Index
A
Acid compounds, 6
Aerospace coatings, 6
3-amino-propyl-trimethoxy silane, 75
Ammonium polyphosphates, 8
Auto extinguishability, 72
B
Bentonite, 93
Bis(pentaerythritol phosphate) phosphoric acid,
18
Blowing-out, 75
Brominated, 2
C
Carbonaceous char layer, 25
Carbonization and blowing agent, 25
Carbonization of polymers, 87
Char formation, 3
Char-forming agents, 8, 16
Char morphology, 73
Chlorinated, 2
CO 2 , 7
Combustion, 1
Condensed-phase FR mechanism, 6
Cone calorimeter test, 5
Cone colorimetry, 11
Crosslinking, 26
Cyanate ester, 99
Cyanuric trichloride, 16
D
Degradation mechanism, 36
Degree of crosslinking, 47
Di-ammonium Hydrogen Phosphate (DAHP),
22
Dibutyl tindilaurate, 90
Dicyclic phosphorous-melamine derivative
compounds, 18
4-diethoxyphosphoryloxyphenoxy, 30
Differential scanning calorimetry, 70
Diphenyl amine, 16
Ditrimethylolpropan, 32
E
Elemental red phosphorus, 22
Engineering plastic material, 22
Epoxy FR resins, 31
Epoxy resins, 27
Ethylene-butyl acrylate maleic anhydride
formulations, 18
Ethylene diamine, 16
Evolves combustible and non-combustible
components, 11
Excellent FR properties, 25
Extinguish the flame, 75
F
Fire accidents, 2
Fire hazards, 1
Fire rate growth, 86
Fire-retardancy, 16
Fire retardants, 1, 5
Flame propagation, 5
Flame resistance, 29
Flame retardance, 1
Flame-retardants, 15
Flammability, 1, 12
© Springer Nature Switzerland AG 2020
S. Sinha Ray and M. Kuruma, Halogen-Free Flame-Retardant
Polymers, Springer Series in Materials Science 294,
https://doi.org/10.1007/978-3-030-35491-6
111
A
Acid compounds, 6
Aerospace coatings, 6
3-amino-propyl-trimethoxy silane, 75
Ammonium polyphosphates, 8
Auto extinguishability, 72
B
Bentonite, 93
Bis(pentaerythritol phosphate) phosphoric acid,
18
Blowing-out, 75
Brominated, 2
C
Carbonaceous char layer, 25
Carbonization and blowing agent, 25
Carbonization of polymers, 87
Char formation, 3
Char-forming agents, 8, 16
Char morphology, 73
Chlorinated, 2
CO 2 , 7
Combustion, 1
Condensed-phase FR mechanism, 6
Cone calorimeter test, 5
Cone colorimetry, 11
Crosslinking, 26
Cyanate ester, 99
Cyanuric trichloride, 16
D
Degradation mechanism, 36
Degree of crosslinking, 47
Di-ammonium Hydrogen Phosphate (DAHP),
22
Dibutyl tindilaurate, 90
Dicyclic phosphorous-melamine derivative
compounds, 18
4-diethoxyphosphoryloxyphenoxy, 30
Differential scanning calorimetry, 70
Diphenyl amine, 16
Ditrimethylolpropan, 32
E
Elemental red phosphorus, 22
Engineering plastic material, 22
Epoxy FR resins, 31
Epoxy resins, 27
Ethylene-butyl acrylate maleic anhydride
formulations, 18
Ethylene diamine, 16
Evolves combustible and non-combustible
components, 11
Excellent FR properties, 25
Extinguish the flame, 75
F
Fire accidents, 2
Fire hazards, 1
Fire rate growth, 86
Fire-retardancy, 16
Fire retardants, 1, 5
Flame propagation, 5
Flame resistance, 29
Flame retardance, 1
Flame-retardants, 15
Flammability, 1, 12
© Springer Nature Switzerland AG 2020
S. Sinha Ray and M. Kuruma, Halogen-Free Flame-Retardant
Polymers, Springer Series in Materials Science 294,
https://doi.org/10.1007/978-3-030-35491-6
111
