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Rheological study of gel phenomena during epoxide network formation in the presence of sepiolite

机译:海泡石存在下环氧网络形成过程中凝胶现象的流变学研究

摘要

The dynamic behaviour during the crosslinking of an epoxy polymer near the gel point was monitored using rheological multiple frequency experiments. The influence of a needle-shaped inorganic nanofiller, sepiolite, either non-modified or organically surface modified during the cure process in the presence of an aliphatic and an aromatic hardener was investigated. The validity of various criteria for determining the gel point was examined for the crosslinking of these filled thermosets. The Winter-Chambon criterion at the gel point is obeyed by the unfilled and by the non-modified sepiolite-filled epoxy matrix with either of the two hardeners. However, physical gels are formed in the presence of the organically modified sepiolite and the Winter-Chambon criterion is not valid. For all the systems investigated, the nanofiller reduces the time to reach gelation. Critical relaxation exponents and gel strength have been determined indicating a more elastic and stronger gel in the presence of the aliphatic hardener.
机译:使用流变多频实验监测环氧聚合物在胶凝点附近交联期间的动态行为。研究了在脂肪族和芳香族硬化剂的存在下,固化过程中未改性或有机表面改性的针状无机纳米填料海泡石的影响。对于这些填充的热固性材料的交联,检验了确定胶凝点的各种标准的有效性。凝胶点处的Winter-Chambon准则通过未填充和未改性的海泡石填充的环氧树脂基体以及两种硬化剂中的任一种来遵守。但是,物理凝胶是在有机改性海泡石的存在下形成的,Winter-Chambon标准无效。对于所有研究的系统,纳米填料都减少了达到胶凝的时间。确定了临界松弛指数和凝胶强度,表明在脂肪族固化剂的存在下,凝胶更具弹性和强度。

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