Oil seal probiotic symbiotic composition cultivation device and method

By designing an oil-sealed probiotic symbiosis composition cultivation device including an opening and closing assembly and a stirring assembly, the problem of uneven distribution of probiotics in the device is solved, and uniform stirring and sealing storage of probiotics is achieved, which extends the shelf life and improves stability and activity.

CN120192824APending Publication Date: 2025-06-24HANGZHOU ZHONGNIU BIO-TECH CO LTD
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Patent Information

Application Number
CN202510401150.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

Existing oil seal probiotic symbiotic compositions are unevenly distributed in the device, resulting in too many or too few probiotics in certain areas, affecting their growth and reproduction.

Method used

An oil seal probiotic symbiosis composition cultivation device is designed, including a mounting base and a mounting mechanism arranged on the mounting base, and the adjustment mechanism includes an opening and closing assembly and a stirring assembly. Through the agitating mechanism and compression mechanism of the stirring assembly, uniform stirring and sealing storage of the probiotic symbiotic composition is achieved, ensuring the activity and stability of the probiotics.

Benefits of technology

Through uniform stirring and sealing storage, it effectively isolates air and moisture, extends the shelf life of probiotics, improves their stability and activity, and ensures that probiotics are evenly distributed and healthy in the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the field of oil seal probiotic symbiotic composition cultivation, and particularly relates to an oil seal probiotic symbiotic composition cultivation device and method.The oil seal probiotic symbiotic composition cultivation device comprises a mounting base and a mounting mechanism arranged on the mounting base, and an adjusting mechanism comprises an opening and closing assembly and a stirring assembly; the opening and closing assembly comprises a supporting plate, a threaded rod, a mounting bracket, a sliding rod and a cover plate, the supporting plate is mounted at the edge of the upper end face of the mounting base, and the threaded rod is mounted in the supporting plate; when the cover plate is opened and closed, the cover plate is of a groove-shaped structure, the cover plate and the mixed cultivation barrel are clamped to a certain extent through the sealing groove, then oil liquid is injected into the sealing groove, the sealing effect on the mixed cultivation barrel is achieved, air and moisture can be effectively isolated, and the mixed cultivation barrel is prevented from being damaged. Therefore, the probiotics are prevented from being influenced by the external environment, the activity of the probiotics is kept, air and moisture can be isolated, and the shelf life of the probiotics can be effectively prolonged.
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Description

Technical Field

[0001] The present invention relates to the field of cultivating oil-sealed probiotic symbiotic compositions, and in particular to an apparatus and method for cultivating oil-sealed probiotic symbiotic compositions. Background Art

[0002] Probiotics are beneficial active microorganisms. They are a class of active microorganisms that colonize the human body and change the composition of the flora in a certain part of the host. They play a role in promoting nutrient absorption and maintaining intestinal health by regulating the mucosal and systemic immune functions of the host or by regulating the balance of the intestinal flora, thereby producing single microorganisms or well-defined mixed microorganisms that are beneficial to health.

[0003] Therefore, the existing oil-sealed probiotic symbiotic compositions may be unevenly distributed in the device, which may lead to too many or too few probiotics in some areas, thus affecting their growth and reproduction. There is a need to develop an apparatus and method for cultivating oil-sealed probiotic symbiotic compositions with new functions. Summary of the Invention

[0004] The purpose of this part is to outline some aspects of the embodiments of the present invention and briefly introduce some preferred embodiments. Simplifications or omissions may be made in this part, as well as in the abstract and title of the present application, to avoid obscuring the purpose of this part, the abstract, and the title. However, such simplifications or omissions shall not be used to limit the scope of the present invention.

[0005] Therefore, the technical problem to be solved by the present invention is that the existing oil-sealed probiotic symbiotic compositions may be unevenly distributed in the device, which may lead to too many or too few probiotics in some areas, thus affecting their growth and reproduction.

[0006] To solve the above technical problem, the present invention provides the following technical solution: An apparatus for cultivating an oil-sealed probiotic symbiotic composition, comprising a mounting base and a mounting mechanism provided on the mounting base. The adjusting mechanism includes an opening and closing component and a stirring component;

[0007] The opening and closing component includes a support plate, a threaded rod, a mounting bracket, a sliding rod, and a cover plate. The support plate is installed at the edge of the upper end surface of the mounting base. The threaded rod is installed inside the support plate. The mounting bracket is installed on the outer surface of the threaded rod. The sliding rods are installed on both sides of the mounting bracket. The cover plate is installed at the front end of the mounting bracket;

[0008] The stirring assembly includes a first A bevel gear, a stirring mechanism, a mixing and cultivation barrel, a sealing groove, and a support shaft. The upper end surface of the cover plate is provided with a first A bevel gear. The lower output end of the first A bevel gear is provided with a stirring mechanism. The center of the upper end surface of the installation base is provided with a support shaft. The end of the support shaft is provided with a mixing and cultivation barrel. The upper end of the mixing and cultivation barrel is provided with a sealing groove.

[0009] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: a discharge plate is installed on the outer surface of the mixing and cultivation barrel. An opening groove is installed on the inner wall of the discharge plate. An electric heating tube is installed inside the opening groove.

[0010] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: the installation bracket and the sliding rod form a lifting structure through a threaded rod. The cover plate is fixedly connected to the installation bracket.

[0011] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: the cover plate has a groove-shaped structure. The cover plate and the mixing and cultivation barrel form a snap-fit structure through the sealing groove.

[0012] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: the stirring mechanism includes a connecting shaft, a first stirring rod, a first filter plate, a second stirring rod, an annular plate, a second filter plate, and a scraper. The lower output end of the first A bevel gear is provided with a connecting shaft. The outer surface of the connecting shaft is provided with a first stirring rod. A scraper is installed below the first stirring rod. A first filter plate is installed below the scraper. A second stirring rod is installed below the first filter plate. An annular plate is installed below the second stirring rod. A second filter plate is installed below the annular plate.

[0013] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: the first stirring rod and the first A bevel gear form a rotating structure through the connecting shaft. The second stirring rod and the first A bevel gear form a rotating structure through the connecting shaft. The gap of the first filter plate is larger than that of the second filter plate. The annular plate has an arc-shaped structure.

[0014] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: the mixing and cultivation barrel includes a card slot block, a card slot bracket, a driving shaft, a third stirring rod, and a fourth stirring rod. The bottom surface of the mixing and cultivation barrel is provided with a card slot block. The card slot bracket is engaged inside the card slot block. The upper end of the card slot bracket is provided with a driving shaft. A third stirring rod is installed on the inner wall of the mixing and cultivation barrel. A fourth stirring rod is installed below the third stirring rod. A compression mechanism is installed on the outer surface of the driving shaft.

[0015] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: the compression mechanism includes a probiotic cultivation box, a mounting housing, a second A bevel gear, a transverse shaft, a third A bevel gear, a vertical shaft, a fourth A bevel gear, a reciprocating screw rod, a pressing plate and a baffle. A second A bevel gear is installed on the outer surface of the drive shaft. A transverse shaft is installed at the transverse end of the second A bevel gear. A third A bevel gear is installed at the end of the transverse shaft. A vertical shaft is installed inside the third A bevel gear. A fourth A bevel gear is installed at the end of the vertical shaft. A reciprocating screw rod is installed at the end of the fourth A bevel gear. A pressing plate is installed on the outer surface of the reciprocating screw rod. The probiotic cultivation box is installed outside the pressing plate. The mounting housing is installed at the lower end of the probiotic cultivation box.

[0016] As a preferred embodiment of the cultivation device for an oil-sealed probiotic symbiotic composition according to the present invention, wherein: three groups of opening slots are provided, and the three groups of opening slots are evenly distributed along the inner wall of the discharge plate.

[0017] A method for a cultivation device of an oil-sealed probiotic symbiotic composition includes the following steps:

[0018] Step 1: The provided threaded rod rotates through the motor to realize a certain lifting effect of the cover plate along the sliding rod, realize the opening and closing of the mixing cultivation barrel, and be used for the feeding of the probiotic mixed composition. Then when the cover plate is opened and closed, the cover plate has a groove-shaped structure, so that the cover plate is engaged with the mixing cultivation barrel through the sealing groove. Then, oil is injected into the sealing groove to realize the sealing of the mixing cultivation barrel, which can effectively isolate air and moisture, thereby avoiding the influence of the external environment on the probiotics and maintaining their activity. It can isolate air and moisture and effectively extend the shelf life of the probiotics.

[0019] Step 2: The provided first A bevel gear is driven by the motor to realize the rotation of the connecting shaft, and then the first stirring rod rotates to facilitate the stirring of the probiotic symbiotic composition. The probiotic symbiotic composition can better maintain its activity, thereby improving its stability. And the first mixing is carried out by the first stirring, improving the stability of the probiotics, extending the shelf life, and improving the nutritional value. Then drive the rotation of the scraper, and the obtained premixed raw materials are filtered through the rotation of the scraper on the first filter plate. Then the second stirring rod rotates, and the second stirring rod has a groove-shaped structure to perform secondary stirring on the raw materials, making it easier for the strains to grow in the liquid medium, increasing the reproduction speed of the strains, and further improving the stability of the probiotics, extending the shelf life, and improving the nutritional value.

[0020] Step 3: The set drive shaft rotates through the motor. Then, the card slot block is fixedly connected to the bottom of the mixed cultivation barrel and meshed with the card slot bracket. When the first stirring rod and the second stirring rod rotate clockwise, the rotation of the card slot block enables the mixed cultivation barrel to rotate on the support shaft and rotate counterclockwise, thus driving the third stirring rod and the fourth stirring rod to further stir the probiotic symbiotic composition, improving the mixing efficiency, enabling the proliferation and growth of the probiotic-deficient population in the body, further enhancing the probiotic reproduction ability, and improving the activity.

[0021] Step 4: The rotation of the drive shaft drives the rotation of the second A bevel gear. Then, through the transmission of the transverse shaft, the third A bevel gear, the vertical shaft, and the fourth A bevel gear, the reciprocating screw rod rotates, causing the installed pressing plate to reciprocate inside the probiotic cultivation box, and pressing and forming the probiotics filtered by the second filter plate when the annular plate rotates. This can increase the stability of the probiotics, extend their shelf life, promote the growth and reproduction of the probiotics, and increase their reproduction speed. It can also enable the microorganisms in the probiotic mixture to play a greater role with various compound vitamins and nutrient elements, which is beneficial to enhancing the function of the probiotics, further regulating the balance of the intestinal flora, promoting intestinal peristalsis, and facilitating the storage and transportation of the probiotics.

[0022] The present invention has the following beneficial effects:

[0023] When the cover plate of the present invention is opened and closed, the cover plate has a groove-like structure, enabling the cover plate to be engaged with the mixed cultivation barrel through the sealing groove. Then, oil is injected into the sealing groove to seal the mixed cultivation barrel, effectively isolating air and moisture, thus preventing the probiotics from being affected by the external environment and maintaining their activity. It can isolate air and moisture and effectively extend the shelf life of the probiotics.

[0024] The rotation of the drive shaft of the present invention drives the rotation of the second A bevel gear. Then, through the transmission of the transverse shaft, the third A bevel gear, the vertical shaft, and the fourth A bevel gear, the reciprocating screw rod rotates, causing the installed pressing plate to reciprocate inside the probiotic cultivation box, and pressing and forming the probiotics filtered by the second filter plate when the annular plate rotates. This can increase the stability of the probiotics, extend their shelf life, promote the growth and reproduction of the probiotics, and increase their reproduction speed. It can also enable the microorganisms in the probiotic mixture to play a greater role with various compound vitamins and nutrient elements, which is beneficial to enhancing the function of the probiotics, further regulating the balance of the intestinal flora, promoting intestinal peristalsis, and facilitating the storage and transportation of the probiotics.

[0025] In the present invention, by providing a second stirring rod, the first A bevel gear is driven by a motor to rotate the connecting shaft, and then rotate the first stirring rod to facilitate stirring the probiotic symbiotic composition. The probiotic symbiotic composition can better maintain its activity, thereby improving its stability. And the first stirring is carried out for primary mixing to improve the stability of probiotics, extend the shelf life, and improve the nutritional value. Then drive the rotation of the scraper, and the obtained premixed raw materials are filtered through the rotation of the scraper on the first filter plate. Then the second stirring rod rotates, and the second stirring rod has a groove-shaped structure to perform secondary stirring on the raw materials, making it easier for the strains to grow in the liquid medium, increasing the reproduction speed of the strains, and further improving the stability of probiotics, extending the shelf life, and improving the nutritional value.

[0026] In the present invention, the provided drive shaft rotates through a motor, and then the clamping groove block is fixedly connected to the bottom of the mixing cultivation barrel and meshed with the clamping groove bracket. When the first stirring rod and the second stirring rod rotate clockwise, the rotation of the clamping groove block enables the mixing cultivation barrel to rotate on the support shaft, performing counterclockwise rotation to drive the third stirring rod and the fourth stirring rod, thereby further stirring the probiotic symbiotic composition, improving the mixing efficiency, enabling the population lacking probiotics to proliferate and grow in the body, further enhancing the growth ability of probiotics, and improving the activity. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. Among them:

[0028] Figure 1 It is a schematic structural diagram of the whole.

[0029] Figure 2 It is a schematic diagram of the opening and closing structure of the cover plate.

[0030] Figure 3 It is a schematic structural diagram of the stirring mechanism.

[0031] Figure 4 It is a schematic structural diagram of the annular plate.

[0032] Figure 5 It is a schematic structural diagram of the compression mechanism.

[0033] Figure 6 It is a schematic structural diagram of the clamping groove block.

[0034] Figure 7 It is a schematic structural diagram of the inner wall of the mixed cultivation barrel.

[0035] Figure 8 It is a schematic structural diagram of the inside of the discharge plate.

[0036] In the figure: 1, mounting base; 2, support plate; 3, threaded rod; 4, mounting bracket; 5, slide bar; 6, cover plate; 7, first A bevel gear; 8, stirring mechanism; 801, connecting shaft; 802, first stirring rod; 803, first filter plate; 804, second stirring rod; 805, annular plate; 806, second filter plate; 807, scraper; 9, mixed cultivation barrel; 901, card slot block; 902, card slot bracket; 903, drive shaft; 904, third stirring rod; 905, fourth stirring rod; 10, sealing groove; 11, support shaft; 12, compression mechanism; 1201, probiotic cultivation box; 1202, mounting housing; 1203, second A bevel gear; 1204, horizontal shaft; 1205, third A bevel gear; 1206, vertical shaft; 1207, fourth A bevel gear; 1208, reciprocating lead screw; 1209, pressing plate; 1210, baffle; 13, discharge plate; 14, opening slot; 15, electric heating tube. Specific embodiments

[0037] To make the above objects, features and advantages of the present invention more obvious and understandable, the following detailed description of the specific embodiments of the present invention will be given in conjunction with the accompanying drawings of the specification.

[0038] Embodiment 1

[0039] In the first embodiment of the present invention, this embodiment provides a cultivation device for an oil-sealed probiotic symbiotic composition, including a mounting base 1 and a mounting mechanism provided on the mounting base 1. The adjustment mechanism includes an opening and closing component and a stirring component;

[0040] The opening and closing component includes a support plate 2, a threaded rod 3, a mounting bracket 4, a slide bar 5, and a cover plate 6. A support plate 2 is installed at the edge of the upper end surface of the mounting base 1. A threaded rod 3 is installed inside the support plate 2. A mounting bracket 4 is installed on the outer surface of the threaded rod 3. Slide bars 5 are installed on both sides of the mounting bracket 4. A cover plate 6 is installed at the front end of the mounting bracket 4;

[0041] The stirring component includes a first A bevel gear 7, a stirring mechanism 8, a mixed cultivation barrel 9, a sealing groove 10, and a support shaft 11. A first A bevel gear 7 is installed on the upper end surface of the cover plate 6. The lower output end of the first A bevel gear 7 is installed with a stirring mechanism 8. A support shaft 11 is installed at the center of the upper end surface of the mounting base 1. A mixed cultivation barrel 9 is installed at the end of the support shaft 11. A sealing groove 10 is installed at the upper end of the mixed cultivation barrel 9.

[0042] The mounting bracket 4 and the sliding rod 5 form a lifting structure through the threaded rod 3. The cover plate 6 is fixedly connected to the mounting bracket 4. The provided threaded rod 3 rotates through the motor to realize the lifting of the cover plate 6 along the sliding rod 5, achieving the opening and closing of the mixing cultivation barrel 9 and serving for the feeding of the probiotic mixture composition.

[0043] The cover plate 6 has a groove-like structure. The cover plate 6 and the mixing cultivation barrel 9 form a clamping structure through the sealing groove 10. Then, when the cover plate 6 is opened and closed, the groove-like structure of the cover plate 6 enables the cover plate 6 to have a certain clamping effect with the mixing cultivation barrel 9 through the sealing groove 10. Then, oil is injected into the sealing groove 10 to realize the sealing of the mixing cultivation barrel 9, which can effectively isolate air and moisture, thus preventing the probiotics from being affected by the external environment and maintaining their activity. It can isolate air and moisture and effectively extend the shelf life of the probiotics.

[0044] The stirring mechanism 8 includes a connecting shaft 801, a first stirring rod 802, a first filter plate 803, a second stirring rod 804, an annular plate 805, a second filter plate 806, and a scraper 807. The lower output end of the first A bevel gear 7 is equipped with a connecting shaft 801. The outer surface of the connecting shaft 801 is equipped with a first stirring rod 802. The lower part of the first stirring rod 802 is equipped with a scraper 807. The lower part of the scraper 807 is equipped with a first filter plate 803. The lower part of the first filter plate 803 is equipped with a second stirring rod 804. The lower part of the second stirring rod 804 is equipped with an annular plate 805. The lower part of the annular plate 805 is equipped with a second filter plate 806.

[0045] The first stirring rod 802 and the first A bevel gear 7 form a rotating structure through the connecting shaft 801. The second stirring rod 804 and the first A bevel gear 7 form a rotating structure through the connecting shaft 801. The gaps of the first filter plate 803 are larger than those of the second filter plate 806. The annular plate 805 has an arc-like structure.

[0046] The provided first A bevel gear 7 is driven by a motor to realize the rotation of the connecting shaft 801, and then the rotation of the first stirring rod 802, facilitating the stirring of the probiotic symbiotic composition. The probiotic symbiotic composition can better maintain its activity, thereby improving its stability. And the first mixing is carried out by stirring for the first time to improve the stability of the probiotics, extend the shelf life, and improve the nutritional value. Then, the rotation of the scraper 807 is driven to realize the filtering effect of the obtained premixed raw materials through the rotation of the scraper 807 on the first filter plate 803. Then, the second stirring rod 804 rotates. And the second stirring rod 804 has a groove-like structure to perform secondary stirring on the raw materials, making it easier for the strains to grow in the liquid medium, increasing the reproduction speed of the strains, and further improving the stability of the probiotics, extending the shelf life, and improving the nutritional value.

[0047] The mixing and cultivation barrel 9 includes a card slot block 901, a card slot support 902, a drive shaft 903, a third stirring rod 904 and a fourth stirring rod 905. The bottom surface of the mixing and cultivation barrel 9 is provided with the card slot block 901, the inside of the card slot block 901 is engaged with the card slot support 902, the upper end of the card slot support 902 is provided with the drive shaft 903, the inner wall of the mixing and cultivation barrel 9 is provided with the third stirring rod 904, and the fourth stirring rod 905 is arranged below the third stirring rod 904. The outer surface of the drive shaft 903 is provided with a compression mechanism 12.

[0048] The provided drive shaft 903 rotates through a motor. Then, the card slot block 901 is fixedly connected to the bottom of the mixing and cultivation barrel 9 and is engaged with the card slot support 902. When the first stirring rod 802 and the second stirring rod 804 rotate clockwise, the rotation of the card slot block 901 enables the mixing and cultivation barrel 9 to rotate on the support shaft 11 and rotate counterclockwise, thereby stirring the third stirring rod 904 and the fourth stirring rod 905, further stirring the probiotic symbiotic composition, improving the mixing efficiency, enabling the proliferation and growth of the probiotic-deficient population in the body, further enhancing the probiotic reproductive ability, and improving the activity.

[0049] Example 2

[0050] This example is based on the previous example. The difference from the previous example is that this example provides an oil-sealed probiotic symbiotic composition cultivation device, specifically.

[0051] Please refer to Figures 1 - 8 , an outlet plate 13 is installed on the outer surface of the mixing and cultivation barrel 9, an opening groove 14 is installed on the inner wall of the outlet plate 13, and an electric heating tube 15 is installed inside the opening groove 14.

[0052] The compression mechanism 12 includes a probiotic cultivation box 1201, an installation housing 1202, a second A bevel gear 1203, a transverse shaft 1204, a third A bevel gear 1205, a vertical shaft 1206, a fourth A bevel gear 1207, a reciprocating lead screw 1208, a pressing plate 1209 and a baffle 1210. The outer surface of the drive shaft 903 is provided with the second A bevel gear 1203, the transverse end of the second A bevel gear 1203 is provided with the transverse shaft 1204, the end of the transverse shaft 1204 is provided with the third A bevel gear 1205, the inside of the third A bevel gear 1205 is provided with the vertical shaft 1206, the end of the vertical shaft 1206 is provided with the fourth A bevel gear 1207, the end of the fourth A bevel gear 1207 is provided with the reciprocating lead screw 1208, the outer surface of the reciprocating lead screw 1208 is provided with the pressing plate 1209, the probiotic cultivation box 1201 is installed outside the pressing plate 1209, and the installation housing 1202 is installed at the lower end of the probiotic cultivation box 1201.

[0053] The rotation of the drive shaft 903 drives the rotation of the second A bevel gear 1203. Then, through the transmission of the transverse shaft 1204, the third A bevel gear 1205, the vertical shaft 1206, and the fourth A bevel gear 1207, the reciprocating lead screw 1208 rotates, causing the reciprocating movement of the pressing plate 1209 installed inside the probiotic cultivation box 1201. This squeezes and forms the probiotics filtered by the second filter plate 806 when the annular plate 805 rotates. This can increase the stability of the probiotics, extend their shelf life, promote the growth and reproduction of the probiotics, and increase their reproduction speed. It can also enable the microorganisms in the probiotic mixture to play a greater role with a variety of complex vitamins and nutritional elements, which is beneficial to enhancing the functions of the probiotics, further regulating the balance of the intestinal flora, promoting intestinal peristalsis, and facilitating the storage and transportation of the probiotics.

[0054] Three groups of opening slots 14 are provided, and the three groups of opening slots 14 are evenly distributed along the inner wall of the discharge plate 13. The heating wire inside the electric heating tube 15 is heated to ensure that the probiotic cultivation box 1201 is at an appropriate temperature, improving the stability of the probiotics, extending the shelf life, and increasing the nutritional value.

[0055] Working principle: First, the set threaded rod 3 rotates through the motor, causing the cover plate 6 to move up and down along the slide rod 5 to open and close the mixing cultivation barrel 9, which is used for feeding the probiotic mixture composition. Then, when opening and closing the cover plate 6, the cover plate 6 has a groove-like structure, enabling the cover plate 6 to be engaged with the mixing cultivation barrel 9 through the sealing groove 10. Then, oil is injected into the sealing groove 10 to seal the mixing cultivation barrel 9, effectively isolating air and moisture, thus preventing the probiotics from being affected by the external environment and maintaining their activity. It can isolate air and moisture and effectively extend the shelf life of the probiotics.

[0056] Then, the set first A bevel gear 7 is driven by the motor to rotate the connecting shaft 801, and then rotate the first stirring rod 802 to facilitate the stirring of the probiotic symbiotic composition. The probiotic symbiotic composition can better maintain its activity, thereby improving its stability. And it is initially mixed by the first stirring, improving the stability of the probiotics, extending the shelf life, and increasing the nutritional value. Then, it drives the rotation of the scraper 807, and the obtained initially mixed raw materials are filtered through the rotation of the scraper 807 on the first filter plate 803. Then, the second stirring rod 804 rotates, and the second stirring rod 804 has a groove-like structure to stir the raw materials a second time, making it easier for the strains to grow in the liquid medium, increasing the reproduction speed of the strains, and further improving the stability of the probiotics, extending the shelf life, and increasing the nutritional value.

[0057] Next, the set drive shaft 903 rotates through the motor. Then, the card slot block 901 is fixedly connected to the bottom of the mixed cultivation barrel 9 and meshed with the card slot bracket 902. When the first stirring rod 802 and the second stirring rod 804 rotate clockwise, the rotation of the card slot block 901 enables the mixed cultivation barrel 9 to rotate on the support shaft 11 and rotate counterclockwise, thus realizing the rotation of the third stirring rod 904 and the fourth stirring rod 905, further stirring the probiotic symbiotic composition, improving the mixing efficiency, enabling the proliferation and growth of probiotic-deficient groups in the body, further enhancing the reproductive ability of probiotics, and improving their activity.

[0058] Finally, the rotation of the drive shaft 903 drives the rotation of the second A bevel gear 1203. Then, through the transmission of the transverse shaft 1204, the third A bevel gear 1205, the vertical shaft 1206, and the fourth A bevel gear 1207, the reciprocating screw rod 1208 rotates, causing the pressing plate 1209 installed to move reciprocally inside the probiotic cultivation box 1201, squeezing and forming the probiotics filtered by the second filter plate 806 when the annular plate 805 rotates. This can increase the stability of the probiotics, extend their shelf life, promote the growth and reproduction of probiotics, increase their reproduction speed, enable the microorganisms in the probiotic mixture to play a greater role with various compound vitamins and nutritional elements, be beneficial to enhancing the functions of probiotics, further regulating the balance of the intestinal flora, promoting intestinal peristalsis, and facilitating the storage and transportation of probiotics.

Claims

1. A device for cultivating an oil-sealed probiotic symbiotic composition, characterized in that: It comprises a mounting base (1) and a mounting mechanism arranged on the mounting base (1), wherein the adjustment mechanism comprises an opening and closing component and a stirring component; The opening and closing assembly comprises a support plate (2), a threaded rod (3), a mounting bracket (4), a sliding rod (5), and a cover plate (6); the support plate (2) is mounted at the edge of the upper end surface of the mounting base (1); the threaded rod (3) is mounted inside the support plate (2); the mounting bracket (4) is mounted on the outer surface of the threaded rod (3); sliding rods (5) are mounted on both sides of the mounting bracket (4); and the cover plate (6) is mounted at the front end of the mounting bracket (4); The stirring assembly comprises a first A-bevel gear (7), a stirring mechanism (8), a mixing and cultivating barrel (9), a sealing groove (10) and a support shaft (11); the first A-bevel gear (7) is installed on the upper end surface of the cover plate (6); the stirring mechanism (8) is installed at the output end below the first A-bevel gear (7); the support shaft (11) is installed at the center of the upper end surface of the mounting base (1); the mixing and cultivating barrel (9) is installed at the end of the support shaft (11); and the sealing groove (10) is installed at the upper end of the mixing and cultivating barrel (9).

2. The oil-sealed probiotic symbiotic composition cultivation device according to claim 1, characterized in that: The outer surface of the mixing and cultivating barrel (9) is provided with a discharge plate (13), the inner wall of the discharge plate (13) is provided with an opening groove (14), and the interior of the opening groove (14) is provided with an electric heating pipe (15).

3. The oil-seal probiotic symbiotic composition cultivation device according to claim 1, characterized in that: The mounting bracket (4) forms a lifting structure through a threaded rod (3) and a sliding rod (5), and the cover plate (6) is fixedly connected to the mounting bracket (4).

4. The oil-seal probiotic symbiotic composition cultivation device according to claim 1, characterized in that: The cover plate (6) is in a groove-shaped structure, and the cover plate (6) forms a snap-fit ​​structure with the mixing and cultivating barrel (9) via a sealing groove (10).

5. The oil-seal probiotic symbiotic composition cultivation device according to claim 1, characterized in that: The stirring mechanism (8) comprises a connecting shaft (801), a first stirring rod (802), a first filter plate (803), a second stirring rod (804), an annular plate (805), a second filter plate (806) and a scraper (807); the connecting shaft (801) is installed at the lower output end of the first A-bevel gear (7); the first stirring rod (802) is installed on the outer surface of the connecting shaft (801); the scraper (807) is installed below the first stirring rod (802); the first filter plate (803) is installed below the scraper (807); the second stirring rod (804) is installed below the first filter plate (803); the annular plate (805) is installed below the second stirring rod (804); and the second filter plate (806) is installed below the annular plate (805).

6. The oil-seal probiotic symbiotic composition cultivation device according to claim 5, characterized in that: The first stirring rod (802) forms a rotating structure with the first A-bevel gear (7) via a connecting shaft (801), the second stirring rod (804) forms a rotating structure with the first A-bevel gear (7) via a connecting shaft (801), the gap of the first filter plate (803) is larger than that of the second filter plate (806), and the annular plate (805) is an arc-shaped structure.

7. The oil-seal probiotic symbiotic composition cultivation device according to claim 1, characterized in that: The mixed culture barrel (9) comprises a slot block (901), a slot bracket (902), a driving shaft (903), a third stirring rod (904) and a fourth stirring rod (905); the slot block (901) is installed on the bottom surface of the mixed culture barrel (9); the slot bracket (902) is meshed inside the slot block (901); the driving shaft (903) is installed on the upper end of the slot bracket (902); the third stirring rod (904) is installed on the inner wall of the mixed culture barrel (9); the fourth stirring rod (905) is installed below the third stirring rod (904); and the compression mechanism (12) is installed on the outer surface of the driving shaft (903).

8. The oil-seal probiotic symbiotic composition cultivation device according to claim 7, characterized in that: The compression mechanism (12) comprises a probiotic cultivation box (1201), a mounting housing (1202), a second A-bevel gear (1203), a transverse shaft (1204), a third A-bevel gear (1205), a vertical shaft (1206), a fourth A-bevel gear (1207), a reciprocating screw (1208), a pressing plate (1209) and a baffle (1210), the second A-bevel gear (1203) being mounted on the outer surface of the driving shaft (903), the transverse end of the second A-bevel gear (1203) being mounted with a transverse shaft (1204), and the transverse shaft (1204) A third A bevel gear (1205) is installed at the end of the gear (1205), a vertical shaft (1206) is installed inside the third A bevel gear (1205), a fourth A bevel gear (1207) is installed at the end of the vertical shaft (1206), a reciprocating screw (1208) is installed at the end of the fourth A bevel gear (1207), a pressure plate (1209) is installed on the outer surface of the reciprocating screw (1208), a probiotic cultivation box (1201) is installed on the outer side of the pressure plate (1209), and a mounting shell (1202) is installed at the lower end of the probiotic cultivation box (1201).

9. The oil-sealed probiotic symbiotic composition cultivation device according to claim 2, characterized in that: The opening grooves (14) are arranged in three groups, and the three groups of the opening grooves (14) are evenly distributed along the inner wall of the discharge plate (13).

10. The method for cultivating an oil-sealed probiotic symbiotic composition device according to claim 1, characterized in that: The steps include: Step 1: The threaded rod (3) is rotated by a motor to realize a certain lifting and lowering action of the cover plate (6) along the sliding rod (5), thereby realizing the opening and closing action of the mixed culture barrel (9) for loading the probiotic mixed composition. Then, when the cover plate (6) is opened and closed, the cover plate (6) is in a groove-shaped structure, so that the cover plate (6) can be engaged with the mixed culture barrel (9) through the sealing groove (10). Then, oil is injected into the sealing groove (10) to realize the sealing action of the mixed culture barrel (9), which can effectively isolate air and moisture, thereby preventing the probiotics from being affected by the external environment and maintaining their activity. It can isolate air and moisture and effectively extend the shelf life of the probiotics. Step 2: The first A bevel gear (7) is driven by a motor to realize the rotation of the connecting shaft (801), and then the first stirring rod (802) is rotated to facilitate a certain stirring effect on the probiotic symbiotic composition. The probiotic symbiotic composition can better maintain its activity, thereby improving its stability, and the first stirring is performed on it for initial mixing, thereby improving the stability of the probiotics, extending the shelf life, and improving the nutritional value. Then the scraper (807) is driven to rotate, and the obtained primary mixed raw material is filtered on the first filter plate (803) through the rotation of the scraper (807). Then the second stirring rod (804) is rotated, and the second stirring rod (804) is in a groove-shaped structure, and the raw material is stirred for a second time, so that the strains are easier to grow in the liquid culture medium, the propagation speed of the strains is increased, and the stability of the probiotics is further improved, the shelf life is extended, and the nutritional value is improved. Step three: The drive shaft (903) is rotated by the motor, and then the slot block (901) is fixedly connected to the bottom of the mixing and cultivating barrel (9), and is meshed with the slot bracket (902). When the first stirring rod (802) and the second stirring rod (804) rotate clockwise, the rotation of the slot block (901) realizes the rotation of the mixing and cultivating barrel (9) on the support shaft (11), and rotates counterclockwise to realize the third stirring rod (904) and the fourth stirring rod (905), thereby further stirring the probiotic symbiotic composition, improving the mixing efficiency, enabling the probiotic-deficient population to proliferate and grow in the body, further enhancing the probiotic's ability to survive and improving its activity. Step 4: The second A bevel gear (1203) is driven to rotate by the rotation of the driving shaft (903), and then the reciprocating screw (1208) is driven by the transmission of the transverse shaft (1204), the third A bevel gear (1205), the vertical shaft (1206) and the fourth A bevel gear (1207), so as to realize the rotation of the reciprocating screw (1208), the reciprocating motion of the installed pressing plate (1209) inside the probiotic cultivation box (1201), and the probiotics filtered by the second filter plate (806) when the annular plate (805) rotates are extruded and formed, which can increase the stability of the probiotics, extend their shelf life, promote the growth and reproduction of the probiotics, and increase their reproduction speed, so that the microorganisms in the probiotic mixture and the various complex vitamins and nutrients can play a greater role, which is beneficial to enhance the function of the probiotics, further regulate the balance of intestinal flora, promote intestinal peristalsis, and facilitate the storage and transportation of the probiotics.