Intelligent flower growing system for cultivating plants

By using a magnetic connection on the base of the plant cultivation equipment, the water tank and fertilizer tank can be easily connected, solving the problems of cumbersome connection and space occupation in the existing technology, and improving the ease of operation and durability of the equipment.

CN223844454UActive Publication Date: 2026-01-30SHANGHAI AGOG IND PROD DESIGN CO LTD
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Patent Information

Application Number
CN202422666390.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2026-01-30
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

In existing plant cultivation equipment, the connection methods for water tanks and fertilizer tanks are cumbersome and take up space, lacking convenient connection methods.

Method used

The base design uses magnetic connection. By setting magnets on the bases of the first and second boxes, the delivery pipes can be automatically connected, realizing a simple connection between the boxes, and the pipes are built into the base.

Benefits of technology

It simplifies the operation process, reduces the space occupied by pipes, avoids damage to exposed pipes, and improves the convenience and reliability of connections.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of plant cultivation equipment, and discloses an intelligent flower growing system for cultivating plants, which comprises a first box body and a second box body, the first box body is used for cultivating plants, the second box body is used for storing water or liquid fertilizer, the first box body is provided with a first base, and the second box body is provided with a second base. Magnets are arranged on the first base and the second base, a first conveying pipe communicated with the first box body is arranged in the first base, a second conveying pipe communicated with the second box body is arranged in the second base, the first conveying pipe is suitable for being in butt joint with the second conveying pipe, and when the first base and the second base are in magnetic attraction connection, the first conveying pipe is communicated with the second conveying pipe; the water or the liquid fertilizer in the second box body is conveyed into the first box body. Through the first base and the second base which are connected through magnetic attraction, connection between the box bodies is more convenient and faster, the first conveying pipe and the second conveying pipe can be automatically in butt joint along with the bases, the occupied space of the conveying pipes is reduced, and the risk that the pipelines are exposed and damaged is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to plant cultivation equipment technical field, specifically, relate to a kind of intelligent flower-growing system for cultivating plant. BACKGROUND

[0002] In the existing plant cultivation equipment, user needs to connect water tank, fertilizer tank respectively through external pipeline to incubator, to provide water and fertilizer nutrition for plant in incubator, and this mode is more troublesome to connect pipeline, and pipeline is disorderly, occupies more area, currently lack a more convenient and fast connection mode. SUMMARY

[0003] To solve at least one aspect in the above problem, the utility model provides a kind of intelligent flower-growing system for cultivating plant, including first box and second box, the first box is used to cultivate plant, the second box is used to store water or liquid fertilizer, the first box is equipped with first base, the second box is equipped with second base, the first base and the second base are all equipped with magnet, the first base is equipped with the first conveying pipe that is connected with the first box, the second base is equipped with the second conveying pipe that is connected with the second box, the first conveying pipe is adapted to the second conveying pipe butt joint, when the first base and the second base magnetism is connected, the first conveying pipe is connected with the second conveying pipe, to make water or liquid fertilizer in the second box be conveyed to the first box.

[0004] Optionally, the first base is equipped with the first electrically conductive pipe, the second base is equipped with the second electrically conductive pipe, the first electrically conductive pipe is adapted to the second electrically conductive pipe butt joint, when the first base and the second base magnetism is connected, the first electrically conductive pipe and the second electrically conductive pipe are connected.

[0005] Optionally, it further includes third box, the third box is equipped with third base, the third base is equipped with magnet, the third base is equipped with the third conveying pipe that is connected with the third box, the first base is equipped with the fourth conveying pipe that is adapted to the third conveying pipe butt joint, when the third base and the first base magnetism is connected, the third conveying pipe is connected with the fourth conveying pipe, to make the third box be connected with the first box.

[0006] Optionally, the fifth conveying pipe is equipped on the third base, when the left and right ends of the third base are respectively magnetism connected with the second base and the first base, the left and right ends of the fifth conveying pipe are respectively connected with the second conveying pipe and the first conveying pipe, to make the second box be connected with the first box.

[0007] Optionally, the first base is internally provided with a first conductive pipe, the third base is internally provided with a third conductive pipe, the third conductive pipe is adapted to be connected with the first conductive pipe in a butt joint manner, and the first conductive pipe and the third conductive pipe are connected when the first base and the third base are magnetically connected.

[0008] Optionally, the third box body is internally provided with a first accommodating cavity, a second accommodating cavity and a third accommodating cavity which are separated from each other, the third conveying pipe has three and respectively communicates with the first accommodating cavity, the second accommodating cavity and the third accommodating cavity, and the fourth conveying pipe has three and is connected with the three third conveying pipes in a one-to-one correspondence.

[0009] Optionally, the end of the first conveying pipe is provided with a silica gel male head, the end of the second conveying pipe is provided with a silica gel female head, and the silica gel male head and the silica gel female head are inserted to prevent water leakage.

[0010] Optionally, the first box body is internally provided with a temperature sensor and a humidity sensor.

[0011] Optionally, the first base is internally provided with a controller, the first conveying pipe is connected with a water pump, the water pump is provided with a flow sensor, and the controller and the flow sensor are electrically connected.

[0012] Optionally, the first box body is provided with a camera and a display screen, and the camera and the display screen are electrically connected.

[0013] Compared with the prior art, the intelligent flower growing system for growing plants in the utility model, by setting the first base and the second base which can be magnetically connected with each other on the first box body and the second box body, the connection between the box bodies is more convenient, the first conveying pipe and the second conveying pipe are respectively arranged in the first base and the second base, so that the first conveying pipe and the second conveying pipe can be automatically butt jointed with the base when the first base and the second base are magnetically connected, the operation is simple and convenient, and no other pipeline needs to be additionally arranged outside, so that the pipeline is built-in in the base, not only the occupied space is reduced, but also damage caused by exposure of the pipeline is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 The structure of the intelligent flower growing system of the utility model embodiment Figure 1 ;

[0015] Figure 2 The structure of the intelligent flower growing system of the utility model embodiment Figure 2 ;

[0016] Figure 3 The structure of the intelligent flower growing system of the utility model embodiment Figure 3 ;

[0017] Figure 4 The structural diagram of the first base of the embodiment of the utility model.

[0018] Mark explanation:

[0019] 1, first box body;11, temperature sensor;12, humidity sensor;13, display screen;14, camera;15, spout;2, second box body;3, third box body;31, first accommodating cavity;32, second accommodating cavity;33, third accommodating cavity;4, first base;41, first conveying pipe;42, fourth conveying pipe;43, first electrically conductive pipe;44, controller;45, water pump;5, second base;51, second conveying pipe;52, second electrically conductive pipe;6, third base;61, third conveying pipe;62, fifth conveying pipe;63, third electrically conductive pipe. Specific implementation

[0020] In order to make the above-mentioned purpose, features and advantages of the utility model more obvious and easy to understand, the specific embodiments of the utility model are described in detail below with reference to the drawings.

[0021] In the description of the utility model, it is understood that the orientation or position relationship indicated by the terms "upper", "lower" and the like is based on the orientation or position relationship when the product is normally used.

[0022] The terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can be explicitly or implicitly included at least one feature. The coordinate system XYZ is provided in the drawings of the embodiments of the utility model, wherein the positive direction of X axis represents the left direction, the negative direction of X axis represents the right direction, the positive direction of Y axis represents the front direction, the negative direction of Y axis represents the rear direction, the positive direction of Z axis represents the upper direction, and the negative direction of Z axis represents the lower direction.

[0023] The utility model embodiment provides a kind of intelligent flower-growing system for cultivating plant, in combination with Figures 1-4 As shown in the drawings, including first box body 1 and second box body 2, the first box body 1 is used to cultivate plant, the second box body 2 is used to store water or liquid fertilizer, the first box body 1 is equipped with first base 4, the second box body 2 is equipped with second base 5, the first base 4 and the second base 5 are all equipped with magnet, the first base 4 is equipped with the first conveying pipe 41 that is connected with the first box body 1, the second base 5 is equipped with the second conveying pipe 51 that is connected with the second box body 2, the first conveying pipe 41 is adapted to the second conveying pipe 51 and is connected, when the first base 4 and the second base 5 are magnetically connected, the first conveying pipe 41 is connected with the second conveying pipe 51, to make water or liquid fertilizer in the second box body 2 be transported to the first box body 1.

[0024] As Figure 1 and 2 In the embodiment, the first base 4 is provided with magnets on the left and right sides, the second base 5 is also provided with magnets on the left and right sides, the first conveying pipe 41 is arranged in the left-right direction, the second conveying pipe 51 is also arranged in the left-right direction, and the positions of the first conveying pipe 41 and the second conveying pipe 51 correspond to each other, so that when the first base 4 and the second base 5 are connected by magnetic attraction, one end of the first conveying pipe 41 is connected to one end of the second conveying pipe 51, and the connection is simple and convenient.

[0025] The intelligent flower growing system for growing plants in the utility model, through setting up the first base 4 and the second base 5 that can be connected by magnetic attraction on the first box 1 and the second box 2, the connection between the box is more convenient, the first base 4 and the second base 5 are provided with the first conveying pipe 41 and the second conveying pipe 51 respectively, so that when the first base 4 and the second base 5 are connected by magnetic attraction, the first conveying pipe 41 and the second conveying pipe 51 can be automatically connected with the base, the operation is simple and convenient, and other pipes need not be additionally arranged outside, so that the pipes are built-in in the base, not only the occupied space is reduced, but also the damage of the exposed pipes is avoided.

[0026] The first base 4 is provided with the first electrically conductive pipe 43, the second base 5 is provided with the second electrically conductive pipe 52, the first electrically conductive pipe 43 is adapted to be connected to the second electrically conductive pipe 52, and when the first base 4 and the second base 5 are connected by magnetic attraction, the first electrically conductive pipe 43 and the second electrically conductive pipe 52 are connected.

[0027] As Figure 3 In the embodiment, the first electrically conductive pipe 43 is arranged in the left-right direction, the second electrically conductive pipe 52 is also arranged in the left-right direction, and the positions of the first electrically conductive pipe 43 and the second electrically conductive pipe 52 correspond to each other, both ends of the first electrically conductive pipe 43 are provided with elastic electric contacts, both ends of the second electrically conductive pipe 52 are also provided with elastic electric contacts, when the first base 4 and the second base 5 are connected by magnetic attraction, the first electrically conductive pipe 43 and the second electrically conductive pipe 52 are connected through the elastic electric contacts, and only one end needs to be connected to an electric wire, so that the first electrically conductive pipe 43 and the second electrically conductive pipe 52 can be electrically connected.

[0028] The intelligent flower growing system further includes a third box 3, the third box 3 is provided with a third base 6, the third base 6 is provided with a magnet, the third base 6 is provided with a third conveying pipe 61 communicating with the third box 3, and the first base 4 is provided with a fourth conveying pipe 42 adapted to be connected to the third conveying pipe 61, when the third base 6 and the first base 4 are connected by magnetic attraction, the third conveying pipe 61 is connected to the fourth conveying pipe 42, so that the third box 3 is connected to the first box 1.

[0029] As Figure 3 shown in the embodiment, the second tank 2 is used to store water, and the third tank 3 is used to store liquid fertilizer. The third conveying pipe 61 is arranged in the left-right direction, and the fourth conveying pipe 42 is also arranged in the left-right direction, and the position of the third conveying pipe 61 corresponds to the position of the fourth conveying pipe 42, and when the first base 4 and the third base 6 are magnetically connected by the magnets, one end of the third conveying pipe 61 is connected to one end of the fourth conveying pipe 42, and the connection is simple and convenient.

[0030] The fifth conveying pipe 62 is arranged on the third base 6, and when the left and right ends of the third base 6 are respectively magnetically connected to the second base 5 and the first base 4, the left and right ends of the fifth conveying pipe 62 are respectively connected to the second conveying pipe 51 and the first conveying pipe 41, so that the second tank 2 is connected to the first tank 1.

[0031] As Figure 3 shown in the embodiment, the third tank 3 is arranged between the first tank 1 and the second tank 2, and the water in the second conveying pipe 51 is first conveyed to the first conveying pipe 41 through the fifth conveying pipe 62. In other embodiments, the first base 4, the second base 5, and the third base 6 can be arbitrarily spliced, and by arranging corresponding conveying pipes at the bottom, the conveying of water or fertilizer can be completed.

[0032] The first electrically conductive pipe 43 is arranged in the first base 4, and the third electrically conductive pipe 63 is arranged in the third base 6, and the third electrically conductive pipe 63 is adapted to be connected to the first electrically conductive pipe 43, and when the first base 4 and the third base 6 are magnetically connected, the first electrically conductive pipe 43 and the third electrically conductive pipe 63 are connected.

[0033] As Figure 3 shown in the embodiment, the two ends of the third electrically conductive pipe 63 are respectively connected to the first electrically conductive pipe 43 and the second electrically conductive pipe 52. The two ends of the third electrically conductive pipe 63 are respectively provided with elastic electric contacts, which have the same effect as above.

[0034] The third tank 3 is provided with a first accommodating cavity 31, a second accommodating cavity 32, and a third accommodating cavity 33 which are separated from each other, the third conveying pipe 61 has three and is respectively connected to the first accommodating cavity 31, the second accommodating cavity 32, and the third accommodating cavity 33, and the fourth conveying pipe 42 has three and is respectively connected to the three third conveying pipes 61.

[0035] As Figure 2As shown, in the embodiment, the first accommodating cavity 31 can store nitrogen fertilizer, the second accommodating cavity 32 can store phosphorus fertilizer, and the third accommodating cavity 33 can store potassium fertilizer. The three kinds of fertilizers are stored separately to avoid chemical reaction. Different plants have different demands for nitrogen fertilizer, potassium fertilizer and phosphorus fertilizer, and the three third conveying pipes 61 can control the flow of the three kinds of fertilizers respectively through the water pump and the flow sensor, thereby adapting to different plants.

[0036] The end of the first conveying pipe 41 is provided with a silica gel male head, the end of the second conveying pipe 51 is provided with a silica gel female head, and the silica gel male head and the silica gel female head are inserted to prevent water leakage.

[0037] In the embodiment, when the bases are magnetically connected, the silica gel male head and the silica gel female head are inserted under the action of magnetic force, thereby making the connection between the conveying pipes more sealed and preventing water and liquid fertilizer from leaking out. The ends of other conveying pipes are also provided with matching silica gel heads, which will not be described again.

[0038] The first box 1 is provided with a temperature sensor 11 and a humidity sensor 12.

[0039] As shown in the embodiment, the temperature sensor 11 and the humidity sensor 12 can be inserted into the soil to monitor the temperature and humidity of the soil. A total controller is arranged to control the frequency and amount of water or fertilizer. Figure 1

[0040] The first base 4 is provided with a controller 44, the first conveying pipe 41 is connected with a water pump 45, the water pump 45 is provided with a flow sensor, and the controller 44 and the flow sensor are electrically connected.

[0041] As shown in the embodiment, the second base 5 is also provided with a water pump 45 and a flow sensor to control the water flow. The upper end wall of the first box 1 is provided with a spray port 15, the spray port 15 is communicated with the first conveying pipe 41, and the spray port 15 is inclined to the first box 1. When the spray port 15 sprays water, it can be aligned with the plants growing in the first box 1. At the same time, a plurality of spray ports 15 can be communicated with the fourth conveying pipe 42 to spray liquid fertilizer for plants. A plurality of controllers 44 are connected with a total controller. Figure 1 The first box 1 is provided with a camera 14 and a display screen 13, and the camera 14 and the display screen 13 are electrically connected.

[0042] As shown in the embodiment, the camera 14 and the display screen 13 are electrically connected.

[0043] Figure 1 ​​As shown, in the present embodiment, the camera 14 is arranged on the upper end side wall of the first box 1 and is inclined towards the inside of the first box 1, so as to shoot the plants in the first box 1 and observe in real time. Different plants can be planted in the first box 1, taking flowers as an example, different flowers need different amounts of nutrients and water, so different amounts of fertilizer and water need to be applied. The display screen 13 is connected to the total controller, and the user can control the water flow and the fertilizer flow by operating the display screen 13, so as to apply different amounts of water and fertilizer to different flowers.

[0044] Although the present disclosure is disclosed as above, the protection scope of the present disclosure is not limited to this. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present disclosure, and these changes and modifications will fall within the protection scope of the present utility model.

Claims

1. An intelligent flower-growing system for cultivating plants, characterized in that, The utility model provides a kind of multi-purpose box, including first box (1) and second box (2), the first box (1) is used to cultivate plant, the second box (2) is used to store water or liquid fertilizer, the first box (1) is equipped with first base (4), the second box (2) is equipped with second base (5), the first base (4) and the second base (5) are equipped with magnet, the first base (4) is equipped with the first conveying pipe (41) being connected with the first box (1), the second base (5) is equipped with the second conveying pipe (51) being connected with the second box (2), the first conveying pipe (41) is suitable for the butt joint of the second conveying pipe (51), when the first base (4) and the second base (5) are magnetically connected, the first conveying pipe (41) is connected with the second conveying pipe (51), to make water or liquid fertilizer in the second box (2) be transported to the first box (1).

2. The smart plant growing system for growing plants according to claim 1, wherein, The first base (4) is equipped with the first electrically conductive pipe (43), the second base (5) is equipped with the second electrically conductive pipe (52), the first electrically conductive pipe (43) is suitable for the butt joint of the second electrically conductive pipe (52), when the first base (4) and the second base (5) are magnetically connected, the first electrically conductive pipe (43) and the second electrically conductive pipe (52) are connected.

3. The smart plant growing system for growing plants according to claim 1, wherein, Also include third box (3), the third box (3) is equipped with third base (6), the third base (6) is equipped with magnet, the third base (6) is equipped with the third conveying pipe (61) being connected with the third box (3), the first base (4) is equipped with the fourth conveying pipe (42) being suitable for the butt joint of the third conveying pipe (61), when the third base (6) and the first base (4) are magnetically connected, the third conveying pipe (61) is connected with the fourth conveying pipe (42), to make the third box (3) be connected with the first box (1).

4. The smart plant growing system for growing plants according to claim 3, wherein, The third base (6) is equipped with the fifth conveying pipe (62), when the left and right ends of the third base (6) are magnetically connected with the second base (5) and the first base (4) respectively, the left and right ends of the fifth conveying pipe (62) are connected with the second conveying pipe (51) and the first conveying pipe (41) respectively, to make the second box (2) be connected with the first box (1).

5. The smart plant growing system for growing plants of claim 3, wherein, The first base (4) is equipped with the first electrically conductive pipe (43), the third base (6) is equipped with the third electrically conductive pipe (63), the third electrically conductive pipe (63) is suitable for the butt joint of the first electrically conductive pipe (43), when the first base (4) and the third base (6) are magnetically connected, the first electrically conductive pipe (43) and the third electrically conductive pipe (63) are connected.

6. The smart plant growing system for growing plants of claim 3, wherein, The third box (3) is internally provided with a first accommodating cavity (31), a second accommodating cavity (32) and a third accommodating cavity (33) which are separated from each other, the third conveying pipe (61) has three and respectively communicates with the first accommodating cavity (31), the second accommodating cavity (32) and the third accommodating cavity (33), and the fourth conveying pipe (42) has three and is connected with the three third conveying pipes (61) one by one.

7. The smart plant growing system for growing plants of claim 1, wherein, The end of the first conveying pipe (41) is provided with a silica gel male head, the end of the second conveying pipe (51) is provided with a silica gel female head, and the silica gel male head and the silica gel female head are inserted to prevent water leakage.

8. The smart plant growing system for growing plants of claim 1, wherein, The first box (1) is internally provided with a temperature sensor (11) and a humidity sensor (12).

9. The smart plant growing system for growing plants of claim 1, wherein, The first base (4) is internally provided with a controller (44), the first conveying pipe (41) is connected with a water pump (45), the water pump (45) is provided with a flow sensor, and the controller (44) and the flow sensor are electrically connected.

10. The smart plant growing system for growing plants of claim 1, wherein, The first box (1) is provided with a camera (14) and a display screen (13), and the camera (14) and the display screen (13) are electrically connected.