Adjustable planting frame for municipal greening

Through the adjustment components driven by threaded rods and servo motors, the size and height adjustment of the municipal green planting rack is achieved, solving the problem of limited adjustment functions of the existing planting racks, and improving practicality and adaptability.

CN223110597UActive Publication Date: 2025-07-18徐岳云
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Patent Information

Application Number
CN202421443049.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-07-18
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

The existing municipal greening planting rack has fixed size and limited adjustment function, making it difficult to apply to different usage environments, and its practicality needs to be improved.

Method used

The municipal greening adjustable planting frame is adopted that includes a placement structure and a support structure. Through the adjustment components driven by threaded rods and servo motors, the synchronous adjustment of the placement groove and the support structure is achieved to meet different environmental needs.

Benefits of technology

It realizes flexible adjustment of the size and height of the planting rack, improves the practicality and adaptability of the planting rack, and meets the needs of various usage environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an adjustable planting frame for municipal greening, and relates to the field of municipal greening tools. The adjustable planting frame for municipal greening comprises a placing structure and a supporting structure, the placing structure comprises a plurality of placing grooves used for placing potted plants, a connecting assembly and a first adjusting assembly, the first adjusting assembly comprises a first shell, and first threaded rods are rotatably mounted on a plurality of side walls of the first shell through bearing seats; the connecting assembly comprises first threaded cylinders which are in threaded connection with the outer sides of the first threaded rods, and connecting rods are fixedly mounted at the tail ends of the first threaded cylinders. According to the adjustable planting frame for municipal greening, through cooperative arrangement of the multiple placement grooves, the connecting assemblies and the first adjusting assemblies in the placement structure, synchronous adjustment of the multiple placement grooves can be achieved by controlling synchronous movement of multiple first threaded cylinders, and the size of the whole placement structure can be conveniently adjusted according to use requirements; the planting frame is suitable for different use environments, and the practicability of the planting frame is improved.
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Description

Technical Field

[0001] The present application relates to the field of municipal greening tools, and specifically to an adjustable planting rack for municipal greening. Background Art

[0002] Municipal greening refers to the activities carried out by urban management departments to improve the urban environment, enhance the urban landscape and the quality of the living environment by planting trees, lawns, flowers and other plants, as well as planning and constructing greening facilities such as parks, green spaces and landscape belts.

[0003] In municipal greening planting, in order to facilitate the planting of flowers, shrubs, etc., a greening planting rack is usually used, which can be used for vertical greening, three-dimensional greening or wall greening, adding green vegetation to the city and enhancing the environmental beauty.

[0004] Although the planting racks in the prior art can realize the function of placing flowers, shrubs, etc. through the structures of the prior art, there are still the following defects: they are often of fixed size and have limited adjustment functions. In the actual use of such devices, it is not convenient to adjust the size of the planting rack according to the use requirements, and it is difficult to be applicable to different use environments, and the practicability needs to be improved. Summary of the Utility Model

[0005] (1) Technical Problems to be Solved

[0006] In view of the deficiencies of the prior art, the present application provides an adjustable planting rack for municipal greening, which solves the problems mentioned in the above background art.

[0007] (2) Technical Solutions

[0008] To achieve the above objectives, the present application is realized through the following technical solutions: an adjustable planting rack for municipal greening, including a placement structure and a support structure. The placement structure includes a plurality of placement grooves for placing potted plants, a connection component and a first adjustment component. The first adjustment component includes a first housing, and first threaded rods are rotatably installed on multiple side walls of the first housing through bearing seats. The connection component includes first threaded cylinders threadedly connected to the outside of the multiple first threaded rods. The tails of the multiple first threaded cylinders are fixedly installed with connecting rods, and the multiple placement grooves are respectively fixedly connected to the tails of the multiple connecting rods. The support structure includes a base, a second adjustment component and a strut component.

[0009] By adopting the above technical solutions, the multiple rotating first threaded rods can drive the first threaded cylinders threadedly connected to them to move. The first threaded cylinders then drive the connecting rods and the placement grooves to move, controlling the synchronous adjustment of the multiple placement grooves, and facilitating the adjustment of the size of the entire placement structure according to the use requirements.

[0010] Preferably, a first servo motor is fixedly installed at the top of the first housing, the output end of the first servo motor is fixedly connected with a first bevel gear, and a second bevel gear meshing with the first bevel gear is fixedly installed at the tail end of each of the plurality of first threaded rods.

[0011] By adopting the above technical solution, the first servo motor can drive the first bevel gear, the plurality of second bevel gears and the first threaded rods to rotate, so as to control the synchronous rotation of the plurality of first threaded rods.

[0012] Preferably, a plurality of first cylinders sleeved outside the first threaded cylinder are fixedly installed on the outer side of the first housing, a first sliding block is fixedly installed on the outer side of one end of the first threaded cylinder located inside the first cylinder, a first sliding groove adapted to the first sliding block is formed in the inner wall of the first cylinder, and the first sliding block is slidably connected with the first sliding groove.

[0013] By adopting the above technical solution, the first sliding block outside the first threaded cylinder can slide along the first sliding groove on the inner wall of the first cylinder, which plays a role in limiting the stroke of the first threaded cylinder.

[0014] Preferably, the second adjusting assembly includes a second housing fixedly installed on the upper side of the base, a second threaded rod is rotatably installed at the top of the second housing through a bearing seat, the strut assembly includes a second threaded cylinder threadedly connected to the outside of the second threaded rod, and the first housing is fixedly connected to the top end of the second threaded cylinder.

[0015] By adopting the above technical solution, the rotating second threaded rod can drive the second threaded cylinder connected to it in a threaded manner to move, and the second threaded cylinder then drives the first housing to move, so as to realize the adjustment of the height of the placing structure.

[0016] Preferably, a second servo motor is fixedly installed on one side of the second housing, the output end of the second servo motor is fixedly connected with a third bevel gear, and a fourth bevel gear meshing with the third bevel gear is fixedly installed at the bottom end of the second threaded rod.

[0017] By adopting the above technical solution, the second servo motor can drive the third bevel gear, the fourth bevel gear and the second threaded rod to rotate, so as to control the rotation direction of the second threaded rod.

[0018] Preferably, a second cylinder sleeved outside the second threaded cylinder is fixedly installed on the upper side of the second housing, a second sliding block is fixedly installed on the outer side of one end of the second threaded cylinder located inside the second cylinder, a second sliding groove adapted to the second sliding block is formed in the inner wall of the second cylinder, and the second sliding block is slidably connected with the second sliding groove.

[0019] By adopting the above technical solution, the second sliding block on the outer side of the second threaded cylinder can slide along the second sliding groove on the inner wall of the second cylinder body, playing a role in limiting the stroke of the second threaded cylinder.

[0020] (III) Beneficial Effects

[0021] This application provides an adjustable planting rack for municipal greening. The beneficial effects are as follows:

[0022] 1. For this adjustable planting rack for municipal greening, through the coordinated setting of multiple placement grooves, connection components, and first adjustment components in the placement structure, the synchronous movement of multiple first threaded cylinders can be controlled, thereby realizing the synchronous adjustment of multiple placement grooves, facilitating the adjustment of the size of the entire placement structure according to usage requirements to adapt to different usage environments, and improving the practicality of this planting rack.

[0023] 2. For this adjustable planting rack for municipal greening, through the coordinated setting of the base, second adjustment components, and support rod components in the support structure, the movement of the second threaded cylinder can be controlled, and further the height of the placement structure can be adjusted, with higher flexibility, further improving the practicality of this planting rack. Description of the Drawings

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0025] Figure 1 It is a three-dimensional structure diagram of this application;

[0026] Figure 2 It is a three-dimensional structure diagram of the first partial section of the placement structure of this application;

[0027] Figure 3 It is a three-dimensional structure diagram of the second partial section of the placement structure of this application;

[0028] Figure 4 It is a three-dimensional structure diagram of the partial section of the support structure of this application.

[0029] In the figure: 1. Placing structure; 11. Placing groove; 12. Connecting component; 121. First threaded cylinder; 1211. First sliding block; 122. Connecting rod; 123. First cylinder; 1231. First sliding groove; 13. First adjusting component; 131. First housing; 132. First threaded rod; 133. First servo motor; 134. First bevel gear; 135. Second bevel gear; 2. Supporting structure; 21. Base; 22. Second adjusting component; 221. Second housing; 222. Second threaded rod; 223. Second servo motor; 224. Third bevel gear; 225. Fourth bevel gear; 23. Strut component; 231. Second threaded cylinder; 2311. Second sliding block; 232. Second cylinder; 2321. Second sliding groove. Detailed implementation mode

[0030] The present application will be further elaborated in detail below with reference to the accompanying drawings and embodiments.

[0031] Refer to Figures 1 to 4 , the embodiment of the present application provides an adjustable planting rack for municipal greening, including a placing structure 1 and a supporting structure 2. The placing structure 1 includes a plurality of placing grooves 11 for placing potted plants, a connecting component 12 and a first adjusting component 13. The first adjusting component 13 includes a first housing 131. A first threaded rod 132 is rotatably installed on the side walls of the first housing 131 through bearing seats. The connecting component 12 includes a first threaded cylinder 121 threadedly connected to the outside of the plurality of first threaded rods 132. The ends of the plurality of first threaded cylinders 121 are fixedly installed with connecting rods 122. The plurality of placing grooves 11 are respectively fixedly connected to the ends of the plurality of connecting rods 122. The supporting structure 2 includes a base 21, a second adjusting component 22 and a strut component 23. Under the limiting action of the first sliding block 1211 and the first sliding groove 1231, the plurality of rotating first threaded rods 132 can drive the first threaded cylinders 121 threadedly connected thereto to move. The first threaded cylinder 121 further drives the connecting rod 122 and the placing groove 11 to move, controlling the synchronous adjustment of the plurality of placing grooves 11, and facilitating the adjustment of the size of the entire placing structure 1 according to the use requirements.

[0032] Refer to Figure 2 and Figure 3 , in one aspect of this embodiment, a first servo motor 133 is fixedly installed on the top of the first housing 131. The output end of the first servo motor 133 is fixedly connected to a first bevel gear 134. The ends of the plurality of first threaded rods 132 are fixedly installed with second bevel gears 135 meshing with the first bevel gear 134. The first servo motor 133 can drive the first bevel gear 134 to rotate. The first bevel gear 134 can drive the plurality of second bevel gears 135 meshing with it and the first threaded rods 132 to rotate, controlling the synchronous rotation of the plurality of first threaded rods 132.

[0033] In one aspect of this embodiment, a plurality of first cylinders 123 sleeved on the outside of the first threaded cylinder 121 are fixedly installed on the outside of the first housing 131. A first sliding block 1211 is fixedly installed on the outside of one end of the first threaded cylinder 121 located inside the first cylinder 123. A first sliding groove 1231 adapted to the first sliding block 1211 is formed in the inner wall of the first cylinder 123, and the first sliding block 1211 is slidably connected to the first sliding groove 1231. The first sliding block 1211 on the outside of the first threaded cylinder 121 can slide along the first sliding groove 1231 on the inner wall of the first cylinder 123, playing a role in limiting the stroke of the first threaded cylinder 121.

[0034] Referring to Figure 1 and Figure 4 In one aspect of this embodiment, the second adjustment assembly 22 includes a second housing 221 fixedly installed on the upper side of the base 21. A second threaded rod 222 is rotatably installed at the top of the second housing 221 through a bearing seat. The strut assembly 23 includes a second threaded cylinder 231 threadedly connected to the outside of the second threaded rod 222. The first housing 131 is fixedly connected to the top end of the second threaded cylinder 231. Under the limiting action of the second sliding block 2311 and the second sliding groove 2321, the rotating second threaded rod 222 can drive the second threaded cylinder 231 connected to it in a threaded manner to move, and the second threaded cylinder 231 further drives the first housing 131 to move, so as to realize the adjustment of the height of the placing structure 1.

[0035] In one aspect of this embodiment, a second servo motor 223 is fixedly installed on one side of the second housing 221. The output end of the second servo motor 223 is fixedly connected to a third bevel gear 224. A fourth bevel gear 225 meshing with the third bevel gear 224 is fixedly installed at the bottom end of the second threaded rod 222. The second servo motor 223 can drive the third bevel gear 224 to rotate, and the third bevel gear 224 can drive the fourth bevel gear 225 and the second threaded rod 222 meshing with it to rotate, controlling the rotation direction of the second threaded rod 222.

[0036] In one aspect of this embodiment, a second cylinder 232 sleeved on the outside of the second threaded cylinder 231 is fixedly installed on the upper side of the second housing 221. A second sliding block 2311 is fixedly installed on the outside of one end of the second threaded cylinder 231 located inside the second cylinder 232. A second sliding groove 2321 adapted to the second sliding block 2311 is formed in the inner wall of the second cylinder 232, and the second sliding block 2311 is slidably connected to the second sliding groove 2321. The second sliding block 2311 on the outside of the second threaded cylinder 231 can slide along the second sliding groove 2321 on the inner wall of the second cylinder 232, playing a role in limiting the stroke of the second threaded cylinder 231.

[0037] All the electrical equipment in this solution is powered by an external power supply.

[0038] Working principle: When the municipal greening adjustable planting rack is in use, starting the second servo motor 223 can drive the third bevel gear 224 to rotate. The third bevel gear 224 can drive the fourth bevel gear 225 and the second threaded rod 222 meshing with it to rotate. Under the limiting action of the second sliding block 2311 and the second sliding groove 2321, the rotating second threaded rod 222 can drive the second threaded cylinder 231 threadedly connected to it to move. The second threaded cylinder 231 then drives the first housing 131 to move, adjusting the placement structure 1 to an appropriate height. By starting the first servo motor 133, the first bevel gear 134 can be driven to rotate. The first bevel gear 134 can drive a plurality of second bevel gears 135 and the first threaded rod 132 meshing with it to rotate, controlling the synchronous rotation of the plurality of first threaded rods 132. Under the limiting action of the first sliding block 1211 and the first sliding groove 1231, the plurality of rotating first threaded rods 132 can drive the first threaded cylinder 121 threadedly connected to it to move. The first threaded cylinder 121 then drives the connecting rod 122 and the placement groove 11 to move, controlling the synchronous adjustment of the plurality of placement grooves 11, and the size of the entire placement structure 1 can be adjusted appropriately.

[0039] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.

[0040] Although the embodiments of the present application have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present application. The scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An adjustable planting rack for municipal greening, comprising a placing structure (1) and a supporting structure (2), characterized in that: The placement structure (1) includes a plurality of placement grooves (11) for placing potted plants, a connection component (12) and a first adjustment component (13). The first adjustment component (13) includes a first housing (131). A first threaded rod (132) is rotatably installed on each of the multiple side walls of the first housing (131) through a bearing block. The connection component (12) includes a first threaded cylinder (121) threadedly connected to the outside of the multiple first threaded rods (132). A connecting rod (122) is fixedly installed at the tail end of each of the multiple first threaded cylinders (121). Each of the multiple placement grooves (11) is fixedly connected to the tail end of each of the multiple connecting rods (122). The support structure (2) includes a base (21), a second adjustment component (22) and a support rod component (23).

2. The adjustable planting rack for municipal greening according to claim 1, wherein: A first servo motor (133) is fixedly installed at the top of the first housing (131). The output end of the first servo motor (133) is fixedly connected to a first bevel gear (134). A second bevel gear (135) meshing with the first bevel gear (134) is fixedly installed at the tail end of each of the multiple first threaded rods (132).

3. The adjustable planting rack for municipal greening according to claim 1, wherein: A plurality of first cylinders (123) sleeved on the outside of the first threaded cylinder (121) are fixedly installed on the outside of the first housing (131). A first sliding block (1211) is fixedly installed on the outside of the first threaded cylinder (121) at one end inside the first cylinder (123). A first sliding groove (1231) adapted to the first sliding block (1211) is formed on the inner wall of the first cylinder (123). The first sliding block (1211) is slidably connected to the first sliding groove (1231).

4. The adjustable planting rack for municipal greening according to claim 1, characterized in that: The second adjustment component (22) includes a second housing (221) fixedly installed on the upper side of the base (21). A second threaded rod (222) is rotatably installed at the top of the second housing (221) through a bearing block. The support rod component (23) includes a second threaded cylinder (231) threadedly connected to the outside of the second threaded rod (222). The first housing (131) is fixedly connected to the top end of the second threaded cylinder (231).

5. The adjustable planting rack for municipal greening according to claim 4, characterized in that: A second servo motor (223) is fixedly installed on one side of the second housing (221). The output end of the second servo motor (223) is fixedly connected to a third bevel gear (224). A fourth bevel gear (225) meshing with the third bevel gear (224) is fixedly installed at the bottom end of the second threaded rod (222).

6. The adjustable planting rack for municipal greening according to claim 4, characterized in that: A second cylinder (232) sleeved on the outside of the second threaded cylinder (231) is fixedly installed on the upper side of the second housing (221). A second sliding block (2311) is fixedly installed on the outside of the second threaded cylinder (231) at one end inside the second cylinder (232). A second sliding groove (2321) adapted to the second sliding block (2311) is formed on the inner wall of the second cylinder (232). The second sliding block (2311) is slidably connected to the second sliding groove (2321).