Dual-purpose plant growing pot

By designing a removable pad and drain nozzle structure for the dual-purpose planting pot, the problem of nutrient solution leakage was solved, enabling efficient planting of both ordinary and nutrient solution plants, and reducing planting costs and storage burden.

CN223600442UActive Publication Date: 2025-11-28盛留军
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Patent Information

Application Number
CN202423170162.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-28
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The ventilation holes in traditional planting pots cause nutrient solution leakage, resulting in resource waste and pollution risks. In addition, special nutrient solution recycling planting pots increase planting costs and storage burden.

Method used

Design a dual-purpose planting pot comprising a removable pad and a drain nozzle. The pad has a downwardly concave taper and an upwardly convex stem structure, which allows for aeration and drainage when used for ordinary plants, and collects nutrient solution when used for nutrient solution plants, which is then drained through the drain nozzle.

Benefits of technology

It enables the dual use of ordinary plants and nutrient solution plants, reducing planting costs and storage space requirements, and avoiding nutrient solution leakage and contamination.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of plant planting pot, especially a dual-purpose plant planting pot. A dual-purpose plant planting pot, a pot body, the pot body includes a side wall and a pot bottom, and a plurality of air holes penetrating the pot bottom are arranged on the pot bottom; a gasket is located in the pot body and detachably supported on the pot bottom, the gasket covers the whole pot bottom, the height of the gasket gradually decreases from the circumferential edge to the center, so that the gasket has a downward concave taper, a plurality of upward extending protruding stems are arranged on the gasket, the protruding stems and the center of the gasket are both arranged through the gasket; and a liquid discharge nozzle is used for connecting with a pipeline, the liquid discharge nozzle extends downward and protrudes below the center of the pot bottom. The utility model has the advantages of dual-purpose plant planting pot, which can reduce the production cost of the grower.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of plant planting pots, especially to a dual-purpose plant planting pot. BACKGROUND

[0002] In the cultivation process of plants, in order to ensure the healthy growth of root system and prevent the phenomenon of root rot, the design of planting pots often ingeniously opens a series of air holes on the bottom or side wall. However, this ingenious design not only brings many benefits, but also limits the realization of certain specific planting needs, especially for those plants that rely on regular drip irrigation of nutrient solution to obtain sufficient nutrients.

[0003] Taking blueberry planting as an example, when traditional planting pots with air holes are used to cultivate blueberries, a thorny problem emerges: nutrient solution is prone to leak out through the air holes in the bottom during drip irrigation, resulting in the inability to effectively recycle and reuse the valuable nutrient solution, not only causing great waste of resources, but also possibly causing soil or water pollution risk due to direct contact of nutrient solution with the ground.

[0004] In the face of this dilemma, growers often have to choose to buy special planting pots designed for nutrient solution drip irrigation. These planting pots usually have a special structure for nutrient solution recycling to ensure that every drop of nutrient solution can be accurately delivered to the plant roots and effectively utilized without loss. However, the purchase of such planting pots will increase the production cost of growers, and the difference in volume and shape from traditional planting pots will further increase the burden of growers in terms of storage space and economy. SUMMARY

[0005] The utility model aims to provide a dual-purpose plant planting pot to reduce the production cost of growers.

[0006] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a dual-purpose plant planting pot, comprising: a pot body, the pot body comprises a side wall and a pot bottom, and a plurality of air holes penetrating the pot bottom are provided on at least the pot bottom; a gasket located in the pot body and detachably supported on the pot bottom, the gasket covers the entire pot bottom, and the height of the gasket gradually decreases from the circumferential edge to the center, so that the gasket has a downward concave taper as a whole, a plurality of upward extending protruding stems are provided on the gasket, and the protruding stems and the center of the gasket are both penetrating the gasket; and a liquid discharge nozzle for connecting with a pipeline, the liquid discharge nozzle extends downward and protrudes below the center of the pot bottom.

[0007] When the planting pot is used to plant ordinary plants, the gasket is removed from the pot bottom, so that the planting pot can be used as an ordinary planting pot, thereby ensuring the ventilation effect required when planting ordinary plants. When it is necessary to plant plants that rely on regular nutrient solution, the gasket can be placed on the pot bottom, and the nutrient solution will flow along the overall shape of the gasket to the center of the gasket, and finally flow out of the drain nozzle.

[0008] The convex stem is arranged through the gasket to avoid root rot of the plants, but in order to avoid liquid leakage, the convex stem protrudes upward, so the ventilation effect is still poor compared with the planting pot without the gasket. Moreover, when the gasket is placed, the drainage performance of the entire planting pot will decrease compared with the planting pot without the gasket, because in the planting pot without the gasket, water will flow out of each ventilation hole after irrigation. After the gasket is placed, the nutrient solution needs to flow out of the center of the gasket for collection, so the drainage performance will decrease, but it is also beneficial for the collection of the nutrient solution. Moreover, since the nutrient solution is drip irrigated, the flow rate and flow speed of the nutrient solution will not be too large, and the soil will not block the drain nozzle. Therefore, the planting pot with the gasket is only used for special plants that require nutrient solution, and cannot be used for ordinary plant planting, because ordinary plant planting is irrigated, the water flow is large, and the soil is easy to block the drain nozzle.

[0009] The convex stem protrudes upward from the gasket, and the gasket also has a downwardly concave taper as a whole. Since the nutrient solution is drip irrigated into the pot, the nutrient solution will not flow out of the through hole of the convex stem, but will gradually flow into the center of the gasket and then flow downwardly out of the through hole in the center of the gasket and be guided to the pipeline outside the pot through the drain nozzle.

[0010] The drain nozzle can be arranged on the gasket to protrude downwardly below the pot bottom, or can be arranged on the pot bottom to protrude downwardly below the pot bottom.

[0011] Through the above arrangement, the planting pot can be used as an ordinary planting pot or a nutrient solution recycling planting pot, and the grower can selectively place the gasket, thereby reducing the storage space and economic burden of the grower.

[0012] Preferably, the pot bottom gradually decreases from the circumferential edge to the center, so that the pot bottom has a downwardly concave taper as a whole and is adapted to the gasket.

[0013] Through the above arrangement, the gasket and the pot bottom can be completely fitted when they are in contact, thereby facilitating drainage and ventilation, and increasing the space for placing soil or peat, coconut sugar and other substrates in the pot.

[0014] Preferably, the basin bottom and the gasket have mutually matched positioning structures, and the air vents and the convex stems are arranged in one-to-one alignment in the up-down direction under the action of the positioning structures.

[0015] The air vents and the convex stems are arranged in one-to-one alignment in the up-down direction, thereby facilitating the exchange of air.

[0016] Preferably, the basin bottom is provided with a plurality of upward extending positioning protrusions, the positioning protrusions are sleeved and matched with the convex stems, and the positioning protrusions and the convex stems constitute the positioning structures.

[0017] The positioning protrusions are sleeved and matched with the convex stems, thereby completing the positioning between the gasket and the basin bottom.

[0018] Preferably, the positioning protrusions are throughly arranged and provided with the air vents.

[0019] The positioning protrusions not only have a positioning function but also have an air permeation function, and the structure is more compact.

[0020] Preferably, the drainage nozzle is arranged on the basin body, and the gasket is centrally provided with a filter screen structure.

[0021] The drainage nozzle is arranged on the basin bottom, so that the gasket is not provided with the drainage nozzle, thereby facilitating the stacking of the gasket during storage and transportation and reducing the space; the filter screen is used to increase the contact area of the outlet with the soil and prevent the soil from caking and blocking the through hole in the center of the gasket.

[0022] Preferably, the center of the basin bottom is concave downward to form an upward opening groove, and the drainage nozzle is in communication with the bottom of the groove.

[0023] The groove is arranged to facilitate liquid collection.

[0024] Preferably, the circumferential edge of the center of the gasket is provided with a downward extending annular convex edge, and when the gasket is supported on the basin bottom, the outer side wall of the annular convex edge is in contact and matching with the inner side wall of the groove.

[0025] The center of the gasket is aligned with the groove to facilitate liquid drainage and collection.

[0026] Preferably, the convex stem is in the shape of a frustum, and the diameter of the convex stem gradually increases from top to bottom.

[0027] The convex stem is used to prevent the nutrient solution from flowing out of the through hole of the convex stem and also has a flow guiding effect.

[0028] Preferably, the circumferential edge of the basin bottom is matched with a plurality of downward extending supporting legs, the supporting legs are hollow and in communication with the inner cavity of the basin body, and the supporting legs are provided with a plurality of through air vents.

[0029] The supporting legs are used to elevate the entire basin body and also have an air permeation effect.

[0030] The utility model discloses a planting pot can be used as ordinary planting pot, also can be used as the planting pot of nutrient solution recovery, and planting household can only selectivity put in gasket, has the advantage of relieving planting household's burden in storage space and economy. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 It is the structure schematic diagram of the utility model;

[0032] Figure 2 It is Figure 1 The structure schematic diagram after removing gasket;

[0033] Figure 3 It is the structure schematic diagram of gasket;

[0034] Figure 4 It is Figure 1 The sectional view of the utility model;

[0035] Figure 5 It is Figure 4 The enlarged view of A of the utility model;

[0036] Figure 6 It is Figure 4 The enlarged view of B of the utility model;

[0037] Figure 7 It is the structure schematic diagram when planting pot connects pipeline;

[0038] Figure 8 It is the structure schematic diagram of embodiment 2.

[0039] Reference numeral: 1, side wall; 2, pot bottom; 21, air hole; 22, positioning protrusion; 3, gasket; 4, supporting leg; 41, air slot; 5, convex stem; 51, through hole of convex stem; 52, filter screen; 6, annular convex edge; 7, recess; 8, liquid discharge nozzle; 100, pipeline; 200, annular support part. DETAILED DESCRIPTION

[0040] The utility model will be further described below according to the drawings and specific embodiments.

[0041] As Figures 1 to 4 The utility model discloses a dual-purpose plant planting pot, including pot body, and the pot body includes side wall 1 and the pot bottom 2 at the lower end of side wall 1 to form the inner cavity for placing soil and planting plant with upward opening.

[0042] Pot bottom 2 is equipped with several evenly arranged air holes 21, and air hole 21 penetrates pot bottom. The circumferential edge of pot bottom 2 is matched with several downward extending supporting legs 4, and supporting leg 4 is evenly spaced and arranged at the lower end of pot bottom 2. Supporting leg 4 is hollow and communicates with the inner cavity of pot body, and supporting leg 4 is equipped with several penetrating air slots 41.

[0043] The planting pot further comprises a gasket 3 which is detachably supported on the pot bottom 2. The gasket 3 and the pot bottom 2 are both downwardly concave and have the same taper, so that when the gasket 3 is placed on the pot bottom 2, the gasket 3 and the pot bottom 2 can be in close contact. An upwardly extending protrusion 5 is arranged on the gasket 3, the protrusion 5 penetrates the gasket 3 to form a through hole 51 of the protrusion. The protrusion 5 is frustum-shaped, and the hole diameter of the protrusion 5 gradually increases from top to bottom. The gasket 3 is not provided with the protrusion 5 at the center thereof, and a filter screen 52 is arranged at the center of the gasket 3, the filter screen 52 penetrates the gasket 3. A plurality of positioning protrusions 22 which are upwardly extending and uniformly spaced are arranged at the circumferential edge of the pot bottom 2, the positioning protrusions 22 penetrate the pot bottom 2 and are also provided with the air-permeable holes 21. When the gasket 3 and the pot bottom 2 are in contact, the protrusion 5 is sleeved on the positioning protrusion 22 to form positioning between the gasket 3 and the pot bottom 2, so that the air-permeable holes 21 can be arranged in one-to-one correspondence with the through holes 51 of the protrusion.

[0044] As shown in Figures 4 to 7 , the center of the pot bottom 2 is downwardly concave to form an upwardly open groove 7, and a downwardly extending liquid discharge nozzle 8 is arranged at the center of the pot bottom 2, the liquid discharge nozzle 8 is located at the groove bottom of the groove 7 and communicates with the groove 7. The liquid discharge nozzle 8 can be connected with a pipeline 100 to realize the recycling of nutrient solution. A downwardly extending annular flange 6 is arranged at the circumferential edge of the center of the gasket 2, and when the gasket 3 is supported on the pot bottom 2, the outer side wall of the annular flange 6 is in contact with the inner side wall of the groove 7.

[0045] In use, when ordinary plants are planted, the gasket 3 does not need to be placed on the pot bottom 2, and the plants can be directly planted. When some special plants which need nutrient solution are planted, the gasket 3 can be placed on the pot bottom 2, and the pipeline 100 is connected with the liquid discharge nozzle 8, at this time, the special plants can be planted, and the nutrient solution is injected into the pot body in a drip irrigation mode.

[0046] Embodiment 2

[0047] The difference between this embodiment 2 and the embodiment 1 is that, as shown in Figure 8 , the pot bottom 2 in this embodiment 2 can be a horizontal circular shape (not shown in the figure), and the gasket 2 in the embodiment 2 has the same shape as the gasket 2 in the embodiment 1, but the lower end of the circumferential side wall of the gasket in this embodiment 2 is provided with a ring-shaped supporting portion 200 which extends downward, and the ring-shaped supporting portion 200 can realize that the gasket 2 is supported on the horizontal pot bottom 2.

Claims

1. A dual-purpose plant growing pot, characterized by, The utility model relates to a basin body, a gasket and a drain nozzle. The basin body comprises a sidewall and a basin bottom, and a plurality of air holes are arranged through the basin bottom on at least the basin bottom. The gasket is arranged in the basin body and is detachably supported on the basin bottom. The gasket covers the entire basin bottom, and the height of the gasket gradually decreases from the circumferential edge to the center of the gasket, so that the gasket has a downwardly concave taper as a whole. A plurality of upwardly extending protrusions are arranged on the gasket.

2. The dual-purpose plant growing pot according to claim 1, wherein: The protrusions and the center of the gasket are arranged through the gasket.

3. The dual-purpose plant growing pot of claim 2, wherein: The drain nozzle is arranged downwardly and protrudes below the center of the basin bottom.

4. The dual-purpose plant growing pot of claim 3, wherein: The basin bottom gradually decreases from the circumferential edge to the center of the basin bottom, so that the basin bottom has a downwardly concave taper as a whole and is matched with the gasket.

5. The dual purpose plant growing pot of claim 4, wherein: The basin bottom and the gasket have a matching positioning structure.

6. The dual-purpose plant growing pot according to any one of claims 1 to 5, wherein: Under the action of the positioning structure, the air holes and the protrusions are arranged in one-to-one correspondence in the up-down direction.

7. The dual purpose plant growing pot of claim 6, wherein: The basin bottom is provided with a plurality of upwardly extending positioning protrusions.

8. The dual purpose plant growing pot of claim 7, wherein: The positioning protrusions are sleeved with the protrusions, and the positioning protrusions and the protrusions constitute the positioning structure.

9. The dual-purpose plant growing pot according to any one of claims 1 to 5, wherein: The positioning protrusions are arranged through the basin bottom and are provided with the air holes.

10. The dual-purpose plant growing pot according to any one of claims 1 to 5, wherein: The drain nozzle is arranged on the basin bottom, and the center of the gasket has a filter screen structure. The center of the basin bottom is concave downwardly to form an upwardly open groove. The drain nozzle communicates with the bottom of the groove. The circumferential edge of the center of the gasket is provided with a downwardly extending annular protrusion. When the gasket is supported on the basin bottom, the outer side wall of the annular protrusion is in contact with the inner side wall of the groove. The protrusions are in the shape of a frustum of a cone. The circumferential edge of the basin bottom is matched with a plurality of downwardly extending supporting legs. The supporting legs are hollow and communicate with the inner cavity of the basin body. The supporting legs are provided with a plurality of air grooves arranged through the supporting legs.