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Triaxial plastic geogrid is an advanced geosynthetic material made from polypropylene (PP) polymer through a precision extrusion and stretching process. Unlike traditional unidirectional or bidirectional geogrids, it utilizes a unique triangular (or hexagonal) mesh structure, providing uniform and excellent mechanical properties in multiple directions (generally defined as the machine direction, transverse direction, and diagonal direction). This innovative geometric design represents a significant advancement in geogrid technology, more efficiently distributing and transferring loads from multiple directions.
Multiaxial High Strength and Stiffness: Its stable triangular structural elements provide significant and balanced tensile strength and modulus in the machine direction, transverse direction, and diagonal direction, achieving true "multidirectional" reinforcement with no apparent weak points.
Excellent Load Spreading: Compared to bidirectional rectangular grids, the triangular structure offers greater structural stability and improved stress spreading efficiency. It can quickly distribute concentrated loads over a wider foundation area with minimal stress decay, significantly reducing differential settlement.
Excellent Particle Interlocking and Constraint: The regular triangular mesh provides comprehensive, robust interlocking and interlocking between the soil and aggregate, effectively restraining lateral movement of the filler and transforming it into a composite reinforced structure with high overall stiffness.
Higher Structural Stability and Torsional Rigidity: The triangle is the most stable geometric structure, which ensures excellent dimensional stability and torsional resistance during laying and filling, preventing curling or deformation, thus ensuring construction quality.
Excellent Long-Term Performance and Durability: Made of high-quality polypropylene, it offers excellent chemical and aging resistance, making it suitable for long-term projects.
High-Standard Road and Railway Subgrade Reinforcement: Particularly suitable for highway, railway trackbeds, and airport runway subgrades subject to heavy, dynamic loads, it effectively reduces rutting and foundation fatigue.
Soft Foundation Treatment: Used for various infrastructure projects on soft soil, it provides a strong "raft foundation" effect and improves overall stability.
Large load-bearing platforms: Used in heavy-load areas such as ports, logistics parks, and container yards, providing a solid and stable foundation.
Soil reinforcement and slope stabilization: Suitable for reinforced soil projects requiring multi-directional force balance.

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