首页> 外文会议>Symposium on Nanophase and Nanocomposite Materials IV, Nov 26-29, 2001, Boston, Massachusetts, U.S.A. >Orientation of Aromatic Ion Exchange Diamines and the Effect on Melt Viscosity and Thermal Stability of PMR-15/ Silicate Nanocomposites
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Orientation of Aromatic Ion Exchange Diamines and the Effect on Melt Viscosity and Thermal Stability of PMR-15/ Silicate Nanocomposites

机译:芳族离子交换二胺的取向及其对PMR-15 /硅酸盐纳米复合材料熔体粘度和热稳定性的影响

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摘要

Nanocomposites of PMR-15 polyimide and a diamine modified silicate were prepared by addition of the silicate to the PMR-15 resin. The orientation of the ion exchange diamine within the silicate gallery was determined by x-ray diffraction and found to depend on the clay cation exchange capacity. The oligomer melt viscosity exhibited a dependence on the orientation of the diamine in the silicate interlayer, and in some cases, on the length of the diamine. A correlation was observed between the oligomer melt viscosity and the crosslinking enthalpy, where nanocomposites with an increased melt viscosity exhibited a decrease in enthalpy on crosslinking. After crosslinking, those nanocomposites with a high melt viscosity had poorer thermal oxidative stability compared to the less viscous systems. The melt viscosity was tailored by co-exchange of an aromatic diamine and an aliphatic amine into the silicate. Nanocomposites prepared with this silicate exhibited an increase in thermal oxidative stability compared to the neat resin.
机译:通过将硅酸盐添加到PMR-15树脂中,可以制备PMR-15聚酰亚胺和二胺改性的硅酸盐的纳米复合材料。通过X射线衍射确定离子交换二胺在硅酸盐通道内的取向,并发现其取决于粘土阳离子交换能力。低聚物熔体粘度表现出取决于在硅酸盐夹层中的二胺的取向,并且在某些情况下取决于二胺的长度。在低聚物熔体粘度和交联焓之间观察到相关性,其中熔体粘度增加的纳米复合材料在交联时表现出焓降低。交联后,与较低粘度的体系相比,那些具有高熔体粘度的纳米复合材料的热氧化稳定性较差。通过将芳族二胺和脂族胺共交换成硅酸盐来调节熔体粘度。与纯树脂相比,用这种硅酸盐制备的纳米复合材料表现出热氧化稳定性的提高。

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