Multifunctional vegetable transplanting device

By introducing structures such as limiting protrusions, upper limit retaining rings, and limiting sleeves into the vegetable transplanting device, the problem of vegetables tipping over during transportation is solved, the stability of the device and the protection of the vegetables are achieved, and the flexibility of use and the appearance of the vegetables are enhanced.

CN224139670UActive Publication Date: 2026-04-21HENGSHUI LIHUA RUNKANG ECOLOGICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENGSHUI LIHUA RUNKANG ECOLOGICAL TECH CO LTD
Filing Date
2025-04-29
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing vegetable transplanting devices are prone to tipping over during transportation, causing damage to vegetables and are inconvenient to use, especially when the planting board is placed in the planting pot, which affects the growth and appearance of the vegetables.

Method used

A multifunctional vegetable transplanting device including a planting pot and a planting rack was designed. The planting rack is equipped with a planting board and planting holes. A limiting protrusion is set on the inner side of the planting pot near the top. An upper limit retaining ring is set around the upper surface of the planting board. A limiting sleeve is set on the lower surface of the planting board. The limiting sleeve is a frustum-shaped structure with a larger top and a smaller bottom. A ring-shaped support and a water-absorbing sponge are set at the bottom to improve stability and protection.

Benefits of technology

It effectively prevents vegetables and planting baskets from tipping over during transportation, maintains the stability and integrity of vegetables, reduces root damage, provides multiple planting hole layout options, is suitable for different vegetables and experimental needs, and improves ease of use and vegetable appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of potted vegetable transplanting devices, and discloses a multifunctional vegetable transplanting device. According to the main technical characteristics, the device comprises a planting pot and a planting frame, the planting frame comprises a planting plate and planting holes located in the planting plate, a limiting convex ring is arranged on the inner side face, close to the upper portion, of the planting pot, and an upper limiting baffle ring is arranged on the periphery of the upper surface of the planting plate; the outer diameter of the upper limiting baffle ring is equal to the inner diameter of the planting pot above the limiting convex ring, the outer diameter of the planting plate is smaller than the inner diameter of the limiting convex ring, and limiting sleeves are arranged at the positions, corresponding to the planting holes, of the lower surface of the planting plate. In the moving process, the planting baskets are limited by the limiting sleeves, vegetables and the planting baskets cannot topple over, the whole planting plate cannot incline in the planting pots, during express delivery or other transportation, only the planting pots and the peripheries of the vegetables above need to be wrapped, the vegetables cannot fall over, and the condition is better.
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Description

Technical Field

[0001] This utility model belongs to the technical field of potted vegetable transplanting devices, and in particular relates to a multifunctional vegetable transplanting device. Background Technology

[0002] To improve quality of life and facilitate consumption, many people grow potted vegetables at home. Potted vegetables, through photosynthesis, can increase indoor oxygen levels, making the air fresher, and the vegetables can also be eaten. Currently, potted vegetables are mainly grown in two ways: First, direct cultivation: Seeds are placed in planting baskets placed in planting holes on a planting rack. This method has a long cultivation time, hindering its widespread adoption. Second, cultivation in a cultivation tank, followed by transplanting to a vegetable transplanting device, which is then delivered to users' homes via express delivery or distribution. Users place the transplanting device on their balconies or windowsills, allowing them to harvest fresh vegetables at any time. Existing vegetable transplanting devices include planting pots and planting racks. The planting rack includes a planting board and planting holes on the planting board. A planting basket with a rim is placed in the planting holes, and the planting board is placed in the planting pot. Seedlings are first raised in a planting tank using the planting board with the planting basket. Once the vegetables reach a certain height, the planting board with the vegetables is transplanted into the planting pot, and finally, the planting pot with the planting board is packaged and sold. This method has the following drawbacks: First, when the planting board with vegetables is moved, the vegetables and planting baskets tend to tip over when the board is shaken due to their high center of gravity, causing damage to the vegetables and hindering their later growth. Moreover, the vegetables tend to be crooked, resulting in poor appearance and lower prices. Second, when the planting board is placed in the planting pot, the vegetables and planting trays tend to tip over when the board is shaken, which also causes damage to the vegetables and hinders their later growth. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a multifunctional vegetable transplanting device that has good stability, prevents vegetables from tipping over, and does not damage vegetables.

[0004] To solve the above problems, the technical solution adopted by this utility model multifunctional vegetable transplanting device is as follows: it includes a planting pot and a planting frame. The planting frame includes a planting plate and planting holes on the planting plate. A limiting protrusion ring is provided on the inner side of the planting pot near the upper part. An upper limit stop ring is provided around the upper surface of the planting plate. The outer diameter of the upper limit stop ring is equal to the inner diameter of the planting pot above the limiting protrusion ring. The outer diameter of the planting plate is smaller than the inner diameter of the limiting protrusion ring. A limiting sleeve is provided on the lower surface of the planting plate at the position corresponding to the planting hole.

[0005] Its additional technical features are:

[0006] The number of implantation holes is two or more;

[0007] The number of implantation holes is seven;

[0008] The limiting sleeve is a frustum-shaped cylinder with a large diameter at the top and a small diameter at the bottom.

[0009] An annular support is provided around the bottom of the limiting sleeve;

[0010] The planting pot has radial ribs on the inner side of its bottom. An absorbent sponge is placed inside the planting pot at the bottom of the limiting sleeve. A groove with the same shape as the radial ribs is provided on the bottom surface of the absorbent sponge. The radial ribs are inserted into the grooves.

[0011] Compared with the prior art, the multifunctional vegetable transplanting device provided by this utility model has the following advantages: Firstly, it includes a planting pot and a planting frame. The planting frame includes a planting plate and planting holes on the planting plate. A limiting protrusion ring is provided on the inner side of the planting pot near the upper part. An upper limit stop ring is provided around the upper surface of the planting plate. The outer diameter of the upper limit stop ring is equal to the inner diameter of the planting pot above the limiting protrusion ring. The outer diameter of the planting plate is smaller than the inner diameter of the limiting protrusion ring. A limiting sleeve is provided on the lower surface of the planting plate at a position corresponding to the planting hole. First, the planting plate is placed... Place the planting basket containing plant nutrient solution in a planting tank. Insert a planting basket or other planting block with seeds into the limiting sleeve of the planting board. The seeds will germinate at a suitable temperature. When the vegetables have grown to a certain height and are ready for sale, remove the planting board containing the vegetables from the planting tank and place it in a planting pot. The upper limit retaining ring of the planting board will lock into the planting pot above the limiting protrusion. During movement, the planting basket is restrained by the limiting sleeve, preventing the vegetables and the planting basket from tipping over, and the entire planting board will not tilt in the planting pot. For express delivery or other transportation, simply wrap the planting pot and the vegetables around it; it will not cause damage. The vegetables, though slightly crooked, look better; secondly, since there are two or more planting holes, for smaller vegetables, the same variety can be planted in each hole, or different varieties can be planted in each hole. For larger vegetables, some holes can be used, while others remain unused, making it more convenient. For school research experiments, different plants can be planted in different holes to obtain different data, again making it more convenient; thirdly, since there are seven planting holes, their uses... Fourth, because the limiting sleeve is a frustum-shaped cylinder with a large upper diameter and a small lower diameter, it has good stability; fifth, because an annular support is provided around the bottom of the limiting sleeve, it prevents the planting basket from falling off; sixth, because there are radial ribs on the inner side of the bottom of the planting pot, and a water-absorbing sponge is provided in the planting pot at the bottom of the limiting sleeve, and a groove with the same shape as the radial ribs is provided on the bottom surface of the water-absorbing sponge, the radial ribs are inserted into the grooves, the water-absorbing sponge can not only provide the vegetables with the necessary water, but also does not move during the movement, avoiding damage to the roots. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of the multifunctional vegetable transplanting device of this utility model;

[0013] Figure 2 for Figure 1 A longitudinal sectional view;

[0014] Figure 3 This is a schematic diagram of the planting rack structure;

[0015] Figure 4 This is a top view of the planting rack;

[0016] Figure 5 This is a schematic diagram of the planting pot structure;

[0017] Figure 6 This is a longitudinal sectional view with an absorbent sponge. Detailed Implementation

[0018] The structure and operating principle of this multifunctional vegetable transplanting device will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0019] like Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 The diagram shows the structure of this multifunctional vegetable transplanting device. The device includes a planting pot 1 and a planting frame 2. The planting frame 2 includes a planting plate 3 and planting holes 4 located on the planting plate 3. A limiting protrusion 5 is provided on the inner side of the planting pot 1 near the upper part. An upper limit retaining ring 6 is provided around the periphery of the upper surface of the planting plate 3. The outer diameter of the upper limit retaining ring 6 is equal to the inner diameter of the planting pot 1 above the limiting protrusion 5. The outer diameter of the planting plate 3 is smaller than the inner diameter of the limiting protrusion 5. A limiting sleeve 7 is provided on the lower surface of the planting plate 3 at a position corresponding to the planting hole 4.

[0020] First, place the planting board 3 in a planting pool containing plant nutrient solution. Then, place a planting basket or other planting block containing seeds into the limiting sleeve 7 of the planting board 3. The seeds will germinate at a suitable temperature. When the vegetables have grown to a certain height and are ready for sale, remove the planting board 3 containing the vegetables from the planting pool and place it in the planting pot 1. The upper limit retaining ring 6 of the planting board 3 is locked in the planting pot above the limiting protrusion ring 5. During the movement, the planting basket is restricted by the limiting sleeve 7, preventing the vegetables and the planting basket from tipping over. Moreover, the entire planting board 3 will not tilt in the planting pot 1. During express delivery or other transportation, simply wrap the planting pot and the vegetables above it to prevent them from falling over and maintain a better appearance.

[0021] The number of planting holes 4 can be two or more. For smaller vegetables, the same variety can be planted in each planting hole 4, or different varieties can be planted in each planting hole 4. For larger vegetables, some planting holes 4 can be used, while others can remain unused, making it more convenient. For school research experiments, different plants can be planted in different planting holes to obtain different data for different plants, which is also more convenient.

[0022] The number of planting holes 4 is seven, making it more versatile.

[0023] The limiting sleeve 7 is a frustum-shaped cylinder with a large diameter at the top and a small diameter at the bottom, which provides good stability.

[0024] A ring-shaped support 8 is provided around the bottom of the limiting sleeve 7 to prevent the planting basket and other items from falling off.

[0025] like Figure 6 As shown, the planting pot 1 has radial ribs 9 on the inner side of the bottom. A water-absorbing sponge 10 is set inside the planting pot at the bottom of the limiting sleeve 7. A groove 11 with the same shape as the radial ribs 9 is set on the bottom surface of the water-absorbing sponge 10. The radial ribs 9 are inserted into the groove 11. The water-absorbing sponge can not only provide the vegetables with the necessary water, but also does not move during the movement, thus avoiding damage to the roots.

[0026] The scope of protection of this utility model is not limited to the above embodiments. Any structure that is the same as or similar to the structure of the multifunctional vegetable transplanting device of this utility model falls within the scope of protection of this utility model.

Claims

1. A multifunctional vegetable transplanting device, comprising a planting pot and a planting frame, wherein the planting frame includes a planting board and planting holes located on the planting board, characterized in that: A limiting protrusion ring is provided on the inner side of the planting pot near the upper part, and an upper limit stop ring is provided around the upper surface of the planting plate. The outer diameter of the upper limit stop ring is equal to the inner diameter of the planting pot above the limiting protrusion ring, and the outer diameter of the planting plate is smaller than the inner diameter of the limiting protrusion ring. A limiting sleeve is provided on the lower surface of the planting plate at the position corresponding to the planting hole.

2. The multi-functional vegetable transplanting device according to claim 1, characterized in that: The number of implantation holes is two or more.

3. The multi-functional vegetable transplanting device according to claim 2, characterized in that: The number of implantation holes is seven.

4. The multi-functional vegetable transplanting device according to claim 1, characterized in that: The limiting sleeve is a frustum-shaped cylinder with a large diameter at the top and a small diameter at the bottom.

5. The multi-functional vegetable transplanting device according to claim 1, characterized in that: An annular support is provided around the bottom of the limiting sleeve.

6. The multi-functional vegetable transplanting device according to claim 1, characterized in that: The planting pot has radial ribs on the inner side of its bottom. An absorbent sponge is placed inside the planting pot at the bottom of the limiting sleeve. A groove with the same shape as the radial ribs is provided on the bottom surface of the absorbent sponge. The radial ribs are inserted into the grooves.