A new type of grass planting frame for soil stabilization

CN224627329UActive Publication Date: 2026-08-14LUAN TONGQU ROAD CONSTRUCTION MATERIALS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-16
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]目前,现有植草框多采用混凝土、塑料等材料制作,此类材料不仅难以自然降解,易形成长期环境负担,不符合当前环保低碳的发展要求,而且生产加工流程复杂,制作成本较高

Benefits of technology

1、针对传统植草框采用混凝土、塑料等材料难降解、不环保且生产加工复杂的问题,本实用新型以竹片作为主体材料,竹片易自然降解,可避免长期环境负担,符合环保低碳要求,且竹片取材便捷、加工简单,大幅简化制作流程,降低生产难度和成本;同时竹片材料消耗量少于传统材料,解决了传统植草框材料消耗大的问题。此外,长方形框体结构规则,运输时空间利用率高,解决了传统植草框因形状不规则导致运输成本高的问题,且上下叠放的框体设计配合整体结构,提升了承重性能,克服了传统产品承重欠佳的缺陷。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224627329U_ABST
    Figure CN224627329U_ABST
Patent Text Reader

Abstract

This utility model provides a novel grass planting frame for soil stabilization, comprising a frame body, a first diagonal rod, and a second diagonal rod. Two frames are stacked vertically to form a fixed frame. The interior of each frame body has a slot, the slot being a rectangular ring. Multiple first diagonal rods slope upwards, and multiple second diagonal rods slope downwards. The first and second diagonal rods are equidistantly spaced. Addressing the problems of traditional grass planting frames using materials such as concrete and plastic, which are difficult to degrade, environmentally unfriendly, and complex to manufacture, this utility model uses bamboo strips as the main material. Bamboo strips are easily biodegradable, avoiding long-term environmental burden and meeting environmental and low-carbon requirements. Furthermore, bamboo strips are readily available and easy to process, significantly simplifying the manufacturing process and reducing production difficulty and cost. Simultaneously, the consumption of bamboo strips is less than that of traditional materials, solving the problem of high material consumption in traditional grass planting frames.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of grass planting frame technology, specifically a new type of grass planting frame for soil stabilization. Background Technology

[0002] In engineering fields such as slope management, riverbank protection, and roadbed slope reinforcement, grass frames are widely used as an important tool for soil stabilization and greening in order to effectively curb soil erosion, improve the stability of the surface structure, and promote vegetation restoration.

[0003] Currently, most existing grass planting frames are made of materials such as concrete and plastic. These materials are not only difficult to degrade naturally, easily creating a long-term environmental burden and failing to meet current environmental protection and low-carbon development requirements, but also have complex production processes and high manufacturing costs. Furthermore, traditional grass planting frames have structural design deficiencies; some products have irregular shapes, resulting in low space utilization during transportation and increased transportation costs. Their overall deformation resistance and load-bearing capacity are also poor, making them prone to displacement or damage when exposed to rainwater erosion or external crushing, making it difficult to maintain stable soil stabilization effects in the long term. In addition, the construction of some grass planting frames is cumbersome and consumes a large amount of materials, further increasing project costs and failing to meet the actual engineering needs for environmentally friendly, efficient, and economical soil stabilization and grass planting. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology and propose a new type of grass planting frame for soil stabilization.

[0005] To achieve the above objectives, this utility model adopts the following technical solution: a novel grass planting frame for soil stabilization, comprising a frame body, a first inclined rod, and a second inclined rod. Two frame bodies are stacked vertically to form a fixed frame. The interior of each frame body has a slot, the slot being a rectangular ring. Multiple first inclined rods slope upwards, and multiple second inclined rods slope downwards. The multiple first and second inclined rods are equidistant. The multiple first inclined rods are placed on top of the second inclined rods. Both ends of the first and second diagonal rods are located inside the slot. Two adjacent first diagonal rods and two adjacent second diagonal rods form a square grid, and the frame, the first diagonal rods, and the second diagonal rods form a triangular grid.

[0006] Preferably, the plurality of first diagonal bars and the plurality of second diagonal bars are all bamboo strips.

[0007] Preferably, the distance between two adjacent first diagonal bars is 25cm, the distance between two adjacent second diagonal bars is 25cm, the square grid is a square with a side length of 25cm, and the length and width of the frame are 2m and 1m respectively.

[0008] Preferably, the two ends of the plurality of first diagonal rods are fixedly connected to the frame.

[0009] This utility model has the following beneficial effects: 1. Addressing the issues of traditional grass planting frames using materials like concrete and plastic that are difficult to degrade, environmentally unfriendly, and complex to manufacture, this invention uses bamboo strips as the main material. Bamboo strips are easily biodegradable, avoiding long-term environmental burden and meeting environmental and low-carbon requirements. Furthermore, bamboo strips are readily available and easy to process, significantly simplifying the manufacturing process and reducing production difficulty and costs. Simultaneously, bamboo strips consume less material than traditional materials, solving the problem of high material consumption in traditional grass planting frames. In addition, the regular rectangular frame structure maximizes space utilization during transportation, solving the problem of high transportation costs caused by the irregular shape of traditional grass planting frames. Moreover, the stackable frame design, combined with the overall structure, improves load-bearing capacity, overcoming the shortcomings of traditional products in terms of insufficient load-bearing capacity.

[0010] 2. The specific connection between the frame and the diagonal braces endows the structure with multiple functions: The stacked frames form a stable basic framework, while the intersecting diagonal braces connect with the frames to form triangular and square grids. The triangular grid utilizes the stability of triangles to enhance the overall resistance to deformation, resisting the pressure from rainwater erosion and external crushing, thus solving the problem of insufficient deformation resistance in traditional grass planting frames. The square grid provides a regular space for vegetation growth, reducing soil erosion and combining soil stabilization and greening functions. The connection method between the diagonal braces and the frame makes the overall structure compact, requiring no complicated operations during construction, and making laying and splicing convenient, solving the problem of cumbersome construction of traditional grass planting frames. At the same time, the synergistic effect of the multiple grid structures reduces material consumption while improving the durability of the soil stabilization effect. Attached Figure Description

[0011] Figure 1 is a cross-sectional schematic diagram of the overall structure of this utility model; Figure 2 is an enlarged view of section A in Figure 1 of this utility model.

[0012] Among them, 1. frame; 2. first diagonal bar; 3. second diagonal bar; 4. slot; 5. square grid; 6. triangular grid. Detailed Implementation

[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0014] Example: As shown in Figures 1-2, this utility model embodiment provides a novel grass planting frame for soil stabilization, including a frame body 1, a first inclined rod 2, and a second inclined rod 3. The two frame bodies 1 are stacked one on top of the other to form a fixed frame. The interior of the two frame bodies 1 is provided with a slot 4, which is rectangular in shape. Multiple first inclined rods 2 are inclined from bottom to top, and multiple second inclined rods 3 are inclined from top to bottom. The multiple first inclined rods 2 and the second inclined rods 3 are equidistant. The multiple first inclined rods 2 are placed on top of the second inclined rods 3. The two ends of the multiple first inclined rods 2 and the second inclined rods 3 are located inside the slot 4. Two adjacent first inclined rods 2 and two adjacent second inclined rods 3 form a square grid 5. The frame body 1, the first inclined rods 2, and the second inclined rods 3 form a triangular grid 6.

[0015] Using bamboo strips as the material for the first diagonal brace 2 and the second diagonal brace 3 fully utilizes the lightweight, high-strength, and tough characteristics of bamboo. This reduces weight while ensuring structural strength, further improving construction convenience. Its natural biodegradability allows the grass-planting frame to gradually integrate into the natural environment after fulfilling its soil-stabilizing function, avoiding secondary pollution. Compared to traditional materials, this is more in line with ecological and environmental protection principles. Furthermore, bamboo is widely available and inexpensive, offering [advantages / benefits]. It effectively reduces production costs and solves the problems of complex and costly production and processing of traditional materials.

[0016] The first diagonal bar 2 and the second diagonal bar 3 are set at equal intervals of 25cm to form a square grid 5 with a side length of 25cm. This size can provide enough space for vegetation growth and effectively restrain soil particles to prevent soil erosion. At the same time, the frame 1 adopts a rectangular design of 2m×1m, which is easy to adapt to standard transportation vehicles, improves transportation efficiency, reduces transportation costs, and can be flexibly combined during laying to adapt to different terrains and engineering needs, solving the problems of irregular shape and inconvenient transportation of traditional grass planting frames.

[0017] By fixing the two ends of the first diagonal bar 2 and the second diagonal bar 3 to the frame 1, the entire grass planting frame forms a tightly integrated whole structure, which greatly enhances the stability and load-bearing capacity of the frame, and can better resist the damage caused by rainwater erosion and external crushing, thus extending its service life. The fixed connection method also ensures the stability of the triangular grid 6 and the square grid 5 structure, so that each component works together to stabilize the soil, solving the problems of loose structure and poor deformation resistance of traditional grass planting frames.

[0018] Working Principle: When using the new type of grass planting frame for soil stabilization, first, the surface of the area to be stabilized is leveled. Then, multiple grass planting frames are sequentially spliced ​​and laid on the treated area. The rectangular structure and splicing design of the frame 1 quickly cover the slope or ground. After laying, nutrient soil is filled into the square grid 5 of the grass planting frame, and grass seeds are sown or turf is laid. At this time, the triangular grid 6 formed by the intersection of the first diagonal bar 2 and the second diagonal bar 3, with the help of the stability of the triangle, can effectively enhance the overall deformation resistance of the grass planting frame, resist the pressure generated by rainwater erosion and soil lateral displacement, and prevent the grass planting frame from shifting or being damaged by external forces in the early stage, thus playing a role in physically fixing the surface soil. As the grass seeds germinate and grow, the grass roots will gradually penetrate into the soil and bind tightly with the soil, further enhancing the soil cohesion and achieving biological soil stabilization; while the square grid 5 provides a regular space for grass growth, which not only facilitates the control of the planting area, but also reduces soil loss before the roots are stable. The two stacked frames 1 increase the structural thickness, improving the load-bearing capacity of the grass planting frame and allowing it to withstand pedestrian traffic or the impact of small machinery, meeting the needs of various scenarios. Meanwhile, the bamboo-material first diagonal bar 2, second diagonal bar 3, and frame 1 will gradually degrade in the natural environment. Once the grass roots have fully developed and matured and have the ability to stabilize the soil, the grass frame material will naturally integrate into the environment without causing secondary pollution. Ultimately, through the synergistic effect of "temporary soil stabilization by physical structure + long-term soil stabilization by plant roots", the goal of environmentally friendly and efficient soil stabilization and ecological restoration can be achieved.

[0019] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A new type of soil-anchoring grass-planting frame comprising a frame body (1), a first inclined rod (2) and a second inclined rod (3), characterized in that: Two frames (1) are stacked one on top of the other to form a fixed frame. The interior of the two frames (1) is provided with a slot (4). The slot (4) is a rectangular ring. Multiple first diagonal rods (2) are inclined from bottom to top. Multiple second diagonal rods (3) are inclined from top to bottom. Multiple first diagonal rods (2) and second diagonal rods (3) are equidistant. Multiple first diagonal rods (2) are placed on top of second diagonal rods (3). The two ends of multiple first diagonal rods (2) and second diagonal rods (3) are located inside the slot (4). Two adjacent first diagonal rods (2) and two adjacent second diagonal rods (3) form a square grid (5). The frames (1), first diagonal rods (2), and second diagonal rods (3) form a triangular grid (6).

2. The novel grass planting frame for soil fixation according to claim 1, characterized in that: The first diagonal bar (2) and the second diagonal bar (3) are all bamboo strips.

3. The novel grass planting frame for soil fixation according to claim 1, wherein: The distance between two adjacent first diagonal bars (2) is 25cm, the distance between two adjacent second diagonal bars (3) is 25cm, the square grid (5) is a square with a side length of 25cm, and the length and width of the frame (1) are 2m and 1m respectively.

4. The novel grass planting frame for soil fixation according to claim 1, wherein: The two ends of the first diagonal bar (2) and the second diagonal bar (3) are fixedly connected to the frame (1).