Flowerpot base
By designing a flower pot base with water storage chamber and air injection components, the problems of waste of water resources and poor air circulation are solved, precise water supply and improved root environment, and healthy plant growth are achieved.
Patent Information
- Application Number
- CN202422357610.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-26
AI Technical Summary
The existing flower pot base is prone to waste of water resources when watering, and cannot flexibly adjust supply according to plant needs. It also ignores the plants' demand for air quality, especially in closed or semi-confined spaces, which affects plant growth.
A flower pot base is designed, including a water permeable port, a water storage chamber, a water supply mechanism and an air injection assembly. The excess water is discharged into the water storage chamber through the flower pot support bracket, and the water supply mechanism and a water level monitor are used to achieve accurate water supply. Combined with the control circuit board to adjust the water supply frequency, inject air into the soil through the air injection member to improve the root environment.
It has achieved efficient management and utilization of water resources, adjusted water supply according to plant needs, improved soil oxygen content, promoted healthy growth of plants, and adapted to the needs of different types and growth stages.
Smart Images

Figure CN223067601U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of horticulture, and more specifically, to a flowerpot base. Background Art
[0002] With the acceleration of the modern life rhythm and the continuous improvement of people's pursuit of the quality of life, ornamental plants have become an indispensable part of many families and office places. They can not only beautify the environment and purify the air, but also bring a touch of tranquility and vitality to people in the busy life rhythm. However, in the process of maintaining ornamental plants, how to scientifically and reasonably meet their growth needs has become a difficult problem for many plant lovers.
[0003] There are various types of flowerpots and maintenance equipment on the current market. They usually supply nutrients and water to plants at regular intervals. Although this method reduces the burden of manual maintenance to a certain extent, it has the following deficiencies:
[0004] 1) When watering, it is easy to cause excess water to drain directly, lacking an effective collection and reuse mechanism, which not only wastes water resources, but also may cause a burden on the environment;
[0005] 2) Existing maintenance equipment often can only water according to a preset schedule and cannot be flexibly adjusted according to the actual needs of plants. Different types of plants and the same plant at different growth stages have different nutrient requirements, which is likely to lead to excessive or insufficient water supply, affecting the growth of plants;
[0006] 3) The equally important need of plants for air quality is ignored. Especially in a closed or semi-closed space, the air circulation is poor, the carbon dioxide concentration is low, and the oxygen content is relatively reduced, which is extremely unfavorable to the growth state of plants.
[0007] Therefore, how to provide a flowerpot base that can meet the needs of plants for nutrient water, can meet the needs of plants for air at the same time, can adjust the supply according to the needs of different types and growth stages of plants, and also has the function of collecting and reusing excess water is an urgent problem to be solved by those skilled in the art. Summary of the Utility Model
[0008] In view of this, the utility model provides a flowerpot base, which can meet the needs of plants for nutrient water, can meet the needs of plants for air at the same time, can adjust the supply according to the needs of different types and growth stages of plants, and also has the function of collecting and reusing excess water.
[0009] In order to achieve the above object, the utility model adopts the following technical solutions:
[0010] A flowerpot base for placing a flowerpot, with a water-permeable opening provided at the bottom of the flowerpot, comprising:
[0011] A support base, in the middle of the upper end plate of the support base, a water passing groove is recessed downward, and a water storage cavity is arranged inside the support base, and the water storage cavity is communicated with the water passing groove through a circulation hole opened at the bottom of the water passing groove;
[0012] A flowerpot support bracket, the flowerpot support bracket is located at the upper port of the water passing groove and is fixed to the groove wall of the water passing groove, and the water-permeable opening is communicated with the water passing groove to drain the excess water in the flowerpot into the water passing groove;
[0013] A water level monitor, which is installed in the water storage cavity;
[0014] A water supply mechanism, the water inlet of the water supply mechanism is communicated with the water storage cavity, and its water outlet faces the inside of the flowerpot.
[0015] Through the above technical solutions, the present utility model provides a flowerpot base. A gap is reserved between the flowerpot and the support base through the flowerpot support bracket, so that the excess water in the flowerpot can smoothly drain into the water storage cavity through the water passing groove; the water supply mechanism pumps water from the water storage cavity and supplies it to the inside of the flowerpot, reducing the waste of water resources and realizing the efficient management and utilization of water resources; through the water level monitor, the water level in the water storage cavity can be monitored in real time to ensure that the water supply mechanism works when the water volume is sufficient.
[0016] Furthermore, when watering, it can be diluted according to the nutrients required by the plant during rooting, leaf growth, flowering and fruiting and watered together with water.
[0017] Preferably, it further includes a filter, the filter is fixed below the water storage cavity corresponding to the circulation hole, and its filter inlet is communicated with the circulation hole, and its filter outlet is communicated with the water storage cavity. Through the setting of this structure, the excess water discharged from the flowerpot can be filtered to ensure the stable operation of the water supply mechanism and extend the service life of the flowerpot base.
[0018] Furthermore, there are two filters and circulation holes corresponding to each other. The setting of this structure can further ensure the smoothness of the filtration of the flowerpot base.
[0019] Preferably, it further includes a PCB control component, the PCB control component includes a housing, a control circuit board and an operation panel; the housing is fixed on the outer side wall of the support base; the output end of the control circuit board is respectively signal-connected to the input end of the water supply mechanism; the operation panel is installed on the upper end face of the housing and is electrically connected to the input end of the control circuit board to set the working time and frequency of the water supply mechanism. Through the setting of this structure, the working time and frequency of the water supply mechanism can be set, no longer limited to the preset schedule, and can be adjusted according to the type and growth stage of the plant, improving the accuracy and reliability of maintenance.
[0020] Further, the water level monitor is signal-connected to the control circuit board to transmit signals of water full and waterless to the control circuit board, and the control circuit board gives a prompt or an alarm.
[0021] The water level monitor can be an electrode type water level monitor, and different water levels are monitored by placing electrode plates at different water level heights.
[0022] Preferably, the water supply mechanism includes a water pump, a fixing rod, a connecting water pipe and a water spraying and atomizing device. The water pump is fixed inside the housing and is signal-connected to the output end of the control circuit board. The water inlet of the water pump is communicated with the water storage cavity. The lower end of the fixing rod can be inserted into the soil of the flower pot for fixation, and an installation hole is horizontally opened at the upper end thereof. A water pipe insertion hole is opened on the support seat. The connecting water pipe is located in the water storage cavity, and its water inlet end is communicated with the outlet of the water pump, and its water outlet end penetrates through the water pipe insertion hole and is fixed in the installation hole. One end of the water spraying and atomizing device is located in the installation hole and is rotatably connected and communicated with the water outlet end of the connecting water pipe.
[0023] Further, the water spraying and atomizing device includes a water spraying main body, a water spraying adjusting screw cap and an atomizing part. The water spraying main body is an integrally formed L-shaped structure with a communicating main body one and main body two. Main body one is horizontally arranged and one end is located in the installation hole. It is rotatably connected and communicated with the water outlet end of the connecting water pipe. A clamping groove is opened at the center of the end of main body two, and a plurality of water spraying ports one are evenly opened on the periphery corresponding to the clamping groove. The water spraying adjusting screw cap is spirally connected to the outer surface of main body two, and a plurality of obliquely arranged water spraying ports two are opened at its position corresponding to the water spraying ports one. When the water spraying adjusting screw cap is rotated, the covering area of the water spraying ports one is adjusted to control the opening and flow rate of the water spraying ports two. One end of the atomizing part is clamped in the clamping groove and is communicated with main body two, and an atomizing nozzle is opened at the center of the other end of the atomizing part.
[0024] Through the setting of the above technical solutions, the spraying area can be controlled, the spraying amount can be controlled, and the water can be atomized. The operation is convenient and flexible, meeting the requirements of users.
[0025] Further, one end of main body one is connected to the water outlet end of the connecting water pipe through a quick plug-in of an air pipe.
[0026] Further, the water pressure of the water pump can be 200KPA, and its water flow rate can be 1.2LPM m 3 / min.
[0027] Preferably, an air injection component is further included. The air injection component includes an air pump, a connecting air pipe and an air injection part. The air pump is located inside the housing and is signal-connected to the output end of the control circuit board. A trachea insertion hole is opened on the support seat. The connecting air pipe is located in the water storage cavity, and its air inlet end is communicated with the outlet of the air pump, and its air outlet end penetrates through the trachea insertion hole and can be inserted into the soil of the flower pot. The air injection part is located in the flower pot, and its air inlet is communicated with the air outlet end of the connecting air pipe, and the air outlet of the air injection part can correspond to the root of the plant.
[0028] Through the setting of this structure, air is directly injected into the soil in the flowerpot, especially in the root area. This is particularly important for plants growing in enclosed or semi-enclosed spaces because these environments often have poor air circulation, insufficient oxygen content, and possibly too high carbon dioxide concentration. By controlling the working time and frequency of the air pump through the control circuit board, the air injection component injects fresh air into the root area regularly and quantitatively, which can effectively increase the oxygen content in the soil, reduce the carbon dioxide concentration, thereby improving the respiratory environment of the plant roots and promoting the healthy growth of the plants.
[0029] Furthermore, the distance between the air outlet of the air injection component and the roots of the plant is 5-15 mm. Through the setting of this structure, it can ensure that fresh air is directly delivered to the root area, increase the oxygen content in the soil, and promote the respiration of the roots; it helps to optimize the root growth environment, keep the root cells alive, enhance their absorption function, and thus accelerate the growth of the plants.
[0030] Optionally, the air injection component can be an air stone. There is a quick plug-in for the air pipe at the air pipe jack, the support seat is in a frame structure with an open upper end, the lower end of the support seat is connected and communicated with the quick plug-in for the air pipe, and the air stone is fixed in the support seat with fixing glue and its upper end face faces the roots of the plant. The air stone has a good gas dispersion effect.
[0031] Furthermore, when the air injection component is an air stone, the air pressure of the air pump can be 60 KPA, and its air flow rate can be 4 LPM m 3 / min, so that the air stone can well provide the air demand for the plants in the soil.
[0032] Optionally, the air injection component can be an air needle.
[0033] Optionally, both the air pipe jack and the water pipe jack are opened at the bottom of the water overflow tank, and the bottom end of the flowerpot is provided with an assembly hole one and an assembly hole two corresponding to the air pipe jack and the water pipe jack. The air outlet end of the connecting air pipe passes through the air pipe jack and the assembly hole one in sequence and is located inside the flowerpot, and the water outlet end of the connecting water pipe passes through the water pipe jack and the assembly hole two in sequence and is located inside the flowerpot to realize the internal installation of the pipeline.
[0034] Optionally, the upper end plate of the support seat corresponding to the periphery of the water overflow tank is a side seat, both the air pipe jack and the water pipe jack are opened on the side seat, the air outlet end of the connecting air pipe passes through the air pipe jack to the upper part of the flowerpot and is inserted into the soil, and the water outlet end of the connecting water pipe passes through the air pipe jack to the installation hole above the flowerpot. Through the setting of this structure, the pipeline can be placed outside, without opening assembly holes at the bottom end of the flowerpot, which is simple and convenient and can be directly used.
[0035] Preferably, it further includes rollers, and the rollers are fixed to the bottom end of the support seat. It is convenient to move through the rollers.
[0036] Further, the flowerpot supporting bracket can be composed of 12 supporting plates, and the 12 supporting plates are evenly distributed along the upper circumference of the inner side of the edge seat and fixed to the upper end of the inner side wall of the edge seat.
[0037] Four support columns are fixed in the water storage cavity. The four support columns are evenly arranged along the arrangement direction of the supporting plates. The upper ends of the support columns extend out of the upper end plate of the support seat and are fixedly supported at the lower ends of the supporting plates.
[0038] There can be four rollers, which are correspondingly fixed at the lower ends of the four support columns at the bottom end of the support seat.
[0039] Through the above technical solution, the bearing capacity of the flowerpot base for the flowerpot can be ensured.
[0040] The size of the flowerpot base can be designed according to the size of the flowerpot, and whether to install rollers is determined according to the size specification of the flowerpot base and the customer's needs.
[0041] As can be seen from the above technical solution, compared with the prior art, the present utility model discloses a flowerpot base. Compared with the prior art, the present utility model reserves a gap between the flowerpot and the support seat through the flowerpot supporting bracket, so that the excess water in the flowerpot can smoothly drain into the water storage cavity through the water trough; the water supply mechanism pumps water from the water storage cavity and supplies it to the inside of the flowerpot, reducing water resource waste and realizing efficient management and utilization of water resources; the air injection part can inject air into the soil in the flowerpot, effectively increasing the oxygen content in the soil and reducing the carbon dioxide concentration, thereby improving the respiratory environment of the plant roots and promoting the healthy growth of the plant; the control circuit board can control the working time and frequency of the air pump and the water pump, and make supply adjustments according to the type and growth stage of the plant; the internal or external placement of the pipeline can be realized through the opening positions of the air pipe jack and the water pipe jack. When the pipeline is placed inside, the connecting pipe is hidden in the flowerpot, which is beautiful; when the pipeline is placed outside, the flowerpot can be directly placed for use, which is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.
[0043] Figure 1 It is a top view of a flowerpot base according to Embodiment 1 of the present utility model.
[0044] Figure 2 It is a side view of the assembly of a flowerpot base and a flowerpot according to Embodiment 1 of the present utility model.
[0045] Figure 3A cross-sectional view of the water spray atomizer provided by the present utility model.
[0046] Figure 4 A top view of the water spray atomizer provided by the present utility model.
[0047] Figure 5 A cross-sectional view of the air injection member provided by the present utility model.
[0048] Figure 6 A top view of a flower pot base according to Embodiment II of the present utility model.
[0049] Figure 7 A side view of a flower pot base according to Embodiment II of the present utility model.
[0050] Among them, 1 is a support base; 11 is an overflow trough; 12 is a water storage cavity; 13 is a circulation hole; 14 is a water pipe socket; 15 is an air pipe socket; 16 is a side seat;
[0051] 2 is a flower pot support bracket; 3 is a water level monitor;
[0052] 4 is a water supply mechanism; 41 is a water pump; 42 is a fixing rod; 43 is a connecting water pipe; 44 is a water spray atomizer; 441 is a main body of the water spray member; 442 is a first water spray port; 443 is a water spray adjustment screw cap; 444 is a second water spray port; 445 is an atomizing member; 446 is an atomizing nozzle;
[0053] 5 is an air injection assembly; 51 is an air pump; 52 is a connecting air pipe; 53 is an air injection member; 531 is a support; 532 is an air stone;
[0054] 6 is a filter;
[0055] 7 is a PCB control assembly; 71 is a housing; 72 is a control circuit board; 73 is an operation panel;
[0056] 8 is a roller; 9 is a quick plug-in for air pipe plugs; 10 is a flower pot. Detailed implementation manners
[0057] The technical solutions in the embodiments of the present utility model will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0058] Embodiment I
[0059] Refer to the appendix Figures 1-5 , Embodiment I of the present utility model discloses a flower pot base for placing a flower pot 10. The bottom of the flower pot 10 is provided with a water permeable opening, including:
[0060] Support base 1, a water passing groove 11 is formed by downward depression in the middle of the upper end plate of the support base 1, a water storage cavity 12 is arranged inside the support base 1 and is communicated through a circulation hole 13 opened at the bottom of the water passing groove 11;
[0061] Flower pot support bracket 2, the flower pot support bracket 2 is located at the upper port of the water passing groove 11 and is fixed to the groove wall of the water passing groove 11, and the water permeable port is communicated with the water passing groove 11 to drain the excess water in the flower pot 10 into the water passing groove 11;
[0062] Water level monitor 3, the water level monitor 3 is installed in the water storage cavity 12;
[0063] Water supply mechanism 4, the water inlet of the water supply mechanism 4 is communicated with the water storage cavity 12, and its water outlet faces the inside of the flower pot 10.
[0064] To further optimize the above technical solution, a filter 6 is further included. The filter 6 is fixed below the circulation hole 13 corresponding to the water storage cavity 12, and its filter inlet is communicated with the circulation hole 13, and its filter outlet is communicated with the water storage cavity 12.
[0065] Specifically, there are two filters 6 and circulation holes 13 provided correspondingly.
[0066] To further optimize the above technical solution, a PCB control component 7 is further included. The PCB control component 7 includes a housing 71, a control circuit board 72 and an operation panel 73; the housing 71 is fixed on the outer side wall of the support base 1; the output end of the control circuit board 72 is respectively signal-connected to the input end of the water supply mechanism 4; the operation panel 73 is installed on the upper end face of the housing 71 and is electrically connected to the input end of the control circuit board 72 to set the working time and frequency of the water supply mechanism 4.
[0067] Specifically, the water level monitor 3 is signal-connected to the control circuit board 72.
[0068] The water level monitor 3 can be an electrode type water level monitor, and different water levels are monitored by placing electrode plates at different water level heights.
[0069] To further optimize the above technical solution, the water supply mechanism 4 includes a water pump 41, a fixed rod 42, a connecting water pipe 43 and a spray atomizer 44. The water pump 41 is fixed in the housing 71 and is signal-connected to the output end of the control circuit board 72, and the water inlet of the water pump 41 is communicated with the water storage cavity 12; the lower end of the fixed rod 42 can be inserted into the soil of the flower pot 10 for fixation and its upper end is horizontally provided with an installation hole; a water pipe insertion hole 14 is opened on the support base 1, the connecting water pipe 43 is located in the water storage cavity 12 and its water inlet end is communicated with the outlet of the water pump 41, and its water outlet end penetrates through the water pipe insertion hole 14 and is fixed in the installation hole; one end of the spray atomizer 44 is located in the installation hole and is rotationally connected and communicated with the water outlet end of the connecting water pipe 43.
[0070] Specifically, the water spraying atomizer 44 includes a main body 441 of the water spraying part, a water spraying adjusting screw cap 443 and an atomizing part 445. The main body 441 of the water spraying part is an integrally formed L-shaped structure with a connected main body one and main body two. The main body one is horizontally arranged and one end is located in the mounting hole. It is rotatably connected and communicated with the water outlet end of the connecting water pipe 43. A clamping groove is formed at the center of the end of the main body two, and a plurality of first water spraying ports 442 are evenly arranged on the periphery corresponding to the clamping groove; the water spraying adjusting screw cap 443 is screwed on the outer surface of the main body two, and a plurality of second water spraying ports 444 which are inclined are formed at the position corresponding to the first water spraying ports 442. When the water spraying adjusting screw cap 443 is rotated, the covering area of the first water spraying ports 442 is adjusted to control the opening and closing and the flow rate of the second water spraying ports 444; one end of the atomizing part 445 is clamped in the clamping groove and communicated with the main body two, and an atomizing nozzle 446 is formed at the center of the other end of the atomizing part 445.
[0071] Specifically, one end of the main body one is connected to the water outlet end of the connecting water pipe 43 through a quick plug-in of an air pipe plug 9.
[0072] Specifically, the water pressure of the water pump 41 can be 200 KPA, and its water flow rate can be 1.2 LPM m 3 / min.
[0073] To further optimize the above technical solution, an air injection assembly 5 is further included. The air injection assembly 5 includes an air pump 51, a connecting air pipe 52 and an air injection part 53. The air pump 51 is located inside the housing 71 and is signal-connected to the output end of the control circuit board 72; an air pipe insertion hole 15 is formed on the support base 1. The connecting air pipe 52 is located in the water storage cavity 12, and its air inlet end is communicated with the outlet of the air pump 51. Its air outlet end penetrates through the air pipe insertion hole 15 and can be inserted into the soil of the flower pot 10; the air injection part 53 is located in the flower pot 10, and its air inlet is communicated with the air outlet end of the connecting air pipe 52. The air outlet of the air injection part 53 can correspond to the root of the plant.
[0074] To further optimize the above technical solution, the air pipe insertion hole 15 and the water pipe insertion hole 14 are both formed at the bottom of the water passing groove 11. The bottom end of the flower pot 10 is provided with a first assembly hole and a second assembly hole corresponding to the air pipe insertion hole 15 and the water pipe insertion hole 14. The air outlet end of the connecting air pipe 52 sequentially passes through the air pipe insertion hole 15 and the first assembly hole and is located inside the flower pot 10. The water outlet end of the connecting water pipe 43 sequentially passes through the water pipe insertion hole 14 and the second assembly hole and is located inside the flower pot 10 to realize the internal installation of the pipeline.
[0075] Specifically, as Figure 2 and Figure 5As shown in the figure, the air injection member 53 is a bubble stone 532. A quick plug-in for an air pipe is provided at the air pipe insertion hole 15. One end of the connecting air pipe 52 is connected to and communicated with the quick plug-in for the air pipe 9; the support 531 is of a frame structure with an open upper end. The lower end of the support 531 is connected to and communicated with the other end of the quick plug-in for the air pipe 9. The bubble stone 532 is fixed in the support 531 by fixing glue, and the air outlet on its upper end face faces the root of the plant, and the distance between the air outlet and the root of the plant is 5-15 mm.
[0076] Specifically, the air pressure of the air pump 51 can be 60 KPA, and its air flow rate can be 4 LPM m 3 / min.
[0077] To further optimize the above technical solution, it further includes a roller 8, and the roller 8 is fixed to the bottom end of the support base 1. The size of the flowerpot base can be designed according to the size of the flowerpot, and whether to install the roller 8 is determined according to the size specification of the flowerpot base and the customer's needs.
[0078] Embodiment 2
[0079] This Embodiment 2 provides a flowerpot base, and the difference from Embodiment 1 is that: as Figure 6 shown, the peripheral side of the upper end plate of the support base 1 corresponding to the water overflow tank 11 is the edge seat 16. The air pipe insertion hole 15 and the water pipe insertion hole 14 are both opened on the edge seat 16. The air outlet end of the connecting air pipe 52 passes through the air pipe insertion hole 15 to above the flowerpot 10 and is inserted into the soil, and the water outlet end of the connecting water pipe 43 passes through the air pipe insertion hole 15 to the installation hole above the flowerpot 10.
[0080] As Figure 7 shown, the air injection member 53 is an air needle. The air needle is inserted into the soil from above the flowerpot 10, and its air outlet faces the root of the plant, and the distance between the air outlet and the root of the plant is 5-15 mm.
[0081] According to the flowerpot base designed by the present utility model, a gap is reserved between the flowerpot and the support base through the flowerpot support bracket, so that the excess water in the flowerpot can smoothly drain into the water storage cavity through the water overflow tank; the water supply mechanism pumps water from the water storage cavity and supplies it to the inside of the flowerpot, reducing water resource waste and realizing efficient management and utilization of water resources; through the air injection member, air can be injected into the soil in the flowerpot, effectively increasing the oxygen content in the soil and reducing the carbon dioxide concentration, thereby improving the breathing environment of the plant roots and promoting the healthy growth of the plants; through the control circuit board, the working time and frequency of the air pump and the water pump can be controlled, and the supply can be adjusted according to the type and growth stage of the plants; through the opening positions of the air pipe insertion hole and the water pipe insertion hole, two methods of internal or external pipeline can be realized. When the pipeline is internal, the connecting pipe is hidden in the flowerpot, which is beautiful; when the pipeline is external, the flowerpot can be directly placed for use, which is convenient.
[0082] The various embodiments in this specification are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. For the same or similar parts among the various embodiments, reference can be made to each other.
[0083] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art. The general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A flowerpot base for placing a flowerpot (10), wherein a water-permeable opening is provided at the bottom of the flowerpot (10), characterized in that, Comprising: A support base (1), in the middle of the upper end plate of the support base (1), a water trough (11) is recessed downward, and a water storage cavity (12) is arranged inside the support base (1) and is communicated through a circulation hole (13) opened at the bottom of the water trough (11); A flowerpot support bracket (2), the flowerpot support bracket (2) is located at the upper port of the water trough (11) and is fixed to the trough wall of the water trough (11), and the water permeable port is communicated with the water trough (11) to drain the excess water in the flowerpot (10) into the water trough (11); A water level monitor (3), the water level monitor (3) is installed in the water storage cavity (12); A water supply mechanism (4), the water inlet of the water supply mechanism (4) is communicated with the water storage cavity (12), and its water outlet faces the inside of the flowerpot (10).
2. The flowerpot base according to claim 1, wherein, It further includes a filter (6), the filter (6) is fixed below the water storage cavity (12) corresponding to the circulation hole (13), and its filter inlet is communicated with the circulation hole (13), and its filter outlet is communicated with the water storage cavity (12).
3. The flowerpot base according to claim 1, characterized in that, It further includes a PCB control component (7), the PCB control component (7) includes a housing (71), a control circuit board (72) and an operation panel (73); the housing (71) is fixed to the outer side wall of the support base (1); the output end of the control circuit board (72) is respectively signal-connected to the input end of the water supply mechanism (4); the operation panel (73) is installed on the upper end surface of the housing (71) and is electrically connected to the input end of the control circuit board (72).
4. A flowerpot base according to claim 3, characterized in that, The water supply mechanism (4) includes a water pump (41), a fixed rod (42), a connecting water pipe (43) and a spray atomizer (44), the water pump (41) is fixed in the housing (71) and is signal-connected to the output end of the control circuit board (72), and the water inlet of the water pump (41) is communicated with the water storage cavity (12); the lower end of the fixed rod (42) can be inserted into the soil of the flowerpot (10) for fixation and its upper end is horizontally provided with a mounting hole; a water pipe insertion hole (14) is opened on the support base (1), the connecting water pipe (43) is located in the water storage cavity (12), its water inlet end is communicated with the outlet of the water pump (41), its water outlet end penetrates through the water pipe insertion hole (14) and is fixed in the mounting hole; one end of the spray atomizer (44) is located in the mounting hole and is rotatably connected and communicated with the water outlet end of the connecting water pipe (43).
5. A flower pot base according to claim 4, characterized in that, The water spraying atomizer (44) includes a water spraying main body (441), a water spraying adjusting cap (443) and an atomizing member (445). The water spraying main body (441) is integrally formed into an L-shaped structure with a connected main body one and main body two. The main body one is horizontally arranged and one end is located in the installation hole, and it is rotatably connected and communicated with the water outlet end of the connecting water pipe (43). A clamping groove is formed at the center of the end of the main body two, and a plurality of first water spraying ports (442) are uniformly arranged on the periphery corresponding to the clamping groove; the water spraying adjusting cap (443) is screwed on the outer surface of the main body two, and a plurality of inclined second water spraying ports (444) are arranged at the position corresponding to the first water spraying ports (442). When the water spraying adjusting cap (443) is rotated, the coverage area of the first water spraying ports (442) is adjusted to control the opening and closing and flow rate of the second water spraying ports (444); one end of the atomizing member (445) is clamped in the clamping groove and communicated with the main body two, and an atomizing nozzle (446) is arranged at the center of the other end of the atomizing member (445).
6. The flowerpot base according to claim 5, characterized in that, It further includes an air injection assembly (5). The air injection assembly (5) includes an air pump (51), a connecting air pipe (52) and an air injection member (53). The air pump (51) is located inside the housing (71) and is signal-connected to the output end of the control circuit board (72); an air pipe insertion hole (15) is formed on the support base (1). The connecting air pipe (52) is located in the water storage cavity (12), its air inlet end is communicated with the outlet of the air pump (51), and its air outlet end passes through the air pipe insertion hole (15) and can be inserted into the soil of the flower pot (10); the air injection member (53) is located in the flower pot (10), its air inlet is communicated with the air outlet end of the connecting air pipe (52), and the air outlet of the air injection member (53) can correspond to the root of the plant.
7. The flowerpot base according to claim 6, characterized in that, The distance between the air outlet of the air injection member (53) and the root of the plant is 5-15 mm.
8. A flowerpot base according to claim 6, characterized in that Both the air pipe insertion hole (15) and the water pipe insertion hole (14) are formed at the bottom of the water overflow tank (11). The bottom end of the flower pot (10) is provided with a first assembly hole and a second assembly hole corresponding to the air pipe insertion hole (15) and the water pipe insertion hole (14). The air outlet end of the connecting air pipe (52) passes through the air pipe insertion hole (15) and the first assembly hole in sequence and is located inside the flower pot (10). The water outlet end of the connecting water pipe (43) passes through the water pipe insertion hole (14) and the second assembly hole in sequence and is located inside the flower pot (10) to realize the internal installation of the pipeline.
9. The flowerpot base according to claim 6, characterized in that, The upper end plate of the support base (1) corresponding to the periphery of the water overflow tank (11) is a side seat (16). Both the air pipe insertion hole (15) and the water pipe insertion hole (14) are formed on the side seat (16). The air outlet end of the connecting air pipe (52) passes through the air pipe insertion hole (15) to above the flower pot (10) and is inserted into the soil, and the water outlet end of the connecting water pipe (43) passes through the air pipe insertion hole (15) to the installation hole above the flower pot (10).
10. A flowerpot base according to claim 1, characterized in that, It further includes a roller (8), and the roller (8) is fixed to the bottom end of the support base (1).
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Flowerpot base
CN118947398A