Planting pool

By designing the liquid level control valve of the planting pool, the liquid level is automatically adjusted using hollow floating blocks and cantilever structures, the problem of inaccurate liquid level control is solved, and the healthy growth of plant roots and large-scale planting is achieved.

CN223110605UActive Publication Date: 2025-07-18黄佳
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Patent Information

Application Number
CN202422284041.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-07-18
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

The liquid level control of existing flower pots or petri dishes is inaccurate, causing the plant roots to rot, affecting the planting enthusiasm of planting enthusiasts, and the inability to plant plants on a large scale.

Method used

A planting pool is designed to accurately control the liquid level through a liquid level control valve, including hollow floating blocks and cantilever structures, and use liquid pressure to drive the sealant plug and leather bowl opening and closing channels to achieve automatic adjustment of the liquid level.

Benefits of technology

Accurate control of the liquid level of the plant pond, prevent plant roots from rotting, support large-scale planting, and improve planting experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223110605U_ABST
Patent Text Reader

Abstract

According to the planting pool, due to the fact that the liquid level control valve is arranged, when a user uses the planting pool to plant plants, the liquid level of the planting pool can be accurately controlled through the liquid level control valve, the liquid level of the planting pool is suitable for plant growth, and the plants can be conveniently cultivated. When the liquid in the first accommodating cavity reaches a preset liquid level H, the liquid entering the second accommodating cavity through the second liquid channel pushes the hollow floating block to float upwards along the first guide column so as to drive the cantilever to rotate, and the sealing rubber plug rotates along with the cantilever until the water-permeable and air-permeable hole is sealed; when the liquid level in the third containing cavity reaches the preset liquid level, liquid entering the third containing cavity through the water injection hole pushes the leather cup to float upwards till the first liquid channel is sealed, so that the leather cup separates the first water outlet from the first water inlet, water does not flow out of the first water outlet any more, and the liquid level of the planting pool is kept at the preset liquid level.
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Description

Technical Field

[0001] The utility model relates to the field of plant cultivation, and particularly to a cultivation pool. Background Art

[0002] With the improvement of living standards, more and more current gardening enthusiasts like to plant and cultivate plants at home or on the balcony. However, the common practice is to use flower pots or culture dishes to cultivate plants. Not only is the number of plants cultivated limited, but if the liquid level in the flower pot or culture dish is too high, it will cause the roots of the plants to rot, which is not conducive to the growth of the plants and greatly affects the gardening enthusiasm of gardening enthusiasts. Therefore, there is an urgent need in the market to provide a cultivation pool with a controllable liquid level, which is conducive to plant growth and can plant plants on a large scale to improve the gardening experience of users. Summary of the Invention

[0003] In order to overcome the deficiencies of the prior art, the utility model provides a cultivation pool, comprising:

[0004] A cultivation pool main body, the side wall of the cultivation pool main body surrounds to form a first accommodating cavity for accommodating liquid;

[0005] An inlet device, the inlet device has a first water inlet and a first water outlet, and the first water outlet is located above the first accommodating cavity; there is also a first liquid channel between the first water inlet and the first water outlet, and the first water inlet and the first water outlet are communicated through the first liquid channel; the inlet device further includes a first installation side wall and a second installation side wall arranged between the first water inlet and the first water outlet, the lower side of the first installation side wall is connected to the upper side of the second installation side wall; the upper side of the first installation side wall has a first installation opening, the second installation side wall surrounds to form a second accommodating cavity, and a second liquid channel is arranged on the lower side of the second accommodating cavity; a first guiding column and a first installation part are further arranged in the second accommodating cavity;

[0006] Liquid level control valve, the liquid level control valve is connected to the water inlet device, and the liquid level control valve is used to control the liquid level in the first accommodating cavity; the liquid level control valve includes a leather cup, the leather cup is located below the first liquid channel, the leather cup is connected to the upper side of the first installation side wall to cover the first installation opening, a third accommodating cavity is formed around between the leather cup and the first installation side wall, a water-permeable and air-permeable hole is provided at the bottom of the third accommodating cavity, and the leather cup can slide on the first installation side wall; a water injection hole is provided on the leather cup, the first water inlet, the first water outlet, the first liquid channel, the second liquid channel, the water injection hole, the water-permeable and air-permeable hole, the second accommodating cavity and the third accommodating cavity are communicated with each other; the liquid level control valve further includes a hollow floating block and a cantilever, the hollow floating block is located in the second accommodating cavity, the hollow floating block is sleeved on the first guiding column, and the hollow floating block can slide on the first guiding column; one end of the cantilever is rotatably connected to the first installation part, the other end of the cantilever is connected to the hollow floating block, and a sealing rubber plug is provided on the cantilever, and the sealing rubber plug is located below the water-permeable and air-permeable hole;

[0007] When the liquid in the first accommodating cavity reaches the preset liquid level, the liquid entering the second accommodating cavity through the second liquid channel pushes the hollow floating block to float along the first guiding column to drive the cantilever to rotate, and the sealing rubber plug rotates with the cantilever to seal the water-permeable and air-permeable hole; when the liquid level in the third accommodating cavity reaches the preset liquid level, the liquid entering the third accommodating cavity through the water injection hole pushes the leather cup to float to seal the first liquid channel, so that the leather cup cuts off the first water outlet and the first water inlet.

[0008] As an improvement of the present invention, the side wall of the hollow floating block has a closed cavity formed around, the hollow floating block has a sleeved opening, the hollow floating block is sleeved on the first guiding column through the sleeved opening, and the cavity surrounds the sleeved opening.

[0009] As an improvement of the present invention, the edge of the leather cup has a sliding groove, and the upper side of the first installation side wall has a sliding block, and the sliding groove and the sliding block are slidably connected to each other.

[0010] As an improvement of the present utility model, a third side wall and a fourth side wall extend from the inner wall of the water inlet device. The third side wall and the fourth side wall are located between the first water inlet and the first water outlet, and a first liquid channel is formed between the third side wall and the fourth side wall; the sealing rubber plug protrudes from the surface of the cantilever; the first mounting portion protrudes from the inner wall of the second accommodating cavity; the first guiding column is connected to the inner wall of the second accommodating cavity and extends from the upper side to the lower side of the second accommodating cavity; the cantilever includes a first connecting arm and a second connecting arm. The first connecting arm is connected to the second connecting arm. The first connecting arm is rotatably connected to the first mounting portion, the second connecting arm is connected to the top of the hollow floating block, and the first connecting arm and the second connecting arm are arranged at an angle.

[0011] As an improvement of the present utility model, the second liquid channel is located below the first water outlet; the second liquid channel includes a first liquid opening and a second liquid opening provided on the lower side of the second accommodating cavity, and the first liquid opening and the second liquid opening are arranged at intervals from each other.

[0012] As an improvement of the present utility model, it further includes a support inner core part. The support inner core part includes a first support inner core. The first support inner core is arranged in the first accommodating cavity and supports on the inner wall of the first accommodating cavity; the first support inner core includes a first support panel and a first support foot. The first support foot is connected to the first support panel; the first support foot includes a plurality of first support units. The plurality of first support units are connected to the first support panel, and the plurality of first support units are arranged at intervals around the first support panel.

[0013] As an improvement of the present utility model, the first support panel has a plurality of first hollow mesh openings, and the plurality of first hollow mesh openings are arranged at intervals in sequence along the transverse and longitudinal directions of the first support panel; the first support foot has a first accommodating opening and a fourth accommodating cavity. The fourth accommodating cavity is formed by surrounding the side wall of the first support foot, and the first accommodating opening communicates with the fourth accommodating cavity; the first support foot is a first support foot that is wider at the top and narrower at the bottom, the fourth accommodating cavity is a fourth accommodating cavity that is wider at the top and narrower at the bottom, and the fourth accommodating cavity has the same shape as the first support foot; a first hollow part is provided on the lower side of the first support foot, and the first hollow part communicates with the fourth accommodating cavity.

[0014] As an improvement of the present utility model, the first support panel has a first front edge, a first rear edge, a first left edge and a first right edge. The first front edge has a first splicing groove, and the first rear edge has a first splicing protrusion. The shape of the first splicing protrusion is complementary to that of the first splicing groove. The first left edge further has a second splicing groove, and the shape of the second splicing groove is the same as that of the first splicing groove.

[0015] As an improvement of the present utility model, the support inner core part further includes a second support inner core. The second support inner core is disposed in the first accommodation cavity and supports on the inner wall of the first accommodation cavity. The second support inner core includes a second support panel and second support feet. The second support feet are connected to the second support panel. The first support panel and the second support panel are connected by a first connection part. The first connection part has a plurality of sunken crease parts. The first connection part further has a second hollowed-out part, and the second hollowed-out part is located between a plurality of the crease parts.

[0016] As an improvement of the present utility model, the second support panel has a second front edge, a second rear edge, a second left edge and a second right edge. The second front edge has a third splicing groove, and the second rear edge has a third splicing protrusion. The shape of the third splicing protrusion is complementary to that of the third splicing groove. The second right edge further has a fourth splicing protrusion, and the shape of the fourth splicing protrusion is the same as that of the third splicing protrusion. The second left edge and the first right edge are connected by the first connection part. The first splicing protrusion is a first splicing protrusion that is narrow at the front and wide at the rear, and the first splicing groove is a first splicing groove that is wide at the front and narrow at the rear. The first splicing groove has a groove opening, and first stoppers are arranged on both sides of the groove opening. The side wall of the first splicing protrusion has a first slot, and the shape of the first slot is complementary to that of the first stoppers. A plurality of first support units are connected by a plurality of first reinforcing ribs on the lower side of the first support panel.

[0017] As an improvement of the present utility model, the number of the first hollowed-out parts is at least 2, and at least 2 first hollowed-out parts are respectively arranged on the left and right sides of the first support feet.

[0018] As an improvement of the present utility model, the second support feet include a plurality of second support units. The plurality of second support units are connected to the second support panel, and the plurality of second support units are arranged around the second support panel at intervals.

[0019] As an improvement of the present utility model, the second support panel has a plurality of second hollowed-out mesh openings.

[0020] As an improvement of the present utility model, the second support leg has a second receiving opening and a fifth receiving cavity. The fifth receiving cavity is formed by surrounding the side wall of the second support leg, and the second receiving opening communicates with the fifth receiving cavity.

[0021] As an improvement of the present utility model, the second support leg is a second support leg that is wider at the top and narrower at the bottom. The fifth receiving cavity is a fifth receiving cavity that is wider at the top and narrower at the bottom. The shape of the fifth receiving cavity is the same as that of the second support leg. The shape of the second support leg is the same as that of the first support leg. The shape of the fifth receiving cavity is the same as that of the fourth receiving cavity.

[0022] As an improvement of the present utility model, a third hollowed-out part is provided on the lower side of the second support leg, and the third hollowed-out part communicates with the fifth receiving cavity.

[0023] As an improvement of the present utility model, a first hollowed-out hole is provided at the bottom of the first support leg, and the first hollowed-out hole communicates with the fourth receiving cavity; a second hollowed-out hole is provided at the bottom of the second support leg, and the second hollowed-out hole communicates with the fifth receiving cavity.

[0024] As an improvement of the present utility model, the number of the third hollowed-out parts is at least 2, and at least 2 third hollowed-out parts are respectively provided on the left and right sides of the second support leg.

[0025] As an improvement of the present utility model, the shape of the fifth receiving cavity is the same as that of the second support leg.

[0026] As an improvement of the present utility model, the first support panel and the first support leg are integrally formed.

[0027] As an improvement of the present utility model, the second support panel and the second support leg are integrally formed.

[0028] As an improvement of the present utility model, the first support inner core, the second support inner core and the first connecting part are integrally formed.

[0029] The beneficial effects of the present utility model are as follows: The present utility model provides a planting pool. With the above structure, when a user uses the planting pool to plant plants, the liquid level of the planting pool can be accurately controlled through the liquid level control valve, so that the liquid level of the planting pool is suitable for plant growth, facilitating the cultivation of plants. When the liquid in the first accommodating cavity reaches the preset liquid level H, the liquid entering the second accommodating cavity through the second liquid passage pushes the hollow floating block to float upward along the first guiding column to drive the cantilever to rotate, and the sealing rubber plug rotates with the cantilever to seal the water-permeable and air-permeable holes; when the liquid level in the third accommodating cavity reaches the preset liquid level, the liquid entering the third accommodating cavity through the water injection hole pushes the leather cup to float upward to seal the first liquid passage, so that the leather cup cuts off the first water outlet and the first water inlet, so that the first water outlet no longer discharges water, and the liquid level of the planting pool is maintained at the preset liquid level. When the liquid in the first accommodating cavity is lower than the preset liquid level, the hollow floating block sinks along the first guiding column to drive the cantilever to rotate, and the sealing rubber plug rotates and sinks with the cantilever to disengage from the water-permeable and air-permeable holes, and the leather cup sinks to disengage from the first liquid passage and opens the first liquid passage, so that the liquid flowing in from the first water inlet can flow into the planting pool through the first liquid passage, the first water outlet, the water injection hole, the water-permeable and air-permeable holes and the second liquid passage, so as to raise the liquid level in the planting pool to the preset liquid level. Brief Description of the Drawings

[0030] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. The following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0031] The present utility model will be further described below in conjunction with the drawings and embodiments.

[0032] Figure 1 It is a schematic structural diagram of the planting pool main body, the water inlet device and the liquid level control valve;

[0033] Figure 2 is Figure 1 an enlarged view of part A of

[0034] Figure 3 is Figure 2 an enlarged view of part B of

[0035] Figure 4 It is a schematic structural diagram of the support inner core part;

[0036] Figure 5 It is a schematic structural diagram of the first support inner core and the second support inner core

[0037] Figure 6 It is a schematic structural diagram when multiple first support inner cores are stacked on each other;

[0038] Figure 7 It is a cross-sectional view taken along the first support inner core when multiple first support inner cores are stacked on top of each other; Detailed implementation

[0039] Refer to Figures 1 to 7 , a planting pool, comprising:

[0040] A planting pool main body 1, the side wall of the planting pool main body 1 surrounds to form a first accommodating cavity 11, and the first accommodating cavity 11 is used to accommodate liquid;

[0041] A water inlet device 2, the water inlet device 2 has a first water inlet 21 and a first water outlet 22, and the first water outlet 22 is located above the first accommodating cavity 11; there is also a first liquid channel 23 between the first water inlet 21 and the first water outlet 22, and the first water inlet 21 and the first water outlet 22 are connected through the first liquid channel 23; the water inlet device 2 further includes a first installation side wall 24 and a second installation side wall 25 arranged between the first water inlet 21 and the first water outlet 22, the lower side of the first installation side wall 24 is connected to the upper side of the second installation side wall 25; the upper side of the first installation side wall 24 has a first installation opening 241, the second installation side wall 25 surrounds to form a second accommodating cavity 251, and a second liquid channel 2511 is arranged on the lower side of the second accommodating cavity 251; a first guiding column 2512 and a first installation part 2513 are also arranged in the second accommodating cavity 251;

[0042] A liquid level control valve 3, the liquid level control valve 3 is connected to the water inlet device 2, and the liquid level control valve 3 is used to control the liquid level in the first accommodating cavity 11; the liquid level control valve 3 includes a leather cup 31, the leather cup 31 is located below the first liquid channel 23, the leather cup 31 is connected to the upper side of the first installation side wall 24 to cover the first installation opening 241, a third accommodating cavity 32 is formed around between the leather cup 31 and the first installation side wall 24, a water-permeable and air-permeable hole 321 is arranged at the bottom of the third accommodating cavity 32, and the leather cup 31 can slide on the first installation side wall 24; a water injection hole 311 is arranged on the leather cup 31, and the first water inlet 21, the first water outlet 22, the first liquid channel 23, the second liquid channel 2511, the water injection hole 311, the water-permeable and air-permeable hole 321, the second accommodating cavity 251 and the third accommodating cavity 32 are mutually connected; the liquid level control valve 3 further includes a hollow floating block 33 and a cantilever 34, the hollow floating block 33 is located in the second accommodating cavity 251, the hollow floating block 33 is sleeved on the first guiding column 2512, and the hollow floating block 33 can slide on the first guiding column 2512; one end of the cantilever 34 is rotatably connected to the first installation part 2513, the other end of the cantilever 34 is connected to the hollow floating block 33, and a sealing rubber plug 341 is arranged on the cantilever 34, and the sealing rubber plug 341 is located below the water-permeable and air-permeable hole 321;

[0043] When the liquid in the first accommodating cavity 11 reaches the preset liquid level, the liquid entering the second accommodating cavity 251 through the second liquid channel 2511 pushes the hollow floating block 33 to float upward along the first guiding column 2512 to drive the cantilever 34 to rotate, and the sealing rubber plug 341 rotates with the cantilever 34 to seal the water-permeable and air-permeable hole 321; when the liquid level in the third accommodating cavity 32 reaches the preset liquid level, the liquid entering the third accommodating cavity 32 through the water injection hole 311 pushes the leather cup 31 to float upward to seal the first liquid channel 23, so that the leather cup 31 cuts off the first water outlet 22 from the first water inlet 21.

[0044] With the above structure, when the user uses the planting pool to plant plants, the liquid level of the planting pool can be accurately controlled by the liquid level control valve 3, so that the liquid level of the planting pool is suitable for plant growth, facilitating the cultivation of plants. When the liquid in the first accommodating cavity 11 reaches the preset liquid level H, the liquid entering the second accommodating cavity 251 through the second liquid channel 2511 pushes the hollow floating block 33 to float upward along the first guiding column 2512 to drive the cantilever 34 to rotate, and the sealing rubber plug 341 rotates with the cantilever 34 to seal the water-permeable and air-permeable hole 321; when the liquid level in the third accommodating cavity 32 reaches the preset liquid level, the liquid entering the third accommodating cavity 32 through the water injection hole 311 pushes the leather cup 31 to float upward to seal the first liquid channel 23, so that the leather cup 31 cuts off the first water outlet 22 from the first water inlet 21, so that the first water outlet 22 no longer discharges water, so as to keep the liquid level of the planting pool at the preset liquid level. When the liquid in the first accommodating cavity 11 is lower than the preset liquid level, the hollow floating block 33 sinks along the first guiding column 2512 to drive the cantilever 34 to rotate, and the sealing rubber plug 341 rotates and sinks with the cantilever 34 to disengage from the water-permeable and air-permeable hole 321, and the leather cup 31 sinks to disengage from the first liquid channel 23 and opens the first liquid channel 23, so that the liquid flowing in from the first water inlet 21 can flow into the planting pool through the first liquid channel 23, the first water outlet 22, the water injection hole 311, the water-permeable and air-permeable hole 321 and the second liquid channel 2511, so as to raise the liquid level in the planting pool to the preset liquid level.

[0045] In this embodiment, the side wall of the hollow floating block 33 has a closed cavity 331 formed by surrounding, the hollow floating block 33 has a sleeved opening 332, the hollow floating block 33 is sleeved on the first guiding column 2512 through the sleeved opening 332, and the cavity 331 is arranged around the sleeved opening 332. With the above structure, the design is reasonable, the structure is simple, the connection is firm, and the installation of the hollow floating block 33 is effectively realized, so that the hollow floating block 33 can slide up or down along the first guiding column 2512.

[0046] In this embodiment, the edge of the leather cup 31 has a sliding groove 312, and the upper side of the first installation side wall 24 has a sliding block 242, and the sliding groove 312 and the sliding block 242 are slidably connected. With the above structure, the sliding groove 312 of the leather cup 31 can slide up and down along the sliding block 242 to open or close the first liquid channel 23.

[0047] In this embodiment, a third side wall 26 and a fourth side wall 27 extend from the inner wall of the water inlet device 2. The third side wall 26 and the fourth side wall 27 are located between the first water inlet 21 and the first water outlet 22, and a first liquid channel 23 is formed between the third side wall 26 and the fourth side wall 27; a sealing rubber plug 341 protrudes from the surface of the cantilever 34; a first mounting portion 2513 protrudes from the inner wall of the second receiving cavity 251; the first guide post 2512 is connected to the inner wall of the second receiving cavity 251 and extends from the upper side to the lower side of the second receiving cavity 251; the cantilever 34 includes a first connecting arm 342 and a second connecting arm 343. The first connecting arm 342 is connected to the second connecting arm 343. The first connecting arm 342 is rotatably connected to the first mounting portion 2513. The second connecting arm 343 is connected to the top of the hollow floating block 33. The first connecting arm 342 and the second connecting arm 343 are arranged at an angle. Through the above-mentioned structure, the arrangements of the first liquid channel 23 and the cantilever 34 are effectively realized, so that the cantilever 34 can rotate up and down with the hollow floating block 33, so that the sealing rubber plug 341 on the cantilever 34 can open or close the water-permeable and air-permeable hole 321.

[0048] In this embodiment, the second liquid channel 2511 is located below the first water outlet 22; the second liquid channel 2511 includes a first liquid opening 25111 and a second liquid opening 25112 provided on the lower side of the second receiving cavity 251. The first liquid opening 25111 and the second liquid opening 25112 are arranged at intervals. Through the above structure, due to the arrangement of the first liquid opening 25111 and the second liquid opening 25112 arranged at intervals, it is convenient for the liquid level in the second receiving cavity 251 to be quickly synchronized with the liquid level in the first receiving cavity 11, so as to accurately control the liquid level in the first receiving cavity 11.

[0049] In this embodiment, it further includes a support inner core part 4. The support inner core part 4 includes a first support inner core 41. The first support inner core 41 is arranged in the first accommodation cavity 11 and supports on the inner wall of the first accommodation cavity 11. The first support inner core 41 includes a first support panel 411 and first support feet 412. The first support feet 412 are connected to the first support panel 411. The first support feet 412 include a plurality of first support units 4121. The plurality of first support units 4121 are connected to the first support panel 411, and the plurality of first support units 4121 are arranged at intervals around the first support panel 411. Among them, the plurality of first support units 4121 are connected by a plurality of first reinforcing ribs 41211 on the lower side of the first support panel. Through the above structure, the support inner core part supports in the first accommodation cavity 11 of the planting pool main body. Soil can be laid on the support inner core part to cultivate plants, and the plants can be separated from the liquid in the first accommodation cavity 11 of the planting pool main body, preventing the plant roots from rotting due to being soaked in the liquid for a long time.

[0050] In this embodiment, the first support panel 411 has a plurality of first hollow mesh openings 4111, and the plurality of first hollow mesh openings 4111 are arranged at intervals in sequence along the horizontal and vertical directions of the first support panel 411; the first support leg 412 has a first accommodation opening 4122 and a fourth accommodation cavity 4123, and the fourth accommodation cavity 4123 is formed by surrounding the side wall of the first support leg 412, and the first accommodation opening 4122 communicates with the fourth accommodation cavity 4123; the first support leg 412 is a first support leg 412 that is wider at the top and narrower at the bottom, the fourth accommodation cavity 4123 is a fourth accommodation cavity 4123 that is wider at the top and narrower at the bottom, and the fourth accommodation cavity 4123 has the same shape as the first support leg 412; a first hollow part 4124 is arranged on the lower side of the first support leg 412, and the first hollow part 4124 communicates with the fourth accommodation cavity 4123. Among them, the number of the first hollow parts 4124 is at least 2, and at least 2 first hollow parts 4124 are respectively arranged on the left and right sides of the first support leg 412; specifically, a first hollow hole 4125 is arranged at the bottom of the first support leg 412, and the first hollow hole 4125 communicates with the fourth accommodation cavity 4123. Through the above structure, since the first support leg 412 is a first support leg 412 that is wider at the top and narrower at the bottom, the fourth accommodation cavity 4123 is a fourth accommodation cavity 4123 that is wider at the top and narrower at the bottom, and the fourth accommodation cavity 4123 has the same shape as the first support leg 412, one of the first support legs 412 of the first support inner core 41 can be inserted into the fourth accommodation cavity 4123 of the first support leg 412 of another first support inner core 41 through the first accommodation opening 4122, so that a plurality of first support inner cores 41 can be stacked on each other, facilitating the storage and transportation of the first support inner cores 41. Moreover, since the first hollow part 4124 and the first hollow hole 4125 communicate with the fourth accommodation cavity 4123, the water in the fourth accommodation cavity 4123 can be discharged through the first hollow part 4124 and the first hollow hole 4125, preventing water from accumulating in the fourth accommodation cavity 4123.

[0051] In this embodiment, the first support panel 411 has a first front edge 4112, a first rear edge 4113, a first left edge 4114, and a first right edge 4115. The first front edge 4112 has a first splicing groove 41121, and the first rear edge 4113 has a first splicing protrusion 41131. The shape of the first splicing protrusion 41131 is complementary to that of the first splicing groove 41121. The first left edge 4114 further has a second splicing groove 41141, and the shape of the second splicing groove 41141 is the same as that of the first splicing groove 41121. Among them, the first splicing protrusion is a first splicing protrusion that is narrow at the front and wide at the rear, and the first splicing groove 41121 is a first splicing groove that is wide at the front and narrow at the rear. The first splicing groove 41121 has a groove opening 41122, and first stop blocks 41123 are arranged on both sides of the groove opening 41122. The side wall of the first splicing protrusion has a first slot 411311, and the shape of the first slot 411311 is complementary to that of the first stop blocks 41123. Through the above structure, since the shape of the first splicing protrusion 41131 is complementary to that of the first splicing groove 41121, and the first left edge 4114 further has a second splicing groove 41141, and the shape of the second splicing groove 41141 is the same as that of the first splicing groove 41121, a plurality of first support cores 41 can be connected to each other into a whole through the first splicing protrusion 41131, the first splicing groove 41121, and the second splicing groove 41141. Moreover, since the first splicing groove 41121 has a groove opening 41122, first stop blocks 41123 are arranged on both sides of the groove opening 41122, the side wall of the first splicing protrusion has a first slot 411311, and the shape of the first slot 411311 is complementary to that of the first stop blocks 41123, the connection strength between a plurality of first support cores 41 can be improved.

[0052] In this embodiment, the support core part 4 further includes a second support core 42. The second support core 42 is arranged in the first accommodation cavity 11 and supports on the inner wall of the first accommodation cavity 11. The second support core 42 includes a second support panel 421 and second support feet 422. The second support feet 422 are connected to the second support panel 421. The first support panel 411 and the second support panel 421 are connected through a first connection part 5. The first connection part 5 has a number of sunken crease parts 51. The first connection part 5 further has a second hollow part 52, and the second hollow part 52 is located between a number of crease parts 51. Through the above structure, since the first connection part 5 has a number of sunken crease parts 51, it is convenient for the user to fold and store the first support core 41 and the second support core 42, or the user can cut and separate the first support core 41 and the second support core 42 along the crease parts 51 for use.

[0053] In this embodiment, the second support panel 421 has a second front edge 4211, a second rear edge 4212, a second left edge 4213 and a second right edge 4214. The second front edge 4211 has a third splicing groove 42111, and the second rear edge 4212 has a third splicing protrusion 42121. The shape of the third splicing protrusion 42121 is complementary to that of the third splicing groove 42111. The second right edge 4214 further has a fourth splicing protrusion 42141, and the shape of the fourth splicing protrusion 42141 is the same as that of the third splicing protrusion 42121. The second left edge 4213 and the first right edge 4115 are connected by a first connecting portion 5. With the above structure, multiple second support cores 42 can be interconnected into a whole through the third splicing groove 42111, the third splicing protrusion 42121 and the fourth splicing protrusion 42141. Moreover, the shapes of the third splicing protrusion 42121, the fourth splicing protrusion 42141, the second splicing protrusion and the first splicing protrusion are the same, and the shapes of the first splicing groove 41121, the second splicing groove 41141 and the third splicing groove 42111 are the same, so that the second support core 42 and the first support core 41 can also be connected into a whole through the fourth splicing protrusion and the first splicing groove 41121 or the second splicing groove 41141.

[0054] In this embodiment, the second support leg 422 has a second receiving opening 4223 and a fifth receiving cavity 4224. The fifth receiving cavity 4224 is formed by surrounding the side wall of the second support leg 422. The second receiving opening 4223 communicates with the fifth receiving cavity 4224. The second support leg 422 is a second support leg 422 that is wider at the top and narrower at the bottom. The fifth receiving cavity 4224 is a fifth receiving cavity 4224 that is wider at the top and narrower at the bottom. A third hollowed-out portion 53 is provided on the lower side of the second support leg 422. The third hollowed-out portion 53 communicates with the fifth receiving cavity 4224. A second hollowed-out hole 4221 is provided at the bottom of the second support leg 422. The second hollowed-out hole 4221 communicates with the fifth receiving cavity 4224. The fifth receiving cavity 4224 has the same shape as the second support leg 422. The number of the third hollowed-out portions 53 is at least two. At least two third hollowed-out portions 53 are respectively provided on the left and right sides of the second support leg 422. With the above structure, since the second support leg 422 is a second support leg 422 that is wider at the top and narrower at the bottom, and the fifth receiving cavity 4224 is a fifth receiving cavity 4224 that is wider at the top and narrower at the bottom, and the fifth receiving cavity 4224 has the same shape as the second support leg 422, the second support leg 422 of one of the second support cores 42 can be inserted into the fifth receiving cavity 4224 of the second support leg 422 of another second support core 42 through the second receiving opening 4223, so that multiple second support cores 42 can be stacked on each other, facilitating the storage and transportation of the second support cores 42. Moreover, since the third hollowed-out portion 53 and the second hollowed-out hole 4221 communicate with the fifth receiving cavity 4224, the water in the fifth receiving cavity 4224 can be discharged through the third hollowed-out portion 53 and the second hollowed-out hole 4221, preventing water accumulation in the fifth receiving cavity 4224.

[0055] In this embodiment, the first support panel 411 and the first support leg 412 are integrally formed. Among them, the second support panel 421 and the second support leg 422 are integrally formed. Specifically, the first support core 41, the second support core 42, and the first connecting portion 5 are integrally formed. With the above structure, the integrally formed first support core 41, second support core 42, and first connecting portion 5 can improve the strength of the first support core 41 and the second support core 42 and facilitate production.

[0056] In this embodiment, the second support leg 422 includes a plurality of second support units 4222. The plurality of second support units 4222 are connected to the second support panel 421, and the plurality of second support units 4222 are arranged around the second support panel 421 at intervals. With the above structure, the setting of the second support leg 422 is effectively completed, and the support strength can be effectively improved.

[0057] In this embodiment, the second support panel 421 has a plurality of second hollow mesh openings 4215. With the above structure, the support inner core part is supported in the first accommodation cavity 11 of the planting pool main body. Soil can be laid on the support inner core part to cultivate plants, and the plants can be separated from the liquid in the first accommodation cavity 11 of the planting pool main body, preventing the plant roots from rotting due to being soaked in the liquid for a long time.

[0058] The above is one or more implementation manners provided in combination with specific contents, and it is not determined that the specific implementation of the present utility model is only limited to these descriptions. All those that are similar or identical to the method and structure of the present utility model, or those that make several technical deductions or substitutions on the premise of the concept of the present utility model, should be regarded as the protection scope of the present utility model.

Claims

1. A planting pool, characterized in that, Comprising: A planting pool main body (1), the side wall of the planting pool main body (1) surrounds and forms a first accommodating cavity (11), and the first accommodating cavity (11) is used for accommodating liquid; A water inlet device (2), the water inlet device (2) has a first water inlet (21) and a first water outlet (22), and the first water outlet (22) is located above the first accommodating cavity (11); there is also a first liquid channel (23) between the first water inlet (21) and the first water outlet (22), and the first water inlet (21) and the first water outlet (22) are communicated through the first liquid channel (23); the water inlet device (2) further includes a first installation side wall (24) and a second installation side wall (25) provided between the first water inlet (21) and the first water outlet (22), the lower side of the first installation side wall (24) is connected to the upper side of the second installation side wall (25); the upper side of the first installation side wall (24) has a first installation opening (241), the second installation side wall (25) surrounds and forms a second accommodating cavity (251), and a second liquid channel (2511) is provided on the lower side of the second accommodating cavity (251); a first guiding column (2512) and a first installation part (2513) are further provided in the second accommodating cavity (251); A liquid level control valve (3), the liquid level control valve (3) is connected to the water inlet device (2), and the liquid level control valve (3) is used to control the liquid level of the liquid in the first accommodating cavity (11); the liquid level control valve (3) includes a leather cup (31), the leather cup (31) is located below the first liquid passage (23), the leather cup (31) is connected to the upper side of the first installation side wall (24) to cover the first installation opening (241), a third accommodating cavity (32) is formed around between the leather cup (31) and the first installation side wall (24), a water-permeable and air-permeable hole (321) is provided at the bottom of the third accommodating cavity (32), and the leather cup (31) can slide on the first installation side wall (24); a water injection hole (311) is provided on the leather cup (31), the first water inlet (21), the first water outlet (22), the first liquid passage (23), the second liquid passage (2511), the water injection hole (311), the water-permeable and air-permeable hole (321), the second accommodating cavity (251) and the third accommodating cavity (32) are communicated with each other; the liquid level control valve (3) further includes a hollow floating block (33) and a cantilever (34), the hollow floating block (33) is located in the second accommodating cavity (251), the hollow floating block (33) is sleeved on the first guiding column (2512), and the hollow floating block (33) can slide on the first guiding column (2512); one end of the cantilever (34) is rotatably connected to the first installation part (2513), the other end of the cantilever (34) is connected to the hollow floating block (33), a sealing rubber plug (341) is provided on the cantilever (34), and the sealing rubber plug (341) is located below the water-permeable and air-permeable hole (321). When the liquid in the first accommodating cavity (11) reaches the preset liquid level, the liquid entering the second accommodating cavity (251) through the second liquid passage (2511) pushes the hollow floating block (33) to float along the first guiding column (2512) to drive the cantilever (34) to rotate, and the sealing rubber plug (341) rotates with the cantilever (34) to seal the water-permeable and air-permeable hole (321); when the liquid level in the third accommodating cavity (32) reaches the preset liquid level, the liquid entering the third accommodating cavity (32) through the water injection hole (311) pushes the leather cup (31) to float to seal the first liquid passage (23), so that the leather cup (31) cuts off the first water outlet (22) and the first water inlet (21).

2. The planting pool according to claim 1, characterized in that, The side wall of the hollow floating block (33) has a closed cavity (331) formed around, the hollow floating block (33) has a sleeved opening (332), the hollow floating block (33) is sleeved on the first guiding column (2512) through the sleeved opening (332), and the cavity (331) is arranged around the sleeved opening (332).

3. The planter according to claim 1, characterized in that, The edge of the leather cup (31) has a chute (312), and the upper side of the first installation side wall (24) has a slider (242), and the chute (312) and the slider (242) are slidably connected to each other.

4. A planting pool according to claim 1, characterized in that, The inner wall of the water inlet device (2) extends out a third side wall (26) and a fourth side wall (27). The third side wall (26) and the fourth side wall (27) are located between the first water inlet (21) and the first water outlet (22), and a first liquid channel (23) is formed between the third side wall (26) and the fourth side wall (27); the sealing rubber plug (341) protrudes from the surface of the cantilever (34); the first installation part (2513) protrudes from the inner wall of the second accommodation cavity (251); the first guide post (2512) is connected to the inner wall of the second accommodation cavity (251) and extends from the upper side to the lower side of the second accommodation cavity (251); the cantilever (34) includes a first connecting arm (342) and a second connecting arm (343). The first connecting arm (342) is connected to the second connecting arm (343). The first connecting arm (342) is rotatably connected to the first installation part (2513), and the second connecting arm (343) is connected to the top of the hollow floating block (33). The first connecting arm (342) and the second connecting arm (343) are arranged at an angle.

5. A planting pool according to claim 1, characterized in that, The second liquid channel (2511) is located below the first water outlet (22); the second liquid channel (2511) includes a first liquid opening (25111) and a second liquid opening (25112) provided on the lower side of the second accommodation cavity (251), and the first liquid opening (25111) and the second liquid opening (25112) are arranged at intervals from each other.

6. A planting pool according to claim 1, characterized in that, It further includes a support inner core part (4). The support inner core part (4) includes a first support inner core (41). The first support inner core (41) is arranged in the first accommodation cavity (11), and the first support inner core (41) supports on the inner wall of the first accommodation cavity (11); the first support inner core (41) includes a first support panel (411) and a first support foot (412), and the first support foot (412) is connected to the first support panel (411); the first support foot (412) includes a plurality of first support units (4121). The plurality of first support units (4121) are connected to the first support panel (411), and the plurality of first support units (4121) are arranged at intervals around the first support panel (411).

7. A planting pool according to claim 6, characterized in that, The first support panel (411) has a number of first hollow mesh openings (4111), and the number of first hollow mesh openings (4111) are arranged at intervals in sequence along the transverse and longitudinal directions of the first support panel (411); the first support leg (412) has a first accommodation opening (4122) and a fourth accommodation cavity (4123), the fourth accommodation cavity (4123) is formed by surrounding the side wall of the first support leg (412), and the first accommodation opening (4122) communicates with the fourth accommodation cavity (4123); the first support leg (412) is a first support leg (412) that is wider at the top and narrower at the bottom, the fourth accommodation cavity (4123) is a fourth accommodation cavity (4123) that is wider at the top and narrower at the bottom, and the shape of the fourth accommodation cavity (4123) is the same as that of the first support leg (412); a first hollow part (4124) is arranged on the lower side of the first support leg (412), and the first hollow part (4124) communicates with the fourth accommodation cavity (4123).

8. A planting pool according to claim 6, characterized in that, The first support panel (411) has a first front edge (4112), a first rear edge (4113), a first left edge (4114) and a first right edge (4115), the first front edge (4112) has a first splicing groove (41121), the first rear edge (4113) has a first splicing protrusion (41131), and the shape of the first splicing protrusion (41131) is complementary to the shape of the first splicing groove (41121); the first left edge (4114) also has a second splicing groove (41141), and the shape of the second splicing groove (41141) is the same as the shape of the first splicing groove (41121).

9. The planter according to claim 8, wherein, The support inner core part (4) further includes a second support inner core (42), the second support inner core (42) is arranged in the first accommodation cavity (11), and the second support inner core (42) supports on the inner wall of the first accommodation cavity (11); the second support inner core (42) includes a second support panel (421) and a second support leg (422), and the second support leg (422) is connected to the second support panel (421); the first support panel (411) is connected to the second support panel (421) through a first connection part (5); the first connection part (5) has a number of sunken crease parts (51); the first connection part (5) also has a second hollow part (52), and the second hollow part (52) is located between a number of the crease parts (51).

10. A planting pool according to claim 9, characterized in that, The second support panel (421) has a second front edge (4211), a second rear edge (4212), a second left edge (4213) and a second right edge (4214). The second front edge (4211) has a third splicing groove (42111), the second rear edge (4212) has a third splicing protrusion (42121), and the shape of the third splicing protrusion (42121) is complementary to the shape of the third splicing groove (42111); the second right edge (4214) further has a fourth splicing protrusion (42141), and the shape of the fourth splicing protrusion (42141) is the same as the shape of the third splicing protrusion (42121); the second left edge (4213) is connected to the first right edge (4115) through the first connecting part (5); the first splicing protrusion is a first splicing protrusion that is narrow at the front and wide at the rear, and the first splicing groove (41121) is a first splicing groove (41121) that is wide at the front and narrow at the rear; the first splicing groove (41121) has a groove opening (41122), and first stoppers (41123) are arranged on both sides of the groove opening (41122). The side wall of the first splicing protrusion has a first slot (411311), and the shape of the first slot (411311) is complementary to the shape of the first stoppers (41123); a number of first support units (4121) are connected by a number of first reinforcing ribs (41211) on the lower side of the first support panel.