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Bunker gear (also known as turnout gear, fire kit and incident gear [original research?]) is the personal protective equipment (PPE) used by firefighters. The term is derived from the fact that the trousers and boots are traditionally kept by the firefighters bunk at the fire station to be readily available for use.
Fire proximity suits first appeared during the 1930s, and were originally made of asbestos fabric. Today they are manufactured from vacuum-deposited aluminized materials that reflect the high radiant loads produced by the fire. An early manufacturer of the aluminized suits was the Bristol Uniforms company under the direction of Patrick Seager Hill.
Anti-flash gear, also known simply as flash gear, is basic personal protective equipment consisting of a fire-resistant hood and fire-resistant gloves, [1] often made of Nomex. The purpose of anti-flash gear is to provide protection to the head, neck, face and hands from short-duration flame exposure and heat.
Firefighting is a profession aimed at controlling and extinguishing fire. [1] A person who engages in firefighting is known as a firefighter or fireman. [2] Firefighters typically undergo a high degree of technical training. [2] [3] This involves structural firefighting and wildland firefighting.
Joint Firefighter Integrated Response Ensemble (J-FIRE) is a military protective suit used for firefighting in the CBRN and WMD environment. [3] J-FIRE utilizes the JSLIST and an aluminized firefighting proximity suit. The J-FIRE is designed to resist water and standard firefighting chemicals, while still providing CBRN protection to the user.
In firefighting, the policy of two-in, two-out refers to United States Occupational Safety and Health Administration (OSHA) policy 29 CFR 1910.134(g)(4)(i). [1] The respiratory protection standard requires that workers engaged in fighting interior structural fires work in a buddy system; at least two workers must enter the building together, so that they can monitor each other's whereabouts as ...
Fire engineers assist architects, building owners and developers in evaluating buildings' life safety and property protection goals. Fire engineers are also employed as fire investigators, including such very large-scale cases as the analysis of the collapse of the World Trade Center.
A typical test objective (e.g., ASTM E119) for fire rated structural protection is to limit the temperature of the structural element (e.g., beam, column) to ca. 538 °C, at which point the yield strength of the structural element has been sufficiently reduced that structural building collapse may occur.
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