Customization: | Available |
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Chemical Composition: | Elastomeric Polymers |
Color: | White |
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Specific Gravity(g/cm3) | 1.10 | Average Length(mm) | 2.10 |
Nominal Diameter(um) | 18 | Specific surface area(cm2) | 25000 |
Daniel (g/9000m) | 2.5 | Tensile strength(Mpa) | 600-900 |
Fiber Spacing (um) (Dosage0.9/kg/m3) |
660 | Elastic modulus(GPa) | 8.5 |
Number of fiber roots per cubic concrete (100 millon)(Dosage0.9/kg/m3) | 1.4 | Hydrophilia | Good |
Cellulose fiber is made of a special plant species in cold areas as raw materials, is a new type of concrete durability special fiber developed after chemical synthetic fiber, the engineering community is called the third generation of concrete special fiber, with natural hydrophilicity and high strength and high model point. The fiber is the use of a special plant species in the cold region as raw materials, through a series of unique chemical treatment and mechanical processing, itself has natural hydrophilicity and high strength and high mold characteristics, because of the natural division and growth of its plant cells are not artificial, so that the surface has a strong gripping force.
In the subsequent processing, special non-polar materials are used to make the fibers into sheet monomers, which is convenient for the transportation and delivery of the fibers. Under the action of water immersion and friction of the mixer, the flake monomer is easily dispersed into fiber monofilaments, so as to play an anti-cracking effect, which can effectively improve the mechanical properties of concrete, freeze-thaw resistance and impermeability.
Effectively prevent the occurrence of concrete shrinkage cracks
Due to the characteristics of cellulose fiber itself, such as natural hydrophilicity, excellent gripping force, huge fiber specific surface area, and high toughness and strength, after adding to the concrete, water immersion and external force, the formation of a large number of evenly distributed fine fibers, which can effectively prevent the plastic shrinkage of concrete, dry shrinkage and temperature changes caused by cracks.
1. Water conservancy projects: DAMS, aqueducts, canals, water, etc.;
2, high-speed rail: Bridges, tunnels, ballastless track, etc.;
3, Industrial and civil construction: industrial construction, civil construction, etc.;
4, others: highway, energy engineering, etc.
5. Ocean engineering: cross-sea bridge, port terminal, etc.;
6, underground structure engineering: underground construction
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