MG CHEMICALS 8800 – Black Flexible Urethane

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Applications
MG CHEMICALS 8800 is a black flexible two-component polyurethane resin with a short working time (10 min at 25°C). It adheres to a wide variety of substrates (metal, plastic, ceramic, glass) and maintains excellent flexibility even at low temperatures. This resin is ideal for encapsulating electronic enclosures and flexible printed circuit boards and electronic components. It provides resistance to moisture and exposure to saltwater, particularly for marine applications.
Caracteristics
PU resin / Color: Black / Volume ratio 2:1 / Weight ratio 7.4:1 / Shore hardness: 74A / Dielectric strength: 15kV/mm / Service temperature -50°C to 120°C / Tg 11°C / Curing: 24h at room temperature / Possibility to accelerate by heat: 30 min at 65°C or 25 min at 80°C
Property
MG CHEMICALS 8800 has excellent flexibility, even at low temperatures / Strong adhesion to many substrates (metals, composites, glass, ceramics, plastics) / Superior resistance to moisture and saltwater / Excellent dielectric properties / Minimal stress on circuits and surface-mounted components.
Dangerous. Observe safety precautions - For professional use only
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Variations

This product is not available online.Contact us
Name Code article Price Availability
MG CHEMICALS 8800 - Black Flexible Urethane
0,9 kg Kit
MG8800030 Contact us
MG CHEMICALS 8800 - Black Flexible Urethane
60L Kit
MG8800040 Contact us
MG CHEMICALS 8800 - Black Flexible Urethane
2.55L Kit
MG8800020 Contact us

Caracteristics

Application Methode Automatic, Manual
Curing Temperature (°C) 65 CELSIUS
Curing Time (min) 30 MINUTE
Curing Type Hot Curing
Chemistry / Technology Polyurethane
Dielectric Strength (kV/mm) 15 kV_mm
Brand MG CHEMICALS
Color Black
Mix Ratio 2/1
Hardness Class Medium Hard (Shore A61 - A80)
Hardness 74 Ashore
Electric Properties Electrically Insulating
Number of Component Bi Componant / 2 Parts
Maximum temperature (°C) 120 CELSIUS
Minimum temperature (°C) -50 CELSIUS
Glass transition (Tg) (°C) 11 CELSIUS
Thermal Conductivity (W/m⋅K) 0.3 WmK