Anti-draining, ventilating and humidity-increasing flowerpot
Through the sleeve fitting design of the cylinder and cavity, combined with the water storage part and multiple drain holes, the problem of insufficient ventilation and ventilation of the flower pot is solved, the soil oxygen content is increased and the water utilization rate is improved, and the healthy growth of green plants is promoted.
Patent Information
- Application Number
- CN202422794502.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-16
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-11-16
AI Technical Summary
While ensuring soil moisture, existing flower pots are difficult to effectively ventilate and breathe, resulting in insufficient oxygen content in the soil and affecting the growth and survival of green plants.
By fitting the cylinder and the hollow cavity, gaps and grooves are formed to achieve ventilation and ventilation, and a second projection and a plurality of drain holes are provided at the bottom of the cavity to improve drainage efficiency, while a water storage portion is provided between the cavity and the cylinder to maintain soil moisture.
The soil is ventilated and breathable, which increases the soil oxygen content, improves water utilization, reduces water waste, and maintains the stable moisture content of the soil, promoting the growth and survival of green plants.
Smart Images

Figure CN223025045U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of flower planting pots, and particularly relates to a flower pot with water drainage prevention, ventilation, air permeability and humidity increase. Background Technique
[0002] A flower pot is a container used for planting flowers and green plants. Therefore, according to the planting requirements of different flowers and green plants, its structural settings are also different. For example, for moisture-loving green plants, dry-loving green plants, green plants with developed roots, etc., corresponding flower pot structures will be designed to promote their growth and improve their survival rate.
[0003] After retrieval, a new type of flower planting pot with the publication number of CN216795851U in the prior art includes a cultivation pot. The outer wall of the cultivation pot is movably sleeved with a water injection pot. A plurality of water drainage holes are opened on the lower surface of the cultivation pot. The outer wall of the bottom end of the cultivation pot is fixedly connected with a filter outer cover. A fixed through hole is opened on the lower surface of the filter net cover, and a thick cotton rope is fixedly connected to the hole wall of the fixed through hole. A rope passing hole matching with the thick cotton rope is opened on the lower surface of the cultivation pot; in the above scheme, water is drained through the water drainage holes, and then the water is transferred to the soil in the cultivation pot through the thick cotton rope to ensure the water content; however, the growth of green plants not only requires sufficient and appropriate water, but also requires sufficient oxygen content in the soil. The cultivation pot in the present invention has a relatively high sealing performance, which greatly hinders the absorption of oxygen by the soil, reduces the basic environment for the growth of green plants, and is not conducive to their growth and survival.
[0004] Further retrieval shows that a flower pot water drainer with the publication number of CN216820867U in the prior art can achieve different drainage effects during flower cultivation through the second through hole, the third through hole and the fourth through hole opened on the shell. The hand wheel and the second groove opened thereon are connected with the connecting rod, and the positions of the fifth through hole, the second through hole and the third through hole are adjusted by an external force to achieve different drainage effects; the purpose of this scheme is to control the water content by draining water, and the drainage speed can be controlled during the drainage process. After adding excessive water, the water content in the soil is controlled by adjusting the drainage; compared with the first comparative document, although this scheme can increase the contact area between the bottom of the flower pot and the air through the reserved space between the shell and the flower pot to realize air circulation and increase air intake, it still needs to add water regularly after draining water, and controlling the drainage cannot reduce the number of water additions in the later stage; in the first comparative document, the drained water can be slowly transferred to the soil through the thick cotton rope, so that the soil has a stable water content and does not need to be frequently watered in the later stage, which improves the utilization rate of water sources; therefore, although this scheme improves the air permeability, the structure and water control method in it have a relatively low utilization rate of water and cause relatively high waste.
[0005] Therefore, a flower pot that can not only ventilate and intake air, but also improve the water utilization rate while maintaining the soil moisture is needed. Summary of the Invention
[0006] The object of the present utility model is to overcome the deficiencies in the prior art and provide a flower pot that prevents waterlogging, ventilates, breathes, and increases humidity. By means of the socket and fitting of the cylinder body and the cavity, the effects of draining water and ventilation are achieved. It can not only ventilate and increase the oxygen content in the soil, but also drain the water in the soil in the cavity. Further, a water storage part is provided between the cavity and the cylinder body, which can maintain the water content in the soil in the cavity by volatilizing water, ensuring the growth environment of the green plants.
[0007] In order to achieve the above object, the technical solution adopted by the present utility model is:
[0008] A flower pot that prevents waterlogging, ventilates, breathes, and increases humidity, comprising a cylinder body and a cavity that can drain water. The cavity is arranged inside the cylinder body. The cavity is set to be hollow. A water storage part is provided between the bottom of the cylinder body and the bottom of the cavity to store water and prevent waterlogging caused by excessive watering in the cavity. A gap is provided between the side wall of the cavity and the side wall of the cylinder body for ventilation to increase the oxygen in the soil in the cavity. An air outlet hole is provided at the top of the cavity.
[0009] An installation groove is provided at the top of the cylinder body for installing the port of the cavity.
[0010] A top wall is provided at the bottom of the cylinder body to support the cavity, and an intermediate groove is provided between the top wall and the side wall of the cylinder body.
[0011] An air inlet hole is provided on the bottom wall of the cylinder body for air ventilation.
[0012] A flange is provided at the top of the cavity and is arranged in the installation groove for positioning and installing the cavity.
[0013] A plugging ring is provided at the bottom end of the cavity and is plugged into the top wall for supporting and positioning the cavity.
[0014] A second protruding part and a second water drainage hole are provided at the bottom of the cavity. A first water drainage hole is provided on the second protruding part for draining water from the soil. The setting of the second protruding part increases the contact area between the bottom of the cavity and the soil, thereby increasing the number of water drainage holes and improving the water drainage efficiency. Further, the water in the water storage part can volatilize through the first water drainage hole and the second water drainage hole to increase the humidity of the soil in the cavity.
[0015] A number of first protruding parts provided with air permeation holes are arranged on the inner wall of the cavity. A first air permeation hole and a second air permeation hole are provided on the first protruding part. The first air permeation hole is arranged on the plane of the first protruding part, and the second air permeation hole is arranged on the side surface of the first protruding part. After connecting the air inlet hole and the air outlet hole, it is used for ventilation inside and outside the cavity to increase the oxygen content in the soil.
[0016] Further, a heat preservation layer is arranged in the gap between the cavity and the cylinder body to ensure the growth temperature of the protected green plants.
[0017] The beneficial effects of the present utility model compared with the prior art are as follows:
[0018] 1) In this invention and creation, there are a cavity and a cylinder body, which are sleeved and fitted with each other to form a whole; there is also a water storage part between the cavity and the cylinder body, which can collect and store the water drained through the first water drainage holes and the second water drainage holes at the bottom of the cavity, and the water in the water storage part not only reduces waste, but also can be recycled by volatilizing back into the soil in the cavity along the first water drainage holes, the second water drainage holes, and even the first air ventilation holes and the second air ventilation holes, maintaining and stabilizing the water content in the soil;
[0019] 2) There are also connected slots and gaps between the cavity and the cylinder body. Through the air inlet holes, slots, gaps, first protrusions, and air outlet holes, a complete and through air duct is formed to achieve ventilation and air intake. Then, the air in the air duct can enter the soil in the cavity through the first air ventilation holes and the second air ventilation holes to increase the oxygen content; there are many beneficial microorganisms in the soil, which play an important role in decomposing organic substances and releasing nutrients. A good ventilation and air permeability environment can promote the activities of microorganisms in the soil, thereby improving the soil fertility; ensuring the oxygen content in the soil for the growth of green plants is beneficial to improving the survival rate of green plants;
[0020] Furthermore, a heat insulation layer can be set in the gap between the cavity and the cylinder body to insulate the cavity and ensure the growth temperature of green plants; at the same time, after setting the heat insulation layer in the gap, the smooth ventilation and air intake process of the air duct can still be ensured through the setting of the first protrusion;
[0021] 3) The bottom and top of the cavity are respectively provided with a plug-in ring and a flange, which can be quickly positioned in cooperation with the top wall of the cylinder body and the installation groove, and the cavity and the cylinder body are installed and sleeved to ensure the accurate positions of the gap and the slot;
[0022] Furthermore, the setting of the second protrusion increases the contact area between the bottom of the cavity and the soil, increases the number of water drainage holes, and the second water drainage holes cooperate with the first water drainage holes on the second protrusion to improve the water drainage efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Attached Figure 1 is a schematic cross-sectional structure diagram of a flowerpot with anti-waterlogging, ventilation, air permeability, and humidity increase of the present utility model;
[0024] Attached Figure 2 is a schematic structure diagram of a flowerpot with anti-waterlogging, ventilation, air permeability, and humidity increase of the present utility model;
[0025] Attached Figure 3 is a schematic structure diagram of the cavity;
[0026] Attached Figure 4 is a schematic cross-sectional structure diagram of the cavity;
[0027] AttachedFigure 5 It is a schematic diagram of the cross-sectional structure of the cylinder body;
[0028] In the figure: 1. Cylinder body; 11. Top wall; 12. Intermediate groove; 13. Air inlet hole; 14. Installation groove;
[0029] 2. Cavity; 21. First protruding part; 211. First ventilation hole; 212. Second ventilation hole; 213. Air outlet hole; 214. Flange; 22. Insertion ring; 23. Second protruding part; 231. First water drainage hole; 24. Second water drainage hole;
[0030] 3. Water storage part; 4. Gap. Specific implementation mode
[0031] For the convenience of understanding by those skilled in the art, the technical solutions of the present utility model will be further specifically described below in conjunction with the attached Figures 1-5 , and the technical solutions of the present utility model will be further specifically described.
[0032] A water-drainage-proof, ventilating, air-permeable and humidity-increasing flowerpot includes a cylinder body 1 and a cavity 2 capable of draining water. The cavity 2 is arranged inside the cylinder body 1, and the cavity 2 is set to be hollow. A water storage part 3 is provided between the bottom of the cylinder body 1 and the bottom of the cavity 2 for storing water to avoid waterlogging caused by excessive watering in the cavity 2; A gap 4 is provided between the side wall of the cavity 2 and the side wall of the cylinder body 1 for ventilation and air permeability to increase the oxygen in the soil in the cavity 2; An air outlet hole 213 is provided at the top of the cavity;
[0033] An installation groove 14 is provided at the top of the cylinder body 1 for installing the port of the cavity 2.
[0034] A top wall 11 is provided at the bottom of the cylinder body 1 for supporting the cavity 2, and an intermediate groove 12 is provided between the top wall 11 and the side wall of the cylinder body 1.
[0035] An air inlet hole 13 is provided on the bottom wall of the cylinder body 1 for ventilation and air intake.
[0036] A flange 214 is provided at the top of the cavity 2 and is arranged in the installation groove 14 for positioning and installing the cavity 2.
[0037] An insertion ring 22 is provided at the bottom end of the cavity 2 and is inserted into the top wall 11 for supporting and positioning the cavity 2.
[0038] A second protruding part 23 and a second water drainage hole 24 are provided at the bottom of the cavity 2. A first water drainage hole 231 is provided on the second protruding part 23 for draining water from the soil. The setting of the second protruding part 23 increases the contact area between the bottom of the cavity 2 and the soil, thereby increasing the number of water drainage holes and improving the water drainage efficiency; Further, the water in the water storage part 3 can volatilize through the first water drainage hole 231 and the second water drainage hole 24 to increase the humidity of the soil in the cavity 2.
[0039] On the inner wall of the cavity 2, there are several first convex portions 21 provided with ventilation holes. The first convex portions 21 are provided with a first ventilation hole 211 and a second ventilation hole 212. The first ventilation hole is arranged on the plane of the first convex portion, and the second ventilation hole is arranged on the side surface of the first convex portion. After connecting the air inlet hole 13 and the air outlet hole 213, it is used for ventilation between the inside and outside of the cavity 2 to increase the oxygen content in the soil.
[0040] Furthermore, a heat insulation layer is arranged in the gap between the cavity 2 and the cylinder 1 to ensure the growth temperature of the protected green plants.
[0041] In the description of the present invention, unless otherwise specified, the meaning of "a plurality of" is two or more; the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention. In addition, the terms "first", "second", "third", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0042] The above content is only an example and explanation of the structure of the present invention. Those skilled in the art of this technology can make various modifications or supplements to the described specific embodiments or use similar ways to replace them. As long as they do not deviate from the structure of the invention or exceed the scope defined by this claim book, they should all belong to the protection scope of the present invention.
Claims
1. A water-draining, ventilating, air-permeable and humidifying flower pot, comprising a cylinder and a cavity capable of draining water, characterized in that The cavity is arranged inside the cylinder, and the cavity is hollowed out. A water storage part is arranged between the bottom of the cylinder and the bottom of the cavity for storing water to avoid waterlogging caused by excessive watering in the cavity and to ensure the moisture content of the soil by volatilization. A gap is arranged between the side wall of the cavity and the side wall of the cylinder. A top wall is arranged at the bottom of the cylinder to support the cavity, and a groove is arranged between the top wall and the side wall of the cylinder. An air inlet is arranged on the bottom wall of the cylinder for ventilation. An air outlet is arranged at the top of the cavity. A plurality of first protrusions with air holes are arranged on the inner wall of the cavity, and a complete through air duct is formed by the air inlet, the groove, the gap, the first protrusion and the air outlet to realize ventilation and air permeability, and then the air in the air duct can enter the soil in the cavity through the air holes on the first protrusion to increase the oxygen content.
2. The anti-drainage, ventilated, air-permeable and humidifying flower pot according to claim 1, characterized in that The top of the cylinder is provided with a mounting groove for mounting the cavity port.
3. The anti-drainage, ventilated, air-permeable and humidifying flower pot according to claim 1, characterized in that A flange is provided on the top of the cavity and is arranged in the installation groove to facilitate the positioning and installation of the cavity.
4. The anti-drainage, ventilated, air-permeable and humidifying flower pot according to claim 1, characterized in that The bottom end of the cavity is provided with a plug-in ring plugging into the top wall for supporting and positioning the cavity.
5. The anti-drainage, ventilated, air-permeable and humidifying flower pot according to claim 1, characterized in that The bottom of the cavity is provided with a second protrusion and a second drainage hole, and the second protrusion is provided with a first drainage hole for soil drainage.
6. The anti-drainage, ventilated, air-permeable and humidifying flower pot according to claim 1, characterized in that The first protrusion is provided with a first air hole and a second air hole; the first air hole is arranged on the plane of the first protrusion, and the second air hole is arranged on the side of the first protrusion.
Citation Information
Patent Citations
Flowerpot draining device
CN216820867U