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Araldite AW 106 -Hardener HV 953 U- Multi-purpose, two-component epoxy adhesive providing high-strength bonding of metals, plastics, ceramics, and glass in industrial and craft applications

  • Item Name: Araldite AW 106 -Hardener HV 953 U

  • Manufacturer: Huntsman Advanced Materials

  • Technologies: Two-component epoxy

  • Color: Araldite AW 106  – Neutral, Hardener HV 953 U – Pale yellow, Mixed – Pale yellow

  • Cure Type: Room temperature curing

  • Package Size: Contact to Techniq VN for details.

  • Shelf Life: Contact to Techniq VN for details.

1. Product Overview

Araldite AW 106 -Hardener HV 953 U is a multipurpose, two-component epoxy adhesive with high strength and toughness, curing at room temperature. Key features:

  • Long working life (pot life ~100 min at 25 °C)

  • Low shrinkage during curing

  • Good resistance to dynamic loading

  • Multipurpose adhesive suitable for various materials


2. Applications

  • Bonding of metals, ceramics, glass, rubbers, rigid plastics, and composites

  • Suitable for craftsman use as well as industrial applications

  • Recommended where high toughness, durability, and fatigue resistance are required

  • Used in industries such as electronics, automotive, aerospace, construction, and general manufacturing

3. Typical Properties

Before Mixing

Property Araldite AW 106 Hardener HV 953 U
Colour Neutral Pale yellow
Specific Gravity ~1.15 ~0.95
Viscosity at 25 °C 30–50 Pa·s 20–35 Pa·s

After Mixing

Property Value
Colour Pale yellow
Specific Gravity ~1.05
Viscosity at 25 °C 30–45 Pa·s
Mix Ratio (by weight) 100 : 80
Mix Ratio (by volume) 100 : 100
Pot Life (100 g at 25 °C) ~100 min
Lap Shear Strength at 23 °C >19 MPa
Shore Hardness D74
Glass Transition Temperature ~45 °C
Tensile/Flexural Strength Tensile not listed; Flexural: 60 MPa
Flexural Modulus 1900 MPa
Thermal Conductivity 0.22 W/m·K
Electrical Properties Dielectric strength: 25–27 kV/mm; Volume resistivity: 7.1×10¹⁴ Ω·cm; Surface resistivity: 1.2×10¹⁶ Ω
Water Absorption 0.8% (24h/23°C); 1.3% (30 min/100°C)
Temperature Resistance Effective bonding up to ~100 °C (strength decreases beyond)

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