assembly supplements the agitation of the raw materials near the inner side wall of the processing barrel, effectively improving the overall agitation effect; the shaft driven by rotation drives the discharging assembly to work, thereby continuously knocking the side wall of the processing barrel through the discharging assembly, so that the side wall of the processing barrel continuously vibrates, so that the raw materials adhering to the inner side wall of the processing barrel continuously fall to participate in agitation and mixing, further improving the overall agitation sufficiency. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a schematic diagram of the overall structure of the utility model;
[0017] Figure 2 is a schematic diagram of the bottom structure of the processing barrel of the utility model;
[0018] Figure 3 is a schematic diagram of the local structure of the auxiliary stirring assembly of the utility model;
[0019] Figure 4 is a schematic diagram of the local structure of the discharging assembly of the utility model.
[0020] In the figure: 1, auxiliary stirring assembly; 101, shaft a; 102, leaf plate a; 103, gear; 104, connecting seat a; 105, connecting rod; 106, connecting seat b; 2, discharging assembly; 201, elastic sheet plate; 202, arc-shaped protrusion a; 203, arc-shaped protrusion b; 204, end plate; 3, processing barrel; 4, discharge pipe; 5, supporting leg; 7, cover plate; 8, bottom plate; 9, feeding port; 10, cover plate; 11, driving motor; 12, shaft; 13, leaf plate c; 14, helical blade; 15, bottom connecting rod; 16, collection box. DETAILED DESCRIPTION
[0021] The utility model will be further described below in combination with examples.
[0022] Please refer to Figures 1-4The utility model provides a kind of purification device for fat filling, including processing bucket 3, the top end lateral wall center of processing bucket 3 is rotatably connected with shaft 12, multiple annular distribution's blade c13 are fixed on the side surface of shaft 12, the inside of processing bucket 3 is provided with the auxiliary stirring subassembly 1 of transmission connection with shaft 12, driving motor 11 is fixed on the top end lateral surface of processing bucket 3, the output end of driving motor 11 is coaxially fixed with the top end of shaft 12, the outside of processing bucket 3 is provided with discharging assembly 2, the bottom of processing bucket 3 is fixed with the discharge pipe 4 being communicated with the inside of processing bucket 3, feeding opening 9 is set on the top end lateral wall of processing bucket 3, second cover plate 10 is hinged in feeding opening 9;When using, by opening second cover plate 10, to feed raw materials into the inside of processing bucket 3 by feeding opening 9, start driving motor 11 to work, the output end of driving motor 11 drives shaft 12 to rotate, to drive multiple blade c13 by shaft 12 to agitate the raw materials in the inside of processing bucket 3, agitating can ensure that raw materials are uniformly mixed in the process of purification, so that various components can be fully contacted, to accelerate purification reaction or physical separation process, help to improve mass transfer efficiency, i. e. speed up the transfer rate of substance between liquid phase, solid phase or gas phase, so that reactants or impurities in the process of purification can be removed faster, work by the shaft 12 of rotation drives auxiliary stirring subassembly 1, the raw materials in the inside of processing bucket 3 close to inner side wall are agitated by auxiliary stirring subassembly 1, effectively improve the overall agitation effect;Work by the shaft 12 of rotation drives discharging assembly 2, so that the lateral wall of processing bucket 3 is continuously knocked by discharging assembly 2, so that the lateral wall of processing bucket 3 continuously vibrates, so that the raw materials adhered to the inner side wall of processing bucket 3 constantly drop to participate in agitation mixing, further improve the overall agitation sufficiency.
[0023] Further as Figure 3 It is worth noting that, auxiliary stirring subassembly 1 includes connecting seat b106 fixed on the side surface of shaft 12, connecting rod 105 is fixed on the side surface of connecting seat b106, connecting seat a104 is fixed on the end of connecting rod 105 away from connecting seat b106, shaft a101 is rotatably connected in connecting seat a104, multiple annular distribution's blade a102 are fixed on the side surface of shaft a101, gear 103 is fixed on the top end of shaft a101, the inner side wall of processing bucket 3 is fixed with the gear ring of meshing connection with gear 103;Specific work, by the synchronous rotation of rotating shaft 12 drives connecting seat b106, connecting rod 105 and connecting seat a104, to drive shaft a101 by gear 103 and gear ring cooperation synchronous rotation, so that blade a102 circumferential motion around shaft 12 simultaneously rotates, further agitate the raw materials in the inside of processing bucket 3 close to inner side wall by multiple blade a102, effectively improve the overall agitation effect.
[0024] Further asFigure 1 , Figure 3 and Figure 4 As shown, it is worth noting that the feeding assembly 2 includes a spring plate 201 fixed to the side of the shaft 12. An end plate 204 is fixed to the end of the spring plate 201 away from the shaft 12. An arc-shaped protrusion b203 is fixed to the outer wall of the processing barrel 3. Multiple arc-shaped protrusions b203 are arranged in a ring. An arc-shaped protrusion a202 that slides with the arc-shaped protrusion b203 is fixed to the side of the end plate 204. The rotating shaft 12 drives the spring plate 201 to rotate, thereby driving the arc-shaped protrusion a202 to continuously strike the side wall of the processing barrel 3 through the cooperation of the arc-shaped protrusion a202 and the arc-shaped protrusion b203. This causes the side wall of the processing barrel 3 to vibrate continuously, causing the raw material adhering to the inner side wall of the processing barrel 3 to continuously fall and participate in the mixing, further improving the overall mixing.
[0025] This solution has the following working process: By opening the second cover plate 10, the raw material is fed into the processing tank 3 through the feeding port 9. The drive motor 11 is started, and the output end of the drive motor 11 drives the shaft 12 to rotate. The shaft 12 drives multiple blades c13 to stir the raw material inside the processing tank 3. Stirring ensures uniform mixing of the raw material during the purification process, allowing various components to fully contact each other, thereby accelerating the purification reaction or physical separation process and helping to improve mass transfer efficiency, that is, to accelerate the transfer speed of substances between the liquid, solid, or gas phases, so that reactants or impurities in the purification process can be removed more quickly. The rotating shaft 12 drives the connecting seat. b106, connecting rod 105, and connecting seat a104 rotate synchronously, thereby driving shaft a101 to rotate synchronously through gear 103 and gear ring. This causes blade a102 to rotate around shaft 12 while rotating on its own axis. In turn, multiple blades a102 supplement and agitate the raw material inside the processing barrel 3 near the inner wall. The rotating shaft 12 drives the spring plate 201 to rotate, thereby causing the arc-shaped protrusion a202 and arc-shaped protrusion b203 to continuously strike the side wall of the processing barrel 3. This causes the side wall of the processing barrel 3 to vibrate continuously, causing the raw material adhering to the inner wall of the processing barrel 3 to fall off and participate in the agitation and mixing.
[0026] Further as Figure 3 As shown, it is worth noting that a bottom connecting rod 15 is fixed to the bottom end of the shaft 12, and a spiral blade 14 located inside the discharge pipe 4 is fixed to the side of the bottom connecting rod 15. In actual operation, the shaft 12 drives the bottom connecting rod 15 to rotate, and the bottom connecting rod 15 assists in the discharge to prevent the discharge from getting blocked.
[0027] Further as Figure 2As shown, it is worth noting that the bottom end of the discharge pipe 4 is hinged with a first cover plate 7, and a handle is fixed on the outer side wall of the first cover plate 7.
[0028] Further as shown Figure 1 As shown, it is worth noting that the bottom end of the discharge pipe 4 is hinged with a first cover plate 7, and a handle is fixed on the outer side wall of the first cover plate 7.
[0029] In summary: the output end of the driving motor 11 drives the shaft 12 to rotate, thereby driving the plurality of leaf plates c13 to agitate the raw materials in the processing barrel 3, which can ensure uniform mixing of the raw materials during the purification process, so that various components can be fully contacted, thereby accelerating the purification reaction or physical separation process, which helps to improve the mass transfer efficiency, that is, to speed up the transfer speed of substances between liquid, solid or gas phases, so that the reactants or impurities in the purification process can be removed faster, the auxiliary stirring assembly 1 is driven to work by the rotating shaft 12, and the raw materials near the inner side wall of the processing barrel 3 are supplemented and stirred by the auxiliary stirring assembly 1, which effectively improves the overall stirring effect; the unloading assembly 2 is driven to work by the rotating shaft 12, so that the side wall of the processing barrel 3 is continuously knocked by the unloading assembly 2, so that the side wall of the processing barrel 3 is continuously vibrated, so that the raw materials adhering to the inner side wall of the processing barrel 3 constantly fall to participate in the stirring and mixing, further improving the overall stirring sufficiency.
[0030] The driving motor 11 can be purchased in the market, and the driving motor 11 is provided with a power supply, which belongs to mature technology in the field and has been fully disclosed, so the description is not repeated.
Claims
1. A purification device for fat filling, comprising a processing vat (3), characterized in that, The top end side wall of the processing barrel (3) is rotationally connected with a shaft rod (12), a plurality of annularly distributed blade plates c (13) are fixed on the side surface of the shaft rod (12), the inside of the processing barrel (3) is provided with an auxiliary stirring assembly (1) in transmission connection with the shaft rod (12), a driving motor (11) is fixed on the top end side surface of the processing barrel (3), the output end of the driving motor (11) is coaxially fixed with the top end of the shaft rod (12), a discharging assembly (2) is arranged outside the processing barrel (3), a discharging pipe (4) in communication with the inside of the processing barrel (3) is fixed on the bottom of the processing barrel (3), a feeding opening (9) is formed in the top end side wall of the processing barrel (3), and a second cover plate (10) is hingedly connected in the feeding opening (9).
2. The purification device for fat filling according to claim 1, characterized by The auxiliary stirring assembly (1) comprises a connecting seat b (106) fixed on the side surface of the shaft rod (12), a connecting rod (105) is fixed on the side surface of the connecting seat b (106), a connecting seat a (104) is fixed on the end of the connecting rod (105) away from the connecting seat b (106), a shaft rod a (101) is rotationally connected in the connecting seat a (104), a plurality of annularly distributed blade plates a (102) are fixed on the side surface of the shaft rod a (101), a gear (103) is fixed on the top end of the shaft rod a (101), and a gear ring is fixed on the inner side wall of the processing barrel (3) and is in meshing connection with the gear (103).
3. The purification device for fat filling according to claim 1, characterized by The discharging assembly (2) comprises a spring sheet (201) fixed on the side surface of the shaft rod (12), an end plate (204) is fixed on the end of the spring sheet (201) away from the shaft rod (12), arc-shaped protrusions b (203) are fixed on the outer side wall of the processing barrel (3), a plurality of arc-shaped protrusions b (203) are arranged in an annular manner, and an arc-shaped protrusion a (202) is fixed on the side surface of the end plate (204) and is in sliding cooperation with the arc-shaped protrusion b (203).
4. The purification device for fat filling according to claim 3, characterized by A bottom connecting rod (15) is fixed on the bottom end of the shaft rod (12), and helical blades (14) are fixed on the side surface of the bottom connecting rod (15) and located in the inside of the discharging pipe (4).
5. The purification device for fat filling according to claim 4, characterized by A first cover plate (7) is hingedly connected to the bottom end of the discharging pipe (4), and a handle is fixed on the outer side wall of the first cover plate (7).
6. The purification device for fat filling according to claim 1, characterized by A supporting leg rod (5) is fixed on the bottom end outer side wall of the processing barrel (3), two supporting leg rods (5) are arranged in a symmetrical manner, a bottom plate (8) is fixed on the bottom ends of the two supporting leg rods (5), and a collecting box (16) is placed on the top end side surface of the bottom plate (8).
Citation Information
Patent Citations
Periocular autologous collagen purification device
CN215742328U