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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Microcellular and nanocellular solid-state polyetherimide (PEI) foams using sub-critical carbon dioxide I. Processing and structure
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Microcellular and nanocellular solid-state polyetherimide (PEI) foams using sub-critical carbon dioxide I. Processing and structure

机译:使用亚临界二氧化碳的微孔和纳米孔固态聚醚酰亚胺(PEI)泡沫I.加工和结构

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In this study we investigate the solid-state batch foaming of polyetherimide (PEI) using sub-critical CO2 as a blowing agent. We report on the gas diffusion for various saturation pressures in this system. Foaming process characterization is reported detailing conditions used to create microcellular and nanocellular PEI foams of 40% and higher relative density. Gas sorption, foaming, and resultant morphologies are analyzed and compared to previously reported results on PEI thin films. It was found that equilibrium gas concentrations for PEI sheet begin to significantly exceed that of films for CO2 pressures above 3 MPa. A large solid-state foaming process window has been identified that allows for the creation of either microcellular or nanocellular structures at comparable density reductions. A transition from micro-scale cells to nano-scale cells was observed at gas concentrations in the range of 94-110 mg CO2/g PEI. Additionally, a hierarchical structure was observed which consisted of nanocellular structures internal to microcells. The PEI-CO2 system offers the unique opportunity to compare and contrast the bulk properties of nanofoams and microfoams.
机译:在这项研究中,我们研究了使用亚临界CO2作为发泡剂的聚醚酰亚胺(PEI)的固态间歇发泡。我们报告了该系统中各种饱和压力下的气体扩散。报道了发泡过程的特性,详述了用于制造40%或更高的相对密度的微孔和纳米孔PEI泡沫的条件。分析了气体吸附,发泡和所得形态,并将其与以前在PEI薄膜上报道的结果进行了比较。发现对于3 MPa以上的CO2压力,PEI薄板的平衡气体浓度开始明显超过薄膜。已经确定了较大的固态发泡过程窗口,该窗口允许以相当的密度降低来创建微孔或纳米孔结构。在94-110 mg CO2 / g PEI的气体浓度下,观察到了从微型电池到纳米电池的过渡。另外,观察到由微细胞内部的纳米细胞结构组成的分层结构。 PEI-CO2系统为比较和对比纳米泡沫和微泡沫的整体性能提供了独特的机会。

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