4.7 Article

Extra strong Cu2+-doped intumescent char to protect epoxy resin against fire

Journal

COMPOSITES PART B-ENGINEERING
Volume 253, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.compositesb.2023.110539

Keywords

Intumescence; Flame retardant; Epoxy resin; Flame retardancy; Smoke suppression

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Cu-CHP is a novel copper-doped intumescent flame retardant that can rapidly expand and carbonize under high temperature to form dense char residue, exhibiting excellent charring capacity and strength. By using Cu-CHP, the fire resistance and flame retardancy of composite materials can be significantly improved.
The intumescence, compactness, and strength of char are the key points to the intumescent flame retardant system. However, the char residues of flame retardant polymers rarely exhibit all three characteristics, especially strength. Herein, a novel Cu2+-doped intumescent flame retardant (Cu-CHP) was prepared without producing any waste. When Cu-CHP was exposed at a high temperature (-1400 degrees C), it can rapidly expand and carbonize to form dense char. Surprisingly, the intumescent char residue of Cu-CHP can hold up more than 2000 times its own weight. Benefitting from the excellent intumescent charring capacity of Cu-CHP, the resultant EP/ Cu-CHP18% composite can withstand around 600 s penetrating of butane flame (-1400 degrees C) because of strong dense char protection, and only 0.9 wt% Cu2+ content resulted in the limiting oxygen index (LOI) of EP/ Cu-CHP18% increases to 31% and the vertical burning (UL-94) reaches V-0 rating. Additionally, its peak heat release rate, total smoke production, and fire growth rate are significantly reduced by 70%, 53%, and 75%, respectively, compared with neat epoxy resin. Especially, the smoke density of EP/Cu-CHP18% was dramatically dropped by more than 68%. Because a Cu2+-doped intumescent, compact, and strong char residue was produced during burning. This work provides a new strategy to impart excellent flame retardancy and smoke suppression to highly flammable polymers by building metal-doped strong intumescent char residues.

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