Long Fiber Geotextile The Eco-Friendly Solution for Environmental Projects
Product Introduction
Long fiber geotextile is a geosynthetic material made directly from polyester by spinning and needle consolidation. Product specifications can be selected from 100-800g/m², and the fibers are arranged into a three-dimensional structure. It has good mechanical function, good water permeability, and can resist corrosion, anti-aging. In addition, it can also adapt to the uneven base, resist the damage of external construction force, creep becomes smaller, and can maintain the original function even under long-term load.
Product Properties
Good mechanical function, water permeability, corrosion resistance, aging resistance, and can adapt to uneven base, resist construction external force damage, creep becomes smaller, even under long-term load can still maintain the original function.
Long fiber geotechnical fabric is widely used in the field of infrastructure construction, including but not limited to the following aspects:
Hydraulic Engineering: Filtering for dams and slope protection, isolation and seepage prevention in canals.
Traffic Engineering: Basic isolation, drainage, and reinforcement of roadways, railways, and airport runways; backfilling and slope protection.
Harbor Engineering: Soft foundation treatment, beach revetment, reinforcement of seaport wharves and breakwaters, drainage.
Environmental Engineering: Impervious Barrier for Landfills
Specifications and Standards
During the construction process, the long fiber geotechnical fabric needs to be laid and fixed correctly to ensure the effective play of its functions. After construction, regular inspection should be carried out to ensure its integrity, and any damaged parts should be repaired in time to maintain its long-term effectiveness.To sum up, the long fiber geotechnical fabric plays a crucial role in modern engineering construction due to its excellent performance and wide range of application fields.
Product Specification and Technical Index(GB/T 17639—2023)
Item
| Index
| ||||||||||
Nominal strength/(KN/m) | |||||||||||
6 | 9 | 12 | 18 | 24 | 30 | 36 | 48 | 54 | |||
1.00 | Longitudinal And Transverse Tensile Strength(KN/m≥) | 6.0 | 9.0 | 12.0 | 18.0 | 24.0 | 30.0 | 36.0 | 48.0 | 54.0 | |
2.00 | Elongation Under Maximum Load In Vertical And Horizontal Direction(%) | 30~80 | |||||||||
3.00 | CBR Burst Strength ( KN≥) | 0.9 | 1.6 | 1.9 | 2.9 | 3.9 | 5.3 | 6.4 | 7.9 | 8.5 | |
4.00 | Tearing Strength (KN,≥,LD/TD) | 0.15 | 0.22 | 0.29 | 0.43 | 0.57 | 0.71 | 0.83 | 1.10 | 1.25 | |
5.00 | Sieve SizeO90,O95 (mm) | 0.05~0.30 | |||||||||
6.00 | Vertical Permeability Coefficient (cm/s) | Kx(10ˉ1-10ˉ3) K=1.00-9.90 | |||||||||
7.00 | Width Variation (%≥) | -0.5 | |||||||||
8.00 | Weight Variation (%≥) | -5 | |||||||||
9.00 | Thickness Deviation Rate(%≥) | -10 | |||||||||
10.00 | Coefficient Of Thickness Variation(%≤) | 10 | |||||||||
11.00 | Dynamic Punch | Hole Diameter(mm≤) | 37.0 | 33.0 | 27.0 | 20.0 | 17.0 | 14.0 | 11.0 | 9.0 | 7.0 |
12.00 | Longitudinal And Transverse Breaking Strength(KN)≥ | 0.3 | 0.5 | 0.7 | 1.1 | 1.4 | 1.9 | 2.4 | 3.0 | 3.5 | |
13.00 | Uv resistance (Xenon Arc Lamp Method) | Vertical And Horizontal Strength Retention(%≥) | 70 | ||||||||
14.00 | Uv resistance (Fluorescent UV Lamp Method) | Vertical And Horizontal Strength Retention(%≥) | 80 |