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High Temperature Thermosetting Polyimide Nanocomposites Prepared with Reduced Charge Organoclay

机译:减少电荷有机粘土制备的高温热固性聚酰亚胺纳米复合材料

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摘要

The naturally occurring sodium and calcium cations found in bentonite clay galleries were exchanged with lithium cations. Following the cation exchange, a series of reduced charge clays were prepared by heat treatment of the lithium bentonite at 130 C, 150 C, or 170 C. Inductively coupled plasma (ICP) analysis showed that heating the lithium clay at elevated temperatures reduced its cation exchange capacity. Ion exchange of heat-treated clays with either a protonated alkyl amine or a protonated aromatic diamine resulted in decreasing amounts of the organic modifier incorporated into the lithium clay. The level of silicate dispersion in a thermosetting polyimide matrix was dependent upon the temperature of Li-clay heat treatment as well as the organic modification. In general, clays treated at 150 C or 170 C, and exchanged with protonated octadcylamine or protonated 2,2'-dimethlybenzidine (DMBZ) showed a higher degree of dispersion than clays treated at 130 C, or exchanged with protonated dodecylamine. Dynamic mechanical analysis showed little change in the storage modulus or T(sub g) of the nanocomposites compared to the base resin. However, long term isothermal aging of the samples showed a significant decrease in the resin oxidative weight loss. Nanocomposite samples aged in air for 1000 hours at 288 C showed of to a decrease in weight loss compared to that of the base resin. This again was dependent on the temperature at which the Li-clay was heated and the choice of organic modification.
机译:膨润土粘土廊道中发现的自然存在的钠和钙阳离子与锂阳离子交换。阳离子交换后,通过在130°C,150°C或170°C下对锂膨润土进行热处理,制备了一系列还原电荷的粘土。电感耦合等离子体(ICP)分析表明,在高温下加热锂粘土会还原其阳离子交换能力。热处理的粘土与质子化的烷基胺或质子化的芳族二胺的离子交换导致掺入锂粘土中的有机改性剂的量减少。硅酸盐在热固性聚酰亚胺基体中的分散程度取决于锂粘土热处理的温度以及有机改性剂。通常,在150℃或170℃下处理并与质子化的十八烷基胺或质子化的2,2′-二甲基联苯胺(DMBZ)交换的粘土显示出比在130℃下处理或与质子化的十二烷基胺交换的粘土更高的分散度。动态力学分析表明,与基础树脂相比,纳米复合材料的储能模量或T(sub g)几乎没有变化。然而,样品的长期等温老化显示出树脂氧化重量损失的显着降低。与基础树脂相比,在288℃下在空气中老化1000小时的纳米复合材料样品的重量损失有所减少。这又取决于Li-粘土被加热的温度以及有机改性的选择。

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