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The Effect of Microcellular Structure on the Dynamic Mechanical Thermal Properties of High-Performance Nanocomposite Foams Made of Graphene Nanoplatelets-Filled Polysulfone

机译:微细胞结构对石墨烯纳米型聚氯乙烯制成的高性能纳米复合泡沫动态机械热性能的影响

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摘要

Polysulfone nanocomposite foams containing variable amounts of graphene nanoplatelets (0–10 wt%) were prepared by water vapor-induced phase separation (WVIPS) and supercritical CO2 (scCO2) dissolution. WVIPS foams with two ranges of relative densities were considered, namely, between 0.23 and 0.41 and between 0.34 and 0.46. Foams prepared by scCO2 dissolution (0.0–2.0 wt% GnP) were obtained with a relative density range between 0.35 and 0.45. Although the addition of GnP affected the cellular structure of all foams, they had a bigger influence in WVIPS foams. The storage modulus increased for all foams with increasing relative density and GnP’s concentration, except for WVIPS PSU-GnP foams, as they developed open/interconnected cellular structures during foaming. Comparatively, foams prepared by scCO2 dissolution showed higher specific storage moduli than similar WVIPS foams (same relative density and GnP content), explained by the microcellular structure of scCO2 foams. As a result of the plasticizing effect of CO2, PSU foams prepared by scCO2 showed lower glass transition temperatures than WVIPS foams, with the two series of these foams displaying decreasing values with incrementing the amount of GnP.
机译:通过水蒸气诱导的相分离(WVIPS)和超临界CO 2(SCCO2)溶解,制备含有可变量的石墨烯纳米片(0-10wt%)的聚砜纳米复合泡沫。认为WVIPS具有两个相对密度范围的泡沫,即0.23和0.41和0.34和0.46之间。得到SCCO2溶解(0.0-2.0wt%GNP)制备的泡沫,在0.35和0.45之间的相对密度范围内得到。虽然加入GNP影响了所有泡沫的细胞结构,但它们在WVIPS泡沫中有更大的影响。除了WVIPS PSU-GNP泡沫外,储存模量随着相对密度和GNP浓度的增加而增加,除了WVIPS PSU-GNP泡沫,因为它们在发泡过程中开发了开放/互连的蜂窝结构。相比之下,通过SCCO2溶解制备的泡沫显示比SCCO2泡沫的微孔结构解释的与类似的WVIPS泡沫(相同的相对密度和GNP含量相同的相对密度和GNP含量)显示出更高的特异性储存模量。由于CO 2的塑化作用,SCCO2制备的PSU泡沫显示比WVIPS泡沫的较低的玻璃化转变温度,两系列泡沫显示出降低的值,随着GNP的增加而降低的值。

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