Article, 2024

Mechanistic study of a silicon-based intumescent coating system

Progress in Organic Coatings, ISSN 1873-331X, 0300-9440, Volume 190, Page 108354, 10.1016/j.porgcoat.2024.108354

Contributors

Fu, Aixiao 0000-0001-5022-7500 [1] Ulusoy, Burak 0000-0003-3951-3041 [1] Ahmadi, Hafeez [1] Wu, Hao 0000-0003-0462-2491 [1] Dam-Johansen, Kim Dam- 0000-0003-1658-6176 (Corresponding author) [1]

Affiliations

  1. [1] Technical University of Denmark
  2. [NORA names: DTU Technical University of Denmark; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

The performance and working mechanism of a silicon-based intumescent coating system, comprising primarily silicone binder, fumed silica, and sodium silicate particles, were investigated. Water release from sodium silicate particles coupled with softening of the matrix, induced efficient coating expansion. The residual dehydrated silicates underwent ceramification at high temperatures, resulting in the formation of a compact and thermally stable heat barrier composed of SiO2. Optimization of the coating involved adjusting the amount of sodium silicate particles and introducing kaolin. The best-performed formulation, evaluated in a laboratory-scaled electrical furnace under UL 1709 fire scenario, exhibited a critical time of 56 min, which surpassed that of a commercial epoxy-based intumescent coating by 8 min.

Keywords

SiO2, amount, barriers, binder, coating, coating expansion, coating system, electric furnace, epoxy-based intumescent coatings, expansion, fire scenarios, formation, formulation, fumed silica, furnace, heat barrier, high temperature, intumescent coating system, intumescent coatings, kaolin, matrix, mechanism, mechanistic studies, optimization, particles, performance, release, scenarios, silica, silicate, silicate particles, silicon, silicone binder, sodium, softening, study, system, temperature, thermally, water, water release, work, working mechanism

Funders

  • Czech Academy of Sciences
  • China Scholarship Council

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