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Polyester Nonwoven Geotextile
Created with Pixso.

400gsm PET Polyester Nonwoven Geotextile High Strength For Civil Engineerings

400gsm PET Polyester Nonwoven Geotextile High Strength For Civil Engineerings

Brand Name: SZ
Model Number: Polyester Nonwoven Geotextile
MOQ: 20GP
Price: $0.3-$2.0/SQM
Payment Terms: L/C,D/P,T/T,Western Union,MoneyGram
Supply Ability: 8Ton Per Day
Detail Information
Place of Origin:
China
Certification:
ISO/CE
Product Name:
Polyester Nonwoven Geotextile
Material:
Pure Polyester
Color:
White
Length:
50-100 M
Type:
Filament Nonwoven
Application:
Civil Engineering
CBR Burst Strength:
200-4000 N
Elongation:
25-100%
Width:
1-6 M
Weight:
150-800 G/m2
Packaging Details:
Roll By Woven Bags
Supply Ability:
8Ton Per Day
Highlight:

400gsm Polyester Nonwoven Geotextile

,

Polyester Nonwoven Geotextile High Strength

Product Description

400gsm Pet Continuous Filament Polyester Nonwoven Geotextile For Civil Engineerings

 

Polyester filament geotextile is a non-woven geosynthetic material made of polyester chips (PET) through spinning, laying nets, needle punching and other processes. Its performance is better than that of short-fiber geotextile and is widely used in the field of civil engineering.

 

Product Overview

 

      Raw Materials and Process

Polyester filament geotextile is made of polyester chips through melt spinning, air-laid web and needle punching reinforcement process to form a three-dimensional pore structure. Compared with staple geotextile, its fiber arrangement is more uniform, and new materials are used in the production process without recycled materials.

 

Main Features

· High strength: The tensile strength is significantly higher than that of staple geotextile, especially suitable for high-load scenarios.

· Corrosion resistance: Acid and alkali resistant, aging resistant, adaptable to complex geological environments.

· Water permeability: The three-dimensional structure achieves efficient drainage and has anti-filtration function.

· Thermal stability: High temperature resistance (-60℃~120℃), good flexibility.

Item
Mass deviation
per unit area
Thickness
(mm≥)
Width deviation
(%)
Breaking strength
(KN/m)
Breaking elongation
(%)
CBR burst strength
(KN≥)
Sieve size O
(mm)
coefficient of vertical permeability
(cm/s)
Tear Strength
(KN≥)
100
-6
0.8
-0.5
4.5
40-80
0.8
0.07 - 0.2
Kx(10-4 - 10-3)
0.14
150
1.2
7.5
1.4
0.21
200
1.6
10.5
1.8
0.28
250
-5
1.9
12.5
2.2
0.35
300
2.2
15
2.6
0.42
350
2.5
17.5
3.0
0.49
400
2.8
20.5
3.5
0.56
450
3.1
22.5
4
0.63
500
-4
3.4
25
4.7
0.7
600
4.2
30
5
0.82
800
5.5
40
7
1.1
Notes
 
 
 
MD/CD
 
 
 
K=1.0 - 9.9
MD/CD

400gsm PET Polyester Nonwoven Geotextile High Strength For Civil Engineerings 0


Key application scenarios

 

1. Water conservancy projects

· Anti-filtration layer of dams and slope protection to prevent soil erosion.

· Component of river regulation and anti-seepage composite layer of artificial lakes.

 

2. Transportation infrastructure

· Isolation and reinforcement of highway/railway subgrade to delay reflective cracks.

· Drainage of airport runway foundation to enhance foundation stability.

 

3. Environmental protection projects

· Anti-seepage and isolation of landfills and waste liquid treatment plants.

· Anti-scour protection layer in coastal beach reclamation.

 

400gsm PET Polyester Nonwoven Geotextile High Strength For Civil Engineerings 1400gsm PET Polyester Nonwoven Geotextile High Strength For Civil Engineerings 2

 

Technical parameters and construction points

1. Specifications

·Weight range: 100~1000g/㎡ (commonly used 150~800g/㎡).

·Size: width 2~6 meters, length 50~100 meters (customizable).

 

2. Construction specifications

·Laying method: buried in the soil, covering thickness ≥30cm; overlap width ≥20cm, sutured or hot welded.

·Edge treatment: fixed with sandbags or wire to avoid displacement.

·Quality control: damage needs to be checked after construction, and patches of the same material should be used for repair.

 

Purchase suggestions

·Prefer high-strength filament products to avoid mixing with short fibers.

·Composite anti-seepage projects must be used with geomembranes, and the permeability coefficient must be ≤10⁻¹¹m/s.

 

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