flowerpot
Through the multi-layer structure flower pot design, the problems of forgetting watering and poor breathability are solved, and even watering, breathing and fixing the root system is achieved, cost reduction, preventing plant lodging and high temperature death, and promoting plant growth.
Patent Information
- Application Number
- CN202310672212.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-08
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2043-06-08
AI Technical Summary
Existing flower pots cannot record the watering time, which is easy to forget, resulting in continuous watering in a short period of time, poor breathability, resulting in plant death, and at high temperatures, it is easy to cause plant heat death, unable to fix root mass, and high logistics costs.
A flower pot including a multi-layer structure is designed, including the first pot body, the second pot body, the third pot body and the bottom pot. It is equipped with a recorder to record the watering date, and has a watering hole, a breathable hole and a breathable hole. Combined with a water absorption column and a drainage hole, it can achieve uniform watering and breathable functions, and has a structure to fix the root mass.
By recording the watering date, prevent forgetting, achieve uniform watering, enhance root respiration, prevent plant lodging, reduce logistics costs, avoid high temperatures to cause plant death, maintain soil moisture and breathability, and prevent pollution and odor generation.
Smart Images

Figure CN116491334B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a flower pot. Background Art
[0002] Flowerpots are containers for growing flowers, and are in the shape of an inverted frustum or an inverted prism with a large mouth and a small bottom. Flowerpots for growing flowers come in various forms and sizes. Flower producers or flower growers can choose flowerpots according to the characteristics and needs of the flowers and the characteristics of the flowerpots. Flowerpots can be divided into many types according to the materials used. Conventional flowerpots cannot record watering time, cannot automatically water evenly, and have poor ventilation, which can easily lead to plant death at high temperatures.
[0003] In addition, ordinary breathable flower pots will flow out to the outer wall when watering, causing pollution, and they have no function of filtering mud and sand to prevent odors. There is no structure inside the pot to fix the root ball. Ordinary flower pots are large in size and have high logistics costs, so they are in urgent need of improvement. Summary of the Invention
[0004] The invention provides a flower pot.
[0005] The technical solution adopted by the present invention to solve the above technical problems is as follows: comprising a flower pot, the flower pot comprising a first pot body, a second pot body, a third pot body and a bottom pot, the first pot body, the second pot body, the third pot body and the bottom pot being assembled in sequence from top to bottom to form the flower pot, the flower pot being provided with a pot cavity with an open end, the upper end of the first pot body being mounted with a cover body, the cover body being rotatably mounted with a recording member, the recording member being used to record the date of each watering to prevent forgetfulness leading to continuous watering in a short period of time, the first pot body being provided with a raised water filling groove, the inner wall of the third pot body and the cover body being provided with a plurality of evenly distributed watering holes, the upper end surfaces of the second pot body and the third pot body being provided with evenly distributed inner air holes, the first pot body and the cover body being connected to form a first interlayer, the first pot body and the second pot body being connected to form a second interlayer, and the second pot body and the third pot body being connected to form a third interlayer, in addition, the outer end surface of the second pot body being provided with a plurality of evenly distributed first air holes, and the outer end surface of the third pot body being provided with a plurality of evenly distributed second air holes.
[0006] Preferably, the bottom of the pelvic cavity is provided with a rod insertion hole and a plurality of evenly distributed fixing columns.
[0007] Preferably, the recording member is a knob.
[0008] Preferably, a water absorption column is connected to the bottom basin, one end of the water absorption column is installed at the bottom of the bottom basin, and the other end passes through the basin cavity.
[0009] Preferably, the outer periphery of the bottom basin is provided with a pattern, and the outer end surface of the bottom basin is provided with a plurality of drainage holes.
[0010] Preferably, the bottom of the basin is provided with a plurality of evenly distributed grooves.
[0011] Preferably, a water level line is provided on the cover.
[0012] Compared with the prior art, the advantages of the present invention are: the watering date can be recorded through the recording piece to prevent forgetting to water continuously in a short period of time, and the water stored in the first interlayer can be slowly flowed out through the watering hole to play the role of watering, and the watering is made more uniform, the water seepage speed is slow, and the rapid loss of organic matter in the soil caused by rapid watering is avoided, which leads to the soil compaction after drying, and the respiration of the roots is enhanced through the internal air holes, pores and air slits, which is beneficial to the growth of the root system. The root system grows well and can promote the absorption of water and nutrients, and finally promote the growth of plants. It grows quickly, and the absorbent cotton swab at the bottom can absorb the water in the bottom basin and slowly transfer it into the soil, keeping the soil moist for a long time and extending the watering cycle. The absorbent cotton swab can also filter the mud and sand, so that the water seeping into the bottom basin remains clear, effectively avoiding the generation of odor. In addition, there are three fixed columns at the bottom of the pot cavity, which effectively fix the plant root ball during planting, ensuring that the plant can remain vertical without the help of others, making it easy for one person to fill the soil. The double-layer structure effectively prevents the outflow of mud and water, promotes watering the soil, and prevents pollution of the outer pot.
[0013] In addition the present invention also has the following advantages:
[0014] 1: This flower pot also has the function of air root pruning.
[0015] 2: In the summer, when the outdoor temperature is high, the soil has an insulating effect, so the soil inside will be even hotter and hotter, causing the plants to die from heat. The air holes in this flower pot have a heat dissipation effect, preventing the plants from dying from high temperatures.
[0016] 3: Due to the limited space in the flowerpot, as the plant roots continue to grow, some roots will grow outside the pot and be the first to be exposed to the high temperature outside the pot, causing them to dry out. The double-layer structure of this flowerpot effectively prevents the roots from being exposed to direct sunlight.
[0017] 4: When watering a conventional breathable flowerpot, muddy water will flow along the air holes to contaminate the outer pot wall and affect the watering of the soil.
[0018] 5: A rod insertion hole is reserved at the bottom of this flower pot. Some plants are prone to tipping over during their growth, and some vines require climbing supports, so they need auxiliary rods. This rod insertion hole is reserved for fixing the auxiliary rod.
[0019] 6: There is a 6mm high soil water storage layer at the bottom of this flower pot, which plays a moisturizing role.
[0020] 7: The water storage box of this flower pot is equipped with a drainage hole on the side. When used indoors, watering is done regularly and quantitatively without excess water overflowing. If it is raining outdoors, the amount of watering is uncontrollable. In order to prevent the plant roots from being waterlogged, the drainage hole is set to control the water level at a certain height to achieve the purpose of timely drainage.
[0021] 8: Conventional open water storage basins will have mosquitoes laying eggs in the water, causing mosquitoes to wreak havoc indoors. The drainage holes of this flower pot water storage box are controlled to a certain size to prevent mosquitoes from flying in and laying eggs. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a schematic diagram of the three-dimensional structure of the flowerpot of the present invention.
[0023] Figure 2 This is a schematic diagram of the main structure of the flowerpot of the present invention.
[0024] Figure 3 It is a schematic diagram of the top view of the flowerpot of the present invention.
[0025] Figure 4 It is a side structural schematic diagram of the flowerpot of the present invention.
[0026] Figure 5 It is a schematic diagram of the cross-sectional structure of the flowerpot of the present invention.
[0027] 1-flowerpot, 11-first basin body, 111-basin cavity, 112-watering hole, 113-water adding trough, 114-cover body, 12-second basin body, 121-inner air hole, 122-first air hole, 13-third basin body, 131-second air hole, 14-bottom basin, 141-rod insertion hole, 142-fixing column, 143-water absorption column, 144-drainage hole, 145-groove, 2-recording piece, 31-first interlayer, 32-second interlayer, 33-third interlayer, 34-air slit. DETAILED DESCRIPTION
[0028] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments.
[0029] like Figures 1 to 5As shown, the flower pot of the present invention includes a flower pot 1, which includes a first pot body 11, a second pot body 12, a third pot body 13 and a bottom pot 14. The first pot body 11, the second pot body 12, the third pot body 13 and the bottom pot 14 are sequentially installed from top to bottom to form the flower pot 1, and the first pot body 11, the second pot body 12, the third pot body 13 and the bottom pot 14 are tightly fitted together. Each pot body is in a hollow frustum shape. A pot cavity 111 with an open end is provided in the flower pot 1, and a cover body 114 is installed on the upper end of the first pot body 11. A recording member 2 is rotatably installed on the cover body 114. The recording member 2 is used to record the daily watering situation. The recording member 2 can be a knob or other forms. The time recording structure is a knob in the present invention, and there are thirty-one scales on the knob for recording the watering situation for one month. The first basin body 11 is provided with a raised water adding groove 113, and the inner wall of the third basin body 13 and the inner wall of the cover body 114 are provided with a plurality of evenly distributed watering holes 112. The first basin body 11 and the cover body 114 are connected to form a first interlayer 31. The first interlayer 31 is connected to the water adding groove 113, so that after water is added to the water adding groove 113, the water is stored in the first interlayer 31. The water stored in the first interlayer 31 penetrates into the basin cavity 111 through the watering holes 112, and slowly seeps water in multiple directions, so that the watering is more uniform and the seepage speed is slow, which avoids soil damage caused by rapid watering. The organic matter in the soil is lost quickly, and the soil becomes compacted after drying. The first pot body 11 and the second pot body 12 are connected to form a second interlayer 32, and the second pot body 12 and the third pot body 13 are connected to form a third interlayer 33. Since the growth space of the flower pot is limited, as the plant roots continue to grow, part of the roots will grow out of the pot and will be the first to come into contact with the high temperature outside the pot, causing it to dry out. The double layer can prevent the sun from directly scorching the inner pot wall, causing the soil to heat up and the plants to die of heat. When watering the conventional breathable flower pot, muddy water will contaminate the outer pot wall along the air vents and affect the watering of the soil. The double layer structure of the present invention effectively prevents muddy water from flowing out. The upper end surfaces of the second pot body 12 and the third pot body 13 are both provided with There are evenly distributed inner air holes 121. In addition, the outer end surface of the second basin body 12 is provided with a plurality of evenly distributed first air holes 122, and the outer end surface of the third basin body 13 is provided with a plurality of evenly distributed second air holes 131. The inner air holes 121 can also be used as air holes, and the first air holes 122 and the second air holes 131 and the whole circle of air permeable layer are provided therein. The ventilation effect of the inner air holes 121, the first air holes 122 and the second air holes 131 enhances the respiration of the roots, thereby facilitating the growth of the root system. The root system grows well and can promote the absorption of water and nutrients, ultimately promoting the rapid growth of plants. In addition, in the high temperature environment outdoors in summer, the soil has a heat preservation effect, so the soil inside will be more stuffy in summer, causing the plants to die of heat.The inner air holes 121, the first air holes 122, and the second air holes 131 provide heat dissipation, preventing plant death caused by high temperatures and also serving as air root pruning. Air slits 34 are provided between the first and second pots 11, 12, and between the second and third pots 12, 13, to provide improved ventilation.
[0030] The bottom of the basin cavity 111 is provided with a rod insertion hole 141 and several evenly distributed fixing columns 142. In the present invention, there are three fixing columns 142. In addition to three, the number can also be changed according to needs. The fixing columns 142 are used to effectively fix the plant root balls during planting, ensuring that the plants can remain vertical without the help of others, making it convenient for one person to fill the soil. Since some plants are prone to falling during growth, they need to be fixed with auxiliary rods. The rod insertion hole 141 is used to insert auxiliary rods to allow plants to grow better.
[0031] The bottom basin 14 is connected to a water absorption column 143, one end of which is installed at the bottom of the bottom basin 14, and the other end passes through the pelvic cavity 111. A seal is connected between the water absorption column 143 and the bottom of the third basin body 13, and the seal is a sealing ring made of silicone, so as to prevent sewage and mud from passing through the gap. The water absorption column 143 is a water-absorbing cotton swab. Since the stored water will seep into the bottom basin 14 through the soil interlayer, the water absorption column 143 can absorb the water in the bottom basin 14 and slowly transfer it into the soil, keeping the soil in a moist state for a long time, extending the watering cycle, and the water-absorbing cotton swab also has the function of filtering mud and sand, so that the water seeping into the bottom basin remains clear and prevents the generation of odor.
[0032] The outer periphery of the bottom basin 14 is provided with a pattern, and a plurality of drainage holes 144 are provided on the outer end surface of the bottom basin 14. The drainage holes 144 are used indoors to water the plant at regular intervals and in fixed quantities, and no excess water will overflow. However, in an outdoor rainstorm environment, the amount of watering will be uncontrollable. In order to prevent the plant roots from being waterlogged, the drainage holes 144 are provided to control the water level at a certain height, thereby achieving the effect of timely drainage. In conventional open water basins, mosquitoes will lay eggs in the water, causing mosquitoes to wreak havoc indoors. The size of the drainage holes 144 of the present invention is controlled to a certain size to prevent mosquitoes from flying in to lay eggs.
[0033] The bottom of the bottom basin 14 is provided with a plurality of evenly distributed grooves 145, so that the bottom basin 14 can be disassembled individually and then stacked, thereby reducing the volume and lowering the logistics cost.
[0034] The cover 114 is provided with a water level line, which marks the saturated water absorption of the soil. If you have a measuring cup, you can directly use the measuring cup to water the soil in a fixed amount. If you don’t have a measuring cup, you can directly fill the water into the outlet quickly until the water level reaches the water level line. On the premise of ensuring that the soil is watered thoroughly, prevent excess water from overflowing the bottom basin 14.
[0035] In addition, there is a 6mm high soil water storage layer at the bottom of the basin cavity 111, which plays a moisturizing role.
[0036] The advantages of the present invention are that: the watering date can be recorded through the recording piece to prevent forgetting and causing continuous watering in a short period of time, and the water stored in the first interlayer can slowly flow out through the watering holes to play the role of watering, and the watering is made more uniform, the water seepage speed is slow, and the rapid loss of organic matter in the soil caused by rapid watering is avoided, which leads to soil compaction after drying, and the respiration of the roots is enhanced through the internal air permeable holes and stomata, which is beneficial to the growth of the root system. The root system grows well and can promote the absorption of water and nutrients, and ultimately promote the rapid growth of plants.
[0037] Finally, it should be noted that the above embodiments only illustrate the technical solutions of the present invention and do not limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A flowerpot, comprising a flowerpot (1), characterized in that: The flower pot (1) comprises a first pot body (11), a second pot body (12), a third pot body (13) and a bottom pot (14); the first pot body (11), the second pot body (12), the third pot body (13) and the bottom pot (14) are sequentially installed from top to bottom to form the flower pot (1); a pot cavity (111) with an open end is provided in the flower pot (1); a cover body (114) is installed at the upper end of the first pot body (11); the cover body (114) is provided with a cover body (114) and a cover body (114) is provided with a cover body (114) ) is rotatably mounted with a recording element (2), the recording element (2) being used to record the date of each watering to prevent forgetfulness leading to continuous watering in a short period of time, the first basin body (11) is provided with a raised water adding groove (113), the inner walls of the third basin body (13) and the cover body (114) are provided with a plurality of evenly distributed watering holes (112), the upper end surfaces of the second basin body (12) and the third basin body (13) are provided with evenly distributed inner air holes (121), the first basin body (11) and the cover body (114) form a first interlayer (31) after being connected, the first basin body (11) and the second basin body (12) form a second interlayer (32) after being connected, the second basin body (12) and the third basin body (13) form a third interlayer (33) after being connected, in addition, the outer end surface of the second basin body (12) is provided with a plurality of evenly distributed first air holes (122), the third basin body (1 3) The outer end surface is provided with a plurality of evenly distributed second air holes (131), the bottom of the basin cavity (111) is provided with a rod insertion hole (141) and a plurality of evenly distributed fixing columns (142), the recording member (2) is a knob, and the bottom basin (14) is connected to a water absorption column (143), one end of the water absorption column (143) is installed at the bottom of the bottom basin (14), and the other end passes through the basin cavity (111), and a water level line is provided on the cover body (114).
2. The flowerpot according to claim 1, characterized in that The outer periphery of the bottom basin (14) is provided with patterns, and the outer end surface of the bottom basin (14) is provided with a plurality of drainage holes (144).
3. The flowerpot according to claim 2, characterized in that The bottom of the bottom basin (14) is provided with a plurality of evenly distributed grooves (145).
Citation Information
Patent Citations
Air-permeable water-retention flower pot
CN108207389A
Flowerpot with watering date capable of being recorded
CN203233768U
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CN213280808U
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