An antibacterial liquid reactor
By designing a stirring floating particle device, top edge bubble removal device, wall scraping grinding device and accelerated discharge device in the antibacterial liquid reactor, the problems of uneven mixing, bubble problems and reactant bottoming in the antibacterial liquid reactor in the prior art are solved, and uniform mixing of reactants, bubble removal, refining and dispersing of reactants and rapid discharge of materials are achieved, and the reaction efficiency and service life of the kettle are improved.
Patent Information
- Application Number
- CN202410500442.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-24
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2044-04-24
AI Technical Summary
The existing antibacterial liquid reactor has not effectively improved the problem of treating the bubbles of the antibacterial liquid, resulting in uneven mixing, affecting the reaction efficiency and quality, and lacking sufficient stirring function when the reactants sink to the bottom, affecting the stirring reaction rate.
An antibacterial liquid reactor is designed, including a stirring floating particle device, a top edge foam removal device, a wall scraping grinding device and an accelerated discharge device. The stirring floating particle device throws away the reactants precipitated at the bottom of the kettle through floating leaves and rollers to ensure uniform mixing of the reactants; the top edge bubble removal device removes bubbles in the kettle through a bubble removal rotor, improving the fluidity and stirring effect of the reaction liquid; the scraping wall grinding device refines and disperses the particle reactants at the bottom of the kettle through grinding rollers and scrapers, improving the reaction rate and efficiency; the accelerated discharge device pushes the fan blades and the rotor to quickly discharge the materials in the reactor, saving discharge time and improving production efficiency.
Through the arrangement of these devices, the full mixing and uniformity of the materials in the reactor are achieved, bubbles are removed, the fluidity and stirring effect of the reaction liquid are improved, and the reactants are refined and dispersed, the reaction rate and efficiency are improved, and the discharge of materials is accelerated, and the service life of the reactor is extended.
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Figure CN118904245B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of reaction kettles, and particularly to an antibacterial liquid reaction kettle. Background Art
[0002] The application of antibacterial liquid in the fields of medical treatment, healthcare, food processing, etc. is increasing day by day. The antibacterial liquid reaction kettle can provide a dedicated reaction environment for preparing antibacterial liquid and related products.
[0003] A patent with the patent publication number CN203508021U discloses an antibacterial liquid reaction kettle, which relates to the technical field of reaction kettles. This patent relates to a reaction kettle, specifically an antibacterial liquid reaction kettle. It solves the problem that the raw materials in the existing antibacterial liquid reaction kettle, especially the solid-liquid phase raw materials with low viscosity, cannot be fully dispersed due to unreasonable structure. The antibacterial liquid reaction kettle includes a kettle body, a kettle cover, a stirrer, and a draft tube suspended at the upper end of the kettle cover and located inside the kettle body. Baffles are fixed on the inner wall of the draft tube. Compared with the prior art, when the material enters the draft tube with baffles, the turbulence effect is obvious, the materials in the reaction kettle are fully mixed, the dispersion effect is improved, the stirring time is shortened, the electric energy is saved, the production cost is reduced, and the production efficiency is improved. This antibacterial liquid reaction kettle can also be used in other related technical fields.
[0004] However, the current antibacterial liquid reaction kettle has the following problems: This patent does not have good improvement in dealing with the bubble problem of antibacterial liquid, which will lead to uneven mixing, affecting the efficiency and quality of the reaction. And when the reactants sink to the bottom, there is a lack of sufficient stirring function for the mixing of reactants, affecting the reaction rate of stirring. Therefore, we propose an antibacterial liquid reaction kettle. Summary of the Invention
[0005] Aiming at the deficiencies of the prior art, the present invention provides an antibacterial liquid reaction kettle, which solves the problems raised in the above background art.
[0006] To achieve the above objectives, the present invention is realized through the following technical solutions: An antibacterial liquid reaction kettle, comprising a reaction kettle main body, wherein an antibacterial liquid inlet is provided on the left side of the top of the reaction kettle main body, a reactant inlet is provided on the right side of the top of the reaction kettle main body, a discharge pipe is provided at the bottom of the reaction kettle main body, a stirring floating particle device is arranged in the inner cavity of the reaction kettle main body, a top edge defoaming device is arranged at the top of the inner cavity of the reaction kettle main body, a scraping and grinding device is arranged on the inner wall of the reaction kettle main body, and an accelerating discharge device is arranged at the bottom of the inner cavity of the reaction kettle main body. The stirring floating particle device includes a stirring blade rod, two L-shaped fixing blocks, two C-shaped fixing blocks, two rollers and a plurality of floating leaves. The rotating motor is fixedly installed on the top of the reaction kettle main body, the stirring blade rod is fixedly installed at the bottom of the output end of the rotating motor. Chutes are formed inside the two L-shaped fixing blocks, and the two L-shaped fixing blocks are respectively fixedly installed on one side of the stirring blade of the stirring blade rod. The two C-shaped fixing blocks are respectively fixedly installed on the bottom side walls of the two L-shaped fixing blocks. The two rollers are respectively rotatably installed on the side walls of the two C-shaped fixing blocks away from the stirring blade rod. A plurality of floating leaves are respectively uniformly fixedly installed on the side walls of the two rollers close to the stirring blade rod, so that while the rollers are rolling, the reactants deposited at the bottom of the kettle will be thrown up through the contact rods and floating leaves, avoiding the accumulation of bottom reactants and local concentration differences, ensuring the uniformity and consistency of the reaction, and also preventing the reactants from accumulating at the bottom of the kettle, reducing the corrosion and deposition of the reactants on the bottom of the kettle, and prolonging the service life of the reaction kettle.
[0007] According to the above technical solution, the stirring floating particle device further includes two rotating shafts, two floating leaves, four hinge blocks and two contact rods. The two rotating shafts are respectively slidably installed in the chutes of the two L-shaped fixing blocks. The two floating leaves are respectively fixedly installed at both ends of the two rotating shafts. The arrangement of the floating leaves can also throw up the thrown particulate reactants upward by means of the force of liquid floating, so as to promote better mixing with the liquid above. The four hinge blocks are respectively fixedly installed at the bottom of the two floating leaves and the side walls of the two rollers. One ends of the two contact rods are respectively hingedly installed on the corresponding hinge blocks of the two floating leaves, and the other ends of the two contact rods are respectively hingedly installed on the corresponding hinge blocks of the two rollers.
[0008] According to the above technical solution, the top edge defoaming device includes a connecting rod, a round wheel, a number of bottom soft balls, a number of top soft balls, a floating ring, a rotating ring and a number of defoaming rotary knives. The connecting rod is fixedly installed on the outer wall of the stirring blade rod. The round wheel is fixedly installed at both ends of the connecting rod away from the stirring blade rod. A number of the bottom soft balls are respectively and evenly fixedly installed on the top of the round wheel. The floating ring is slidably installed on the top of the inner cavity of the reaction kettle, and the floating ring is located above the round wheel. A number of the top soft balls are respectively fixedly installed on the bottom of the floating ring, and a number of the top soft balls are located on the movement tracks of a number of the bottom soft balls. The rotating ring is fixedly installed on the top of the floating ring. A number of the defoaming rotary knives are respectively fixedly installed on the inner wall of the rotating ring. The edge bubbles generated by the antibacterial liquid in the kettle will gather at the edge of the top of the inner wall of the reaction kettle, so as to vibrate and cut the bubbles, effectively remove the foam, ensure the fluidity and stirring effect of the reaction liquid, and also make the temperature distribution of the reaction liquid more uniform, improve the controllability and consistency of the reaction, thereby improving the efficiency and quality of the reaction.
[0009] According to the above technical solution, the scraping and grinding device includes a fixed straight rod, two L-shaped fixing rods, two side contact balls, two side scrapers, a table body, a grinding roller and a scraper. The fixed straight rod is fixedly installed at the bottom of the round wheel. The two side scrapers are respectively hinged at the outer wall of the fixed straight rod. The two L-shaped fixing rods are respectively fixedly installed on the side walls of the two side scrapers away from the inner wall of the reaction kettle body. The two side contact balls are respectively fixedly installed on the side walls of the two L-shaped fixing rods close to the inner wall of the reaction kettle body. The table body is fixedly installed on the side wall at the bottom of the fixed straight rod. The grinding roller is rotatably installed at the bottom of the table body, and the grinding roller is in contact with the bottom of the inner wall of the reaction kettle body. The scraper is fixedly installed at the bottom of the table body, so that the granular reactants precipitated at the bottom of the kettle can pass through the grinding roller and be ground into powder, and then the scraper prevents it from adhering to the bottom, which can refine and evenly disperse the granular reactants, increase the reaction surface area and contact effect, thereby improving the reaction rate and efficiency. Through grinding, the size of the granular reactants can also be reduced, effectively increasing the reactive surface area, and it can also better contact and diffuse with the antibacterial liquid, avoiding the formation of granular agglomerates, thereby ensuring the uniformity and consistency of the reaction. The side scrapers can effectively prevent the reactants or products from adhering and accumulating on the reaction kettle wall.
[0010] According to the above technical solution, the accelerating discharge device includes a lead screw, a lead screw block, a number of fixed platforms and four discharge scrapers. The lead screw is fixedly installed at the bottom of the stirring blade rod. The lead screw block is threadedly connected to the outer wall of the lead screw, and the lead screw block is slidably installed at the inner wall of the discharge pipe. A number of the fixed platforms are respectively fixedly installed on the outer wall of the lead screw block. The discharge scraper 54 prevents the stirred solution from adhering to the inner wall of the discharge, making the discharge smoother.
[0011] According to the above technical solution, the acceleration discharging device further includes a plurality of rotating wheels and a plurality of pushing fan blades. The four discharging scrapers are respectively fixedly installed on both sides of the tops of a plurality of fixed platforms. The plurality of rotating wheels are respectively rotatably installed on the tops of the plurality of fixed platforms, and the plurality of rotating wheels are in contact with the inner wall of the discharging pipe. The plurality of pushing fan blades are respectively rotatably installed on the inner walls of the plurality of rotating wheels. At the same time, through the arrangement of the pushing fan blades, the materials in the reaction kettle can be discharged quickly and efficiently, saving the discharging time and improving the production efficiency of the reaction kettle. It can accelerate the flow rate of the materials and reduce the flow resistance.
[0012] The present invention provides an antibacterial liquid reaction kettle. It has the following beneficial effects:
[0013] (1) Through the arrangement of the stirring floating particle device in the present invention, the floating blades, C-shaped fixing blocks, rollers, throwing floating blades and hinge blocks cooperate with the resisting rods, so that while the rollers are rolling, the reactants deposited at the bottom of the kettle will be thrown up through the resisting rods and the throwing floating blades, avoiding the accumulation of reactants at the bottom and local concentration differences, ensuring the uniformity and consistency of the reaction, and also preventing the reactants from accumulating at the bottom of the kettle, reducing the corrosion and deposition of the reactants on the bottom of the kettle, and prolonging the service life of the reaction kettle. The arrangement of the floating blades can also throw up the thrown-up particulate reactants with the force of liquid floating, so as to promote better mixing with the liquid above.
[0014] (2) Through the arrangement of the top edge defoaming device in the present invention, the top soft balls, floating rings and rotating rings cooperate with the defoaming rotating knives, and the edge bubbles generated by the antibacterial liquid in the kettle will gather at the edge of the top of the inner wall of the reaction kettle, so as to vibrate and cut the bubbles, effectively removing the foam, ensuring the fluidity and stirring effect of the reaction liquid, and also making the temperature distribution of the reaction liquid more uniform, improving the controllability and consistency of the reaction, and thus improving the efficiency and quality of the reaction.
[0015] (3) Through the arrangement of the scraping and grinding device in the present invention, the fixed straight rods, side resisting balls, L-shaped fixing rods, side scrapers, table bodies and grinding rollers cooperate with the scraping plates, so that the particulate reactants deposited at the bottom of the kettle can pass through the grinding rollers and be ground into powders, and then the scraping plates prevent them from adhering to the bottom, which can refine and uniformly disperse the particulate reactants, increase the reaction surface area and contact effect, thereby improving the reaction rate and efficiency. Through grinding, the size of the particulate reactants can also be reduced, effectively increasing the reactive surface that can react, and it can also better contact and diffuse with the antibacterial liquid, avoiding the formation of particulate agglomerates, thus ensuring the uniformity and consistency of the reaction. The side scrapers can effectively prevent the reactants or products from adhering and accumulating on the wall of the reaction kettle.
[0016] (4) The present invention accelerates the discharging device so that the screw, screw block, fixed platform, discharging scraper and rotating wheel cooperate to push the fan blade, and the scraper prevents the stirred solution from adhering to the inner wall of the discharging material. At the same time, by pushing the fan blade, the material in the reactor can be discharged quickly and efficiently, saving the discharging time and improving the production efficiency of the reactor. It can accelerate the flow speed of the material and reduce the flow resistance, making the discharging smoother. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the main structure of the present invention;
[0018] Figure 2 It is a schematic diagram of the cross-sectional structure of the present invention;
[0019] Figure 3 This is a schematic diagram of the structure of the stirring floating particle device of the present invention;
[0020] Figure 4 It is a partial schematic diagram of the stirring floating particle device of the present invention;
[0021] Figure 5 This is a schematic diagram of the structure of the top edge defoaming device of the present invention;
[0022] Figure 6 Schematic diagram of the wall scraping and grinding device of the present invention
[0023] Figure 7 It is a schematic diagram of the structure of the accelerated discharge device of the present invention.
[0024] In the figure: 1. Reactor body; 11. Antibacterial liquid feed port; 12. Reactant feed port; 13. Discharge pipe; 2. Stirring floating particle device; 21. Stirring blade rod; 22. L-shaped fixed block; 23. Rotating shaft; 24. Floating blade; 25. C-shaped fixed block; 26. Roller; 27. Floating blade; 28. Articulated block; 29. Resistance rod; 3. Top edge defoaming device; 31. Connecting rod; 32. Round wheel; 33. Bottom soft ball; 34. Top soft ball; 35. Floating ring; 36. Rotating ring; 37. Defoaming rotary knife; 4. Wall scraping and grinding device; 41. Fixed straight rod; 42. L-shaped fixed rod; 43. Side resistance ball; 44. Side scraper; 45. Table; 46. Grinding roller; 47. Scraper; 5. Accelerating discharge device; 51. Screw; 52. Screw block; 53. Fixed table; 54. Discharge scraper; 55. Rotating wheel; 56. Pushing fan blade. DETAILED DESCRIPTION
[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention. Embodiment
[0026] Please refer to Figures 1-7 , the present invention provides a technical solution: an antibacterial liquid reactor, including a reactor main body 1. On the left side of the top of the reactor main body 1, there is an antibacterial liquid inlet 11. On the right side of the top of the reactor main body 1, there is a reactant inlet 12. At the bottom of the reactor main body 1, there is a discharge pipe 13. Inside the reactor main body 1, there is a stirring floating particle device 2. At the top of the inner cavity of the reactor main body 1, there is a top edge defoaming device 3. The stirring floating particle device 2 includes a stirring blade rod 21, two L-shaped fixing blocks 22, two C-shaped fixing blocks 25, two rollers 26 and a plurality of floating leaves 27. The rotating motor is fixedly installed on the top of the reactor main body 1. The stirring blade rod 21 is fixedly installed at the bottom of the output end of the rotating motor. The floating leaves 27 roll and lift the particulate reactants deposited at the bottom of the kettle in the antibacterial liquid, avoiding the accumulation of bottom reactants and local concentration differences, ensuring the uniformity and consistency of the reaction, and can also prevent the reactants from accumulating at the bottom of the kettle, reducing the corrosion and deposition of the reactants on the bottom of the kettle, and extending the service life of the reactor. Inside the two L-shaped fixing blocks 22, there are chutes. The two L-shaped fixing blocks 22 are respectively fixedly installed on one side of the stirring blade of the stirring blade rod 21. The two C-shaped fixing blocks 25 are respectively fixedly installed on the bottom side walls of the two L-shaped fixing blocks 22. The two rollers 26 are respectively rotatably installed on the side walls of the two C-shaped fixing blocks 25 away from the stirring blade rod 21. A plurality of floating leaves 27 are respectively uniformly fixedly installed on the side walls of the two rollers 26 close to the stirring blade rod 21.
[0027] The stirring floating particle device 2 further includes two rotating shafts 23, two floating leaves 24, four hinge blocks 28 and two abutting rods 29. The two rotating shafts 23 are respectively slidably installed in the chutes of the two L-shaped fixing blocks 22. The two floating leaves 24 are respectively fixedly installed at both ends of the two rotating shafts 23. The setting of the floating leaves 24 can also use the force of the floating liquid to lift the lifted particulate reactants upward, so as to promote better mixing with the liquid above. The four hinge blocks 28 are respectively fixedly installed at the bottoms of the two floating leaves 24 and the side walls of the two rollers 26. One ends of the two abutting rods 29 are respectively hingedly installed on the corresponding hinge blocks 28 of the two floating leaves 24, and the other ends of the two abutting rods 29 are respectively hingedly installed on the corresponding hinge blocks 28 of the two rollers 26.
[0028] The top-edge defoaming device 3 includes a connecting rod 31, a round wheel 32, a number of bottom soft balls 33, a number of top soft balls 34, a floating ring 35, a rotating ring 36 and a number of defoaming rotary knives 37. The connecting rod 31 is fixedly installed on the outer wall of the stirring blade rod 21. The round wheel 32 is fixedly installed at both ends of the connecting rod 31 away from the stirring blade rod 21. A number of bottom soft balls 33 are respectively and evenly fixedly installed on the top of the round wheel 32. The floating ring 35 is slidably installed on the top of the inner cavity of the reaction kettle, and the floating ring 35 is located above the round wheel 32. A number of top soft balls 34 are respectively fixedly installed on the bottom of the floating ring 35, and a number of top soft balls 34 are located on the movement tracks of a number of bottom soft balls 33. The rotating ring 36 is fixedly installed on the top of the floating ring 35. A number of defoaming rotary knives 37 are respectively fixedly installed on the inner wall of the rotating ring 36, vibrating and cutting the bubbles at the top edge, effectively removing the foam, ensuring the fluidity and stirring effect of the reaction liquid, making the temperature distribution of the reaction liquid more uniform, improving the controllability and consistency of the reaction, and thus improving the efficiency and quality of the reaction.
[0029] During use, pour the antibacterial liquid into the antibacterial liquid inlet 11, and then pour the reactants into the reactant inlet 12. Turn on the rotating motor. The output end of the rotating motor drives the stirring blade rod 21 to rotate. The stirring blade rod 21 drives the L-shaped fixing block 22 to rotate. The L-shaped fixing block 22 drives the C-shaped fixing block 25 to rotate. The C-shaped fixing block 25 drives the roller 26 to rotate. The roller 26 drives the floating blade 27 to roll. The floating blade 27 rolls up the particulate reactants deposited at the bottom of the kettle in the antibacterial liquid, avoiding the accumulation of bottom reactants and local concentration differences, ensuring the uniformity and consistency of the reaction, preventing the reactants from accumulating at the bottom of the kettle, reducing the corrosion and deposition of the reactants on the bottom of the kettle, and extending the service life of the reaction kettle. While the roller 26 is rolling, it drives the contact rod 29 hinged on the hinge block 28 to move up and down. The contact rod 29 drives the floating blade 24 to move up and down. The floating blade 24 drives the rotating shaft 23 to move up and down. The setting of the floating blade 24 can also throw up the particulate reactants by means of the force of liquid floating, so as to promote better mixing with the liquid above.
[0030] The output end of the rotating motor drives the connecting rod 31 to rotate. The connecting rod 31 drives the round wheel 32 to rotate. The round wheel 32 drives the bottom soft balls 33 to rotate. The floating ring 35 drives the rotating ring 36 to float on the liquid surface of the stirring liquid. The bottom soft balls 33 touch the top soft balls 34. The top soft balls 34 drive the rotating ring 36 to rotate. At the same time, the top soft balls 34 also drive the floating ring 35 to move up and down. The floating ring 35 drives the rotating ring 36 to move up and down. The rotating ring 36 drives the defoaming rotary knives 37 to rotate left and right, vibrating and cutting the bubbles at the top edge, effectively removing the foam, ensuring the fluidity and stirring effect of the reaction liquid, making the temperature distribution of the reaction liquid more uniform, improving the controllability and consistency of the reaction, and thus improving the efficiency and quality of the reaction. Embodiment
[0031] Please refer to Figures 1-7 Figures 1-7 , based on Embodiment 1, in this embodiment, a scraping and grinding device 4 is provided on the inner wall of the reactor main body 1, and an accelerating discharge device 5 is provided at the bottom of the inner cavity of the reactor main body 1;
[0032] The scraping and grinding device 4 includes a fixed straight rod 41, two L-shaped fixing rods 42, two side contact balls 43, two side scrapers 44, a frustum 45, a grinding roller 46 and a scraper 47. The fixed straight rod 41 is fixedly installed at the bottom of the round wheel 32. The two side scrapers 44 are respectively hinged to the outer wall of the fixed straight rod 41. The side scrapers 44 can effectively prevent reactants or products from adhering and accumulating on the reactor wall. The two L-shaped fixing rods 42 are respectively fixedly installed on the side walls of the two side scrapers 44 away from the inner wall of the reactor main body 1. The two side contact balls 43 are respectively fixedly installed on the side walls of the two L-shaped fixing rods 42 close to the inner wall of the reactor main body 1. The frustum 45 is fixedly installed on the side wall at the bottom of the fixed straight rod 41. The grinding roller 46 is rotatably installed at the bottom of the frustum 45 and is in contact with the bottom of the inner wall of the reactor main body 1. The scraper 47 is fixedly installed at the bottom of the frustum 45, so that the granular reactants deposited at the bottom of the kettle can pass through the grinding roller 46, be ground into powder, and then be prevented from adhering to the bottom by the scraper 47. The granular reactants can be refined and evenly dispersed, improving the reaction surface area and contact effect, thereby increasing the reaction rate and efficiency. Through grinding, the size of the granular reactants can also be reduced, effectively increasing the reactive surface area, and it can also better contact and diffuse with the antibacterial liquid, avoiding the formation of granular agglomerates, thereby ensuring the uniformity and consistency of the reaction.
[0033] The accelerating discharge device 5 includes a lead screw 51, a lead screw block 52, several fixing platforms 53 and four discharge scrapers 54. The lead screw 51 is fixedly installed at the bottom of the stirring blade rod 21. The lead screw block 52 is threadedly connected to the outer wall of the lead screw 51 and is slidably installed on the inner wall of the discharge pipe 13. The several fixing platforms 53 are respectively fixedly installed on the outer wall of the lead screw block 52. The discharge scrapers 54 prevent the stirred solution from adhering to the inner wall of the discharge, making the discharge smoother.
[0034] The accelerated discharge device 5 also includes a plurality of rotating wheels 55 and a plurality of pushing blades 56. Four discharge scrapers 54 are fixedly mounted on both sides of the top of a plurality of fixed platforms 53. The scrapers prevent the stirred solution from adhering to the inner wall of the discharge. A plurality of rotating wheels 55 are rotatably mounted on the top of a plurality of fixed platforms 53, and a plurality of rotating wheels 55 are in contact with the inner wall of the discharge pipe 13. A plurality of pushing blades 56 are rotatably mounted on the inner wall of a plurality of rotating wheels 55. The pushing blades 56 can discharge the material in the reactor quickly and efficiently, saving the discharge time and improving the production efficiency of the reactor. It can accelerate the flow speed of the material and reduce the flow resistance, making the discharge smoother.
[0035] When in use, the output end of the rotating motor drives the fixed straight rod 41 to rotate along the inner wall, and the fixed straight rod 41 drives the side scraper 44 to rotate. At the same time, the fixed straight rod 41 drives the L-shaped fixed rod 42 to rotate, and the L-shaped fixed rod 42 drives the side contact ball 43 to rotate. The side contact ball 43 contacts the bottom soft ball 33 and vibrates. The side scraper 44 is hinged to the fixed straight rod 41, and the side scraper 44 will vibrate slightly, so that the side scraper 44 can scrape off the residual stirring liquid on the side wall. At the same time, the fixed straight rod 41 drives the table 45 to rotate, and the table 45 drives the grinding roller 46 to roll at the bottom, so that the particle reactants precipitated at the bottom of the kettle can pass through the grinding roller. 46, grind it into powder, and then prevent it from adhering to the bottom through the scraper 47, which can refine and evenly disperse the particle reactants, increase the reaction surface area and contact effect, thereby improving the reaction rate and efficiency. The size of the particle reactants can also be reduced by grinding, effectively increasing the reactive active surface, and better contact and diffusion between it and the antibacterial liquid to avoid the formation of particle agglomerates, thereby ensuring the uniformity and consistency of the reaction. The grinding roller 46 drives the scraper 47 to rotate at the bottom, and the scraper 47 scrapes off the attachments on the bottom. The side scraper 44 can effectively prevent the reactants or products from adhering to and accumulating on the wall of the reactor.
[0036] After the stirring is completed, the switch of the discharge port is turned on, the output end of the rotating motor drives the screw 51 to rotate, the screw 51 drives the screw block 52 to move up and down, the screw block 52 drives the fixed platform 53 to move up and down, the fixed platform 53 drives the discharge scraper 54 to move up and down, the discharge scraper 54 scrapes the residual stirring liquid on the wall of the discharge pipe 13, and the discharge scraper 54 prevents the stirred solution from adhering to the inner wall of the discharge, so that the discharge is smoother and prevents it from clogging the discharge pipe 13, the fixed platform 53 drives the wheel 55 to move up and down, and the wheel 55 contacts the inner wall of the discharge pipe 13, the wheel 55 rotates, and the wheel 55 drives the push blade 56 to move up and down and rotate, and the push blade 56 can quickly and efficiently discharge the material in the reactor, saving the discharge time and improving the production efficiency of the reactor. It can accelerate the flow speed of the material and reduce the flow resistance.
[0037] It should be noted that in this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0038] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An antibacterial liquid reactor, comprising a reactor body (1), wherein an antibacterial liquid feed port (11) is arranged on the left side of the top of the reactor body (1), a reactant feed port (12) is arranged on the right side of the top of the reactor body (1), and a discharge pipe (13) is arranged at the bottom of the reactor body (1), characterized in that: The inner cavity of the reactor body (1) is provided with a stirring floating particle device (2), the top of the inner cavity of the reactor body (1) is provided with a top edge defoaming device (3), the inner wall of the reactor body (1) is provided with a wall scraping and grinding device (4), and the bottom of the inner cavity of the reactor body (1) is provided with an accelerating discharge device (5). The stirring floating particle device (2) comprises a stirring blade rod (21), two L-shaped fixing blocks (22), two C-shaped fixing blocks (25), two rollers (26) and a plurality of throwing floating blades (27). The rotating motor is fixedly mounted on the top of the reactor body (1). The stirring blade rod (21) The two L-shaped fixing blocks (22) are fixedly mounted at the bottom of the output end of the rotating motor, and a slide groove is provided inside the two L-shaped fixing blocks (22). The two L-shaped fixing blocks (22) are respectively fixedly mounted on one side of the stirring blade of the stirring blade rod (21). The two C-shaped fixing blocks (25) are respectively fixedly mounted on the bottom side walls of the two L-shaped fixing blocks (22). The two rollers (26) are respectively rotatably mounted on the side walls of the two C-shaped fixing blocks (25) away from the stirring blade rod (21). A plurality of floating blades (27) are respectively and evenly fixedly mounted on the side walls of the two rollers (26) close to the stirring blade rod (21). The top edge defoaming device (3) comprises a connecting rod (31), a round wheel (32), a plurality of bottom soft balls (33), a plurality of top soft balls (34) and a floating ring (35), wherein the connecting rod (31) is fixedly mounted on the outer wall of the stirring blade rod (21), the round wheel (32) is fixedly mounted on both ends of the connecting rod (31) away from the stirring blade rod (21), the plurality of bottom soft balls (33) are evenly and fixedly mounted on the top of the round wheel (32), the floating ring (35) is slidably mounted on the top of the inner cavity of the reactor, and the floating ring (35) is located above the round wheel (32), and the plurality of top soft balls (34) are fixedly mounted on the bottom of the floating ring (35), and the plurality of top soft balls (34) are located on the movement tracks of the plurality of bottom soft balls (33); The wall scraping and grinding device (4) comprises a fixed straight rod (41), two L-shaped fixed rods (42), two side contact balls (43) and two side scrapers (44), wherein the fixed straight rod (41) is fixedly mounted on the bottom of the round wheel (32), the two side scrapers (44) are respectively hinged on the outer wall of the fixed straight rod (41), the two L-shaped fixed rods (42) are respectively fixedly mounted on the side walls of the two side scrapers (44) away from the inner wall of the reactor body (1), and the two side contact balls (43) are respectively fixedly mounted on the side walls of the two L-shaped fixed rods (42) close to the inner wall of the reactor body (1); The accelerated discharge device (5) comprises a screw (51), a screw block (52) and a plurality of fixed platforms (53); the screw (51) is fixedly mounted on the bottom of the stirring blade rod (21); the screw block (52) is threadedly connected to the outer wall of the screw (51); the screw block (52) is slidably mounted on the inner wall of the discharge pipe (13); and the plurality of fixed platforms (53) are respectively fixedly mounted on the outer wall of the screw block (52).
2. The antibacterial liquid reaction kettle according to claim 1, characterized in that: The stirring floating particle device (2) further comprises two rotating shafts (23), two floating leaves (24), four hinge blocks (28) and two abutment rods (29); the two rotating shafts (23) are respectively slidably mounted in the slide grooves of the two L-shaped fixed blocks (22); the two floating leaves (24) are respectively fixedly mounted at the two ends of the two rotating shafts (23); the four hinge blocks (28) are respectively fixedly mounted at the bottom of the two floating leaves (24) and the side walls of the two rollers (26); one end of the two abutment rods (29) are respectively hingedly mounted on the hinge blocks (28) corresponding to the two floating leaves (24); and the other ends of the two abutment rods (29) are respectively hingedly mounted on the hinge blocks (28) corresponding to the two rollers (26).
3. The antibacterial liquid reaction kettle according to claim 1, characterized in that: The top edge defoaming device (3) further comprises a rotating ring (36) and a plurality of defoaming rotary knives (37); the rotating ring (36) is fixedly mounted on the top of the floating ring (35); and the plurality of defoaming rotary knives (37) are respectively fixedly mounted on the inner wall of the rotating ring (36).
4. The antibacterial liquid reaction kettle according to claim 1, characterized in that: The wall scraping and grinding device (4) further comprises a platform (45), a grinding roller (46) and a scraper (47); the platform (45) is fixedly mounted on the side wall at the bottom of the fixed straight rod (41); the grinding roller (46) is rotatably mounted on the bottom of the platform (45), and the grinding roller (46) is in contact with the bottom of the inner wall of the reactor body (1); and the scraper (47) is fixedly mounted on the bottom of the platform (45).
5. The antibacterial liquid reaction kettle according to claim 1, characterized in that: The accelerated discharge device (5) further comprises four discharge scrapers (54), a plurality of rotating wheels (55) and a plurality of pushing blades (56), wherein the four discharge scrapers (54) are respectively fixedly mounted on both sides of the top of the plurality of fixed platforms (53), the plurality of rotating wheels (55) are respectively rotatably mounted on the top of the plurality of fixed platforms (53), and the plurality of rotating wheels (55) are in contact with the inner wall of the discharge pipe (13), and the plurality of pushing blades (56) are respectively rotatably mounted on the inner walls of the plurality of rotating wheels (55).
Citation Information
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