Neutralization device for microorganism development

By designing a neutralization device for microbial development, including an automated neutralization mechanism and a filler mechanism, the problem of lack of automatic feeding function in the prior art is solved, efficient and automated microbial neutralization operations are achieved, and neutralization efficiency and operation convenience are improved.

CN222877919UActive Publication Date: 2025-05-16FUZHOU SANHEYUAN BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421617894.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-10
Publication Date
2025-05-16
Estimated Expiration
2034-07-10

AI Technical Summary

Technical Problem

The existing microbial neutralization devices lack the automatic feeding function, which leads to manual filling addition, troublesome operation, waste of time, increases the labor burden of the operator, and significantly reduces the neutralization efficiency.

Method used

A neutralizing device for microbial development is designed, including a protective shell, a neutralizing mechanism and a filler mechanism. The neutralization mechanism drives the stirring leaf to rotate through the transmission rod to neutralize the microorganisms and fillers inside the neutralization tank; the filler mechanism automatically transports the microorganisms and fillers to the neutralization tank through the screw conveying rod and gear system.

Benefits of technology

The automated neutralization operation of microorganisms and fillers is realized, the neutralization efficiency is improved, the labor burden of the operator is reduced, and time and effort is saved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a neutralizing device for microorganism development, which relates to the technical field of microorganism neutralization, and adopts the technical scheme that the neutralizing device comprises a protective shell, a neutralizing mechanism is arranged in the protective shell, and a filling mechanism is arranged at the top of the protective shell; the neutralizing mechanism comprises a middle plate, the middle plate is arranged in the protective shell and connected with the protective shell through a bearing, a plurality of neutralizing tanks are arranged on one side of the middle plate, the neutralizing tanks penetrate through the middle plate and are fixedly connected with the middle plate, second gears are arranged at the tops of the neutralizing tanks, a transmission rod is fixedly arranged on one side of each second gear, and the transmission rod is sleeved with a sleeve through a bearing. The utility model has the beneficial effects that the rotation directions of the first stirring blade and the second stirring blade are opposite, the neutralization efficiency is improved, the labor burden of an operator is reduced, the neutralization operation of a microbial agent is realized without manually adding fillers, and the operation is time-saving and labor-saving.
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Description

Technical Field

[0001] The utility model relates to the technical field of microbial neutralization, in particular to a neutralization device used for microbial research and development. Background Art

[0002] Microorganisms include bacteria, viruses, fungi and a few algae. Some microorganisms can be seen by the naked eye, such as mushrooms which belong to fungi. Viruses are a type of "non-cellular organisms" composed of a few components such as nucleic acids and proteins, but their survival must rely on living cells. According to the different environments in which they exist, they are divided into space microorganisms, marine microorganisms, etc., and according to their cell structure, they are divided into prokaryotic microorganisms and eukaryotic microorganisms.

[0003] In the existing microbial agent development process, the obtained microorganisms need to be neutralized and cultured with other beneficial ingredients, and an appropriate amount of filler needs to be added according to the actual situation. The existing neutralization device does not have an automatic feeding function, so it is often necessary to manually add fillers to achieve the neutralization operation of the microbial agent. The operation is cumbersome and time-consuming. Manually pouring a large number of microorganisms into the neutralization tank increases the labor burden of the operator and significantly reduces the neutralization efficiency. Utility Model Content

[0004] To this end, the utility model provides a neutralization device for microbial research and development to solve the problem that the neutralization device does not have an automatic feeding function, so it is often necessary to manually add fillers to achieve the neutralization operation of the microbial agent, the operation is cumbersome and time-consuming, and a large amount of microorganisms are manually poured into the mixing box, which increases the labor burden of the operator and significantly reduces the neutralization efficiency.

[0005] In order to achieve the above-mentioned purpose, the utility model provides the following technical solutions: a neutralization device for microorganism research, comprising a protective shell, a neutralization mechanism is provided inside the protective shell, and a packing mechanism is provided on the top of the protective shell;

[0006] The neutralization mechanism includes a middle plate, which is arranged inside the protective shell and connected to the protective shell through a bearing, a plurality of neutralization tanks are arranged on one side of the middle plate, the neutralization tank passes through the middle plate and is fixedly connected to the middle plate, a second gear is arranged on the top of the neutralization tank, a transmission rod is fixedly arranged on one side of the second gear, a sleeve is arranged outside the transmission rod through a bearing sleeve, a third gear is fixedly arranged outside the sleeve, the third gear passes through the neutralization tank and is connected to the neutralization tank connection through a bearing, a plurality of second stirring blades are fixedly arranged outside the sleeve, and a plurality of first stirring blades are fixedly arranged outside the transmission rod.

[0007] Preferably, a first motor is fixedly provided on the top of the protective shell, a transmission shaft is fixedly connected to the output end of the first motor, a connecting column is fixedly provided at one end of the transmission shaft, an annular internal gear and a first annular external gear are fixedly provided on one side of the connecting column, the annular internal gear is meshed with the second gear, and the first annular external gear is meshed with the third gear.

[0008] Preferably, the bottom of the protective shell is connected to a base plate through a bearing, the neutralization tank passes through the base plate and is fixedly connected to the base plate, a fixing frame is fixedly provided at the bottom of the protective shell, a third motor is fixedly provided at the bottom of the fixing frame, and the output end of the third motor is fixedly connected to the bottom of the base plate.

[0009] Preferably, the filling mechanism includes a filling tank, which is fixed on the top of the protective shell. A spiral conveying rod is provided inside the filling tank. One end of the spiral conveying rod is fixedly connected to a rotating rod, which passes through the filling tank and is connected to the filling tank through a bearing. A first gear is provided on the external fixed sleeve of the rotating rod.

[0010] Preferably, a top frame is fixedly provided on the top of the protective shell, a second motor is fixedly provided inside the top frame, a second annular external gear is fixedly connected to an output end of the second motor, and the second annular external gear is meshed with the first gear.

[0011] Preferably, a feed pipe is fixedly provided on the top of the filling tank.

[0012] Preferably, a filling pipe is fixedly provided on the top of the neutralization tank.

[0013] Preferably, support columns are fixedly provided at the four corners of the bottom of the protective shell.

[0014] Preferably, the spiral conveying rod passes through the filling tank.

[0015] The utility model embodiment has the following advantages:

[0016] 1. By transporting a large number of microorganisms and fillers to multiple neutralization tanks respectively, excessive microorganisms are avoided to affect the neutralization of microorganisms. The transmission rod drives the first stirring blade to rotate, and the sleeve drives the second stirring blade to rotate, so as to neutralize the microorganisms and fillers inside the neutralization tank. The rotation of the first stirring blade and the second stirring blade is opposite, so as to improve the neutralization efficiency and reduce the labor burden of the operator.

[0017] 2. Fill microorganisms and fillers into different filling tanks through the feeding pipe, drive the second annular outer gear to rotate through the second motor, drive the first gear to rotate through the second annular outer gear, drive the rotating rod to rotate through the first gear, and drive the spiral conveying rod to rotate through the spiral conveying rod. The microorganisms and fillers are transported to the filling pipe at the top of the neutralization tank through the spiral conveying rod, and injected into the neutralization tank through the filling pipe. There is no need to manually add fillers to achieve the neutralization operation of the microbial agent, which saves time and effort. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the implementation of the utility model or the technical solution in the prior art, the following is a brief introduction to the drawings required for the implementation or the prior art description. Obviously, the drawings in the following description are only exemplary, and for ordinary technicians in this field, other implementation drawings can be derived from the provided drawings without creative work.

[0019] The structures, proportions, sizes, etc. illustrated in this specification are only used to match the contents disclosed in the specification so as to facilitate understanding and reading by persons familiar with the technology. They are not used to limit the conditions under which the present invention can be implemented, and therefore have no substantial technical significance. Any structural modification, change in proportion or adjustment of size shall still fall within the scope of the technical contents disclosed in the present invention without affecting the effects and purposes that can be achieved by the present invention.

[0020] Figure 1 The overall structural diagram provided by the utility model;

[0021] Figure 2 A sectional view of the overall structure provided by the utility model;

[0022] Figure 3 A three-dimensional diagram of the neutralization mechanism provided by the utility model;

[0023] Figure 4 A three-dimensional diagram of the neutralization tank provided by the utility model;

[0024] Figure 5 A three-dimensional diagram of the sleeve provided by the utility model;

[0025] Figure 6 The utility model provides Figure 2 Enlarged view of the structure of part A in the middle.

[0026] In the figure: 1. protective shell; 2. support column; 3. fixed frame; 4. top frame; 5. first motor; 6. second motor; 7. stuffing tank; 8. first annular outer gear; 9. feed pipe; 10. first gear; 11. rotating rod; 12. second annular outer gear; 13. third motor; 14. bottom plate; 15. neutralization tank; 16. stuffing pipe; 17. transmission rod; 18. first stirring blade; 19. sleeve; 20. second stirring blade; 21. middle plate; 22. spiral conveying rod; 23. transmission shaft; 24. connecting column; 25. second gear; 26. third gear; 27. annular inner gear. DETAILED DESCRIPTION

[0027] The following is a specific embodiment of the present invention. People familiar with the technology can easily understand the other advantages and functions of the present invention from the contents disclosed in this specification. Obviously, the described embodiment is a part 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.

[0028] See attached Figure 1 -Attached Figure 6 The utility model provides a neutralization device for microorganism research, comprising a protective shell 1, a neutralization mechanism is provided inside the protective shell 1, and a packing mechanism is provided on the top of the protective shell 1;

[0029] The neutralization mechanism includes a middle plate 21, which is arranged inside the protective shell 1 and connected to the protective shell 1 through a bearing. A plurality of neutralization tanks 15 are arranged on one side of the middle plate 21, and the neutralization tank 15 passes through the middle plate 21 and is fixedly connected to the middle plate 21. A second gear 25 is arranged on the top of the neutralization tank 15, and a transmission rod 17 is fixedly arranged on one side of the second gear 25. A sleeve 19 is arranged outside the transmission rod 17 through a bearing sleeve, and a third gear 26 is fixedly arranged outside the sleeve 19, and the third gear 26 passes through the neutralization tank 15 and is connected to the connection of the neutralization tank 15 through a bearing. The sleeve 19 is externally fixedly sleeved with a plurality of second stirring blades 20, the transmission rod 17 is externally fixedly sleeved with a plurality of first stirring blades 18, a first motor 5 is fixedly sleeved on the top of the protective shell 1, a transmission shaft 23 is fixedly connected to the output end of the first motor 5, a connecting column 24 is fixedly provided at one end of the transmission shaft 23, an annular internal gear 27 and a first annular external gear 8 are fixedly provided on one side of the connecting column 24, the annular internal gear 27 is meshed with the second gear 25, the first annular external gear 8 is meshed with the third gear 26, and a filling pipe 16 is fixedly provided on the top of the neutralization tank 15;

[0030] In this embodiment, the first motor 5 is started, the first motor 5 drives the transmission shaft 23 to rotate, the transmission shaft 23 drives the connecting column 24 to rotate, the connecting column 24 drives the first annular outer gear 8 and the annular inner gear 27 to rotate, the first annular outer gear 8 and the annular inner gear 27 drive the second gear 25 and the third gear 26 to rotate, the second gear 25 drives the transmission rod 17 to rotate, the third gear 26 drives the sleeve 19 to rotate, the transmission rod 17 drives the first stirring blade 18 to rotate, the sleeve 19 drives the second stirring blade 20 to rotate, and the microorganisms and fillers inside the neutralization tank 15 are neutralized. The rotation of the first stirring blade 18 and the second stirring blade 20 is opposite to each other, thereby improving the neutralization efficiency;

[0031] Among them, in order to achieve the purpose of rotation, the present device is implemented by the following technical solutions: the bottom of the protective shell 1 is connected to the bottom plate 14 through a bearing, the neutralization tank 15 penetrates the bottom plate 14 and is fixedly connected to the bottom plate 14, the bottom of the protective shell 1 is fixedly provided with a fixing frame 3, the bottom of the fixing frame 3 is fixedly provided with a third motor 13, the output end of the third motor 13 is fixedly connected to the bottom of the bottom plate 14, the third motor 13 is controlled to start, the third motor 13 drives the bottom plate 14 to rotate, the bottom plate 14 drives the neutralization tank 15 to rotate, after the neutralization tank 15 is controlled to rotate ninety degrees, the microorganisms and fillers are continuously filled into other different neutralization tanks 15;

[0032] Among them, in order to achieve the purpose of filling, the present device is implemented by the following technical solutions: the filling mechanism includes a filling tank 7, the filling tank 7 is fixedly arranged on the top of the protective shell 1, a spiral conveying rod 22 is arranged inside the filling tank 7, one end of the spiral conveying rod 22 is fixedly connected to a rotating rod 11, the rotating rod 11 passes through the filling tank 7 and is connected to the filling tank 7 through a bearing, a first gear 10 is fixedly sleeved on the outside of the rotating rod 11, a top frame 4 is fixedly arranged on the top of the protective shell 1, a second motor 6 is fixedly arranged inside the top frame 4, an output end of the second motor 6 is fixedly connected to a second annular external gear 12, and the second annular external gear 12 is fixedly arranged on the output end of the second motor 6. The gear 12 is meshed with the first gear 10. A feed pipe 9 is fixedly provided on the top of the stuffing tank 7. The spiral conveying rod 22 penetrates the stuffing tank 7. Microorganisms and fillers are filled into different stuffing tanks 7 through the feed pipe 9. By starting the second motor 6, the second motor 6 drives the second annular outer gear 12 to rotate, the second annular outer gear 12 drives the first gear 10 to rotate, the first gear 10 drives the rotating rod 11 to rotate, the rotating rod 11 drives the spiral conveying rod 22 to rotate, and the microorganisms and fillers are transported to the inside of the stuffing pipe 16 at the top of the neutralization tank 15 through the spiral conveying rod 22, and injected into the neutralization tank 15 through the stuffing pipe 16;

[0033] In order to achieve the purpose of support, the device is implemented by adopting the following technical solution: support columns 2 are fixedly provided at the four corners of the bottom of the protective shell 1, and the support columns 2 have the function of supporting the protective shell 1.

[0034] The use process of the utility model is as follows: when using the utility model, microorganisms and fillers are filled into different filling tanks 7 through the feeding pipe 9, and the second motor 6 is started, the second motor 6 drives the second annular outer gear 12 to rotate, the second annular outer gear 12 drives the first gear 10 to rotate, the first gear 10 drives the rotating rod 11 to rotate, the rotating rod 11 drives the spiral conveying rod 22 to rotate, and the microorganisms and fillers are transported to the filling pipe 16 at the top of the neutralization tank 15 through the spiral conveying rod 22, and injected into the neutralization tank 15 through the filling pipe 16, and then the third motor 13 is controlled to start, the third motor 13 drives the bottom plate 14 to rotate, the bottom plate 14 drives the neutralization tank 15 to rotate, and after the neutralization tank 15 is controlled to rotate ninety degrees, other different neutralization tanks 1 are continued. 5 is filled with microorganisms and fillers until all the neutralization tanks 15 are filled with the required fillers and microorganisms, and then the first motor 5 is started, the first motor 5 drives the transmission shaft 23 to rotate, the transmission shaft 23 drives the connecting column 24 to rotate, the connecting column 24 drives the first annular outer gear 8 and the annular inner gear 27 to rotate, the first annular outer gear 8 and the annular inner gear 27 drive the second gear 25 and the third gear 26 to rotate, the second gear 25 drives the transmission rod 17 to rotate, the third gear 26 drives the sleeve 19 to rotate, the transmission rod 17 drives the first stirring blade 18 to rotate, the sleeve 19 drives the second stirring blade 20 to rotate, and the microorganisms and fillers inside the neutralization tank 15 are neutralized. The rotation of the first stirring blade 18 and the second stirring blade 20 is opposite to each other, so as to improve the neutralization efficiency.

[0035] The above is only a preferred embodiment of the utility model. Any person skilled in the art may modify the utility model by using the above technical solution or modify it into an equivalent technical solution. Therefore, any simple modification or equivalent replacement based on the technical solution of the utility model shall fall within the scope of protection claimed by the utility model.

Claims

1. A neutralization device for microorganism research, comprising a protective housing (1), characterized in that: A neutralization mechanism is provided inside the protective shell (1), and a filling mechanism is provided on the top of the protective shell (1); The neutralization mechanism comprises a middle plate (21), the middle plate (21) being arranged inside the protective shell (1) and connected to the protective shell (1) via a bearing, a plurality of neutralization tanks (15) being arranged on one side of the middle plate (21), the neutralization tanks (15) penetrating the middle plate (21) and being fixedly connected to the middle plate (21), a second gear (25) being arranged on the top of the neutralization tank (15), a transmission rod (17) being fixedly arranged on one side of the second gear (25), a sleeve (19) being arranged on the outside of the transmission rod (17) via a bearing sleeve, a third gear (26) being fixedly arranged on the outside of the sleeve (19), the third gear (26) penetrating the neutralization tank (15) and being connected to the neutralization tank (15) at its connection point via a bearing, a plurality of second stirring blades (20) being fixedly arranged on the outside of the sleeve (19), and a plurality of first stirring blades (18) being fixedly arranged on the outside of the transmission rod (17).

2. A neutralization device for microorganism development according to claim 1, characterized in that: A first motor (5) is fixedly arranged on the top of the protective shell (1); a transmission shaft (23) is fixedly connected to the output end of the first motor (5); a connecting column (24) is fixedly arranged at one end of the transmission shaft (23); an annular internal gear (27) and a first annular external gear (8) are fixedly arranged on one side of the connecting column (24); the annular internal gear (27) is meshed with the second gear (25); and the first annular external gear (8) is meshed with the third gear (26).

3. A neutralization device for microorganism development according to claim 1, characterized in that: The bottom of the protective shell (1) is connected to a bottom plate (14) via a bearing, the neutralization tank (15) passes through the bottom plate (14) and is fixedly connected to the bottom plate (14), a fixing frame (3) is fixedly provided at the bottom of the protective shell (1), a third motor (13) is fixedly provided at the bottom of the fixing frame (3), and an output end of the third motor (13) is fixedly connected to the bottom of the bottom plate (14).

4. A neutralization device for microorganism development according to claim 1, characterized in that: The filling mechanism comprises a filling tank (7), wherein the filling tank (7) is fixedly arranged on the top of the protective shell (1), a spiral conveying rod (22) is arranged inside the filling tank (7), one end of the spiral conveying rod (22) is fixedly connected to a rotating rod (11), the rotating rod (11) passes through the filling tank (7) and is connected to the filling tank (7) via a bearing, and a first gear (10) is fixedly sleeved outside the rotating rod (11).

5. A neutralization device for microorganism development according to claim 4, characterized in that: A top frame (4) is fixedly provided on the top of the protective shell (1), a second motor (6) is fixedly provided inside the top frame (4), a second annular external gear (12) is fixedly connected to the output end of the second motor (6), and the second annular external gear (12) is meshed with the first gear (10).

6. A neutralization device for microorganism development according to claim 4, characterized in that: A feeding pipe (9) is fixedly provided on the top of the filling tank (7).

7. A neutralization device for microorganism development according to claim 1, characterized in that: A filling pipe (16) is fixedly provided on the top of the neutralization tank (15).

8. A neutralization device for microorganism development according to claim 1, characterized in that: Support columns (2) are fixedly provided at the four corners of the bottom of the protective shell (1).

9. A neutralization device for microorganism development according to claim 4, characterized in that: The spiral conveying rod (22) passes through the filling tank (7).