Cultivation container convenient for fixing plant root system

By setting a positioning grid inside the sterile container, the problem of plant roots and stems separating from the substrate was solved, thereby improving the stability of the container and enhancing plant growth.

CN223913133UActive Publication Date: 2026-02-17TIANCHANG CHENGKONG ECOLOGICAL AGRICULTURE CO LTD
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Patent Information

Application Number
CN202520308932.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2026-02-17
Estimated Expiration
2035-02-25

AI Technical Summary

Technical Problem

During transportation, the roots and stems of plants in existing cup-shaped cultivation containers are prone to detaching from the substrate, affecting plant growth and market quality.

Method used

Positioning grids are installed inside sterile containers to enhance the structural strength of the gelatinous matrix and provide attachment points for plant roots and stems, forming a stable overall structure.

Benefits of technology

It improves the stability of the container during transportation, reduces the risk of plant damage, and ensures healthy plant growth and high-quality products for sale.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cultivation container facilitating fixation of a plant root system, and relates to the technical field of plant cultivation, the cultivation container comprises a positioning grid arranged in a sterile container, the height of a colloidal substrate is higher than the installation height of the positioning grid in the sterile container, and the colloidal substrate in the sterile container and the positioning grid are solidified into a whole. The plant root system in the sterile container develops towards the interior of the positioning grid, and the plant root system, the positioning grid and the sterile container form a solidified structure of the plant root system in the sterile container The method has the technical advantages that the positioning grid is additionally arranged in the sterile container, so that the strength of the colloidal matrix is improved, meanwhile, the rhizomes of the plant can also be attached to the positioning grid to grow, and the growth speed of the plant is increased; the plants, the positioning grid and the colloidal matrix form a stable whole in the sterile container, so that the stability of the plants in the transportation process is improved; by limiting the height of the colloidal substrate and the spatial height of the plant above the positioning grid, the stability of the plant, the positioning grid and the colloidal substrate as a whole in the sterile container can be guaranteed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of plant cultivation, in particular to a cultivation container facilitating fixation of plant root systems. BACKGROUND

[0002] There are various types of existing plant root system fixation cultivation containers, each with its own characteristics, aiming to meet the needs of different plant root system growth. Plug trays, with their low cost, easy operation and diversified specifications, have become the preferred choice for seedling stage, especially for sowing and cutting propagation. Gallon pots, with their characteristics of being sturdy, durable, anti-aging, moisture and fertilizer retention, are widely used in the production of small and medium-sized container seedlings. American plant bags, with their low cost, strong permeability and light weight, have become an ideal choice for saving water resources and promoting healthy root growth. Root control containers effectively limit the growth of taproots and promote the development of lateral roots through their freely detachable characteristics, making them suitable for the cultivation of medium and large-sized seedlings. Garden pots, with their diversified materials, aesthetic appearance and light weight, are widely used in plant cultivation and beautification in various places. In addition, peat containers provide ideal growth conditions for seedling roots due to their high water retention performance and sterile environment, while paper cup containers, with their characteristics of easy decay, easy transportation and resistance to soil bacterial invasion, have become an economical and practical cultivation container.

[0003] The common cup-shaped cultivation containers on the market have certain deficiencies in stability, mainly during transportation. Due to limitations in structural design or material selection of the container, plant roots often easily separate from the substrate, which not only adversely affects plant growth but also seriously affects the quality of the product for sale. The separation of roots and substrate can block the absorption of water and nutrients by plants, thereby affecting the overall health status and ornamental value of the plants. Therefore, solving this problem and improving the stability of cup-shaped cultivation containers is crucial for protecting plant root systems, maintaining their good growth state, and improving market sales quality. SUMMARY

[0004] The present device provides a cultivation container facilitating fixation of plant root systems, with the specific implementation as follows:

[0005] A cultivation container facilitating fixation of plant root systems, comprising:

[0006] a sterile container for holding a gel-like substrate and a plant;

[0007] a positioning grid arranged inside the sterile container, the height of the gel-like substrate being higher than the installation height of the positioning grid inside the sterile container, the gel-like substrate inside the sterile container being solidified with the positioning grid as a whole, and the plant root system inside the sterile container developing into the positioning grid, the three forming a solidification structure of the plant root system inside the sterile container.

[0008] Based on the above technical scheme, the sterile container is a conventional transparent material sterile cup. By installing a positioning grid inside the sterile container, the structural strength of the gel matrix is enhanced, not only making the gel matrix itself more stable, but also providing a reliable attachment point for the roots of the plants, allowing them to grow in an orderly and healthy manner along the positioning grid. In this way, the plant, the positioning grid and the gel matrix form a stable whole in the sterile container, greatly improving the stability and safety of the sterile container during transportation, effectively reducing the risk of plant damage caused by bumps or vibrations.

[0009] Preferably, the distance between the bottom of the positioning grid and the bottom of the sterile container is 3-6 cm.

[0010] Preferably, the distance between the top of the positioning grid and the top of the sterile container is 35-45 cm.

[0011] Based on the above technical scheme, by limiting the filling height of the gel matrix and combining with the suitable growth space height reserved above the positioning grid, it is ensured that the plant, the positioning grid and the gel matrix can exist as a highly coordinated and stable whole inside the sterile container, not only optimizing the growth environment of the plant, but also greatly promoting the stability of the overall structure.

[0012] Preferably, a neck-shaped staggered layer is provided below the inner side of the sterile container, and the positioning grid abuts the top of the staggered layer.

[0013] Preferably, the sterile container as a whole is of a variable diameter structure, and it is neck-shaped from top to bottom.

[0014] Preferably, an annular limiting groove is provided above the staggered layer on the inner side of the sterile container, and the positioning grid is interference-fitted on the side of the limiting groove.

[0015] Based on the above technical scheme, by setting the staggered layer structure, effective support for the positioning grid is achieved, not only enhancing the stability of the positioning grid, but also providing a more solid support for it. At the same time, in order to further improve the vertical limiting effect of the positioning grid in the sterile container, the limiting groove is set, which tightly cooperates with the positioning grid, effectively preventing accidental movement or shaking of the positioning grid in the vertical direction, thereby ensuring the absolute stability of the entire structure in the sterile container.

[0016] Preferably, the positioning grid is composed of an outer ring grid and an inner ring grid, and the inner ring grid is rotationally sleeved inside the annular outer ring grid.

[0017] Preferably, the grid opening size of the outer ring grid is larger than that of the inner ring grid.

[0018] Based on the above technical scheme, since the number of rhizomes in the middle part of the plant is significantly more than the peripheral part, the design is optimized, the size of the grid opening of the inner ring grid is reduced, the adhesion effect between the middle rhizomes and the grid is enhanced, so that the rhizomes can be more closely and firmly attached to the grid; the grid openings of the inner and outer ring grids can be inconsistent, that is, the grid openings of the outer ring grid can be flexibly adjusted to distinguish from the fixed orientation of the grid openings in the inner ring grid, and such staggered grid opening layout not only enriches the contact points between the rhizomes and the grid, but also further enhances the adhesion strength of the rhizomes on the grid, providing more solid support and protection for the growth of the plant.

[0019] Preferably, the top of the sterile container is provided with a plastic sealing film.

[0020] In summary, the present application includes the following beneficial technical effects:

[0021] 1. The utility model discloses a positioning grid is installed in the sterile container, which improves the strength of the gel matrix, and the rhizomes of the plant can also grow on the positioning grid, so that the plant, the positioning grid and the gel matrix form a stable whole in the sterile container, improving the stability of the plant during transportation.

[0022] 2. The utility model discloses the height of the gel matrix is limited, and the space height above the positioning grid of the plant, which can guarantee the stability of the plant, the positioning grid and the gel matrix as a whole in the sterile container, and the reasonable space structure makes the whole tend to be more stable.

[0023] 3. The utility model discloses simple structure realizes the support of the positioning grid through the setting staggered layer, and the limiting groove can also improve the vertical limiting effect of the positioning grid in the sterile container.

[0024] 4. The utility model discloses the number of rhizomes in the middle part of the plant is much larger than the periphery, so the adhesion effect of the middle rhizomes is improved by reducing the size of the grid opening of the inner ring grid, and the orientation of the grid opening of the outer ring grid can be different from that of the grid opening in the inner ring grid, and the adhesion strength of the plant rhizomes is further improved by the staggered grid opening. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is the structural schematic diagram of the utility model;

[0026] Figure 2 It is the explosion structural schematic diagram of the utility model;

[0027] Figure 3 It is the sectional view of the structure of the utility model;

[0028] Figure 4 It is the sectional view of the structure of the utility model;

[0029] Figure 5 Figure 3 is a structure schematic diagram of the positioning grid after deformation in the utility model.

[0030] Mark explanation:

[0031] 1, plastic film, 2, sterile container, 3, gel matrix, 4, positioning grid, 201, staggered layer, 202, limiting groove, 401, outer ring grid, 402, inner ring grid. Specific implementation

[0032] The specific implementation of the utility model will be described below in combination with the drawings and examples:

[0033] It should be noted that the structure, proportion, size, etc. shown in the drawings of the present specification are only used to cooperate with the content disclosed in the specification for understanding and reading by those skilled in the art, and are not used to limit the implementation conditions of the utility model. Any modification of structure, change of proportion relationship or adjustment of size, which does not affect the functions and purposes of the utility model, should still fall within the scope of the technical content disclosed by the utility model.

[0034] At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" referred to in the present specification are only for the convenience of clear description, and are not used to limit the scope of the utility model. The change or adjustment of the relative relationship does not substantially change the technical content, and is also considered as the implementation scope of the utility model.

[0035] The following will be described in combination with the drawings Figures 1-5 The present application will be further described in detail.

[0036] The embodiment of the present application discloses a cultivation container convenient for fixing plant root system.

[0037] Example 1

[0038] Referring to Figures 1 to 3 The embodiment discloses a cultivation container convenient for fixing plant root system, which comprises a sterile container 2 for containing gel matrix 3 and plants and a positioning grid 4 arranged in the sterile container 2. The height of the gel matrix 3 is higher than the installation height of the positioning grid 4 in the sterile container 2. The gel matrix 3 in the sterile container 2 is solidified with the positioning grid 4. The plant root system in the sterile container 2 develops into the positioning grid 4. The three form a solidification structure of the plant root system in the sterile container 2. In the structure, the top of the sterile container 2 is provided with a plastic film 1. The distance between the bottom of the positioning grid 4 and the bottom of the sterile container 2 is 3-6 cm. The distance between the top of the positioning grid 4 and the top of the sterile container 2 is 35-45 cm.

[0039] The lower side of the sterile container 2 is provided with a neck-shaped staggered layer 201, and the positioning grid 4 abuts the top of the staggered layer 201. The sterile container 2 has a variable-diameter structure, and it is neck-shaped from top to bottom. In the structure, the inside of the sterile container 2 is provided with an annular limiting groove 202 above the staggered layer 201, and the side of the positioning grid 4 is in interference fit with the limiting groove 202.

[0040] The specific implementation process is as follows: pour the liquid gel matrix 3 into the sterile container 2, and the liquid level of the gel matrix 3 is higher than the positioning grid 4; put the plants, and after the gel matrix 3 solidifies into a hard substance, the gel matrix 3, plant roots and the positioning grid 4 form a stable whole in the sterile container 2; after the plastic sealing film 1 is sealed, the sterile container 2 is transported and sold.

[0041] Embodiment 2

[0042] Reference Figures 4 to 5 Based on the above embodiment, the embodiment also discloses a cultivation container for conveniently fixing plant root systems. The positioning grid 4 is composed of an outer ring grid 401 and an inner ring grid 402, and the inner ring grid 402 is rotatably arranged in the inner part of the annular outer ring grid 401. In the structure, the size of the grid opening of the outer ring grid 401 is larger than that of the inner ring grid 402. The outer ring grid 401 and the inner ring grid 402 are randomly rotated to be staggered. The liquid gel matrix 3 is poured into the sterile container 2, and the liquid level of the gel matrix 3 is higher than the positioning grid 4. The plants are put in, and after the gel matrix 3 solidifies into a hard substance, the gel matrix 3, plant roots and the positioning grid 4 form a stable whole in the sterile container 2.

[0043] Many other changes and modifications can be made to the present application without departing from the spirit and scope of the application. It should be understood that the present application is not limited to the specific embodiments described herein, but the scope of the present application is defined by the appended claims.

Claims

1. A growing container facilitating plant root anchorage, characterized by, Include: A sterile container (2) for containing the gel matrix (3) and plants; A positioning grid (4) is arranged inside the sterile container (2), the height of the gel matrix (3) is higher than the installation height of the positioning grid (4) in the sterile container (2), the gel matrix (3) in the sterile container (2) is solidified with the positioning grid (4), the plant root system in the sterile container (2) develops into the positioning grid (4), and the three form a solidified structure of plant root system in the sterile container (2).

2. The growing container of claim 1, wherein, The inside of the sterile container (2) is provided with a stepped layer (201) in the shape of a neck, and the positioning grid (4) abuts against the top of the stepped layer (201).

3. The growing container of claim 2, wherein, The sterile container (2) is a variable diameter structure as a whole, and it is in the shape of a neck from top to bottom.

4. The growing container of claim 3, wherein, The inside of the sterile container (2) is provided with a ring-shaped limiting groove (202) above the stepped layer (201), and the positioning grid (4) is interference fit on the side of the limiting groove (202).

5. The growing container of claim 1, wherein, The top of the sterile container (2) is provided with a plastic sealing film (1).

6. The growing container of claim 1, wherein, The positioning grid (4) is composed of an outer ring grid (401) and an inner ring grid (402), and the inner ring grid (402) is rotatably arranged inside the outer ring grid (401).

7. The growing container of claim 6, wherein, The size of the grid opening of the outer ring grid (401) is larger than that of the inner ring grid (402).

8. The growing container of claim 1, wherein, The distance between the bottom of the positioning grid (4) and the bottom of the sterile container (2) is 3-6 cm.

9. The growing container of claim 1, wherein, The distance between the top of the positioning grid (4) and the top of the sterile container (2) is 35-45 cm.