• Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric System 1
  • Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric System 2
  • Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric System 3
  • Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric System 4
  • Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric System 5
  • Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric System 6
Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric

Coir Geotextile Mesh - Pet Long Fiber White Construction Filter Fabric

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Loading Port:
Qingdao
Payment Terms:
TT OR LC
Min Order Qty:
10000 m²
Supply Capability:
500000 m²/month

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 Structure of High Tensile  Pet Long Fiber Description:

Tensile and tearing resistance, bursting resistance, resistance to puncture, such as high mechanical strength, is equally grams weighs more than doubling of staple fiber geotextile, especially bursting resistance, strength reached more than 2200 Newton, in the stone slope protection, can effectively prevent irregular stones on the impact of the cloth;

Main Features of the Pet Long Fiber

The geotextile is made of polypropylene staple fibers on cross-laying equipment and needle punched equipment.

Used in dam, tunnel, reservoir, channel and roofing for anti-leakage, It laso used in scrap yard protection.

  • Water conservancy project and hydropower project

  • good extension performance, stress dispersion and transmission is fast, make the uniformly distributed load
  • the friction coefficient is big, not easy to slip when construction;

  • good chemical resistance;

  • corrosion resistance;

Pet Long Fiber Images

 

High Tensile  Non Woven Polypropylene  Geotextile for Road Construction

 

High Tensile  Non Woven Polypropylene  Geotextile for Road ConstructionHigh Tensile  Non Woven Polypropylene  Geotextile for Road Construction

 

High Tensile  Non Woven Polypropylene  Geotextile for Road Construction

 

 

Pet Long Fiber Specification

  • Water conservancy project and hydropower project

  • Road paving,railway

  • Airport and port 

  • River bank protection and tunnel

  • Environmental protection, etc 

 

ItemValueNote
100150200250300350400450500600800
Weight Variation(%)-8-8-8-8-7-7-7-7-6-6-6
Thickness(mm)0.91.31.72.12.42.733.33.64.15
Width Variation%-0.5
Breaking Strength(   KN/m)2.54.56.589.5111314161925MD and TD
Elongation at break%25-100
CBR Mullen Burst   Strength KN0.30.60.91.21.51.82.12.42.73.24
Sieve Size O90(mm)0.07-0.2
Vertical Permeability   Coefficient cm/sK×(10-1-10-3)K=1.0-9.9
Tearing Strength KN0.080.120.20.20.20.30.30.40.40.50.6MD and TD

 

FAQ

We have organized several common questions for our clients,may help you sincerely:

Q1: How about your company?

A1:Our company are one of the largest geosynthetic products supplier in the world.We have the products experience more than 20 years.Already export to USA/Germeny/Australia/Zambia/Brazil etc.more than 20 countries.Almost 10years.Our products including Geocell/Fiberglass Geogrid/Geomembrane/Geotextile/Geonet etc.

Q2.Does your products have good qualitity?

A2:Yes,we have do many big projects such as the 2008 Beijing Olympic BIRD NEST. Divert water from the south to the north project. And our products have CE certificate also.

Q3:How long can we receive the products after purchase?

A3:In the purchase of product within three working days, We will arrange the factory delivery as soon as possible. The pecific time of receiving is related to the state and position of customers.Commonly 15-20 working days can be delivery.

Q: How do geotextiles help in sediment control?
Geotextiles help in sediment control by acting as a barrier that traps sediment particles while allowing water to flow through. They prevent erosion by stabilizing the soil, and also help in filtration by retaining sediment and allowing clean water to pass.
Q: What are the different geotextile installation techniques for roadways?
There are several geotextile installation techniques for roadways, including overlay installation, trench installation, and full-depth installation. Overlay installation involves placing the geotextile on top of the existing road surface before applying a new layer of asphalt or other material. Trench installation involves placing the geotextile in a trench dug along the road's edge and backfilling it with soil or aggregate. Full-depth installation involves placing the geotextile directly beneath the entire road structure, providing reinforcement and separation between the subgrade and the overlying layers. The choice of technique depends on the specific road construction requirements and the desired benefits of using geotextiles.
Q: Can geotextiles be used in pond liners?
Yes, geotextiles can be used in pond liners. Geotextiles serve as a protective layer for the pond liner, preventing punctures and providing additional strength and stability to the overall structure.
Q: How are geotextiles used in railway construction?
Geotextiles are commonly used in railway construction for various purposes such as erosion control, filtration, separation, and reinforcement. These synthetic fabrics are placed in different layers beneath the railway tracks to provide stability, prevent soil erosion, and improve drainage. They also help to separate and reinforce different layers of soil, preventing intermixing and maintaining the overall integrity of the tracks. Overall, geotextiles play a crucial role in enhancing the performance and longevity of railway infrastructure.
Q: What are the key factors affecting the filtration performance of geotextiles?
The key factors affecting the filtration performance of geotextiles include the permeability of the geotextile, the pore size distribution, the thickness and weight of the geotextile, the hydraulic gradient, and the particle size of the soil being filtered.
Q: There are engineering budgets
Where are you from where you want to sell
Q: what is the life span of a geotextile tube ?
Engineered geotextiles have design lives of up to 120yrs. It depends on what geotextile you are talking about and what environment it is placed in.
Q: What are the considerations for geotextile selection in landfill projects?
When selecting geotextiles for landfill projects, several considerations must be taken into account. These include the desired function of the geotextile, such as separation, filtration, or drainage. The physical properties of the geotextile, such as tensile strength, puncture resistance, and thickness, are also important factors to consider. Additionally, the site conditions, such as soil type, water table, and potential for chemical exposure, should be evaluated to ensure the geotextile's compatibility. Lastly, the long-term durability and cost-effectiveness of the geotextile should be considered to ensure its suitability for the landfill project.
Q: What are the specifications for geotextiles in drainage projects?
The specifications for geotextiles in drainage projects typically include factors such as the material type, weight, permeability, tensile strength, and filtration properties. The geotextile material should be appropriate for the specific drainage application and capable of withstanding the anticipated loads and environmental conditions. It should also have a specific weight or thickness to ensure proper performance. The permeability of the geotextile is important to allow water to flow through while preventing soil particles from clogging the drainage system. Tensile strength is a crucial factor as it determines the geotextile's ability to withstand installation stresses and potential loads. Lastly, filtration properties are essential to retain soil particles while allowing water to pass through.
Q: What are the different factors to consider for geotextile selection in landfill applications?
There are several factors to consider when selecting geotextiles for landfill applications. These include the type and composition of waste being disposed, the required strength and durability of the geotextile, its resistance to chemical and biological degradation, its ability to allow for proper water drainage, and its compatibility with the site conditions and construction methods. Additionally, factors such as cost, availability, and regulatory requirements should also be taken into account during the selection process.

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