3M™ Scotchlite™ Reflective Material 8986 Series

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Reflective woven fabric helps to enhance the visibility of the wearer at night or in low-light conditions, fluorescent properties help to make material highly visible in daylight, dawn and dusk

Can be used for flame retardant protective clothing as per EN 469

Meets ISO 20471 requirements for combined material under new conditions

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Highlights
  • Reflective woven fabric helps to enhance the visibility of the wearer at night or in low-light conditions, fluorescent properties help to make material highly visible in daylight, dawn and dusk
  • Can be used for flame retardant protective clothing as per EN 469
  • Meets ISO 20471 requirements for combined material under new conditions
  • High degree of design freedom through simple shapes and individual finish
  • Measures above 1010 ohm-cm², which is considered non-conductive per AATCC Test Method 76-2000

3M™ Scotchlite™ Reflective Material 8986 with high reflection values for safety clothing, such as firefighting garments and flame-resistant workwear, requiring a high degree of daytime and night-time visibility.

3M™ Scotchlite™ Reflective Material 8986 helps to enhance the visibility in low-light and nighttime conditions. It's designed for safety clothing, such as firefighting garments and flame-resistant workwear, requiring a high degree of daytime and night-time visibility. The material shines white when illuminated, even if the wearer is at the roadside. It meets various global high-visibility standards such as ISO 20471 for combined material and exceeds the minimum reflections values required at the highest performance level, thus greatly improving the visibility of people. 3M Scotchlite Reflective Material 8986 consists of high-precision glass beads bonded to a durable, inherently flame-resistant 100% cotton fabric. It is characterized by a high degree of heat resistance, does not affect the flame-retardant properties of the garment, and it's renowned for its good long-term flame resistance as per EN 469. 3M pioneered the science of retroreflection in 1939. Since then, we strive to make the world a safer, more visible place for all.

Typical Properties

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