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Interfacial flame retardance of Poly(vinyl alcohol) bead foams through surface plasticizing and microwave selective sintering

机译:聚(乙烯醇)珠泡沫通过表面塑化和微波选择性烧结的界面阻燃性

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摘要

Due to the presence of massive air and porous structure, the high flammability of polymeric foams severely limits their wider application in household, automobile, and aerospace fields. Herein, an interfacial flame-retardant mode based on surface plasticizing and microwave selective sintering was proposed to simultaneously realize the significantly reduced flammability and the enhanced mechanical properties of poly (vinyl alcohol) (PVA)/potassium silicate (KSi) bead foams. First, the foamed PVA beads with unique cell structure were prepared by supercritical carbon dioxide extrusion foaming and pelletizing. Then the KSi aqueous solution was coated on the surfaces of as-prepared PVA beads through surface plasticizing and acted as the excellent microwave absorber. Upon exposure to microwave irradiation, the interfacial heating caused by KSi coating layer induced the surface melting and cohesion of the neighboring PVA beads. The intense molecular diffusion occurred between PVA and KSi in the interfacial regions, improving the mechanical properties of foam parts. Meanwhile, KSi enriched at the bead interface and quickly decomposed into silicon-containing compounds once ignition, which constituted a dense physical Si and C barrier preventing the propagation of combustible substance and oxygen. Thus, the PVA/KSi bead foam reached the UL-94 level of V-0 and LOI value as high as 33.7%.
机译:由于存在巨大的空气和多孔结构,聚合物泡沫的高易燃性严重限制了他们在家庭,汽车和航空航天领域的更广泛的应用。在此,提出了基于表面塑化和微波选择性烧结的界面阻燃模式,同时实现了聚(乙烯醇)/硅酸钾(Ksi)珠泡沫的显着降低的易燃性和增强的力学性能。首先,通过超临界二氧化碳挤出发泡和造粒制备具有独特电池结构的发泡PVA珠粒。然后通过表面塑化涂覆KSI水溶液在用制备的PVA珠子的表面上涂覆并用作优异的微波吸收器。在暴露于微波辐射后,KSI涂层引起的界面加热诱导相邻PVA珠子的表面熔化和内聚力。在界面区域中PVA和KSI之间发生强烈分子扩散,从而改善泡沫部分的机械性能。同时,KSI富含珠壁并迅速分解成含硅化合物一旦点火,它构成了致密物理Si和C屏障,防止了可燃物质和氧气的繁殖。因此,PVA / ksi珠泡沫达到UL-94水平V-0和LOI值,高达33.7%。

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