CN220685082U - Microbial agent storage device for silage fermentation - Google Patents

Microbial agent storage device for silage fermentation Download PDF

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Publication number
CN220685082U
CN220685082U CN202322292002.XU CN202322292002U CN220685082U CN 220685082 U CN220685082 U CN 220685082U CN 202322292002 U CN202322292002 U CN 202322292002U CN 220685082 U CN220685082 U CN 220685082U
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China
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cabinet
microbial agent
storage device
fixedly connected
storage cabinet
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CN202322292002.XU
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Chinese (zh)
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颜峻峰
毛巫几
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Chengdu Kean Technology Co ltd
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Chengdu Kean Technology Co ltd
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Abstract

The utility model discloses a microbial agent storage device for silage fermentation, which comprises a storage cabinet, wherein a refrigerating cavity is arranged at the bottom end inside the storage cabinet, a refrigerating assembly is arranged between the storage cabinet and the refrigerating cavity, and one end of a placing plate is fixedly connected with a first handle. This a microbial agent storage device for silage fermentation is through being provided with cold-stored chamber, place the board, first handle, fixture block and draw-in groove, the inside of cabinet is provided with cold-stored chamber and places the board, the microbial agent that needs cold-stored can be deposited in cold-stored chamber, thereby can prevent that outside temperature from influencing the effect of microbial agent, pulling first handle when needs take the microbial agent, first handle drives to place the board and makes the fixture block of placing the board both sides slide in the inside of draw-in groove, thereby can pull to place the board and conveniently take the microbial agent, the inconvenient microbial agent of taking out of depositing of solution just influences the problem of microbial agent result of use easily.

Description

Microbial agent storage device for silage fermentation
Technical Field
The utility model relates to the technical field of storage devices, in particular to a microbial agent storage device for silage fermentation.
Background
Silage is a kind of fodder, is formed by sealing and fermenting plant fodder containing more water, and is mainly used for feeding ruminants, and microbial agents are needed to be used in the fermentation of silage, and are prepared from two or more than two mutually non-antagonistic microbial strains, and a storage device is needed to store the microbial agents before the microbial agents are used.
However, when a microbial agent storage device for silage fermentation is used, it is found that the stored microbial agent is inconvenient to take out and the use effect of the microbial agent is easily affected. Therefore, we propose a novel microbial inoculant storage device for silage fermentation that ameliorates the above-described problems.
Disclosure of Invention
The utility model aims to provide a microbial agent storage device for silage fermentation, which solves the problems that the stored microbial agent is inconvenient to take out and the use effect of the microbial agent is easy to influence in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a microbial inoculum storage device for silage fermentation, including the cabinet, the inside bottom of cabinet is provided with the cold-stored chamber, be provided with refrigeration subassembly between cabinet and the cold-stored chamber, the inside of cabinet is provided with places the board, the one end fixedly connected with first handle of placing the board, the bottom activity hinge of cabinet one end both sides has first cabinet door, the both sides activity hinge of cabinet one end has the second cabinet door, the inside fixedly connected with baffle of cabinet, the both sides fixedly connected with fixture block of placing the board, the both sides of the inside of cabinet are provided with the draw-in groove.
Preferably, the clamping block is embedded in the clamping groove, and one ends of the first cabinet door and the second cabinet door are fixedly connected with the second handle.
Preferably, the inside of placing the board has been seted up and has been placed the chamber, the both sides of placing the intracavity portion are provided with the limiting plate, the inside wall of limiting plate is provided with the protection pad, fixedly connected with spacing spring between placing chamber and the limiting plate.
Preferably, the damping telescopic rod is arranged in the limiting spring, the damping telescopic rod is arranged between the limiting plate and the placing cavity, and a plurality of groups of placing cavities are arranged.
Preferably, the both sides fixedly connected with connecting block at second cabinet door other end top, fixedly connected with connecting rod between the connecting block, the outside of connecting rod is provided with the extension cloth, the bottom of extension cloth is provided with shading cloth.
Preferably, the extension cloth slides left and right outside the connecting rod, and the shading cloth is arranged at one end inside the storage cabinet.
Compared with the prior art, the utility model has the beneficial effects that: the microbial agent storage device for silage fermentation not only realizes the convenience of taking and placing the microbial agent, realizes the convenience of fixing a microbial agent bottle, but also realizes the shading of the microbial agent;
(1) The refrigerator is provided with the refrigerating cavity, the placing plate, the first handle, the clamping blocks and the clamping grooves, the refrigerating cavity and the placing plate are arranged in the storage cabinet, and the microbial agents needing to be refrigerated can be stored in the refrigerating cavity, so that the effect of the microbial agents can be prevented from being influenced by external temperature, the first handle is pulled when the microbial agents need to be taken, the placing plate is driven by the first handle to enable the clamping blocks on two sides of the placing plate to slide in the clamping grooves, and the placing plate can be pulled to conveniently take the microbial agents;
(2) The microbial agent is placed in the placing cavity through the arrangement of the placing cavity, the limiting plate, the protection pad, the limiting spring and the damping telescopic rod, the limiting spring enables the limiting plate to limit and fix the microbial agent through elasticity of the limiting spring, so that the microbial agent can be prevented from falling down due to shaking of the microbial agent in the placing cavity, the protection pad on the inner side wall of the limiting plate can protect the microbial agent, and the damping telescopic rod can limit the limiting spring to reduce shaking amplitude of the damping telescopic rod;
(3) Through being provided with shading cloth, connecting rod, connecting block and extension cloth, the shading cloth passes through the outside bottom of extension cloth installation connecting rod, and the shading cloth can be to the inside microbial agent of cabinet and shade to can protect microbial agent, prevent that microbial agent from being influenced by light, need pack up the shading cloth and make the extension cloth on pulling shading cloth make shading cloth top slide in the outside of connecting rod can.
Drawings
FIG. 1 is a schematic view of an expanded front cross-sectional structure of the present utility model;
FIG. 2 is a schematic elevational view of the present utility model;
FIG. 3 is a schematic top view of the placement plate of the present utility model;
fig. 4 is an enlarged sectional view of fig. 1 a according to the present utility model.
In the figure: 1. a storage cabinet; 2. a refrigeration assembly; 3. a refrigeration cavity; 4. a first cabinet door; 5. shading cloth; 6. a second cabinet door; 7. a connecting rod; 8. placing a plate; 9. a first handle; 10. a connecting block; 11. extending the cloth; 12. a partition plate; 13. a second handle; 14. a placement cavity; 15. a limiting plate; 16. a protective pad; 17. a limit spring; 18. damping telescopic rod; 19. a clamping block; 20. a clamping groove.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1: referring to fig. 1-4, a microbial inoculum storage device for silage fermentation comprises a storage cabinet 1, wherein a refrigerating cavity 3 is arranged at the bottom end inside the storage cabinet 1, a refrigerating component 2 is arranged between the storage cabinet 1 and the refrigerating cavity 3, a placing plate 8 is arranged inside the storage cabinet 1, one end of the placing plate 8 is fixedly connected with a first handle 9, first cabinet doors 4 are movably hinged to the bottoms of two sides of one end of the storage cabinet 1, second cabinet doors 6 are movably hinged to two sides of one end of the storage cabinet 1, a partition plate 12 is fixedly connected to the inside of the storage cabinet 1, clamping blocks 19 are fixedly connected to two sides of the placing plate 8, and clamping grooves 20 are formed in two sides inside the storage cabinet 1;
the clamping block 19 is embedded in the clamping groove 20, and one ends of the first cabinet door 4 and the second cabinet door 6 are fixedly connected with the second handle 13;
specifically, as shown in fig. 1 and 4, the storage cabinet 1 is internally provided with the refrigerating cavity 3 and the placing plate 8, and the refrigerating cavity 3 can store microbial agents needing to be refrigerated, so that the effect of the microbial agents can be prevented from being influenced by external temperature, the first handle 9 is pulled when the microbial agents need to be taken, the placing plate 8 is driven by the first handle 9 to enable the clamping blocks 19 on two sides of the placing plate 8 to slide in the clamping grooves 20, and the placing plate 8 can be pulled to conveniently take the microbial agents.
Example 2: the inside of the placing plate 8 is provided with a placing cavity 14, two sides of the inside of the placing cavity 14 are provided with limiting plates 15, the inner side walls of the limiting plates 15 are provided with protection pads 16, a limiting spring 17 is fixedly connected between the placing cavity 14 and the limiting plates 15, the inside of the limiting spring 17 is provided with a damping telescopic rod 18, the damping telescopic rod 18 is arranged between the limiting plates 15 and the placing cavity 14, and the placing cavities 14 are provided with a plurality of groups;
specifically, as shown in fig. 3, the microbial agent is placed in the placement cavity 14, the limiting spring 17 enables the limiting plate 15 to limit and fix the microbial agent through self elasticity, so that the microbial agent can be prevented from falling down due to shaking in the placement cavity 14, the protecting pad 16 on the inner side wall of the limiting plate 15 can protect the microbial agent, and the damping telescopic rod 18 can limit the limiting spring 17 to reduce the shaking amplitude of the damping telescopic rod 18.
Example 3: the two sides of the top of the other end of the second cabinet door 6 are fixedly connected with connecting blocks 10, connecting rods 7 are fixedly connected between the connecting blocks 10, extension cloth 11 is arranged outside the connecting rods 7, shading cloth 5 is arranged at the bottom end of the extension cloth 11, the extension cloth 11 slides left and right outside the connecting rods 7, and the shading cloth 5 is arranged at one end inside the storage cabinet 1;
specifically, as shown in fig. 1, the light shielding cloth 5 is installed at the bottom end of the outer portion of the connecting rod 7 through the extension cloth 11, and the light shielding cloth 5 can shield the microbial agent inside the storage cabinet 1, so that the microbial agent can be protected from being affected by light, and the light shielding cloth 5 needs to be retracted to enable the extension cloth 11 at the top end of the light shielding cloth 5 to slide outside the connecting rod 7 by pulling the light shielding cloth 5.
Working principle: the utility model can store the microbial agent needing refrigeration when in use, thus the microbial agent can be prevented from being influenced by external temperature, the microbial agent is placed in the placement cavity 14, the limiting spring 17 enables the limiting plate 15 to limit and fix the microbial agent through self elasticity, thus the microbial agent can be prevented from being rocked in the placement cavity 14 to cause the microbial agent to topple, the protection pad 16 can protect the microbial agent, the damping telescopic rod 18 can limit the limiting spring 17 to reduce the rocking amplitude of the damping telescopic rod 18, the first handle 9 is pulled when the microbial agent needs to be taken, the first handle 9 drives the placement plate 8 to enable the clamping blocks 19 at two sides of the placement plate 8 to slide in the clamping grooves 20, the placement plate 8 can be pulled to conveniently take the microbial agent in the placement cavity 14, the shading cloth 5 is arranged at the bottom end outside the connecting rod 7 through the extension cloth 11, the microbial agent in the storage cabinet 1 can be prevented from being rocked, the shading cloth 5 can be protected, and the shading cloth 5 can be prevented from being pulled outside the extension cloth 5 to enable the shading cloth 5 to slide.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. Microbial agent storage device for silage fermentation, including cabinet (1), its characterized in that: the refrigerator comprises a storage cabinet (1), wherein a refrigerating cavity (3) is formed in the bottom of the storage cabinet (1), a refrigerating assembly (2) is arranged between the storage cabinet (1) and the refrigerating cavity (3), a placing plate (8) is arranged in the storage cabinet (1), a first handle (9) is fixedly connected to one end of the placing plate (8), a first cabinet door (4) is movably hinged to the bottom of two sides of one end of the storage cabinet (1), a second cabinet door (6) is movably hinged to the two sides of one end of the storage cabinet (1), a partition plate (12) is fixedly connected to the inside of the storage cabinet (1), clamping blocks (19) are fixedly connected to the two sides of the placing plate (8), and clamping grooves (20) are formed in the two sides of the inside of the storage cabinet (1).
2. The microbial inoculant storage device for silage fermentation according to claim 1, wherein: the clamping block (19) is embedded in the clamping groove (20), and one ends of the first cabinet door (4) and the second cabinet door (6) are fixedly connected with a second handle (13).
3. The microbial inoculant storage device for silage fermentation according to claim 1, wherein: place the inside of board (8) and offered and place chamber (14), place the inside both sides of chamber (14) and be provided with limiting plate (15), the inside wall of limiting plate (15) is provided with protection pad (16), fixedly connected with spacing spring (17) between placing chamber (14) and limiting plate (15).
4. A microbial inoculant storage device for silage fermentation according to claim 3, wherein: the inside of spacing spring (17) is provided with damping telescopic link (18), damping telescopic link (18) set up between limiting plate (15) and place chamber (14), place chamber (14) and be provided with the multiunit.
5. The microbial inoculant storage device for silage fermentation according to claim 1, wherein: the cabinet is characterized in that connecting blocks (10) are fixedly connected to two sides of the top of the other end of the second cabinet door (6), connecting rods (7) are fixedly connected between the connecting blocks (10), extension cloth (11) is arranged outside the connecting rods (7), and shading cloth (5) is arranged at the bottom end of the extension cloth (11).
6. The microbial inoculant storage device for silage fermentation according to claim 5, wherein: the extension cloth (11) slides left and right outside the connecting rod (7), and the shading cloth (5) is arranged at one end inside the storage cabinet (1).
CN202322292002.XU 2023-08-25 2023-08-25 Microbial agent storage device for silage fermentation Active CN220685082U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322292002.XU CN220685082U (en) 2023-08-25 2023-08-25 Microbial agent storage device for silage fermentation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322292002.XU CN220685082U (en) 2023-08-25 2023-08-25 Microbial agent storage device for silage fermentation

Publications (1)

Publication Number Publication Date
CN220685082U true CN220685082U (en) 2024-03-29

Family

ID=90410216

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322292002.XU Active CN220685082U (en) 2023-08-25 2023-08-25 Microbial agent storage device for silage fermentation

Country Status (1)

Country Link
CN (1) CN220685082U (en)

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