Landscape intelligent flower stand for garden design and construction

Through the motor of the smart flower stand to drive the flower basket to rotate, sensor control the folding cloth and watering system, the problem of potted plant protection of landscape flower stands in extreme weather is solved, the stability and healthy growth of potted plants are achieved, and the ornamentality and resource utilization of garden landscapes are improved.

CN120391823AInactive Publication Date: 2025-08-01CHANGCHUN INST OF ELECTRONIC TECH
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Patent Information

Application Number
CN202510886705.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2025-08-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Landscape flower stands are susceptible to strong winds and heavy rain in extreme weather, causing potted plants to tilt or pour, and soil moisture affects the respiratory function of the plant roots, reduces soil fertility, and affects the healthy growth of plants.

Method used

The flower basket is driven by a stepper motor, combined with wind and raindrop sensors to control the folding cloth to protect the potted plants, a laser sensor is used to control the watering system, precise watering is carried out through the drip irrigation head, and combined with the limiting mechanism and collection box design, to achieve intelligent protection and management.

Benefits of technology

Effectively prevent potted plants from tilting or pouring, avoid excessive soil moistening, ensure normal breathing of plant roots, promote healthy plant growth, and improve ornamentality and resource utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of garden flower stands, in particular to an intelligent landscape flower stand for garden design and construction, which comprises a support plate, a top plate, a mounting ring, a rotating ring, a mounting rod, a hanging ring, a flower basket and the like, the top plate is connected to the upper part of the front side of the support plate through bolts, the mounting ring is connected to the support plate, and the rotating ring is rotatably connected in the mounting ring; eight mounting rods are evenly connected to the rotating ring in the circumferential direction at intervals, hanging rings are arranged on the mounting rods in a sleeving mode, and flower baskets used for containing potted plants are connected to the bottoms of the hanging rings. The flower basket can be driven to rotate through the output shaft of the stepping motor, the flower basket drives the potted plants to rotate, the ornamental value of the whole landscape flower stand is improved, the potted plants in the flower basket can be intelligently protected through the folding cloth, impact of strong wind on the potted plants is avoided, and therefore the potted plants can be prevented from inclining or toppling over; rainwater can be prevented from falling onto the potted plants, so that soil in the potted plants can be prevented from being excessively wet, and normal respiration of plant roots can be ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of garden flower racks, and particularly to an intelligent landscape flower rack for garden design and construction. Background Art

[0002] In modern garden design, landscape flower racks are often used for decoration. Landscape flower racks can not only provide support and display platforms for flowers and plants, but also beautify the environment, increase the green coverage rate, and play an important role in improving the aesthetic feeling of the garden.

[0003] In practical applications, since landscape flower racks are set outdoors, they are easily affected by extreme weather, especially strong wind days and heavy rain days. When strong winds come, the air flow will directly impact the potted plants on the landscape flower rack, which may cause the potted plants to tilt or even fall over, thus causing physical damage to the flowers and plants. In heavy rain weather, a large amount of rainwater will accumulate in the landscape flower rack in a short time. The accumulated water will cause the soil to be overly moist, affecting the normal respiratory function of the plant roots, ultimately leading to root rot. At the same time, the rainwater scouring may also wash away the nutrients in the surface soil, reducing the soil fertility, and further affecting the healthy growth of plants. Summary of the Invention

[0004] In view of this, the present invention provides an intelligent landscape flower rack for garden design and construction, which can overcome the drawbacks that the air flow will directly impact the potted plants on the landscape flower rack, which may cause the potted plants to tilt or even fall over, thus causing physical damage to the flowers and plants, and that a large amount of rainwater will accumulate in the landscape flower rack in a short time. The accumulated water will cause the soil to be overly moist, affecting the normal respiratory function of the plant roots, ultimately leading to root rot.

[0005] The technical solution is as follows: An intelligent landscape flower rack for garden design and construction includes a support plate, a top plate, an installation ring, a rotating ring, installation rods, hanging rings, flower baskets, a rotating frame, a stepping motor, a protection mechanism, and a limiting mechanism. The upper part of the front side of the support plate is connected to the top plate by bolts. An installation ring is connected to the support plate. The rotating ring is rotatably connected inside the installation ring. Eight installation rods are circumferentially and evenly spaced on the rotating ring. Hanging rings are sleeved on the installation rods. Flower baskets for placing potted plants are connected to the bottoms of the hanging rings. A rotating frame is connected inside the rotating ring. A stepping motor is installed on the support plate. The output shaft of the stepping motor is connected to the middle of the rotating frame to drive the rotating frame to rotate. The rotating frame drives the flower baskets to rotate, and the flower baskets drive the potted plants to rotate. The protection mechanism is used for intelligently protecting the potted plants in the flower baskets, and the limiting mechanism is used for limiting the hanging rings.

[0006] As an improvement to the above solution, the protection mechanism includes a slide rail, a slider, a lead screw motor, a sliding block, an arc rod, a folding cloth, a wind sensor, a rain drop sensor and a controller. Slide rails are connected to both the left and right sides of the support plate. Sliders are slidably connected within the slide rails. Lead screw motors are installed within the slide rails. The lead screws of the lead screw motors are threadedly connected to the sliders. Guide openings are formed in both the left and right parts of the support plate. Sliding blocks are slidably connected at equal intervals within the guide openings. The lowermost sliding block is connected to the slider. Arc rods are commonly connected between two relatively positioned sliding blocks on the left and right. Folding cloths are connected between adjacent arc rods. A folding cloth is also connected between the top of the uppermost arc rod and the bottom of the top plate. The folding cloth is used for intelligently protecting the potted plants within the flower basket. A wind sensor, a rain drop sensor and a controller are installed on the support plate. The lead screw motor, the wind sensor and the rain drop sensor are all electrically connected to the controller.

[0007] As an improvement to the above solution, the limiting mechanism includes a limiting ring and a limiting screw. Limiting rings for limiting the hanging rings are connected to the mounting rods. Limiting screws for limiting the hanging rings are threadedly connected to the mounting rods.

[0008] As an improvement to the above solution, it further includes a water tank, a water inlet pipe, a solenoid valve I, a liquid level sensor, a water outlet pipe, a solenoid valve II, an annular pipe and drip irrigation nozzles. A water tank is connected to the middle of the top plate. A water inlet pipe communicates with the water tank. The water inlet pipe penetrates through the support plate. A solenoid valve I is installed on the water inlet pipe. A liquid level sensor is installed within the water tank. A water outlet pipe communicates with the bottom of the water tank. A solenoid valve II is installed on the water outlet pipe. The solenoid valve I, the liquid level sensor and the solenoid valve II are all electrically connected to the controller. The lower end of the water outlet pipe is connected to the annular pipe. Drip irrigation nozzles are connected to the bottom of the annular pipe. Water drips into the potted plants through the drip irrigation nozzles for watering.

[0009] As an improvement to the above solution, it further includes a laser receiver and a laser emitter. Eight laser receivers are evenly spaced circumferentially on the outer circumference of the rotating ring. The laser receivers correspond one by one to the mounting rods. A laser emitter is installed on the support plate. The stepper motor, the laser receivers and the laser emitter are all electrically connected to the controller. Opposite openings are formed in the mounting ring. The opposite openings correspond to the laser receivers. The laser emitted by the laser emitter can pass through the opposite openings and irradiate onto the laser receivers.

[0010] As an improvement to the above solution, it further includes a support frame, an activated carbon plate and a retaining net. A support frame is connected within the water tank. The activated carbon plate is placed on the support frame. A retaining net is connected to the top of the water tank.

[0011] As an improvement to the above solution, it further includes a collection box. A collection box for collecting the excess water within the potted plants is connected to the support plate.

[0012] As an improvement to the above solution, the folding cloth is made of a transparent material.

[0013] Compared with the prior art, the present invention has the following advantages: 1. The output shaft of the stepper motor of the present invention can drive the flower basket to rotate, and the flower basket drives the potted plant to rotate, improving the ornamental value of the entire landscape flower rack. The folding cloth can intelligently protect the potted plants in the flower basket, avoiding the impact of strong winds on the potted plants, thereby preventing the potted plants from tilting or falling, and preventing rainwater from falling on the potted plants, thus avoiding excessive moisture in the soil of the potted plants and ensuring that the plant roots can breathe normally.

[0014] 2. The present invention can control the solenoid valve II to open through the controller. The water in the water tank flows into the annular pipe through the water outlet pipe, and then the water drips into the potted plant through the drip irrigation nozzle for watering, ensuring that the plants have sufficient moisture for photosynthesis, which helps the formation and expansion of new cells and promotes the normal growth of stems, leaves, flowers and fruits. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a three-dimensional structure schematic diagram of the present invention.

[0016] Figure 2 It is the first cross-sectional view of the support plate of the present invention.

[0017] Figure 3 It is the second cross-sectional view of the support plate of the present invention.

[0018] Figure 4 It is the first three-dimensional structure schematic diagram of the protection mechanism of the present invention.

[0019] Figure 5 It is the present invention Figure 4 The enlarged view of part A in.

[0020] Figure 6 It is the second three-dimensional structure schematic diagram of the protection mechanism of the present invention.

[0021] Figure 7 It is the three-dimensional structure schematic diagram of the wind sensor, rain sensor and controller of the present invention.

[0022] Figure 8 It is the three-dimensional structure schematic diagram of the limit mechanism of the present invention.

[0023] Figure 9 It is the state diagram of the folding cloth of the present invention after being unfolded.

[0024] Figure 10 It is the three-dimensional structure schematic diagram of the water tank and the water inlet pipe of the present invention.

[0025] Figure 11 It is the first cross-sectional view of the water tank of the present invention.

[0026] Figure 12Schematic three-dimensional structure diagram of the laser receiver of the present invention.

[0027] Figure 13 Schematic three-dimensional structure diagram of the laser transmitter of the present invention.

[0028] Figure 14 Schematic three-dimensional structure diagram of the opposed opening of the present invention.

[0029] Figure 15 Second cross-sectional view of the water tank of the present invention.

[0030] Figure 16 Schematic three-dimensional structure diagram of the support frame of the present invention.

[0031] Names of the reference numerals in the figure: 1, support plate; 2, top plate; 3, mounting ring; 4, rotating ring; 5, mounting rod; 6, hanging ring; 7, flower basket; 8, rotating frame; 9, stepping motor; 101, slide rail; 102, slider; 103, lead screw motor; 104, guiding opening; 105, sliding block; 106, arc rod; 107, folding cloth; 108, wind sensor; 109, rain drop sensor; 1010, controller; 111, limiting ring; 112, limiting screw; 121, water tank; 122, water inlet pipe; 123, solenoid valve 1; 124, liquid level sensor; 125, water outlet pipe; 126, solenoid valve 2; 127, annular pipe; 128, drip irrigation nozzle; 131, laser receiver; 132, laser transmitter; 133, opposed opening; 141, support frame; 142, activated carbon plate; 143, retaining net; 15, collection box. Detailed implementation manners

[0032] To make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below in conjunction with the detailed implementation manners and with reference to the accompanying drawings. It should be understood that these descriptions are exemplary and are not intended to limit the scope of the present invention. In addition, in the following description, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present invention.

[0033] Please refer to Figures 1 - 9, a smart landscape flower trellis for garden design and construction, comprising a support plate 1, a top plate 2, a mounting ring 3, a rotating ring 4, a mounting rod 5, a hanging ring 6, a flower basket 7, a rotating frame 8, a stepper motor 9, a protection mechanism and a limiting mechanism. The upper part of the front side of the support plate 1 is bolted to the top plate 2, the middle part of the front side of the support plate 1 is bolted to the mounting ring 3, the rotating ring 4 is rotatably connected inside the mounting ring 3, eight mounting rods 5 are circumferentially and evenly spaced on the front side of the rotating ring 4, hanging rings 6 are sleeved on the mounting rods 5, flower baskets 7 are connected to the bottoms of the hanging rings 6, a rotating frame 8 is connected inside the rotating ring 4, a stepper motor 9 is bolted to the middle part of the rear side of the support plate 1, and the output shaft of the stepper motor 9 is connected to the middle part of the rotating frame 8. The protection mechanism is used for intelligently protecting the potted plants in the flower basket 7, and the limiting mechanism is used for limiting the hanging ring 6.

[0034] Please refer to Figures 4 - 7 , the protection mechanism comprises a slide rail 101, a slider 102, a screw motor 103, a sliding block 105, an arc rod 106, a folding cloth 107, a wind sensor 108, a rain drop sensor 109 and a controller 1010. Slide rails 101 are bolted to the left and right sides of the rear side of the support plate 1 respectively, sliders 102 are slidably connected inside the slide rails 101, screw motors 103 are installed inside the slide rails 101, the screws of the screw motors 103 are threadedly connected to the sliders 102, guiding openings 104 are formed in the left and right parts of the support plate 1, sliding blocks 105 are slidably connected inside the guiding openings 104 at equal intervals, the rear side of the lowermost sliding block 105 is connected to the front side of the slider 102, arc rods 106 are commonly connected to the front sides of two opposite sliding blocks 105 on the left and right, folding cloth 107 is connected between adjacent arc rods 106, and folding cloth 107 is also connected between the top of the uppermost arc rod 106 and the bottom of the top plate 2. The folding cloth 107 is made of a transparent material. A wind sensor 108 is bolted to the left side of the top of the support plate 1, a rain drop sensor 109 is bolted to the right side of the top of the support plate 1, and a controller 1010 is bolted to the upper right part of the front side of the support plate 1. The screw motor 103, the wind sensor 108 and the rain drop sensor 109 are all electrically connected to the controller 1010.

[0035] Please refer to Figure 8 , the limiting mechanism comprises a limiting ring 111 and a limiting screw 112. Limiting rings 111 are connected to the front parts of the mounting rods 5 respectively, and limiting screws 112 are threadedly connected to the front ends of the mounting rods 5.

[0036] The staff places the potted plant into the flower basket 7, and then hangs the flower basket 7 on the mounting rod 5 through the hanging ring 6 for viewing. The limiting ring 111 can limit the hanging ring 6 to prevent the hanging ring 6 and the flower basket 7 from moving randomly. Then, the limiting screw 112 is installed at the front end of the mounting rod 5. The limiting screw 112 can limit the hanging ring 6 to prevent the hanging ring 6 and the flower basket 7 from falling off the mounting rod 5. The output shaft of the stepper motor 9 can drive the rotating frame 8 to rotate. The rotating frame 8 drives the rotating ring 4 to rotate. The rotating ring 4 drives the mounting rod 5 to rotate. The mounting rod 5 drives the flower basket 7 to rotate. The flower basket 7 drives the potted plant to rotate, enabling the potted plant to rotate and replace, so that different sides of the potted plant can be displayed to the audience in turn, increasing the dynamic change and interest of the garden landscape. As the plant rotates, the angle of sunlight irradiation also changes, thereby generating different light and shadow effects, enhancing the visual attraction, adding a unique style and personality to the garden. At the same time, the rotation of the potted plant can help all parts of the plant receive light evenly, avoiding some parts being overexposed to sunlight or in the shadow area due to being fixed in one position for a long time, ensuring the healthy growth of the plant. When the wind sensor 108 detects that the wind force is too strong, it indicates that strong wind is coming. The controller 1010 will control the lead screw motor 103 to work. The lead screw motor 103 drives the slider 102 to move downward. The slider 102 drives the lowermost sliding block 105 to move downward, thereby driving the arc rod 106 to move downward and unfolding the folding cloth 107. The folding cloth 107 can intelligently protect the potted plant in the flower basket 7, avoiding the impact of strong wind on the potted plant, thereby preventing the potted plant from tilting or toppling. The folding cloth 107 is made of a transparent material, and the potted plant can be seen through the folding cloth 107 without affecting the viewing. When the wind sensor 108 detects no wind, the controller 1010 will control the lead screw motor 103 to work. The lead screw motor 103 drives the slider 102 to move upward. The slider 102 drives the lowermost sliding block 105 to move upward, thereby driving the arc rod 106 to move upward and retracting the folding cloth 107. Automatically controlling the unfolding or retracting of the folding cloth 107 has a higher degree of intelligence and is more convenient to use. When the rain droplet sensor 109 detects rain, the controller 1010 will control the lead screw motor 103 to work. The lead screw motor 103 drives the slider 102 to move downward and unfold the folding cloth 107. The folding cloth 107 can intelligently protect the potted plant in the flower basket 7, avoiding rain from falling on the potted plant, thereby preventing the soil in the potted plant from being overly moist and ensuring that the plant roots can breathe normally. When the rain droplet sensor 109 detects no rain, the controller 1010 will control the lead screw motor 103 to work. The lead screw motor 103 drives the slider 102 to move upward and retract the folding cloth 107.

[0037] Please refer to Figure 10 and Figure 11, it further includes a water tank 121, a water inlet pipe 122, a first electromagnetic valve 123, a liquid level sensor 124, a water outlet pipe 125, a second electromagnetic valve 126, an annular pipe 127 and drip irrigation nozzles 128. The middle part of the top plate 2 is connected with the water tank 121 by bolts. The upper part of the rear side of the water tank 121 is communicated with the water inlet pipe 122. The water inlet pipe 122 penetrates through the upper part of the support plate 1. The first electromagnetic valve 123 is installed on the water inlet pipe 122. The liquid level sensor 124 is installed on the front side in the water tank 121 by bolts. The middle of the bottom of the water tank 121 is communicated with the water outlet pipe 125. The second electromagnetic valve 126 is installed on the water outlet pipe 125. The first electromagnetic valve 123, the liquid level sensor 124 and the second electromagnetic valve 126 are all electrically connected to the controller 1010. The lower end of the water outlet pipe 125 is connected with the annular pipe 127. The drip irrigation nozzles 128 are evenly spaced circumferentially at the bottom of the annular pipe 127.

[0038] Please refer to Figures 12 - 14 , it further includes a laser receiver 131 and a laser emitter 132. Eight laser receivers 131 are evenly spaced circumferentially outside the rotating ring 4 and installed by bolts. The laser receivers 131 and the mounting rods 5 are in one-to-one correspondence. The laser emitter 132 is installed in the middle of the upper part of the front side of the support plate 1 by bolts. The stepping motor 9, the laser receivers 131 and the laser emitter 132 are all electrically connected to the controller 1010. A through-shot opening 133 is opened in the middle of the top of the mounting ring 3, and the through-shot opening 133 corresponds to the laser receivers 131.

[0039] The staff connects the water inlet pipe 122 to an external water source, then controls the first electromagnetic valve 123 to open, and water flows into the water tank 121 through the water inlet pipe 122. When the liquid level sensor 124 detects that the water level reaches the preset value, the controller 1010 will control the first electromagnetic valve 123 to close. The output shaft of the stepping motor 9 drives the rotating frame 8 to rotate, and the rotating frame 8 drives the laser receivers 131 to rotate. When watering is needed, the laser emitter 132 is started, and the laser emitter 132 will emit laser light. When the laser emitter 132 corresponds to the through-shot opening 133, the laser light emitted by the laser emitter 132 can pass through the through-shot opening 133 and irradiate on the laser receiver 131. The laser receiver 131 sends a signal to the controller 1010, and the controller 1010 will control the stepping motor 9 to pause for 10 seconds. At the same time, the controller 1010 will control the second electromagnetic valve 126 to open for 10 seconds. The water in the water tank 121 flows into the annular pipe 127 through the water outlet pipe 125, and then the water drips into the potted plants through the drip irrigation nozzles 128 for watering, ensuring that the plants have enough water for photosynthesis, which helps the formation and expansion of new cells and promotes the normal growth of stems, leaves, flowers and fruits. After 10 seconds, the stepping motor 9 continues to run, the second electromagnetic valve 126 closes, and watering stops automatically, avoiding waste of water resources. When watering is not needed, the laser emitter 132 is turned off.

[0040] Please refer to Figure 15 andFigure 16 , further comprising a support frame 141, an activated carbon plate 142 and a retaining net 143. The upper part inside the water tank 121 is connected with the support frame 141, the activated carbon plate 142 is placed on the support frame 141, and the retaining net 143 is connected to the top of the water tank 121 by bolts.

[0041] When it rains, rainwater will fall into the water tank 121 for collection to save water resources. The retaining net 143 blocks leaves and other garbage to prevent it from falling into the water tank 121. The activated carbon plate 142 can purify the rainwater, removing impurities and suspended substances in the rainwater to make the rainwater clearer, which is beneficial to the growth of plants. The retaining net 143 can be disassembled and replaced, and the activated carbon plate 142 can also be replaced to ensure the purification effect.

[0042] Please refer to Figure 1 , further comprising a collection box 15. The lower part of the front side of the support plate 1 is connected with the collection box 15 by bolts. Excess water in the potted plant will fall into the collection box 15 for collection to save resources.

[0043] The above are only examples of the present invention and are not used to limit the present invention. Any equivalent replacement made within the principle of the present invention shall be included in the protection scope of the present invention. The content not elaborated in detail in the present invention belongs to the known prior art of those skilled in the art.

Claims

1. An intelligent landscape flower shelf for garden design and construction, comprising a support plate (1) and a top plate (2), the support plate (1) is connected with the top plate (2), and the characteristics are that, It also includes an installation ring (3), a rotating ring (4), an installation rod (5), a hanging ring (6), a flower basket (7), a rotating frame (8), a stepper motor (9), a protection mechanism and a limiting mechanism. An installation ring (3) is connected to the support plate (1). A rotating ring (4) is rotatably connected inside the installation ring (3). Eight installation rods (5) are circumferentially and evenly spaced on the rotating ring (4). Hanging rings (6) are sleeved on the installation rods (5). Flower baskets (7) for placing potted plants are connected to the bottoms of the hanging rings (6). A rotating frame (8) is connected inside the rotating ring (4). A stepper motor (9) is installed on the support plate (1). The output shaft of the stepper motor (9) is connected to the middle of the rotating frame (8) to drive the rotating frame (8) to rotate. The rotating frame (8) drives the flower basket (7) to rotate, and the flower basket (7) drives the potted plant to rotate. The protection mechanism is used for intelligently protecting the potted plants in the flower basket (7), and the limiting mechanism is used for limiting the hanging ring (6).

2. The intelligent landscape flower shelf for garden design and construction according to claim 1, characterized in that, The protection mechanism includes a slide rail (101), a slider (102), a screw motor (103), a sliding block (105), an arc rod (106), a folding cloth (107), a wind sensor (108), a rain sensor (109) and a controller (1010). Slide rails (101) are connected to both the left and right sides of the support plate (1). Sliders (102) are slidably connected inside the slide rails (101). Screw motors (103) are installed inside the slide rails (101). The screws of the screw motors (103) are threadedly connected to the sliders (102). Guide openings (104) are opened on both the left and right parts of the support plate (1). Sliding blocks (105) are slidably and evenly spaced inside the guide openings (104). The lowermost sliding block (105) is connected to the slider (102). Arc rods (106) are commonly connected to two relatively left and right sliding blocks (105). Folding cloths (107) are connected between adjacent arc rods (106). A folding cloth (107) is also connected between the top of the uppermost arc rod (106) and the bottom of the top plate (2). The folding cloth (107) is used for intelligently protecting the potted plants in the flower basket (7). A wind sensor (108), a rain sensor (109) and a controller (1010) are installed on the support plate (1). The screw motor (103), the wind sensor (108) and the rain sensor (109) are all electrically connected to the controller (1010).

3. The intelligent landscape flower stand for garden design and construction according to claim 2, characterized in that, The limiting mechanism includes a limiting ring (111) and a limiting screw (112). Limiting rings (111) for limiting the hanging ring (6) are connected to the installation rods (5). Limiting screws (112) for limiting the hanging ring (6) are threadedly connected to the installation rods (5).

4. The intelligent landscape flower rack for garden design and construction according to claim 3, characterized in that, It further includes a water tank (121), a water inlet pipe (122), a first electromagnetic valve (123), a liquid level sensor (124), a water outlet pipe (125), a second electromagnetic valve (126), an annular pipe (127) and a drip irrigation nozzle (128). The middle part of the top plate (2) is connected to the water tank (121). The water tank (121) is communicated with the water inlet pipe (122). The water inlet pipe (122) penetrates through the support plate (1). The first electromagnetic valve (123) is installed on the water inlet pipe (122). The liquid level sensor (124) is installed in the water tank (121). The bottom of the water tank (121) is communicated with the water outlet pipe (125). The second electromagnetic valve (126) is installed on the water outlet pipe (125). The first electromagnetic valve (123), the liquid level sensor (124) and the second electromagnetic valve (126) are all electrically connected to the controller (1010). The lower end of the water outlet pipe (125) is connected to the annular pipe (127). The bottom of the annular pipe (127) is connected to the drip irrigation nozzle (128). Water drips into the potted plant through the drip irrigation nozzle (128) for watering.

5. The intelligent landscape flower rack for garden design and construction according to claim 4, characterized in that, It further includes a laser receiver (131) and a laser emitter (132). Eight laser receivers (131) are evenly spaced in the circumferential direction outside the rotating ring (4). The laser receivers (131) and the mounting rods (5) are in one-to-one correspondence. The laser emitter (132) is installed on the support plate (1). The stepping motor (9), the laser receivers (131) and the laser emitter (132) are all electrically connected to the controller (1010). The mounting ring (3) is provided with a pair of shooting openings (133). The pair of shooting openings (133) correspond to the laser receivers (131). The laser emitted by the laser emitter (132) can pass through the pair of shooting openings (133) and irradiate on the laser receivers (131).

6. The intelligent landscape flower rack for garden design and construction according to claim 5, characterized in that, It further includes a support frame (141), an activated carbon plate (142) and a retaining net (143). The support frame (141) is connected in the water tank (121). The activated carbon plate (142) is placed on the support frame (141). The retaining net (143) is connected to the top of the water tank (121).

7. The intelligent landscape flower shelf for garden design and construction according to claim 1, characterized in that, It further includes a collection box (15). The collection box (15) for collecting the excess water in the potted plant is connected to the support plate (1).

8. The intelligent landscape flower rack for garden design and construction according to claim 2, characterized in that, The folding cloth (107) is made of a transparent material.

Citation Information

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