Planting device suitable for plant vacuum infiltration transient expression

By designing a planting device including planting pot assembly, cover plate and snaps, the problems of low vacuum infiltration efficiency and vulnerability of leaves in the prior art are solved, and large-scale and efficient vacuum infiltration treatment is achieved, which improves production efficiency and reduces the risk of plant damage.

CN223008006UActive Publication Date: 2025-06-24HUNAN NUOHEXIN BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422260156.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-06-24
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

During the transient expression of vacuum impregnation in existing plant pots, they need to be transported and impregnated separately, which is inefficient and easily damages the leaves of the plant.

Method used

A planting device suitable for transient expression of vacuum impregnation in plants is designed, including planting pot assembly, cover plate and snaps. All leaves of planting pots can be immersed in bacterial fluid for vacuum impregnation at the same time.

Benefits of technology

Large-scale and efficient plant vacuum impregnation treatment is achieved, reducing manual operation, improving production efficiency, and reducing the risk of plant damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a planting device suitable for plant vacuum infiltration transient expression, which comprises a planting pot assembly, a cover plate and a buckle, and the planting pot assembly comprises a planting pot mounting plate and a plurality of planting pots; each planting pot is provided with a pot body and a bottom plate which are integrally formed, the bottom surface of the bottom plate is provided with a collecting groove and a plurality of grooves, and the bottom plate is further provided with a plurality of first through holes; a second through hole is formed in the planting pot mounting plate; the cover plate is placed on the planting pot mounting plate, third through holes are formed in the cover plate, each third through hole is communicated with one second through hole, the hole diameter of each third through hole is smaller than that of each second through hole, and the cover plate and the planting pot mounting plate are fixedly connected together through the buckles. According to the utility model, the leaves of all plants in all the planting pots can be simultaneously immersed in the bacterial liquid for vacuum infiltration, the treatment scale is large, and the efficiency is high.
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Description

Technical Field

[0001] The utility model belongs to the technical field of plant cultivation, and more specifically, relates to a cultivation device suitable for instantaneous expression of plant vacuum infiltration. Background Art

[0002] A planting pot is a container for planting plants, which can provide suitable moisture and nutrients for plant growth and beautify the greenhouse at the same time.

[0003] The planting pot needs to be filled with sufficient potting soil and fertilized regularly. Appropriate moisture should be provided for the plants, and there should be drainage holes at the bottom of the pot. The drainage holes can ensure smooth drainage of the potting soil. In short, the planting pot is a very important planting tool, and correct use can make the plants grow better.

[0004] Existing planting pots are used independently. When planting plants in a single planting pot and using the plant instantaneous expression technology to perform vacuum infiltration on the plants, it is necessary to transport the plants in single pots to the glove box separately and infiltrate one pot of plants at a time in a beaker with bacterial liquid. The infiltration quantity is small, the scale is small, and the efficiency is low. If multiple planting pots are separately moved into a larger vacuum box, it is rather cumbersome to transport them one by one in batches. Moreover, after a single planting pot is placed in the vacuum box, it is easy to bump and fall, which will damage the leaves of the plants that need vacuum infiltration. Summary of the Utility Model

[0005] In view of the above defects or improvement requirements of the prior art, the utility model provides a cultivation device suitable for instantaneous expression of plant vacuum infiltration, which can immerse the leaves of all plants in all planting pots into the bacterial liquid for vacuum infiltration at the same time, with a large processing scale and high efficiency.

[0006] To achieve the above object, according to the utility model, there is provided a cultivation device suitable for instantaneous expression of plant vacuum infiltration, which is characterized in that it includes a planting pot assembly, a cover plate and a buckle, wherein:

[0007] The planting pot assembly includes a planting pot mounting plate and a plurality of planting pots, and the planting pot mounting plate is integrally formed with all the planting pots;

[0008] For each planting pot, it has a pot body and a bottom plate integrally formed. The top of the pot body is fixed to the planting pot mounting plate. A collecting groove and a plurality of grooves arranged circumferentially are provided on the bottom surface of the bottom plate. Each groove is respectively communicated with the collecting groove. A plurality of first through holes are also provided on the bottom plate;

[0009] At least one of the first through holes is provided between any two adjacent grooves;

[0010] The planting pot mounting plate is respectively provided with second through holes at positions corresponding to each of the planting pots, and each of the second through holes is respectively communicated with the inner cavity of a planting pot;

[0011] The cover plate is placed on the planting pot mounting plate, and the cover plate is respectively provided with third through holes at positions corresponding to each of the second through holes. Each of the third through holes is respectively communicated with a second through hole, and the aperture of the third through hole is smaller than that of the second through hole. The cover plate and the planting pot mounting plate are fixedly connected together by a plurality of the buckles.

[0012] Preferably, each of the buckles is respectively hinged to the planting pot by a horizontal hinge shaft.

[0013] Preferably, a hinge seat is arranged on the pot body of each of the planting pots, and each of the hinge shafts is respectively connected to the hinge seats of two adjacent planting pots.

[0014] Preferably, the edge of the top surface of the cover plate has a notch groove;

[0015] The buckles for fixedly connecting the cover plate and the planting pot mounting plate extend into the notch groove, and the top surface of the buckle is flush with the top surface of the cover plate.

[0016] Preferably, the collecting groove is a circular groove, and there are four of the grooves and they are arranged in a cross shape.

[0017] Preferably, all the first through holes are circumferentially distributed.

[0018] Preferably, the number of the first through holes between any two adjacent grooves is equal.

[0019] Preferably, the planting pot mounting plate is integrally rectangular, and a plurality of the planting pots are arranged in an array.

[0020] Preferably, the central lines of the planting pot, the second through hole and the third through hole are coaxially arranged.

[0021] Preferably, a tray for receiving all the planting pots is further included.

[0022] Generally speaking, compared with the prior art by the above technical solution conceived by the present utility model, the following beneficial effects can be achieved:

[0023] 1) The planting device applicable to the transient expression of plant vacuum infiltration of the present utility model has a plurality of planting pots in the planting pot assembly, and they are all installed on the planting pot mounting plate. Plants that need to be vacuum infiltrated using the plant transient expression technology can be planted in all the planting pots. After the leaves of the plants grow to a certain extent, the entire planting device is transported as a whole and the entire planting device is flipped and inverted into a water tank with a bacterial solution placed on a shelf, so that the leaves of the plants are immersed in the bacterial solution. Then, the shelf, the planting device, and the water tank are placed together in a vacuum chamber, and thus, the plants in all the planting pots of the planting device can be subjected to vacuum infiltration treatment at one time. The treatment scale and quantity are large, and the efficiency is high. Compared with the traditional small-pot planting, the present utility model can perform centralized seedling transplantation, centralized transportation, and centralized infiltration, improving the production efficiency.

[0024] 2) In the planting device applicable to the transient expression of plant vacuum infiltration of the present utility model, the cover plate and the planting pot mounting plate are connected together by a plurality of buckles. The connection is reliable. Through the connection of the buckles, the planting device can be flipped as a whole and then the leaves can be placed in the bacterial solution, improving the stability. Moreover, compared with the method of sequentially placing the plants in individual planting pots, it saves labor and greatly improves the efficiency. At the same time, since they are placed together, the damage to the plants is reduced, and the damage and dropping of the leaves can be greatly avoided, reducing losses and the risk of plant wound infection. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 、 Figure 2 are schematic diagrams of the present utility model from different perspectives;

[0026] Figure 3 is a schematic diagram of the buckle installed on the planting pot assembly of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the following further details the present utility model in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model. In addition, the technical features involved in the various embodiments of the present utility model described below can be combined with each other as long as they do not conflict with each other.

[0028] Refer to Figures 1 to 3 , the planting device applicable to the transient expression of plant vacuum infiltration includes a planting pot assembly 1, a cover plate 2, and a buckle 3, wherein:

[0029] The planting pot assembly 1 includes a planting pot mounting plate 11 and a plurality of planting pots 12. The planting pot mounting plate 11 is integrally formed with all the planting pots 12. The planting pot assembly 1 can be made of engineering polypropylene material and formed by injection molding technology.

[0030] For each of the planting pots 12, it has an integrally formed pot body 121 and a bottom plate 122. The pot body 121 is preferably cylindrical. The top of the pot body 121 is fixed to the planting pot mounting plate 11. A collecting groove 123 and a plurality of grooves 124 arranged circumferentially are provided on the bottom surface of the bottom plate 122. The grooves 124 are preferably straight grooves. Each of the grooves 124 is respectively communicated with the collecting groove 123. The collecting groove 123 is a circular groove for collecting the nutrient solution in the grooves 124. The grooves 124 are preferably provided with more than three. In the present invention, the grooves 124 are preferably provided with four and they are arranged in a cross shape, so that the nutrient solution can flow into the collecting groove 123 from four directions. A plurality of first through holes 125 are further provided on the bottom plate 122. The nutrient solution can flow into the planting pot 12 through these first through holes 125 to provide nutrition for the plants.

[0031] At least one of the first through holes 125 is provided between any two adjacent grooves 124. Then these first through holes 125 are distributed at multiple positions on the bottom of the pot. The nutrient solution can enter the planting pot 12 from multiple directions to provide nutrition for the plants. All the first through holes 125 are more preferably circumferentially distributed. The number of the first through holes 125 between any two adjacent grooves 124 is equal. The arrangement of the first through holes 125 is relatively regular, so that the nutrient solution can enter the seedling cultivation substrate in the planting pot 12 more evenly.

[0032] The present invention preferably further includes a tray for receiving all the planting pots 12. By pouring the nutrient solution into the tray below the planting device, and then the nutrient solution flows through the lower grooves 124 and the collecting groove 123 and flows into the planting pot 12 from the first through holes 125. Therefore, in the present invention, the nutrient solution is poured from below the planting device to enable the plants inside to absorb the nutrient solution.

[0033] Second through holes 126 are respectively provided on the planting pot mounting plate 11 at positions corresponding to each of the planting pots 12. Each of the second through holes 126 is respectively communicated with the inner cavity of a planting pot 12.

[0034] The cover plate 2 is placed on the planting pot mounting plate 11. Third through holes 21 are respectively provided on the cover plate 2 at positions corresponding to each of the second through holes 126. Each of the third through holes 21 is respectively communicated with a second through hole. And the aperture of the third through hole 21 is smaller than the aperture of the second through hole 126 to prevent the seedling cultivation substrate and plants in the planting pot 12 from falling out. The cover plate 2 and the planting pot mounting plate 11 are fixedly connected together through a plurality of the buckles 3. Then the whole planting device can be carried as a whole. The second through holes 126 and the third through holes 21 are also the growth spaces of the plants. The plants grow outwards from the second through holes 126 and the third through holes 21.

[0035] When vacuum infiltration treatment is required for plants, the water tank can be filled with the bacterial solution first. Then, the entire planting device is inverted so that the plants are immersed in the bacterial solution and then placed in the vacuum chamber. The extraction time is generally 8 ± 1 days after the infiltration is completed. The actual extraction time needs to be determined by observing the leaf phenotypes. Select the leaves with successful infiltration and good phenotypes.

[0036] Further, each of the buckles 3 is respectively hinged on the planting pot 12 through a horizontal hinge shaft 5. Then, the buckle 3 can be conveniently flipped to lock and release the cover plate 2 and the planting pot mounting plate 11. Moreover, since the buckle 3 is connected to the planting pot 12, it is not easy to fall off.

[0037] Further, a hinge seat 6 is provided on the body 121 of each planting pot 12, and each hinge shaft 5 is respectively connected to the hinge seats 6 of two adjacent planting pots 12. Then, the hinge seats 6 and the hinge shafts 5 connect the planting pots 12 in pairs, which can improve the overall strength of the planting device. Moreover, the hinge shaft 5 can also function as a handle, facilitating the overall handling of the planting device.

[0038] Further, a notch groove 22 is provided at the edge of the top surface of the cover plate 2, that is, the edge of the cover plate 2 is thinner than the middle part.

[0039] The buckle 3 that fixedly connects the cover plate 2 and the planting pot mounting plate 11 extends into the notch groove 22, and the top surface of the buckle 3 is flush with the top surface of the cover plate 2. After their top surfaces are flush, the operation requirements during the transfection process can be reduced. The entire planting device can be placed upside down on the water tank for translation, without worrying about the planting device bumping into the water tank or being unable to move the planting device, making the translation of the planting device on the water tank relatively easy.

[0040] Further, the planting pot mounting plate 11 is integrally rectangular, and multiple planting pots 12 are arranged in an array, which is convenient for turning over so that each plant aligns with the notch on the water tank. Preferably, there are 2 rows and 4 columns of the planting pots 12 in the present invention, a total of 8.

[0041] Further, the center lines of the planting pot 12, the second through hole, and the third through hole 21 are coaxially arranged, which is convenient for transplanting seedlings and plant growth.

[0042] The planting device of the present invention can perform centralized planting, centralized seedling transplantation, centralized handling, and centralized infiltration, thereby improving production efficiency.

[0043] It is easy for those skilled in the art to understand that the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A planting device suitable for plant vacuum infiltration transient expression, characterized in that: It includes a planting pot assembly, a cover plate and a buckle, wherein: The planting pot assembly includes a planting pot mounting plate and a plurality of planting pots, wherein the planting pot mounting plate is integrally formed with all the planting pots; Each of the planting pots has an integrally formed pot body and a bottom plate, the top of the pot body is fixed to the planting pot mounting plate, the bottom surface of the bottom plate is provided with a collecting groove and a plurality of circumferentially arranged grooves, each of the grooves is respectively connected to the collecting groove, and the bottom plate is also provided with a plurality of first through holes; At least one first through hole is disposed between any two adjacent grooves; The planting pot mounting plate is provided with second through holes at positions corresponding to each of the planting pots, and each of the second through holes is communicated with the inner cavity of one of the planting pots; The cover plate is placed on the planting pot mounting plate, and the cover plate is provided with third through holes at positions corresponding to each of the second through holes, each of the third through holes is connected to one of the second through holes, and the aperture of the third through hole is smaller than the aperture of the second through hole, and the cover plate and the planting pot mounting plate are fixedly connected together by a plurality of the clips.

2. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: Each of the buckles is hinged to the planting pot via a horizontal hinge shaft.

3. The planting device suitable for plant vacuum infiltration transient expression according to claim 2, characterized in that: A hinge seat is arranged on the pot body of each planting pot, and each hinge shaft is respectively connected to the hinge seats of two adjacent planting pots.

4. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: The edge of the top surface of the cover plate has a notch groove; The buckle that fixes the cover plate and the planting pot mounting plate together extends into the notch groove, and the top surface of the buckle is flush with the top surface of the cover plate.

5. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: The collecting groove is a circular groove, and there are four grooves which are arranged in a cross shape.

6. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: All the first through holes are distributed circumferentially.

7. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: The number of the first through holes between any two adjacent grooves is equal.

8. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: The planting pot mounting plate is rectangular as a whole, and a plurality of the planting pots are distributed in an array.

9. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: The center line of the planting pot, the center line of the second through hole and the center line of the third through hole are coaxially arranged.

10. The planting device suitable for plant vacuum infiltration transient expression according to claim 1, characterized in that: Also includes a tray to hold all the planter pots.