Thermal properties and combustion behaviors of flame-retarded glass fiber-reinforced polyamide 6 with piperazine pyrophosphate and aluminum hypophosphite

被引:75
作者
Xiao, Xiong [1 ]
Hu, Shuang [1 ]
Zhai, Jinguo [1 ]
Chen, Tao [1 ]
Mai, Yongyi [1 ]
机构
[1] Shanghai Res Inst Chem Ind, 345 East Yunling Rd, Shanghai 200062, Peoples R China
关键词
Combustion behavior; Flame retardant; Mechanism; Glass fiber-reinforced polyamide 6; FIRE RETARDANCY; COMPOSITES; NANOCOMPOSITES; ENHANCEMENT; PERFORMANCE; PHOSPHORUS; MECHANISM; CYANURATE;
D O I
10.1007/s10973-016-5391-0
中图分类号
O414.1 [热力学];
学科分类号
摘要
Flame-retardant glass fiber-reinforced PA6 (GFPA6) composites were prepared by incorporating the mixture of piperazine pyrophosphate (PAPP) and aluminum hypophosphite (AHP) into GFPA6. From the results of UL-94 test, limiting oxygen index (LOI) and microscale combustion calorimetry (MCC) tests, the as-obtained composites exhibited significantly enhanced flame retardancy including higher LOI values, better UL94 rating (V-0 for 18.0 mass% PAPP/AHP mixture), and decreased peak heat release rate and total heat release. And PA6-4 with a 4/1 mass ratio of PAPP to AHP reached the highest LOI value. The influence of PAPP/AHP on the decomposition pathway of GFPA6 was discussed based on TG and TG-FTIR analysis. The interaction between PAPP/AHP and GFPA6 altered the decomposition pathway of GFPA6 resulting in the formation of compact char layer, high thermal stability within high-temperature region, and weak intensities of a variety of pyrolysis gas products. Meanwhile, the thermomechanical property data revealed the storage modulus of samples were increased with increasing PAPP/AHP content, whereas the glass transition temperatures were reduced gradually. Moreover, the results of scanning electron microscope illustrated that the introduction of PAPP/AHP mixture can promote the formation of compact char layer and change the surface element composition of the char.
引用
收藏
页码:175 / 185
页数:11
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