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首页> 外文期刊>The Journal of Supercritical Fluids >Formation mechanism and tuning for bi-modal cell structure in polystyrene foams by synergistic effect of temperature rising and depressurization with supercritical CO2
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Formation mechanism and tuning for bi-modal cell structure in polystyrene foams by synergistic effect of temperature rising and depressurization with supercritical CO2

机译:超临界CO 2升压和降压的协同效应在聚苯乙烯泡沫塑料中双峰泡孔结构的形成机理和调节

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摘要

Polystyrene (PS) foams are fabricated using supercritical carbon dioxide (Sc-CO2) as a physical foaming agent in a batch foaming process. It is demonstrated that a bi-modal cell structure (BMCS) is obtained by the synergistic effect of temperature rising and depressurization using a varying-temperature mode (VTM). The formation mechanism for the BMCS is revealed. Cell nucleation occurs in the supercritical CO2-saturated polymer both in temperature rising and depressurizing stages. The nuclei formed in the former stage develop into large cells, whereas the ones formed in the latter stage evolve into small cells. The effects of foaming temperature, saturation temperature, second saturation time and foaming pressure in the VTM on the cellular structure of PS foams were investigated. The results showed that no BMCS is formed when the foaming temperature is only 10 degrees C higher than saturation temperature. By manipulating the foaming parameters, the BMCS PS foams with a wide range of mean diameters (50.0-713.7 mu m) and densities (2.1 x 10(3)-3.6 x 10(6) cells/cm(3)) for the large cells, and a wide range of foam density (0.09-0.73 g/cm(3)) are obtained. (C) 2015 Elsevier B.V. All rights reserved.
机译:在分批发泡过程中,使用超临界二氧化碳(Sc-CO2)作为物理发泡剂制造聚苯乙烯(PS)泡沫。证明了通过使用变温模式(VTM)的温度升高和降压的协同作用获得了双峰单元结构(BMCS)。揭示了BMCS的形成机理。在升温和降压阶段,超临界CO2饱和聚合物中都会发生细胞成核。前阶段形成的核发展成大细胞,而后阶段形成的核发展成小细胞。研究了VTM中发泡温度,饱和温度,第二饱和时间和发泡压力对PS泡沫孔结构的影响。结果表明,当发泡温度仅比饱和温度高10摄氏度时,不会形成BMCS。通过控制发泡参数,BMCS PS泡沫具有较大的平均直径范围(50.0-713.7微米)和密度(2.1 x 10(3)-3.6 x 10(6)孔/ cm(3))。孔,并获得广泛的泡沫密度(0.09-0.73 g / cm(3))。 (C)2015 Elsevier B.V.保留所有权利。

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