Polyamides 6.6 (PA-6.6) and 6.10 (PA-6.10) decompose on heating by scission of the N-alkylamide bond (CH2NHCO), with the formation of vinyl chain ends and primary amide groups which dehydrate to nitriles at the temperature of degradation. In PA-6.6 scission of the alkylamide bond (CH2CONH) also takes place, resulting in methyl and isocyanate chain ends which can further dimerize to carbodiimides with elimination of CO2 or trimerize to isocyanurate structures. In the presence of ammonium polyphosphate (APP), flammability, as measured by oxygen index, decreases because APP induces intumescent behaviour. The chemical interaction between APP and PA-6.6 and PA-6.10 leads to chain scission of the polyamide, with formation of a primary amide group...
It is shown that, on heating ammonium polyphosphate-pentaerythritol mixtures, phosphoric ester bonds...
It is shown that, on heating ammonium polyphosphate-pentaerythritol mixtures, phosphoric ester bonds...
Urea, which is commonly used as a ‘blowing’ co-additive in intumescent coatings, is shown to depress...
The thermal degradation of polyamide 6 (PA-6) occurs through competing mechanisms leading to caprola...
The results of a mechanistic and kinetic study show that ammonium polyphosphate (APP) strongly modif...
On heating, ammonium polyphosphate eliminates ammonia and water in two successive steps. The first (...
Interactions are shown to take place between ammonium polyphosphate and pentaerythritol in thermally...
Comparison of oxygen and nitrous oxide indices indicates that ammonium polyphosphate (APP) should ac...
Comparison of oxygen and nitrous oxide indices indicates that ammonium polyphosphate (APP) should ac...
Experimental evidence is given of the formation of a phosphate ester as the first step in the heat-i...
This chapter focuses on the thermal degradation and flame retardancy of aliphatic polyamides. A revi...
It is shown that, by the addition of a typical intumescent mixture of ammonium polyphosphate and pen...
It is shown that, by the addition of a typical intumescent mixture of ammonium polyphosphate and pen...
Partial substitution of ammonium polyphosphate (APP) by manganese dioxide (MnO2) in polyamide 6 (PA-...
ABSTRACT: The comparative study of the intumescent formulations (poly-propylene-ammonium polyphospha...
It is shown that, on heating ammonium polyphosphate-pentaerythritol mixtures, phosphoric ester bonds...
It is shown that, on heating ammonium polyphosphate-pentaerythritol mixtures, phosphoric ester bonds...
Urea, which is commonly used as a ‘blowing’ co-additive in intumescent coatings, is shown to depress...
The thermal degradation of polyamide 6 (PA-6) occurs through competing mechanisms leading to caprola...
The results of a mechanistic and kinetic study show that ammonium polyphosphate (APP) strongly modif...
On heating, ammonium polyphosphate eliminates ammonia and water in two successive steps. The first (...
Interactions are shown to take place between ammonium polyphosphate and pentaerythritol in thermally...
Comparison of oxygen and nitrous oxide indices indicates that ammonium polyphosphate (APP) should ac...
Comparison of oxygen and nitrous oxide indices indicates that ammonium polyphosphate (APP) should ac...
Experimental evidence is given of the formation of a phosphate ester as the first step in the heat-i...
This chapter focuses on the thermal degradation and flame retardancy of aliphatic polyamides. A revi...
It is shown that, by the addition of a typical intumescent mixture of ammonium polyphosphate and pen...
It is shown that, by the addition of a typical intumescent mixture of ammonium polyphosphate and pen...
Partial substitution of ammonium polyphosphate (APP) by manganese dioxide (MnO2) in polyamide 6 (PA-...
ABSTRACT: The comparative study of the intumescent formulations (poly-propylene-ammonium polyphospha...
It is shown that, on heating ammonium polyphosphate-pentaerythritol mixtures, phosphoric ester bonds...
It is shown that, on heating ammonium polyphosphate-pentaerythritol mixtures, phosphoric ester bonds...
Urea, which is commonly used as a ‘blowing’ co-additive in intumescent coatings, is shown to depress...