Water-storage breathable flowerpot
By designing drainage breathable holes, water storage partitions and permeable partition structures in the water storage pot, the problems of plant root rot and uneven water absorption are solved, uniform water conduction and breathability are achieved, and healthy plants are ensured.
Patent Information
- Application Number
- CN202421587048.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-07-05
AI Technical Summary
Existing water storage pots can easily cause the plant to rot roots, the water conducting material has a small contact area with the soil, uneven water absorption, and long-term watering is not breathable, resulting in root rot.
A round barrel-shaped basin is designed, with drainage breathable holes on the wall of the basin, and a water storage partition and a support column at the bottom form a water storage cavity. The water permeable spacer is separated from the water conduction layer, and the annular water conduction cavity between the water permeable spacer and the water conduction layer is used to guide water. The basin wall breathable holes are drained, and the water injection pipe is connected to the water storage cavity, and the water plug is blocked to control the water level.
It achieves sufficient water conduction and breathability, avoids plant root rot, absorbs water evenly, keeps the soil dry and wet and suitable, and grows healthy roots.
Smart Images

Figure CN223142555U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of plant cultivation, in particular to a technology of a water storage and breathable flowerpot. Background Art
[0002] The growth of potted plants requires water supply in a fixed quantity according to time, and it is required that the water content in the soil is reasonable, the soil is moist and dry appropriately, and the soil is loose and breathable, so as to be beneficial to the growth of plant roots and effectively absorb nutrients.
[0003] If too much water is poured, it will cause the soil to be wet for a long time, lack of oxygen inside the soil, and it is easy to cause the plant roots to be unable to absorb oxygen and suffocate to death; being too wet will also cause a large number of fungi and bacteria to multiply, leading to root rot.
[0004] Watering from the soil surface for a long time is easy to cause soil compaction and slow root growth; watering from the soil surface is also easy to cause incomplete watering, wet outside and dry inside, uneven water absorption by the soil, insufficient water absorption by plant roots, and poor growth of plants due to water shortage.
[0005] Most of the existing water storage flowerpots on the market are split type. By sleeving an outer pot body outside the inner pot body, a water storage cavity is formed at the bottom. The soil is placed in the inner pot body, and a water absorption cotton or a water guiding material is penetrated into the water storage cavity and the inner pot body to guide the water in the water storage cavity to the inner pot body for the soil to absorb. Such flowerpots need to drain water manually from the bottom of the flowerpot. If too much water is poured and the water level exceeds the height of the water storage cavity and enters the inner pot body, it is easy to cause root rot; in addition, the water absorption cotton used in such flowerpots has a small contact area with the soil, so the water absorption speed of the soil is slow and the water absorption is uneven, which is easy to cause water shortage or uneven water absorption of plants. Summary of the Utility Model
[0006] Aiming at the defects existing in the above-mentioned prior art, the technical problem to be solved by the utility model is to provide a water storage and breathable flowerpot that can avoid plant root rot, can fully conduct water, and the water guiding material is separated from the soil.
[0007] To solve the above technical problem, a water storage and breathable flowerpot provided by the utility model includes a pot body, and the pot body is in a cylindrical shape, and is characterized in that:
[0008] A number of columns of drainage and breathable holes are arranged at intervals in the circumferential direction on the pot wall of the pot body, and a number of vertical water storage partitions and a number of vertical support columns are arranged at the bottom of the pot body. The number of water storage partitions enclose a cylindrical water storage cavity, and the support columns are located in the water storage cavity. The drainage and breathable holes are higher than the water storage cavity;
[0009] A water-permeable partition cloth is arranged at the upper end of the water storage cavity. The upper end of the support column abuts against the water-permeable partition cloth. The water-permeable partition cloth, the water storage partition board and the basin wall enclose an annular water guide cavity. A water guide layer is filled in the water guide cavity. A drain pipe is arranged between the water storage cavity and the basin wall. The water storage cavity is communicated with the air through the drain pipe. A water blocking plug is arranged at the outer side pipe orifice of the drain pipe;
[0010] A water injection pipe is arranged on the basin wall of the basin body. The lower end pipe orifice of the water injection pipe is communicated with the water storage cavity.
[0011] Furthermore, the upper end pipe orifice of the water injection pipe is in a wide-mouth shape.
[0012] Furthermore, one handle is arranged on each of the left and right sides of the basin mouth of the basin body.
[0013] The water storage and breathable flowerpot provided by the utility model is provided with an annular water guide layer on the outer periphery of the bottom water storage cavity. The contact area between the water guide layer and the soil is large, and the water can be fully guided to the soil. The water guide layer is separated from the soil by using the water-permeable partition cloth, so that the plants can be conveniently replaced. Moreover, drainage and breathable holes are arranged on the basin wall of the basin body, so that the soil can maintain breathability, and the water level can be drained in time to reduce the water level, thereby avoiding root rot of plants caused by too high water level in the basin body. Description of the Drawings
[0014] Figure 1 It is a schematic structural view of the water storage and breathable flowerpot of the embodiment of the utility model. Detailed Embodiment
[0015] The following further describes the embodiments of the utility model in detail with reference to the drawings. However, the embodiments do not limit the utility model. All similar structures and similar changes adopted by the utility model shall be included in the protection scope of the utility model. The commas in the utility model all represent the relationship of "and".
[0016] As Figure 1 shown, a water storage and breathable flowerpot provided by an embodiment of the utility model includes a basin body 1. The basin body is in a cylindrical shape. It is characterized in that:
[0017] A plurality of columns of drainage and breathable holes 2 are circumferentially arranged at intervals on the basin wall of the basin body 1. A plurality of vertically arranged water storage partition boards 3 and a plurality of vertically arranged support columns 4 are arranged at the bottom of the basin body. The plurality of water storage partition boards 3 enclose a cylindrical water storage cavity. The support columns 4 are located in the water storage cavity. The drainage and breathable holes 2 are higher than the water storage cavity;
[0018] A water-permeable partition cloth 5 is arranged at the upper end of the water storage cavity. The upper end of the support column 4 abuts against the water-permeable partition cloth 5. The water-permeable partition cloth 5, the water storage partition board 3 and the basin wall enclose an annular water guide cavity. A water guide layer is filled in the water guide cavity. A drain pipe 6 is arranged between the water storage cavity and the basin wall. The water storage cavity is communicated with the air through the drain pipe 6. A water blocking plug 7 is arranged at the outer side pipe orifice of the drain pipe 6;
[0019] A water injection pipe 8 is provided on the basin wall of the basin body, and the lower end pipe orifice of the water injection pipe 8 communicates with the water storage cavity.
[0020] In an embodiment of the present utility model, the upper end pipe orifice of the water injection pipe 8 is in a wide-mouth shape, and a handle 9 is provided on each of the left and right sides of the basin mouth of the basin body.
[0021] In an embodiment of the present utility model, the soil for planting is placed on the water-permeable partition cloth 5.
[0022] The embodiment of the present utility model can avoid root rot of plants, and its usage method is as follows:
[0023] When watering, water is injected into the upper end pipe orifice of the water injection pipe 8, and the water flow flows into the water storage cavity along the water injection pipe 8. The water in the water storage cavity seeps into the annular water guide layer through the gaps between the water storage partition plates 3. After the water guide layer absorbs water, it releases water upward to the soil through the water-permeable partition cloth 5. The soil absorbs oxygen through a plurality of drainage and ventilation holes 2 on the basin wall, and the water plug 9 is pulled out to drain the accumulated water in the water storage cavity to the outside of the basin;
[0024] When too much water is injected and the water level exceeds the water storage cavity and enters the soil, the water flow entering the soil is discharged outward through the drainage and ventilation holes 2 on the basin wall;
[0025] When the plant needs to be replaced, due to the function of the water-permeable partition cloth, the water guide layer is not in direct contact with the soil, and there is less soil in the water guide layer, so there is no need to replace the water guide material.
Claims
1. A water storage and breathable flowerpot, comprising a pot body, the pot body being in a cylindrical shape, characterized in that: A number of columns of drainage and breathable holes are arranged circumferentially and spaced apart on the pot wall of the pot body, and a number of vertically arranged water storage partitions and a number of vertically arranged support columns are provided at the bottom of the pot body. The aforenamed water storage partitions enclose a cylindrical water storage cavity, and the support columns are located in the water storage cavity. The drainage and breathable holes are higher than the water storage cavity; A water permeable separator cloth is arranged at the upper end of the water storage cavity, the upper ends of the support columns abut against the water permeable separator cloth, and the water permeable separator cloth, the water storage partitions and the pot wall enclose an annular water guiding cavity. A water guiding layer is filled in the water guiding cavity. A drain pipe is provided between the water storage cavity and the pot wall, and the water storage cavity is communicated with the air through the drain pipe. A water blocking plug is provided at the outer pipe orifice of the drain pipe; A water injection pipe is provided on the pot wall of the pot body, and the lower pipe orifice of the water injection pipe is communicated with the water storage cavity.
2. The water storage and breathable flowerpot according to claim 1, characterized in that: The upper pipe orifice of the water injection pipe is in a wide-mouth shape.
3. The water storage and breathable flowerpot according to claim 1, characterized in that: One handle is provided on each of the left and right sides of the pot mouth of the pot body.