Preparation reaction device and preparation method of rice anti-premature senility nutritional agent nutrient solution

By designing a reaction barrel including a fixed bottom barrel and a rotating top barrel, a stirring structure with a central rotating rack, a servo motor, a step cloth rack and a bucket top auxiliary structure, the problems of single stirring form and insufficient applicability in the prior art are solved, and uniform stirring and efficient preparation effects in the preparation process of rice anti-premature aging nutrient solution are achieved.

CN119955593AActive Publication Date: 2025-05-09ZHEJIANG UNIV
View PDF 9 Cites 0 Cited by

Patent Information

Application Number
CN202510456567.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-12
Publication Date
2025-05-09
Estimated Expiration
2045-04-12

AI Technical Summary

Technical Problem

The stirring form of the existing rice anti-premature aging nutrient solution preparation reaction device is relatively single, and its practicality needs to be improved. It is also insufficient in the matching and applicability of the rice anti-premature aging nutrient solution preparation reaction process.

Method used

A reaction barrel including a fixed bottom barrel and a rotating top barrel is designed, and a stirring structure with a central rotating frame, a servo motor, a step cloth rack and a bucket top auxiliary structure. The central rotating frame is driven by a servo motor to rotate, and the step cloth rack and a bucket top auxiliary structure is combined with the step cloth rack and a barrel top auxiliary structure to achieve uniform fabric and auxiliary stirring of the nutrient solution.

Benefits of technology

The more uniform stirring effect in the preparation process of rice anti-premature aging nutrient solution is achieved, which reduces the impact of microbial growth and improves the reliability and practicality of the preparation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119955593A_ABST
    Figure CN119955593A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of preparation of nutritional agent nutrient solutions, and provides a preparation reaction device and a preparation method of a rice anti-premature-senility nutritional agent nutrient solution, the stirring form is milder, and on the premise that the rice anti-premature-senility nutritional agent nutrient solution is prepared more uniformly, the rice anti-premature-senility nutritional agent nutrient solution can be prepared more uniformly. The rice anti-premature senility nutrient solution has small influence on growth of microorganisms in the preparation reaction process of the rice anti-premature senility nutrient solution, is more reliable and practical, and comprises a reaction barrel and an in-barrel stirring structure, the reaction barrel comprises a fixed bottom barrel and a rotary top barrel, and the fixed bottom barrel and the rotary top barrel are rotationally connected with each other; a discharging opening and a feeding opening are formed in the side wall of the fixed bottom barrel and the top wall of the rotating top barrel correspondingly, an arc-shaped sealing door and a circular sealing door are installed on the discharging opening and the feeding opening correspondingly, the in-barrel stirring structure comprises a center rotating frame, a penetrating opening is formed in the bottom end of the fixed bottom barrel, and the center rotating frame is rotationally connected with the penetrating opening; a servo motor is installed at the bottom end of the fixed bottom barrel and used for driving the center rotating frame to rotate.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of nutrient solution preparation of a nutrient agent, and in particular to a reaction device and a manufacturing method for preparing a nutrient solution of a rice anti-premature aging nutrient agent. Background Art

[0002] As is known to all, the reaction device for preparing the nutrient solution of the anti-premature aging nutrient for rice is a container for realizing the material mixing and fermentation reaction in the process of preparing the nutrient solution of the anti-premature aging nutrient for rice.

[0003] After searching, Chinese patent application number CN202411603527.3 and Chinese patent application number CN202223331472.4 respectively disclose a microbial nutrient solution preparation reaction device and its manufacturing method and a carbon capture-microalgae nutrient solution preparation device, wherein the former is roughly described as including a reaction barrel, a heater fixedly arranged in the reaction barrel, a crushing mechanism arranged on the upper side of the reaction barrel, a cooling box arranged on the lower side of the reaction barrel and connected through a material transfer pipe, and an electric-controlled valve is installed on the surface of the material transfer pipe. When in use, the raw materials for preparing the nutrient solution for microorganisms can be mixed through the mixing mechanism provided, and at the same time, in the mixing mechanism, the bottom wall of the reaction barrel can be cleaned through an arc-shaped scraper. The stirring rod can drive the scraper to rotate to clean the circumferential inner wall of the reaction barrel, wherein the latter is roughly described as including a carbon capture unit, a CO2 collection device, a CO2 microalgae preparation unit, a microalgae delivery device, a photoreactor microalgae preparation device, a microalgae delivery device and a microalgae nutrient solution preparation device. The microalgae organic fertilizer preparation device includes a fermentation box connected to the outlet of the photoreactor microalgae preparation device, the fermentation box is connected to the mixing box through a feed pipe, the upper part of the mixing box is connected to the exhaust fan, and the lower part is connected to the dust collection box and the collection box respectively. When in use, the factory that produces CO2 in the production process of thermal power plants, steel plants, cement plants and chemical plants is used as a carbon source factory to prepare an available carbon source for light reaction and culture of microalgae nutrient solution.

[0004] Although the above-mentioned existing technical solutions can all achieve the preparation of nutrient solution, the mixing of the former is achieved by rotating the stirring rod in the mixing mechanism. The specific form can be clearly identified in combination with the structure of the attached figure. Combined with the specific form, it can be found that its operating stirring form is relatively simple and its practicality needs to be further improved. The latter does not clearly explain the mixing method, and the solution is relatively high-level and general, so its matching and applicability in the preparation reaction process of the nutrient solution for rice anti-premature aging nutrients needs to be further improved. Summary of the invention

[0005] In view of the shortcomings of the prior art, the present invention provides a reaction device and a manufacturing method for preparing a nutrient solution of an anti-aging nutrient for rice. The stirring form is more gentle, and the preparation of the nutrient solution of the anti-aging nutrient for rice is provided more uniformly. It has less influence on the growth of microorganisms in the preparation reaction process of the nutrient solution of the anti-aging nutrient for rice, and is more reliable and practical.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical scheme: a reaction device for preparing nutrient solution of rice anti-premature aging nutrient agent, comprising a reaction barrel and a stirring structure in the barrel, wherein the reaction barrel comprises a fixed bottom barrel and a rotating top barrel, the fixed bottom barrel and the rotating top barrel are rotatably connected to each other, and a discharge port and a feeding port are respectively provided on the side wall of the fixed bottom barrel and the top wall of the rotating top barrel, the discharge port and the feeding port are respectively installed with an arc-shaped closed door and a circular closed door, the stirring structure in the barrel comprises a central rotating frame, a through-opening is provided at the bottom end of the fixed bottom barrel, the central rotating frame is rotatably connected to the through-opening, and a servo motor is installed at the bottom end of the fixed bottom barrel, the servo motor The motor is used for driving the rotation of the central rotating frame, and a side cutout is provided on the central rotating frame, and a sliding link is slidably connected to the side cutout, and the sliding link is fixedly connected to an elastic spring, and the elastic spring is fixedly connected in the side cutout, and the sliding link is fixedly connected to a step material distribution frame, and a plurality of step holes are provided on the step material distribution frame, and an inner spring is fixedly connected in each of the plurality of step holes, and the bottom ends of the plurality of inner springs are fixedly connected to a connecting plate, and the top ends of the plurality of connecting plates are fixedly connected to a material mixing pipe, and a plurality of through holes are provided on the plurality of material mixing pipes, and a barrel top auxiliary structure is installed on the rotating top barrel, and the plurality of material mixing pipes are matched with the barrel top auxiliary structure.

[0007] Preferably, the barrel top auxiliary structure includes a top frame, which is fixedly connected to the top of the rotating top barrel, and a plurality of rope threading holes are opened on the top frame, and the plurality of material mixing tubes respectively pass through the plurality of rope threading holes, and the plurality of material mixing tubes are each provided with an elastic adjustment spring, and the bottom ends of the plurality of elastic adjustment springs are each fixedly connected to the top frame, and the top ends of the plurality of elastic adjustment springs are each fixedly connected to a middle link, and the plurality of middle links are each connected to an adjustment structure, and the plurality of adjustment structures are respectively connected to the plurality of material mixing tubes, and a toggle structure is installed on the top frame, and the toggle structure is used for vibrating and toggling the plurality of material mixing tubes.

[0008] Preferably, the multiple adjustment structures all include a step frame, the multiple step frames are respectively fixedly connected to the multiple material mixing pipes, the multiple step frames are threadedly connected with internal threaded tubes, the bottom ends of the multiple internal threaded tubes are respectively rotatably connected to the multiple middle link rings, and the outsides of the multiple internal threaded tubes are fixedly connected with auxiliary rotating cap rings.

[0009] Preferably, the toggle structure includes a variable frequency motor and a synchronous toggle frame, the variable frequency motor is installed on the top frame, the synchronous toggle frame is slidably connected to the top frame, a plurality of round-headed wedge plates are fixedly connected to the synchronous toggle frame, the plurality of round-headed wedge plates are respectively matched with a plurality of material mixing pipes, and the variable frequency motor is used to drive the reciprocating motion of the synchronous toggle frame.

[0010] Preferably, a rotating disk is installed on the output shaft of the variable frequency motor, the rotating disk is fixedly connected to an eccentric column, the eccentric column is rotatably connected to a linkage frame, and the linkage frame is rotatably connected to the synchronous shifting frame.

[0011] Preferably, a middle vertical rod is fixedly connected to the top of the central rotating frame, a rotating connection port is opened on the rotating top barrel, the middle vertical rod is rotatably connected to the rotating connection port, and the middle vertical rod extends to the top of the rotating top barrel through the rotating connection port, and an offset rod is fixedly connected to the top of the central vertical rod, the offset rod is hinged with an electric telescopic rod, the telescopic rod of the electric telescopic rod is hinged with an articulated seat, and the articulated seat is fixedly connected to the top of the rotating top barrel, a rotating seal is arranged between the middle vertical rod and the rotating top barrel, and a rotating seal is also arranged between the central rotating frame and the fixed bottom barrel.

[0012] Preferably, multiple mixing balls are slidably connected to the multiple mixing tubes, multiple vertically arranged springs are fixedly connected to the multiple mixing balls, respectively, multiple mixing balls are provided with hollow floating holes, multiple mixing balls are matched with multiple through holes, respectively, multiple mixing balls on the same mixing tube are arranged at equal intervals, and the mixing balls on two adjacent mixing tubes are staggered in height.

[0013] Preferably, the top end of the fixed bottom barrel is fixedly connected to a covering rotating step ring, the bottom end of the rotating top barrel is rotatably connected in the covering rotating step ring, the top end of the rotating top barrel is fixedly connected to a sealing cover, the sealing cover is used for protecting the auxiliary structure of the barrel top, and the bottom end of the fixed bottom barrel is fixedly connected to a leg frame.

[0014] Preferably, the fixed bottom barrel is fixedly connected to a fixed ring cylinder, the rotating top barrel is fixedly connected to a rotating ring cylinder, the fixed ring cylinder and the rotating ring cylinder are rotatably connected to each other, and the fixed ring cylinder and the rotating ring cylinder are connected to each other, a plurality of material mixing pipes are connected to the rotating ring cylinder, and the fixed ring cylinder is connected to the outside with an external quick-connect pipe.

[0015] A method for using a reaction device for preparing a nutrient solution of a rice anti-premature aging nutrient agent, comprising the following steps: S1. When in use, the rice anti-premature aging nutrient solution preparation reaction device is first placed at the desired location, and the feeding port is opened by opening the circular closed door. After the feeding port is opened, the base material of the nutrient solution is loaded through the feeding port. During the loading of the base material, the arc-shaped closed door should be closed relative to the discharge port. The arc-shaped closed door closed relative to the discharge port will form a seal for the discharge port. After the base material is loaded, the circular closed door can be closed relative to the feeding port; S2. After the base material is loaded, the servo motor is turned on to drive the central rotating frame to rotate relative to the fixed bottom barrel. Affected by the auxiliary structure on the barrel top, the rotating top barrel can rotate synchronously with the central rotating frame. Since the stepped material distribution frame will form a synchronous movement with the central rotating frame, the material mixing pipe can move relative to the fixed bottom barrel, which can assist in the formation of the base liquid entering the fixed bottom barrel. S3. When the auxiliary liquid for preparing the nutrient solution is added to the base liquid, the external auxiliary liquid is supplied to the multiple mixing tubes. The auxiliary liquid in the mixing tubes will form an external discharge distribution through the through holes, and the mixing tubes will form a relative movement relative to the fixed bottom barrel during the distribution process, so that the through holes in the distribution state will form a relative movement relative to the base liquid, so as to improve the mixing effect of the auxiliary liquid relative to the base liquid during the distribution process; S4. During the process of adding auxiliary liquid, the operation of the auxiliary structure on the top of the barrel will realize the reciprocating movement of multiple mixing tubes. During the movement of the mixing tubes, vibration will be generated. The vibration will be transmitted through the mixing tubes themselves to cause the corresponding entire mixing tubes to vibrate. The vibrating mixing tubes will form auxiliary stirring for the nutrient solution. In addition, due to the setting of the internal spring, the mixing tubes will also be displaced in the up and down directions when being moved, thereby achieving the purpose of widening the action range of the mixing tubes and ensuring the mixing effect of the nutrient solution. S5. When the nutrient solution is discharged after preparation, the circular closed door is opened to open the discharge port. Under the action of gravity, the nutrient solution will flow out from the discharge port. Considering the negative pressure in the reaction barrel, the feeding port is opened together with the nutrient solution when the nutrient solution is discharged to ensure the inflow of gas in the reaction barrel and avoid the negative pressure in the reaction barrel affecting the discharge of the nutrient solution from the discharge port. S6. When the nutrient agent and nutrient solution are discharged, the servo motor is started, and the servo motor works to realize the rotation drive of the step distribution rack. Due to the setting of the elastic spring, the step distribution rack will be pressed against the inside of the fixed bottom barrel. When the step distribution rack rotates to the discharge port, under the pushing action of the elastic spring, the step distribution rack will extend from the discharge port to assist the tailings of the nutrient agent and nutrient solution to be discharged. During the continuous rotation of the step distribution rack, the tailings of the nutrient agent and nutrient solution will be assisted in being pushed outward and collected, scraped and cleaned.

[0016] Compared with the prior art, the present invention provides a reaction device and a manufacturing method for preparing a nutrient solution of a rice anti-premature aging nutrient agent, which has the following beneficial effects: (1) In the present invention, the main structure of the reaction device for preparing the nutrient solution of rice anti-premature aging nutrient agent is formed through the design of the reaction barrel, and the preparation space of the nutrient solution is equipped to facilitate the preparation and storage of the nutrient solution.

[0017] (2) In the present invention, the stirring structure in the barrel is designed to cooperate with the reaction barrel to form a stirring structure in the barrel. This structure can achieve uniform distribution and auxiliary stirring during the preparation of the nutrient solution and nutrient agent, and occupies less space in the reaction barrel, thereby ensuring effective preparation space for the nutrient solution and nutrient agent in the reaction barrel.

[0018] (3) In the present invention, through the design of the auxiliary structure on the barrel top, the material mixing pipe in the stirring structure in the barrel can be matched to form a matching traction and drive, which is convenient for the vibration drive and adjustment of the material mixing pipe in the reaction barrel, and the stirring quality is better and more practical. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a partially cutaway three-dimensional structural schematic diagram of the cooperation of the fixed bottom bucket, the rotating top bucket and the offset rod of the present invention; Figure 2 For the present invention Figure 1 A schematic diagram of the local enlarged structure at point A in the middle; Figure 3 For the present invention Figure 1 A schematic diagram of the local enlarged structure at B in the middle; Figure 4 It is a schematic diagram of the three-dimensional structure of the fixed bottom bucket, the rotating top bucket and the offset rod of the present invention; Figure 5 It is a schematic diagram of the overall three-dimensional structure of the present invention; Figure 6 For the present invention Figure 5 A schematic diagram of the local enlarged structure at C in the middle; Figure 7 It is a schematic diagram of the three-dimensional structure of the fixed bottom barrel and the covering transfer step ring of the present invention; Figure 8 It is a schematic diagram of the three-dimensional structure of the synchronous shifting frame and the round-head wedge plate of the present invention; Fig. 9 It is a schematic diagram of the three-dimensional structure of the rotating top bucket, the top frame and the hinged seat of the present invention; Fig.10 It is a partially cutaway three-dimensional structural schematic diagram of the fixed bottom bucket, the rotating top bucket and the synchronous shifting frame of the present invention; Fig.11 For the present invention Fig.10 A schematic diagram of the local enlarged structure at D in the middle; Fig.12 It is a partially cutaway three-dimensional structural schematic diagram of the coordination of the material mixing pipe, the material mixing ball and the vertically arranged springs of the present invention; Fig.13 It is a bottom-up three-dimensional structural schematic diagram of the synchronous toggle frame, the eccentric column and the linkage frame of the present invention; Fig.14 It is a schematic diagram of the exploded three-dimensional structure of the top frame, the synchronous toggle frame and the round-head wedge plate of the present invention; Fig.15 It is a schematic diagram of the three-dimensional structure of the central rotating frame, servo motor and stepped material distribution frame of the present invention; Fig.16 It is a partially cutaway three-dimensional structural schematic diagram of the cooperation of the central rotating frame, the servo motor and the stepped material distribution frame of the present invention; Fig.17 It is a bottom-view stereoscopic structural schematic diagram of the fixed bottom bucket and the covering rotating step ring of the present invention; Fig.18 It is a schematic diagram of the overall three-dimensional structure of the present invention when viewed from above; Fig.19 It is a schematic diagram of the rotating state of the step distribution rack of the present invention for assisting extrapolation and collecting, scraping and cleaning the nutrient agent and nutrient solution.

[0020] In the figure: 1. Fixed bottom barrel; 2. Rotating top barrel; 3. Discharge port; 4. Feed port; 5. Arc-shaped closed door; 6. Round closed door; 7. Center rotating frame; 8. Through-hole; 9. Servo motor; 10. Side cut; 11. Sliding link; 12. Elastic spring; 13. Stepped material distribution frame; 14. Stepped hole; 15. Inner spring; 16. Connecting plate; 17. Material leveling pipe; 18. Top frame; 19. Rope threading hole; 20. Adjusting spring; 21. Middle link; 22. Stepped frame; 23. Internal threaded barrel ; 24. Auxiliary rotating cap ring; 25. Frequency conversion motor; 26. Synchronous toggle frame; 27. Round head wedge plate; 28. Rotating disk; 29. ​​Eccentric column; 30. Linkage frame; 31. Middle vertical rod; 32. Rotating connection; 33. Offset rod; 34. Electric telescopic rod; 35. Articulated seat; 36. Mixing ball; 37. Covered rotating step ring; 38. Sealing cover; 39. Leg frame; 40. Vertical layout spring; 41. Hollow floating hole; 42. Fixed ring cylinder; 43. Rotating ring cylinder; 44. External quick pipe. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0022] For examples, see Figure 1-Figure 19 A rice anti-premature aging nutrient solution preparation reaction device includes a reaction barrel and a stirring structure in the barrel. The reaction barrel includes a fixed bottom barrel 1 and a rotating top barrel 2. The fixed bottom barrel 1 and the rotating top barrel 2 are rotatably connected to each other. The top end of the fixed bottom barrel 1 is fixedly connected to a covered rotating step ring 37, and the bottom end of the rotating top barrel 2 is rotatably connected in the covered rotating step ring 37, forming an explanation of the specific connection structure between the fixed bottom barrel 1 and the rotating top barrel 2, realizing the relative rotation connection between the fixed bottom barrel 1 and the rotating top barrel 2 while improving the fixed The rotation contact area between the bottom barrel 1 and the rotating top barrel 2 ensures the rotation sealing between the fixed bottom barrel 1 and the rotating top barrel 2, and the side wall of the fixed bottom barrel 1 and the top wall of the rotating top barrel 2 are respectively provided with a discharge port 3 and a feeding port 4, and the discharge port 3 and the feeding port 4 are respectively installed with an arc-shaped closed door 5 and a circular closed door 6. Through the design of the reaction barrel, the main structure of the rice anti-premature aging nutrient solution preparation reaction device is formed, the nutrient solution preparation space is equipped, and the preparation and storage of the nutrient solution are convenient. The stirring structure in the barrel includes a middle The central rotating frame 7 is provided with a through hole 8 at the bottom end of the fixed bottom barrel 1, the central rotating frame 7 is rotatably connected with the through hole 8, and a servo motor 9 is installed at the bottom end of the fixed bottom barrel 1, the servo motor 9 is used for the rotation drive of the central rotating frame 7, the central rotating frame 7 is provided with a side cutout 10, the side cutout 10 is slidably connected with a sliding link 11, the sliding link 11 is fixedly connected with an elastic spring 12, the elastic spring 12 is fixedly connected in the side cutout 10, the sliding link 11 is fixedly connected with a step cloth frame 13, and the step cloth frame 13 is provided with a plurality of step holes 14 Inner springs 15 are fixedly connected to the multiple stepped holes 14, the bottom ends of the multiple inner springs 15 are fixedly connected to connecting plates 16, the tops of the multiple connecting plates 16 are fixedly connected to material mixing tubes 17, and multiple through holes are provided on the multiple material mixing tubes 17. Through the design of the stirring structure in the barrel, the structure of stirring in the barrel is formed in conjunction with the reaction barrel. This structure can achieve uniform distribution and auxiliary stirring in the preparation process of the nutrient agent and nutrient solution, and occupies less space in the reaction barrel, which can ensure the effective preparation space of the nutrient agent and nutrient solution in the reaction barrel.

[0023] It should be further explained that the fixed bottom barrel 1 is fixedly connected to a fixed ring cylinder 42, and the rotating top barrel 2 is fixedly connected to a rotating ring cylinder 43. The fixed ring cylinder 42 and the rotating ring cylinder 43 are rotatably connected to each other, and the fixed ring cylinder 42 and the rotating ring cylinder 43 are connected to each other. Multiple material mixing pipes 17 are connected to the rotating ring cylinder 43, and the fixed ring cylinder 42 is connected to an external quick-connect pipe 44 to facilitate the connection and feeding of the external feed pipeline with the multiple material mixing pipes 17. Multiple mixing balls 36 are slidably connected to the multiple material mixing pipes 17, and multiple vertically arranged springs 40 are fixedly connected to the multiple material mixing pipes 17. The multiple vertically arranged springs 40 are respectively connected to the multiple mixing balls 36. The mixing balls 36 are fixedly connected, and hollow floating holes 41 are arranged in the plurality of mixing balls 36. The plurality of mixing balls 36 are matched with the plurality of through holes respectively. The plurality of mixing balls 36 located on the same material mixing tube 17 are arranged at equal intervals, and the mixing balls 36 on two adjacent material mixing tubes 17 are arranged in a staggered manner in height, so as to improve the mixing effect of the material mixing tube 17. When uniform material distribution is formed through the material mixing tube 17, due to the shielding effect of the mixing balls 36, only the mixing balls 36 immersed in the existing base liquid in the fixed bottom barrel 1 will move relative to the material mixing tube 17 on which it is installed under the action of buoyancy, and the displacement relative to the material mixing tube 17 is formed. The moving mixing ball 36 will expose the through hole it blocks, and the material mixing tube 17 forms a uniform distribution through the exposed through hole. A barrel top auxiliary structure is installed on the rotating top barrel 2, and multiple material mixing tubes 17 are matched with the barrel top auxiliary structure. The barrel top auxiliary structure includes a top frame 18, and the top frame 18 is fixedly connected to the top of the rotating top barrel 2. Multiple rope holes 19 are opened on the top frame 18. Multiple material mixing tubes 17 pass through the multiple rope holes 19 respectively. Multiple material mixing tubes 17 are all equipped with spring adjustment springs 20. The bottom ends of the multiple spring adjustment springs 20 are fixedly connected to the top frame 18, and the top ends of the multiple spring adjustment springs 20 are fixedly connected to the middle connecting Ring 21, multiple middle links 21 are connected with adjustment structures, multiple adjustment structures are respectively connected with multiple material mixing tubes 17, multiple adjustment structures all include step frames 22, multiple step frames 22 are respectively fixedly connected with multiple material mixing tubes 17, multiple step frames 22 are threadedly connected with internal threaded tubes 23, the bottom ends of multiple internal threaded tubes 23 are respectively rotatably connected with multiple middle links 21, and multiple internal threaded tubes 23 are fixedly connected with auxiliary rotating cap rings 24 outside, forming a traction installation of the material mixing tube 17, ensuring that the material mixing tube 17 is pulled and tightened while facilitating the adjustment of the effective operating length and the operating direction of the material mixing tube 17 entering the reaction barrel.

[0024] It should be further explained that a toggle structure is installed on the top frame 18, and the toggle structure is used for vibrating and toggling multiple material mixing tubes 17. The toggle structure includes a variable frequency motor 25 and a synchronous toggle frame 26. The variable frequency motor 25 is installed on the top frame 18, and the synchronous toggle frame 26 is slidably connected to the top frame 18. A plurality of round-headed wedge plates 27 are fixedly connected to the synchronous toggle frame 26, and the plurality of round-headed wedge plates 27 are respectively matched with the plurality of material mixing tubes 17. The variable frequency motor 25 is used for reciprocating motion driving of the synchronous toggle frame 26 to facilitate the reciprocating vibration toggling of the material mixing tube 17. The output shaft of the variable frequency motor 25 is A rotating disk 28 is installed, and the rotating disk 28 is fixedly connected with an eccentric column 29, and the eccentric column 29 is rotatably connected with a linkage frame 30, and the linkage frame 30 is rotatably connected with the synchronous toggle frame 26. Through the design of the auxiliary structure on the barrel top, the material mixing pipe 17 in the mixing structure in the barrel can be matched to form a matching traction and drive, which is convenient for the vibration drive and adjustment of the material mixing pipe 17 in the reaction barrel, and the mixing quality is better and more practical. The top of the central rotating frame 7 is fixedly connected with a middle vertical rod 31, and a rotating connection port 32 is opened on the rotating top barrel 2. The middle vertical rod 31 is rotatably connected with the rotating connection port 32, and the middle vertical rod 31 is connected to the rotating connection port 32 through the rotating connection port 32. The top of the middle vertical rod 31 extends to the top of the rotating top barrel 2, and the top end of the middle vertical rod 31 is fixedly connected to the offset rod 33, and the offset rod 33 is hinged with an electric telescopic rod 34, and the telescopic rod of the electric telescopic rod 34 is hinged with an articulated seat 35, and the articulated seat 35 is fixedly connected to the top end of the rotating top barrel 2. The electric telescopic rod 34 can be used to adjust the relative rotation angle between the rotating top barrel 2 and the central rotating frame 7, so as to adjust the posture of the material mixing tube 17 in the reaction barrel, that is, with the increase of the relative rotation angle between the rotating top barrel 2 and the central rotating frame 7, the material mixing tube 17 in the reaction barrel will enter an inclined state from an upright state. state, and the degree of inclination will gradually increase. A rotating seal is arranged between the middle vertical rod 31 and the rotating top barrel 2, and a rotating seal is also arranged between the central rotating frame 7 and the fixed bottom barrel 1 to ensure the overall sealing of the reaction barrel. The top of the rotating top barrel 2 is fixedly connected with a sealing cover 38, and the sealing cover 38 is used to protect the auxiliary structure of the barrel top. The bottom end of the fixed bottom barrel 1 is fixedly connected with a leg frame 39 to form a support for the fixed bottom barrel 1, so that the bottom end of the fixed bottom barrel 1 has sufficient suspended space, which ensures the air flow at the bottom of the fixed bottom barrel 1 on the one hand, and ensures that the servo motor 9 has sufficient installation space on the other hand.

[0025] The servo motor 9, the variable frequency motor 25 and the electric telescopic rod 34 in this embodiment are all conventional devices purchased on the market and known to those skilled in the art. In the present invention, we only use them without improving their structures and functions. For those skilled in the art, their setting methods, installation methods and electrical connection methods can be debugged and operated according to the requirements of their instruction manuals, and will not be described in detail here.

[0026] In summary, the working principle of the rice anti-premature aging nutrient solution preparation reaction device is as follows: when in use, the rice anti-premature aging nutrient solution preparation reaction device is first placed at the desired location, and the feeding port 4 is opened by opening the circular closed door 6. After the feeding port 4 is opened, the base material of the nutrient solution is loaded through the feeding port 4. During the loading of the base material, the arc-shaped closed door 5 should be closed relative to the discharge port 3. The arc-shaped closed door 5 closed relative to the discharge port 3 will form a seal on the discharge port 3. After the base material is loaded, the circular closed door 5 is closed. The closed door 6 can be closed relative to the feeding port 4. After the base material is loaded, the servo motor 9 is powered on to drive the central rotating frame 7 to rotate relative to the fixed bottom barrel 1. The central rotating frame 7 rotates through the middle vertical rod 31 to drive the offset rod 33 to form a synchronous rotation. Since the electric telescopic rod 34 is in a parked state, the rotating top barrel 2 follows the central rotating frame 7 to achieve synchronous rotation. Since the stepped material distribution frame 13 will form a synchronous movement with the central rotating frame 7, the material mixing pipe 17 can be realized relative to the fixed bottom barrel 1. The movement can assist in the formation of the base liquid entering the fixed bottom barrel 1. When the auxiliary liquid for preparing the nutrient solution is added to the base liquid, the external quick-connect pipe 44 is connected through the auxiliary liquid supply pipeline. The auxiliary liquid is fed into the external quick-connect pipe 44 through the auxiliary liquid supply pipeline. The auxiliary liquid enters the multiple mixing pipes 17 under the sequential guidance of the fixed ring cylinder 42 and the rotating ring cylinder 43. Affected by the base liquid in the fixed bottom barrel 1, the mixing ball 36 immersed in the base liquid will overcome the elastic tension of the vertically arranged spring 40 under the action of buoyancy and move relative to the position where it is arranged. The installed material mixing tube 17 moves, and the mixing ball 36 that moves relative to the material mixing tube 17 will expose the through hole blocked by it, and the auxiliary liquid in the material mixing tube 17 will form an external discharge distribution through the exposed through hole. Since the through hole for the external discharge distribution is located below the liquid level of the base liquid, the splashing of the auxiliary liquid during the distribution process is reduced. In addition, the material mixing tube 17 will form a relative movement relative to the fixed bottom barrel 1 during the distribution process, so the through hole in the distribution state will form a relative movement relative to the base liquid, so as to improve the mixing effect of the auxiliary liquid relative to the base liquid during the distribution process.

[0027] Furthermore, during the process of adding the auxiliary liquid, the power supply of the variable frequency motor 25 is turned on, so that the variable frequency motor 25 works to drive the rotating disk 28. The rotation of the rotating disk 28 drives the eccentric column 29 to rotate. The rotation of the eccentric column 29 drives the linkage frame 30 to move. The movement of the linkage frame 30 drives the synchronous toggle frame 26 to move. That is, under the transmission action of the rotating disk 28, the eccentric column 29 and the linkage frame 30, the rotating rotating disk 28 will realize the reciprocating movement of the synchronous toggle frame 26 relative to the top frame 18. The reciprocating synchronous toggle frame 26 will realize the synchronous driving of the multiple round-headed wedge plates 27. The multiple round-headed wedge plates 27 will realize the reciprocating toggle of the multiple material mixing tubes 17 during the reciprocating movement. When the material mixing tube 17 is toggled, when the round-headed wedge plates 27 act on the toggle amplitude of the material mixing tube 17, the amplitude of the toggle is getting larger and larger. When the friction force is too great, the round-headed wedge plate 27 will enter the limit state of the movement of the mixing tube 17, and then the round-headed wedge plate 27 will move the mixing tube 17 to separate from the round-headed wedge plate 27. After the mixing tube 17 is separated from the round-headed wedge plate 27, vibration will be generated. The vibration will be transmitted through the mixing tube 17 itself to cause the corresponding whole mixing tube 17 to vibrate. The vibrating mixing tube 17 will assist in stirring the nutrient solution. In addition, due to the setting of the inner spring 15, the mixing tube 17 will also be displaced in the up and down directions when being moved by the round-headed wedge plate 27, thereby achieving the purpose of widening the action range of the mixing tube 17. Due to the setting of the mixing ball 36, the vibration range and amplitude of the mixing tube 17 can be increased to ensure the mixing effect of the nutrient solution.

[0028] Furthermore, by connecting the power supply of the electric telescopic rod 34, the electric telescopic rod 34 is operated to form a relative rotation drive between the rotating top barrel 2 and the central rotating frame 7, so as to control the rotation angle of the central rotating frame 7 relative to the rotating top barrel 2, thereby forming an inclination adjustment of the material mixing tube 17 in the reaction barrel, so as to enrich the spatial range and direction of the stirring movement of the material mixing tube 17 and the mixing ball 36, reduce the limitation of the stirring movement, and ensure the mixing effect of the nutrient agent and nutrient solution. When the nutrient agent and nutrient solution are prepared and discharged, the circular closed door 6 is opened to open the discharge port 3. Under the action of gravity, the nutrient agent and nutrient solution will flow out from the discharge port 3, and the negative pressure in the reaction barrel is taken into consideration. When the nutrient solution is discharged, the feeding port 4 is opened together to ensure the inflow of gas in the reaction barrel, so as to avoid the negative pressure in the reaction barrel affecting the discharge of the nutrient solution from the discharge port 3. When the nutrient solution is discharged, the electric telescopic rod 34 is kept in a parked state, and the servo motor 9 is started. The servo motor 9 works to realize the rotation drive of the step distribution rack 13. Due to the setting of the elastic spring 12, the step distribution rack 13 will be tightly pressed against the inside of the fixed bottom barrel 1. When the step distribution rack 13 rotates to the discharge port 3, under the pushing action of the elastic spring 12, the step distribution rack 13 will extend from the discharge port 3 to assist the tail of the nutrient solution to form an external discharge push, such as the attached Fig.15 As shown, the step distribution frame 13 has a stepped structure with one section thick and one section thin, which is more convenient for auxiliary pushing of nutrients and nutrient solutions. The maximum extension of the step distribution frame 13 from the discharge port 3 is less than half the length of the thickest section of the outermost section of the step distribution frame 13, that is, when the step distribution frame 13 is extended from the discharge port 3 to the maximum extent, the maximum size part of the thickest section of the outermost section of the step distribution frame 13 will not extend out of the discharge port 3, so as to avoid the step distribution frame 13 from being hooked relative to the discharge port 3 during the process of rotating past the discharge port 3. At the same time, the end of the step distribution frame 13 away from the central rotating frame 7 is a double-slope round head structure with a smooth transition. After the step distribution frame 13 extends out of the discharge port 3, when the step distribution frame 13 rotates past the discharge port 3, the double-slope round head structure forms a relative push relative to the discharge port 3, so as to prompt the step distribution frame 13 extending out of the discharge port 3 to be re-entered into the discharge port 3, as shown in the attached figure. Fig.19 As shown, due to the arrangement of the side cutouts 10, the stepped distribution rack 13 has a certain tangency relative to the central rotating rack 7, so the stepped distribution rack 13 will assist in the extrapolation and collection of the nutrient solution tailings during the continuous rotation process, so as to facilitate the discharge of the nutrient solution tailings in the fixed bottom barrel 1.

[0029] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A reaction device for preparing nutrient solution of rice anti-aging nutrient agent, comprising a reaction barrel, characterized in that: The invention also comprises an in-barrel stirring structure, wherein the reaction barrel comprises a fixed bottom barrel (1) and a rotating top barrel (2), wherein the fixed bottom barrel (1) and the rotating top barrel (2) are rotatably connected to each other, and a discharge port (3) and a feed port (4) are respectively provided on the side wall of the fixed bottom barrel (1) and the top wall of the rotating top barrel (2), wherein the discharge port (3) and the feed port (4) are respectively provided with an arc-shaped closed door (5) and a circular closed door (6), wherein the in-barrel stirring structure comprises a central rotating frame (7), wherein a through opening (8) is provided at the bottom end of the fixed bottom barrel (1), wherein the central rotating frame (7) is rotatably connected to the through opening (8), and wherein a servo motor (9) is provided at the bottom end of the fixed bottom barrel (1), wherein the servo motor (9) is used for driving the central rotating frame (7) to rotate, and wherein a side cutout (10) is provided on the central rotating frame (7). ), the side cutout (10) is slidably connected to a sliding link (11), the sliding link (11) is fixedly connected to an elastic spring (12), the elastic spring (12) is fixedly connected in the side cutout (10), the sliding link (11) is fixedly connected to a stepped material distribution frame (13), a plurality of stepped holes (14) are provided on the stepped material distribution frame (13), an inner spring (15) is fixedly connected in each of the plurality of stepped holes (14), the bottom ends of the plurality of inner springs (15) are fixedly connected to a connecting plate (16), the top ends of the plurality of connecting plates (16) are fixedly connected to a material mixing pipe (17), the plurality of material mixing pipes (17) are provided with a plurality of through holes, a barrel top auxiliary structure is installed on the rotating top barrel (2), and the plurality of material mixing pipes (17) are matched with the barrel top auxiliary structure.

2. A nutrient solution preparation reaction device for anti-aging rice nutrients according to claim 1, characterized in that: The barrel top auxiliary structure comprises a top frame (18), the top frame (18) is fixedly connected to the top of the rotating top barrel (2), a plurality of rope threading holes (19) are opened on the top frame (18), a plurality of the material mixing tubes (17) respectively pass through the plurality of rope threading holes (19), a plurality of material mixing tubes (17) are respectively provided with elastic adjustment springs (20), the bottom ends of the plurality of elastic adjustment springs (20) are fixedly connected to the top frame (18), the top ends of the plurality of elastic adjustment springs (20) are fixedly connected to a middle link (21), the plurality of middle link (21) are connected to an adjustment structure, the plurality of adjustment structures are respectively connected to a plurality of material mixing tubes (17), and a toggle structure is installed on the top frame (18), the toggle structure is used for vibrating and toggling the plurality of material mixing tubes (17).

3. A nutrient solution preparation reaction device for rice anti-aging nutrients according to claim 2, characterized in that: The plurality of adjustment structures each comprise a stepped frame (22), the plurality of stepped frames (22) being fixedly connected to the plurality of material mixing pipes (17) respectively, the plurality of stepped frames (22) being threadedly connected to an internal threaded tube (23), the bottom ends of the plurality of internal threaded tubes (23) being rotatably connected to the plurality of middle connecting rings (21) respectively, and the outside of the plurality of internal threaded tubes (23) being fixedly connected to an auxiliary rotating cap ring (24).

4. A nutrient solution preparation reaction device for rice anti-aging nutrients according to claim 3, characterized in that: The toggling structure comprises a variable frequency motor (25) and a synchronous toggling frame (26), wherein the variable frequency motor (25) is mounted on the top frame (18), the synchronous toggling frame (26) is slidably connected to the top frame (18), a plurality of round-headed wedge plates (27) are fixedly connected to the synchronous toggling frame (26), the plurality of round-headed wedge plates (27) are respectively matched with a plurality of material mixing tubes (17), and the variable frequency motor (25) is used for driving the synchronous toggling frame (26) to reciprocate.

5. A nutrient solution preparation reaction device for anti-aging rice nutrients according to claim 4, characterized in that: A rotating disk (28) is mounted on the output shaft of the variable frequency motor (25); the rotating disk (28) is fixedly connected to an eccentric column (29); the eccentric column (29) is rotatably connected to a linkage frame (30); and the linkage frame (30) is rotatably connected to the synchronous shifting frame (26).

6. A nutrient solution preparation reaction device for anti-aging rice nutrients according to claim 5, characterized in that: The top end of the central rotating frame (7) is fixedly connected to a middle vertical rod (31), a rotating connection opening (32) is provided on the rotating top barrel (2), the middle vertical rod (31) is rotatably connected to the rotating connection opening (32), and the middle vertical rod (31) extends to the top of the rotating top barrel (2) through the rotating connection opening (32), the top end of the middle vertical rod (31) is fixedly connected to a displacement rod (33), the displacement rod (33) is hinged to an electric telescopic rod (34), the telescopic rod of the electric telescopic rod (34) is hinged to an articulated seat (35), and the articulated seat (35) is fixedly connected to the top end of the rotating top barrel (2), a rotation seal is provided between the middle vertical rod (31) and the rotating top barrel (2), and a rotation seal is also provided between the central rotating frame (7) and the fixed bottom barrel (1).

7. A nutrient solution preparation reaction device for anti-aging rice nutrients according to claim 6, characterized in that: A plurality of mixing balls (36) are slidably connected to the plurality of material mixing tubes (17), a plurality of vertically arranged springs (40) are fixedly connected to the plurality of material mixing tubes (17), the plurality of vertically arranged springs (40) are respectively fixedly connected to the plurality of mixing balls (36), a hollow floating hole (41) is arranged in the plurality of mixing balls (36), the plurality of mixing balls (36) are respectively matched with the plurality of through holes, the plurality of mixing balls (36) on the same material mixing tube (17) are arranged at equal intervals, and the mixing balls (36) on two adjacent material mixing tubes (17) are arranged in a staggered manner in terms of height.

8. A nutrient solution preparation reaction device for anti-aging rice nutrients according to claim 7, characterized in that: The top end of the fixed bottom barrel (1) is fixedly connected to a covering rotating step ring (37), the bottom end of the rotating top barrel (2) is rotatably connected within the covering rotating step ring (37), the top end of the rotating top barrel (2) is fixedly connected to a sealing cover (38), the sealing cover (38) is used to protect the auxiliary structure of the barrel top, and the bottom end of the fixed bottom barrel (1) is fixedly connected to a leg frame (39).

9. A nutrient solution preparation reaction device for anti-aging nutrient for rice according to claim 8, characterized in that: The fixed bottom barrel (1) is fixedly connected to a fixed ring barrel (42), and the rotating top barrel (2) is fixedly connected to a rotating ring barrel (43). The fixed ring barrel (42) and the rotating ring barrel (43) are rotatably connected to each other, and the fixed ring barrel (42) and the rotating ring barrel (43) are connected to each other. The plurality of material mixing pipes (17) are all connected to the rotating ring barrel (43), and the fixed ring barrel (42) is connected to an external quick-connect pipe (44).

10. A method for using a reaction device for preparing a nutrient solution for a rice anti-aging nutrient, characterized in that: A nutrient solution preparation reaction device for a rice anti-aging nutrient according to any one of claims 1 to 9 is used, comprising the following steps: S1. When in use, the rice anti-premature aging nutrient solution preparation reaction device is first placed at a desired location, and the feeding port (4) is opened by opening the circular closed door (6). After the feeding port (4) is opened, the base material of the nutrient solution is loaded through the feeding port (4). During the loading of the base material, the arc-shaped closed door (5) should be closed relative to the discharge port (3). The arc-shaped closed door (5) closed relative to the discharge port (3) will form a seal with the discharge port (3). After the loading of the base material is completed, the circular closed door (6) can be closed relative to the feeding port (4); S2, after the base material is loaded, the servo motor (9) is powered on to drive the central rotating frame (7) to rotate relative to the fixed bottom barrel (1). Under the influence of the auxiliary structure on the barrel top, the rotating top barrel (2) can follow the central rotating frame (7) to achieve synchronous rotation. Since the stepped material distribution frame (13) will form synchronous movement with the central rotating frame (7), the material mixing pipe (17) can be moved relative to the fixed bottom barrel (1), which can assist in the formation of the base liquid entering the fixed bottom barrel (1); S3, when the auxiliary liquid for preparing the nutrient solution is added to the base liquid, the external auxiliary liquid is supplied to the plurality of mixing tubes (17), the auxiliary liquid in the mixing tubes (17) will form an external discharge distribution through the through holes, and the mixing tubes (17) will form a relative movement relative to the fixed bottom barrel (1) during the distribution process, so that the through holes in the distribution state will form a relative movement relative to the base liquid, so as to improve the mixing effect of the auxiliary liquid relative to the base liquid during the distribution process; S4. During the process of adding the auxiliary liquid, the operation of the auxiliary structure on the barrel top will realize the reciprocating movement of the plurality of mixing tubes (17). During the movement of the mixing tubes (17), vibration will be generated. The vibration is transmitted through the mixing tubes (17) themselves, causing the corresponding entire mixing tubes (17) to vibrate. The vibrating mixing tubes (17) form auxiliary stirring of the nutrient solution. In addition, due to the setting of the inner spring (15), the mixing tubes (17) will also be displaced in the up-and-down direction when being moved, thereby achieving the purpose of widening the action range of the mixing tubes (17) and ensuring the mixing effect of the nutrient solution. S5. When the nutrient solution is discharged after preparation, the circular closed door (6) is opened to open the discharge port (3). Under the action of gravity, the nutrient solution will flow out from the discharge port (3). In addition, considering the negative pressure in the reaction barrel, the feeding port (4) is opened together with the nutrient solution when the nutrient solution is discharged to ensure the inflow of gas in the reaction barrel, so as to avoid the negative pressure in the reaction barrel affecting the discharge of the nutrient solution from the discharge port (3). S6, when the nutrient solution is discharged, the servo motor (9) is started, and the servo motor (9) works to realize the rotation drive of the step distribution frame (13). Due to the setting of the elastic spring (12), the step distribution frame (13) will be pressed against the inside of the fixed bottom barrel (1). When the step distribution frame (13) rotates to the discharge port (3), under the pushing action of the elastic spring (12), the step distribution frame (13) will extend from the discharge port (3) to assist the tail of the nutrient solution to be discharged. During the continuous rotation of the step distribution frame (13), the tail of the nutrient solution will be assisted to be pushed outward and collected and scraped for cleaning.

Citation Information

Patent Citations

  • Microbial nutrient solution preparation reaction device and manufacturing method thereof

    CN119144412A

  • Carbon capture-microalgae nutrient solution preparation device

    CN219586077U

  • Stirring device used for manufacturing molded door

    CN105397896A

  • Production system and process of feed-grade zinc sulfate monohydrate

    CN115124068A

  • Reaction kettle feeding device

    CN207119363U