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首页> 外文期刊>Polymer international >Polypropylene-nano-silica nanocomposite foams: mechanisms underlying foamability, and foam microstructure, crystallinity and mechanical properties
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Polypropylene-nano-silica nanocomposite foams: mechanisms underlying foamability, and foam microstructure, crystallinity and mechanical properties

机译:聚丙烯 - 纳米二氧化硅纳米复合泡沫:底层可发泡性,以及泡沫微观结构,结晶度和机械性能

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We investigate the production and characterization of foams prepared from polypropylene (PP) as well as PP-silica nanocomposites containing different loadings of nano-silica. This study was carried out to investigate the mechanisms underlying the production of foams with a regular cell structure through the use of nano-scale fillers. Foaming was carried out in batch mode using an autoclave with CO2 as the physical blowing agent; high pressures of the order of 14 MPa were achieved through a combination of active pressurization and the use of high foaming temperatures. The resulting PP nanocomposite foams were characterized in detail to quantify the effect of the nano-silica loading on the foam density and mechanical, morphological and thermal properties. The addition of nano-silica in PP resulted in the improvement of foam quality - as assessed from the well-defined and regular cell structures with absence of cell coalescence - as well as an increase in expansion ratio and decrease in foam density. Careful analyses of trends in cell size, cell density and expansion ratio of the foams were correlated with measurements of melt rheology and nano-filler morphology of the unfoamed specimens in order to identify subtle details regarding the role of silica nanoparticles in improving foam quality. (c) 2019 Society of Chemical Industry
机译:我们研究了由聚丙烯(PP)制备的泡沫的生产和表征以及含有不同纳米二氧化硅的不同载荷的PP-二氧化硅纳米复合材料。进行该研究以研究通过使用纳米级填料的常规细胞结构在生产泡沫的基础上的机制。使用具有CO2的高压釜作为物理发泡剂,以批量模式进行发泡;通过主动加压和使用高发泡温度的组合实现了14MPa的高压力。详细表征所得的PP纳米复合泡沫,以量化纳米二氧化硅加载对泡沫密度和机械,形态学和热性能的影响。在PP中加入纳米二氧化硅导致泡沫质量的改善 - 根据具有细胞聚结的良好定义和常规细胞结构评估的泡沫质量 - 以及膨胀率的增加和泡沫密度降低。仔细分析泡沫的细胞尺寸,细胞密度和膨胀比的趋势与未发作样本的熔体流变学和纳米填充形貌的测量相关,以识别有关二氧化硅纳米颗粒在提高泡沫质量方面的作用的微妙细节。 (c)2019年化学工业协会

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