Vertical garden structure for landscaping

By designing an inner and outer bucket planting bucket structure with seepage holes and seepage tanks in the vertical garden structure, the problem of water accumulation in the planting bucket is solved, and water resource conservation and healthy plant growth are achieved.

CN222916676UActive Publication Date: 2025-05-30JIANGSU JINGYUANLVHUA CONSTRUCT CO LTD
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Patent Information

Application Number
CN202422033530.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-05-30
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

In the vertical garden structure, excessive water accumulation in the planting bucket leads to waste of water resources and rot of plant roots.

Method used

A planting bucket structure including an external bucket and an internal bucket is designed. The water seepage hole and a water seepage tank are provided at the bottom of the bucket. There is a gap between the external bucket and the bucket to form an air channel to promote moisture penetration and air circulation.

Benefits of technology

Effectively reduces waste of water resources, prevents plant roots from rotting, and improves the lighting conditions of plants, promoting healthy growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of landscaping, and provides a vertical garden structure for landscaping, which comprises a vertical frame, a plurality of planting buckets are placed on the vertical frame, and the plurality of planting buckets are staggered on the same vertical surface; the planting hopper comprises an outer hopper and an inner hopper, the tops of the outer hopper and the inner hopper are open, the inner hopper is placed in an inner cavity of the outer hopper, the top of the inner hopper extends out of the top of the outer hopper, and supporting tables are arranged at the positions, close to the bottom, of the two ends of the inner cavity of the outer hopper. The device overcomes the defects in the prior art, is reasonable in design and compact in structure, and can be blocked to move downwards when air is horizontally blown to the outer wall of the top of the inner hopper, so that moisture of soil in the inner cavity of the outer hopper is evaporated more quickly, the root of a plant is prevented from being soaked in humid soil for a long time to rot, and the service life of the plant is prolonged. In the process, water in the inner hopper slowly permeates into the outer hopper, so that the water content in the inner hopper can be kept in a reasonable range for a long time, water can be saved, and manpower and material resources can be reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of landscaping, and particularly relates to a vertical garden structure for landscaping. Background Art

[0002] Traditional landscaping methods often make it difficult to plant and display plants on a large scale due to the limitation of ground space, thus giving rise to the vertical garden structure. However, when planting plants in the vertical garden structure, an excessive amount of water is often poured into the planting bucket. This excessive water accumulates at the bottom of the planting bucket, not only wasting water resources but also possibly causing the roots of the plants to rot due to long-term immersion, affecting the health of the plants. For this reason, we propose a vertical garden structure for landscaping. Content of the Utility Model

[0003] (1) Technical Problems to be Solved

[0004] In view of the deficiencies of the prior art, the utility model provides a vertical garden structure for landscaping to solve the above problems existing in the prior art.

[0005] (2) Technical Solutions

[0006] To achieve the above object, the utility model is realized through the following technical solutions: A vertical garden structure for landscaping, including a vertical frame, on which a number of planting buckets are placed, and a number of the planting buckets on the same vertical plane are arranged staggeredly;

[0007] The planting bucket includes an outer bucket and an inner bucket, both of which are open at the top. The inner bucket is placed inside the inner cavity of the outer bucket, and its top extends out of the top of the outer bucket. At the positions near the bottom of the two ends of the inner cavity of the outer bucket, there are support platforms for supporting the bottoms of both ends of the inner bucket, so that there is a space for containing soil between the bottom of the inner bucket and the bottom of the inner cavity of the outer bucket. A number of water seepage holes are opened at the bottom of the inner bucket, and a number of water seepage grooves are arranged at the positions near the bottom of its side wall, so as to facilitate the penetration of water between the inner bucket and the outer bucket. There are gaps between the inner cavity of the outer bucket and the side walls of both sides of the inner bucket to form an air channel.

[0008] Further, the inner bucket is in a trapezoidal structure with a larger top and a smaller bottom, and the outer side surface of the inner bucket gradually inclines towards the center from top to bottom, forming an inclined surface structure, so that air flows downward along the outer side surface of the inner bucket.

[0009] Further, the vertical frame includes a support plate, and a base is provided at the bottom of the support plate. A number of holes are opened in the base in a circumferential arrangement to cooperate with the circumferentially arranged embedded bolts.

[0010] Further, the support plate is in a "cross" shape structure, and a number of storage racks for placing planting buckets are provided in its four directions. A plurality of storage racks in the same direction are arranged at equal intervals.

[0011] Furthermore, the storage rack is hinged to the support plate. A fixing ring penetrating through the storage rack is provided on the support plate, and the axis of the fixing ring is collinear with the axis of the hinge shaft of the storage rack and the support plate, so that the storage rack can move along the outer wall of the fixing ring.

[0012] Furthermore, a plurality of pairs of jacks are formed in the fixing ring. A detachable plug block is provided at the top of the storage rack. A pair of plug rods extend downward from the bottom of the plug block, and the pair of plug rods are respectively inserted into the jacks to lock the storage rack at a specific position. A boss is provided on each of the opposite sides of the pair of plug rods, and both sides of the bosses are slidably connected to the side wall of the top of the storage rack, so that the plug block can be separated from the storage rack upward until the plug rods completely come out of the jacks, thereby unlocking the storage rack.

[0013] (III) Beneficial effects

[0014] The embodiment of the utility model provides a vertical garden structure for landscaping. The following beneficial effects are achieved:

[0015] 1. When the air blows horizontally to the outer wall of the top of the inner bucket, it will be blocked and move downward, so that the moisture in the soil in the inner cavity of the outer bucket evaporates faster, preventing the plant roots from rotting in the wet soil for a long time. During this process, the moisture in the inner bucket slowly penetrates into the outer bucket, so that the moisture content in the inner bucket can be kept within a reasonable range for a long time, which can not only save water but also reduce manpower and material resources.

[0016] 2. Each storage rack can move on the outer wall of the corresponding fixing ring, changing the position of the planting bucket thereon, avoiding the problem of insufficient light for the bottom plants caused by mutual shading, and providing more balanced and sufficient natural light conditions for plant growth. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional schematic diagram of the overall structure of the utility model;

[0018] Figure 2 is a three-dimensional schematic diagram of the planting bucket structure of the utility model;

[0019] Figure 3 is a sectional schematic diagram of the planting bucket structure of the utility model;

[0020] Figure 4 is a three-dimensional schematic diagram of the fixing ring structure of the utility model;

[0021] Figure 5 is a three-dimensional schematic diagram of the plug block structure of the utility model;

[0022] Figure 6 is the utility model Figure 1 Schematic diagram of enlarged structure A in.

[0023] In the figure: 11, support plate; 12, base; 13, storage rack; 14, fixing ring; 15, jack; 16, plug; 161, plug rod; 162, boss; 21, outer bucket; 211, support platform; 22, inner bucket; 221, water seepage hole; 222, water seepage tank. Specific implementation manner

[0024] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0025] Referring to the attached Figure 1 , a vertical garden structure for landscaping, including an upright frame. A number of planting buckets are placed in each of the four directions of the upright frame, which can increase the number of plants planted. A number of planting buckets on the same vertical plane are arranged staggeredly, that is, the upper and lower adjacent planting buckets are arranged in a staggered manner, ensuring that the plants planted at the bottom can fully receive sunlight and avoiding being completely blocked by the plants planted above. This layout not only improves the lighting efficiency but also enhances the three-dimensional visual effect, making the whole look more scattered and orderly;

[0026] Referring to the attached Figures 1-3 , the planting bucket includes an outer bucket 21 and an inner bucket 22, both of which are open at the top. The inner bucket 22 is placed in the inner cavity of the outer bucket 21, and its top extends out of the top of the outer bucket 21. Support platforms 211 are provided at positions near the bottom of the two ends of the inner cavity of the outer bucket 21 for supporting the bottoms of both ends of the inner bucket 22, so that there is a space for accommodating soil between the bottom of the inner bucket 22 and the bottom of the inner cavity of the outer bucket 21. A number of water seepage holes 221 are opened at the bottom of the inner bucket 22, and a number of water seepage tanks 222 are provided at positions near the bottom of its side wall, so as to facilitate the penetration of water between the inner bucket 22 and the outer bucket 21. There are gaps between the inner cavity of the outer bucket 21 and the side walls of the inner bucket 22 on both sides to form an air passage.

[0027] During use, soil is loaded at the bottom of the inner bucket 22, and the top of the flattened soil exceeds the top of the water seepage tank 222. After planting plants in the inner bucket 22, it is placed on the support platform 211 inside the outer bucket 21, and a gap is left between the outer side wall of the inner bucket 22 and the inner cavity of the outer bucket 21. Then, soil is added to the outer bucket 21 through this gap, so that the soil is evenly distributed between the inner cavity of the outer bucket 21 and the outer wall of the inner bucket 22, and the top of the soil in the outer bucket 21 is level with the top of the soil in the inner bucket 22. When air blows horizontally against the outer wall of the top of the inner bucket 22, it will be blocked and move downward, while a channel for air circulation is formed between the inner cavity of the outer bucket 21 and the two side walls of the inner bucket 22. At this time, the air flows into the inner cavity of the outer bucket 21, so that the water in the soil in the inner cavity of the outer bucket 21 evaporates faster. At this time, the water in the soil in the inner bucket 22 will slowly penetrate into the outer bucket 21 through the water seepage holes 221 and the water seepage tank 222, so that the water content in the planting bucket gradually decreases, so as to prevent the plant roots from rotting in the wet soil for a long time. And because the water in the inner bucket 22 seeps into the outer bucket 21 slowly, the water content inside the inner bucket 22 can be kept within a reasonable range for a long time, which can not only save water, but also reduce manpower and material resources.

[0028] Among them, the inner bucket 22 is a trapezoidal structure with a larger top and a smaller bottom. The outer side of the inner bucket 22 gradually inclines towards the center from top to bottom, forming an inclined surface structure, which constitutes an efficient inclined surface diversion structure, so that air flows downward along the outer side of the inner bucket 22, significantly enhancing the natural convection effect of the air.

[0029] Preferably, the distance between the top of the inner bucket 22 and the top of the outer bucket 21 is 1-3 cm, ensuring a certain air convection effect and avoiding the evaporation rate of the water in the planting bucket being affected by too large or too small air convection.

[0030] Refer to the appendix Figure 1 As shown in the figure, the vertical frame includes a support plate 11. A base 12 is provided at the bottom of the support plate 11. A number of holes are provided on the base 12 in a circumferential arrangement to cooperate with the circumferentially arranged embedded bolts. A pit for accommodating the base 12 is dug on the ground, and bolts are preset in the pit in a circumferential arrangement. The base 12 is placed in the pit, and the pit of the base 12 is aligned with the bolts. After fixing with nuts, soil is filled in the pit, so that the whole vertical frame is fixed firmly and will not fall down.

[0031] Among them, the support plate 11 is in a "cross" shape structure, and a number of storage racks 13 for placing planting buckets are provided in its four directions. The multiple storage racks 13 in the same direction are arranged at equal distances, maximizing the space utilization rate of the vertical frame, enabling more planting buckets to be accommodated on each vertical frame, and realizing the maximization of the planting capacity.

[0032] Refer to the appendix Figure 1 、 4-6, the storage rack 13 is hinged to the support plate 11, and a fixing ring 14 is provided on the support plate 11, which passes through the storage rack 13, and the axis of the fixing ring 14 is in line with the axis of the hinge shaft of the storage rack 13 and the support plate 11, so that the storage rack 13 can move along the outer wall of the fixing ring 14, and each storage rack 13 can move on the outer wall of the corresponding fixing ring 14, so that the position of the planting bucket thereon is changed, which is convenient for adjusting the position of the planting bucket, effectively avoiding the problem of insufficient light for the bottom plants due to mutual blocking, and providing more balanced and sufficient natural light conditions for plant growth.

[0033] The fixing ring 14 is provided with a plurality of pairs of insertion holes 15, and a detachable insertion block 16 is provided on the top of the storage rack 13. A pair of insertion rods 161 extend downwardly from the bottom of the insertion block 16, and the pair of insertion rods 161 are respectively inserted into the inside of the insertion holes 15 to realize the locking of the storage rack 13 at a specific position. The opposite sides of the pair of insertion rods 161 are provided with bosses 162, and the bosses 162 on both sides are slidably connected to the side walls at the top of the storage rack 13 to realize the upward separation of the insertion block 16 from the storage rack 13 until the insertion rod 161 is completely disengaged from the insertion hole 15, thereby realizing the unlocking of the storage rack 13. When changing the position of the storage rack 13 and the planting bucket, the insertion block 16 is pulled upward until the insertion rod 161 is completely disengaged from the insertion hole 15, and then after the storage rack 13 is rotated to a suitable position, the insertion rod 161 is inserted into the insertion hole 15 at the corresponding position, so as to lock the storage rack 13. The whole operation process is convenient and quick.

[0034] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or device including the elements.

[0035] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A vertical garden structure for landscaping, comprising a stand, characterized in that: A plurality of planting buckets are placed on the vertical frame, and a plurality of the planting buckets are staggered on the same vertical surface; The planting bucket comprises an outer bucket (21) and an inner bucket (22), both of which are open at the top. The inner bucket (22) is placed in the inner cavity of the outer bucket (21), and its top extends out of the top of the outer bucket (21). Support platforms (211) are provided at the two ends of the inner cavity of the outer bucket (21) near the bottom, which are used to support the bottoms of the two ends of the inner bucket (22), so that the bottom of the inner bucket (22) and the bottom of the inner cavity of the outer bucket (21) have space for accommodating soil. The bottom of the inner bucket (22) is provided with a plurality of seepage holes (221), and the side wall thereof is provided with a plurality of seepage grooves (222) near the bottom, so as to facilitate the penetration of water between the inner bucket (22) and the outer bucket (21). There is a gap between the inner cavity of the outer bucket (21) and the side walls of the inner bucket (22) on both sides, so as to form an air passage.

2. A vertical garden structure for landscaping as claimed in claim 1, characterized in that: The inner bucket (22) is a trapezoidal structure that is larger at the top and smaller at the bottom. The outer side surface of the inner bucket (22) gradually tilts toward the center from top to bottom to form an inclined structure so that air can flow downward along the outer side surface of the inner bucket (22).

3. A vertical garden structure for landscaping as claimed in claim 1 or 2, characterized in that: The stand comprises a support plate (11), a base (12) is provided at the bottom of the support plate (11), and a plurality of circumferentially arranged holes are provided on the base (12) to match the circumferentially arranged embedded bolts.

4. A vertical garden structure for landscaping as claimed in claim 3, characterized in that: The support plate (11) is a "cross" shaped structure, and a plurality of racks (13) for placing planting buckets are arranged in four directions thereof, and a plurality of racks (13) in the same direction are arranged at equal distances.

5. A vertical garden structure for landscaping as claimed in claim 4, characterized in that: The storage rack (13) is hinged to the support plate (11); a fixing ring (14) penetrating the storage rack (13) is provided on the support plate (11); the axis of the fixing ring (14) is colinear with the axis of the hinge axis of the storage rack (13) and the support plate (11), so that the storage rack (13) can move along the outer wall of the fixing ring (14).

6. A vertical garden structure for landscaping as claimed in claim 5, characterized in that: The fixing ring (14) is provided with a plurality of paired insertion holes (15); a detachable insertion block (16) is provided at the top of the storage rack (13); a pair of insertion rods (161) are extended downward from the bottom of the insertion block (16); the pair of insertion rods (161) are respectively inserted into the insertion holes (15) to lock the storage rack (13) at a specific position; bosses (162) are provided on opposite sides of the pair of insertion rods (161); the bosses (162) on both sides are slidably connected to the side walls at the top of the storage rack (13) to separate the insertion block (16) upward from the storage rack (13) until the insertion rods (161) are completely removed from the insertion holes (15), thereby unlocking the storage rack (13).