Automatic watering flowerpot

By integrating the soil moisture detection module and automatic watering system in the flower pot, the problem of users forgetting to water is solved, and automatic watering and humidity monitoring is realized to ensure healthy growth of flowers.

CN223219565UActive Publication Date: 2025-08-15QUANZHOU OCEAN VOCATIONAL COLLEGE
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Patent Information

Application Number
CN202422518538.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-08-15
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

People are busy with work and often forget to water the flower pots. They are unable to know the soil moisture status in time, causing the flowers to wither.

Method used

Design a flower pot that automatically waters, including a soil moisture detection module, a pump, a water pipe and a watering head. The soil moisture detection module is used to automatically control the pump work, and automatically watering is achieved through the water pipe and a watering head, and the soil moisture status is displayed through the display screen.

Benefits of technology

It realizes automatic monitoring of soil moisture and watering in time to prevent flowers from withering. Users can intuitively know the soil moisture status and facilitate dismantling of the water storage tank to prevent sewage from smudgeing the desktop.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an automatic watering flowerpot which comprises a planting frame, a terminal frame, a water collecting assembly and a water storage tank which are sequentially connected in the vertical direction. A watering assembly is arranged in the planting frame and comprises a soil humidity detection module; a water pump; a lower water pipe; an upper water pipe; and a plurality of watering heads. Wherein the upper end of the lower water conveying pipe is fixedly connected with the lower end of the upper water conveying pipe, and the upper water conveying pipe is connected with each watering head; a power supply and a relay are arranged in the terminal frame, the power supply is electrically connected with the soil humidity detection module, and the relay is electrically connected with the water suction pump. The soil humidity detection module is used for detecting the soil humidity in the planting frame, when the soil is dry, the water suction pump electrically connected with the relay can automatically spray water in the water storage tank out of the watering head through the upper water conveying pipe and the lower water conveying pipe, and flowers in the flowerpot are automatically watered.
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Description

Technical Field

[0001] The utility model relates to automatic watering equipment, in particular to an automatic watering flower pot. Background Art

[0002] With the development of the times, people have higher and higher requirements for their quality of life. Flower pots can purify indoor air, so flower pot cultivation has become a hobby pursued by people. However, traditional flower pots have a single structure and need to be watered frequently. Nowadays, people are busy at work and often forget to water the flower pots, causing the flowers to wither, thus affecting the appearance and failing to achieve the purpose of purifying the air. Therefore, it is necessary to use an automatic watering flower pot.

[0003] After planting flowers in traditional flower pots, people often need to water them manually. However, people are busy at work and often forget to water them. In addition, they cannot know the condition of the soil in which the flowers are planted and cannot water them in time. Utility Model Content

[0004] The purpose of the utility model is to provide an automatic watering flowerpot to solve the problems raised in the above background technology that people are busy at work and often forget to water the flowers, and cannot know the state of the soil in which the flowers are planted, and cannot water them in time.

[0005] The utility model is realized by the following technical solution: an automatic watering flower pot, which comprises a planting frame, a terminal frame, a water collection component and a water storage tank sequentially connected in an up-down direction;

[0006] The planting frame is provided with a watering assembly, which includes:

[0007] A soil moisture detection module is fixedly connected to the bottom side of the planting frame;

[0008] A water pump is installed in the water tank;

[0009] A lower water pipe is provided above the water tank, and the lower end of the lower water pipe extends into the water tank and is connected to the water pump;

[0010] An upper water pipe is embedded in the peripheral wall of the planting frame; and

[0011] A plurality of watering heads are arranged in a circular array on the inner periphery of the top of the planting frame, and each watering head faces into the planting frame;

[0012] The upper end of the lower water pipe is fixedly connected to the lower end of the upper water pipe, and the upper water pipe is connected to each watering head;

[0013] A power supply and a relay are provided in the terminal frame. The power supply is electrically connected to the soil moisture detection module, and the relay is electrically connected to the water pump.

[0014] Compared with the prior art, the beneficial effects of the present invention are:

[0015] 1. The utility model can use the soil moisture detection module to detect the soil moisture in the planting frame. When the soil is relatively dry, the water pump electrically connected to the relay will automatically spray the water in the water tank from the watering head through the upper water pipe and the lower water pipe, thereby automatically watering the flowers in the flowerpot.

[0016] 2. The display screen works with the soil moisture detection module to display the soil moisture status in the form of a progress bar on the display screen, allowing users to intuitively know the soil moisture status.

[0017] 3. Removing the water tank can replenish water in time when there is a shortage of water. Removing the collection box can prevent the sewage in the collection box from dirtying the desktop after automatic watering. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a structural diagram of the utility model;

[0019] Figure 2 This is a schematic diagram of the split structure of the utility model;

[0020] Figure 3 It is an enlarged structural diagram of the top of the water tank;

[0021] Figure 4 This is the effect diagram after the collection box and water storage tank are disassembled;

[0022] Figure 5 This is a schematic diagram of the internal structure of the planting frame of the utility model;

[0023] Figure 6 This is a structural schematic diagram of an implementation method in which an upper water pipe is connected to a watering head.

[0024] Explanation of reference numbers: 1 planting frame, 201 terminal frame, 202 display screen, 203 soil moisture detection module, 204 upper connecting line, 205 upper water pipe, 206 watering head, 207 water storage tank, 208 lower connecting line, 209 lower water pipe, 210 water pump, 211 charging port, 212 start button, 3 water collection assembly, 301 support frame, 302 filter screen, 303 through hole, 304 collection box, 305 through pipe, 306 drain outlet, 4 internal thread structure, 5 threaded pipe, 6 socket, 7 plug, 8 splicing groove. DETAILED DESCRIPTION

[0025] The present invention is described in detail below with reference to the accompanying drawings, but the protection content of the present invention is not limited to the following:

[0026] like Figures 1 to 5As shown, a self-watering flower pot comprises a planting frame 1, a terminal frame 201, a water collection component 3 and a water storage tank 207 connected in sequence in the vertical direction;

[0027] The planting frame 1 is provided with a watering assembly, which includes:

[0028] The soil moisture detection module 203 is fixedly connected to the bottom side of the planting frame 1;

[0029] A water pump 210 is provided in the water storage tank 207;

[0030] The lower water pipe 209 is provided above the water tank 207, and the lower end of the lower water pipe 209 extends into the water tank 207 and is connected to the water pump 210;

[0031] The upper water pipe 205 is embedded in the peripheral wall of the planting frame 1; and

[0032] A plurality of watering heads 206 are arranged in a circular array on the inner periphery of the top of the planting frame 1, and each watering head 206 faces the inside of the planting frame 1;

[0033] The upper end of the lower water pipe 209 is fixedly connected to the lower end of the upper water pipe 205, and the upper water pipe 205 is connected to each watering head 206;

[0034] The terminal frame 201 is equipped with a power supply and a relay. The power supply is electrically connected to the soil moisture detection module 203, and the relay is electrically connected to the water pump 210. The present invention utilizes the soil moisture detection module to detect soil moisture within the planting frame. When the soil is relatively dry, the water pump, electrically connected to the relay, automatically sprays water from the water tank from the watering head through the upper and lower water pipes, automatically watering the flowers in the flowerpots. This allows users to intuitively understand the soil moisture status and prevents flowers from withering due to forgetting to water them.

[0035] It should be noted that the connection structure of the upper water pipe 205, the watering head 206 and the planting frame 1 can be designed as follows: a circular watering pipe is provided on the top of the planting frame 1, a plurality of watering heads 206 are arranged on the circular watering pipe, and the end of the upper water pipe 205 is connected and communicated with the circular watering pipe. Figure 6 As shown;

[0036] It can also be designed that a cavity is provided in the side wall of the planting frame 1, and multiple watering heads 206 are arranged around the side wall of the planting frame 1 and communicated with the cavity, and the upper water pipe 205 is connected to the planting frame 1 and communicated with the cavity.

[0037] Furthermore, the water collection component includes:

[0038] The support frame 301 is fixedly connected to the bottom of the terminal frame 201;

[0039] The filter 302 is fixedly connected to the interior of the support frame 301;

[0040] The collection box 304 is rotatably connected to the support frame 301 at the upper side and detachably connected to the water storage tank 207 at the lower side; and

[0041] A drain port 306 is provided at the top of the collection box 304;

[0042] The middle of the collecting box 304 is fixedly connected with a through pipe 305, and the interior of the support frame 301 is provided with a through hole 303 rotatably connected with the through pipe 305;

[0043] An inner wall surface of the through pipe 305 is provided with an internal thread structure 4, and a top of the water storage tank 207 is provided with a threaded pipe 5 that is matched with the internal thread structure.

[0044] The support frame 301 of the present invention can provide support for the bottom of the planting frame 1, allowing the planting soil to cover the top of the support frame 301. When the watering assembly completes watering, the water that permeates the planting soil will pass through the filter 302 and the drain port 306 and fall into the collection box 304 for storage; and the collection box 304 and the water storage tank 207 can be removed and replaced from the bottom of the planting frame 1. Using the internal thread structure 4, the threaded pipe 5 at the top of the water storage tank 207 can be threadedly connected to the through pipe 305, so that the water storage tank 207 can be installed or removed below the planting frame 1, thereby facilitating the provision of water while also supporting the planting frame 1. Removing the water storage tank 207 can replenish water in time when there is a water shortage, and removing the collection box 304 can prevent the sewage in the collection box 304 from dirtying the desktop after automatic watering.

[0045] Furthermore, the relay is electrically connected to the water pump 210 via an electrical connection line;

[0046] The electrical connection line includes an upper connection line 204 and a lower connection line 208 connected together, wherein the upper connection line 204 is connected to the relay, and the lower connection line 208 is connected to the water pump 210 .

[0047] The lower end of the upper connecting line 204 is provided with a socket 6, and the upper end of the lower connecting line 208 is provided with a plug 7 that is connected to the socket 6. The structure of the electrical connecting line is relatively conventional, so it will not be described in detail. When the plug 7 of the lower connecting line 208 is inserted into the socket 6, the upper connecting line 204 and the lower connecting line 208 are connected, so that the water pump 210 is powered.

[0048] Furthermore, a display screen 202 is fixedly connected to the front of the terminal frame 201, and a charging port 211 and a start button 212 are provided on the side of the terminal frame 201;

[0049] The display screen 202 is electrically connected to the soil moisture detection module 203 and the power supply, respectively. The charging port 211 and the start button 212 are connected to the power supply. The start button 212 is used to control the power on and off of the soil moisture detection module 203, the display screen 202, the relay, and the water pump 210. The display screen 202 and the soil moisture detection module 203 work together to display the soil moisture status in the form of a progress bar on the display screen 202, allowing the user to intuitively understand the soil moisture status.

[0050] Furthermore, the upper end of the lower water pipe 209 is provided with a splicing groove 8, into which the lower end of the upper water pipe 205 is matingly connected. This structure is conventional and will not be described in detail. The upper water pipe 205 can be inserted into the splicing groove 8, thereby achieving communication between the upper water pipe 205 and the lower water pipe 209, thereby improving practicality.

[0051] In summary, the method of using the present invention is as follows: planting soil is added from the top of the planting frame 1, and the planting soil is gradually piled up by being blocked by the support frame 301. When the planting soil reaches an appropriate height, the addition of planting soil is stopped; and then the flowers and plants to be cultivated are planted.

[0052] Finally, the charging port 211 provided on the side of the terminal frame 201 is used to charge the power supply, and the start button 212 is pressed at the same time to allow the soil moisture detection module 203 to monitor the soil moisture, thereby realizing automatic monitoring of soil moisture and automatic watering.

[0053] The process of automatic watering is as follows: when the soil is relatively dry, the water pump 210 electrically connected to the relay will automatically spray the water in the water tank 207 from the watering head 206 through the upper water pipe 205 and the lower water pipe 209, thereby automatically watering the flowers in the flowerpot.

[0054] Although the present invention is illustrated and described using specific embodiments and their alternatives, it should be understood that various changes and modifications can be implemented without departing from the spirit and scope of the present invention. Therefore, it should be understood that the present invention is not limited in any sense except by the appended claims and their equivalents.

Claims

1. An automatic watering flower pot, characterized by: It comprises a planting frame (1), a terminal frame (201), a water collection component (3) and a water storage tank (207) which are sequentially connected in the up and down directions; The planting frame (1) is provided with a watering assembly, which comprises: A soil moisture detection module (203) is fixedly connected to the bottom side of the planting frame (1); A water pump (210) is provided in the water storage tank (207); A lower water delivery pipe (209) is provided above the water storage tank (207), and the lower end of the lower water delivery pipe (209) extends into the water storage tank (207) and is connected to a water pump (210); An upper water pipe (205) is embedded in the peripheral wall of the planting frame (1); and A plurality of watering heads (206) are arranged in a circular array on the inner periphery of the top of the planting frame (1), and each watering head (206) faces the inside of the planting frame (1); The upper end of the lower water pipe (209) is fixedly connected to the lower end of the upper water pipe (205), and the upper water pipe (205) is connected to each watering head (206); A power supply and a relay are provided in the terminal frame (201); the power supply is electrically connected to the soil moisture detection module (203); and the relay is electrically connected to the water pump (210).

2. The automatic watering flowerpot according to claim 1, characterized in that: The water collection assembly comprises: A support frame (301) is fixedly connected to the bottom of the terminal frame (201); A filter screen (302) is fixedly connected to the interior of the support frame (301); A collection box (304) is rotatably connected to the support frame (301) at its upper side and detachably connected to the water storage tank (207) at its lower side; and A drain port (306) is provided at the top of the collection box (304); The middle of the collection box (304) is fixedly connected with a through pipe (305), and the interior of the support frame (301) is provided with a through hole (303) rotatably connected to the through pipe (305); An internal thread structure (4) is provided on the inner wall surface of the through pipe (305), and a threaded pipe (5) is provided on the top of the water storage tank (207) and is connected to the internal thread structure.

3. The automatic watering flowerpot according to claim 1, characterized in that: The relay is electrically connected to the water pump (210) via an electrical connection line; The electrical connection line includes an upper connection line (204) and a lower connection line (208) connected together, wherein the upper connection line (204) is connected to the relay, and the lower connection line (208) is connected to the water pump (210).

4. The automatic watering flowerpot according to claim 3, characterized in that: The lower end of the upper connecting line (204) is provided with a socket (6), and the upper end of the lower connecting line (208) is provided with a plug (7) that is matched and connected to the socket (6).

5. The automatic watering flowerpot according to claim 1, characterized in that: A display screen (202) is fixedly connected to the front of the terminal frame (201), and a charging port (211) and a start button (212) are provided on the side of the terminal frame (201); The display screen (202) is electrically connected to the soil moisture detection module (203) and the power supply, respectively; the charging port (211) and the start button (212) are connected to the power supply; and the start button (212) is used to control power on and off.

6. The automatic watering flowerpot according to claim 1, characterized in that: The upper end of the lower water delivery pipe (209) is provided with a splicing groove (8), and the lower end of the upper water delivery pipe (205) is cooperatively connected to the splicing groove (8).