| MOQ: | 1000 pieces |
| Payment Terms: | T/T, PayPal, Xtransfer |
| Supply Ability: | 50000 pieces per day |
Coated Fiberglass Cloth with Wire Reinforcement Fireproof Heat Resistant up to 260C Welding & Cutting Services
The production process can be roughly divided into several key steps:
1. Raw material preparation: Select a specific composition of glass material, melt it, and draw it into extremely fine continuous glass fiber filaments through a platinum plate at high speed. Select steel wire rods that meet the requirements, undergo drawing treatment to achieve the desired diameter, and can be subjected to surface treatments such as galvanizing to prevent rust.
2. Stranding and twisting: Multiple glass fiber strands are bundled into glass fiber yarn, which may be twisted to increase strength and wear resistance. The steel wire may also be sorted accordingly.
3. Weaving and molding: This is the core step. On a specialized heavy-duty loom, glass fiber yarn (usually used as warp or weft yarn) is interwoven with steel wire (used as yarn in the other direction) in a predetermined pattern (such as a grid). The weaving process determines the final structure, mesh size, and mechanical properties of the fabric.
4. Post processing: The woven fabric may undergo heat setting treatment to stabilize the structure and eliminate internal stress. Sometimes, coating treatments such as polyvinyl chloride (PVC), acrylic acid, etc. may be applied according to application requirements to further enhance its weather resistance, wear resistance, color adhesion, or bonding performance with other materials.
5. Inspection and cutting: Conduct quality inspections on the finished fabric in terms of strength, size, weight, appearance, etc. After passing the inspection, cut it into rolls or sheets of different specifications according to customer requirements.
1. High strength and high modulus: Combining the high tensile strength of glass fiber and the support toughness of steel wire, the finished fabric has high mechanical strength and modulus, which can withstand large loads without deformation or fracture.
2. Good dimensional stability: The material is less affected by temperature and humidity changes, has a low coefficient of thermal expansion, and can maintain long-term stability in shape and size. It is suitable for occasions that require dimensional accuracy.
3. Excellent corrosion resistance: Glass fiber itself has good resistance to most chemicals such as acids, alkalis, and salts, which makes composite materials stable in most corrosive environments (non strong hydrofluoric acid or strong alkali long-term effects) and have a long service life. If stainless steel wire is used, the corrosion resistance is better.
4. Impact resistance and fatigue resistance: The addition of steel wire significantly improves the brittleness of pure glass fiber materials, enhancing their ability to resist dynamic impact and repeated loads (fatigue resistance).
5. Non flammability and insulation: Glass fiber is an inorganic material that does not burn and can have a flame retardant effect. It has good electrical insulation performance.
6. Design and adaptability: By adjusting the thickness and weaving density of glass fibers, the diameter and material of steel wires (such as galvanized and stainless steel), as well as the mesh size and weaving structure (plain weave, diagonal weave, etc.), products that meet different strength, flexibility, aperture, and weather resistance requirements can be produced.
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Q. 1: How long is the sample time ? Does the sample fee can be returned?