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The use of passive intumescent fireproofing solutions to meet life & safety goals for commercial structures continues to grow in number annually. More often facility owners are required to incorporate fire proofing protection for up to three hours in order to assure the safe departure of individuals inside the given building in the event of an emergency.
The use of passive intumescent fireproofing solutions to meet life & safety goals for commercial structures continues to grow in number annually. More often facility owners are required to incorporate fire proofing protection for up to three hours in order to assure the safe departure of individuals inside the given building in the event of an emergency. Projects that include exposed structural steel generally incorporate spray applied fireproofing materials in order to achieve life & safety goals as well as delivering aesthetically pleasing solutions for structural steel exposed to view. The typical North American construction project will incorporate on-site installation of fireproofing materials. In learning from our European counterparts, shop applied intumescent coatings are providing increased efficiencies that benefit construction schedules and the overall protection of coated structural pieces.
A brief history of cycles of exterior intumescent coating repair is presented; types of coating failure are identified; various depths of repair are illustrated; discoveries regarding the initial coating and; difficulties in effecting repairs are discussed.
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This paper provides an overview of the Spray-applied Fire Resistant Materials and intumescent mastic materials used to protect structural steel in commercial and industrial buildings and structures. Intumescent fireproofing materials are specifically discussed including the initial testing by UL, their listings, uses, applications and inspection in the field
Today’s water-based intumescent coatings provide improved fire resistance, allowing architectural exposed structural steel (AESS) to be featured prominently. This article examines the environmental/health benefits of water-based coatings over traditional, solvent-based coatings, and provides recommendations on how to apply these materials in a safe and attractive manner and ensure long-term performance.