Pain-relieving plaster preparation process and filtering treatment system
The plaster is prepared by using a physical mixing process of menthol and skin care oil, and combined with a filtration treatment system, which solves the problem of poor penetration effect of existing plasters, achieves deep penetration and rapid drying, and is suitable for relieving minor pain.
Patent Information
- Application Number
- CN202511043005.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2045-07-28
AI Technical Summary
Existing pain relief plasters have poor penetration effect and dry slowly, making it difficult to effectively relieve minor pain such as arthritis, back pain, muscle strains and other problems.
Menthol is used as the main active ingredient, combined with skin care oils and other plant extracts, and the plaster is prepared through a physical mixing process. A filtration treatment system is used to improve permeability and drying speed, including the combined use of a 200-mesh filtration treatment system and ultrafiltration equipment.
The prepared plaster has the effects of deep penetration and quick drying, is suitable for relieving minor pains such as arthritis, back pain, muscle strain, etc., and improves the use effect and application range of the ointment.
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Figure CN120754025A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical equipment, in particular to a pain-relieving plaster preparation process and filtering treatment system. BACKGROUND
[0002] In human daily life exercise, if the body is not fully warmed up before exercise or the intensity of the exercise activity is large, the body may be bumped under the action of external force, thus acute soft tissue injury may occur, local bleeding and inactivated cells may appear, and inflammation may be caused.
[0003] In the prior art, the Huoxue Xiaozhong San is a commonly used medicine for treating the above-mentioned inflammatory reaction, which can play the effects of promoting blood circulation, removing blood stasis, reducing swelling and relieving pain. The components of the Huoxue Xiaozhong San include rhubarb, golden bark, lantana, cypress leaves and mint. The rhubarb and golden bark can clear away heat and cool blood, the lantana can promote blood circulation and remove blood stasis, reduce swelling and relieve pain, the cypress leaves can cool blood and stop bleeding, and the mint can relieve itching, relieve pain and enhance the penetration of the medicine.
[0004] The commonly used Huoxue Xiaozhong San contains vegetable oil or animal oil and is combined with various medicinal components to form a gelatinous substance. When used, the gelatinous substance is applied to the injured position to play the effect of the medicine. However, the conventional plaster has the problems of poor penetration effect and slow drying. SUMMARY
[0005] The present application aims to provide a pain-relieving plaster preparation process and filtering treatment system to solve the above-mentioned problems in the prior art.
[0006] In order to achieve the above-mentioned purpose, the present application provides the following technical scheme:
[0007] A pain-relieving plaster preparation process, the production raw materials and the mass ratio W / W% include: menthol 3.0-5.0; carbomer 0.5-1.0; camphor 0.3-0.7; triethanolamine 0.5-0.9; isopropyl alcohol 23.0-29.0; arnica flower extract 0.2-0.3; glycerol 4.0-5.0; isopropyl myristate 0.4-0.6; marigold flower extract 0.1-0.2; VE acetate 0.01-0.03; honeysuckle leaf extract 0.1-0.2; aloe vera leaf juice 0.005-0.015; burdock extract 0.1-0.3; tea extract 0.4-0.6; yerba mate extract 0.1-0.3; boswellia serrata extract 0.04-0.06; methyl methacrylate cross-linked polymer 0.05-0.15; pigment 0.001-0.003; the remaining mass ratio is all water;
[0008] The preparation process includes the following steps:
[0009] S1: add 95% water, carbomer, methyl methacrylate cross-linked polymer into the auxiliary pot, set the stirring speed to 960 rpm, stir for 20 min, then pump the mixture into the main pot, and then wash the auxiliary pot with 4% water and pump it into the main pot;
[0010] S2: add 1% water into the main pot to completely dissolve aloe vera, and then pump it into the main pot;
[0011] S3: set the stirring speed in the main pot to 52-60 rpm, stir for 1.5 h, and then pump the mixture into the next step if there is no caking phenomenon, otherwise continue to stir;
[0012] S4: add glycerol, burdock extract, arnica extract, calendula extract, melissa leaf extract, tea extract, and paraguay tea extract into the main pot, and stir for 20 min;
[0013] S5: add 95% isopropyl alcohol, menthol, camphor, isopropyl myristate, VE acetate, and olibanum extract into the auxiliary pot, set the stirring speed to 960 rpm, stir for 30 min, and then pump the mixture into the main pot when it is clear and transparent;
[0014] S6: pump the mixture in the auxiliary pot into the main pot, wash the auxiliary pot with 5% isopropyl alcohol, and then pump it into the main pot, adjust the stirring speed in the main pot to 22-30 rpm, and stir for 20 min;
[0015] S7: add pigments into the main pot, and stir for 10 min;
[0016] S8: add triethanolamine into the main pot, and stir for 20 min;
[0017] S9: filter the mixture in the main pot using a 200-mesh filter processing system;
[0018] S10: use an ultrafiltration device to process the filtered mixture to produce a plaster product.
[0019] Preferably, the pigments used in S7 include yellow 5 and blue 1, each accounting for 0.001% of the total mass of the raw materials.
[0020] A filter processing system for use in step S9 of the above-mentioned pain-relieving plaster preparation process, comprising a filter bin, wherein the lower end of the filter bin is provided with a discharge port, a separation cylinder is rotatably arranged in the filter bin, the bottom of the separation cylinder is provided with a hopper-shaped filter screen, a stirring rod is arranged in the separation cylinder, a driving assembly and a negative pressure assembly are arranged at the top of the filter bin, the driving assembly is used to drive the rotation of the separation cylinder and the operation of the negative pressure assembly, and the negative pressure assembly is used to generate a negative pressure airflow in the filter bin from the top surface towards the discharge port.
[0021] Preferably, the negative pressure assembly comprises a gas-permeable net arranged on the top surface of the filter bin, and a plurality of fan blades are rotatably arranged on the lower side of the gas-permeable net and evenly distributed around the circumference of the separation cylinder.
[0022] Preferably, the driving assembly comprises a gear ring fixedly sleeved on the separation cylinder, the rotating shaft of the fan blade penetrates through the gas-permeable net and is coaxially fixedly connected with a gear engaged with the gear ring, and a motor is fixedly installed on the upper end of the filter bin and coaxially fixedly connected with one of the gears.
[0023] Preferably, the lower end of the separation cylinder is coaxially and rotatably connected with a central seat through a first one-way transmission assembly, the lower end of the central seat is coaxially and rotatably connected with a support fixedly arranged in the filter bin through a second one-way transmission assembly, the stirring rod is rotatably connected to the central seat and provided with a plurality of serpentine pieces on one side, the serpentine pieces can abut against the surface of the filter screen with the rotation of the stirring rod, when the negative pressure assembly generates an outward airflow at the discharge port, the first one-way transmission assembly is locked in transmission, the second one-way transmission assembly is unlocked in transmission, so that the central seat rotates with the separation cylinder, and the stirring rod does not rotate, and when the negative pressure assembly generates an inward airflow at the discharge port, the first one-way transmission assembly is unlocked in transmission, the second one-way transmission assembly is locked in transmission, so that the central seat is fixed relative to the support, and the stirring rod rotates.
[0024] Preferably, the axial direction of the stirring rod is parallel to the generatrix of the funnel-shaped filter screen.
[0025] Preferably, the lower end of the separation cylinder is provided with a groove, the central seat is rotatably connected in the groove, a first bevel gear is coaxially and fixedly connected in the groove, and a second bevel gear engaged with the first bevel gear is coaxially connected to the rotating shaft of the stirring rod.
[0026] Preferably, the first one-way transmission assembly comprises a first one-way toothed disc coaxially connected in the groove, the central seat is sleeved outside the first one-way toothed disc at the lower end and provided with a first retraction groove, and a first pawl matched with the first one-way toothed disc is elastically movably arranged in the first retraction groove.
[0027] Preferably, the second one-way transmission assembly comprises a second one-way toothed disc coaxially and fixedly connected with the central seat and rotatably arranged in the support, the support is provided with a second retraction groove, and a second pawl matched with the second one-way toothed disc is elastically movably arranged in the second retraction groove.
[0028] In the above technical solution, the application has the following beneficial effects:
[0029] The preparation process of the pain relief plaster takes menthol as the main active ingredient for pain relief, and cooperates with skin care oil and other components to produce a plaster product with pain relief effect through physical mixing process. The quick-acting formula can penetrate deeply and dry quickly, and is widely applicable, and can temporarily relieve mild pain related to the following conditions: arthritis, backache, muscle strain, sprain, bruising, and muscle cramps.
[0030] It should be understood that the foregoing general description and the following detailed description are merely exemplary and explanatory, rather than restrictive, of the present disclosure.
[0031] This application file provides an overview of various implementations or examples of the technology described in this disclosure, and is not a comprehensive disclosure of the full scope or all features of the disclosed technology. BRIEF DESCRIPTION OF DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed in the embodiments. Obviously, the drawings described below are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art based on these drawings.
[0033] Figure 1 The overall structure schematic diagram of the filtering treatment system provided by the embodiment of the present application is shown in the figure.
[0034] Figure 2 The front view cross-sectional structure schematic diagram of the filtering treatment system provided by the embodiment of the present application is shown in the figure.
[0035] Figure 3 The structure schematic diagram of the filtering treatment system provided by the embodiment of the present application is shown in the figure. Figure 2 The enlarged structure schematic diagram of A in the figure is shown in the figure.
[0036] Figure 4 The structure schematic diagram of the stirring rod provided by the embodiment of the present application is shown in the figure.
[0037] Figure 5 The top view cross-sectional structure schematic diagram of the first one-way transmission assembly of the filtering treatment system provided by the embodiment of the present application is shown in the figure.
[0038] Figure 6 The structure schematic diagram of the filtering treatment system provided by the embodiment of the present application is shown in the figure. Figure 5 The enlarged structure schematic diagram of B in the figure is shown in the figure.
[0039] Figure 7 The top view cross-sectional structure schematic diagram of the second one-way transmission assembly of the filtering treatment system provided by the embodiment of the present application is shown in the figure.
[0040] Figure 8 The structure schematic diagram of the filtering treatment system provided by the embodiment of the present application is shown in the figure. Figure 7 The enlarged structure schematic diagram of C in the figure is shown in the figure.
[0041] Reference Signs List:
[0042] 1, filter bin; 2, discharge port; 3, separation cylinder; 4, filter screen; 5, stirring rod; 6, air permeable screen; 7, fan blade; 8, gear ring; 9, gear; 10, motor; 11, center seat; 12, support; 13, serpentine piece; 14, bracket; 15, first one-way tooth disc; 16, first retraction groove; 17, first clamping tooth; 18, second one-way tooth disc; 19, second retraction groove; 20, second clamping tooth; 21, first bevel gear; 22, second bevel gear. DETAILED DESCRIPTION
[0043] To make the objectives, technical solutions, and advantages of the embodiments of the present disclosure clearer, the technical solutions of the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings of the embodiments of the present disclosure. Obviously, the described embodiments are some but not all of the embodiments of the present disclosure. Based on the described embodiments of the present disclosure, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present disclosure.
[0044] The preparation process of the pain-relieving plaster provided by the embodiments of the present application has a production raw material and a mass ratio W / W% including: menthol 3.0-5.0; carbomer 0.5-1.0; camphor 0.3-0.7; triethanolamine 0.5-0.9; isopropyl alcohol 23.0-29.0; arnica flower extract 0.2-0.3; glycerol 4.0-5.0; isopropyl myristate 0.4-0.6; calendula flower extract 0.1-0.2; VE acetate 0.01-0.03; honeysuckle leaf extract 0.1-0.2; aloe vera leaf juice 0.005-0.015; burdock extract 0.1-0.3; tea leaf extract 0.4-0.6; yerba mate leaf extract 0.1-0.3; boswellia serrata extract 0.04-0.06; methyl methacrylate cross-linked polymer 0.05-0.15; pigment 0.001-0.003; and the rest is water.
[0045] The preparation process includes the following steps:
[0046] S1: 95% water, carbomer, and methyl methacrylate cross-linked polymer are added to the auxiliary pot, the stirring speed is set to 960 rpm, stirring is performed for 20 min, after the auxiliary pot is stirred to be free of lumps, the auxiliary pot is pumped into the main pot, and the auxiliary pot is washed with 4% water and then added to the main pot;
[0047] S2: the aloe vera is completely dissolved in 1% water and then added to the main pot;
[0048] S3: the stirring speed in the main pot is set to 52-60 rpm, stirring is performed for 1.5 h, if the material body is free of lumping, the next step is entered, otherwise, the stirring is continued.
[0049] S4: Add glycerin, burdock extract, arnica extract, manuka extract, melissa leaf extract, tea leaf extract, yerba mate leaf extract into the main pot and stir for 20 minutes;
[0050] S5: Add 95% isopropyl alcohol, menthol, camphor, isopropyl myristate, VE acetate, and olibanum extract into the auxiliary pot, set the stirring speed to 960 rpm, and stir for 30 minutes until the mixture is clear and transparent;
[0051] S6: Transfer the mixture in the auxiliary pot into the main pot, wash the auxiliary pot with 5% isopropyl alcohol and transfer the wash into the main pot, and adjust the stirring speed of the main pot to 22-30 rpm, and stir for 20 minutes;
[0052] S7: Add pigments into the main pot and stir for 10 minutes; the pigments used include yellow 5 and blue 1, each accounting for 0.001% of the total weight of the raw materials;
[0053] S8: Add triethanolamine into the main pot and stir for 20 minutes;
[0054] S9: Filter the mixture in the main pot using a 200-mesh filter processing system;
[0055] S10: Process the filtered mixture using an ultrafiltration device to produce a plaster product.
[0056] In another embodiment of the present application, the raw materials and their mass ratio W / W% for the plaster produced by the pain-relieving plaster preparation process are as follows: menthol 4.0; carbomer 0.75; camphor 0.5; triethanolamine 0.7; isopropyl alcohol 26.0; arnica extract 0.25; glycerin 5.0; isopropyl myristate 0.5; calendula extract 0.15; VE acetate 0.02; melissa leaf extract 0.15; aloe vera juice 0.01; burdock extract 0.2; tea leaf extract 0.5; yerba mate leaf extract 0.2; olibanum extract 0.05; methyl methacrylate cross-linked polymer 0.1; pigments yellow 5 and blue 1, each accounting for 0.001%; and the remaining mass ratio is water.
[0057] Compared with the prior art, the pain-relieving plaster preparation process according to the present application uses menthol as the main active ingredient for pain relief, and is combined with skin care oils and other components to produce a plaster product with pain-relieving effect through a physical mixing process. The fast-acting formula can penetrate deeply and dry quickly, and is suitable for use in temporarily relieving mild pain related to the following conditions: arthritis, backache, muscle strain, sprain, bruising, and muscle cramps.
[0058] Please refer to Figures 1-8The embodiment of the present application also provides a filtering treatment system, which is used for the step S9 of the preparation process of the pain-relieving plaster and comprises a filter bin 1, a discharge port 2 arranged at the lower end of the filter bin 1, a separation cylinder 3 rotatably arranged in the filter bin 1, a filter screen 4 in the shape of a hopper arranged at the bottom of the separation cylinder 3, a stirring rod 5 arranged in the separation cylinder 3, a driving assembly and a negative pressure assembly arranged at the top of the filter bin 1, the driving assembly being used for driving the rotation of the separation cylinder 3 and the operation of the negative pressure assembly, and the negative pressure assembly being used for generating a negative pressure airflow in the filter bin 1 from the top surface to the direction of the discharge port 2.
[0059] Specifically, the filter bin 1 is preferably a hollow rotating body, the upper end of which is provided with a circular hole for embedding the separation cylinder 3, and the lower end of which is provided with a funnel shape and is provided with the discharge port 2; the discharge port 2 is connected to an ultrafiltration device through a pipeline, the ultrafiltration device is integrated with a liquid pump system, and the filtrate collected by the discharge port 2 can be pumped out for further ultrafiltration processing; the ultrafiltration device preferably comprises a polyether sulfone (PES) membrane, which has the characteristics of high flux, acid and alkali resistance and easy cleaning, and is mainly used for clarification of the extract; a polyvinylidene fluoride (PVDF) membrane, which has the characteristics of resistance to organic solvents and strong anti-pollution, and is mainly used for pre-treatment of the plaster containing fat-soluble components; a ceramic membrane, which is mainly used for high-viscosity liquid drug concentration or high-temperature sterilization process; after ultrafiltration, the clarity of the liquid drug is significantly improved, the particulate matter in the plaster matrix is reduced, and the comfort of the plaster is enhanced; the separation cylinder 3 is coaxially arranged with the filter bin 1, the upper end of the separation cylinder 3 is open for feeding; the specification of the filter screen 4 is preferably 200 meshes; the stirring rod 5 is preferably a plurality of stirring rods, which are evenly distributed in the circumferential direction of the separation cylinder 3 and are arranged close to the filter screen 4; the driving assembly drives the rotation of the filter bin 1 in two directions; the negative pressure assembly is used for generating an airflow in the filter bin 1 from the top surface to the direction of the discharge port 2, and can also be used for generating an airflow in the filter bin 1 from the discharge port 2 to the top surface of the filter bin 1. In actual use, the product produced in the step S8 of the above preparation process is introduced into the separation cylinder 3, then the driving assembly starts to drive the rotation of the separation cylinder 3, and at the same time, the negative pressure assembly is operated, due to the hopper-shaped filter screen 4, on the basis of normal filtering of the medicinal decoction, the centrifugal force generated by the continuous rotation of the separation cylinder 3 can promote the medicinal decoction to pass through the filter screen 4 in the form of throwing, and the synchronous operation of the negative pressure assembly can generate a negative pressure airflow in the filter bin 1 from the top surface to the direction of the discharge port 2, thereby generating a pressure difference between the inside of the filter bin 1 and the separation cylinder 3, further accelerating the medicinal decoction to pass through the filter screen 4, and at the same time, the negative pressure airflow can blow the medicinal decoction thrown after passing through the filter screen 4 downward, thereby greatly reducing the area of the medicinal decoction adhering to the inner wall of the filter bin 1, ensuring the efficient production of the medicinal decoction and improving the filtering efficiency.
[0060] Compared with the prior art, the filtering treatment system for the preparation process of the pain-relieving plaster provided by the embodiment of the present application is provided with a hopper-shaped filter screen 4, on the basis of normal filtering of the decoction by the filter screen 4, the driving assembly drives the separation cylinder 3 to rotate continuously to generate centrifugal force, thereby promoting the decoction to pass through the filter screen 4 at a high speed, and through the synchronous operation of the negative pressure assembly, a negative pressure airflow is generated in the filter bin 1 from the top surface to the direction of the discharge port 2, under the pressure difference between the filter bin 1 and the inside of the separation cylinder 3, the decoction is further accelerated to pass through the filter screen 4, and at this time, the negative pressure airflow can blow the medicine liquid thrown out after passing through the filter screen 4 downward, thereby greatly reducing the area of the medicine liquid adhered to the inner wall of the filter bin 1, ensuring the efficient output of the medicine liquid and improving the filtering efficiency.
[0061] As a preferred technical scheme of the embodiment, the negative pressure assembly comprises a gas-permeable net 6 arranged on the top surface of the filter bin 1, a plurality of fan blades 7 are rotatably arranged on the lower side of the gas-permeable net 6, and the plurality of fan blades 7 are uniformly distributed around the circumference of the separation cylinder 3. Specifically, the gas-permeable net 6 is annularly arranged on the top surface of the filter bin 1 and arranged around the separation cylinder 3, and the gas-permeable net 6 is used for air permeation at the top of the filter bin 1; the number of the fan blades 7 is preferably 4-8, each fan blade 7 rotates synchronously and generates the same wind direction; when each fan blade 7 blows downward, a hopper-shaped downward airflow is generated between the filter bin 1 and the separation cylinder 3, the airflow enters from the gas-permeable net 6 and is discharged from the discharge port 2; and when each fan blade 7 blows upward, a hopper-shaped upward airflow is generated between the filter bin 1 and the separation cylinder 3, the airflow enters from the discharge port 2 and is discharged from the gas-permeable net 6.
[0062] As a preferred technical scheme of the embodiment, the driving assembly comprises a gear ring 8 fixedly sleeved on the separation cylinder 3, the rotating shafts of the fan blades 7 rotatably penetrate through the gas-permeable net 6 and are coaxially fixedly connected with gear wheels 9 engaged with the gear ring 8, a motor 10 is fixedly installed on the upper end of the filter bin 1, the output end of the motor 10 is coaxially fixedly connected with one of the gear wheels 9, and specifically, the gear ring 8 is arranged close to the upper surface of the filter bin 1; the gear wheels 9 are arranged at the same height as the gear ring 8; a support is fixedly arranged on the upper end of the filter bin 1, and the motor 10 is fixedly installed on the support with the output end downward and coaxially connected with one of the gear wheels 9. In actual use, the motor 10 directly drives the gear wheel 9 connected therewith to rotate, the gear wheel 9 drives the separation cylinder 3 to rotate through the gear ring 8 on one hand, and drives other gear wheels 9 to rotate through the gear ring 8 on the other hand, thereby driving each fan blade 7 to rotate. In addition, when the separation cylinder 3 changes direction, each fan blade 7 also changes direction, so that the airflow driven thereby changes direction.
[0063] After the filter screen 4 filters the decoction, part of the decoction solidification adheres to the filter screen 4, especially more and thicker at the part of the filter screen 4 at a low height, which easily affects the subsequent use and needs to be cleaned. The prior art can use a cleaning liquid capable of dissolving the decoction to flush the filter screen 4, but the dissolved medicine still has the problem of being difficult to completely remove, such as hanging on the screen.
[0064] In another embodiment proposed by the present invention, the lower end of the separation cylinder 3 is coaxially rotatably connected to the center seat 11 through a first one-way transmission component, and the lower end of the center seat 11 is coaxially rotatably connected to a support 12 fixedly arranged in the filter bin 1 through a second one-way transmission component. The stirring rod 5 is rotatably connected to the center seat 11 and a plurality of serpentine pieces 13 are provided on one side. The serpentine pieces 13 can be against the surface of the filter screen 4 as the stirring rod 5 rotates. When the negative pressure component causes the discharge port 2 to generate an outward airflow, the first one-way transmission component is locked and the second one-way transmission component is unlocked, thereby causing the center seat 11 to rotate with the separation cylinder 3, and the stirring rod 5 does not rotate on its own. When the negative pressure component causes the discharge port 2 to generate an inward airflow, the first one-way transmission component is unlocked and the second one-way transmission component is locked, thereby causing the center seat 11 to be fixed relative to the support 12, and the stirring rod 5 rotates on its own. Specifically, the center seat 11 is set in a conical shape with the tip facing upward, thereby ensuring that the decoction entering the separation cylinder 3 is guided to the area where the filter screen 4 is located. When the driving component drives the separation drum 3 to rotate in the direction accompanied by the negative pressure component to generate an outward airflow at the discharge port 2, the first one-way transmission component is locked and the second one-way transmission component is unlocked; when the driving component drives the separation drum 3 to rotate in the opposite direction to be accompanied by the negative pressure component to generate an inward airflow at the discharge port 2, the first one-way transmission component is unlocked and the second one-way transmission component is locked; the axial direction of the stirring rod 5 is arranged parallel to the busbar of the bucket-shaped filter screen 4; the stirring rod 5 is preferably semi-cylindrical, and the serpentine sheet 13 is arranged on one side of the cylindrical surface of the stirring rod 5; the rotation direction of the stirring rod 5 when rotating can drive the serpentine sheet 13 to generate a spiral upward trend, and when the serpentine sheet 13 passes through the side of the filter screen 4 that is against it, the attachment on the filter screen 4 can be pushed upward and peeled off.In the present technical solution, when the driving component drives the separation cylinder 3 to rotate in the direction of rotation accompanied by the negative pressure component to generate an outward airflow at the discharge port 2, the center seat 11 rotates together with the separation cylinder 3, and the stirring rod 5 rotates with the center seat 11. At this time, the stirring rod 5 does not rotate on its own, and the front side of the plane corresponds to the direction of rotation, thereby generating sufficient thrust for the decoction in the separation cylinder 3, promoting the rotation of the decoction to generate centrifugal force; when the driving component drives the separation cylinder 3 to rotate in the opposite direction to be accompanied by the negative pressure component to generate an inward airflow at the discharge port 2, the center seat 11 is fixed relative to the support 12, the separation cylinder 3 rotates relative to the center seat 11, and the stirring rod 5 rotates on its own. At this time, the separation cylinder 3 can be flushed, and During the flushing process, the rotation of the separation cylinder 3 relative to the stirring rod 5 and the self-rotation of the stirring rod 5 can drive the serpentine sheet 13 to scrape the surface of the filter screen 4 in the rotational direction, and the spiral action generated by the rotation of the serpentine sheet 13 pushes the surface of the filter screen 4 upward, thereby ensuring that the attachments on the surface of the filter screen 4 are fully separated, and avoiding the accumulation of the attachments after peeling at the lower part of the filter screen 4, which can then be easily flushed away; in addition, since an upward airflow is generated in the filter bin 1 from the discharge port 2 at this time, the cleaning liquid thrown into the filter bin 1 through the separation cylinder 3 can be attracted upward to expand the height range and area of the inner wall of the filter bin 1, thereby ensuring that some of the drugs attached to the filter bin 1 are fully cleaned.
[0065] As the preferred technical solution of this embodiment, a bracket 14 is provided at the lower end of the separation cylinder 3, and the center seat 11 is rotatably connected in the bracket 14. A first bevel gear 21 is coaxially fixedly connected in the bracket 14, and the rotating shaft of the stirring rod 5 is coaxially connected to a second bevel gear 22 that meshes with the first bevel gear 21. Specifically, the center seat 11 is tightly fitted with the bracket 14 and sealed; a cavity is provided at the lower end of the center seat 11, and the first bevel gear 21 is embedded in the cavity at the lower end of the center seat 11; the number of teeth of the first bevel gear 21 is an integer multiple of the number of teeth of the second bevel gear 22, and the driving assembly drives the separation cylinder 3 to rotate back and forth, rotates a full number of circles, and ensures that before and after the separation cylinder 3 switches to rotate forward, the stirring rod 5 can make one side of the plane face the front under the stirring rotation. In actual use, when the separation drum 3 drives the center seat 11 to rotate, the first bevel gear 21 is fixed relative to the center seat 11, and the stirring rod 5 is fixed relative to the center seat 11, then the first bevel gear 21 and the second bevel gear 22 do not move relative to each other, and the stirring rod 5 does not rotate on its own; when the separation drum 3 reverses and rotates, the center seat 11 is fixed relative to the support 12, then the separation drum 3 drives the first bevel gear 21 to rotate relative to the center seat 11, and the first bevel gear 21 engages with the second bevel gear 22 to transmit the rotation so that the stirring rod 5 rotates on its own.
[0066] As the preferred technical scheme of the embodiment, the first one-way transmission assembly comprises a first one-way tooth disc 15 coaxially connected in the bracket 14, the first retraction groove 16 is arranged outside the first one-way tooth disc 15, the first pawl 17 matched with the first one-way tooth disc 15 is elastically arranged in the first retraction groove 16, specifically, one side of each tooth of the first one-way tooth disc 15 is wedge-shaped matched with the first pawl 17, and the other side is limited with the first pawl 17; the first one-way tooth disc 15 is coaxially connected between the bottom surface of the bracket 14 and the first bevel gear 21. Preferably, the spring is arranged in the first retraction groove 16 to elastically push the first pawl 17. When the rotation direction of the separation cylinder 3 is changed with the negative pressure assembly to generate the outward airflow of the discharge port 2, the rotation direction of the first one-way tooth disc 15 is driven by the separation cylinder 3, each tooth of the first one-way tooth disc 15 is contacted with the first pawl 17 with the limiting side, thereby the position of the first one-way tooth disc 15 and the first pawl 17 is fixed, and the center seat 11 rotates with the separation cylinder 3; when the rotation direction of the separation cylinder 3 is switched by the driving assembly to generate the inward airflow of the discharge port 2 with the negative pressure assembly, the rotation direction of the first one-way tooth disc 15 is driven by the separation cylinder 3, each tooth of the first one-way tooth disc 15 is contacted with the first pawl 17 with the wedge-shaped matched side, each tooth of the first one-way tooth disc 15 can be sequentially extruded through the first pawl 17, the first pawl 17 is retracted into the first retraction groove 16 to ensure the smooth rotation of the first one-way tooth disc 15, and at this time, the separation cylinder 3 rotates relative to the center seat 11.
[0067] As the preferred technical scheme of the embodiment, the second one-way transmission assembly comprises a second one-way tooth disc 18 coaxially fixedly connected with the central seat 11 and rotatably arranged in the support 12, the support 12 is provided with a second retraction groove 19, and the second retraction groove 19 is elastically and movably provided with a second pawl 20 matched with the second one-way tooth disc 18. Specifically, the support 12 is provided with a rotating cavity for rotation of the second one-way tooth disc 18; each single tooth of the second one-way tooth disc 18 is wedge-shaped matched with the second pawl 20 on one side and is limited with the second pawl 20 on the other side, and the direction of the single tooth of the second one-way tooth disc 18 is arranged in the opposite direction of the single tooth of the first one-way tooth disc 15. Preferably, another spring is arranged in the second retraction groove 19 to elastically push the second pawl 20. When the rotating direction of the separation cylinder 3 is switched to the opposite direction to make the discharge port 2 generate the airflow outwardly with the negative pressure assembly, the separation cylinder 3 can drive the central seat 11 to rotate together through the first one-way transmission assembly, at the same time, the central seat 11 rotates in this direction, and drives each single tooth of the second one-way tooth disc 18 to be in contact with the second pawl 20 on the wedge-shaped matched side, so that each single tooth of the second one-way tooth disc 18 can be pressed through the second pawl 20 in turn, the second pawl 20 is retracted into the second retraction groove 19 to ensure smooth rotation of the second one-way tooth disc 18, at this time, the separation cylinder 3 drives the central seat 11 to rotate together, and the central seat 11 rotates relative to the support 12; when the rotating direction of the driving assembly driving the separation cylinder 3 is switched to the opposite direction to make the discharge port 2 generate the airflow inwardly with the negative pressure assembly, the separation cylinder 3 can be unlocked to the central seat 11 through the first one-way transmission assembly, at the same time, the central seat 11 rotates in this direction, and drives each single tooth of the second one-way tooth disc 18 to be in contact with the second pawl 20 on the limiting side, so that the position of the second one-way tooth disc 18 and the second pawl 20 can be fixed, that is, the central seat 11 is fixed relative to the support 12, at this time, the separation cylinder 3 rotates relative to the central seat 11.
[0068] The foregoing merely describes some exemplary embodiments of the present application by way of illustration, and it is needless to say that those skilled in the art can modify the described embodiments in various manners without departing from the spirit and scope of the present application. Therefore, the foregoing drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of the claims of the present application.
Claims
1. A preparation process for a pain-relieving plaster, characterized in that: The raw materials and weight ratio (W / W%) thereof include: menthol 3.0-5.0; carbomer 0.5-1.0; camphor 0.3-0.7; triethanolamine 0.5-0.9; isopropyl alcohol 23.0-29.0; arnica montana flower extract 0.2-0.3; glycerin 4.0-5.0; isopropyl myristate 0.4-0.6; calendula flower extract 0.1-0.2; VE acetate 0.01-0. 03; Melissa officinalis leaf extract 0.1-0.2; Aloe barbadensis leaf juice 0.005-0.015; Burdock root extract 0.1-0.3; Camellia sinensis leaf extract 0.4-0.6; Paraguayan tea leaf extract 0.1-0.3; Boswellia serrata extract 0.04-0.06; Methyl methacrylate crosspolymer 0.05-0.15; Pigment 0.001-0.003; The remaining mass ratio is all water; The preparation process includes the following steps: S1: Add 95% water, carbomer, and methyl methacrylate cross-polymer to the auxiliary pot, set the stirring speed to 960 rpm, and stir for 20 minutes. After stirring until there are no lumps, pump the mixture into the main pot, rinse the auxiliary pot with 4% water, and then add it to the main pot; S2: Dissolve the aloe vera completely with 1% water and add to the mixing bowl; S3: Set the stirring speed in the main pot to 52-60 rpm and stir for 1.5 hours. If there is no agglomeration in the material, proceed to the next step. Otherwise, continue stirring. S4: Add glycerin, burdock extract, arnica flower extract, calendula flower extract, lemon balm leaf extract, tea leaf extract, and Paraguayan tea leaf extract to a mixing bowl and stir for 20 minutes. S5: Add 95% isopropyl alcohol, menthol, camphor, isopropyl myristate, VE acetate, and Boswellia serrata extract to a secondary pot, set the stirring speed to 960 rpm, and stir for 30 minutes until the mixture becomes clear and transparent; S6: Pump the material from the auxiliary pot into the main pot, rinse the auxiliary pot with 5% isopropyl alcohol, and then pump it into the main pot. Adjust the stirring speed in the main pot to 22-30 rpm and stir for 20 minutes. S7: Add pigment to mixing bowl and stir for 10 minutes; S8: Add triethanolamine to the main pot and stir for 20 minutes; S9: Use a 200-mesh filter system to filter the material out of the main pot; S10: Use ultrafiltration equipment to process the output of the filtration system to produce plaster products.
2. The pain relief plaster preparation process according to claim 1, wherein: The pigments used in S7 include Yellow 5 and Blue 1, and the weight ratio W / W% of both of them in the raw materials is 0.
001.
3. A filtration processing system, used in step S9 of the pain relief plaster preparation process according to any one of claims 1 to 2, characterized in that: The invention comprises a filter bin (1), wherein a discharge port (2) is provided at the lower end of the filter bin (1), a separation cylinder (3) is rotatably provided in the filter bin (1), a bucket-shaped filter screen (4) is provided at the bottom of the separation cylinder (3), a stirring rod (5) is provided in the separation cylinder (3), and a driving component and a negative pressure component are provided at the top of the filter bin (1), wherein the driving component is used to drive the separation cylinder (3) to rotate and the negative pressure component to operate, and the negative pressure component is used to generate a negative pressure airflow in the filter bin (1) from the top surface toward the discharge port (2).
4. The filtration treatment system according to claim 3, characterized in that: The negative pressure assembly comprises a breathable net (6) arranged on the top surface of the filter bin (1), and a plurality of fan blades (7) are rotatably arranged on the lower side of the breathable net (6), and the plurality of fan blades (7) are evenly distributed around the circumference of the separation cylinder (3).
5. The filtration treatment system according to claim 4, characterized in that: The driving assembly comprises a gear ring (8) fixedly sleeved on the separation cylinder (3); the rotating shaft of the fan blade (7) rotates through the air-permeable net (6) and is coaxially fixedly connected to a gear (9) meshing with the gear ring (8); a motor (10) is fixedly mounted on the upper end of the filter bin (1); and the output end of the motor (10) is coaxially fixedly connected to one of the gears (9).
6. The filtration treatment system according to claim 3, characterized in that: The lower end of the separation cylinder (3) is coaxially rotatably connected to a center seat (11) through a first one-way transmission component, and the lower end of the center seat (11) is coaxially rotatably connected to a support (12) fixedly arranged in the filter bin (1) through a second one-way transmission component. The stirring rod (5) is rotatably connected to the center seat (11) and has a plurality of serpentine pieces (13) arranged on one side. The serpentine pieces (13) can abut against the surface of the filter screen (4) as the stirring rod (5) rotates. When the negative pressure component causes the discharge port (2) to generate an outward airflow, the first one-way transmission component is locked and the second one-way transmission component is unlocked, thereby causing the center seat (11) to rotate with the separation cylinder (3) and the stirring rod (5) to not rotate. When the negative pressure component causes the discharge port (2) to generate an inward airflow, the first one-way transmission component is unlocked and the second one-way transmission component is locked, thereby causing the center seat (11) to be fixed relative to the support (12) and the stirring rod (5) to rotate.
7. The filtration treatment system according to claim 6, characterized in that: The axial direction of the stirring rod (5) is arranged parallel to the generatrix of the bucket-shaped filter screen (4).
8. The filtration treatment system according to claim 6, characterized in that: A bracket (14) is provided at the lower end of the separation cylinder (3), the center seat (11) is rotatably connected in the bracket (14), a first bevel gear (21) is coaxially fixedly connected in the bracket (14), and the rotating shaft of the stirring rod (5) is coaxially connected to a second bevel gear (22) meshing with the first bevel gear (21).
9. The filtration treatment system according to claim 8, characterized in that: The first one-way transmission assembly includes a first one-way toothed disc (15) coaxially connected in the bracket (14); the lower end of the center seat (11) is sleeved on the outside of the first one-way toothed disc (15) and is provided with a first retraction groove (16); and a first latching tooth (17) matching the first one-way toothed disc (15) is elastically and movably provided in the first retraction groove (16).
10. The filtration treatment system according to claim 6, characterized in that: The second one-way transmission assembly includes a second one-way toothed disc (18) rotatably arranged in the support (12) and coaxially fixedly connected to the center seat (11), a second retraction groove (19) is provided in the support (12), and a second latching tooth (20) matching the second one-way toothed disc (18) is elastically and movably provided in the second retraction groove (19).
Citation Information
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