Yu Yingfeng, Wang Minghai, Gan Wenjun, Tao Qingsheng, Li Shanjun
Department of Macromolecular Science and The Key Laboratory of Molecular Engineering of Polymer, Ministry of Education, Fudan University, Shanghai, 200433, China.
J Phys Chem B. 2004 May 20;108(20):6208-15. doi: 10.1021/jp036628o.
The polymerization-induced phase-separation process of polyethersulfone (PES)-modified epoxy systems was monitored in situ continuously on a single sample throughout the entire curing process by using optical microscopes, time-resolved light scattering (TRLS), scanning electronic microscopes (SEM), and a rheometry instrument. At specific PES content a viscoelastic transformation process of phase inversion morphology to bicontinuous was found with an optical microscope. The rheological behavior during phase separation corresponds well with the morphology development. Light-scattering results monitoring the phase-separation process of systems with final phase inversion morphology show a typical exponential decay procedure of scattering vector qm. The characteristic relaxation time of phase separation can be described well by the WLF equation.
通过光学显微镜、时间分辨光散射(TRLS)、扫描电子显微镜(SEM)和流变仪,在整个固化过程中对单个样品连续原位监测聚醚砜(PES)改性环氧体系的聚合诱导相分离过程。在特定的PES含量下,用光学显微镜发现了相转变形态到双连续的粘弹性转变过程。相分离过程中的流变行为与形态发展良好对应。监测具有最终相转变形态的体系相分离过程的光散射结果显示散射矢量qm呈现典型的指数衰减过程。相分离的特征弛豫时间可以用WLF方程很好地描述。