Alkali-resistant Glass Fiber Grid Cloth

Alkali-resistant glass fiber mesh is in alkali or alkali-free glass fiber woven fabric based, and is formed by alkali-resistant coating. The product of high strength, good bonding, docile nature, location excellent. Alkali-resistant glass fiber grid cloth is widely used in wall enhancement, external wall insulation, roofing, and so on, can also be used in cement, plastics, asphalt, marble, mosaics and other wall materials increases, is the ideal material in construction industry.

Advantages of alkali-resistant glass fiber grid cloth:

Alkali-resistant glass fiber with alkali, alkali-free glass fiber than has its distinct characteristics: good alkali resistance, high tensile strength, strong in cement and other alkali medium corrosion resistance, glass fiber reinforced cement products are irreplaceable in reinforced material.

Alkali-resistant glass fiber, glass fiber reinforced cement substrate, as wall materials innovation and economic development, GRC has been widely used in Interior and exterior wall panels, insulation Board, duct Board, garden ornaments and sculptures, civil engineering and many other uses. Reinforced concrete can be achieved or not can be made comparable to some of the products and components. Can be used in non-load-bearing, a minor load-bearing, half load-bearing building components, decorative pieces, agriculture and animal husbandry facilities and so on.

Alkali glass fiber network gingham to in the alkali and no alkali glass fiber network cloth for base material, by acrylic copolymer rubber liquid Hou processing and into, the network cloth has strength high, alkali, acid performance excellent, and resin bond sex strong, easy dissolved Yu styrene, and stiffness sex, and positioning sex very better, main for cement, and plastic, and asphalt, and roofing, and wall body of enhanced material. Shop mainly for GRC, smearing or mechanization, especially suitable for the construction of exterior wall thermal insulation works on site.


Post time: Jun-21-2017