A mixing device and production method for producing anti-HPV gel
Through the mixing method combining the premixing component with the lifting and stirring component, the problems of stirring dead corners and foam removal in the production of anti-HPV gel are solved, the uniform mixing of gel raw materials and efficient removal of foam are achieved, and the mixing effect is improved.
Patent Information
- Application Number
- CN202510968631.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2045-07-15
AI Technical Summary
The existing mixing device has problems in the production of anti-HPV gel, such as dead corners in stirring, difficulty in removing agglomerates and difficulty in removing foam, which affects the mixing effect.
The mixing method combines a premixing component with a lifting and stirring component. The premixing stirring plate breaks up the condensed clumps, the lifting and lowering mixing plate achieves dead angle stirring, and the puncture component is used to remove foam.
The anti-HPV gel raw materials are fully mixed, the influence of agglomerates is avoided, the mixing uniformity is ensured, the foam is removed, and the mixing quality is improved.
Smart Images

Figure CN120459877B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of anti-HPV gel production, in particular to a mixing device and a production method thereof for producing anti-HPV gel. Background Art
[0002] Anti-HPV gel is a topical preparation made from raw materials such as chitosan and interferon. It mainly assists in clearing human papillomavirus (HPV) infection by inhibiting viral replication or regulating the local immune microenvironment. A mixing device is usually used in the production of anti-HPV gel to mix the raw materials.
[0003] Existing mixing devices use a variety of methods to achieve the mixing of anti-HPV gel, such as a gel mixer with publication number CN203227444U, which includes a shell, support legs and a loading platform. The shell is installed on the support legs, and the loading platform is provided on the upper part of the shell. There is a water inlet on the upper part of one side of the shell, a limit opening and a discharge opening below the limit opening on the lower part of the other side of the shell, and a slag discharge opening on the bottom side of the shell. A stirring shaft is installed in the center of the shell, and a stirring blade is installed at the lower part of the stirring shaft. The upper part of the stirring shaft is fixed to the support frame at the upper part of the shell by a fixing nut.
[0004] Existing mixing devices usually use multiple sets of intermittently arranged stirring rods to achieve stirring and mixing of the gel raw materials. Due to the certain distance between the stirring rods at the upper and lower positions, this mixing method cannot achieve full coverage during stirring and mixing. Stirring dead corners will occur during stirring, and thorough stirring and mixing cannot be achieved.
[0005] For example, the prior art referred to above uses multiple groups of stirring blades spaced apart in the vertical direction to achieve mixing and stirring of the gel. This method prevents the gel between adjacent blades from being fully stirred and mixed, resulting in dead corners. In addition, this stirring method cannot remove the agglomerates in the gel raw materials. At the same time, the gel will produce a lot of foam during stirring and mixing, and the existing device cannot remove the foam. The foam mixed in the gel will affect the overall mixing effect, which has certain limitations.
[0006] Therefore, it is urgent to design a mixing device and a production method for anti-HPV gel production to solve the above problems. Summary of the Invention
[0007] In view of the deficiencies of the prior art, the present invention provides a mixing device and a production method for producing an anti-HPV gel, which solves the problems raised in the above background technology.
[0008] To achieve the above objectives, the present invention is implemented through the following technical solutions: a mixing device for producing anti-HPV gel, comprising a support column arranged on a support base, with a top box arranged on the upper portion of the support column, and further comprising:
[0009] A mixing and processing barrel and a servo motor are arranged on the support column, and an output roller matching the mixing and processing barrel is installed between the top box and the servo motor through a transmission assembly;
[0010] A fixed disk is arranged in the mixing and processing barrel, and a pre-mixing component for pre-mixing and breaking up the anti-HPV gel raw materials is installed between the fixed disk and the output roller;
[0011] The mixing unit is arranged at the bottom of the fixed plate and cooperates with the output roller, and includes a stirring component, a lifting component and a puncture component;
[0012] The stirring component is equipped with multiple mixing plates for stirring and mixing the anti-HPV gel raw materials. The lifting component is used to adjust the height positions of the multiple mixing plates to achieve comprehensive mixing without dead angles. The puncture component and the lifting component are used together to puncture and remove the foam generated by stirring during the lifting process.
[0013] Preferably, an electric control panel is fixedly mounted on the support column, and the electric control panel is used to control the opening and closing and operating status of the servo motor, the premixing component, and the mixing unit;
[0014] The mixing and processing barrel is provided with a plurality of movable support frames for assisting movement.
[0015] Preferably, the transmission assembly includes a support plate fixedly mounted on the support column, and the servo motor is fixedly mounted on the support plate, and a driving roller is rotatably mounted between the driving end of the servo motor and the top box;
[0016] An output roller is rotatably mounted on the top box, a driving wheel is fixedly mounted on the driving roller, a driven wheel is fixedly mounted on the output roller, and a transmission belt is sleeved between the driving wheel and the driven wheel.
[0017] Preferably, the premixing assembly includes a plurality of premixing stirring plates fixedly mounted on the output roller for premixing the anti-HPV gel raw materials, and the plurality of premixing stirring plates are all located on the upper portion of the fixed plate, and each of the premixing stirring plates is provided with a plurality of breaking notches for assisting in breaking up the lumpy anti-HPV gel raw materials;
[0018] The mixing processing barrel is fixedly connected to a feed pipe for conducting anti-HPV gel raw materials, and the fixed plate is provided with two electric material guide boxes for conducting pre-stirred anti-HPV gel raw materials, and each electric material guide box is fixedly installed with a filter plate for screening large-volume raw materials.
[0019] Preferably, the stirring assembly includes a plurality of hanging rods fixedly mounted on the lower part of the fixed plate, and a conversion cylinder is fixedly mounted on the plurality of hanging rods, and the conversion cylinder is rotatably connected to the output roller, a supporting base is fixedly mounted on the bottom of the output roller, and a steering outer ring is fixedly mounted on the supporting base through a plurality of telescopic guide rods, and a plurality of mixing plates are fixedly mounted on the outside of the steering outer ring, and a concentration detector for monitoring the concentration of anti-HPV gel is provided on the outside of the conversion cylinder.
[0020] Preferably, the lifting assembly includes a reciprocating screw fixedly mounted on the output roller, and the reciprocating screw is located in the conversion cylinder, and a ball nut plate for lifting is mounted on the reciprocating screw, and a plurality of linkage rods are fixedly mounted on the ball nut plate, and a sliding mechanism is installed between each linkage rod and the conversion cylinder, and a lifting inner ring is fixedly mounted on the plurality of linkage rods, and the steering outer ring is rotatably mounted in the lifting inner ring.
[0021] Preferably, the sliding mechanism includes a sealing groove opened on the side of the conversion cylinder, and the sealing groove cooperates with the linkage rod, two overlapping rubber sealing strips are fixedly installed in the sealing groove, and the linkage rod slides and squeezes between the two rubber sealing strips.
[0022] Preferably, the puncture assembly includes a plurality of driven frames fixedly mounted on the lifting inner ring, and a lifting plate is fixedly mounted on the plurality of driven frames, and an elastic inner scraper ring for cleaning the inner wall of the mixing processing barrel is fixedly mounted on the outside of the lifting plate;
[0023] The lifting plate is provided with a plurality of puncture openings, in which a self-rotating roller is rotatably installed, and a plurality of puncture curved needles for puncturing foam are fixedly installed on the self-rotating roller, and a force-bearing impeller for assisting rotation is fixedly installed on the self-rotating roller.
[0024] Preferably, a discharge assembly for the anti-HPV gel after mixing and processing is provided at the bottom of the mixing and processing barrel, and the discharge assembly includes a receiving bucket fixedly installed in the mixing and processing barrel, and the lower part of the receiving bucket is fixedly connected to a pressurizing part for pressurizing the anti-HPV gel, and the pressurizing part is fixedly connected to a discharge pipe.
[0025] A production mixing method for a mixing device for producing an anti-HPV gel, comprising the following steps:
[0026] S1. injecting the anti-HPV gel raw materials to be processed and mixed into a mixing processing barrel;
[0027] S2, start the servo motor to drive the output roller to rotate through the cooperation of the transmission component;
[0028] S3. Starting the premixing assembly through the output roller to preliminarily stir and mix the anti-HPV gel raw material, while removing large clumps in the anti-HPV gel raw material;
[0029] S4, the anti-HPV gel raw material after the initial mixing falls to the lower part of the fixed plate, and the anti-HPV gel raw material is stirred and mixed for the second time by the stirring component;
[0030] S5. Puncture and remove the foam generated during the stirring and mixing process through the puncture component.
[0031] The present invention provides a mixing device and a production method for producing an anti-HPV gel. It has the following beneficial effects:
[0032] 1. When producing and mixing the anti-HPV gel, this mixing device can achieve pre-mixing and mixing of the anti-HPV gel raw materials through the cooperation of the pre-mixing component and the multiple pre-mixing stirring plates therein. During the mixing process, the large-volume agglomerates in the anti-HPV gel raw materials can be fully broken up and crushed through the cooperation of the crushing notches, effectively preventing the agglomerates from affecting the overall mixing effect.
[0033] 2. When the mixing device is producing and mixing the anti-HPV gel, the cooperation of the stirring component and the lifting component can realize the high-speed rotation of multiple mixing plates to fully stir and mix the anti-HPV gel raw materials. The mixing plates can also move up and down while rotating, thereby fully stirring the anti-HPV gel raw materials in the vertical direction without dead angles, and the stirring is more sufficient and the mixing is more uniform.
[0034] 3. When the mixing device is producing and mixing the anti-HPV gel, the lifting component can be used to drive the lifting plate and multiple puncture needles therein to achieve vertical lifting during the stirring and mixing process, and the foam generated when the anti-HPV gel raw materials are stirred and mixed can be fully punctured and removed, effectively preventing the foam from being mixed in the anti-HPV gel raw materials and affecting the mixing effect.
[0035] In summary, the present invention adopts a two-stage mixing method that combines premixing with lifting and stirring, which can fully remove the coagulation clumps in the anti-HPV gel raw material and effectively prevent the coagulation clumps from settling and affecting the mixing effect. At the same time, the reciprocating lifting and stirring mixing method can achieve uniform stirring of the anti-HPV gel without dead angles, and can also simultaneously remove the foam generated during stirring, so that the texture of the mixed gel solution is more uniform.
[0036] Other features and advantages of the present invention will be described in the following description, and part of them will become obvious from the description, or will be understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures particularly pointed out in the written description and the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings, wherein:
[0038] Figure 1 This is a schematic structural diagram of a mixing device for producing an anti-HPV gel proposed in the present invention;
[0039] Figure 2 for Figure 1 Schematic diagram of the structure after rotating a certain angle;
[0040] Figure 3 for Figure 2 Schematic diagram of the structure of the mixing processing barrel and the top box;
[0041] Figure 4 for Figure 3 Schematic diagram of the internal structure of the middle top box;
[0042] Figure 5 for Figure 4 A magnified view of the structure of the mixing processing barrel;
[0043] Figure 6 for Figure 5 Schematic diagram of the internal structure of the mixing processing barrel;
[0044] Figure 7 for Figure 6 Schematic diagram of the structure after removing the mixing processing barrel;
[0045] Figure 8 for Figure 7 Schematic diagram of the structure of the output roller and the fixed plate;
[0046] Figure 9 for Figure 7 Schematic diagram of the structure of the intermediate conversion cylinder and the lifting plate;
[0047] Figure 10 for Figure 9 Schematic diagram of the structure after rotating a certain angle;
[0048] Figure 11 for Figure 10 Schematic diagram of the structure between the intermediate conversion cylinder and multiple mixing plates;
[0049] Figure 12 for Figure 11 Schematic diagram of the internal structure of the intermediate conversion cylinder;
[0050] Figure 13 for Figure 10 Schematic diagram of the structure of the middle lifting plate;
[0051] Figure 14 for Figure 13 A magnified view of the structure of part A in the middle;
[0052] Figure 15 for Figure 7 Schematic diagram of the structure of the middle storage bucket.
[0053] In the figure: 1 support base, 2 mixing processing barrel, 3 sealing box, 4 support column, 5 electric control panel, 6 servo motor, 7 feed pipe, 8 discharge pipe, 9 mobile support frame, 10 drive roller, 11 output roller, 12 transmission belt, 13 fixed plate, 14 storage bucket, 15 premix stirring plate, 16 conversion cylinder, 17 mixing plate, 18 lifting plate, 19 electric material guide box, 20 filter plate, 21 crushing notch, 22 hanging rod, 23 elastic inner scraper ring, 24 concentration detector, 25 supporting bottom plate, 26 lifting inner ring, 27 steering outer ring, 28 telescopic guide rod, 29 sealing slide, 30 linkage rod, 31 reciprocating screw, 32 ball nut plate, 33 driven frame, 34 puncture opening, 35 rotating roller, 36 puncture curved needle, 37 force impeller, 38 pressure member. DETAILED DESCRIPTION
[0054] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0055] Example 1: Reference Figures 1-4 A mixing device for producing anti-HPV gel includes a support column 4 arranged on a support base 1, and a top box 3 is provided on the upper part of the support column 4. The support base 1, the support column 4 and the top box 3 cooperate to play an overall supporting role, which is used to improve the overall support stability of the mixing device and realize stable mixing of the anti-HPV gel raw materials.
[0056] The mixing device also includes:
[0057] The mixing processing barrel 2 and the servo motor 6 are arranged on the support column 4. The servo motor 6 serves as a driving source for mixing the anti-HPV gel raw materials, thereby achieving stable stirring and mixing.
[0058] An output roller 11 that matches the mixing barrel 2 is installed between the top box 3 and the servo motor 6 through a transmission assembly. The driving force of the servo motor 6 is transmitted through the output roller 11 to achieve automatic stirring and mixing of the anti-HPV gel.
[0059] The fixed disk 13 is disposed in the mixing and processing barrel 2, and a pre-mixing component for pre-mixing and breaking up the anti-HPV gel raw materials is installed between the fixed disk 13 and the output roller 11;
[0060] The premixing component is used to achieve pre-stirring and mixing of the anti-HPV gel raw materials, and can fully break up and crush large-volume agglomerates in the anti-HPV gel raw materials during the mixing process, effectively preventing the agglomerates from affecting the overall mixing effect.
[0061] The mixing unit is arranged at the lower part of the fixed plate 13 and cooperates with the output roller 11. The mixing unit is used to achieve sufficient and dead-angle-free stirring and mixing of the anti-HPV gel raw materials, so that the anti-HPV gel raw materials can be mixed more evenly. At the same time, the foam generated by stirring can be punctured and removed during mixing to avoid the foam being mixed in the anti-HPV gel mixed molding solution and affecting the texture uniformity.
[0062] An electric control panel 5 is fixedly mounted on the support column 4. The electric control panel 5 is used to control the opening and closing and operating status of the servo motor 6, the premixing component, and the mixing unit, thereby realizing automatic and efficient stirring and mixing of the anti-HPV gel raw materials, improving the mixing efficiency, and at the same time, the mixing process does not require excessive human intervention, and the degree of automation is higher.
[0063] The mixing processing barrel 2 is provided with a plurality of mobile support frames 9 for assisting movement. The mobile support frames 9 are used to assist in supporting the mixing processing barrel 2, further improving the mixing processing stability of the mixing processing barrel 2, and at the same time assisting the overall movement of the mixing processing barrel 2, making its movement more convenient and hassle-free.
[0064] Example 2: Reference Figure 2-Figure 8 The technical solution of this embodiment is different from that of the first embodiment in that the transmission assembly includes a support plate fixedly mounted on the support column 4, and the servo motor 6 is fixedly mounted on the support plate, and a driving roller 10 is rotatably mounted between the driving end of the servo motor 6 and the top box 3;
[0065] The support plate is used to support the servo motor 6 to improve the working stability of the servo motor 6.
[0066] An output roller 11 is rotatably mounted on the top box 3, a driving wheel is fixedly mounted on the driving roller 10, a driven wheel is fixedly mounted on the output roller 11, and a transmission belt 12 is sleeved between the driving wheel and the driven wheel;
[0067] When the servo motor 6 is started, it will drive the driving roller 10 on its driving end to rotate. The rotation of the driving roller 10 will drive the driven wheel to rotate under the transmission action of the transmission belt 12, and then drive the output roller 11 to rotate together. The output roller 11 can be used to drive the stirring and mixing of the anti-HPV gel raw materials inside the mixing processing barrel 2.
[0068] In a further embodiment, a feed pipe 7 for conducting anti-HPV gel raw materials is fixedly connected to the mixing processing barrel 2. When the anti-HPV gel raw materials are mixed, the anti-HPV gel raw materials are first poured into the mixing processing barrel 2 through the feed pipe 7 and preliminarily accumulated on the upper part of the fixed plate 13.
[0069] The premixing assembly includes a plurality of premixing stirring plates 15 fixedly mounted on the output roller 11 for premixing the anti-HPV gel raw materials. The plurality of premixing stirring plates 15 are located above the fixed plate 13. Each premixing stirring plate 15 is provided with a plurality of breaking notches 21 for assisting in breaking up the lumps of anti-HPV gel raw materials.
[0070] The servo motor 6 is started to drive the output roller 11 to rotate. The rotation of the output roller 11 drives the multiple pre-mixing stirring plates 15 to rotate. The rotation of the multiple pre-mixing stirring plates 15 preliminarily stirs and mixes the anti-HPV gel raw materials on the fixed plate 13, thereby achieving pre-mixing of the anti-HPV gel raw materials.
[0071] When the premixing stirring plate 15 is stirring and mixing the anti-HPV gel raw material, the crushing notches 21 thereon will collide with the large-volume clumping coagulants in the anti-HPV gel raw material, that is, the clumping coagulants will contact and collide with the edges of the crushing notches 21 under the action of rotation, and the clumping coagulants can be collided and broken up, so that they can be fully mixed instead of coagulating together, thereby effectively improving the mixing effect.
[0072] Two electric material guide boxes 19 are provided on the fixed plate 13 for conducting the pre-mixed anti-HPV gel raw material, and a filter plate 20 for screening large-volume raw materials is fixedly installed in each electric material guide box 19;
[0073] After pre-stirring and mixing for a period of time, the electric material guide box 19 can be opened to allow the anti-HPV gel raw material that has been preliminarily stirred on the fixed plate 13 to fall through the filter screen 20. During the falling process, the filter screen 20 will filter and screen the anti-HPV gel raw material, so that the larger unbroken condensate in it cannot pass through the filter screen 20, but is accumulated on the upper part of the filter screen 20 and continues to be stirred and crushed until it is completely crushed and passes through the filter screen 20, which can effectively prevent the clumping condensate from affecting the mixing and molding effect.
[0074] Example 3: Reference Figure 1-Figure 3 as well as Figures 9-15The technical solution of this embodiment is different from that of the second embodiment in that the mixing unit includes a stirring component, a lifting component and a puncture component, wherein the stirring component is provided with a plurality of mixing plates 17 for stirring and mixing the anti-HPV gel raw materials, the lifting component is used to adjust the height positions of the plurality of mixing plates 17 to achieve comprehensive mixing without dead angles, and the puncture component and the lifting component cooperate to puncture and remove the foam generated by stirring during the lifting process.
[0075] The stirring assembly includes a plurality of hanging rods 22 fixedly mounted on the lower part of the fixed plate 13, and a conversion cylinder 16 is fixedly mounted on the plurality of hanging rods 22. The conversion cylinder 16 is fixed by the cooperation between the fixed plate 13 and the plurality of hanging rods 22 so that it cannot rotate with the rotation of the output roller 11.
[0076] The conversion cylinder 16 is rotatably connected to the output roller 11. A supporting base 25 is fixedly mounted on the bottom of the output roller 11. A steering outer ring 27 is fixedly mounted on the supporting base 25 via multiple telescopic guide rods 28. Multiple mixing plates 17 are fixedly mounted on the outside of the steering outer ring 27.
[0077] When the output roller 11 rotates, it drives the supporting base 25 at the bottom thereof to rotate. When the supporting base 25 rotates, it drives the multiple telescopic guide rods 28 to rotate. When the multiple telescopic guide rods 28 rotate, they drive the steering outer ring 27 to rotate. When the steering outer ring 27 rotates, it drives the multiple mixing plates 17 to rotate. When the multiple mixing plates 17 rotate, they stir and mix the pre-mixed anti-HPV gel raw materials again to make the mixture more uniform.
[0078] A concentration detector 24 for monitoring the concentration of anti-HPV gel is provided on the outside of the conversion cylinder 16. The concentration detector 24 is provided with multiple detection ports for detecting the concentration of the anti-HPV gel raw materials at different height positions in the mixing processing barrel 2, thereby detecting whether the concentrations of the anti-HPV gel raw materials at different height positions are consistent, and further determining whether the anti-HPV gel raw materials are uniformly stirred and mixed.
[0079] In a further embodiment, the lifting assembly includes a reciprocating screw 31 fixedly mounted on the output roller 11, and the reciprocating screw 31 is located in the conversion cylinder 16, and a ball nut plate 32 for lifting is mounted on the reciprocating screw 31;
[0080] When the output roller 11 rotates, it drives the reciprocating screw 31 in the conversion cylinder 16 to rotate. When the reciprocating screw 31 rotates, it drives the corresponding ball nut plate 32 on it to perform lifting and lowering movements, so that when the reciprocating screw 31 rotates unidirectionally, the ball nut plate 32 on it can be lifted and lowered reciprocatingly.
[0081] The cooperation between the reciprocating screw 31 and the ball nut plate 32 is an existing technology. The specific principle is: the reciprocating screw 31 is a form of a three-dimensional cam pair. Its specific structure is two thread grooves with the same pitch and opposite rotation directions. The two ends of the screw are connected by a transition curve. Through the rotation of the screw, the side of the spiral groove pushes the ball located in the spiral groove of the ball nut plate 32 to make axial reciprocating motion. The reciprocating motion of the ball will drive the ball nut plate 32 to move back and forth, that is, when the reciprocating screw 31 rotates unidirectionally, it can drive the ball nut plate 32 to make it move back and forth linearly on the reciprocating screw 31. This part is an existing technology and will not be elaborated on here.
[0082] In a further embodiment, a plurality of linkage rods 30 are fixedly mounted on the ball nut plate 32, and a sliding mechanism is installed between each linkage rod 30 and the conversion cylinder 16. The plurality of linkage rods 30 are commonly fixedly mounted with the lifting inner ring 26, and the steering outer ring 27 is rotatably mounted within the lifting inner ring 26.
[0083] When the ball nut plate 32 is lifted and lowered back and forth, it will drive the multiple linkage rods 30 on it to lift and lower synchronously, and then drive the lifting inner ring 26 to lift and lower. Moreover, since the steering outer ring 27 is rotationally connected to the outside of the lifting inner ring 26, when the lifting inner ring 26 is lifted and lowered, it will synchronously drive the steering outer ring 27 to lift and lower. At the same time, the lifting inner ring 26 is rotationally connected to the steering outer ring 27, so that when the steering outer ring 27 rotates, it will not drive the lifting inner ring 26 to rotate.
[0084] When the outer steering ring 27 rotates and rises and falls, it will simultaneously drive the multiple mixing plates 17 outside it to rotate and rise and fall synchronously, so that the contact position of the mixing plate 17 and the anti-HPV gel raw material can be changed synchronously during the rotation and mixing, thereby fully stirring and mixing the anti-HPV gel raw material in a full range without any dead corners in stirring and mixing, and the texture of the anti-HPV gel raw material after stirring and mixing is more uniform.
[0085] The sliding mechanism includes a sealing groove 29 provided on the side of the conversion cylinder 16, and the sealing groove 29 cooperates with the linkage rod 30. Two overlapping rubber sealing strips are fixedly installed in the sealing groove 29, and the linkage rod 30 slides and squeezes between the two rubber sealing strips.
[0086] The sliding mechanism is used to enable the linkage rod 30 to slide stably vertically on the conversion cylinder 16, and the two rubber sealing strips are used in conjunction to seal the sealing slide 29, so that the anti-HPV gel material on the outside of the conversion cylinder 16 will not enter the interior of the conversion cylinder 16. The two rubber sealing strips are superimposed and squeezed on each other to achieve the extrusion seal of the sealing slide 29, and will not affect the normal sliding of the linkage rod 30, so that the linkage rod 30 can slide normally, and the external anti-HPV gel material will not enter the interior of the conversion cylinder 16 during sliding.
[0087] In a further embodiment, the puncture assembly includes a plurality of driven frames 33 fixedly mounted on the lifting inner ring 26, and a lifting plate 18 is fixedly mounted on the plurality of driven frames 33, and an elastic inner scraper ring 23 for cleaning the inner wall of the mixing and processing barrel 2 is fixedly mounted on the outer surface of the lifting plate 18;
[0088] When the inner lifting ring 26 is lifted and lowered back and forth, it will drive the lifting plate 18 to lift and lower together through multiple driven frames 33. When the lifting plate 18 is lifted and lowered, it will drive the elastic inner scraping ring 23 on its side to lift and lower, and make the elastic inner scraping ring 23 scrape up and down on the inner wall of the mixing processing barrel 2, so as to scrape off the anti-HPV gel raw material attached to the inner wall of the mixing processing barrel 2, so that the anti-HPV gel raw material will not adhere to the inner wall of the mixing processing barrel 2.
[0089] The lifting plate 18 is provided with a plurality of puncture openings 34, in which a self-rotating roller 35 is rotatably mounted. A plurality of puncture curved needles 36 for puncturing the foam are fixedly mounted on the self-rotating roller 35, and a force-bearing impeller 37 for assisting the rotation is fixedly mounted on the self-rotating roller 35;
[0090] When the lifting plate 18 is lifted or lowered, the puncture opening 34 and the multiple puncture curved needles 36 thereon will be driven to lift or lower synchronously. When the multiple puncture curved needles 36 are lifted or lowered, they will penetrate into the anti-HPV gel raw material. During the penetration process, the foam generated by stirring in the anti-HPV gel raw material can be punctured and removed, thereby effectively avoiding the accumulation of foam and affecting the mixing and molding effect.
[0091] When the lifting disk 18 is lifted or lowered, the force-bearing impeller 37 will come into contact with the anti-HPV gel raw material, and will be simultaneously subjected to the lifting extrusion force and the rotation of the anti-HPV gel raw material to generate flow force, that is, it will be subjected to force under the coordinated action of the two, and will swing to a certain extent when subjected to force, thereby driving the rotating roller 35 and the puncture needle 36 thereon to swing, thereby changing the puncture direction of the puncture needle 36, thereby further increasing the puncture range of the puncture needle 36 and improving the foam removal effect.
[0092] A discharge assembly for the mixed anti-HPV gel is provided at the bottom of the mixing and processing barrel 2. The discharge assembly includes a receiving hopper 14 fixedly mounted in the mixing and processing barrel 2. A pressurizing member 38 for pressurizing the anti-HPV gel is fixedly connected to the lower portion of the receiving hopper 14, and a discharge pipe 8 is fixedly connected to the pressurizing member 38.
[0093] After the anti-HPV gel raw materials are mixed and stirred, they will enter the pressure member 38 through the receiving hopper 14 and will be directly discharged through the discharge pipe 8. The pressure member 38 is an existing equipment used to pressurize the anti-HPV gel raw materials therein, thereby promoting the discharge speed of the anti-HPV gel raw materials therein.
[0094] The specific working principle of this mixing device is:
[0095] When mixing the anti-HPV gel raw materials, the anti-HPV gel raw materials are first poured into the mixing processing barrel 2 through the feed pipe 7 and initially piled up on the upper part of the fixed plate 13. Then, the servo motor 6 is started to drive the output roller 11 to rotate through the cooperation of the transmission component.
[0096] The rotation of the output roller 11 drives the multiple pre-mixing stirring plates 15 to rotate, and the rotation of the multiple pre-mixing stirring plates 15 preliminarily stirs and mixes the anti-HPV gel raw materials on the fixed plate 13, thereby achieving pre-mixing of the anti-HPV gel raw materials;
[0097] When the premixing stirring plate 15 is stirring and mixing the anti-HPV gel raw material, the crushing grooves 21 on it will collide with the large-volume clumping coagulants in the anti-HPV gel raw material. That is, under the action of rotation, the clumping coagulants will contact and collide with the edges of the crushing grooves 21, thereby breaking up the clumping coagulants.
[0098] After pre-stirring and mixing for a period of time, the electric material guide box 19 can be opened to allow the anti-HPV gel raw materials that have been preliminarily stirred on the fixed plate 13 to fall through the filter plate 20 and fall to the upper part of the storage bucket 14 for accumulation. After all the anti-HPV gel raw materials have fallen, the anti-HPV gel raw materials can be mixed and stirred again.
[0099] When the output roller 11 rotates, it will drive the supporting base 25 at the bottom to rotate. When the supporting base 25 rotates, it will drive multiple telescopic guide rods 28 to rotate. When the multiple telescopic guide rods 28 rotate, they will drive the steering outer ring 27 to rotate. When the steering outer ring 27 rotates, it will drive multiple mixing plates 17 to rotate. While the mixing plates 17 rotate, the lifting components drive the multiple mixing plates 17 to move back and forth. The contact position of the mixing plates 17 and the anti-HPV gel raw materials can be changed synchronously during the rotation and mixing, so that the anti-HPV gel raw materials can be fully stirred and mixed in a full range without any dead corners in stirring and mixing. The texture of the anti-HPV gel raw materials after stirring and mixing is more uniform.
[0100] When the inner lifting ring 26 is lifted and lowered back and forth, it will drive the lifting plate 18 to lift and lower together through multiple driven frames 33. When the lifting plate 18 is lifted and lowered, it will drive the elastic inner scraping ring 23 on its side to lift and lower, and make the elastic inner scraping ring 23 scrape up and down on the inner wall of the mixing processing barrel 2, so as to scrape off the anti-HPV gel raw material attached to the inner wall of the mixing processing barrel 2, so that the anti-HPV gel raw material will not adhere to the inner wall of the mixing processing barrel 2.
[0101] When the lifting plate 18 is lifted or lowered, the puncture opening 34 and the multiple puncture curved needles 36 thereon will be driven to lift or lower synchronously. When the multiple puncture curved needles 36 are lifted or lowered, they will penetrate into the anti-HPV gel raw material, and the foam generated by stirring in the anti-HPV gel raw material can be punctured and removed during the penetration process.
[0102] After the anti-HPV gel raw materials are mixed and stirred, they will enter the pressurizing member 38 through the receiving hopper 14 and will be directly discharged through the discharge pipe 8.
[0103] The embodiment of the present invention further provides a production mixing method of a mixing device for producing an anti-HPV gel, wherein the mixing device for producing the anti-HPV gel comprises the following steps:
[0104] S1, injecting the anti-HPV gel raw materials to be processed and mixed into the mixing processing barrel 2;
[0105] S2, start the servo motor 6 and drive the output roller 11 to rotate through the cooperation of the transmission assembly;
[0106] S3, starting the premixing assembly through the output roller 11 to preliminarily stir and mix the anti-HPV gel raw material, while removing large clumps in the anti-HPV gel raw material;
[0107] S4, the anti-HPV gel raw material after the initial mixing falls to the lower part of the fixed plate 13, and the anti-HPV gel raw material is stirred and mixed for the second time by the stirring component;
[0108] S5. Puncture and remove the foam generated during the stirring and mixing process through the puncture component.
[0109] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A mixing device for producing an anti-HPV gel, comprising a support column (4) arranged on a support base (1), and a top box (3) is arranged on the upper part of the support column (4), characterized in that: Also includes: A mixing processing barrel (2) and a servo motor (6) are arranged on the support column (4), and an output roller (11) that matches the mixing processing barrel (2) is installed between the top box (3) and the servo motor (6) via a transmission assembly; The transmission assembly comprises a support plate fixedly mounted on a support column (4), and a servo motor (6) fixedly mounted on the support plate, and a driving roller (10) is rotatably mounted between a driving end of the servo motor (6) and the top box (3); An output roller (11) is rotatably mounted on the capping box (3), a driving wheel is fixedly mounted on the driving roller (10), a driven wheel is fixedly mounted on the output roller (11), and a transmission belt (12) is sleeved between the driving wheel and the driven wheel; A fixed disk (13) is disposed in the mixing and processing barrel (2), and a premixing component for premixing, breaking up and crushing the anti-HPV gel raw material is installed between the fixed disk (13) and the output roller (11); A mixing unit, disposed at the lower portion of the fixed disk (13) and cooperating with the output roller (11), comprises a stirring assembly, a lifting assembly, and a puncture assembly; The stirring assembly is provided with a plurality of mixing plates (17) for stirring and mixing the anti-HPV gel raw materials, the lifting assembly is used to adjust the height positions of the plurality of mixing plates (17) to achieve comprehensive mixing without dead angles, and the puncture assembly cooperates with the lifting assembly to puncture and remove the foam generated by stirring during the lifting process; The stirring assembly comprises a plurality of hanging rods (22) fixedly mounted on the lower portion of the fixed plate (13), a conversion cylinder (16) being fixedly mounted on the plurality of hanging rods (22), and the conversion cylinder (16) being rotationally connected to the output roller (11), a supporting base (25) being fixedly mounted on the bottom of the output roller (11), and a steering outer ring (27) being fixedly mounted on the supporting base (25) via a plurality of telescopic guide rods (28); The lifting assembly comprises a reciprocating screw (31) fixedly mounted on the output roller (11), a ball nut plate (32) for lifting is mounted on the reciprocating screw (31), a plurality of linkage rods (30) are fixedly mounted on the ball nut plate (32), and a lifting inner ring (26) is fixedly mounted on the plurality of linkage rods (30); The puncture assembly comprises a plurality of driven frames (33) fixedly mounted on a lifting inner ring (26), and a lifting plate (18) is fixedly mounted on the plurality of driven frames (33), and an elastic inner scraper ring (23) for cleaning the inner wall of the mixing processing barrel (2) is fixedly mounted on the outside of the lifting plate (18); The lifting plate (18) is provided with a plurality of puncture openings (34), a self-rotating roller (35) is rotatably mounted in the puncture opening (34), a plurality of puncture curved needles (36) for puncturing foam are fixedly mounted on the self-rotating roller (35), and a force-bearing impeller (37) for assisting rotation is fixedly mounted on the self-rotating roller (35).
2. A mixing device for producing an anti-HPV gel according to claim 1, characterized in that: An electric control panel (5) is fixedly mounted on the support column (4), and the electric control panel (5) is used to control the opening and closing and operating status of the servo motor (6), the premixing component, and the mixing unit; The mixing processing barrel (2) is provided with a plurality of movable support frames (9) for assisting movement.
3. The mixing device for producing an anti-HPV gel according to claim 1, characterized in that: The premixing assembly includes a plurality of premixing stirring plates (15) fixedly mounted on an output roller (11) for premixing the anti-HPV gel raw material, and the plurality of premixing stirring plates (15) are all located on the upper portion of the fixed plate (13), and each of the premixing stirring plates (15) is provided with a plurality of crushing notches (21) for assisting in breaking up the anti-HPV gel clumps. The mixing processing barrel (2) is fixedly connected to a feed pipe (7) for conducting the anti-HPV gel raw material, and the fixed plate (13) is provided with two electric material guide boxes (19) for conducting the pre-mixed anti-HPV gel raw material, and each electric material guide box (19) is fixedly installed with a filter plate (20) for screening large-volume raw materials.
4. A mixing device for producing anti-HPV gel according to claim 3, characterized in that: The plurality of mixing plates (17) are fixedly mounted on the outside of the steering outer ring (27), and a concentration detector (24) for monitoring the concentration of the anti-HPV gel is provided on the outside of the conversion cylinder (16).
5. The mixing device for producing anti-HPV gel according to claim 4, characterized in that: The reciprocating screw rod (31) is located in the conversion cylinder (16), a sliding mechanism is installed between each linkage rod (30) and the conversion cylinder (16), and the steering outer ring (27) is rotatably installed in the lifting inner ring (26).
6. The mixing device for producing anti-HPV gel according to claim 5, characterized in that: The sliding mechanism includes a sealing groove (29) provided on the side of the conversion cylinder (16), and the sealing groove (29) cooperates with the linkage rod (30). Two overlapping rubber sealing strips are fixedly installed in the sealing groove (29), and the linkage rod (30) slides and squeezes between the two rubber sealing strips.
7. A mixing device for producing anti-HPV gel according to claim 6, characterized in that: A discharge assembly for the anti-HPV gel after mixing and processing is provided at the bottom of the mixing and processing barrel (2), and the discharge assembly comprises a receiving hopper (14) fixedly installed in the mixing and processing barrel (2), a pressurizing member (38) for pressurizing the anti-HPV gel is fixedly connected to the lower portion of the receiving hopper (14), and a discharge pipe (8) is fixedly connected to the pressurizing member (38).
8. A production mixing method of a mixing device for producing an anti-HPV gel, used for the mixing device for producing an anti-HPV gel according to any one of claims 1 to 7, characterized in that: The following steps are involved: S1, injecting the anti-HPV gel raw materials to be processed and mixed into the mixing processing barrel (2); S2, starting the servo motor (6) to drive the output roller (11) to rotate through the cooperation of the transmission assembly; S3, starting the premixing assembly through the output roller (11), preliminarily stirring and mixing the anti-HPV gel raw material, and removing large clumps in the anti-HPV gel raw material; S4, the anti-HPV gel raw material after the initial mixing falls to the lower part of the fixed plate (13), and the anti-HPV gel raw material is stirred and mixed for the second time by the stirring component; S5. Puncture and remove the foam generated during the stirring and mixing process through the puncture component.
Citation Information
Patent Citations
Gel mixer
CN203227444U
Water conservancy project waterproof coating preparation equipment
CN118079755A
Preparation device for preparing thermal insulation gel
CN222196741U
Stirring kettle for preparing antifogging polymer coating
CN222368961U