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Extrusion foaming behavior of a polypropyleneanoclay microcellular foam

机译:聚丙烯/纳米粘土微孔泡沫的挤出发泡行为

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With maleic anhydride grafted polypropylene (PP-g-MAH) as a compatibilizer, composites of block-copolymerized polypropylene (B-PP)anoclay were prepared. The effects of the PP-g-MAH and nanoclay content on the crystallization and rheological properties of B-PP were investigated. The microcellular foaming behavior of the B-PPanoclay composite material was studied with a single-screw extruder foaming system with supercritical (SC) carbon dioxide (CO2) as the foaming agent. The experimental results show that the addition of nanoclay and PP-g-MAH decreased the melt strength and complex viscosity of B-PP. When 3 wt % SC CO2 was injected as the foaming agent for the extrusion foaming process, the introduction of nanoclay and PP-g-MAH significantly increased the expansion ratio of the obtained foamed samples as compared with that of the pure B-PP matrix, lowered the die pressure, and increased the cell population density of the foamed samples to some extent. (C) 2016 Wiley Periodicals, Inc.
机译:以马来酸酐接枝聚丙烯(PP-g-MAH)为增容剂,制备了嵌段共聚聚丙烯(B-PP)/纳米粘土的复合材料。研究了PP-g-MAH和纳米粘土含量对B-PP结晶和流变性能的影响。采用单螺杆挤出机发泡系统,以超临界(SC)二氧化碳(CO2)为发泡剂,研究了B-PP /纳米粘土复合材料的微孔发泡行为。实验结果表明,纳米粘土和PP-g-MAH的加入降低了B-PP的熔体强度和复数粘度。当注入3 wt%的SC CO2作为挤出发泡过程的发泡剂时,与纯B-PP基体相比,纳米粘土和PP-g-MAH的引入显着提高了获得的发泡样品的膨胀率,降低了模头压力,并在一定程度上增加了泡沫样品的泡孔密度。 (C)2016威利期刊公司

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