Breathable flowerpot
By setting up vertical and transverse exhaust components in the flower pot, multi-directional breathability and air exchange of the soil are achieved, which solves the problems of weak breathability and soil pollution, ensuring the cleanliness of the pot and the health of the plants.
Patent Information
- Application Number
- CN202422619137.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-10-29
AI Technical Summary
The breathable performance of existing flower pots is not strong, resulting in the rotten roots of the plant, and the soil and dirt water are likely to contaminate the outer wall of the pot, making it inconvenient to use.
Vertical and transverse exhaust components are adopted, which are arranged on the inner wall of the basin. The transverse exhaust components are located in the basin and support the soil. The two combine to form an exhaust passage and an air-exchange cavity to achieve vertical and horizontal ventilation of the soil, and air exchange is realized through the ventilation passage to prevent soil from contaminating the outer wall of the basin.
It improves the breathable performance of the flower pot, avoids the rotten roots of the plants, keeps the outer wall of the pot clean and tidy, and is easy to use.
Smart Images

Figure CN223286267U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of flower pots, in particular to a breathable flower pot. Background Art
[0002] To improve the indoor environment, potted plants are often placed indoors. The most commonly used potted plant container is a flowerpot, typically in the shape of a large, narrow, inverted truncated or inverted conical cone. Because the enclosure is a sealed environment, air can only circulate around the flowers after the enclosure is opened and the indoor air circulates. This makes it difficult to circulate the air within the enclosure to meet the needs of plants that require air circulation. While many existing flowerpots have drainage holes at the bottom, these holes are not very breathable, which can easily lead to root rot.
[0003] Chinese patent application number 202021610316.X discloses a side-perforated blueberry planting pot. This patent provides ventilation holes in the bottom of the pot, water level holes on the side walls of the pot body for drainage, and a ventilation mechanism inside the pot body for vertical exhaust. However, when draining water, this solution will flow out of the side walls of the pot body. Due to the dirty soil, the dirty water will flow out of the drainage holes, making the side walls of the pot body dirty. When users move the flower pot, their hands will be contaminated with dirt, which is quite inconvenient. Summary of the Invention
[0004] In order to solve the deficiencies in the prior art, a breathable flower pot is provided which can ensure that the pot body is clean and tidy and has strong air permeability.
[0005] The utility model is implemented by the following technical solutions: a breathable flower pot, comprising a pot body and a vertical exhaust assembly located in the pot body, the vertical exhaust assembly being arranged on the inner wall of the pot body and extending upward from the lower end of the pot body to the opening of the pot body, an exhaust channel for preventing soil from entering is formed between the vertical exhaust assembly and the inner wall of the pot body, the wall of the vertical exhaust assembly is densely covered with first exhaust holes penetrating its wall body; it also includes a horizontal exhaust assembly, which is horizontally arranged at the lower end of the vertical exhaust assembly and is used to support the soil in the pot body, the wall of the horizontal exhaust assembly is densely covered with second exhaust holes penetrating its wall body, the horizontal exhaust assembly has a raised portion whose wall body bulges upward, a ventilation cavity is provided below the raised portion, and a plurality of exhaust channels are provided at the lower end of the pot body to connect the ventilation cavity with the outside world.
[0006] When soil is filled into the basin, it accumulates and is supported on the lateral exhaust assembly to fill the entire basin. No soil can enter the exhaust passage and ventilation cavity, which remain hollow. Even if soil does enter, only a tiny amount of soil falls in. The first and second exhaust holes allow for air exchange within the soil. Soil air can be exhausted upward through the exhaust passage to flow out through the upper opening. The soil near the bottom of the basin exchanges air with the ventilation cavity, allowing air to enter and exit from below through the ventilation passage.
[0007] The vertical exhaust assembly may be an integral vertical exhaust assembly extending in the circumferential direction, or may be a plurality of vertical exhaust assemblies arranged in the circumferential direction.
[0008] The lateral exhaust component may be only a basin bottom that is integrally injection-molded with the basin body, or may be a combination of the basin bottom and other components.
[0009] This solution achieves vertical ventilation of the soil as a whole through a vertical exhaust component, and achieves ventilation of the soil below by setting a horizontal exhaust component. At the same time, since the roots of most plants grow downward, a ventilation cavity is set below the horizontal exhaust component and the horizontal exhaust component itself has a raised portion, thereby increasing the ventilation space below the soil. Finally, the ventilation channel is used to achieve air exchange between the inside and the outside, thereby ensuring drainage while avoiding the occurrence of plant root rot.
[0010] At the same time, the wall of the basin in this solution is closed, and the soil inside the circumference of the basin is exhausted through the vertical exhaust assembly. Therefore, when watering, dirty water with soil will only flow out from the bottom of the entire flower pot, and no water will flow on the outer wall of the basin, thereby ensuring that the outer wall of the entire basin is clean and tidy. When the user picks up the flower pot, his hands will not be contaminated with dirt, which is very convenient.
[0011] Preferably, a buckle is provided at the upper end of the vertical exhaust assembly, and a buckle groove for engaging with the buckle is provided on the upper side wall of the basin body.
[0012] After long-term use, the mud will eventually clog the exhaust holes of the exhaust assembly, so the exhaust assembly needs to be cleaned after long-term use. The vertical exhaust assembly and the basin body are detachably fixed by the cooperation of the buckle and the buckle groove; the detachable fixation of the buckle allows the user to easily disassemble the vertical exhaust assembly for cleaning when replacing the mud.
[0013] Preferably, the vertical exhaust assembly is strip-shaped and there are at least four of them, which are evenly spaced on the four side walls of the basin body; the upper end of the vertical exhaust assembly is provided with a total exhaust hole that opens upward and passes through its wall body, and the aperture of the total exhaust hole is larger than the aperture of the first exhaust hole.
[0014] Through the total exhaust hole, the aperture of the total exhaust hole is larger so as to achieve the total exchange of gas in the exhaust channel.
[0015] Preferably, the horizontal exhaust component is a basin bottom that is injection-molded as one piece with the basin body, the lower end of the vertical exhaust component is plugged into the basin bottom, and a number of downwardly extending support parts are provided at the connection between the basin body and the basin bottom, and the ventilation channel is formed between two adjacent support parts, and all support parts and raised parts are jointly enclosed to form the ventilation cavity; the raised part is located at the center of the basin bottom and is frustum or prism-shaped.
[0016] The ventilation cavity and ventilation channel are formed by the downward extension of the support part; the frustum or prism shape is more regular and convenient for ventilation, and the vertical exhaust component is plugged into the bottom of the basin to ensure that the direction of the vertical exhaust component will not tilt and is in the vertical direction.
[0017] Preferably, the horizontal exhaust assembly includes a horizontally arranged inner plate and a basin bottom injection-molded integrally with the basin body, the inner plate is located above the basin bottom, the lower end of the vertical exhaust assembly is plugged into the inner plate, the inner plate is provided with the second exhaust hole, and the circumferential side wall of the lower end of the basin body is provided with a plurality of ventilation channels passing through inside and outside, and the inner opening edge of the ventilation channel is provided with a supporting ridge extending inward, the supporting ridge supports the inner plate, and the ventilation cavity is formed between the inner plate and the basin bottom.
[0018] By dividing the horizontal exhaust assembly into a horizontally arranged inner plate and a basin bottom injection-molded integrally with the basin body, the soil and exhaust can be further supported. At the same time, the inner plate can be easily removed to clean the basin body and the exhaust assembly. The vertical exhaust assembly is plugged into the inner plate to ensure that the direction of the vertical exhaust assembly will not tilt and is in a vertical direction.
[0019] Preferably, the vertical exhaust assembly is cylindrical and extends along the circumferential direction of the basin body. The vertical exhaust assembly includes horizontal bars evenly spaced along the axial direction and vertical bars evenly spaced along the circumferential direction. The horizontal bars and the vertical bars enclose the first exhaust holes, and a plurality of total exhaust holes are provided at the upper end of the vertical exhaust assembly.
[0020] The vertical exhaust component is cylindrical and can exhaust the soil in 360° all-round manner, which has a better exhaust effect.
[0021] Preferably, the lateral exhaust assembly includes a transversely arranged inner plate and a basin bottom injection-molded integrally with the basin body, the inner plate is located above the basin bottom and is integrally arranged with the vertical exhaust assembly; the wall of the basin bottom bulges upward to form the bulge, the inner plate is supported on the bulge of the basin bottom, and the walls of the basin bottom and the inner plate are densely covered with second exhaust holes passing through their walls.
[0022] By dividing the horizontal exhaust assembly into a horizontally arranged inner plate and a basin bottom injection-molded integrally with the basin body, the inner plate is located above the basin bottom and is integrally arranged with the vertical exhaust assembly, making it easy to assemble and disassemble so that the entire inner plate, vertical exhaust assembly and basin body can be cleaned together.
[0023] Preferably, the lateral exhaust assembly includes a transversely arranged inner plate and a basin bottom injection-molded integrally with the basin body, the inner plate is located above the basin bottom and is integrally arranged with the vertical exhaust assembly; the inner plate is provided with the second exhaust hole, and the circumferential side wall of the lower end of the basin body is provided with a plurality of ventilation channels passing through inside and outside, and the inner opening edge of the ventilation channel is provided with a supporting ridge extending inward, the supporting ridge supports the inner plate, and the ventilation cavity is formed between the inner plate and the basin bottom.
[0024] By dividing the horizontal exhaust assembly into a horizontally arranged inner plate and a basin bottom injection-molded integrally with the basin body, the inner plate is located above the basin bottom and is integrally arranged with the vertical exhaust assembly, which makes assembly easier and supports the inner plate through the supporting ridge.
[0025] Preferably, the inner plate is provided with the raised portion, which is cross-shaped to form a cross-shaped channel, the ends of the cross-shaped channel respectively correspond to the ventilation channels, and the lower end surface of the raised portion contacts and cooperates with the supporting protrusion.
[0026] The raised portion is in a cross shape so that a cross-shaped channel is formed below the raised portion, and the end of the channel corresponds to the ventilation channel, thereby further facilitating the circulation of air.
[0027] Preferably, the wall of the basin bottom is closed, the lowermost end of the ventilation channel is higher than the basin bottom so that the basin bottom forms a water storage tank, the inner plate is provided with a plurality of tapered parts extending downward, the diameter of the tapered parts gradually decreases from top to bottom, and the lower end of the tapered parts contacts the basin bottom; the side wall of the tapered part is provided with a through groove running through inside and outside, and the tapered part is hollow and open upward.
[0028] The water reservoir allows water to be stored at the bottom of the basin. When there is too much water, it overflows from the bottom of the ventilation channel. The horizontal exhaust assembly is located above the water reservoir, so the water in the reservoir does not directly come into contact with the soil above the horizontal exhaust assembly, thus preventing root suffocation and rot. At the same time, the tapered member allows the capillary effect of the soil to partially wick water from below to the soil above the exhaust assembly, thus achieving both exhaust and drainage effects.
[0029] Compared with the prior art, the utility model has the advantages of ensuring that the outer wall of the pot body is clean and tidy, is easy to dismantle and clean, and has strong air permeability, thereby preventing plant roots from being suffocated and rotten. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 This is a schematic structural diagram of Example 1;
[0031] Figure 2 is a side view of Example 1;
[0032] Figure 3 is a cross-sectional view of Example 1;
[0033] Figure 4 This is a schematic structural diagram of the vertical exhaust assembly of Example 1;
[0034] Figure 5 for Figure 1 Schematic diagram of the structure after removing the vertical exhaust assembly;
[0035] Figure 6 This is a schematic structural diagram of Example 2;
[0036] Figure 7 is a side view of Example 2;
[0037] Figure 8 is a cross-sectional view of Example 2;
[0038] Figure 9 This is a structural diagram of Example 3;
[0039] Figure 10 is a side view of Example 3;
[0040] Figure 11 is a cross-sectional view of Example 3;
[0041] Figure 12 for Figure 11 Enlarged view of the circled area;
[0042] Figure 13 Schematic diagram of the structure of the vertical exhaust assembly and the horizontal exhaust assembly of Example 3;
[0043] Figure 14 This is a schematic structural diagram of Example 4;
[0044] Figure 15 is a cross-sectional view of Example 4;
[0045] Figure 16 This is a schematic structural diagram of the vertical exhaust assembly and the horizontal exhaust assembly of Example 4.
[0046] Figure 17 This is a schematic structural diagram of Example 5;
[0047] Figure 18 is a cross-sectional view of Example 5;
[0048] Figure 19 Schematic diagram of the structure of the vertical exhaust assembly and the horizontal exhaust assembly of Example 5;
[0049] Figure 20 This is a schematic structural diagram of Example 6;
[0050] Figure 21 is a cross-sectional view of Example 6;
[0051] Figure 22 This is a schematic structural diagram of the vertical exhaust assembly and the horizontal exhaust assembly of Example 6.
[0052] Figure numbers: 1. Basin body; 11. Snap groove; 2. Basin bottom; 21. Raised portion; 22. Support portion; 23. Ventilation channel; 24. Ventilation cavity; 25. Plug port; 3. Vertical exhaust assembly; 31. First exhaust hole; 32. Main exhaust hole; 33. Snap; 34. Plug-in protrusion; 35. Exhaust channel; 4. Inner plate; 41. Conical part; 411. Through groove; 42. Second exhaust hole; 5. Support ridge; 61. Horizontal bar; 62. Vertical bar. DETAILED DESCRIPTION
[0053] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0054] Example 1
[0055] like Figures 1 to 5 As shown, this embodiment 1 discloses a breathable flower pot, comprising a pot body 1 and a pot bottom 2 which is integrally injection-molded with the pot body 1. The pot body 1 is in the shape of an inverted truncated cone, and four vertical exhaust assemblies 3 extending in the vertical direction are provided in the pot body 1. The vertical exhaust assemblies 3 are in the shape of strips and are respectively located on the four inner walls around the pot body 1. An exhaust channel 35 is formed between the vertical exhaust assemblies 3 and the inner wall of the pot body 1 to prevent soil from entering. The wall of the vertical exhaust assembly 3 is densely covered with first exhaust holes 31 penetrating the wall, and the upper end of the vertical exhaust assembly 3 is provided with a total exhaust hole 32 which opens upward and penetrates the wall, and the aperture of the total exhaust hole 32 is larger than the aperture of the first exhaust hole 31. A buckle 33 is provided at the upper end of the vertical exhaust assembly 3, and a buckle groove 11 which is engaged with the buckle 33 is provided on the upper side wall of the pot body 1.
[0056] The basin bottom 2 serves as a horizontal exhaust assembly. It is positioned horizontally, with its upper end abutting against the vertical exhaust assembly 3. Four vertically extending insertion ports 25 are provided along the circumferential outer edge of the basin bottom 2. The lower end of the vertical exhaust assembly 3 is provided with downwardly extending insertion protrusions 34, which insert into the insertion ports 25. The wall of the basin bottom 2 is densely dotted with secondary exhaust holes 42, which can be circular or waist-shaped.
[0057] Four downward-extending supports 22 are located at the junction of the basin body 1 and the basin floor 2. The basin floor 2 has an upwardly protruding raised portion 21. The raised portion 21 is prism-shaped, and the spaces between all supports 22 and raised portions 21 enclose a ventilation cavity 24. A ventilation channel 23 is formed between adjacent supports 22, connecting the ventilation cavity 24 to the outside world.
[0058] Example 2
[0059] like Figures 6 to 8 As shown, the difference between Example 2 and Example 1 is that the basin body 1 is in the shape of an inverted cone, the raised portion 21 is in the shape of a frustum, and the area of the raised portion 21 accounts for a larger proportion of the basin bottom 2, and the center of the raised portion 21 is slightly collapsed downward.
[0060] Example 3
[0061] like Figures 9 to 13 As shown, the difference between Example 3 and Example 1 is that the basin body 1 of Example 3 is in the shape of an inverted truncated cone, and the horizontal exhaust assembly includes a basin bottom 2 and an inner plate 4 integrally provided with the basin body 1. The inner plate 4 is provided below the vertical exhaust assembly 3 and above the basin bottom 2. A ventilation cavity 24 is formed between the inner plate 4 and the basin bottom 2. Four ventilation channels 23 that penetrate inside and outside are provided on the circumferential side wall at the lower end of the basin body. The four ventilation channels 23 that penetrate inside and outside are evenly spaced along the circumference. A support ridge 5 extending inward is provided at the inner opening edge of the ventilation channel 23, and the support ridge 5 supports the inner plate 4. The raised portion 21 is cross-shaped to form a cross-shaped channel, and the ends of the four cross-shaped channels correspond to the four ventilation channels 23 respectively. The lower end surface of the raised portion 21 is in contact with the support ridge 5.
[0062] The lowest end of the ventilation channel 23 is higher than the basin floor 2, forming a water reservoir. The inner plate 4 is equipped with four downwardly extending tapered members 41, evenly spaced. The diameter of each tapered member 41 gradually decreases from top to bottom, with the lower end of each tapered member 41 contacting the basin floor 2. The sidewalls of each tapered member 41 are provided with through-slots 411 extending from inside to outside. Each tapered member 41 is hollow and open upward to accommodate soil filling.
[0063] Four plug-in ports 25 extending vertically therethrough are provided at the circumferential outer edge of the inner plate 4 , and the plug-in protrusions 34 of the vertical exhaust assembly 3 are inserted into the plug-in ports 25 .
[0064] Example 4
[0065] like Figures 14 to 16As shown, Example 4 differs from Example 3 in that the vertical exhaust assembly 3 is cylindrical and extends circumferentially of the basin body 1. It is integrally mounted with the inner dish 4. The vertical exhaust assembly 3 includes horizontal bars 61 evenly spaced along the axial direction and vertical bars 62 evenly spaced along the circumference. The horizontal and vertical bars 61, 62 enclose first exhaust holes 31, which are square in shape. Several circular master exhaust holes 32 are provided at the upper end of the vertical exhaust assembly 3.
[0066] Example 5
[0067] like Figures 17 to 19 As shown, the difference between this embodiment 5 and embodiment 2 is that the horizontal exhaust assembly includes an inner plate 4 and a basin bottom 2 integrally arranged with the basin body 1, the inner plate 4 is located above the basin bottom 2 and is integrally arranged with the vertical exhaust assembly 3 by welding, and the inner plate 4 is supported on the raised portion 21 of the basin bottom 2.
[0068] Example 6
[0069] like Figures 20 to 22 As shown, the difference between this embodiment 6 and embodiment 1 is that the horizontal exhaust assembly includes an inner plate 4 and a basin bottom 2 integrally arranged with the basin body 1, the inner plate 4 is located above the basin bottom 2 and is integrally arranged with the vertical exhaust assembly 3, and the inner plate 4 is supported on the raised portion 21 of the basin bottom 2.
[0070] During use of Examples 1, 2, 5, and 6, the user fills the entire pot 1 with soil, plants the plant, and then waters the pot. Water flows out from the second exhaust holes 42 at the bottom, ventilating the soil below through the ventilation cavity 24 and ventilation channel 23. Vertical ventilation of the soil is achieved through the exhaust channel 35 of the vertical exhaust assembly 3.
[0071] When using Examples 3 and 4, water will be stored in the water tank, and excess water will flow out from the ventilation channel 23. Since the conical member 41 is also filled with soil, water transfer is achieved through the capillary reaction of the soil.
Claims
1. A breathable flower pot, characterized by: The utility model comprises a basin body and a vertical exhaust assembly located in the basin body, wherein the vertical exhaust assembly is arranged on the inner wall of the basin body and extends upward from the lower end of the basin body to the opening of the basin body, and an exhaust channel is formed between the vertical exhaust assembly and the inner wall of the basin body to prevent soil from entering, and the wall body of the vertical exhaust assembly is densely covered with first exhaust holes penetrating the wall body; and further comprises a horizontal exhaust assembly, which is horizontally arranged at the lower end of the vertical exhaust assembly and is used to support the soil in the basin body, and the wall body of the horizontal exhaust assembly is densely covered with second exhaust holes penetrating the wall body, and the horizontal exhaust assembly is provided with a raised portion raised upward, and a ventilation cavity is provided below the raised portion, and the lower end of the basin body is provided with a plurality of ventilation channels for connecting the ventilation cavity with the outside world.
2. The breathable flowerpot according to claim 1, characterized in that: A buckle is provided at the upper end of the vertical exhaust assembly, and a buckle groove for engaging with the buckle is provided on the upper end side wall of the basin body.
3. The breathable flowerpot according to claim 2, characterized in that: The vertical exhaust components are strip-shaped and there are at least four of them, which are evenly spaced on the side walls of the basin body; the upper end of the vertical exhaust component is provided with a total exhaust hole that opens upward and passes through its wall body, and the aperture of the total exhaust hole is larger than the aperture of the first exhaust hole.
4. The breathable flowerpot according to claim 3, characterized in that: The horizontal exhaust component is a basin bottom that is injection-molded as one piece with the basin body. The lower end of the vertical exhaust component is plugged into the basin bottom. A number of downwardly extending support parts are provided at the connection between the basin body and the basin bottom. The ventilation channel is formed between two adjacent support parts. All support parts and raised parts are jointly enclosed to form the ventilation cavity; the raised part is located at the center of the basin bottom and is frustum or prism-shaped.
5. The breathable flowerpot according to claim 3, characterized in that: The horizontal exhaust component includes a horizontally arranged inner plate and a basin bottom injection-molded as one piece with the basin body, the inner plate is located above the basin bottom, the lower end of the vertical exhaust component is plugged into the inner plate, the inner plate is provided with the second exhaust hole, and the circumferential side wall of the lower end of the basin body is provided with a plurality of ventilation channels passing through inside and outside, and the inner opening edge of the ventilation channel is provided with a supporting ridge extending inward, the supporting ridge supports the inner plate, and the ventilation cavity is formed between the inner plate and the basin bottom.
6. The breathable flowerpot according to claim 2, characterized in that: The vertical exhaust assembly is cylindrical and extends along the circumferential direction of the basin body. The vertical exhaust assembly includes horizontal bars evenly spaced along the axial direction and vertical bars evenly spaced along the circumferential direction. The horizontal bars and the vertical bars enclose the first exhaust holes. A plurality of total exhaust holes are provided at the upper end of the vertical exhaust assembly.
7. The breathable flowerpot according to claim 6, characterized in that: The horizontal exhaust assembly includes a horizontally arranged inner plate and a basin bottom injection-molded integrally with the basin body. The inner plate is located above the basin bottom and is integrally arranged with the vertical exhaust assembly. The wall of the basin bottom bulges upward to form the bulge, and the inner plate is supported on the bulge of the basin bottom. The walls of the basin bottom and the inner plate are densely covered with second exhaust holes that penetrate their walls.
8. The breathable flowerpot according to claim 6, characterized in that: The horizontal exhaust assembly includes a horizontally arranged inner plate and a basin bottom injection-molded integrally with the basin body, the inner plate is located above the basin bottom and is integrally arranged with the vertical exhaust assembly; the inner plate is provided with the second exhaust hole, and the circumferential side wall of the lower end of the basin body is provided with a plurality of ventilation channels passing through inside and outside, and the inner opening edge of the ventilation channel is provided with a supporting ridge extending inward, the supporting ridge supports the inner plate, and the ventilation cavity is formed between the inner plate and the basin bottom.
9. The breathable flowerpot according to claim 5 or 8, characterized in that: The inner plate is provided with the raised portion, which is cross-shaped to form a cross-shaped channel. The ends of the cross-shaped channel respectively correspond to the ventilation channels, and the lower end surface of the raised portion contacts and cooperates with the supporting protrusion.
10. The breathable flowerpot according to claim 9, characterized in that: The wall of the basin bottom is closed, and the lowermost end of the ventilation channel is higher than the basin bottom, so that the basin bottom forms a water storage tank. The inner plate is provided with a plurality of tapered parts extending downward, and the diameter of the tapered parts gradually decreases from top to bottom. The lower end of the tapered parts contacts the basin bottom; the side wall of the tapered part is provided with a through groove running through the inside and outside, and the tapered part is hollow and open upward.
Citation Information
Patent Citations
Blueberry planting pot with holes formed in side waist
CN212696818U