CN210987215U - Self-watering flowerpot capable of measuring water level - Google Patents
Self-watering flowerpot capable of measuring water level Download PDFInfo
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- CN210987215U CN210987215U CN201921666101.7U CN201921666101U CN210987215U CN 210987215 U CN210987215 U CN 210987215U CN 201921666101 U CN201921666101 U CN 201921666101U CN 210987215 U CN210987215 U CN 210987215U
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Abstract
The utility model provides a self-watering flowerpot capable of measuring water level, which comprises a planting space and a water storage layer, wherein the water storage layer is arranged outside the planting space; the bottom of the planting space is provided with a water seepage hole, and a percolation layer is arranged above the water seepage hole; the inner wall of the planting space is provided with a water tank, the top of the water tank is provided with a self-water-absorbing material, and a floating ball is arranged inside the water tank; a piston rod sleeve is arranged on the outer wall of the planting space connected with the water storage layer, the piston rod sleeve is provided with a water outlet, the water outlet penetrates through the inner walls of the water tank and the pot body, a piston rod is arranged inside the piston rod, the piston rod is connected with a floating ball through a lever, and a water inlet is formed in the bottom of the piston rod sleeve; and a water level sensor is arranged on the inner wall of the water storage layer. The utility model discloses simple structure can avoid the user to forget to water and lead to withered cultivated in a pot, and water level reminding device can remind the user in time to add water when the water storage space water yield is not enough.
Description
Technical Field
The utility model belongs to gardening supplies, in particular to a flowerpot, in particular to a self-watering flowerpot capable of measuring water level.
Background
With the improvement of living standard, the demand of people for gardening products is increasing day by day, and the requirements for beautifying and greening living environment are gradually improved. Various potted plants enter the room, so that the indoor environment is embellished, air can be purified, the living conditions are improved, and some flowerpots can also play roles in reducing the temperature of a living room, increasing air humidity, emitting aromatic gas, repelling mosquitoes and the like. However, most flowers and plants need to be watered frequently, and plants are not watered for a long time due to reasons such as going out or forgetting of culturists, so that the plants are easy to wither and even die.
Most of the existing self-watering flowerpot bodies cannot detect the water level of the water storage layer and determine when the water in the water storage layer needs to be replenished.
Disclosure of Invention
To the problem of managing cultivated in a pot that brings because of the indoor wide utilization cultivated in a pot, the utility model provides a but flowerpot from watering of measurable water level can effectual solution often water and can't detect the problem of reservoir water level cultivated in a pot.
In order to solve the technical problem, the utility model discloses the technical scheme who adopts is:
the self-watering flowerpot capable of measuring the water level is characterized by comprising a planting space and a water storage layer, wherein the water storage layer is arranged outside the planting space, the bottom of the planting space is provided with a water seepage hole, and a percolation layer is arranged above the water seepage hole;
the inner wall of the planting space is provided with a water tank, the top of the water tank is provided with a self-water-absorbing material, and a floating ball is arranged inside the water tank;
a piston rod sleeve is arranged on the outer wall of the planting space connected with the water storage layer, a water outlet is formed in the wall of the piston rod sleeve connected with the planting space, the water outlet penetrates through the water tank and the inner wall of the planting space, a piston rod is arranged in the piston rod sleeve, the piston rod is connected with the floating ball through a lever, and a water inlet is formed in the bottom of the piston rod sleeve and communicated with the water outlet space of the water storage layer;
and a water level sensor is arranged on the inner wall of the water storage layer.
Furthermore, the water self-absorption material is one of a cotton water-absorption core and a fiber woven belt.
Furthermore, the lever fulcrum is fixed at the top of the water tank and is respectively connected with the piston rod and the floating ball.
Further, the water level sensor is arranged at the position flush with the bottom of the water inlet of the piston rod sleeve.
Further, the water level sensor is connected with a loudspeaker arranged on the outer wall of the flowerpot.
Furthermore, a transparent visual window is arranged on the outer wall of the water storage layer.
Compare in traditional flowerpot, but flowerpot from watering of measurable water level simple structure, realization that can be very convenient is from the function of watering, can avoid because forget the withered cultivated in a pot that waters and cause. The lever type design can avoid the situation that watering cannot be achieved due to power failure, the water level monitor is arranged on the outer side of the water storage layer, a reminding device of the water level monitor can remind a user of timely replenishing water of the water storage layer in time when water is short, and potted plant withering caused by water depletion in the water storage layer is avoided. The bottom of the planting space is also provided with a percolation layer and a percolation hole, so that the root rot of the potted plant caused by excessive moisture in the soil can be avoided.
Drawings
Fig. 1 is a schematic structural view of the self-watering flowerpot capable of measuring water level.
In the drawings: 1. planting space 2, reservoir 3, water tank 4, self water absorption material 5, floater 6, piston rod sleeve 7, lever 8, level sensor 11, infiltration hole 12, infiltration layer 61, water inlet 62, piston rod 63 and water outlet.
Detailed Description
The invention will be further described with reference to the drawings and the following examples, but the scope of the invention is not limited thereto.
Example 1
The self-watering flowerpot capable of measuring the water level is shown in the structural schematic diagram of fig. 1 and comprises a planting space 1 and a water storage layer 2, wherein the water storage layer 2 is arranged outside the planting space 1; the bottom of the planting space 1 is provided with a water seepage hole 11, and a seepage layer 12 is arranged above the water seepage hole 11; a water tank 3 is arranged on the inner wall of the planting space 1, a self-water-absorbing material 4 is arranged at the top of the water tank 3, and a floating ball 5 is arranged inside the water tank; a piston rod sleeve 6 is arranged on the outer wall of the planting space 1 connected with the water storage layer 2, a water outlet 63 is arranged on the wall of the piston rod sleeve 6 connected with the planting space 1, the water outlet 63 penetrates through the water tank 3 and the inner wall of the planting space 1, a piston rod 62 is arranged in the piston rod sleeve 6, and the piston rod 62 is connected with the floating ball 5 through a lever 7 fixed on the top of the water tank 3; the inner wall of the water storage layer 2 is provided with a water level sensor 8, the installation position of the water level sensor 8 is flush with the bottom of the water inlet 61 of the piston rod sleeve 6, and the water level sensor 8 is connected with a loudspeaker installed on the outer wall of the flowerpot.
In the using process, water is added into the water storage layer 2, the waterless floating ball 5 in the water tank 3 is at the bottom, the piston rod 62 is pulled, the water in the water storage layer 2 is pumped into the sleeve in the piston rod sleeve 6 through the water inlet 61 of the piston rod sleeve 6, the water flows into the water tank 3 from the water outlet 63, the floating ball 5 in the water tank slowly rises along with the rise of the water level at the moment, the piston rod 62 descends along with the rise of the floating ball 5, and when the water level in the water tank 3 is enough, the piston rod 62 blocks the water outlet 63, so that the water in the pipe cannot flow into the water tank 3. The cotton water guide core is arranged in the water tank 3, water in the water tank 3 is guided into soil of the planting space 1 from the top end, the floating ball 5 descends along with the reduction of the water level of the water tank 3, the piston rod 62 ascends, water is supplemented in the water tank 3, and then the function of supplementing water to the intelligent water tank 3 is achieved. The bottom of the planting space is provided with a percolation layer 12 and a percolation hole 11, when the soil contains too much water, the redundant water can flow out of the percolation hole 11 after being filtered by the percolation layer 12. The position that 2 inboards of reservoir stratum and piston rod sleeve 6's water inlet 61 bottoms flush is equipped with level sensor 8, and when 2 water levels of reservoir stratum were less than piston rod sleeve 6's water inlet 61 bottoms, the unable realization was supplied water to the intelligence of water tank 3, and the speaker among the level sensor 8 can sound this moment, reminds the user in time to add water.
The present invention is not limited to the above-described embodiments, and any obvious improvements, substitutions or modifications can be made by those skilled in the art without departing from the spirit of the present invention.
Claims (6)
1. A self-watering flowerpot capable of measuring water level is characterized by comprising a planting space (1) and a water storage layer (2), wherein the water storage layer (2) is arranged on the outer side of the planting space (1), a water seepage hole (11) is formed in the bottom of the planting space (1), and a seepage layer (12) is arranged above the water seepage hole (11);
a water tank (3) is arranged on the inner wall of the planting space (1), a water self-absorption material (4) is arranged at the top of the water tank (3), and a floating ball (5) is arranged inside the water self-absorption material;
a piston rod sleeve (6) is arranged on the outer wall, connected with the water storage layer (2), of the planting space (1), a water outlet (63) is formed in the wall, connected with the planting space (1), of the piston rod sleeve (6), the water outlet (63) penetrates through the water tank (3) and the inner wall of the planting space (1), a piston rod (62) and a piston are arranged inside the piston rod sleeve (6), the piston rod (62) is connected with the floating ball (5) through a lever (7), and a water inlet (61) is formed in the bottom of the piston rod sleeve (6) and communicated with the water outlet space of the water storage layer (2);
and a water level sensor (8) is arranged on the inner wall of the water storage layer (2).
2. A self-watering flowerpot capable of measuring water level according to claim 1, wherein the self-water-absorbing material (4) is one of a cotton water-guiding core and a fiber woven tape.
3. A self-watering flowerpot capable of measuring water level according to claim 2, wherein the lever (7) is fixed on the top of the water tank (3) at a fulcrum and is connected with the piston rod (62) and the floating ball (5) respectively.
4. A self-watering flowerpot capable of measuring water level according to claim 1, wherein the water level sensor (8) is mounted flush with the bottom of the water inlet (61) of the piston rod sleeve (6).
5. A self-watering pot with level gauging according to claim 1, wherein the level sensor (8) is connected to a speaker mounted on the outer wall of the pot.
6. A self-watering flowerpot capable of measuring water level according to claim 1, characterized in that a transparent visual window is arranged on the outer wall of the water storage layer (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921666101.7U CN210987215U (en) | 2019-09-30 | 2019-09-30 | Self-watering flowerpot capable of measuring water level |
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CN201921666101.7U CN210987215U (en) | 2019-09-30 | 2019-09-30 | Self-watering flowerpot capable of measuring water level |
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CN210987215U true CN210987215U (en) | 2020-07-14 |
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CN201921666101.7U Active CN210987215U (en) | 2019-09-30 | 2019-09-30 | Self-watering flowerpot capable of measuring water level |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114318366A (en) * | 2021-12-02 | 2022-04-12 | 珠海格力电器股份有限公司 | Electrolysis generating device |
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2019
- 2019-09-30 CN CN201921666101.7U patent/CN210987215U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114318366A (en) * | 2021-12-02 | 2022-04-12 | 珠海格力电器股份有限公司 | Electrolysis generating device |
CN114318366B (en) * | 2021-12-02 | 2024-01-30 | 珠海格力电器股份有限公司 | Electrolysis generating device |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20230412 Address after: 225200 Xinhe Industrial Park, Xiannu Town, Jiangdu District, Yangzhou City, Jiangsu Province Patentee after: YANGZHOU CITY ZHONGHUAN HI-TECH PLASTIC CO.,LTD. Patentee after: Wang Sudong Address before: 225200 Xinhe Industrial Park, Xiannv Town, Jiangdu District, Yangzhou City, Jiangsu Province Patentee before: YANGZHOU CITY ZHONGHUAN HI-TECH PLASTIC CO.,LTD. |
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TR01 | Transfer of patent right |