Automatic water supplementing planting bottle and intelligent planting instrument

The automatic watering bottle uses a semiconductor cooling chip and controller to generate condensate, solving the problem of indoor plant watering relying on manual operation. It achieves timed and quantitative plant watering, ensuring the healthy growth of plants.

CN223626498UActive Publication Date: 2025-12-05张逸鸽
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Patent Information

Application Number
CN202422973609.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-12-05
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

In existing technologies, watering indoor plants mainly relies on manual operation, which can lead to problems such as busy people forgetting, watering too much or too little, or watering at the wrong time, resulting in poor plant growth or even death.

Method used

Design an automatic watering and growing bottle, comprising a perforated mesh bottle body, an inner liner, a functional cap, and a condenser. It utilizes a semiconductor cooling chip and a controller to generate condensate on a condensation ring, achieving timed and quantitative watering of plants through gravity, reducing manual intervention.

Benefits of technology

It has achieved stable plant growth, reduced the burden on growers, avoided watering problems caused by the uncertainty of manual operation, and ensured healthy plant growth.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an automatic water-replenishing planting bottle and an intelligent planting instrument, and the automatic water-replenishing planting bottle is characterized in that the periphery of a bottle body is arranged to be a hollow net surface; the inner container is detachably arranged in the bottle body and is used for placing plants; the functional cap is detachably arranged on a bottle opening of the bottle body, a condenser is arranged in the functional cap, and the condenser comprises a water condensation ring, a semiconductor chilling plate and a controller, the water condensation ring and an upper opening of the inner container are spaced by a preset distance, and the position of the water condensation ring corresponds to the position of the upper opening. The inner container is arranged in the bottle body with the hollowed-out net surface, plants are planted in the inner container, the condenser with the water condensation ring, the semiconductor chilling plate and the controller is arranged on the functional cap, condensate water is generated on the water condensation ring through the temperature difference between the condensate water and air at the preset time, the plants in the inner container are irrigated under the action of gravity, and therefore the water condensation effect is achieved. Water supplementing adaptive to the plants can be achieved by controlling the running time and duration, so that the burden of planting personnel is relieved, and stable growth of the plants is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to automatic cultivation technical field especially, a kind of automatic water replenishing cultivation bottle and intelligent cultivation instrument. BACKGROUND

[0002] With the continuous development of urbanization and the increasing improvement of living standards, indoor plant cultivation becomes the choice of many people for leisure, decoration and home, and watering time and amount for most ornamental plants are important cultivation skills.

[0003] In the prior art, indoor plant watering is mainly manually operated by personnel, which has certain operation burden for busy people. Due to the uncertainty of manual operation, such as forgetting, watering too much or too little, and poor timing, the growth of plants is poor or even dead.

[0004] Therefore, the prior art needs to be improved and developed. UTILITY MODEL CONTENT

[0005] In order to solve the problem that some people are busy and uncertain in caring for indoor plants in the prior art, which can easily lead to poor growth of plants due to forgetting, watering too much or too little, and poor watering timing, and even death of plants, the utility model provides an automatic water replenishing cultivation bottle and intelligent cultivation instrument.

[0006] The utility model is realized by the following technical solutions:

[0007] An automatic water replenishing cultivation bottle, wherein the automatic water replenishing cultivation bottle comprises:

[0008] A bottle body, the circumference of the bottle body is provided with a hollow mesh surface;

[0009] An inner container, which is detachably arranged inside the bottle body, is used to place plants;

[0010] A functional cap, which is detachably arranged on the bottle mouth of the bottle body, is provided with a condenser inside, the condenser comprises a condensate ring spaced apart from the upper opening of the inner container by a predetermined distance and corresponding in position, a semiconductor refrigerating sheet arranged on the outer side of the condensate ring, and a controller.

[0011] The automatic water replenishing cultivation bottle, wherein the inner side of the functional cap is further provided with an air extraction fan, the air extraction fan is detachably sleeved on the inner side of the condensate ring, and the air extraction fan is circuit-connected with the semiconductor refrigerating sheet.

[0012] The automatic water replenishing cultivation bottle, wherein the air extraction fan comprises:

[0013] An installation ring frame is detachably sleeved in the functional cap, and a plurality of support rods are arranged on the inner side of the installation ring frame towards the center point of the installation ring frame;

[0014] A driving motor is arranged at the center of the installation ring frame and fixedly connected with the plurality of support rods;

[0015] A fan blade is fixedly arranged on the driving shaft of the driving motor.

[0016] The blowing surface of the fan blade faces the side of the bottle body.

[0017] The connection circuit of the driving motor is embedded in the installation ring frame, and the circuit of the semiconductor refrigeration sheet is connected with the outer side of the installation ring frame.

[0018] The controller is arranged in the functional cap, and a power supply port is arranged on the outer side of the functional cap, and the controller and the power supply port are connected with the circuit of the semiconductor refrigeration sheet.

[0019] The inner diameter size of the condensate ring is adapted to the inner diameter size of the bottle mouth of the bottle body, the inner diameter size of the installation ring frame and the inner diameter size of the lifting ring of the inner container.

[0020] When the functional cap is buckled on the bottle body, the condensate ring and the bottle mouth of the bottle body clamp the installation ring frame and the lifting ring.

[0021] The inner side of the lifting ring is circumferentially provided with a flow guide plate, and the flow guide plate is arranged to be inclined towards the center of the inner container at a predetermined angle.

[0022] The condensate ring is a metal condensate ring.

[0023] The condenser comprises a temperature guide piece, one side of the temperature guide piece is buckled on the outer side of the condensate ring, and the refrigeration surface of the semiconductor refrigeration sheet is fixedly attached on the other side of the temperature guide piece.

[0024] The functional cap is provided with a protective cover corresponding to the position of the semiconductor refrigeration sheet, a plurality of heat dissipation holes are arranged in the protective cover, and the plurality of heat dissipation holes correspond to the heat dissipation surface of the semiconductor refrigeration sheet.

[0025] The inner container is a transparent inner container.

[0026] An intelligent planting instrument, wherein the intelligent planting instrument comprises the automatic water replenishing and planting bottle.

[0027] The automatic water supplementing and planting bottle has the advantages that the plant is planted in the inner container, the condenser with the condensation ring, the semiconductor refrigerating sheet and the controller is arranged on the functional cap, the condensation water is generated on the condensation ring through the temperature difference with the air at the predetermined time, the plant in the inner container is irrigated under the action of gravity, the water supplementing is adapted to the plant by controlling the operation time and the length, the burden of the planters is reduced, and the stable plant growth is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is the structure explosion drawing of the automatic water supplementing and planting bottle of the utility model;

[0029] Figure 2 is the combined state schematic view of the automatic water supplementing and planting bottle of the utility model.

[0030] In Figures 1 to 2 , 100, bottle body; 110, bottle mouth; 200, inner container; 210, hoisting ring; 220, flow guide plate; 300, functional cap; 310, condenser; 311, condensation ring; 312, semiconductor refrigerating sheet; 313, temperature guide piece; 320, protective cover; 321, heat dissipation hole; 330, power supply port; 400, air suction fan; 410, mounting ring frame; 411, support rod; 420, driving motor; 430, fan blade. DETAILED DESCRIPTION

[0031] In order to make the purpose, the technical scheme and the effect of the utility model more clear and definite, the utility model is further described in detail below with reference to the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0032] It should be noted that if the utility model examples involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between the components in a certain specific posture (as shown in the drawings), if the specific posture changes, the directional indications also change accordingly.

[0033] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0034] In existing technologies, watering indoor plants is mainly done manually, which can be a burden for busy people. Due to the uncertainty of manual operation, such as forgetting, over- or under-watering, or poor timing, the plants may not grow well or even die.

[0035] Based on the aforementioned problems in the existing technology, this utility model provides an automatic watering and growing bottle, such as... Figure 1 As shown, the automatic watering and growing bottle includes: a bottle body 100, the circumference of which is set as a hollow mesh surface; an inner liner 200, which is detachably installed inside the bottle body 100 and is used to place plants; and a functional cap 300, which is detachably installed on the bottle mouth 110 of the bottle body 100. The functional cap 300 is provided with a condenser 310 inside, the condenser 310 including a condensation ring 311 spaced at a predetermined distance from the upper opening of the inner liner 200 and corresponding in position, a semiconductor cooling chip 312 attached to the outside of the condensation ring 311, and a controller.

[0036] This invention features an inner liner 200 inside a bottle body 100 with a perforated mesh surface. Plants are planted in the inner liner 200, ensuring ventilation for the plants. A condenser 310 with a condensation ring 311, a semiconductor cooling chip 312, and a controller is installed on the functional cap 300. At a predetermined time, condensate is generated on the condensation ring 311 due to the temperature difference with the air. Under the action of gravity, the condensate irrigates the plants in the inner liner 200. The timing and duration of the operation can be controlled to adjust the watering schedule to suit the plants, reducing the burden on the growers and ensuring stable plant growth.

[0037] In the above embodiments, such as Figure 1As shown, the automatic water replenishing and planting bottle comprises a bottle body 100, an inner container 200 and a functional cap 300, wherein the bottle body 100 is used for protecting the inner container 200, the outer wall of the bottle body 100 is provided with a mesh surface, and the bottle body 100 is made of stainless steel mesh or the like, and the base and the bottle opening 110 of the bottle body 100 are made of plastic material; the inner container 200 is arranged in the bottle body 100 and is detachably arranged with the bottle body 100, so that the user can take out the inner container 200 to fill the soil and plant the plants, the inner container 200 is preferably made of transparent material, and is made of glass, transparent plastic or the like, when the inner container 200 is arranged in the bottle body 100, the inner container 200 is located at the central position in the bottle body 100, so that the bottle body 100 and the inner container 200 are combined to form a vase structure which has the characteristics of beautiful appearance and artistic effect, so as to cooperate with the plants to beautify the home; the functional cap 300 is detachably arranged on the bottle opening 110 of the bottle body 100, the inside of the functional cap 300 is provided with a condenser 310, the condenser 310 is used for condensing the water vapor in the air to form liquid water, so as to replenish water for the plants in the inner container 200.

[0038] Specifically, as shown, Figure 1 the condenser 310 comprises a condensate ring 311 which is spaced apart from the upper opening of the inner container 200 by a predetermined distance and corresponds in position, in actual use, the condensate ring 311 is the main component for realizing condensation, the water vapor in the air condenses on the condensate ring 311, under the action of gravity, the water droplets slide and fall into the inner container 200, realizing the water replenishment for the plants, in addition, in order to improve the condensation effect of the condensate ring 311, a semiconductor refrigeration sheet 312 is further attached on the outside of the condensate ring 311 in the embodiment, the semiconductor refrigeration sheet 312 is a heat transfer tool, when an electric current passes through a thermocouple pair composed of an N-type semiconductor material and a P-type semiconductor material, heat transfer occurs between the two ends, heat is thus transferred from one end to the other end, thereby generating a temperature difference to form a cold end and a hot end, by attaching the refrigeration end of the semiconductor refrigeration sheet 312 to the condensate ring 311, the temperature of the condensate ring 311 can be reduced, thereby forming a large temperature difference with the air, so that the moisture in the air contacting the condensate ring 311 is condensed, thereby realizing the above-mentioned water replenishment effect for the plants.

[0039] In addition, the condenser 310 also comprises a controller in the embodiment, the controller is used for controlling the opening time and opening time length of the condenser 310, so as to realize the effect of plant water supplement in a predetermined time period and the effect of water supplement amount, it should be noted that the condensation effect of the automatic water supplement planting bottle of the utility model is related to region, climate, solar term and room temperature, in actual use, the program can be preset in the controller, so that the user can set according to the actual situation of the region and the condensation time length, so as to guarantee that the required water supplement amount of the plant can be reached, in some specific embodiments, the related app can be wirelessly connected with the controller by the technical personnel in the field, so as to facilitate the user to set independently, so as to meet the use demand of the user.

[0040] Based on the above embodiment, in one embodiment of the utility model, as shown in Figure 1 In order to further improve the condensation water efficiency of the automatic water supplement planting bottle, an air extraction fan 400 is arranged on the inner side of the functional cap 300 in the embodiment, the air extraction fan 400 is connected with the inner side of the above-mentioned water ring 311, and is detachably arranged, and is also connected with the circuit of the above-mentioned semiconductor refrigeration piece 312, after the semiconductor refrigeration piece 312 is controlled to be opened by the controller, the air extraction fan 400 works synchronously, which can improve air circulation to make more air rich in water vapor contact with the water ring 311, thereby improving the condensation water amount per unit time.

[0041] Further, as shown in Figure 1 The air extraction fan 400 in the embodiment is specifically composed of a mounting ring frame 410, a driving motor 420 and a fan blade 430, wherein the mounting ring frame 410 is used for being combined with the above-mentioned functional cap 300 to realize the effect of positioning and fixedly mounting the air extraction fan 400, the mounting ring frame 410 is detachably arranged with the functional cap 300, and in order to avoid that the mounting ring frame 410 affects the flowing path of the condensed water, a plurality of supporting rods 411 are preferably arranged on the inner side of the mounting ring frame 410 to the center point direction of the mounting ring frame 410, so that the supporting rods 411 support the driving motor 420 and the fan blade 430, and the hollow areas between adjacent supporting rods 411 can be used as the flow channel of the condensed water. In the embodiment, the driving motor 420 is arranged at the center position of the mounting ring frame 410 and is fixedly connected with the plurality of supporting rods 411, and in the specific arrangement, a wrapping shell structure can be arranged at the connection position of the plurality of supporting rods 411 to fix the driving motor 420 in the shell to realize the protection effect of the driving motor 420, and the driving motor 420 is used for driving the fan blade 430 to rotate, so that the fan blade 430 is fixedly arranged on the driving shaft of the driving motor 420 in the specific installation.

[0042] In the embodiment, as shown in Figure 1As shown, the fan blades 430 installed through the mounting ring 410 and the support rods 411 are preferably located on the upper end surface of the functional cap 300, i.e. on the side above the condensate ring 311, and the blowing direction of the fan blades 430 should be towards the bottle body 100 side. This arrangement has the advantage that the airflow can be blown towards the condensate ring 311, thereby achieving the effect of accelerating the condensation of the wet air through the condensate ring 311.

[0043] At the same time, since the condensate ring 311 is the main component for forming condensed water, in order to prevent the flow of condensed water from damaging the circuit structure of the air extraction fan 400, in the present embodiment the circuit structure of the driving motor 420 is preferably embedded inside the mounting ring 410, thereby avoiding direct or indirect contact between the water flow and the circuit, such as Figure 1 As shown, when the mounting ring 410 is fitted inside the functional cap 300, the circuit of the driving motor 420 can be connected to the semiconductor refrigeration sheet 312 along the outside of the mounting ring 410 to achieve the effect of circuit communication. At the same time, since the mounting ring 410 and the functional cap 300 are in a fitted relationship, the outside of the mounting ring 410 is actually hidden inside the functional cap 300 during installation, thus avoiding contact with the water flow and ensuring the stability of the circuit connection.

[0044] Based on the above embodiment, the controller should be arranged inside the functional cap 300 to achieve circuit connection with the semiconductor refrigeration sheet 312 while preventing contact with the water flow. On the other hand, a power supply port 330 should also be arranged on the outside of the functional cap 300, which is connected in circuit with the semiconductor refrigeration sheet 312 and used to supply electrical energy to the functional components. In actual use, the user can connect the power supply port 330 to an appropriate power supply lead and then to a household power socket to achieve the effect of standby power supply. The controller can start or stop the condenser 310 through a pre-set program, thereby achieving the effect of timed and quantitative water replenishment for the plants in the inner container 200.

[0045] More specifically, in the above embodiment, the inner diameter of the condensate ring 311 should be adapted to the inner diameter of the bottle mouth 110 of the bottle body 100, the inner diameter of the mounting ring 410, and the inner diameter of the hoisting ring 210 arranged on the inner container 200. When installing, the condensate ring 311 is fixed inside the functional cap 300, and the condensate ring 311 and the lower wall of the functional cap 300 form a structural mounting structure. Before installing the functional cap 300 on the bottle mouth 110 of the bottle body 100, the mounting ring 410 and the hoisting ring 210 of the inner container 200 are pre-fitted into this stepped structure. After the functional cap 300 is combined with the bottle mouth 110 of the bottle body 100, the condensate ring 311 and the bottle mouth 110 of the bottle body 100 sandwich the mounting ring 410 and the hoisting ring 210 of the inner container 200, thereby achieving the installation and fixation of the above structure.

[0046] In actual arrangement, the bottle mouth 110 of the bottle body 100 can be provided with a threaded structure, and the lower periphery of the functional cap 300 is provided with a matched threaded structure, so that the bottle body 100 and the functional cap 300 can be fixedly connected after installation. Due to the above, the inner diameter of the condensate ring 311 should be matched with the inner diameter of the bottle mouth 110 of the bottle body 100, the inner diameter of the mounting ring 410 and the inner diameter of the lifting ring 210 provided on the inner container 200. When condensate is generated on the inner side of the condensate ring 311, it can directly flow down along the inner side walls of the above four components and will not enter the interlayer of the four components or the above-mentioned circuit structure, thereby improving the flow guide effect of the service life of the automatic water replenishing planting bottle.

[0047] In another embodiment of the present application, as shown in Figure 1 In order to accurately flow the above-mentioned condensate into the inner container 200 and irrigate the plants in the inner container 200, a flow guide plate 220 is arranged on the inner side of the lifting ring 210 in the embodiment. The flow guide plate 220 is arranged at a predetermined angle and inclined towards the center of the inner container 200, forming a funnel-like structure, so as to guide the condensate to the center of the inner container 200, thereby ensuring the accuracy of irrigation and preventing the condensate from splashing outside the inner container 200 during irrigation.

[0048] In the above embodiment, the lifting ring 210 is arranged on the inner container 200. The purpose of arranging the lifting ring 210 is to fix the inner container 200 in the form of lifting in the bottle body 100, so that the periphery of the inner container 200 maintains a certain distance from the inner wall of the bottle body 100, and at the same time, the plants have sufficient space to contact with the external air, thereby ensuring that the plants can smoothly carry out photosynthesis and absorb the nutrients they need.

[0049] In another embodiment of the present application, as shown in Figure 1 The condensate ring 311 is a metal condensate ring 311, which can be made of stainless steel and other metal materials that are not easy to rust. In order to ensure the temperature conduction efficiency between the semiconductor refrigeration sheet 312 and the condensate ring 311, a temperature conduction piece 313 is arranged in the embodiment. The temperature conduction piece 313 is made of copper, aluminum or other materials with high temperature conduction coefficient. One side of the temperature conduction piece 313 is matched with the shape of the outer wall of the condensate ring 311. In actual installation, the side of the temperature conduction piece 313 is buckled on the outer wall of the condensate ring 311, and the other side of the temperature conduction piece 313 is arranged as a plane. The refrigeration sheet of the semiconductor refrigeration sheet 312 is arranged on the plane of the temperature conduction piece 313, thereby increasing the contact area between the semiconductor refrigeration sheet 312 and the condensate ring 311 through the temperature conduction piece 313, realizing the effect of improving the temperature change efficiency of the condensate ring 311. By changing the temperature of the condensate ring 311 and the air in the room, the effect of generating condensate can be realized.

[0050] Based on the above embodiment, as Figure 1 shown, since the refrigeration side of the semiconductor refrigeration sheet 312 faces the condensate ring 311, the heat dissipation side of the semiconductor refrigeration sheet 312 faces the outside of the functional cap 300, and based on the operation principle of the semiconductor refrigeration sheet 312, it can be known that the high temperature corresponding to the refrigeration temperature of the refrigeration side will be generated on the heat dissipation side, in order to protect the user from directly contacting the heat dissipation side, a protective cover 320 corresponding to the position of the semiconductor refrigeration sheet 312 is further arranged on the functional cap 300 in the embodiment, the protective cover 320 forms a cover for the heat dissipation side of the semiconductor refrigeration sheet 312, and forms an integral whole with the functional cap 300, so that the protection effect is realized while the product is more beautiful; in the embodiment, in order to realize the heat dissipation effect, a plurality of heat dissipation holes 321 are further arranged in the protective cover 320, the plurality of heat dissipation holes 321 correspond to the heat dissipation side of the semiconductor refrigeration sheet 312, so as to guarantee the heat dissipation effect of the semiconductor refrigeration sheet 312, and further guarantee the refrigeration effect of the semiconductor refrigeration sheet 312.

[0051] Based on the above embodiment, the actual use process of the automatic water replenishing and plant growing bottle of the utility model is as follows:

[0052] As Figure 1 shown, Figure 2 the combination state schematic diagram of the automatic water replenishing and plant growing bottle of the utility model, under the condition that the user connects the power supply to the power supply port 330 and presets the controller, the condenser 310 can be started at a predetermined time to generate condensed water.

[0053] Specifically (refer to Figure 2 Figure 1 structure), the semiconductor refrigeration sheet 312 starts to work, and the air suction fan 400 starts to work at the same time, the refrigeration surface of the semiconductor refrigeration sheet 312 guides the temperature to the condensate ring 311, so that the temperature of the condensate ring 311 is lower than the current indoor space temperature, at this time, the air is condensed after contacting the condensate ring 311, and the water vapor is liquefied into water droplets and adheres to the condensate ring 311, when the water droplets are enough, they flow downward under the influence of gravity and finally flow into the inner container 200 along the guide plate 220 to replenish water for the plants in the inner container 200.

[0054] The utility model can automatically condense the moisture in the air under the condition of only power supply, and then replenish water for the plants in the inner container 200, without manual operation in the process, the preset program in the controller can realize the effect of replenishing water for the plants at a fixed time and for a fixed time, which can reduce the labor pressure of the user, prevent the uncertainty of manual operation, such as forgetting, watering too much or too little, and poor timing, and the like, and cause the plants to grow in poor conditions or even die.

[0055] Based on the above embodiment, the utility model provides an intelligence plant raising instrument, this intelligence plant raising instrument includes the automatic water replenishment plant bottle among above -mentioned embodiment, this automatic water replenishment plant bottle includes: bottle body, the circumference of bottle body is set as the hollow screen surface, inner bag, the inner bag is detachably arranged in the inside of bottle body, and the inner bag is used for placing plant, functional cap, functional cap is detachably arranged on the bottle mouth of bottle body, the inside of functional cap is provided with condenser, and the condenser includes the condensate ring that with the upper mouth of inner bag is spaced apart predetermined distance and position corresponds, the semiconductor refrigeration piece that is in line with setting on the outside of condensate ring and controller. The utility model discloses through setting the inner bag in the bottle body with hollow screen surface, plants are planted in the inner bag, can guarantee the ventilation of plant, and the condenser with condensate ring, semiconductor refrigeration piece and controller is set up on functional cap, generates condensate on condensate ring through the temperature difference with air at predetermined time, under the action of gravity, plants in the inner bag are irrigated, can realize the water replenishment of adaptation plant through the control running time and length, to reduce the burden of plant raising personnel, guarantee plant growth stability.

[0056] In summary, the utility model provides a kind of automatic water replenishment plant bottle and intelligence plant raising instrument, wherein, the automatic water replenishment plant bottle includes: bottle body, the circumference of bottle body is set as the hollow screen surface, inner bag, the inner bag is detachably arranged in the inside of bottle body, and the inner bag is used for placing plant, functional cap, functional cap is detachably arranged on the bottle mouth of bottle body, the inside of functional cap is provided with condenser, and the condenser includes the condensate ring that with the upper mouth of inner bag is spaced apart predetermined distance and position corresponds, the semiconductor refrigeration piece that is in line with setting on the outside of condensate ring and controller. The utility model discloses through setting the inner bag in the bottle body with hollow screen surface, plants are planted in the inner bag, can guarantee the ventilation of plant, and the condenser with condensate ring, semiconductor refrigeration piece and controller is set up on functional cap, generates condensate on condensate ring through the temperature difference with air at predetermined time, under the action of gravity, plants in the inner bag are irrigated, can realize the water replenishment of adaptation plant through the control running time and length, to reduce the burden of plant raising personnel, guarantee plant growth stability.

[0057] It should be understood that the application of the utility model is not limited to the above examples, and those skilled in the art can make improvements or changes according to the above description, and all these improvements and changes should be within the protection scope of the appended claims of the utility model.

Claims

1. An automatic water replenishing cultivation bottle, characterized in that, The automatic water replenishing and plant growing bottle comprises: a bottle body, the circumference of which is provided with a hollow mesh surface; an inner container, which is detachably arranged inside the bottle body and used for placing plants; a functional cap, which is detachably arranged on the bottle mouth of the bottle body, and the inside of the functional cap is provided with a condenser, which comprises a condensate ring spaced apart from the upper opening of the inner container by a predetermined distance and corresponding in position, a semiconductor refrigerating sheet arranged on the outside of the condensate ring, and a controller.

2. The self-watering planter of claim 1, wherein, The inside of the functional cap is further provided with an air extraction fan, which is detachably arranged on the inside of the condensate ring and is electrically connected with the semiconductor refrigerating sheet.

3. The self-watering planter of claim 2, wherein, The air extraction fan comprises: a mounting ring frame, which is detachably arranged in the functional cap, and the inside of the mounting ring frame is provided with a plurality of support rods directed to the center point of the mounting ring frame; a driving motor, which is arranged at the center of the mounting ring frame and is fixedly connected with the plurality of support rods; a fan blade, which is fixedly arranged on the driving shaft of the driving motor.

4. The self-watering planter of claim 3, wherein, The blowing surface of the fan blade is directed to the side of the bottle body. The connecting circuit of the driving motor is embedded in the mounting ring frame and is connected with the circuit of the semiconductor refrigerating sheet on the outside of the mounting ring frame. The controller is arranged in the functional cap, and the outside of the functional cap is provided with a power supply port, which is connected with the circuit of the semiconductor refrigerating sheet.

5. The self-watering planter of claim 3, wherein, The inner diameter of the condensate ring is adapted to the inner diameter of the bottle mouth of the bottle body, the inner diameter of the mounting ring frame, and the inner diameter of the hoisting ring of the inner container. When the functional cap is buckled on the bottle body, the condensate ring and the bottle mouth of the bottle body clamp the mounting ring frame and the hoisting ring.

6. The self-watering planter of claim 5, wherein the water reservoir is configured to be filled with water through the water inlet. The inside of the hoisting ring is circumferentially provided with a flow guide plate, which is inclined to the center of the inner container at a predetermined angle.

7. The self-watering planter of claim 1, wherein, The condensate ring is a metal condensate ring. The condenser comprises a temperature guide piece, one side of which is buckled on the outside of the condensate ring, and the refrigerating surface of the semiconductor refrigerating sheet is fixedly arranged on the other side of the temperature guide piece.

8. The self-watering planter of claim 7, wherein, The functional cap is provided with a protective cover corresponding to the position of the semiconductor refrigerating sheet, and the protective cover is provided with a plurality of heat dissipation holes, which correspond to the heat dissipation surface of the semiconductor refrigerating sheet.

9. The self-watering planter of claim 1, wherein, The inner container is a transparent inner container.

10. An intelligent plant growing apparatus, characterized by, The intelligent plant growing instrument comprises the automatic water replenishing and plant growing bottle according to any one of claims 1-9.