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首页> 外文期刊>The Journal of Supercritical Fluids >Polycarbonate foams with tailor-made cellular structures by controlling the dissolution temperature in a two-step supercritical carbon dioxide foaming process
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Polycarbonate foams with tailor-made cellular structures by controlling the dissolution temperature in a two-step supercritical carbon dioxide foaming process

机译:通过在两步超临界二氧化碳发泡过程中控制溶解温度,来定制孔结构的聚碳酸酯泡沫

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摘要

Closed-cell polycarbonate foams were prepared using a two-step foaming process, which consisted of the initial dissolution of supercritical CO2 (scCO2) into PC foaming precursors and their later expansion by heating using a double contact restriction method. The effects of the parameters of both CO2 dissolution and heating stages on the cellular structure characteristics as well as on the physical aging of PC in the obtained foams were investigated. A higher amount of CO2 was dissolved in PC with increasing the dissolution temperature from 80 to 100°C, with similar CO2 desorption trends and diffusion coefficients being found for both conditions. PC foams displayed an isotropic-like microcellular structure at a dissolution temperature of 80 °C. It was shown that it is possible to reduce their density while keeping their microcellular structure with increasing the heating time. On contrary, when dissolving CO2 at 100 °C and later expanding, PC foams presented a cellular morphology with bigger cells and with an increasingly higher cell elongation in the vertical growth direction with increasing the heating time. Comparatively, PC foams obtained by dissolving CO2 at 100 °C presented a more marked physical aging after CO2 dissolution and foaming, although this effect could be reduced and ultimately suppressed with increasing the heating time.
机译:闭孔聚碳酸酯泡沫使用两步发泡工艺制备,该工艺包括将超临界CO2(scCO2)初始溶解于PC发泡前体中,然后通过双接触限制法加热使其膨胀。研究了CO2溶解和加热阶段的参数对所获得的泡沫中孔结构特性以及PC物理老化的影响。随着溶解温度从80°C升高到100°C,PC中溶解了更多的CO2,在两种条件下都发现了相似的CO2解吸趋势和扩散系数。 PC泡沫在80°C的溶解温度下表现出各向同性的微孔结构。结果表明,随着加热时间的增加,可以在保持微孔结构的同时降低其密度。相反,当在100°C下溶解CO2并随后膨胀时,PC泡沫呈现出具有较大泡孔的泡孔形态,并随着加热时间的增加在垂直生长方向上具有越来越高的泡孔伸长率。相比之下,在CO2溶解和起泡后,通过在100°C溶解CO2获得的PC泡沫表现出更明显的物理老化,尽管这种作用可以随着加热时间的增加而降低并最终得到抑制。

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