Weight: 100g/m2-1000g/m2
Width: 1m-6m
Length: 30m-150m
Color: White, black, orange, green
Technology: Needle-punched

Production description
White geotextile fabricsSynthetic and permeable materials have become essential in the field of civil construction as they are used to enhance and optimize soil characteristics. These materials are carefully selected and placed in construction projects to ensure that they are able to withstand harsh weather conditions and remain durable over time. With their superior permeability, they are able to effectively manage water runoff and drainage systems, helping prevent erosion, flooding, and other potential hazards. By incorporating these materials into construction projects, engineers and builders are able to provide safer and more resilient structures for communities around the world.Non woven GeotextilesWith poor soils being a common challenge in many construction projects, it's crucial to find ways to make them more suitable for building. This involves using techniques that can improve the soil's quality and stability. By doing so, the soil can support the weight and stress of construction structures without settling or shifting, minimizing the risk of damage or collapse. Such techniques may include adding stabilizers, compacting the soil, or using geotextiles to reinforce it. Ultimately, investing in soil improvement can reduce construction costs and ensure the longevity and safety of the building.nonwoven geotextile fabricThe capability to filter, protect, drain, reinforce and separate soils is within our reach. By applying these techniques, we can enhance soil productivity and prevent soil degradation. Our expertise in separating, filtering, protecting, reinforcing and draining soils puts us in a unique position to deliver superior soil performance. Let us help you achieve optimal soil conditions for your agricultural needs.
White geotextile fabricWoven fabric and belong to the two categories of made from polymers like polypropylene and polyester. These materials undergo different manufacturing processes.Nonwoven fabric
GeotextilesIn the field of civil engineering, geosynthetics play a crucial role in various types of infrastructure projects ranging from roads, drainage systems, and landfills to harbors and other construction works. These synthetic materials are highly durable and resistant to environmental impacts, making them ideal for use in demanding applications where they can offer long-lasting protection and stability. Because of their unique construction, geosynthetics can provide a range of benefits, such as improving soil stability, reducing erosion, and enhancing drainage capabilities, among others. Whether used to reinforce soil structures or prevent soil erosion, geosynthetics have become a popular choice for modern engineers looking to design more efficient, safe, and sustainable infrastructure projects.
For applications that require particularly long Geotextile nonwoven durability, these classic non woven geotech fabricNon-woven geotech fabric is widely considered to be one of the best solutions when it comes to filtration and separation in various applications. This type of fabric is used to improve the performance and longevity of the particle layer, ensuring that the layers remain stable and don't mix with each other. One of the primary uses of non-woven geotech fabric is in ground stabilization and drainage applications where it is used to prevent soil layers from mixing. In addition to separation and stabilization, this type of fabric also provides a filtering function that helps to keep unwanted materials out of the soil, ensuring that it remains healthy and productive. All things considered, non-woven geotech fabric is an excellent option that provides reliable performance, durability, and versatility in a wide range of applications.
| Test | Units | BPM100 | BPM150 | BPM200 | BPM250 | BPM300 | BPM350 | BPM400 | BPM450 | BPM500 | BPM600 | BPM800 | |
| Mechanical Properties | Tensile Strength | kN/m | 2.5 | 4.5 | 6.5 | 8 | 9.5 | 11 | 12.5 | 14 | 16 | 19 | 25 |
| (MD and XMD) | |||||||||||||
| Trapezoidal | |||||||||||||
| Tear Strength ≥ | kN | 0.08 | 0.12 | 0.16 | 0.2 | 0.24 | 0.28 | 0.33 | 0.38 | 0.42 | 0.46 | 0.6 | |
| (MD and XMD) | |||||||||||||
| CBR Burst | kN | 0.3 | 0.6 | 0.9 | 1.2 | 1.5 | 1.8 | 2.1 | 2.4 | 2.7 | 3.2 | 4 | |
| Strength ≥ | |||||||||||||
| Weight | g/m2 | 100 | 150 | 200 | 250 | 300 | 350 | 400 | 450 | 500 | 600 | 800 | |
| Weight Variation | % | -8 | -8 | -8 | -8 | -7 | -7 | -7 | -7 | -6 | -6 | -6 | |
| Thickness | mm | 0.9 | 1.3 | 1.7 | 2.1 | 2.4 | 2.7 | 3 | 3.3 | 3.6 | 4.1 | 5 | |
| Width Variation | % | -0.5 | |||||||||||
| Elongation at Break | % | 25 ~ 100 | |||||||||||
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