Custom Production Line of Uniaxial Tensile Geogrid

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Jiangsu Saide Machinery Co., Ltd.
Jiangsu Saide Machinery Co., Ltd. covering an area of 50,000 square meters and a construction area of 25,000 square meters, our mainly engaged in research, development, production, promotion and application of the geosynthetics equipment. Our company passes the ISO9001:2000 international quality management system certification and has successfully developed internationally advanced uniaxial stretching devices for geogrid, biaxial stretching devices for geogrid, composite geomembrane devices and geomembrane (piece) devices, and post-processing device for fiberglass (chemical fiber) geogrid, with the help and cooperation of well-known experts, research institutions and professional supporting manufacturers both at home and abroad, which meets the requirement for the equipment for civil engineering materials both at home and abroad, and thoroughly changes the situation of import of the equipment. As a professional Unidirectional Plastic Geogrid Equipment manufacturer and production line of uniaxial tensile geogrid supplier, We are equipped with professional, vigorous and hardworking engineering and technical team that specializes in mechanical equipment and electrical installation and debugging services, and provides customers with free training on-site operation and maintenance personnel. The products produced by the above production lines feature strong tensile strength and small yield and elongation percentage, which are well received by the users at home and abroad.
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What are the key points in the construction process of uniaxial tensile geogrid?
The construction technology of uniaxial tensile geogrid is crucial to ensure the quality and efficiency of the project. The following are some key points during the construction process of uniaxial tensile geogrid:
Site preparation: Before construction, the construction site must be fully prepared. This includes cleaning up the site, removing debris and debris, and ensuring the construction area is level and meets design requirements.
Material preparation: Ensure all required materials are available and inspected and accepted according to design requirements. This includes uniaxial tensile geogrids, fixtures, connectors, etc.
Foundation treatment: Before laying uniaxial tensile geogrid, the foundation needs to be treated. This may involve compaction or reinforcement of the soil to ensure the stability and load-bearing capacity of the foundation.
Arrangement and laying: According to the design requirements, lay the uniaxial tensile geogrid on the foundation in the correct direction and position. During the laying process, it is necessary to ensure that the tensile direction of the geogrid is consistent with the design requirements, and that there is appropriate overlap and fixation between the geogrids.
Fixing and Connecting: Use appropriate fixing equipment and connectors to secure the geogrid to the foundation. Fixing methods can include ground nails, steel nails, buckles, etc. Make sure it is securely fastened and connected tightly to prevent the geogrid from shifting or loosening during use.
Edge treatment: After the geogrid is laid, edge treatment is necessary. Edge fixing equipment or edge cutting can be used to ensure that the geogrid fits closely with the surrounding environment and is not susceptible to external influences.
Quality Inspection: After completing the construction, quality inspection is an essential step. Check whether the laying of geogrid meets the design requirements, whether the fixing is firm, whether the connection is complete, whether the edges are properly processed, etc. If problems are found, make timely corrections and adjustments.
Recording and Cleaning: After the construction is completed, construction records should be kept and the site should be cleaned to remove debris and waste generated during the construction process to keep the construction site tidy.
How does uniaxial tensile geogrid improve the erosion resistance of soil?
Uniaxial tensile geogrids (also known as uniaxial tensile geogrids) play an important role in improving soil erosion resistance. It uses polymer materials, such as polypropylene or polyethylene, and is unidirectionally stretched to form a network structure. Here’s a detailed explanation of how uniaxial tensile geogrids achieve this:
Surface coverage protection: Uniaxial tensile geogrid can form a protective covering on the soil surface to prevent direct impact of water flow and wind on the soil surface. 
Blocking water erosion: The mesh structure of uniaxial tensile geogrid can effectively block the erosion of water flow. When water flows through the geogrid, the grid structure can disperse the impact of the water flow into the surrounding soil, slow down the speed of the water flow, reduce the erosion force, thereby reducing soil loss.
Promote vegetation growth: Uniaxial tensile geogrid can provide support and help vegetation grow and root systems take root. Vegetation cover can effectively fix the soil, reduce the exposed area of the soil, and reduce the risk of soil exposure to external erosion factors.
Slow down slope erosion: In slope engineering, uniaxial tensile geogrids can be embedded into the slope to form lateral support and protective structures. These structures can slow down the flow of water on the slope, block the impact of the water, and reduce the erosion rate of the slope.
Enhance soil stability: By reinforcing the soil structure, uniaxial tensile geogrid can improve the overall stability and erosion resistance of the soil. It can effectively resist the action of external forces, reduce soil deformation and damage, thereby reducing the risk of soil erosion.
Durable: Uniaxial tensile geogrids usually have high durability and anti-aging properties, and can stably exert their anti-erosion effect for a long time, thereby protecting the soil from the effects of erosion.

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