Device and method for treating oxadixanone kettle bottom material

By designing a oxadixone kettle bottom material processing device and utilizing automated bottom plate scraping and negative pressure recovery technology, the problem of inconvenient cleaning of residual oxadixone crystals was solved, and safe and efficient kettle bottom material cleaning and waste gas recovery were achieved.

CN116440740BActive Publication Date: 2025-09-30ANHUI GUANGXIN CHENGCHEN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202310251928.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-16
Publication Date
2025-09-30
Estimated Expiration
2043-03-16

AI Technical Summary

Technical Problem

In the prior art, the residual oxathiapiprolin crystals on the inner wall of the configuration kettle are difficult to clean effectively, resulting in frequent production shutdowns and harm to workers' health, and the cleaning process is inconvenient.

Method used

A device for treating oxathiapiprolin kettle bottom material was designed, which included a kettle, a stirring component, a barrier air cushion component and a recovery component. Through automated bottom plate scraping and negative pressure recovery technology, the bottom material and waste gas in the kettle were cleaned in a closed manner.

Benefits of technology

The system realizes efficient and automatic cleaning of the oxathiapiprolin base material, avoids manual operation, ensures workshop safety, reduces the leakage of harmful gases, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a device for processing oxathiapiprolin kettle bottom material and a processing method thereof, comprising a configuration kettle, wherein the configuration kettle is a rectangular parallelepiped structure and a mixing chamber with a circular cross-section is opened inside, an inner horizontal plate is installed on the top of the inner part of the mixing chamber, the bottom of the inner horizontal plate is the mixing chamber, the top is the storage chamber, and a stirring assembly is installed inside the inner horizontal plate; a flexible barrier air cushion assembly is slidably installed on one side of the configuration kettle; the inlet end of the recovery assembly is connected to the probe assembly, the probe assembly passes through one end of the cover plate and the other end of the barrier air cushion assembly and the bottom end is always extended into the storage chamber; the end of the cover plate is connected to the bottom plate through a lifting assembly. S1, preparation of the agent: S2, cleaning of oxathiapiprolin kettle bottom material: when the cover plate of the present invention completes the opening action, the bottom plate also rises to the top of the mixing chamber, and automatically scrapes and aggregates the oxathiapiprolin kettle bottom material, with high cleaning efficiency, and no manual entry is required for scraping.
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Description

Technical Field

[0001] The invention relates to the technical field of pesticide production, and in particular to a device for processing oxadixone kettle bottom material and a processing method thereof. Background Art

[0002] Oxamethylenetetracycline is a chemical substance with the molecular formula C22H18N2O4. It is a broad-spectrum fungicide used primarily to control important diseases of Ascomycetes, Basidiomycetes, and Oomycetes, such as powdery mildew, rust, glumeman blight, web blotch, downy mildew, and early and late blight.

[0003] When used, oxathiapiprolin is often used in combination with other pesticides to produce pesticides with more comprehensive functions. During the composite preparation, due to the characteristics of oxathiapiprolin's own crystals, many oxathiapiprolin crystals are not fully mixed during mixing. These oxathiapiprolin crystals remain on the inner wall of the configuration kettle, forming oxathiapiprolin base material. The agent production line needs to be shut down regularly, and workers open the inspection window cover and hang it into the kettle through the inspection window for cleaning and recycling for subsequent reuse. However, manual cleaning is very troublesome and affects production. At the same time, oxathiapiprolin and other agents have irritating and harmful odors, resulting in the presence of more harmful gases in the kettle. Workers need to wear gas masks to enter, which is very inconvenient to operate and also has certain harm to the workers' health.

[0004] In summary, there is a need for a device and method for processing oxathiapiprolin kettle bottom materials that can quickly and harmlessly recover oxathiapiprolin bottom materials. Summary of the Invention

[0005] In view of the deficiencies in the prior art, the present invention provides a device for treating oxadixanone kettle bottom material and a treatment method thereof, which solve the problems mentioned in the background technology.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions:

[0007] The device for processing oxathiapiprolin kettle bottom material includes a configuration kettle, which is a rectangular parallelepiped structure and has a mixing chamber with a circular cross-section inside. An inner horizontal plate is installed on the top of the mixing chamber. The bottom of the inner horizontal plate is the mixing chamber and the top is the storage chamber. A stirring assembly is installed inside the inner horizontal plate. A discharge pipe connected to the mixing chamber is provided at the bottom of the side wall of the configuration kettle. A bottom plate is slidably installed inside the mixing chamber. A cleaning ring is vertically provided on the outer ring of the bottom plate. The top of the cleaning ring is conical. A cover plate is slidably installed on the top of the configuration kettle.

[0008] The configuration kettle is provided with a first support platform on one side and a second support platform on the other side; a recovery assembly is installed on the top of the first support platform, and an opening and closing drive assembly for driving the cover plate to move laterally is installed on the top of the second support platform; a flexible barrier air cushion assembly is slidably installed on one side of the configuration kettle; the inlet end of the recovery assembly is connected to the probe assembly, which passes through one end of the cover plate and the other end of the barrier air cushion assembly, and the bottom end of the probe assembly always extends into the storage cavity; the end of the cover plate is connected to the bottom plate through a lifting assembly;

[0009] The kettle is configured with two states: reaction and waste residue cleaning:

[0010] In the reaction state: the cover plate is closed on the top of the configuration kettle, the barrier air cushion assembly in a flexible and contracted state is stored and placed on the side wall of the configuration kettle, the bottom plate is placed on the bottom of the mixing chamber, and the probe assembly is placed on one side of the inner part of the storage chamber;

[0011] Waste slag cleaning state:

[0012] Step 1: The cover plate moves to the second support platform. While moving, the cover plate directly drives the barrier air cushion assembly in a flexible contracted state to above the opening of the configuration kettle. The cover plate drives the bottom plate upward through the lifting assembly. The upward moving bottom plate scrapes off the oxadiazonone base material on the inner wall of the mixing chamber;

[0013] Step 2: The barrier air cushion assembly is changed from an inflated state to a saturated state to block the opening of the configuration kettle; the inlet end of the probe assembly extends into the bottom plate; the negative pressure of the probe assembly absorbs the oxadiazon base material on the bottom plate and the waste gas in the storage cavity, so that the oxadiazon base material and waste gas are recovered into the recovery assembly.

[0014] Furthermore, the barrier air cushion assembly includes a traction motor, a movable frame, and an air cushion body; a side sliding seat is provided on the side wall of the configuration kettle near the first support platform, and a receiving groove is provided at the end of the cover plate near the side sliding seat. One end of the air cushion body is fixed to the movable frame and the other end is fixedly embedded in the receiving groove. The movable frame is slidably installed on the outer wall of the side sliding seat, and the bottom end of the movable frame is connected to the traction motor through a traction rope, and the traction motor is arranged at the bottom of the side wall of the configuration kettle; a hollow cavity is provided inside the air cushion body, and an air injection head connected to the hollow cavity is provided on the surface of the air cushion body. The air injection head is connected to the vacuum pump through a hose, and the vacuum pump is arranged on the cover plate.

[0015] Furthermore, an upper ring body is provided at the top of the other end of the hollow cavity and a lower ring body is provided at the bottom. The probe assembly is fixed from top to bottom through the upper ring body, the hollow cavity, and the lower ring body. The probe assembly is vertically fixed through the cover plate.

[0016] Furthermore, the upper layer of the saturated air cushion body is the upper sealing part, and the lower layer is the lower sealing part. The lower sealing part is embedded in the top opening of the configuration kettle, and the upper sealing part is sealed and shielded from the top surface of the configuration kettle.

[0017] Furthermore, the probe assembly includes an outer tube body, a movable tube, and a lifting motor. The outer tube body is fixedly penetrated through the cover plate, slidably penetrated through the upper ring body, and fixedly penetrated through the lower ring body. The inner part of the outer tube body is concentrically spaced with movable tubes, which penetrate vertically and slide through the outer tube body. The outer tube body is a closed upper part and open bottom structure. An air guide channel is provided between the outer tube body and the movable tube. An exhaust gas output pipe is vertically provided on the top of the side wall of the outer tube body. The air guide channel is connected to the exhaust gas output pipe, and the top of the movable tube is connected to the waste material output pipe.

[0018] The bottom ends of the outer tube body and the movable tube are both extended into the storage cavity, and the bottom end of the movable tube extends downward and outward from the outer tube body; the side wall of the outer tube body is provided with a tooth groove, and the output part of the lifting motor is engaged and connected to the outer tube body, and the lifting motor is arranged on the cover plate; the lifting motor is used to drive the movable tube to move downward to pass through the inner horizontal plate into the mixing cavity, and move upward to be retracted.

[0019] Furthermore, the lifting assembly includes a main traction rope, a first auxiliary traction rope and a second auxiliary traction rope. An interlayer cavity is opened inside the kettle. The top end of the main traction rope is connected to the cover plate. The main traction rope turns and passes through the interlayer cavity and then enters the inner horizontal plate. The tail end of the main traction rope is connected in parallel with the first auxiliary traction rope and the second auxiliary traction rope, and the bottom ends of the first auxiliary traction rope and the second traction rope are both connected to the bottom plate.

[0020] Furthermore, the stirring assembly includes a stirring motor, a main shaft, an upper stirring rod and a lower stirring rod. The stirring motor is arranged at the center of the top surface of the inner horizontal plate. The bottom output end of the stirring motor is connected to the main shaft. The bottom end of the main shaft is rotatably placed on the inner bottom surface of the configuration kettle. The bottom of the outer wall of the main shaft is provided with staggered lower stirring rods. The lower stirring rods are rotatably connected to the main shaft and a torsion spring is installed at the rotating connection. The side wall of the main shaft is provided with a groove for the lower stirring rod to be retracted. The upper stirring rod is symmetrically fixed on the top of the outer wall of the main shaft; the bottom plate slides vertically along the outer wall of the main shaft, and the upper stirring rod is used to stir the oxathiapiprolin base material in the bottom plate when it is at the top.

[0021] Furthermore, the recycling component includes a waste recovery box, a waste gas recovery box and a hose bracket. The waste recovery box, the waste gas recovery box and the hose bracket are all arranged on the second support platform. The top surface of the waste recovery box is provided with a suction pump, and the inlet of the suction pump is connected to the waste hose. The top surface of the waste gas recovery box is provided with an air pump, and the inlet of the air pump is connected to the waste hose. The waste hose passes through the bottom of the hose bracket and is connected to the waste output pipe. The waste hose passes through the top of the hose bracket and is connected to the waste output pipe.

[0022] A method for treating a famoxadone kettle bottom material treatment device, the method comprising the following steps:

[0023] S1. Preparation of medicine:

[0024] Add 20%-30% of famoxadone and other raw materials into the preparation kettle through the feeding pipe;

[0025] The stirring component works to fully mix famoxadone with other raw materials;

[0026] The mixed and prepared required medicine is discharged through the discharge pipe:

[0027] S2. Cleaning of famoxadone base material:

[0028] The opening and closing drive assembly drives the cover plate to move to the first support platform; at the same time, the cover plate drives the barrier air cushion assembly in a flexible contracted state to above the opening of the configuration kettle; the cover plate drives the bottom plate upward through the lifting assembly, and the upward moving bottom plate scrapes off the oxadiazonone base material on the inner wall of the mixing chamber. As the bottom plate moves upward, it squeezes each lower stirring rod into the groove; the probe assembly moves to the other side of the storage chamber. When the cover plate is fully opened, the bottom plate moves to above the mixing chamber, and the upper stirring rod is placed on the bottom plate;

[0029] The lifting motor drives the movable tube to move downward, so that the movable tube passes through the inner horizontal plate and then extends into the bottom plate;

[0030] The air cushion body is inflated to a saturated state, and the air cushion body blocks the opening of the configuration kettle to prevent the exhaust gas from escaping;

[0031] The recovery component and the probe component work synchronously, and the waste gas in the storage chamber and the oxathiapiprolin base material on the bottom plate are drawn out by negative pressure.

[0032] The present invention provides a device and method for treating oxadixanone kettle bottom material. Compared with the prior art, it has the following beneficial effects:

[0033] 1. During the reaction stage, the famoxadone bottom material accumulates on the inner wall of the mixing chamber and above the bottom plate. When the cover is opened, the bottom plate can be driven upward by the lifting component. When the bottom plate moves upward, it will drive the famoxadone bottom material on it to move upward and simultaneously scrape the famoxadone bottom material on the inner wall of the kettle through the cleaning ring. When the cover is opened, the bottom plate also rises to the top of the mixing chamber, automatically scraping and gathering the famoxadone bottom material, with high cleaning efficiency and no need for manual entry for scraping;

[0034] 2. When the cover is opened, it will also drive the barrier air cushion assembly to move to the top of the opening of the configuration kettle, so that the barrier air cushion assembly can cover the configuration kettle opening and complete pre-positioning. Subsequently, the barrier air cushion assembly is inflated to block the configuration kettle opening, so that during the waste and exhaust gas suction stage, the harmful gases in the kettle can be blocked to the greatest extent and will not be dispersed into the workshop in large quantities, thereby ensuring the health of the workers in the workshop; a retractable and expandable air cushion is used as a blocking structure. During the sealing and pre-positioning stages, the barrier air cushion assembly can be in a flexible and contracted state to ensure that the barrier air cushion assembly can be moved to the required position; after being in place, it will expand again to ensure the sealing of the opening;

[0035] 3. The bottom end of the probe assembly can extend to the bottom plate, so that negative pressure attracts the waste on the bottom plate to the recovery assembly, realizing automatic recovery of the waste. The entire recovery process is carried out in a closed environment, which is safe and reliable and does not require the participation of workers. At the same time, the waste gas in the storage chamber will also enter the recovery assembly through the probe assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0037] Figure 1 It shows a schematic structural diagram of the configuration kettle and the cover plate of the present invention in a blocked state;

[0038] Figure 2 Shown Figure 1 Schematic diagram of the storage structure of the uninflated air cushion body;

[0039] Figure 3 Shown Figure 2 A schematic diagram of the partial structure of the air cushion body in the receiving groove;

[0040] Figure 4 Shows a schematic structural diagram of the stirring assembly of the present invention;

[0041] Figure 5 The figure shows the overall structure of the configuration kettle of the present invention in the state where the cover plate is opened;

[0042] Figure 6 It shows a schematic cross-sectional structure diagram of the configuration kettle of the present invention with the cover plate opened;

[0043] Figure 7 Shown Figure 6 A structural diagram of an inflated air cushion body embedded in a receiving groove;

[0044] Figure 8 It shows a schematic structural diagram of the waste material and waste gas suction state in the configuration kettle of the present invention;

[0045] As shown in the figure: 1. Configuration kettle; 11. Discharge pipe; 12. Side sliding seat; 13. Interlayer cavity; 2. Cover plate; 21. Feeding pipe; 22. Rack; 23. Receiving groove; 3. Inner horizontal plate; 31. Perforation; 4. Stirring assembly; 41. Stirring motor; 42. Spindle; 43. Upper stirring rod; 44. Lower stirring rod; 5. Barrier air cushion assembly; 51. Traction motor; 511. Traction rope; 52. Movable frame; 53. Air cushion body; 531. Upper ring body; 532. Lower ring body; 533. Gas injection head; 534. Hollow cavity; 5341. Upper sealing part; 53 42. Lower sealing part; 54. Vacuum pump; 6. Probe assembly; 61. Outer tube body; 611. Exhaust gas output pipe; 62. Movable tube; 621. Waste material output pipe; 63. Lifting motor; 7. Lifting assembly; 71. Main traction rope; 72. First auxiliary traction rope; 73. Second auxiliary traction rope; 8. Recovery assembly; 81. First support platform; 82. Waste material recovery box; 821. Waste hose; 83. Exhaust gas recovery box; 831. Exhaust gas hose; 84. Hose bracket; 9. Bottom plate; 91. Cleaning ring; 9a. Second support platform; 9b. Opening and closing motor. DETAILED DESCRIPTION

[0046] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0047] Example 1

[0048] In order to solve the technical problems in the background technology, the following famoxadone kettle bottom material processing device and processing method are provided:

[0049] Combine Figures 1-8 As shown, the present invention provides a device for processing oxathiapiprolin kettle bottom material and a processing method thereof, comprising a configuration kettle 1, the configuration kettle 1 having a rectangular structure and a mixing chamber with a circular cross-section opened inside, an inner transverse plate 3 installed on the top of the interior of the mixing chamber, the bottom of the inner transverse plate 3 being the mixing chamber and the top being the storage chamber, a stirring assembly 4 installed inside the inner transverse plate 3, a discharge pipe 11 communicating with the mixing chamber is provided at the bottom of the side wall of the configuration kettle 1, a bottom plate 9 is fitted and slidably installed inside the mixing chamber, a cleaning ring 91 is vertically provided on the outer ring of the surface of the bottom plate 9, the top of the cleaning ring 91 is conical, and a cover plate 2 is installed on the top of the configuration kettle 1 for horizontal sliding;

[0050] A first support platform 81 is provided on one side of the configuration kettle 1, and a second support platform 9a is provided on the other side. A recovery assembly 8 is installed on the top of the first support platform 81, and an opening and closing drive assembly for driving the cover plate 2 to move laterally is installed on the top of the second support platform 9a. A flexible barrier air cushion assembly 5 is slidably installed on one side of the configuration kettle 1. The inlet end of the recovery assembly 8 is connected to the probe assembly 6, which passes through one end of the cover plate 2 and the other end of the barrier air cushion assembly 5, and the bottom end of the probe assembly 6 always extends into the storage cavity. The end of the cover plate 2 is connected to the bottom plate 9 through the lifting assembly 7.

[0051] The configuration kettle 1 has two states: reaction and waste residue cleaning:

[0052] In the reaction state: the cover plate 2 is closed on the top of the configuration kettle 1, the barrier air cushion assembly 5 in a flexible and contracted state is accommodated on the side wall of the configuration kettle 1, the bottom plate 9 is placed on the bottom of the mixing chamber, and the probe assembly 6 is placed on one side of the inner portion of the storage chamber;

[0053] Waste slag cleaning state:

[0054] Step 1: The cover plate 2 moves to the second supporting platform 9a. While moving, the cover plate 2 directly drives the barrier air cushion assembly 5 in the flexible contracted state to above the opening of the configuration kettle 1. The cover plate 2 drives the bottom plate 9 upward through the lifting assembly 7. The upward moving bottom plate 9 scrapes off the famoxadone base material on the inner wall of the mixing chamber;

[0055] Step 2: The barrier air cushion assembly 5 is changed from an inflated state to a saturated state to block the opening of the configuration kettle 1; the inlet end of the probe assembly 6 extends into the bottom plate 9; the probe assembly 6 negatively absorbs the oxadiazon base material on the bottom plate 9 and the waste gas in the storage cavity, so that the oxadiazon base material and waste gas are recovered into the recovery assembly 8.

[0056] After the pesticide production is completed, the cover plate 2 needs to be opened to clean the famoxadone base material. Through the above solution, the following effects can be achieved while the cover plate 2 is open:

[0057] 4. During the reaction stage, the oxathiapiprolin base material accumulates on the inner wall of the mixing chamber and above the bottom plate 9. When the cover plate 2 is opened, the bottom plate 9 can be driven upward by the lifting component 7. When the bottom plate 9 moves upward, it will drive the oxathiapiprolin base material on it to move upward and simultaneously scrape the oxathiapiprolin base material on the inner wall of the kettle through the cleaning ring 91. When the cover plate 2 completes the opening action, the bottom plate 9 also rises to the top of the mixing chamber, automatically scraping and gathering the oxathiapiprolin kettle bottom material, with high cleaning efficiency and no need for manual entry for scraping;

[0058] 5. When the cover plate 2 is opened, it will also drive the barrier air cushion assembly 5 to move to the top of the opening of the configuration kettle 1, so that the barrier air cushion assembly 5 can cover the opening of the configuration kettle 1 and complete the pre-positioning. Subsequently, the barrier air cushion assembly 5 is inflated to block the opening of the configuration kettle 1, so that during the waste and exhaust gas suction stage, the harmful gases in the kettle can be blocked to the greatest extent and will not be dispersed into the workshop in large quantities, thereby ensuring the health of the workers in the workshop; a retractable and expandable air cushion is used as a blocking structure. During the sealing and pre-positioning stages, the barrier air cushion assembly 5 can be in a flexible contracted state to ensure that the barrier air cushion assembly 5 can be moved to the desired position; after being in place, it expands again to ensure the sealing of the opening;

[0059] 6. The bottom end of the probe assembly 6 can extend to the bottom plate 9, so that the negative pressure attracts the waste on the bottom plate 9 to the recovery assembly 8, realizing the automatic recovery of the waste. The entire recovery process is carried out in a closed environment, which is safe and reliable and does not require the participation of workers. At the same time, the exhaust gas in the storage chamber will also enter the recovery assembly 8 through the probe assembly 6.

[0060] Example 2

[0061] like Figure 2 and Figure 3 、 Figure 7 As shown, based on the above embodiment, this embodiment further provides the following content:

[0062] In order to enable the barrier air cushion assembly 5 to achieve the above-mentioned functions of expansion, contraction, resetting and sealing, the following solution is provided:

[0063] In this embodiment, the barrier air cushion assembly 5 includes a traction motor 51, a movable frame 52, and an air cushion body 53; a side sliding seat 12 is provided on the side wall of the configuration kettle 1 near the first support platform 81, and a receiving groove 23 is provided at the end of the cover plate 2 near the side sliding seat 12. One end of the air cushion body 53 is fixed to the movable frame 52, and the other end is fixedly embedded in the receiving groove 23. The movable frame 52 is slidably installed on the outer wall of the side sliding seat 12. The bottom end of the movable frame 52 is connected to the traction motor 51 through a traction rope 511, and the traction motor 51 is arranged at the bottom of the side wall of the configuration kettle 1; a hollow cavity 534 is provided inside the air cushion body 53, and a gas injection head 533 connected to the hollow cavity 534 is provided on the surface of the air cushion body 53. The gas injection head 533 is connected to the vacuum pump 54 through a hose, and the vacuum pump 54 is arranged on the cover plate 2.

[0064] The air cushion body 53 is an expandable sealed main body structure, and the movable frame 52 can constrain and position the air cushion body 53 from one end. When the cover plate 2 is reset, the traction motor 51 can drive the air cushion body 53 to retract; the accommodating groove 23 and the movable frame 52 can be constrained from both ends to ensure the inflation and molding effect of the air cushion body 53.

[0065] In this embodiment, an upper ring body 531 is provided at the top of the other end of the interior of the hollow cavity 534, and a lower ring body 532 is provided at the bottom. The probe assembly 6 is fixed from top to bottom through the upper ring body 531, the hollow cavity 534, and the lower ring body 532. The probe assembly 6 is vertically fixed through the cover plate 2.

[0066] In this embodiment, the upper layer of the saturated air cushion body 53 is the upper sealing part 5341, and the lower layer is the lower sealing part 5342. The lower sealing part 5342 is embedded in the top opening of the configuration kettle 1, and the upper sealing part 5341 is sealed and blocked on the top surface of the configuration kettle 1.

[0067] The air cushion body 53 is designed to be divided into two parts, the lower sealing part 5342 can be embedded and sealed, and the upper sealing part 5341 can block and block a large area to prevent harmful gases from being exposed.

[0068] Example 3

[0069] like Figures 1-8 As shown, based on the above embodiment, this embodiment further provides the following content:

[0070] In order to enable the probe assembly 6 to achieve the above-mentioned function of simultaneously sucking waste gas and waste materials, and to be adjustable according to the needs of the action, the following solution is given:

[0071] In this embodiment, the probe assembly 6 includes an outer tube body 61, a movable tube 62, and a lifting motor 63. The outer tube body 61 is fixedly penetrated through the cover plate 2, slidably penetrated through the upper ring body 531, and fixedly penetrated through the lower ring body 532. The inner concentric intervals of the outer tube body 61 are provided with movable tubes 62, which are movable and vertically slide through the outer tube body 61. The outer tube body 61 is a closed upper part and an open bottom structure. An air guide channel is provided between the outer tube body 61 and the movable tube 62. An exhaust gas output pipe 611 is vertically provided at the top of the side wall of the outer tube body 61. The air guide channel is connected to the exhaust gas output pipe 611, and the top of the movable tube 62 is connected to the waste material output pipe 621.

[0072] The bottom ends of the outer tube body 61 and the movable tube 62 are both extended into the storage cavity, and the bottom end of the movable tube 62 extends downward and outward from the outer tube body 61; the side wall of the outer tube body 61 is provided with a tooth groove, and the output part of the lifting motor 63 is engaged and connected to the outer tube body 61, and the lifting motor 63 is arranged on the cover plate 2; the lifting motor 63 is used to drive the movable tube 62 to move downward to pass through the inner horizontal plate 3 into the mixing cavity, and move upward to be folded.

[0073] The cover plate 2 is provided with a through hole 31 for the outer tube body 61 to pass through. Since the bottom plate 9 is blocked by the inner horizontal plate 3, it can only move to the bottom of the inner horizontal plate 3. Therefore, the problem can be solved by driving the movable tube 62 through the through hole 31 and entering the bottom plate 9 through the lifting motor 63 to achieve waste suction, and the air guide channel can absorb the waste gas in the storage chamber.

[0074] In this embodiment, the lifting assembly 7 includes a main traction rope 71, a first auxiliary traction rope 72 and a second auxiliary traction rope 73. An interlayer cavity 13 is opened inside the kettle 1. The top end of the main traction rope 71 is connected to the cover plate 2. The main traction rope 71 turns and passes through the interlayer cavity 13 and then enters the inner cross plate 3. The tail end of the main traction rope 71 is connected in parallel with the first auxiliary traction rope 72 and the second auxiliary traction rope 73. The bottom ends of the first auxiliary traction rope 72 and the second traction rope are both connected to the bottom plate 9.

[0075] Through the above scheme, when the cover plate 2 moves, the base plate 9 is pulled up and down by the main traction rope 71, the first auxiliary traction rope 72, and the second auxiliary traction rope 73. When the cover plate 2 is reset, the base plate 9 can drive the main traction rope 71, the first auxiliary traction rope 72, and the second auxiliary traction rope 73 to reset under its own weight.

[0076] In this embodiment, the stirring assembly 4 includes a stirring motor 41, a main shaft 42, an upper stirring rod 43 and a lower stirring rod 44. The stirring motor 41 is arranged at the center of the top surface of the inner horizontal plate 3, and the bottom output end of the stirring motor 41 is connected to the main shaft 42. The bottom end of the main shaft 42 is rotatably placed on the inner bottom surface of the configuration kettle 1. The bottom of the outer wall of the main shaft 42 is provided with staggered lower stirring rods 44. The lower stirring rods 44 are rotatably connected to the main shaft 42 and a torsion spring is installed at the rotating connection. The side wall of the main shaft 42 is provided with a groove for the lower stirring rod 44 to be retracted. The upper stirring rod 43 is symmetrically fixed on the top of the outer wall of the main shaft 42; the bottom plate 9 slides vertically along the outer wall of the main shaft 42, and the upper stirring rod 43 is used to stir the oxadiazon base material in the bottom plate 9 when it is at the top.

[0077] The lower stirring rod 44 can be retracted into the groove when it is rotated upward or downward, so that when the bottom plate 9 moves up and down, the stirring component 4 will not block the bottom plate 9 and the two will not interfere with each other; the upper stirring rod 43 can stir the oxadiazole base material in the bottom plate 9 and speed up the outflow speed of the oxadiazole base material.

[0078] In this embodiment, the recycling component 8 includes a waste recovery box 82, a waste gas recovery box 83 and a hose bracket 84. The waste recovery box 82, the waste gas recovery box 83 and the hose bracket 84 are all arranged on the second support platform 9a. The top surface of the waste recovery box 82 is provided with a suction pump, and the inlet of the suction pump is connected to the waste hose 821. The top surface of the waste gas recovery box 83 is provided with an air pump, and the inlet of the air pump is connected to the waste hose 831. The waste hose 831 passes through the bottom of the hose bracket 84 and is connected to the waste gas output pipe 611. The waste hose 821 passes through the top of the hose bracket 84 and is connected to the waste output pipe 621.

[0079] The waste recovery box 82 and the waste gas recovery box 83 can collect waste and waste gas under negative pressure, which is convenient for workers to handle in a centralized manner later; the hose bracket 84 can support the waste gas hose 831 and the waste hose 821 to prevent the hose from falling too much and ensure the smooth movement of the hose. The hose bracket 84 is equipped with a traction wheel that can rotate to drive the hose to be retracted.

[0080] The opening and closing drive assembly includes an opening and closing motor 9b. A rack 22 is provided on the side of the cover plate 2. The output end of the opening and closing motor 9b is connected to the rack 22 through gear meshing.

[0081] The working principle and use process of the present invention:

[0082] S1. Preparation of medicine:

[0083] 20%-30% of famoxadone and other raw materials are added into the preparation kettle 1 through the feeding pipe 21;

[0084] The stirring component 4 works to fully mix famoxadone with other raw materials;

[0085] The mixed and prepared desired medicine is discharged through the discharge pipe 11:

[0086] S2. Cleaning of famoxadone base material:

[0087] The opening and closing drive assembly drives the cover plate 2 to move onto the first support platform 81; at the same time, the cover plate 2 drives the flexible and contracted barrier air cushion assembly 5 to the top of the opening of the configuration kettle 1; the cover plate 2 drives the bottom plate 9 upward through the lifting assembly 7, and the upward moving bottom plate 9 scrapes the oxadiazonone base material on the inner wall of the mixing chamber. When the bottom plate 9 moves upward, it squeezes each lower stirring rod 44 into the groove; the probe assembly 6 moves to the other side of the storage chamber. When the cover plate 2 is fully opened, the bottom plate 9 moves to the top of the mixing chamber, and the upper stirring rod 43 is placed on the bottom plate 9;

[0088] The lifting motor 63 drives the movable tube 62 to move downward, so that the movable tube 62 passes through the inner horizontal plate 3 and then extends into the bottom plate 9;

[0089] The air cushion body 53 is inflated to a saturated state, and the air cushion body 53 blocks the opening of the configuration kettle 1 to prevent the exhaust gas from escaping;

[0090] The recovery component 8 and the probe component 6 work synchronously, and the waste gas in the storage chamber and the famoxadone base material on the bottom plate 9 are extracted by negative pressure;

[0091] S3, reset:

[0092] The gas in the air cushion body 53 is discharged;

[0093] The lifting motor 63 drives the movable tube 62 to return upward and retract;

[0094] The opening and closing drive assembly drives the cover plate 2 to return to the configuration kettle 1; the winding motor simultaneously pulls the air cushion body 53 in the flexible contracted state, so that the gas body is stored in the side of the configuration kettle 1; the bottom plate 9 falls to the inner bottom of the configuration kettle 1.

[0095] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.

[0096] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A device for treating the bottom material of a famoxadone kettle, characterized in that: The configuration kettle comprises a rectangular parallelepiped structure with a mixing chamber with a circular cross section provided inside, an inner horizontal plate installed on the top of the mixing chamber, the bottom of the inner horizontal plate being the mixing chamber and the top being the storage chamber, a stirring assembly installed inside the inner horizontal plate, a discharge pipe communicating with the mixing chamber being provided at the bottom of the side wall of the configuration kettle, a bottom plate being fitted and slidably installed inside the mixing chamber, a cleaning ring being vertically provided on the outer ring of the surface of the bottom plate, the top of the cleaning ring being conical, and a cover plate being laterally slidably installed on the top of the configuration kettle; The configuration kettle is provided with a first support platform on one side and a second support platform on the other side; a recovery assembly is installed on the top of the first support platform, and an opening and closing drive assembly for driving the cover plate to move laterally is installed on the top of the second support platform; a flexible barrier air cushion assembly is slidably installed on one side of the configuration kettle; the inlet end of the recovery assembly is connected to the probe assembly, which passes through one end of the cover plate and the other end of the barrier air cushion assembly, and the bottom end of the probe assembly always extends into the storage cavity; the end of the cover plate is connected to the bottom plate through a lifting assembly; The barrier air cushion assembly includes a traction motor, a movable frame, and an air cushion body; a side sliding seat is provided on the side wall of the configuration kettle near the first support platform, and a receiving groove is provided on the end of the cover plate near the side sliding seat. One end of the air cushion body is fixed to the movable frame, and the other end is fixedly embedded in the receiving groove. The movable frame is slidably installed on the outer wall of the side sliding seat, and the bottom end of the movable frame is connected to the traction motor through a traction rope. The traction motor is arranged at the bottom of the side wall of the configuration kettle; a hollow cavity is provided inside the air cushion body, and an air injection head connected to the hollow cavity is provided on the surface of the air cushion body. The air injection head is connected to a vacuum pump through a hose, and the vacuum pump is arranged on the cover plate; An upper ring body is provided at the top of the other end of the interior of the hollow cavity, and a lower ring body is provided at the bottom end. The probe assembly is fixed from top to bottom through the upper ring body, the hollow cavity, and the lower ring body. The probe assembly is vertically fixed through the cover plate; The upper layer of the saturated air cushion body is the upper sealing part, and the lower layer is the lower sealing part. The lower sealing part is embedded in the top opening of the configuration kettle, and the upper sealing part is sealed and shielded from the top surface of the configuration kettle. The probe assembly includes an outer tube body, a movable tube, and a lifting motor. The outer tube body is fixedly penetrated through the cover plate, slidably penetrated through the upper ring body, and fixedly penetrated through the lower ring body. The inner concentric intervals of the outer tube body are provided with movable tubes, which are movable and vertically slide through the outer tube body. The outer tube body is a closed upper part and an open bottom structure. An air guide channel is provided between the outer tube body and the movable tube. An exhaust gas output pipe is vertically provided on the top of the side wall of the outer tube body. The air guide channel is connected to the exhaust gas output pipe, and the top of the movable tube is connected to the waste material output pipe. The bottom ends of the outer tube body and the movable tube are both inserted into the storage chamber, and the bottom end of the movable tube extends downwardly outward from the outer tube body; a tooth groove is provided on the side wall of the outer tube body, and the output portion of the lifting motor is engaged with the outer tube body, and the lifting motor is arranged on the cover plate; the lifting motor is used to drive the movable tube to move downward to pass through the inner horizontal plate into the mixing chamber, and move upward to be retracted; The kettle is configured with two states: reaction and waste residue cleaning: In the reaction state: the cover plate is closed on the top of the configuration kettle, the barrier air cushion assembly in a flexible and contracted state is stored and placed on the side wall of the configuration kettle, the bottom plate is placed on the bottom of the mixing chamber, and the probe assembly is placed on one side of the inner part of the storage chamber; In the waste residue cleaning state: step 1, the cover plate moves to the second support platform. While moving, the cover plate directly drives the barrier air cushion assembly in the flexible contracted state to above the opening of the configuration kettle. The cover plate drives the bottom plate to move upward through the lifting assembly. The upward moving bottom plate scrapes off the oxadiazole base material on the inner wall of the mixing chamber; step 2, the barrier air cushion assembly changes from an inflated state to a saturated state to seal the opening of the configuration kettle; the inlet end of the probe assembly extends into the bottom plate; the negative pressure of the probe assembly absorbs the oxadiazole base material on the bottom plate and the waste gas in the storage chamber, so that the oxadiazole base material and waste gas are recovered into the recovery assembly.

2. The famoxadone kettle bottom material processing device according to claim 1, characterized in that: The lifting assembly includes a main traction rope, a first auxiliary traction rope and a second auxiliary traction rope. An interlayer cavity is opened inside the configuration kettle. The top end of the main traction rope is connected to the cover plate. The main traction rope turns and passes through the interlayer cavity and then enters the inner horizontal plate. The tail end of the main traction rope is connected in parallel with the first auxiliary traction rope and the second auxiliary traction rope. The bottom ends of the first auxiliary traction rope and the second traction rope are both connected to the bottom plate.

3. The famoxadone kettle bottom material processing device according to claim 2, characterized in that: The stirring assembly includes a stirring motor, a main shaft, an upper stirring rod and a lower stirring rod. The stirring motor is arranged at the center of the top surface of the inner horizontal plate. The bottom output end of the stirring motor is connected to the main shaft. The bottom end of the main shaft is rotatably placed on the inner bottom surface of the configuration kettle. The bottom of the outer wall of the main shaft is provided with staggered lower stirring rods. The lower stirring rods are rotatably connected to the main shaft and a torsion spring is installed at the rotating connection. The side wall of the main shaft is provided with a groove for the lower stirring rod to be retracted. The upper stirring rod is symmetrically fixedly installed on the top of the outer wall of the main shaft; the bottom plate slides vertically along the outer wall of the main shaft, and the upper stirring rod is used to stir the oxadiazonone base material in the bottom plate when it is at the top.

4. The method for treating the famoxadone kettle bottom material treating device according to claim 3, wherein: The processing method comprises the following steps: S1. Preparation of the agent: 20%-30% of famoxadone and other raw materials are added to the preparation kettle through the feeding pipe; the stirring component is operated to drive the famoxadone and other raw materials to be fully mixed; the desired agent prepared by the mixing is discharged through the discharge pipe; S2. Cleaning the oxadiazonone base material: The opening and closing drive assembly drives the cover plate to move to the first support platform; at the same time, the cover plate drives the barrier air cushion assembly in a flexible contracted state to above the opening of the configuration kettle; the cover plate drives the bottom plate upward through the lifting assembly, and the upward moving bottom plate scrapes the oxadiazonone base material on the inner wall of the mixing chamber. As the bottom plate moves upward, it squeezes each lower stirring rod into the groove; the probe assembly moves to the other side of the storage chamber. When the cover plate is fully opened, the bottom plate moves to the top of the mixing chamber, and the upper stirring rod is placed on the bottom plate; The lifting motor drives the movable tube to move downward, so that the movable tube passes through the inner horizontal plate and then extends into the bottom plate; the air cushion body is inflated to a saturated state, and the air cushion body blocks the opening of the configuration kettle to prevent the exhaust gas from overflowing; the recovery component and the probe component work synchronously, and the negative pressure draws out the exhaust gas from the storage chamber and the oxathiapiprolin base material on the bottom plate.

Citation Information

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