Garden landscape greening vegetation restraint frame
By using a restraint mechanism consisting of curved plates and support rods in a garden landscape vegetation restraint frame, combined with an elastic restraint net and clamping components, the problem of mechanical damage and fixation failure caused by traditional restraint frames to shrubs is solved. This achieves effective restraint of shrub branches, leaves, and roots, improving vegetation survival rate and maintenance efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI LANDAO ENVIRONMENTAL DESIGN CONSULTING CO LTD
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-19
AI Technical Summary
Traditional landscaping vegetation restraint frames are prone to mechanical damage when restraining shorter ornamental shrubs, and cannot adapt to morphological changes during plant growth, leading to fixation failure, inconvenient operation, and increased maintenance costs.
A vegetation restraint frame for garden landscape greening was designed, which adopts a restraint mechanism composed of arc-shaped plates and support rods, combined with elastic restraint nets and clamping components, to adapt to the growth changes of shrub branches and leaves, and guides the roots and stems to grow vertically through guiding components, avoiding mechanical damage and frequent adjustments.
It enables adjustable constraints on shrub branches and leaves, protects healthy plant growth, reduces mechanical damage, improves vegetation survival rate and maintenance efficiency, and reduces later maintenance costs.
Smart Images

Figure CN224250276U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of greening and planting, and more specifically, to a garden landscape greening vegetation restraint frame. Background Technology
[0002] In landscape greening projects, morphological control and growth restraint of vegetation (such as shrubs, flowers, and vines) are crucial aspects of landscape maintenance. The planting and maintenance of vegetation directly impacts the landscape effect and ecological function. However, due to plant growth characteristics, natural environmental factors (such as wind and rain erosion), and human activities, green vegetation often faces problems such as lodging, disordered growth patterns, and tangled root systems. This leads to damaged landscape effects, reduced vegetation survival rates, and increased maintenance costs. Traditional greening vegetation restraint systems also have the following problems:
[0003] Existing vegetation restraint frames for landscaping often rely on directly binding the stems and branches of shorter ornamental shrubs with wooden stakes or wires, which can easily cause mechanical damage. Furthermore, these frames require frequent adjustments as the shrubs grow, making them inconvenient to operate. Additionally, traditional restraint frames are mostly rigid structures, unable to adapt to the morphological changes during plant growth, and are prone to failure due to the expansion of shrub branches and leaves. Therefore, a new type of vegetation restraint frame for landscaping is proposed. Utility Model Content
[0004] The purpose of this utility model is to address the current problem that when restraining some short ornamental shrubs, the stems and branches of the shrubs are often directly tied with wooden stakes or wires, which can easily cause mechanical damage and requires frequent adjustments as the shrubs grow, making the operation inconvenient. At the same time, traditional restraint frames are mostly rigid structures that cannot adapt to the morphological changes during plant growth and are prone to failure due to the expansion of shrub branches and leaves.
[0005] To achieve the above-mentioned objectives, this utility model provides the following technical solution:
[0006] The present invention is as follows: a garden landscape greening vegetation restraint frame, including a first arc-shaped plate and a second arc-shaped plate, the second arc-shaped plate being bolted to one side of the first arc-shaped plate and together forming an annular plate, the first arc-shaped plate and the side of the second arc-shaped plate facing the inside of the annular plate are both provided with restraint mechanisms for limiting the branches and leaves of shrub vegetation, and the bottom of the first arc-shaped plate and the second arc-shaped plate are both provided with guide components for gathering the roots and stems of shrub vegetation;
[0007] The constraint mechanism includes two support rods hinged to one side of the first arc-shaped plate and the second arc-shaped plate, respectively. The ends of the two support rods away from the first arc-shaped plate and the second arc-shaped plate are respectively hinged to a first shielding ring and a second shielding ring. The first shielding ring is bolted to one side of the second shielding ring and together they form a ring. An elastic constraint net is provided between the top of the first arc-shaped plate and the bottom of the first shielding ring, and an elastic constraint net is provided between the top of the second arc-shaped plate and the bottom of the second shielding ring. Clamping components are provided on the inner walls of both the first arc-shaped plate and the second arc-shaped plate.
[0008] As a preferred technical solution of this utility model, the clamping assembly includes two springs that are fixedly connected to the inner walls of the first arc-shaped plate and the second arc-shaped plate respectively, and the other ends of the two springs are fixedly connected to clamping plates. Clamping rings are fixedly connected to the sides of the two clamping plates that face each other.
[0009] As a preferred technical solution of this utility model, the guiding component includes a guiding bucket that is fixedly connected to the bottom of the first arc-shaped plate and the second arc-shaped plate respectively, and the side wall of the guiding bucket is provided with a plurality of rectangular holes.
[0010] As a preferred technical solution of this utility model, the first arc-shaped plate and the second arc-shaped plate are respectively hinged to a plurality of telescopic rods on one side of the support rod. The ends of the plurality of telescopic rods away from the first arc-shaped plate and the second arc-shaped plate are each hinged to a mounting frame. The plurality of mounting frames are respectively bolted to the outer walls of the first shielding ring and the second shielding ring.
[0011] As a preferred technical solution of this utility model, the outer walls of the first arc-shaped plate and the second arc-shaped plate are respectively fixedly connected to a first mounting plate and a second mounting plate. Multiple insert rods are slidably connected through the first mounting plate and the second mounting plate. Limiting plates are fixedly connected to the outer walls of the multiple insert rods. The bottoms of the multiple limiting plates are respectively attached to the tops of the first mounting plate and the second mounting plate.
[0012] As a preferred technical solution of this utility model, telescopic cylinders are fixedly connected to the side of each of the two clamping plates away from the clamping ring, and the side of each of the two telescopic cylinders away from the clamping plates is fixedly connected to the inner wall of the first arc plate and the second arc plate respectively, and the two springs are located inside the two telescopic cylinders respectively.
[0013] As a preferred technical solution of this utility model, multiple parallel stabilizing rods are fixedly connected to the side of each of the two clamping plates away from the clamping ring, and the ends of the multiple stabilizing rods away from the clamping plates respectively penetrate the interior of the sliding first arc plate and the second arc plate.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0015] 1. By setting up a constraint mechanism, the growth of branches and leaves of garden shrubs is constrained. After the first and second arc-shaped plates are placed on the ground and bolted together, they will form a ring around the main branch of the shrub. At this time, according to the expansion of the shrub branches and leaves, the positions of the support rod and the first and second shielding rings are adjusted so that the elastic constraint net wraps around the shrub branches and leaves, thereby constraining the growth of the outermost branches and leaves of the shrub. Through the cooperation of springs, clamping plates and clamping rings, the main branch of the shrub can be adjusted and constrained to prevent the main branch of the shrub from growing at an angle.
[0016] 2. The guide components are designed to guide the roots and stems of the shrub. Before installing the first and second arc-shaped plates, a circular pit can be dug around the main branches of the shrub. The guide bucket is then placed directly into the circular pit. During use, the guide bucket is located in the soil and restricts and gathers the roots and stems of the shrub, preventing them from expanding outward and allowing them to grow vertically along the length of the guide bucket. The rectangular holes do not affect the shrub's absorption of soil nutrients. Attached Figure Description
[0017] Figure 1 A schematic diagram of the structure of the garden landscape greening vegetation restraint frame provided by this utility model;
[0018] Figure 2 Right view of the garden landscape greening vegetation restraint frame provided by this utility model;
[0019] Figure 3 The garden landscape greening vegetation restraint frame provided by this utility model Figure 2 Schematic diagram of the cross-sectional structure at point AA;
[0020] Figure 4 The garden landscape greening vegetation restraint frame provided by this utility model Figure 3 Enlarged view of point A in the middle;
[0021] Figure 5 A schematic diagram of the stabilizing bar in the garden landscape greening vegetation restraint frame provided by this utility model.
[0022] The diagram shows: 1. First arc-shaped plate; 2. Second arc-shaped plate; 3. Constraint mechanism; 4. Guide assembly; 301. Support rod; 302. First shielding ring; 303. Second shielding ring; 304. Elastic constraint net; 305. Clamping assembly; 3051. Spring; 3052. Clamping plate; 3053. Clamping ring; 401. Guide bucket; 402. Rectangular hole; 5. Telescopic rod; 6. Mounting frame; 7. First mounting plate; 8. Second mounting plate; 9. Insert rod; 10. Limiting plate; 11. Telescopic cylinder; 12. Stabilizing rod. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model.
[0024] Therefore, the following detailed description of the embodiments of this utility model is not intended to limit the scope of the claimed utility model, but merely to illustrate some embodiments of the utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.
[0025] It should be noted that, unless otherwise specified, the embodiments and features and technical solutions in the present invention can be combined with each other.
[0026] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0027] like Figure 1 As shown, this embodiment proposes a garden landscape greening vegetation restraint frame, including a first arc-shaped plate 1 and a second arc-shaped plate 2. The second arc-shaped plate 2 is bolted to one side of the first arc-shaped plate 1 and together they form an annular plate. The first arc-shaped plate 1 and the second arc-shaped plate 2 are both provided with restraint mechanisms 3 for limiting the branches and leaves of shrub vegetation on the side facing the inside of the annular plate. The bottom of the first arc-shaped plate 1 and the second arc-shaped plate 2 are both provided with guide components 4 for gathering the roots and stems of shrub vegetation.
[0028] like Figure 3As shown, the constraint mechanism 3 includes two support rods 301 respectively hinged to one side of the first arc-shaped plate 1 and the second arc-shaped plate 2. A first blocking ring 302 and a second blocking ring 303 are respectively hinged to the ends of the two support rods 301 away from the first arc-shaped plate 1 and the second arc-shaped plate 2. The first blocking ring 302 and the second blocking ring 303 are located diagonally above the first arc-shaped plate 1 and the second arc-shaped plate 2, respectively. The first blocking ring 302 is bolted to one side of the second blocking ring 303, forming a circular ring. An elastic constraint net 304 is provided between the top of the first arc-shaped plate 1 and the bottom of the first blocking ring 302, and an elastic constraint net 304 is also provided between the top of the second arc-shaped plate 2 and the bottom of the second blocking ring 303. The first blocking ring 302, the second blocking ring 303, and the elastic constraint net 304 can constrain growth according to the size of the outermost branches and leaves of the shrub. Clamping components 305 are provided on the inner walls of both the first arc-shaped plate 1 and the second arc-shaped plate 2. After placing the first arc-shaped plate 1 and the second arc-shaped plate 2 around the main branch of the shrub and fixing them with external bolts and nuts, the first arc-shaped plate 1 and the second arc-shaped plate 2 will form a ring around the main branch of the shrub. According to the expansion degree of the shrub branches and leaves, the positions of the first blocking ring 302 and the second blocking ring 303 are adjusted by the two support rods 301 respectively. Then, the first blocking ring 302 and the second blocking ring 303 are fixed by external bolts. At this time, the elastic constraint net 304 will wrap around the shrub branches and leaves. Since the elastic constraint net 304 has excellent elasticity, it can not affect the growth of the shrub branches and leaves, and constrain the growth of the outermost branches and leaves of the shrub.
[0029] like Figure 3 and Figure 4 As shown, the clamping assembly 305 includes two springs 3051 fixedly connected to the inner walls of the first arc-shaped plate 1 and the second arc-shaped plate 2, respectively. Each spring 3051 has a clamping plate 3052 fixedly connected to its other end. Clamping rings 3053 are fixedly connected to the sides of the two clamping plates 3052 facing each other. After the first arc-shaped plate 1 and the second arc-shaped plate 2 are installed, the two clamping rings 3053, under the action of the clamping plates 3052 and the springs 3051, will close together to form a ring, clamping the main branch of the shrub, stabilizing the main branch, and guiding its growth direction. Simultaneously, as the main branch of the shrub grows, it will continuously compress the springs 3051, causing them to contract without affecting the growth of the shrub.
[0030] like Figure 3As shown, the guide assembly 4 includes a guide bucket 401 that is fixedly connected to the bottom of the first arc plate 1 and the second arc plate 2 respectively. The side wall of the guide bucket 401 is provided with a plurality of rectangular holes 402. The rectangular holes 402 penetrate the inner and outer side walls of the guide bucket 401. The rectangular holes 402 extend from the end of the guide bucket 401 away from the first arc plate 1 to the end of the guide bucket 401 close to the first arc plate 1 and the second arc plate 2. The rectangular holes 402 penetrate to the end of the guide bucket 401 away from the first arc plate 1 and the second arc plate 2, but do not penetrate to the end of the guide bucket 401 close to the first arc plate 1 and the second arc plate 2. Before installing the first arc-shaped plate 1 and the second arc-shaped plate 2, a circular pit can be dug around the main branch of the shrub. Then, the guide bucket 401 is placed directly in the circular pit, and the first arc-shaped plate 1 and the second arc-shaped plate 2 are placed on the soil. When the shrub grows, the guide bucket 401 can limit and gather the roots and stems of the shrub in the soil, so that the roots and stems of the shrub cannot expand outward and can only grow vertically along the length direction of the guide bucket 401. The rectangular hole 402 can ensure the flow of water in the soil and not affect the shrub's absorption of soil nutrients.
[0031] like Figure 3 As shown, multiple telescopic rods 5 are hinged to one side of the first arc-shaped plate 1 and the second arc-shaped plate 2, respectively, on the support rod 301. Each telescopic rod 5 has a mounting frame 6 hinged to its end away from the first arc-shaped plate 1 and the second arc-shaped plate 2. The mounting frames 6 are respectively bolted to the outer walls of the first shielding ring 302 and the second shielding ring 303. The telescopic rods 5 and the mounting frames 6 work together to adjust the telescopic position of the first shielding ring 302 and the second shielding ring 303 according to their movement, further improving the stability of the installation of the first shielding ring 302 and the second shielding ring 303.
[0032] like Figure 1 As shown, a first mounting plate 7 and a second mounting plate 8 are fixedly connected to the outer walls of the first arc-shaped plate 1 and the second arc-shaped plate 2, respectively. Multiple insertion rods 9 are slidably connected through the first mounting plate 7 and the second mounting plate 8. Limiting plates 10 are fixedly connected to the outer walls of the multiple insertion rods 9, and the multiple limiting plates 10 are all located above the first mounting plate 7 and the second mounting plate 8. The bottoms of the multiple limiting plates 10 are respectively in contact with the tops of the first mounting plate 7 and the second mounting plate 8. The first mounting plate 7 and the second mounting plate 8 can respectively increase the contact area between the first arc-shaped plate 1 and the second arc-shaped plate 2 and the ground. Inserting the insertion rods 9 with the limiting plates 10 into the soil can improve the stability of the first arc-shaped plate 1 and the second arc-shaped plate 2.
[0033] like Figure 4As shown, telescopic cylinders 11 are fixedly connected to the side of each clamping plate 3052 away from the clamping ring 3053. The side of each telescopic cylinder 11 away from the clamping plate 3052 is fixedly connected to the inner wall of the first arc plate 1 and the second arc plate 2, respectively. Two springs 3051 are located inside the two telescopic cylinders 11. The telescopic cylinders 11 will move as the springs 3051 contract, and provide protection for the springs 3051 in rainy or snowy weather, preventing the springs 3051 from being corroded and rusted after long-term use.
[0034] like Figure 5 As shown, multiple parallel stabilizing rods 12 are fixedly connected to the side of each clamping plate 3052 away from the clamping ring 3053. The ends of the multiple stabilizing rods 12 away from the clamping plate 3052 respectively penetrate the interior of the sliding first arc-shaped plate 1 and the second arc-shaped plate 2. The stabilizing rods 12 can increase the stability of the clamping plate 3052 when it moves, and prevent the clamping plate 3052 from shifting and clamping the main branch of the shrub.
[0035] Specifically, when using this landscape greening vegetation restraint frame: dig a circular pit around the main branches of the shrub, then place the guide bucket 401 directly into the circular pit, so that the first arc plate 1 and the second arc plate 2 are on the soil, and fix them by external bolts and nuts (e.g. Figure 1 and Figure 3 (As shown); Based on the expansion of the shrub's branches and leaves, the positions of the first shielding ring 302 and the second shielding ring 303 are adjusted respectively using two support rods 301. Then, the first shielding ring 302 and the second shielding ring 303 are bolted and fixed using external bolts. At this time, the elastic constraint net 304 will wrap around the shrub's branches and leaves, which can constrain the growth of the outermost branches and leaves without affecting their growth (e.g., Figure 3 (As shown); the two clamping rings 3053, under the action of the clamping plate 3052 and the spring 3051, will come together to form a ring, clamping the main branch of the shrub; when the shrub grows (such as... Figure 3 and Figure 4 As shown), the guide bucket 401 can confine and gather the roots and stems of the shrub in the soil, preventing the roots and stems from expanding outward and forcing them to grow vertically along the length of the guide bucket 401. The rectangular holes 402 do not affect the shrub's absorption of soil nutrients (as shown). Figure 3 (As shown); inserting the rod 9 with the limiting plate 10 into the soil via the first mounting plate 7 and the second mounting plate 8 respectively can improve the stability of the first arc-shaped plate 1 and the second arc-shaped plate 2 (as shown). Figure 1 (As shown).
[0036] All technical features in this embodiment can be freely combined according to actual needs.
[0037] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.
Claims
1. A garden landscape greening vegetation restraint frame, comprising a first arc-shaped plate (1) and a second arc-shaped plate (2), characterized in that, The second arc plate (2) is bolted to one side of the first arc plate (1) and together they form an annular plate. The first arc plate (1) and the second arc plate (2) are both provided with a constraint mechanism (3) for limiting the branches and leaves of the shrub vegetation on the side facing the inside of the annular plate. The bottom of the first arc plate (1) and the second arc plate (2) are both provided with a guide component (4) for gathering the roots and stems of the shrub vegetation. The constraint mechanism (3) includes two support rods (301) respectively hinged to one side of the first arc plate (1) and the second arc plate (2). The two support rods (301) are respectively hinged to a first shielding ring (302) and a second shielding ring (303) at the ends away from the first arc plate (1) and the second arc plate (2). The first shielding ring (302) is bolted to one side of the second shielding ring (303) and they are enclosed to form a ring. An elastic constraint net (304) is provided between the top of the first arc plate (1) and the bottom of the first shielding ring (302). An elastic constraint net (304) is provided between the top of the second arc plate (2) and the bottom of the second shielding ring (303). Clamping components (305) are provided on the inner walls of the first arc plate (1) and the second arc plate (2).
2. The garden landscape greening vegetation restraint frame according to claim 1, characterized in that, The clamping assembly (305) includes two springs (3051) that are fixedly connected to the inner walls of the first arc plate (1) and the second arc plate (2), respectively. The other end of each of the two springs (3051) is fixedly connected to a clamping plate (3052), and a clamping ring (3053) is fixedly connected to one side of each of the two clamping plates (3052) facing each other.
3. The garden landscape greening vegetation restraint frame according to claim 1, characterized in that, The guide assembly (4) includes a guide bucket (401) that is fixedly connected to the bottom of the first arc plate (1) and the second arc plate (2), respectively. The side wall of the guide bucket (401) is provided with a plurality of rectangular holes (402).
4. A garden landscape greening vegetation restraint frame according to claim 1, characterized in that, The first arc plate (1) and the second arc plate (2) are respectively hinged to a plurality of telescopic rods (5) on one side of the support rod (301). The ends of the plurality of telescopic rods (5) away from the first arc plate (1) and the second arc plate (2) are each hinged to a mounting frame (6). The plurality of mounting frames (6) are respectively bolted to the outer walls of the first shielding ring (302) and the second shielding ring (303).
5. A garden landscape greening vegetation restraint frame according to claim 1, characterized in that, The outer walls of the first arc plate (1) and the second arc plate (2) are respectively fixedly connected to the first mounting plate (7) and the second mounting plate (8). Multiple insert rods (9) are slidably connected through the first mounting plate (7) and the second mounting plate (8). Limiting plates (10) are fixedly connected to the outer walls of the multiple insert rods (9). The bottoms of the multiple limiting plates (10) are respectively attached to the tops of the first mounting plate (7) and the second mounting plate (8).
6. A garden landscape greening vegetation restraint frame according to claim 2, characterized in that, Telescopic cylinders (11) are fixedly connected to the side of each of the two clamping plates (3052) away from the clamping ring (3053). The side of each of the two telescopic cylinders (11) away from the clamping plate (3052) is fixedly connected to the inner wall of the first arc plate (1) and the second arc plate (2), respectively. The two springs (3051) are located inside the two telescopic cylinders (11), respectively.
7. A garden landscape greening vegetation restraint frame according to claim 2, characterized in that, Multiple parallel stabilizing rods (12) are fixedly connected to the side of each of the two clamping plates (3052) away from the clamping ring (3053). The ends of the multiple stabilizing rods (12) away from the clamping plate (3052) respectively penetrate the interior of the sliding first arc plate (1) and the second arc plate (2).