| Feature |
Woven Geotextile |
Non-Woven Geotextile |
| Material Composition |
Made using slit-film polypropylene or polyester yarns |
Made using polyester or polypropylene fibers bonded together |
| Manufacturing Process |
Manufactured by weaving synthetic fibers into a strong, grid-like structure |
Manufactured using needle-punching, thermal bonding, or chemical processes |
| Strength & Durability |
High tensile strength, durable under heavy loads |
Lower tensile strength, but still durable for separation applications |
| Water Permeability |
Low permeability, limits water flow |
High permeability, allows water to pass through easily |
| Primary Use |
Generally used for soil stabilization and load distribution |
Primarily used for drainage, filtration, and erosion control |
| Flexibility |
Stiff, less flexible compared to non-wovens |
Soft, flexible, and easier to conform to uneven surfaces |
| UV Resistance |
Higher UV resistance due to tightly woven fibers |
Lower UV resistance, may degrade faster under direct sunlight |
| Resistance to Puncture |
More resistant to puncture due to rigid structure |
Less resistant to puncture but provides better adaptability |
| Filtration & Drainage |
Limited filtration ability, mainly used for reinforcement |
Excellent for filtration and drainage systems |
| Cost |
Typically, more expensive due to durability |
Typically, lower cost, depending on application needs |
| Typical Applications |
Road construction, embankments, erosion control, reinforcement |
Drainage systems, landfills, landscaping, sediment control
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