Gawryla Matthew D, Arndt Eric M, Sánchez-Soto Miguel, Schiraldi David A
Department of Macromolecular Science & Engineering, Case Western Reserve University, Cleveland, OH 44106-7202, USA.
Centre Catalá del Plástic, Universitat Politécnica de Catalunya. BarcelonaTech, 08022 Terrassa, Spain.
Materials (Basel). 2018 Feb 3;11(2):233. doi: 10.3390/ma11020233.
Low density composites of sodium montmorillonite and poly(amide-imide) polymers have been created using an ice templating method, which serves as an alternative to the often-difficult foaming of high temperature/high performance polymers. The starting polymer was received in the poly(amic acid) form which can be cured using heat, into a water insoluble amide-imide copolymer. The resulting materials have densities in the 0.05 g/cm³ range and have excellent mechanical properties. Using a tertiary amine as a processing aid provides for lower viscosity and allows more concentrated polymer solutions to be used. The concentration of the amine relative to the acid groups on the polymer backbone has been found to cause significant difference in the mechanical properties of the dried materials. The synthesis and characterization of low density versions of two poly(amide-imide) polymers and their composites with sodium montmorillonite clay are discussed in the present work.
采用冰模板法制备了钠蒙脱石与聚(酰胺 - 酰亚胺)聚合物的低密度复合材料,该方法可替代高温/高性能聚合物通常难以进行的发泡过程。起始聚合物为聚(酰胺酸)形式,可通过加热固化成水不溶性的酰胺 - 酰亚胺共聚物。所得材料的密度在0.05 g/cm³范围内,且具有优异的机械性能。使用叔胺作为加工助剂可降低粘度,并允许使用浓度更高的聚合物溶液。已发现胺相对于聚合物主链上酸基团的浓度会导致干燥材料的机械性能产生显著差异。本文讨论了两种聚(酰胺 - 酰亚胺)聚合物及其与钠蒙脱石粘土复合材料的低密度版本的合成与表征。