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Flame-retardant polyamide 11 and 12 nanocomposites: Processing, morphology, and mechanical properties

机译:阻燃聚酰胺11和12纳米复合材料:加工,形态和机械性能

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The objective of this study is to develop improved polyamide (nylon) 11 (PA11) and 12 (PA12) polymers with enhanced flame retardancy, thermal, and mechanical properties for selective laser sintering rapid manufacturing. PA11 and PA12 were melt-blended, dispersing low concentrations of nanoparticles, namely nanoclays (NCs), carbon nanofibers (CNFs), and nanosilicas (NSs) via twin-screw extrusion. To enhance their thermal and flammability properties, an intumescent flame retardant (FR) was added to the mechanically superior NC and CNF PA11 formulations. NC or CNF additions to either PA11 or PA12 generally increased its tensile strength and modulus, but sharply reduced its elongation at rupture. FR additives reduced PA11's properties considerably. This substitution, however, only exacerbated the already steep drop in elongation at rupture due to FR additives alone; while elongation dropped 58% with the addition of 30 wt% FR, it dropped 98% with the addition of 25 wt% FR/5 wt% CNF.
机译:这项研究的目的是开发改进的聚酰胺(尼龙)11(PA11)和12(PA12)聚合物,这些聚合物具有增强的阻燃性,热和机械性能,可用于快速激光烧结的快速制造。将PA11和PA12熔融共混,通过双螺杆挤出分散低浓度的纳米颗粒,即纳米粘土(NCs),碳纳米纤维(CNFs)和纳米二氧化硅(NSs)。为了增强其热和可燃性,向机械性能优异的NC和CNF PA11配方中添加了膨胀型阻燃剂(FR)。在PA11或PA12中添加NC或CNF通常会提高其拉伸强度和模量,但会大大降低其断裂伸长率。阻燃添加剂大大降低了PA11的性能。然而,这种替代仅由于单独的FR添加剂而加剧了断裂时已经急剧下降的伸长率。当添加30 wt%FR时,伸长率下降58%,而添加25 wt%FR / 5 wt%CNF时,伸长率下降98%。

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