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Aluminum Foil Glass Cloth Tape with Silicone Adhesive 3M 363 Alternative

Perfect replacement for 3M 363, DeWAL DW407
HIGH TENSILE STRENGTH: This glass cloth reinforced foil tape offers superior puncture, fracture, and tear resistance
HOLDS IN INTENSE CONDITIONS: Resists flame/chemical exposure and performs continuously in temperatures ranging from -65 °F(-54 °C) to 600 °F(316 °C)
MAXIMUM CONFORMABILITY: Lightweight, flexible construction helps it conform to curved and irregular surfaces
ALUMINIUM FOIL BACKING: Thermally conductive and reflective metal backing assists with heat shielding
VERSATILE ADHESIVE: Silicone adhesive adheres to difficult surfaces and removes cleanly after use

  • Thickness 0.17mm
  • Carrier Aluminum Foil/Glass Cloth
  • Adhesive Silicone
  • 180° Peeling Strength 9.5N/25mm
  • Tensile Strength 440N/25mm
  • Elongation at Break 4%
  • Temperature Resistance 250° C Long Term

Technical Parameters of Heat Resistant Aluminum Glass Cloth Tape

High Temperature Aluminum Foil/Glass Cloth Tape is a versatile tape featuring high tensile strength and outstanding puncture/tear-resistance. Heat-reflective aluminum is supported by robust glass cloth to create a strong, conformable backing. Coated with a pressure-sensitive silicone adhesive, it adheres well to irregular and uneven surfaces. Together, this tape resists flame, moisture, weather, and UV degradation, with exceptional thermal conductivity that allows it to perform consistently at temperatures ranging from -65–600 °F (-54–316 °C).

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Main Applications in High-Temperature Sealing and Insulation

Heat reflective wrap over insulation cables, instruments or other high temperature sensitive materials

Ideal for industrial applications that will be exposed to movement and vibration

Bundling wire harnesses

High temperature/performance applications in the aerospace, automotive and industrial industries

Performs continuously in temperatures ranging from -65 °F to 600 °F.jpgLightweight, flexible construction helps it conform to curved and irregular surfaces.jpg