1708 Fiberglass Cloth

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FAQ

nan
Use glue, such as resin glue or marble glue.
nan
Glass fiber gridding cloth With glass fiber woven fabric as base material, glass fiber gridding cloth is coated with highly resistant emulsion and featured by good alkali resistance, flexibility and high tensile resistance in the bidirection of warp and weft. It is widely used for thermal insulation, water proofing and crack resistance of internal and external building walls. The glass fiber gridding cloth mainly adopts alkali glass fiber yarn (with silicate, stability as main components) and made by high-temperature heat setting such as anti alkali liquid and strengthening agent of the special organization structure - lace stitch. Main characteristics: 1. chemical stability, resistance to alkali, acid, water, cement erosion resistance and chemical corrosion , strong styrene resin bonding and easy to dissolve in, etc. 2. high strength, high modulus, light weight. 3. dimension stability, stiffness, smoothness, and easy to contraction deformation, good positioning. 4. good shock resistance (high intensity, strong tenacity of gridding cloth)
Is the interior wall made of fiberglass mesh or wire mesh?
Hello If the cracks on the wall more, can use the grid with paste, then the putty construction; if only partial cracks, can also use ordinary adhesive bandage. But in any case, when the wall putty is used, the steel wire mesh is not used, and if it is made of cement mortar, then the steel wire mesh should be used.
nan
Of course, its base material is glass fiber. You said it was rough, probably the reason wass that in the process of producing glass fiber, immature technology caused broken filament, and after treatment, the adhesive?sticker, alkali-resistant glue or weather-proof glue was unevenly attached on the surface. So it looks rough. This is just the unqualified product in production process, and there isn't any counterfeit product. These product are not beautiful and their strength will be lower than that of qualified products. (The intensity of different mesh will have different degrees of decline: generally, the largest mesh opening is, the greater will the strength decline; conversely, the smaller mesh opening is, the smaller will the strength decline).
What is the tensile strength of carbon fiber and glass fiber?
Carbon fiber is a new material with excellent mechanical properties, it is less than the proportion of steel 1/4, the tensile strength of carbon fiber resin composite materials are generally above 3500Mpa, is 7~9 times that of steel, tensile elastic modulus 23000~43000Mpa was also higher than that of steel.
nan
1, the product adopts high quality, wax-free, E-glass and electric fiber yarn as the substrate, knitted into a variety of mesh cloth, and is made through heat drying dehydration, and then impregnated with epoxy resin mixture unique formula, dispensing glue under moderate temperature, and heat drying curing. 2, according to the property of the impregnated resin, the products can be divided into solvent and solvent-free mesh mesh. The main differences between the two mesh are as follows: 2.1, impregnated resin is different: Solvent Mesh contains acetone, solvent-free mesh is pure resin. 2.2, different procedures of impregnation: Solvent mesh is impregnated at normal temperature air, and it is opaque; while solvent-free mesh is impregnated under the medium-temperature vacuum pressure, and the mesh is transparent. 2.3, containing different amounts of plastic: The proportion of resin contained in solvent-free mesh is much larger than a solvent mesh, about twice of the solvent mesh. 2.4 application is different: Solvent-free mesh is suitable as an insulating layer between the coils with no partial discharge at very high field intensity the use of solvent-free mesh can reduce the thickness of the interlayer insulation.
Which is good, glass fiber composite or carbon fiber?
The strength of carbon fiber reinforced composites is higher than that of glass fiber composites, but the cost of carbon fiber is higher.
nan
Of course, it is Yes.