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首页> 外文期刊>Composites >Influence of phenylphosphonate based flame retardant on epoxy/glass fiber reinforced composites (GRE): Flammability, mechanical and thermal stability properties
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Influence of phenylphosphonate based flame retardant on epoxy/glass fiber reinforced composites (GRE): Flammability, mechanical and thermal stability properties

机译:苯基膦酸酯基阻燃剂对环氧/玻璃纤维增​​强复合材料(GRE)的影响:易燃性,机械和热稳定性能

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摘要

In this work, flame-retardant glass fiber reinforced epoxy composites (FGRE) were successfully prepared via adding a novel phenylphosphonate-based flame retardant, N,N'-diamyl-p-phenylphosphonicdiamide (P-MA) into GRE. FGRE12 showed high LOI value of 33%. Meanwhile, FGRE12 passed V-0 rating in UL 94 test and the peak of heating release rate (pHRR) decreased by 54% in comparison with that of GRE. The flame-retardant efficiency of P-MA in GRE was compared with that in epoxy matrix (EP). Moreover, the influences of P-MA on mechanical and thermal stability properties of GRE were studied systemically. Dynamic mechanical analysis (DMA) studied the influence of P-MA on viscoelasticity of GRE. Fiber push in test and three-point-bending test were used to evaluate the influence of P-MA on the EP matrix/fiber interface strength and interlamilnar shear strength, respectively. In addition, nanoindentation test was used to study the hardness and Young's modulus of EP matrix. The above results showed that the addition of P-MA did not affect the hardness of epoxy matrix and interfacial strength (epoxy matrix/glass fiber). The influence of P-MA on thermal stability of GRE was studied by thermalgravimetric analysis (TGA). These results would be very important in designing new generation multifunctional epoxy-based composite materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,通过向GRE中添加新型的基于苯基膦酸酯的阻燃剂N,N'-二酰基-对-苯基膦二酰胺(P-MA),成功制备了阻燃玻璃纤维增​​强环氧复合材料(FGRE)。 FGRE12显示出33%的高LOI值。同时,FGRE12通过UL 94测试中的V-0等级,与GRE相比,放热率(pHRR)的峰值降低了54%。将P-MA在GRE中的阻燃效率与在环氧基质(EP)中的阻燃效率进行了比较。此外,系统地研究了P-MA对GRE的机械和热稳定性能的影响。动态力学分析(DMA)研究了P-MA对GRE粘弹性的影响。纤维推入试验和三点弯曲试验分别用来评估P-MA对EP基体/纤维界面强度和层间剪切强度的影响。另外,采用纳米压痕试验研究了EP基体的硬度和杨氏模量。以上结果表明,添加P-MA不会影响环氧基质的硬度和界面强度(环氧基质/玻璃纤维)。通过热重分析(TGA)研究了P-MA对GRE热稳定性的影响。这些结果对于设计新一代多功能环氧基复合材料非常重要。 (C)2016 Elsevier Ltd.保留所有权利。

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