Product Description
Ceramic Fiber Fabric DSZCF3.0
Premium ceramic fiber fabric woven from high-quality alumina-silica fibers, mechanically needled for superior tensile strength and surface integrity. Reinforced with fiberglass filament and optional Inconel/alloy steel wire, it provides high-temperature resistance up to 1760 C and is ideal for industrial, aerospace, and energy applications without deterioration or cristobalite formation.
Specifications:
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Thickness: 2.0 mm, 3.0 mm, 4.0 mm
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Weight: 1000 GSM & 1500 GSM
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Color: White
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Weave: Plain
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Roll Size: 1 30 Meter
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Reinforcement: SS Metallic Soft Wire
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Conductivity: Yes
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Melting Point: 1760 C
Applications:
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Heat shields for aircraft, spacecraft, and missile systems
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Thermal protection for propulsion units
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Insulation for high-temperature equipment, pipes, ducts, furnaces, kilns, and reactors
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Protection against heat damage, corrosion, and chemical attack
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Thermal management in batteries, fuel cells, and energy storage systems
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Metal casting, glass manufacturing, and industrial heat shields
Benefits:
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Unparalleled thermal insulation and chemical stability
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Resists thermal shock, corrosion, and abrasion
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Strong, lightweight, and flexible for harsh environments
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Reduces energy loss and improves operational efficiency
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Exceptional Heat Containment and InsulationDesigned for extreme thermal environments, this ceramic fiber cloth delivers outstanding heat resistance up to 1300C. Its smooth, polished surface ensures superior performance in fireproof and high-temperature insulation applications such as welding blankets and heat shielding.
Versatile and Durable ConstructionWith a woven technique and flat shape, the sheet maintains durability and flexibility while providing effective thermal protection and mechanical strength. Its ample size (1 x 2 meters) and high density suit a range of industrial applications.
Reliable Supply Chain in IndiaManufactured, supplied, and distributed by reputable Indian dealers, exporters, and importers, this ceramic fiber cloth sheet is readily available for bulk orders and meets diverse requirements for heat insulation projects.
FAQs of Ceramic Fiber Cloth Sheet:
Q: How is the ceramic fiber cloth sheet typically used for heat containment?
A: The ceramic fiber cloth sheet is primarily used as a heat insulation and containment barrier in high-temperature settings. It is commonly applied in welding blankets, heat shields, and fireproof covers to protect equipment and personnel from intense heat.
Q: What benefits does the woven ceramic fiber construction provide?
A: The woven construction enhances flexibility and strength, making the sheet resistant to tearing or breaking under stress. Its smooth and polished finish adds durability, ensuring prolonged service life in demanding heat insulation scenarios.
Q: When should this ceramic fiber cloth sheet be selected over other insulation materials?
A: Choose this ceramic fiber cloth sheet when intricate heat shielding, fireproofing, or continuous exposure to temperatures up to 1300C are required. Its superior thermal resistance and density make it ideal over conventional insulation for high-risk, high-temperature applications.
Q: Where can this ceramic fiber cloth sheet be installed for optimal performance?
A: This sheet can be installed in industrial environments such as manufacturing plants, welding workshops, or locations needing reliable heat barriers between machines, walls, or work areas exposed to elevated heat.
Q: What is the process of integrating this ceramic fiber cloth into industrial applications?
A: To integrate, measure and cut the cloth to the required dimensions, then affix it using appropriate fastening methods based on the installation (such as clamping or sewing for blankets). Ensure the surface is clean to maintain optimal insulation efficiency.
Q: What are the key benefits of using this product for heat shielding and fireproofing?
A: Key benefits include excellent thermal insulation, high temperature resistance (up to 1300C), lightweight yet strong composition, and flexibility for easy adaptation to various surfaces. These factors contribute to increased operational safety and energy efficiency.