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Intumescent flame retardant polyurethane/reduced graphene oxide composites with improved mechanical, thermal, and barrier properties

机译:具有改善的机械,热和阻隔性能的膨胀型阻燃聚氨酯/还原氧化石墨烯复合材料

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Intumescent flame retardant polyurethane (IFRPU) composites were prepared in the presence of reduced graphene oxide (rGO) as synergism, melamine, and microencapsulated ammonium polyphosphate. The composites were examined in terms of thermal stability (both under nitrogen and air), electrical conductivity, gas barrier, flammability, mechanical, and rheological properties. Wide-angle X-ray scattering and scanning electron microscopy indicated that rGO are well-dispersed and exfoliated in the IFRPU composites. The limiting oxygen index values increased from 22.0 to 34.0 with the addition of 18 wt% IFR along with 2 wt% rGO. Moreover, the incorporation of rGO into IFRPU composites exhibited excellent antidripping properties as well as UL-94 V0 rating. The thermal stability of the composites enhanced. This was attributed to high surface area and good dispersion of rGO sheets induced by strong interactions between PU and rGO. The oxygen permeability, electrical, and viscoelasticity measurements, respectively, demonstrated that rGO lead to much more reduction in the gas permeability (by ~ 90 %), high electrical conductivity, and higher storage modulus of IFRPU composites. The tensile strength, modulus, and shore A remarkably improved by the incorporation of 2.0 wt% of rGO as well.
机译:在增效氧化石墨烯(rGO),三聚氰胺和微囊化多磷酸铵存在下,制备了膨胀型阻燃聚氨酯(IFRPU)复合材料。从热稳定性(在氮气和空气中),电导率,阻气性,易燃性,机械和流变性能方面检查了复合材料。广角X射线散射和扫描电子显微镜表明,rGO在IFRPU复合材料中很好地分散和剥落。通过添加18 wt%IFR和2 wt%rGO,极限氧指数值从22.0增加到34.0。此外,将rGO掺入IFRPU复合材料中表现出出色的抗滴落性能以及UL-94 V0等级。复合材料的热稳定性得到增强。这归因于PU和rGO之间的强相互作用引起的rGO片的高表面积和良好分散。氧渗透率,电学和粘弹性测量分别表明,rGO导致IFRPU复合材料的气体渗透率(降低约90%),高电导率和更高的储能模量。通过引入2.0重量%的rGO,抗张强度,模量和肖氏A也显着提高。

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