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Effects of Combining Graphene Nanoplatelet and Phosphorous Flame Retardant as Additives on Mechanical Properties and Flame Retardancy of Epoxy Nanocomposite

机译:将石墨烯纳米片和磷阻燃剂作为添加剂与环氧纳米复合材料的机械性能和阻燃性的影响

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摘要

The effects of combining 0.1–5 wt % graphene nanoplatelet (GNP) and 3–30 wt % phosphorous flame retardant, 9,10- dihydro-9-oxa-10-phosphaphenanthrene-10-oxide (DOPO) as fillers in epoxy polymer on the mechanical, flame retardancy, and electrical properties of the epoxy nanocomposites was investigated. GNP was homogeneously dispersed into the epoxy matrix using a solvent-free three-roll milling process, while DOPO was incorporated into the epoxy resin by mechanical stirring at elevated temperature. The incorporation of DOPO reduced the crosslinking density of the epoxy resin. When using polyetheramine as a hardener, the structural rigidity effect of DOPO overshadowed the crosslinking effect and governed the flexural moduli of epoxy/DOPO resins. The flexural moduli of the nanocomposites were improved by adding GNP up to 5 wt % and DOPO up to 30 wt %, whereas the flexural strengths deteriorated when the GNP and DOPO loading were higher than 1 wt % and 10 wt %, respectively. Limited by the adverse effects on mechanical property, the loading combinations of GNP and DOPO within the range of 0–1 wt % and 0–10 wt %, respectively, in epoxy resin were further studied. Flame retardancy index (FRI), which depended on three parameters obtained from cone calorimetry, was considered to evaluate the flame retardancy of the epoxy composites. DOPO showed better performance than GNP as the flame retardant additive, while combining DOPO and GNP could further improve FRI to some extent. With the combination of 0.5 wt % GNP and 10 wt % DOPO, improvement in both mechanical properties and flame retardant efficiency of the nanocomposite was observed. Such a combination did not affect the electrical conductivity of the nanocomposites since the percolation threshold was at 1.6 wt % GNP. Our results enhance the understanding of the structure–property relationship of additive-filled epoxy resin composites and serve as a property constraining guidance for the composite manufacturing.
机译:将0.1-5wt%石墨烯纳米片(GNP)和3-30wt%磷阻燃剂,9,10-二氢-9-oxa-10-磷蒽-10-氧化物(DOPO)与环氧聚合物中的填料组合的影响研究了环氧纳米复合材料的机械,阻燃性和电性能。使用无溶剂的三辊铣削方法将GNP均匀地分散到环氧基质中,而在升高的温度下,通过机械搅拌将DOPO掺入环氧树脂中。 DOPO的掺入降低了环氧树脂的交联密度。当使用聚醚胺作为硬化剂时,DOPO的结构刚性效应均匀地发出交联效应并治理环氧树脂/多糖树脂的弯曲模态。通过加入高达5wt%和高达30wt%的GNP加入高达5wt%的纳米复合材料的弯曲模态,而当GNP和DOPO负载分别高于1wt%和10wt%时,弯曲强度劣化。通过对机械性质的不利影响的限制,进一步研究了在环氧树脂0-1wt%和0-10wt%范围内的GNP和DOPO的加载组合。认为阻燃指数(FRI)依赖于从锥形量热法获得的三个参数,评价环氧复合材料的阻燃性。 DOPO表现出比GNP更好的性能作为阻燃添加剂,同时组合DOPO和GNP可以在一定程度上进一步改善。随着0.5wt%GNP和10wt%DOPO的组合,观察到纳米复合物的机械性能和阻燃效率的改善。这种组合不影响纳米复合材料的电导率,因为渗透阈值为1.6wt%GNP。我们的研究结果增强了对填充添加剂的环氧树脂复合材料的结构性质关系的理解,并用作复合材料制造的性质约束引导。

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