Novel landscaping flower stand

By integrating accordion shade curtains, photovoltaic panels, and an automatic control system into the flower stand, the problems that traditional flower stands cannot solve in the environment are solved. This addresses the issue that traditional flower stands are not smart enough and cannot automatically adjust to environmental changes, thus achieving the effect of shading and energy saving for green plants.

CN224038005UActive Publication Date: 2026-03-27SHANGHAI TIANHUI CONSTR ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional flower stands lack shading structures, causing plants to transpire excessively after being exposed to the hot summer sun, making them prone to withering or even dying. Furthermore, existing shading flower stands are not intelligent enough to automatically adjust to changes in the environment.

Method used

Design a garden greening flower stand with accordion sunshade and photovoltaic panels, equipped with ultraviolet detection sensors and Internet of Things control system, automatically adjust the sunshade components to unfold, and use photovoltaic panels to convert solar energy to power the plant, thus achieving sunshade and energy saving.

Benefits of technology

It effectively reduces the transpiration of green plants, extends their lifespan, and achieves green energy conservation by automatically adjusting the shading components to adapt to environmental changes and reduce energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a novel landscaping flower stand. According to the technical scheme, support legs are fixedly installed at the front corners and the rear corners of the left outer side wall and the right outer side wall of a green plant containing frame correspondingly, semicircular sliding rings are fixedly installed at the front corners and the rear corners of the tops of the left side wall and the right side wall of the green plant containing frame correspondingly, and the left semicircular sliding rings and the right semicircular sliding rings are movably sleeved with the left end and the right end of a sunshade assembly correspondingly; the sunshade assembly comprises an organ sunshade curtain, one end of the organ sunshade curtain is fixedly connected with the top end of the rear side of the green plant placing frame, thin photovoltaic panels are fixedly arranged on all outward folding faces of the organ sunshade curtain respectively, and the two ends of the uppermost folding face of the organ sunshade curtain are fixedly connected with the two ends of a driving assembly respectively; the driving assembly drives the organ sunshade curtain to be unfolded or closed along the semicircular sliding rings through the rotating arms at the two ends. The sun-shading device has the advantages that the sun-shading assembly is automatically controlled to be unfolded or closed according to the external ultraviolet intensity, green plants are prevented from being exposed to the sun, external power supply is not needed, and energy is saved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of landscaping, and relates to a novel landscaping flower stand. BACKGROUND

[0002] Most of the gardens need to install flower stands to place the potted green plants, and the traditional flower stands lack corresponding sunshade structures, so that in the hot summer, the green plants that are not resistant to the sun are exposed to the sunlight, the plant transpiration is too strong, the branches and leaves are prone to wither, and the green plants are prone to death in serious cases, causing economic losses; in addition, some flower stands with sunshade functions are not intelligent enough and need manual adjustment and cannot be flexibly adjusted according to the changes of external environment.

[0003] Therefore, the utility model provides a novel landscaping flower stand to solve the above problems. UTILITY MODEL CONTENTS

[0004] In view of the problems in the prior art, the utility model discloses a novel landscaping flower stand, adopts the technical scheme that a green plant placing frame is fixedly installed on the front and rear two corners of the top of the left and right side walls of the green plant placing frame, the left and right semicircular sliding rings are movably sleeved with the left and right ends of the sunshade assembly, the sunshade assembly comprises an organ pipe sunshade curtain fixedly connected with the rear top end of the green plant placing frame, the thin photovoltaic panels are fixedly arranged on each folding surface of the organ pipe sunshade curtain, the two ends of the uppermost folding surface of the organ pipe sunshade curtain are fixedly connected with the two ends of the driving assembly, the driving assembly comprises rotating arms fixedly connected with the two ends of the uppermost folding surface of the organ pipe sunshade curtain, the rear ends of the opposite sides of the rotating arms are fixedly connected through connecting columns, the front ends of the opposite sides of the rotating arms are fixedly connected with rotating shafts, the rotating shafts are rotatably inserted into the centers of the top edges of the left and right side walls of the green plant placing frame, the outer ends of the rotating shafts are fixedly sleeved with first synchronous pulleys, the synchronous pulleys are sleeved with synchronous belts, the lower ends of the synchronous belts are sleeved with second synchronous pulleys, the second synchronous pulleys are fixedly sleeved with the two ends of a synchronous shaft, the synchronous shaft is drivingly installed at the lower part of the green plant placing frame, the left side of the synchronous shaft is fixedly sleeved with a driven pulley, the rear edge of the driven pulley is meshed with a driving wheel tooth, the driving wheel is fixedly sleeved with the output shaft of a motor, and the motor is installed at the lower side wall of the green plant placing frame.

[0005] As a preferred scheme of the utility model, the left and right outer side walls of the green plant placing frame are also fixedly installed with protective covers, and the front and rear two side edges of the bottom of the green plant placing frame are evenly provided with a plurality of water permeation holes.

[0006] As one preferred scheme of the utility model, the rotating arm is fixedly installed with a ring on the side opposite to the corresponding half-round fairlead, and the ring is movably sleeved on the half-round fairlead; thus, the stability between the rotating arm and the half-round fairlead can be improved.

[0007] As one preferred scheme of the utility model, a notch is formed in the middle of each end of each folding surface of the organ sunshade curtain; thus, when the organ sunshade curtain is unfolded, the two ends thereof can be evenly unfolded around the half-round fairlead.

[0008] As one preferred scheme of the utility model, ultraviolet detection sensors are fixedly installed on the front ends of the top of the left and right protective covers; thus, the ultraviolet intensity of the environment around the flower stand can be determined, the detected ultraviolet data can be transmitted to the control system through the internet of things controller, and then it is automatically determined whether the sunshade assembly is unfolded or not, so as to cool the green plants.

[0009] As one preferred scheme of the utility model, an internet of things controller and a lithium battery are fixedly installed on the front and back of the frame wall in the left protective cover.

[0010] The utility model has the advantages that: through the ultraviolet detection sensor, the ultraviolet intensity of the environment around the flower stand is determined; in the hot summer, when the sun is scorching, the detected ultraviolet data can be transmitted to the control system through the internet of things controller, and then the driving assembly is remotely controlled to unfold the sunshade assembly, so as to shade the green plants placed in the green plant placing frame, weaken the transpiration of the green plants, reduce the temperature of the green plants, and prolong the service life of the green plants; meanwhile, after the organ sunshade curtain is unfolded, the photovoltaic panel installed on the surface thereof can convert solar energy into electric energy and store the electric energy in the lithium battery, so as to supply power for the device without providing extra electric energy, and realize green energy saving. BRIEF DESCRIPTION OF DRAWINGS

[0011] Fig. 1 It is a whole structure schematic view of the utility model;

[0012] Fig. 2 It is a rear side schematic view of the sunshade assembly of the utility model;

[0013] Fig. 3 It is a driving assembly schematic view of the utility model;

[0014] Fig. 4 It is a driving assembly lower view schematic view of the utility model.

[0015] In the figure: 1- green plant placement frame, 2- sunshade assembly, 3- drive assembly, 4- motor, 5- ultraviolet detection sensor, 6- Internet of Things controller, 7- lithium battery, 11- support leg, 12- semicircular fairlead, 13- protective cover, 14- water seepage hole, 21- organ sunshade curtain, 211- slot, 22- thin photovoltaic panel, 31- rotating arm, 311- ring sleeve, 32- connecting column, 33- rotating shaft, 34- first synchronous pulley, 35- synchronous belt, 36- second synchronous pulley, 37- synchronous shaft, 38- driven wheel, 39- drive wheel. DETAILED DESCRIPTION

[0016] Example 1

[0017] As Figs. 1 to 4The utility model discloses a novel garden greening flower stand, adopt the technical scheme, including green plant placing frame 1, the front and back four corners of green plant placing frame 1 left and right outer lateral wall are fixedly installed support leg 11, the top of green plant placing frame 1 left and right lateral wall's front and back two corners are fixedly installed semicircle fairlead 12, the left and right outer lateral wall of green plant placing frame 1 still fixedly installs protective cover 13, the bottom of green plant placing frame 1's front and back two side edges are evenly provided with several water seepage holes 14, and the left and right semicircle fairlead 12 are movably sleeved together with the left and right two ends of sunshade assembly 2 respectively, sunshade assembly 2 includes the organ shade curtain 21 of one end with green plant placing frame 1 rear side top fixed connection, the two ends of each folding surface of organ shade curtain 21 are respectively provided with the notch 211, the each folding surface of organ shade curtain 21 outward is fixedly set with thin photovoltaic panel 22 respectively, and each thin photovoltaic panel 22 is connected together through electric wire, and is electrically connected between corresponding photoelectric converter and lithium cell 7, the two ends of the folding surface of organ shade curtain 21 uppermost are fixedly connected with the two ends of drive assembly 3 respectively, drive assembly 3 includes the rotating arm 31 of one end with the two ends of the folding surface of organ shade curtain 21 uppermost fixed connection respectively, the one side fixed mounting ring 311 of rotating arm 31 with corresponding semicircle fairlead 12 is opposite, ring 311 is movably sleeved on semicircle fairlead 12, the rear end of the opposite side of left and right rotating arm 31 is fixedly connected through connecting column 32, and the front end of the opposite side of left and right rotating arm 31 is fixedly connected with pivot 33 respectively, and the center of the top edge of green plant placing frame 1 left and right lateral wall is rotatably installed with left and right pivot 33 respectively, and the one end of left and right pivot 33 is fixedly sleeved with first synchronous pulley 34 respectively, and the first synchronous pulley 34 of left and right is respectively sleeved with synchronous belt 35, and the lower end of left and right synchronous belt 35 is sleeved with second synchronous pulley 36, and the two ends of second synchronous pulley 36 are fixedly sleeved with synchronous shaft 37 respectively, the synchronous shaft 37 is drivingly installed in the lower part of green plant placing frame 1, the left side fixed sleeve of synchronous shaft 37 is driven wheel 38, and the rear side edge of driven wheel 38 is engaged with driving wheel 39 gear, and driving wheel 39 is fixedly sleeved on the output shaft of motor 4, and the lower lateral wall of green plant placing frame 1 is installed with motor 4, and the top front end of left and right protective cover 13 is fixedly installed with ultraviolet detection sensor 5 respectively, and the front and back of frame body wall in left protective cover 13 are fixedly installed with internet of things controller 6 and lithium cell 7 respectively.

[0018] The utility model discloses a working principle: in use, the green plant that is not easy to expose to the sun is placed in the green plant placing frame 1, and the ultraviolet detection sensor 5 of both sides detects the ultraviolet intensity of outside, and if it is below the threshold range of predetermining, the control system can not start the sunshade component 2 through remote analysis, and if the ultraviolet intensity that detects exceeds the threshold range of setting, the control system sends the instruction to the internet of things controller 6 remotely, and the internet of things controller 6 controls motor 4 rotation, and motor 4 is driven wheel 39, driven wheel 38 mechanical transmission, makes synchronous shaft 37 drive both sides second synchronous pulley 36 simultaneously same direction rotation, and further through synchronous belt 35, first synchronous pulley 34 mechanical transmission, drive the rotary arm 31 of left and right along semicircle slide ring 12 forward rotation, and further drive the organ sunshade curtain 21 along both sides semicircle slide ring 12 unroll, form the sunshade top of arc, avoid the green plant to be exposed to the sun by sunlight, simultaneously, the organ sunshade curtain 21 drive thin photovoltaic panel 22 unroll, and sunlight can pass through thin photovoltaic panel 22, and convert light energy into electric energy, and store in lithium cell 7.

[0019] The electrical connection mode or structure not described in detail in the present document is prior art.

[0020] The above although has made the detailed explanation to the specific embodiment of the utility model, but the utility model is not limited to the above embodiment, still can make various changes within the knowledge range of the ordinary skill in the art of the person without the departure from the utility model's purpose, and the modification or deformation without creative labor still is within the protection scope of the utility model.

Claims

1. A new type of garden flower stand, characterized in that: The system includes a plant placement frame (1), with support legs (11) fixedly installed at the front and rear four corners of the left and right outer walls of the plant placement frame (1), and semi-circular sliding rings (12) fixedly installed at the front and rear two corners of the top of the left and right side walls of the plant placement frame (1). The left and right semi-circular sliding rings (12) are respectively movably fitted together with the left and right ends of the shading assembly (2). The shading assembly (2) includes a accordion shading curtain (21) with one end fixedly connected to the rear top of the plant placement frame (1). Thin photovoltaic panels (22) are fixedly installed on each outward folding surface of the accordion shading curtain (21). The two ends of the uppermost folding surface of the accordion shading curtain (21) are fixedly connected to the two ends of the driving assembly (3). The driving assembly (3) includes a rotating arm (31) fixedly connected to the two ends of the uppermost folding surface of the accordion shading curtain (21). The rear ends of the left and right rotating arms (31) on opposite sides are fixedly connected by a connecting column (32). Next, the front ends of the left and right rotating arms (31) on opposite sides are respectively fixedly connected to the rotating shafts (33). The left and right rotating shafts (33) are respectively rotatably inserted into the center of the top edge of the left and right side walls of the plant placement frame (1). The outer ends of the left and right rotating shafts (33) are respectively fixedly fitted with the first synchronous pulleys (34). The left and right first synchronous pulleys (34) are respectively fitted with synchronous belts (35). The lower ends of the left and right synchronous belts (35) are fitted with the second synchronous pulleys (36). The left and right second synchronous pulleys (36) are respectively fixedly fitted at both ends of the synchronous shaft (37). The synchronous shaft (37) is actively installed in the lower part of the plant placement frame (1). The left side of the synchronous shaft (37) is fixedly fitted with the driven wheel (38). The rear edge of the driven wheel (38) meshes with the teeth of the drive wheel (39). The drive wheel (39) is fixedly fitted on the output shaft of the motor (4). The motor (4) is installed on the lower side wall of the plant placement frame (1).

2. The novel garden greening flower stand according to claim 1, characterized in that: The left and right outer walls of the plant placement frame (1) are also fixedly equipped with protective covers (13), and several drainage holes (14) are evenly opened on the front and rear edges of the bottom of the plant placement frame (1).

3. The novel garden landscaping flower stand according to claim 1, characterized in that: The rotating arm (31) is fixedly mounted with a ring sleeve (311) on the side opposite to the corresponding semicircular slip ring (12), and the ring sleeve (311) is movably fitted on the semicircular slip ring (12).

4. The novel garden landscaping flower stand according to claim 1, characterized in that: The accordion sunshade (21) has slots (211) at the middle of both ends of each fold surface.

5. The novel garden landscaping flower stand according to claim 2, characterized in that: Ultraviolet detection sensors (5) are fixedly installed on the top front end of the left and right protective covers (13).

6. The novel garden landscaping flower stand according to claim 2, characterized in that: The IoT controller (6) and lithium battery (7) are fixedly installed on the front and back of the frame wall inside the protective cover (13) on the left.