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Low Density Nanocellular Polymers Based on PMMA Produced by Gas Dissolution Foaming: Fabrication and Cellular Structure Characterization

机译:气相溶解发泡法生产的基于PMMA的低密度纳米细胞聚合物:制备及细胞结构表征

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This paper describes the processing conditions needed to produce low density nanocellular polymers based on polymethylmethacrylate (PMMA) with relative densities between 0.45 and 0.25, cell sizes between 200 and 250 nm and cell densities higher than 10 14 cells/cm 3 . To produce these nanocellular polymers, the foaming parameters of the gas dissolution foaming technique using CO 2 as blowing agent have been optimized. Taking into account previous works, the amount of CO 2 uptake was maintained constant (31% by weight) for all the materials. Foaming parameters were modified between 40 °C and 110 °C for the foaming temperature and from 1 to 5 min for the foaming time. Foaming temperatures in the range of 80 to 100 °C and foaming times of 2 min allow for production of nanocellular polymers with relative densities as low as 0.25. Cellular structure has been studied in-depth to obtain the processing-cellular structure relationship. In addition, it has been proved that the glass transition temperature depends on the cellular structure. This effect is associated with a confinement of the polymer in the cell walls, and is one of the key reasons for the improved properties of nanocellular polymers.
机译:本文介绍了生产基于聚甲基丙烯酸甲酯(PMMA)的低密度纳米细胞聚合物所需的工艺条件,该聚合物的相对密度在0.45至0.25之间,孔尺寸在200至250 nm之间,孔密度高于10 14个细胞/ cm 3。为了生产这些纳米细胞聚合物,已经优化了使用CO 2作为发泡剂的气体溶解发泡技术的发泡参数。考虑到先前的工作,所有材料的CO 2吸收量保持恒定(31%重量)。对于发泡温度,将发泡参数在40°C至110°C之间进行修改,将发泡时间在1-5分钟之间进行修改。发泡温度范围为80至100°C,发泡时间为2分钟,可以生产相对密度低至0.25的纳米细胞聚合物。已经深入研究了细胞结构以获得加工-细胞结构关系。另外,已经证明玻璃化转变温度取决于孔结构。这种作用与细胞壁中聚合物的封闭有关,并且是纳米细胞聚合物性能改善的关键原因之一。

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