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Fiberglass mesh is a kind of leno-woven textile made by C- glass/ E-glass fiber as the base material, and then
coated with acrylic latex. It has good alkali resistance, flexibility and high tensile strength
Fiberglass mesh is a kind of leno-woven textile made by C- glass/ E-glass fiber as the base material, and then
coated with acrylic latex. It has good alkali resistance, flexibility and high tensile strength
1. Exceptional resilience to alkaline substances and corrosion resistance.
2. High tensile strength and impact resistance.
3. Consistent dimensional stability and deformation resistance.
4. Excellent adhesion to resins and water resistance.
5. Stable in varying temperatures and flame resistance.
6. Supple, pliable, and well-organized.
7. Easy to use and uncomplicated.
8. Resilience to the effects of aging.
9. Excellent bonding with cement mortar.
Data Sheet:
Common specification:
Type | Weight(g/m2) | Gum content | Positioning(N) | Weave |
4*4 | 180±3 | 16% | ≥4 | Leno |
4*4 | 160±3 | 14% | ≥3 | Leno |
4*4 | 145±3 | 14% | ≥3 | Leno |
5*5 | 160±3 | 14% | ≥3 | Leno |
5*5 | 140±3 | 14% | ≥3 | Leno |
5*5 | 125±3 | 14% | ≥2.5 | Leno |
10*10 | 110±3 | 16% | ≥2 | Leno |
3*3*6 | 250±5 | 14% | ≥5 | Leno |
1. Exceptional resilience to alkaline substances and corrosion resistance.
2. High tensile strength and impact resistance.
3. Consistent dimensional stability and deformation resistance.
4. Excellent adhesion to resins and water resistance.
5. Stable in varying temperatures and flame resistance.
6. Supple, pliable, and well-organized.
7. Easy to use and uncomplicated.
8. Resilience to the effects of aging.
9. Excellent bonding with cement mortar.
Data Sheet:
Common specification:
Type | Weight(g/m2) | Gum content | Positioning(N) | Weave |
4*4 | 180±3 | 16% | ≥4 | Leno |
4*4 | 160±3 | 14% | ≥3 | Leno |
4*4 | 145±3 | 14% | ≥3 | Leno |
5*5 | 160±3 | 14% | ≥3 | Leno |
5*5 | 140±3 | 14% | ≥3 | Leno |
5*5 | 125±3 | 14% | ≥2.5 | Leno |
10*10 | 110±3 | 16% | ≥2 | Leno |
3*3*6 | 250±5 | 14% | ≥5 | Leno |
a) A thin slurry can be strengthened and surface cracks eliminated by using 75g per square meter or less with a 4*4 grid pattern.
b) To prevent cracking and breaking on indoor and outdoor walls caused by different materials or expansion coefficients, 110g per square meter or approximately with a 4*4 grid pattern is commonly applied.
c) To prevent cracking and scattered pressure in walls mixed with various materials, particularly in external wall insulation systems, 145g per square meter or approximately with a 4*4 grid pattern is used.
d) In order to allow movement between layers and prevent cracks and ruptures due to shrinkage or temperature changes, 160g per square meter or approximately with a 4*4 grid pattern is employed in reinforcing the insulator layer of mortar.
Our factory:
a) A thin slurry can be strengthened and surface cracks eliminated by using 75g per square meter or less with a 4*4 grid pattern.
b) To prevent cracking and breaking on indoor and outdoor walls caused by different materials or expansion coefficients, 110g per square meter or approximately with a 4*4 grid pattern is commonly applied.
c) To prevent cracking and scattered pressure in walls mixed with various materials, particularly in external wall insulation systems, 145g per square meter or approximately with a 4*4 grid pattern is used.
d) In order to allow movement between layers and prevent cracks and ruptures due to shrinkage or temperature changes, 160g per square meter or approximately with a 4*4 grid pattern is employed in reinforcing the insulator layer of mortar.
Our factory: