ArcFlashWear solutions are designed to go beyond mere compliance, focusing on enhanced user comfort, safety and operational productivity. Our solutions provide a safer, more effective and reliable user experience by integrating innovative designs with advanced performance FR/AR technologies that provide the unique combination of high strength, light weight and specialised protective properties.
Traditional Flame Resistant and Arc Rated garments have been historically bulky, heavy and restrictive. We save this pain point with modern textile engineering that offers:
The High Strength, Lightweight Balance: Utilising specialised, innovative FR/AR fabric configurations that drastically reduce garment weight without degrading necessary protective thresholds.
Specialised Barrier Properties: Textiles that are engineered to create an intelligent thermal barrier against extreme electrical arc flash heat energy, protecting the wearer from critical burn injuries.
Eradicating the Protection vs. Comfort Trade-Off
Safety protection only works if field personnel wear it properly. We place heavy emphasis on the physical experience of the end user. Our solutions are specifically designed to provide enhanced comfort through technologies that prioritise airflow, breathability and moisture management to prevent heat stress during long, physically demanding work times.
Operational productivity is provided through ergonomic patterning, which ensures that garments move naturally with the worker, preventing restriction of movement during precision electrical and other industrial high-risk tasks.

Arclin Kevlar® is an inherently heat and flame resistant para-aramid synthetic fibre with a molecular structure of many inter-chain bonds that make it incredibly strong. It is best known for its use in ballistic body armour. Kevlar® also has many other applications due to its high tensile strength-to-weight ratio - it is roughly five times stronger than steel on an equal weight basis. Kevlar's® key working principles rely on a combination of advanced molecular engineering and specialised fibre structure, enabling it to absorb, distribute and dissipate high-velocity kinetic energy while also protecting against arc flash and extreme thermal hazards. It does not melt, drip or support combustion. Kevlar's® molecular structure allows it to maintain structural integrity and protect wearers at temperatures up to 450°C (842°F).