Dynamic ceramic flowerpot

By introducing a rotating basin assembly and a water spraying basin assembly into ceramic flower pots, using eccentric rotation and photoelectric sensors to control water spraying, and combining with a soil moisture sensor to achieve automatic water replenishment, the problems of lack of dynamism and inconvenience in maintenance of ceramic flower pots are solved, and the ornamental value and maintenance professionalism are improved.

CN223310333UActive Publication Date: 2025-09-09FUJIAN DEHUA LONGNAN CERAMICS CO LTD
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Patent Information

Application Number
CN202422611262.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-09-09
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

Existing ceramic flower pots lack dynamism, are inconvenient to view, lack professionalism in plant maintenance, and are difficult to control watering, which affects the growth of plants.

Method used

A ceramic flowerpot with a rotating basin component and a water spray basin component is designed. The intermittent water spraying of the water nozzle is controlled by eccentric rotation and a photoelectric sensor, and automatic water replenishment is achieved in combination with a soil moisture sensor.

Benefits of technology

It achieves the dynamic viewing effect of ceramic flower pots, improves the professionalism and convenience of green plant maintenance, and meets higher viewing requirements.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the field of ceramic articles, in particular to a dynamic ceramic flowerpot which comprises a rotating pot assembly and a water spraying pot assembly, the rotating pot assembly is provided with a flowerpot body and a rotating shaft, the center line of the rotating shaft deviates from the center line of the flowerpot body, and the rotating pot assembly is further provided with a soil humidity sensor and a photoelectric induction sensor; the water spraying pot assembly is provided with a water pot body, a plurality of water spraying nozzles and a spraying head suspended at a high position are arranged in the water spraying pot assembly, the water spraying nozzles are divided into a plurality of groups, and a flowerpot body is arranged above the water pot body and can eccentrically rotate around the center line of the water pot body. According to the utility model, the ceramic flowerpot is improved, so that the flowerpot body eccentrically rotates to form dynamic effect, and a plurality of groups of water spray nozzles are matched to spray water at intervals, so that the flowerpot is more flexible; the soil humidity sensor is used for dynamic detection, the water basin body is used for supplying water, the sprinkler head automatically sprays and supplements water according to the soil humidity requirement in the flowerpot body, the higher ornamental requirement of personnel can be met, and the professionalism and convenience of green plant maintenance can be improved.
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Description

Technical Field

[0001] The utility model relates to the field of ceramic products, in particular to a dynamic ceramic flower pot. Background Art

[0002] Green plants are often planted in ceramic pots at home or in public places to beautify the environment. Green plant pots are generally placed in a fixed position for people to appreciate. If people need to appreciate the appearance of green plants in different directions, they need to go to different directions to appreciate them. Therefore, it is not convenient to appreciate green plant pots when they are placed in a corner or when people are sitting. In addition, since most potted green plants are static and lack dynamics, their lack of flexibility makes it difficult to meet people's higher viewing requirements; furthermore, green plant maintenance is highly professional, and poor watering of green plants will also affect their growth. In view of this, it is necessary to improve ceramic flower pots. How to make green plant pots have the flexibility of rotation and water to meet people's higher viewing requirements; how to achieve automatic watering to improve the professionalism and convenience of maintenance are the problems to be solved in this case. Utility Model Content

[0003] In order to overcome the shortcomings of the prior art, the present utility model discloses a dynamic ceramic flower pot, including a rotating basin assembly and a water spray basin assembly, the rotating basin assembly is provided with a flower pot body and a rotating shaft located at the bottom thereof, the center line of the rotating shaft deviates from the center line of the flower pot body, and a soil moisture sensor and a photoelectric sensing sensor are respectively provided inside the flower pot body and below the bottom wall; the water spray basin assembly is provided with a water basin body, inside which are provided with a plurality of water spray nozzles that can spray water upward and a spray head suspended at a high place that can spray water downward, the plurality of water spray nozzles are divided into a plurality of groups for zoned arrangement, the flower pot body is placed above the water basin body and can rotate eccentrically around the center line of the water basin body. The utility model improves the ceramic flower pot and utilizes the eccentric rotation of the water basin body and the intermittent sensing of the photoelectric sensor, so that several groups of water nozzles intermittently spray water in groups according to the change of the eccentric position of the eccentric rotation of the flower pot body, so that the flower pot body continuously rotates eccentrically to form a dynamic effect and is equipped with several groups of water nozzles to spray water at intervals to make it more flexible; the soil moisture sensor is used for dynamic detection and the water basin body is used for water supply, so that the spray head automatically sprays and replenishes water according to the soil moisture in the flower pot body, thereby meeting the higher viewing requirements of people and improving the professionalism and convenience of green plant maintenance.

[0004] In order to achieve the above purpose, the technical solution adopted by the present utility model is as follows:

[0005] A dynamic ceramic flower pot, characterized in that it includes a rotating basin assembly and a water spraying basin assembly, wherein the rotating basin assembly is provided with a circular basin body for planting green plants and a rotatable drive shaft is provided at the bottom of the basin body, the center line of the drive shaft deviates from the center line of the basin body, and a detection member for real-time detection of soil moisture is also provided in the basin body, and the water spraying basin assembly is provided with a circular basin body for holding water and a plurality of nozzles for spraying water upwards and a nozzle suspended at a high place for spraying water downwards, and the plurality of nozzles in the basin body are provided with a plurality of nozzles for spraying water upwards and a nozzle suspended at a high place for spraying water downwards. The nozzles are divided into several groups and arranged in zones. The basin body of the rotating basin assembly is placed above the basin body of the water spraying basin assembly and the driving shaft of the rotating basin assembly is rotatably connected to the center of the basin body of the water spraying basin assembly. The basin body of the rotating basin assembly can rotate eccentrically around the center line of the basin body of the water spraying basin assembly. The several groups of nozzles arranged in zones in the water spraying basin assembly can intermittently spray water in groups according to the change of the eccentric position of the eccentric rotation of the rotating basin assembly. The water spraying basin assembly can also automatically spray and replenish water to the green plants of the rotating basin assembly according to the soil moisture requirements in the basin body of the rotating basin assembly.

[0006] The rotating basin assembly includes a flower pot body and a rotating shaft. The flower pot body is a drum-shaped basin-shaped ceramic cavity. The rotating shaft is a stepped circular shaft fixedly connected to the bottom wall of the flower pot body, and the center line of the rotating shaft deviates from the center line of the flower pot body.

[0007] The rotating basin assembly also includes a motor and a bearing group. The motor is placed below the rotating shaft, and its output shaft is connected to the rotating shaft. The motor can drive the rotating shaft to rotate. The motor is a reduction motor that can rotate slowly. The bearing group is connected to the rotating shaft, and the bearing group includes a radial bearing and a thrust bearing.

[0008] The water spray basin assembly includes a water basin body and a support seat. The water basin body is a circular basin-shaped ceramic cavity that can hold water. The support seat is a tubular seat body. The support seat is placed upright in the water basin body and fixedly connected to the center of the bottom wall of the water basin body. The rotating shaft, motor and bearing group of the rotating basin assembly are all placed in the cavity of the support seat. The rotating shaft is rotatably connected to the support seat by the bearing group, and the motor is fixedly connected to the support seat.

[0009] The water basin assembly also includes a water pump, a first valve, a water nozzle, a second valve and a spray head. The water pump, the first valve, the water nozzle, the second valve and the spray head are all placed in the water basin body. The first valve and the water nozzle are each in several pieces. Each water nozzle is equipped with a first valve and is connected to the water pump by a water pipe. The several water nozzles are arranged on the same circumference and the center of the circumference is concentric with the center of the water basin body. The several water nozzles are divided into four groups and the four groups of water nozzles are evenly distributed in the four areas of the east, west, south and north of the same circumference. The nozzles of the water nozzles are facing upward. The spray head is equipped with a second valve and is connected to the water pump by a water pipe. The spray head is suspended above the water basin body and its height exceeds the upper surface of the flower pot body. The spray hole of the spray head is downward and faces the flower pot body.

[0010] Furthermore, the water pump is an electric water pump, and the first valve and the second valve are both electric valves.

[0011] The rotating basin assembly also includes a soil moisture sensor and a photoelectric sensing sensor. The soil moisture sensor is placed in the soil contained in the flower pot body and is fixed to the flower pot body. The photoelectric sensing sensor is fixed below the bottom wall of the flower pot body and is placed on the side of the flower pot body closest to the center line of the rotating shaft.

[0012] The water spray basin assembly also includes a sensor sheet, which is a strip sheet that can be sensed by a photoelectric sensor. There are four sensor sheets, which are evenly distributed radially and fixed to the four areas of the support base wall in the east, west, south and north.

[0013] The dynamic ceramic flowerpot also includes an electronic control unit, which includes a control mainboard and a power supply. The motor, soil moisture sensor, photoelectric sensor, water pump, first valve and second valve are all electrically connected to the electronic control unit. The electronic control unit can receive information collected by the soil moisture sensor and the photoelectric sensor and analyze and process it. The electronic control unit can control the execution actions of the motor, water pump, first valve and second valve.

[0014] As can be seen from the above description, the advantages of the dynamic ceramic flowerpot provided by the present invention lie in the following: the flowerpot body of the rotating pot assembly is eccentrically positioned above the water basin body of the spraying pot assembly, allowing for eccentric rotation. Within the water basin body are located several nozzles that spray water upward and a suspended spray head that sprays water downward. The nozzles are arranged in groups and arranged in zones. First, utilizing the eccentric rotation of the water basin body and intermittent sensing by a photoelectric sensor, the nozzles intermittently spray water in groups according to the eccentric position of the flower pot body during eccentric rotation. This creates a sense of movement through the continuous eccentric rotation of the flower pot body, and the intermittent spraying of water by the nozzles further enhances the dynamic effect. Second, utilizing a soil moisture sensor for dynamic detection and water supply from the water basin body, the spray head automatically sprays and replenishes water according to soil moisture within the flower pot body. This improved ceramic flowerpot meets the highest aesthetic standards and enhances the professionalism and convenience of plant care. The present invention boasts a rational design, simple structure, low cost, and is readily marketable. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a general schematic diagram of a dynamic ceramic flower pot according to the present invention;

[0016] Figure 2 is an enlarged schematic diagram of the rotating basin assembly;

[0017] Figure 3 for Figure 2 A magnified schematic diagram of part A in FIG;

[0018] Figure 4 is a schematic diagram of a spray basin assembly;

[0019] Figure 5 for Figure 4 Schematic diagram of direction B in .

[0020] Reference numerals:

[0021] 1 Rotating basin assembly; 11 Flower pot body; 12 Rotating shaft; 13 Motor; 14 Bearing assembly; 15 Soil moisture sensor; 16 Photoelectric sensor; 2 Spray basin assembly; 21 Water basin body; 22 Support base; 23 Water pump; 24 First valve; 25 Water nozzle; 26 Second valve; 27 Spray head; 28 Sensor plate. DETAILED DESCRIPTION

[0022] The present invention is further described below through specific implementation methods.

[0023] like Figure 1As shown, the utility model is a dynamic ceramic flower pot, comprising a rotating basin assembly 1 and a water spraying basin assembly 2. The rotating basin assembly 1 is provided with a circular basin body for planting green plants and a rotatable drive shaft is provided at the bottom of the basin body. The center line of the drive shaft deviates from the center line of the basin body. A detection member for real-time detection of soil moisture is also provided in the basin body. The water spraying basin assembly 2 is provided with a circular basin body for holding water and a plurality of nozzles for spraying water upwards and a nozzle suspended at a high place for spraying water downwards are provided in the basin body. The nozzles are divided into several groups and arranged in partitions. The basin body of the rotating basin assembly 1 is placed above the basin body of the water spray basin assembly 2 and the driving shaft of the rotating basin assembly 1 is rotatably connected to the center of the basin body of the water spray basin assembly 2. The basin body of the rotating basin assembly 1 can be eccentrically rotated around the center line of the basin body of the water spray basin assembly 2. The several groups of nozzles arranged in partitions in the water spray basin assembly 2 can intermittently spray water in groups according to the change of the eccentric position of the eccentric rotation of the rotating basin assembly 1. The water spray basin assembly 2 can also automatically spray and replenish water to the green plants in the rotating basin assembly 1 according to the soil moisture requirements in the basin body of the rotating basin assembly 1.

[0024] like Figures 1 to 3 As shown, the rotating pot assembly 1 of the present invention includes a pot body 11, a rotating shaft 12, a motor 13, a bearing assembly 14, a soil moisture sensor 15, and a photoelectric sensor 16. The pot body 11 is a cylindrical, basin-shaped ceramic hollow body. The rotating shaft 12 is a stepped circular shaft, fixedly attached to the bottom wall of the pot body 11, with its centerline offset from the centerline of the pot body 11. The motor 13 is positioned below the rotating shaft 12, with its output shaft connected to the rotating shaft 12. The motor 13 is a slow-rotating reduction motor, capable of driving the rotating shaft 12 to rotate. The bearing assembly 14 is connected to the rotating shaft 12 and includes a radial bearing and a thrust bearing. The soil moisture sensor 15 is positioned within the soil contained in the pot body 11 and fixedly attached to the pot body 11. The photoelectric sensor 16 is fixedly attached to the bottom wall of the pot body 11 and positioned on the side of the pot body 11 closest to the centerline of the rotating shaft 12.

[0025] like Figures 1 to 5As shown, the water basin assembly 2 described in the utility model includes a water basin body 21, a support seat 22, a water pump 23, a first valve 24, a water nozzle 25, a second valve 26, a spray head 27 and an induction plate 28. The water basin body 21 is a circular basin-shaped ceramic cavity that can hold water. The support seat 22 is a tubular seat body. The support seat 22 is vertically placed in the water basin body 21 and fixedly connected to the center of the bottom wall of the water basin body 21. The rotating shaft 12, motor 13 and bearing group 14 of the rotating basin assembly 1 are all placed in the cavity of the support seat 22. The rotating shaft 12 is rotatably connected to the support seat 22 by the bearing group 14, and the motor 13 is fixedly connected to the support seat 22. The water pump 23, the first valve 24, the water nozzle 25, the second valve 26 and the sprinkler head 27 are all placed in the water basin body 21. The first valve 24 and the water nozzle 25 are each in multiples. The number of pieces in this embodiment is a multiple of "4". Each water nozzle 25 is equipped with a first valve 24 and is connected to the water pump 23 by a water pipe. The multiple water nozzles 25 are arranged on the same circumference and the center of the circumference is concentric with the center of the water basin body 21. The multiple water nozzles 25 in this embodiment are divided into four groups and the four groups of water nozzles 25 are evenly distributed in four areas of the east, west, south and north of the same circumference. The nozzles of the water nozzles 25 are upward. The sprinkler head 27 is equipped with a second valve 26 and is connected to the water pump 23 by a water pipe. The sprinkler head 27 is suspended above the water basin body 21 and its height exceeds the upper surface of the flower pot body 11. The spray hole of the sprinkler head 27 is downward and faces the flower pot body 11. The water pump 23 is an electric water pump, and the first valve 24 and second valve 26 are both electric valves. The sensor sheet 28 is a strip-shaped sheet that can be sensed by the photoelectric sensor 16. In this embodiment, there are four sensor sheets 28, which are evenly distributed and fixed to the four regions of the support base 22 in a radial pattern.

[0026] The dynamic ceramic flowerpot described in the present invention also includes an electronic control unit, which includes a control mainboard and a power supply. The motor 13, soil moisture sensor 15, photoelectric sensor 16, water pump 23, first valve 24 and second valve 26 are all electrically connected to the electronic control unit. The electronic control unit can receive information collected by the soil moisture sensor 15 and the photoelectric sensor 16 and analyze and process it. The electronic control unit can control the execution actions of the motor 13, water pump 23, first valve 24 and second valve 26.

[0027] The method of using the dynamic ceramic flower pot described in the utility model is as follows:

[0028] Motor 13 drives the flower pot body 11 to rotate slowly and eccentrically. When photoelectric sensor 16 detects the first sensing piece 28, all first valves 24 of the group of nozzles 25 in the area corresponding to the first sensing piece 28 open, causing the group of nozzles 25 to spray water upward, and the sprayed water falls into the water basin body 21. When the flower pot body 11 continues to rotate slowly, causing photoelectric sensor 16 to detect the second sensing piece 28, all first valves 24 in the area corresponding to the first sensing piece 28 close, while all first valves 24 in the area corresponding to the second sensing piece 28 open, causing the group of nozzles 25 to spray water upward. In this way, the flower pot body 11 rotates continuously and eccentrically, and the nozzles 25 intermittently spray water in groups according to the eccentric position of the flower pot body 11 during eccentric rotation, creating a dynamic water rhythm.

[0029] When the actual soil humidity detected by the soil moisture sensor 15 is lower than the standard humidity set in advance in the electronic control unit, the electronic control unit will instruct the second valve 26 to open, allowing the spray head 27 to automatically spray water into the flower pot body 11.

[0030] The utility model improves the ceramic flower pot, and the flower pot body 11 of the rotating pot assembly 1 is eccentrically placed above the water basin body 21 of the water spraying pot assembly 2 for eccentric rotation. A plurality of water spray nozzles 25 capable of spraying water upward and a spray head 27 suspended at a high position capable of spraying water downward are provided in the water basin body 21. The plurality of water spray nozzles 25 are divided into a plurality of groups for zoned arrangement. By utilizing the eccentric rotation of the water basin body 21 and the intermittent sensing of the photoelectric sensing sensor 16, the plurality of water spray nozzles 25 are intermittently sprayed in groups according to the eccentric position change of the eccentric rotation of the flower pot body 11, so that the flower pot body 11 continuously rotates eccentrically to form a dynamic effect and is equipped with the plurality of water spray nozzles 25 to intermittently spray water to make it more dynamic. By utilizing the dynamic detection of the soil moisture sensor 15 and the water supply of the water basin body 21, the spray head 27 is automatically sprayed and replenished with water according to the soil moisture in the flower pot body 11, thereby meeting the higher viewing requirements of the personnel and improving the professionalism and convenience of green plant maintenance.

[0031] The above is only a specific embodiment of the present invention, but the design concept of the present invention is not limited to this. Any non-substantial changes to the present invention using this concept shall be deemed as an infringement of the protection scope of the present invention.

Claims

1. A dynamic ceramic flowerpot, characterized by: The invention comprises a rotating basin assembly (1) and a water spraying basin assembly (2), wherein the rotating basin assembly (1) is provided with a circular basin body capable of planting green plants and a rotatable driving shaft is provided at the bottom of the basin body, the center line of the driving shaft deviates from the center line of the basin body, and a detection part capable of detecting soil moisture in real time is also provided in the basin body, and the water spraying basin assembly (2) is provided with a circular basin body capable of holding water and a plurality of nozzles capable of spraying water upwards and a nozzle head suspended at a high place capable of spraying water downwards are provided in the basin body, and the plurality of nozzles in the basin body are divided into a plurality of groups and are arranged in a plurality of groups. The rotating basin assembly (1) is arranged in zones, the basin body of the rotating basin assembly (1) is placed above the basin body of the water spraying basin assembly (2), and the driving shaft of the rotating basin assembly (1) is rotatably connected to the center of the basin body of the water spraying basin assembly (2). The basin body of the rotating basin assembly (1) can be eccentrically rotated around the center line of the basin body of the water spraying basin assembly (2). The plurality of groups of nozzles arranged in zones within the water spraying basin assembly (2) can intermittently spray water in groups according to the change in the eccentric position of the eccentric rotation of the rotating basin assembly (1). The water spraying basin assembly (2) can also automatically spray and replenish water to the rotating basin assembly (1).

2. The dynamic ceramic flowerpot according to claim 1, characterized in that: The rotating basin assembly (1) comprises a flower pot body (11) and a rotating shaft (12), wherein the flower pot body (11) is a drum-shaped basin-shaped ceramic cavity, and the rotating shaft (12) is a stepped circular shaft. The rotating shaft (12) is fixedly connected to the bottom wall of the flower pot body (11), and the center line of the rotating shaft (12) deviates from the center line of the flower pot body (11).

3. The dynamic ceramic flowerpot according to claim 2, characterized in that: The rotating basin assembly (1) further comprises a motor (13) and a bearing group (14); the motor (13) is placed below the rotating shaft (12), and its output shaft is connected to the rotating shaft (12); and the bearing group (14) is connected to the rotating shaft (12).

4. The dynamic ceramic flowerpot according to claim 3, characterized in that: The water spray basin assembly (2) includes a water basin body (21) and a support seat (22). The water basin body (21) is a circular basin-shaped ceramic cavity that can hold water. The support seat (22) is a tubular seat. The support seat (22) is vertically placed in the water basin body (21) and fixedly connected to the center of the bottom wall of the water basin body (21). The rotating shaft (12), motor (13) and bearing group (14) of the rotating basin assembly (1) are all placed in the cavity of the support seat (22). The rotating shaft (12) is rotatably connected to the support seat (22) by the bearing group (14), and the motor (13) is fixedly connected to the support seat (22).

5. The dynamic ceramic flowerpot according to claim 4, characterized in that: The water spray basin assembly (2) further comprises a water pump (23), a first valve (24), a water spray nozzle (25), a second valve (26) and a spray head (27). The water pump (23), the first valve (24), the water spray nozzle (25) and the second valve (26) are all placed in the water basin body (21). The first valve (24) and the water spray nozzle (25) are both multiple pieces. Each water spray nozzle (25) is equipped with a first valve (24) and is connected to the water pump (23) by a water pipe. The multiple water spray nozzles (25) are arranged in the same On a circumference and the center of the circumference is concentric with the center of the water basin body (21), a plurality of water nozzles (25) are divided into four groups and the four groups of water nozzles (25) are evenly distributed in four areas of the east, west, south and north of the same circumference, the nozzles of the water nozzles (25) are upward, the spray head (27) is equipped with a second valve (26) and is connected to the water pump (23) through a water pipe, the spray head (27) is suspended above the water basin body (21) and its height exceeds the upper surface of the flower pot body (11), and the spray hole of the spray head (27) is downward and faces the flower pot body (11).

6. The dynamic ceramic flowerpot according to claim 5, characterized in that: The water pump (23) is an electric water pump, and the first valve (24) and the second valve (26) are both electric valves.

7. The dynamic ceramic flowerpot according to claim 6, characterized in that: The rotating pot assembly (1) further comprises a soil moisture sensor (15) and a photoelectric sensor (16). The soil moisture sensor (15) is placed in the soil contained in the pot body (11) and is fixedly connected to the pot body (11). The photoelectric sensor (16) is fixedly connected below the bottom wall of the pot body (11) and is placed on the side of the pot body (11) closest to the center line of the rotating shaft (12).

8. The dynamic ceramic flowerpot according to claim 7, characterized in that: The water spray basin assembly (2) further comprises a sensing sheet (28), wherein the sensing sheet (28) is a strip-shaped sheet that can be sensed by the photoelectric sensor (16). The sensing sheets (28) are four pieces, and the four sensing sheets (28) are evenly distributed in a radial pattern and fixed to four regions of the east, west, south and north of the peripheral wall of the support base (22).

9. The dynamic ceramic flowerpot according to claim 8, characterized in that: The invention also includes an electronic control unit, which includes a control mainboard and a power supply. The motor (13), the soil moisture sensor (15), the photoelectric sensor (16), the water pump (23), the first valve (24) and the second valve (26) are all electrically connected to the electronic control unit.