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Effect of Thermal Conductive Fillers on the Flame Retardancy Thermal Conductivity and Thermal Behavior of Flame-Retardant and Thermal Conductive Polyamide 6

机译:导热填料对阻燃剂和导热聚酰胺6的阻燃性导热性和热行为的影响

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摘要

In this work, polyamide 6 (PA6) composites with improved flame retardancy and thermal conductivity were prepared with different thermal conductive fillers (TC fillers) such as aluminum nitride (AlN) and boron nitride (BN) in a PA6 matrix with aluminum diethylphosphinate (AlPi) as a fire retardant. The resultant halogen-free flame retardant (HFFR) and thermal conductive (TC) PA6 (HFFR-TC-PA6) were investigated in detail with a mechanical property test, a limiting oxygen index (LOI), the vertical burning test (UL-94), a cone calorimeter, a thermal gravimetric analysis (TGA) and differential scanning calorimetry (DSC). The morphology of the impact fracture surface and char residue of the composites were analyzed by scanning electron microscopy (SEM). It was found that the thermal conductivity of the HFFR-TC-PA6 composite increased with the amount of TC fillers. The TC fillers exerted a positive effect for flame retardant PA6. For example, the HFFR-TC-PA6 composites with the thickness of 1.6 mm successfully passed the UL-94 V-0 rating with an LOI of more than 29% when the loading amount of AlN-550RFS, BN-SW08 and BN-NW04 was 30 wt%. The morphological structures of the char residues revealed that TC fillers formed a highly integrated char layer surface (without holes) during the combustion process, as compared to that of flame retardant PA6/AlPi composites. In addition, the thermal stability and crystallization behavior of the composites were studied.
机译:在这项工作中,使用不同的导热填料(TC填料),例如氮化铝(AlN)和氮化硼(BN),在具有二乙基次膦酸铝(AlPi)的PA6基质中制备了具有改善的阻燃性和导热性的聚酰胺6(PA6)复合材料。 )作为阻燃剂。通过机械性能测试,极限氧指数(LOI),垂直燃烧测试(UL-94)详细研究了所得的无卤阻燃剂(HFFR)和导热(TC)PA6(HFFR-TC-PA6) ),锥形量热仪,热重分析(TGA)和差示扫描量热法(DSC)。通过扫描电子显微镜(SEM)分析了复合材料的冲击断裂表面的形态和炭渣。已发现,HFFR-TC-PA6复合材料的导热系数随TC填料的添加而增加。 TC填料对阻燃PA6发挥了积极作用。例如,当AlN-550RFS,BN-SW08和BN-NW04的加载量达到1.6毫米时,厚度为1.6毫米的HFFR-TC-PA6复合材料就成功通过了UL-94 V-0评级,LOI超过29%。为30重量%。炭渣的形态结构表明,与阻燃PA6 / AlPi复合材料相比,TC填料在燃烧过程中形成了高度集成的炭层表面(无孔)。此外,还研究了复合材料的热稳定性和结晶行为。

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