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Producing Microporous PMMA with Supercritical CO_2 and the Research on Its Properties

机译:用超临界CO_2生产微孔PMMA和对其性质的研究

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The research on microcellular polymer foam (MPF) is significant in plastic processing industry. In this study, polymethyl methacrylate (PMMA) was considered to be the foam matrix via a preliminary experiment. It is because that compared with other polymers, it is easier to swell and plasticize with supercritical CO_2 (SCCO_2). Moreover, its absorbability in SCCO_2 is much higher. The above research provides guidance for the preparation of microcellular polymer blend foams. In order to study the foam process and the optimum experimental conditions, the average cellular sizes were measured by controlling the saturation pressure, temperature and the soak time on the basis of the orthogonal experiment. The microporous structure was observed by scanning electron microscope (SEM). Then the optimum amount of nano-fillers was achieved by solution and melt blending. In addition, the mechanical properties of MPF were measured to explore the change in foaming. The obtained results would provide better insight to planners and operators in the field of chemical engineering to handle the uncertainties effectively.
机译:塑料加工工业中微孔聚合物泡沫(MPF)的研究显着。在该研究中,通过初步实验认为聚甲基丙烯酸甲酯(PMMA)是泡沫基质。这是因为与其他聚合物相比,用超临界CO_2(SCCO_2)膨胀和塑化更容易。此外,SCCO_2中的吸收性高得多。上述研究为制备微孔聚合物共混泡沫提供了指导。为了研究泡沫过程和最佳的实验条件,通过基于正交实验控制饱和压力,温度和浸泡时间来测量平均细胞尺寸。通过扫描电子显微镜(SEM)观察微孔结构。然后通过溶液和熔融共混来实现最佳量的纳米填料。此外,测量MPF的机械性能以探讨发泡的变化。获得的结果将对化学工程领域的策划者和运营商提供更好的洞察力,以有效处理不确定性。

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