Split type flower box solar lighting structure

Through the split flower box solar lighting structure, the main solar frame is used to store light energy and supply supplementary light to the auxiliary lighting frame at night, which solves the problem that the plants in the flower box cannot continuously receive light, achieves energy saving and emission reduction and improves the aesthetics. It is suitable for the renovation of existing flower boxes.

CN223345363UActive Publication Date: 2025-09-16ZHEJIANG AILIAN ECOLOGICAL ENVIRONMENT CO LTD
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Patent Information

Application Number
CN202423008210.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-09-16
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Plants in existing flower boxes cannot continuously receive light, which affects their growth. In addition, existing lighting facilities have high energy consumption and high costs, which is not conducive to large-scale promotion.

Method used

A split flower box solar lighting structure is designed. The main solar frame converts and stores light energy during the day and supplies it to the auxiliary lighting frame for supplementary lighting at night. Combined with the auxiliary lighting frame, it enhances the aesthetics and decorative effects.

Benefits of technology

It achieves continuous lighting for plants, reduces energy consumption, improves greening effects, reduces renovation costs, has strong adaptability, and is suitable for renovation of existing flower boxes.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a split type flower box solar lighting structure, and belongs to the technical field of municipal greening. A split type flower box solar lighting structure comprises a solar main frame and an auxiliary lighting frame which are detachably installed on a flower box. The solar main frame and the auxiliary lighting frame which are integrated or split are detachably installed on the flower box, the solar main frame can receive ambient light and convert the ambient light into electric energy to be stored under the condition that the ambient light is sufficient in the daytime, and power is supplied to the auxiliary lighting frame under the condition that the ambient light is weak at night and the like. Light is supplemented for plants in the flower box through the auxiliary lighting frame, meanwhile, auxiliary lighting is conducted on a road, growth of the plants can be facilitated while the decoration effect is improved, self-supply of electric energy can be achieved, the requirements for energy conservation and emission reduction are met, in addition, the auxiliary lighting frame can be directly matched with the flower box to form an integrated structure, and the auxiliary lighting frame can be additionally arranged on an existing flower box. The improvement cost of an existing scene is lower, and large-scale popularization and application are facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of municipal greening, in particular to a split-type flower box solar lighting structure. Background Art

[0002] With the renewal of urban roads and the improvement of municipal greening requirements, more and more roads are setting up isolation belts between different lanes. In addition, in order to improve the aesthetics, flower boxes are usually used to extend along the road direction to form isolation belts, which can not only achieve road isolation but also improve urban greening, resulting in a large market demand for flower boxes and their wide application.

[0003] Currently, existing flower boxes on the market, like those often seen on roadsides, can be made of iron, wood, or plastic. In these cases, the box has a cavity with an upper opening. During use, soil is placed in the cavity, and plants are planted directly into the soil through the upper opening. While these flower boxes are simple in structure, they only serve the purpose of planting plants and isolating roads, resulting in a relatively limited functionality and low utilization. Furthermore, plants planted in these flower boxes can only receive light from the natural environment and are typically placed in heavily obstructed areas on either side of the road. Their normal light exposure time is limited, and at night, for example, these plants are unable to receive consistent and stable light, which can affect their growth and, consequently, the greening effect. While municipalities can supplement these with lighting systems like streetlights, the light sources are typically far away, resulting in poor lighting effects. Improving this lighting effect requires increasing the streetlight power, which increases energy consumption and costs, hindering large-scale adoption. Summary of the Invention

[0004] In response to the above-mentioned problems existing in the prior art, the present invention aims to provide a split flower box solar lighting structure, which is equipped with a solar main frame and an auxiliary lighting frame. The solar main frame converts ambient light into electrical energy for storage during the day, and supplies it to the auxiliary lighting frame at night to supplement the light for plants. At the same time, it can also assist in lighting the road, achieve energy conservation and emission reduction, and also enhance the decorative effect and make it more beautiful. In addition, it can also be installed on existing flower boxes, with lower modification costs, which is conducive to large-scale promotion and use.

[0005] The specific technical solutions are as follows:

[0006] A split-type flower box solar lighting structure, which can be disassembled and installed on the flower box, has the following characteristics: a solar main frame and an auxiliary lighting frame, the auxiliary lighting frame is installed on the solar main frame or set beside the solar main frame,

[0007] In addition, the solar main frame includes a rod and a solar panel. The rod is arranged vertically, the lower end of the rod is inserted into the flower box, and the upper end of the rod is installed with a solar panel.

[0008] The auxiliary lighting frame includes a mounting rod and a lighting lamp. The lower end of the mounting rod is mounted on the solar main frame or inserted into the flower box. The upper end of the mounting rod is equipped with a lighting lamp, and the lighting lamp is electrically connected to the solar panel.

[0009] In the above-mentioned split-type flower box solar lighting structure, when the auxiliary lighting frame is installed on the main solar frame, the mounting rod is coaxially arranged with the insertion rod and the two form a whole rod body.

[0010] In the above-mentioned split-type flower box solar lighting structure, the auxiliary lighting frame further includes a lampshade, which is installed on the top of the mounting rod, and the lighting lamp is installed in the lampshade.

[0011] The above-mentioned split flower box solar lighting structure, wherein the solar main frame also includes a plurality of auxiliary panels, the plurality of auxiliary panels and the solar panels are arranged in an upper and lower layer manner in the vertical direction, and the solar panels are located at the top layer, and the plurality of auxiliary panels are fixedly installed on the insertion rods.

[0012] In the above-mentioned split-type flower box solar lighting structure, there are two insertion rods, which are respectively arranged at both ends of the solar panel.

[0013] In the above-mentioned split flower box solar lighting structure, the solar panel includes a panel frame and a solar module. The panel frame is fixedly connected to the insertion rod, and the solar module is laid on the upper surface of the panel frame.

[0014] In the above-mentioned split-type flower box solar lighting structure, the solar panels and the auxiliary panels are both shaped like eaves.

[0015] The above-mentioned split flower box solar lighting structure also includes a matching frame, which includes a support plate and a fixing rod. The lower end of the fixing rod is inserted into the flower box and is located next to the solar main frame. The support plate is installed on the upper end of the fixing rod, and a font profiling structure is provided on the support plate.

[0016] The above-mentioned split flower box solar lighting structure further includes a fixing block, which is installed on the inner wall of the flower box. The fixing block is provided with a socket, and the lower end of the insertion rod and / or the installation rod is inserted into the socket.

[0017] The above-mentioned split flower box solar lighting structure is characterized in that guide slopes are provided at both ends of the fixing block so that the cross-section of the fixing block in the horizontal plane is arranged in a trapezoidal shape, and when the fixing block is installed on the inner wall of the flower box, the surface where the long side of the fixing block is located is close to the inner wall of the flower box.

[0018] In the above-mentioned split-type flower box solar lighting structure, the fixing block is welded to the flower box or connected to the flower box with screws.

[0019] The positive effects of the above technical solution are:

[0020] The above-mentioned split flower box solar lighting structure is achieved by removing and installing a solar main frame and an auxiliary lighting frame on the flower box. The solar main frame receives ambient light during the day and converts it into electrical energy for storage. Moreover, it can supply the auxiliary lighting frame to supplement the plants at night, which is not only beneficial to the growth of plants in the flower box, but also can provide auxiliary lighting for the road, achieving energy conservation and emission reduction, and realizing low-cost urban greening renewal. In addition, the decorative effect and aesthetics are enhanced through the morphological design of the solar main frame and the auxiliary lighting frame. Moreover, the solar main frame and the auxiliary lighting frame can be installed on the existing flower box, and the existing flower box can be directly modified without the need to replace the flower box as a whole. It has better adaptability, reduces the modification cost, and is conducive to large-scale promotion and use. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a structural diagram of an embodiment of a split flower box solar lighting structure of the utility model;

[0022] Figure 2 This is a structural diagram of a solar main frame and an auxiliary lighting frame in a preferred embodiment of the present utility model;

[0023] Figure 3 This is a structural diagram of a matching frame according to a preferred embodiment of the present invention.

[0024] In the attached figure: 1. Flower box; 2. Solar main frame; 21. Insertion rod; 22. Solar panel; 23. Auxiliary panel; 221. Panel frame; 222. Solar module; 3. Auxiliary lighting frame; 31. Mounting rod; 32. Lighting lamp; 33. Lampshade; 4. Coordinating frame; 41. Support plate; 42. Fixing rod; 5. Fixing block. DETAILED DESCRIPTION

[0025] In order to make the technical means, creative features, objectives and effects of the present invention easier to understand, the following embodiments are combined with the attached Figure 1 To the attached Figure 3 The technical solution provided by the present invention is described in detail, but the following content is not intended to limit the present invention.

[0026] Figure 1 This is a structural diagram of an embodiment of a split flower box solar lighting structure of the utility model; Figure 2 This is a structural diagram of the solar main frame and auxiliary lighting frame of a preferred embodiment of the utility model. Figure 1 and Figure 2As shown, the split flower box solar lighting structure provided in this embodiment can be disassembled and installed on the flower box, realizing a split arrangement between the flower box 1 and the split flower box solar lighting structure. That is, it can be directly installed on the flower box 1 to form an integrated structure, and can also be added to the existing flower box 1 to directly transform the existing flower box 1, avoiding the high cost problem caused by the need to replace the flower box 1 as a whole, meeting different usage needs, and having better adaptability and lower transformation costs, which is conducive to large-scale promotion and use. In addition, the split flower box solar lighting structure provided in this embodiment includes a solar main frame 2 and an auxiliary lighting frame 3. That is, the solar main frame 2 receives the ambient light during the day and converts it into electrical energy for storage. The auxiliary lighting frame 3 is used to supplement the light for the plants in the flower box 1 in dim light conditions, which is beneficial to the growth of the plants. At the same time, it can also provide auxiliary lighting for the road. In addition, the flower box 1 can be decorated to improve its aesthetics and enhance the urban greening effect.

[0027] Specifically, the auxiliary lighting frame 3 is installed on the solar main frame 2 or is arranged beside the solar main frame 2. That is, when the auxiliary lighting frame 3 is installed on the solar main frame 2, the solar main frame 2 and the auxiliary lighting frame 3 are combined into one, which is convenient for manufacturing and later installation and reduces the occupancy of the plane space; in addition, the auxiliary lighting frame 3 and the solar main frame 2 can also be arranged separately and independently to meet different installation occasions, and can also be designed into different styles according to needs, and the structural design is more reasonable.

[0028] Specifically, the solar main frame 2 includes a rod 21 and a solar panel 22. The rod 21 is arranged vertically, and the lower end of the rod 21 is inserted into the flower box 1, thereby achieving the installation of the rod 21 on the flower box 1, meeting the use requirement of installing the solar main frame 2 on the flower box 1. In addition, a solar panel 22 is also installed at the upper end of the rod 21, that is, the rod 21 serves as a support structure for the solar panel 22 to be installed on the flower box 1, meeting the use requirement of stable installation of the solar panel 22.

[0029] Specifically, the auxiliary lighting frame 3 includes a mounting rod 31 and a lighting lamp 32. During installation, the lower end of the mounting rod 31 is mounted on the solar main frame 2 or inserted into the flower box 1. When the lower end of the mounting rod 31 is mounted on the solar main frame 2, the auxiliary lighting frame 3 is installed on the solar main frame 2, meeting the structural design requirement of the two being integrated. When the lower end of the mounting rod 31 is inserted into the flower box 1, the auxiliary lighting frame 3 is inserted into the flower box 1 independently of the solar main frame 2, so that the auxiliary lighting frame 3 can be installed next to the solar main frame 2. In addition, a lighting lamp 32 is installed at the upper end of the mounting rod 31, and the lighting lamp 32 is electrically connected to the solar panel 22, that is, the mounting rod 31 provides a support structure for the installation of the lighting lamp 32 on the flower box 1. In addition, the lighting lamp 32 is powered by the solar panel 22, meeting the use requirements of energy conservation and emission reduction.

[0030] More specifically, when the auxiliary lighting frame 3 is installed on the solar main frame 2, the mounting rod 31 is set to be coaxial with the insertion rod 21, and the mounting rod 31 and the insertion rod 21 are a whole rod body, that is, when the auxiliary lighting frame 3 and the solar main frame 2 are arranged as an integral structure, the auxiliary lighting frame 3 and the solar main frame 2 share the same rod body, which not only has a simpler structure, more convenient processing and manufacturing, and reduces assembly steps, but also ensures that the two have better integrity and a more stable structure.

[0031] More specifically, the auxiliary lighting frame 3 includes, in addition to the above-mentioned mounting rod 31 and lighting lamp 32, a lampshade 33. At this time, the lampshade 33 is installed on the top of the mounting rod 31, and at the same time, the lighting lamp 32 is installed in the lampshade 33, that is, the lighting lamp 32 is externally protected by the lampshade 33, which has higher safety assurance. In addition, the overall aesthetics can be improved through the contoured design of the lampshade 33, and the structural design is more reasonable.

[0032] More specifically, the solar main frame 2 includes, in addition to the aforementioned rods 21 and solar panels 22, several auxiliary panels 23. These panels are arranged vertically alongside the solar panels 22 in an upper and lower layer arrangement, forming a multi-layered structure. This gives the solar main frame 2 a more layered feel and meets the requirements of contoured design. Furthermore, with the solar panels 22 positioned at the top, the auxiliary panels 23 are fixedly mounted on the rods 21. This ensures the stable installation of the auxiliary panels 23 on the flower box 1, while also ensuring that the solar panels 22 receive ambient light immediately, preventing obstruction and resulting in a more rational structural design.

[0033] More specifically, the solar main frame 2 is provided with two insertion rods 21. In this case, the two insertion rods 21 are respectively placed at the two ends of the solar panel 22, so that both ends of the solar panel 22 have corresponding supports, which improves the structural strength of the solar main frame 2 and is more stable after installation. It is worth noting that when the solar main frame 2 is provided with multiple auxiliary panels 23, the two ends of each auxiliary panel 23 are also fixedly connected to the two insertion rods 21. That is, the auxiliary panels 23 can serve as the supporting connection structure of the two insertion rods 21, further improving the structural strength of the solar main frame 2 and making the structural design more reasonable.

[0034] More specifically, the solar panel 22 of the solar main frame 2 includes a panel frame 221 and a solar module 222. During installation, the panel frame 221 is fixedly connected to the plug rod 21, and the solar module 222 is laid on the upper surface of the panel frame 221. That is, the copper pot panel frame 221 serves as a support carrier, providing a stable carrier for the laying of the solar module 222, improving the structural strength of the solar panel 22 and extending its service life. It is worth noting that the solar module 222 includes a battery to achieve electrical energy storage. In addition, since the solar module 222 is a conventional structure in the power generation field on the market, its application is very mature and falls within the scope of existing technology. It can be directly purchased and laid according to the specifications and dimensions. Therefore, its specific structure will not be described in detail here.

[0035] More specifically, the battery of the solar module 222 is embedded within the panel frame 221, achieving concealed installation of the battery. Furthermore, the solar module 222 is electrically connected to the lighting 32 via wires. Preferably, both the insertion rod 21 and the mounting rod 31 are hollow tubes. The wires for electrically connecting the solar module 222 and the lighting 32 are passed through the hollow cores of the insertion rod 21 and the mounting rod 31, achieving concealed wiring. This allows for concealed installation of the power supply circuit and battery, further enhancing aesthetics and safety.

[0036] More specifically, the solar panels 22 and the auxiliary panels 23 of the solar main frame 2 are shaped into the shape of eaves, creating a cultural atmosphere of Jiangnan eaves, enhancing the aesthetics, and better meeting the needs of urban road use.

[0037] Figure 3 This is a structural diagram of a matching frame of a preferred embodiment of the utility model. Figure 1 and Figure 3 As shown, a matching frame 4 is also provided in the flower box 1. In this case, the matching frame 4 includes a support plate 41 and a fixing rod 42. During installation, the lower end of the fixing rod 42 is inserted into the flower box 1 and is located next to the solar main frame 2. That is, the matching frame 4 is installed in the flower box 1 through the fixing rod 42. At the same time, the support plate 41 is installed on the upper end of the fixing rod 42, and a font profiling structure is provided on the support plate 41. The fixing rod 42 provides stable support for the support plate 41, meeting the use requirement of stable installation in the flower box 1. In addition, the font profiling structure forms an external decoration, further enhancing the aesthetics. Preferably, a light-emitting lamp can also be installed in the font profiling structure, and the light-emitting lamp is also electrically connected to the solar panel 22 of the solar main frame 2, which also meets the use requirements of supplementary lighting for plants in the flower box 1 and auxiliary lighting for the road.

[0038] More specifically, the split-type flower box solar lighting structure also includes a fixing block 5. In this case, the fixing block 5 is installed on the inner wall of the flower box 1, thereby achieving stable installation of the fixing block 5 in the flower box 1. At the same time, a socket is provided on the fixing block 5, and the lower end of the insertion rod 21 and / or the installation rod 31 is inserted into the socket. That is, when the solar main frame 2 and the auxiliary lighting frame 3 are an integral structure, only the insertion rod 21 is inserted into the socket of the fixing block 5. When the solar main frame 2 and the auxiliary lighting frame 3 are arranged separately, the lower ends of the insertion rod 21 and the installation rod 31 are both inserted into the socket of the fixing block 5, so that the fixing block 5 serves as a transition structure for the solar main frame 2 and the auxiliary lighting frame 3 to be installed in the flower box 1, meeting the use requirements of fast and stable installation. It is worth noting that in addition to the above-mentioned solution of installing the fixing block 5 on the inner wall of the flower box 1, it also includes but is not limited to being directly buried in the soil of the flower box 1, which also meets the use requirements of installing it in the flower box 1.

[0039] More specifically, inclined guide surfaces are provided at both ends of the fixing block 5, creating a trapezoidal cross-section in the horizontal plane. This allows for a smooth transition between the ends of the fixing block 5, minimizing interference when placed within the flower box 1. Furthermore, when the fixing block 5 is installed on the inner wall of the flower box 1, the long sides of the fixing block 5 are in close contact with the inner wall of the flower box 1. This ensures that the fixing block 5 has a maximum contact surface with the inner wall of the flower box 1 while minimizing interference, thereby improving the stability of the fixing block 5 after installation.

[0040] More specifically, the fixing block 5 is welded to the flower box 1 or screwed to the flower box 1, which increases the stability of the fixing block 5 after installation on the flower box 1, thereby ensuring the connection strength between the split flower box solar lighting structure and the flower box 1 and extending the service life.

[0041] The split flower box solar lighting structure provided in this embodiment includes a solar main frame 2 and an auxiliary lighting frame 3, which are disassembled and installed on the flower box 1; by disassembling and installing the integrated or split solar main frame 2 and auxiliary lighting frame 3 on the flower box 1, the solar main frame 2 can receive ambient light and convert it into electrical energy for storage when the ambient light is sufficient during the day, and power the auxiliary lighting frame 3 when the ambient light is weak at night. The auxiliary lighting frame 3 is used to supplement the light for the plants in the flower box 1 and to provide auxiliary lighting for the road. While improving the decorative effect, it can also be beneficial to the growth of plants, and can achieve self-sufficiency in electricity to meet the needs of energy conservation and emission reduction. In addition, it can directly cooperate with the flower box 1 to form an integrated structure, and can also be installed on the existing flower box 1, so it has better adaptability and lower cost for transformation of existing scenes, which is conducive to large-scale promotion and use.

[0042] The above are only preferred embodiments of the present invention and do not limit the implementation methods and protection scope of the present invention. Those skilled in the art should be aware that all solutions obtained by equivalent substitutions and obvious changes made using the description and illustrations of the present invention should be included in the protection scope of the present invention.

Claims

1. A split flower box solar lighting structure, which can be disassembled and installed on the flower box, characterized in that: include: A solar main frame and an auxiliary lighting frame, wherein the auxiliary lighting frame is installed on the solar main frame or arranged beside the solar main frame, Furthermore, the solar main frame includes a rod and a solar panel, the rod is arranged vertically, the lower end of the rod is inserted into the flower box, and the upper end of the rod is installed with the solar panel; The auxiliary lighting frame includes a mounting rod and a lighting lamp. The lower end of the mounting rod is mounted on the solar main frame or inserted into the flower box. The upper end of the mounting rod is mounted with the lighting lamp, and the lighting lamp is electrically connected to the solar panel.

2. The split flower box solar lighting structure according to claim 1, characterized in that: When the auxiliary lighting rack is installed on the solar main rack, the mounting rod is coaxially arranged with the insertion rod and the two form a whole rod body.

3. The split flower box solar lighting structure according to claim 1, characterized in that: The auxiliary lighting frame further comprises a lampshade, which is mounted on the top of the mounting rod, and the lighting lamp is mounted in the lampshade.

4. The split flower box solar lighting structure according to claim 1, characterized in that: The solar main frame also includes a plurality of auxiliary panels, which are arranged vertically with the solar panels in an upper and lower layer, and the solar panels are located at the uppermost layer. The auxiliary panels are fixedly mounted on the insertion rods.

5. The split flower box solar lighting structure according to claim 1, characterized in that: There are two insertion rods, which are respectively arranged at two ends of the solar panel.

6. The split flower box solar lighting structure according to claim 1, characterized in that: The solar panel includes a panel frame and a solar module. The panel frame is fixedly connected to the insertion rod, and the solar module is laid on the upper surface of the panel frame.

7. The split flower box solar lighting structure according to claim 1, characterized in that: It also includes a matching frame, which includes a support plate and a fixing rod. The lower end of the fixing rod is inserted into the flower box and is located beside the solar main frame. The support plate is installed on the upper end of the fixing rod, and a font profiling structure is provided on the support plate.

8. The split flower box solar lighting structure according to claim 1, characterized in that: It also includes a fixing block, which is installed on the inner wall of the flower box. The fixing block is provided with a socket, and the lower end of the insertion rod and / or the installation rod is inserted into the socket.

9. The split flower box solar lighting structure according to claim 8, characterized in that: Both ends of the fixing block are provided with guiding inclined surfaces so that the cross section of the fixing block in the horizontal plane is arranged in a trapezoidal shape, and when the fixing block is installed on the inner wall of the flower box, the surface where the long side of the fixing block is located is in close contact with the inner wall of the flower box.

10. The split flower box solar lighting structure according to claim 8 or 9, characterized in that: The fixing block is welded to the flower box or connected to the flower box with screws.