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Flame-retardant action of red phosphorus/magnesium oxide and red phosphorus/iron oxide compositions in recycled PET

机译:红磷/氧化镁和红磷/氧化铁组合物在再生PET中的阻燃作用

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Red phosphorus was combined with metallic oxides Fe_2O_3 and MgO to improve the fire properties of recycled PET. Both Fe_2O_3 and MgO act as co-synergist agents at a total loading of 5wt%. The analysis by diffraction X of the char formed during combustion shows that transformation of Fe_2O_3 to Fe_3O_4 occurs. Fe_2O_3 favours the oxidation and improves the effectiveness of red phosphorus. It is suggested that MgO interacts with acidic end groups of PET and forms a thermal stable residue. The thermal decomposition of recycled PET containing red phosphorus combined with Fe and Mg oxides was studied by thermal analysis and leads to an increase in char formation. While the incorporation of Fe_2O_3 in this ternary blend maintains the mechanical properties of PET, the reactivity of MgO leads to a brittle material. The use of reinforcements (talc and glass fibres) to mechanically stabilize the char formed during combustion of ternary blend with Fe_2O_3 entails a further decrease in heat release rate, nevertheless impact resistance of the material decreases dramatically.
机译:红磷与金属氧化物Fe_2O_3和MgO结合使用可改善回收PET的燃烧性能。 Fe_2O_3和MgO均以5 wt%的总负载量起助协同剂的作用。通过燃烧过程中形成的炭的衍射X分析表明,发生了Fe_2O_3向Fe_3O_4的转变。 Fe_2O_3有助于氧化并提高红磷的有效性。建议MgO与PET的酸性端基相互作用并形成热稳定残基。通过热分析研究了含有红磷与Fe和Mg氧化物结合的再生PET的热分解,并导致炭形成增加。虽然在该三元混合物中掺入Fe_2O_3可以保持PET的机械性能,但MgO的反应性会导致材料变脆。使用增强剂(滑石和玻璃纤维)机械稳定三元共混物与Fe_2O_3燃烧过程中形成的炭会进一步降低放热率,但材料的抗冲击性会大大降低。

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