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Thermal conduction and fire property of glass fiber-reinforced high impact polystyrene/magnesium hydroxide/microencapsulated red phosphorus composite

机译:玻璃纤维增​​强高抗冲聚苯乙烯/氢氧化镁/微囊化红磷复合材料的导热与防火性能

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摘要

A series of flame-retarded high impact polystyrene/magnesium hydroxide/microencapsulated red phosphorus (HIPS/MH/MRP) composites reinforced with different amounts of glass fiber (GF) were prepared by melt compounding. The thermal conduction behavior of the GF-reinforced HIPS/MH/MRP composite before ignition was studied by embedding thermocouples inside the composite at different depths along the thickness direction. The fire property of the composite was investigated by limiting oxygen index (LOI), UL-94, cone calorimeter test (CCT), scanning electron microscopy (SEM) and ther-mogravimetric analysis (TGA). It has been shown that the presence of GF promotes thermal conduction from surface area to the interior in the composite and the thermal inertia of the composite increases with GF loading. Because of increase in thermal conductivity and decrease in specific heat capacity, the heat on the sample surface can be transferred to the interior of composite more quickly than neat polymer and the temperature near the surface area of the GF-containing composite is reduced appreciably, which leads to delayed thermal degradation of polymers and increased difficulty of ignition. The incorporation of GF can increase the thermal stability, flame retardancy and smoke suppression of this composite simultaneously. The introduction of 2 wt% GF can hinder melt dripping of the HIPS/MH/MRP (100/30/10) composite and upgrade the UL-94 rating of this composite from V-1 to V-0. Thermal degradation of the polymer is retarded and no wicking effect occurs in this composite. Furthermore, the composite containing GF produces more residue and less smoke upon combustion. On the whole, the addition of GF not only increases thermal conduction and mechanical property, it also further improves fire safety of the flame-retarded HIPS/MH/MRP composite. The optimal mass fraction of GF is around 30 wt%.
机译:通过熔融复合制备了一系列阻燃的高抗冲聚苯乙烯/氢氧化镁/微囊化红磷(HIPS / MH / MRP)复合材料,并用不同量的玻璃纤维(GF)增强。通过在复合材料内沿厚度方向的不同深度嵌入热电偶,研究了GF增强的HIPS / MH / MRP复合材料在点火前的导热行为。通过极限氧指数(LOI),UL-94,锥形量热试验(CCT),扫描电子显微镜(SEM)和热重分析(TGA)研究了复合材料的防火性能。已经表明,GF的存在促进了复合物中从表面积到内部的热传导,并且复合物的热惯性随GF负载而增加。由于导热系数的增加和比热容的降低,与纯聚合物相比,样品表面的热量可以更快地传递到复合材料的内部,并且含GF的复合材料表面积附近的温度明显降低。导致聚合物的热降解延迟并增加了点火难度。 GF的掺入可以同时提高该复合材料的热稳定性,阻燃性和抑烟性。引入2 wt%的GF会阻碍HIPS / MH / MRP(100/30/10)复合材料的熔融滴落,并将该复合材料的UL-94等级从V-1提升至V-0。聚合物的热降解被阻止并且在该复合材料中没有芯吸作用发生。此外,含有GF的复合物在燃烧时产生更多的残留物和更少的烟。总体而言,GF的加入不仅增加了导热性和机械性能,还进一步提高了阻燃HIPS / MH / MRP复合材料的防火性。 GF的最佳质量分数为约30重量%。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2016年第7期|180-191|共12页
  • 作者单位

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

    School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471023, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermal conduction; Flame retardancy; Time to ignition; Glass fiber; Polymer composite;

    机译:热传导;阻燃性点火时间;玻璃纤维;高分子复合材料;

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