S. Bourbigot et al., Study of the thermal degradation of high performance fibrres - applicationto polybenzazole and p-aramid fibres, POLYM DEGR, 74(2), 2001, pp. 283-290
This work investigates the thermal degradation of high performance fibres.
Poly-p-phenylenediamine-terephthalamide fibres (PPTA) and poly(p-phenylene-
2,6-benzobisoxazole) (PBO) fibres are examined when degrading in a furnace.
Both gas and condensed phase are analysed. When degrading PPTA and PBO, CO
, CO2 and H2O are detected by FTIR as major compounds composing the gas pha
se. As minor products, aromatic species, hydrocyanic acid (HCN) and ethylen
ic species are found (600 degreesC). Because of the higher thermal stabilit
y of PBO, their evolved amounts are always lower than those of PPTA and the
y are given off at much longer times. Moreover, no aromatic compound and a
very low quantity of ethylenic species are detected in the gas phase sugges
ting they were involved in charring reactions. At 800 degreesC only nitric
oxides are detected as minor products in the gas phase. A mechanism of form
ation of NOx from HCN is proposed. The investigation of the condensed phase
by solid state NMR shows that PPTA and PBO are transformed into char when
degrading. The char is composed of partially oxidised polyaromatic compound
s, which can trap free radicals. It is suggested that the char structure of
PBO may resist oxidation better than PPTA. (C) 2001 Elsevier Science Ltd.
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