Product Description
Vermiculite Coated Ceramic Fabric DSZVCF3.2
Key Features:
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High-performance vermiculite coating (1012%)
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Superior alternative to asbestos-based textiles
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Excellent molten metal slag collection efficiency
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Enhanced thermal stability & reduced thermal conductivity
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Exceptional dielectric strength for electrical safety
Technical Specifications:
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Working Temperature Range: 1260C 1760C
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Thickness: 2.8 mm, 3.2 mm, 4.5 mm
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Colour: Brown
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Coating: Vermiculite Powder
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Roll Size: 1 30 Meter (custom sizes available)
Applications:
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Welding & cutting protection
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Molten metal & slag handling
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Foundry & steel plants
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Thermal & electrical insulation
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High-temperature sealing & covering
Benefits:
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Reliable high-temperature resistance
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Durable & long-lasting under extreme conditions
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Safer, asbestos-free construction
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Flexible, strong & easy to fabricate
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Customizable for diverse industrial needs
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Technical Details 
Superior Heat Resistance for Maximum ProtectionEngineered to withstand operating temperatures of up to 1260C, our blankets use advanced fiberglass and ceramic materials paired with durable coatings. This ensures remarkable resistance to flames, sparks, and high heat, safeguarding both equipment and personnel during demanding industrial processes.
Versatile Applications Across IndustriesDesigned for use in welding, grinding, cutting, industrial furnace, and boiler protection, these blankets provide reliable thermal shielding. Their generous dimensions and flat design allow easy coverage for various setups, maximizing workplace safety and equipment longevity.
Effortless Installation with Built-in EyeletsEach blanket comes equipped with multiple eyelets per meter, facilitating quick and secure attachment to surfaces or fixtures. This practical feature streamlines installation, ensuring your team can implement protection efficiently wherever high-heat hazards exist.
FAQs of Welding Blankets For Industrial Use:
Q: How are these welding blankets installed in industrial settings?
A: The blankets feature evenly spaced eyelets along the edges, allowing for simple attachment using hooks, ropes, or fasteners. This enables secure coverage over areas requiring protection from sparks, molten metal, or intense heat, making installation straightforward in various environments.
Q: What materials and coatings are used to ensure high temperature resistance?
A: Our welding blankets are constructed from woven fiberglass fabric with ceramic reinforcement and are finished with heat-resistant silicone or vermiculite coatings. These materials and treatments provide excellent protection against temperatures up to 1200C and offer low thermal conductivity.
Q: When should I use a welding blanket during industrial operations?
A: Welding blankets should be employed during any operations where sparks, slag, or radiant heat are presentsuch as welding, grinding, or cuttingto create a barrier that protects nearby workers, equipment, and surfaces from heat and fire hazards.
Q: Where can these blankets be utilized for optimal safety?
A: These blankets are ideal for use in workshops, manufacturing plants, construction sites, and areas involving welding, metalworking, or operating industrial furnaces and boilers. Their versatility allows them to provide reliable shielding wherever thermal hazards exist.
Q: What benefits do these welding blankets offer compared to alternatives?
A: Our blankets deliver superior resistance to high temperatures and mechanical stress due to their ceramic and fiberglass composition. Their low density (0.9 g/cm), strong tensile strength, and specialized coatings ensure long-lasting performance and enhanced worker safety.
Q: What is the recommended process for maintaining or cleaning the blankets?
A: Regular inspection for wear or damage is advised. Cleaning can be performed with a soft brush or damp cloth; avoid using harsh chemicals, as these may degrade heat-resistant coatings and compromise longevity.
Q: How does the thickness and GSM specification contribute to protection?
A: The 3 to 3.2 mm thickness and 600 GSM rating ensure robust insulation and durability. These factors, paired with the reinforced weave, provide a reliable barrier that withstands continuous exposure to intense thermal environments.