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Tai'an Jiuzhou Geotechnical Materials Co., Ltd.

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Home > News Center Co., Ltd. > Engineering Applications of Steel-Plastic Composite Geogrids
News Center Co., Ltd.
Engineering Applications of Steel-Plastic Composite Geogrids
Publish Time:2022-04-19        View Count:17        Return to List



The steel-plastic composite geogrid is a high-strength material formed by wrapping high-tensile steel wires with high-density polyethylene to create strong strips, which are then woven into a grid pattern at right angles and ultrasonically welded into shape. The tensile strength of the reinforcing strips can be adjusted according to engineering requirements by varying the aperture diameter and the number of steel wires used.


Steel-plastic composite geogrid


Engineering Applications: Suitable for civil engineering projects including highways, railways, embankments, bridge abutments, construction access roads, docks, revetments, flood barriers, dams, beachfront management, cargo yards, waste disposal sites, airports, sports fields, eco-friendly buildings, soft soil foundation reinforcement, retaining walls, slope protection, and road wear resistance.


[Features]:


1. High strength, low creep, and adaptable to various soil environments, it fully meets the requirements for tall retaining walls in high-grade highways.


2. It can effectively enhance the interlocking and gripping action of the筋 bearing surface, strengthen the bearing capacity of the foundation, effectively constrain the lateral displacement of the soil mass, and improve the stability of the foundation.


Compared to traditional grates, it boasts features such as increased strength, higher load-bearing capacity, corrosion resistance, anti-aging properties, larger friction coefficient, uniform holes, ease of installation, and a longer service life.


4. More suitable for deep-sea operations and embankment reinforcement, it fundamentally solves the technical challenges of other materials used in stone baskets, such as low strength, poor corrosion resistance, and short service life due to long-term erosion by seawater.


5. Effectively prevents construction damage caused by machinery crushing or destroying during the construction process.


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