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Reinforcement effect of nanodiamond on properties of epoxy matrix

机译:纳米金刚石对环氧基体性能的增强作用

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Epoxyanocrystalline diamond nanocomposites composites were prepared by dispersing ultrasonically, 0.4, 0.7, 1.0, and 4.0 wt. % acid treated nanocrystalline diamond (NCD) powder in epoxy matrix. Fourier infrared spectroscopy was utilized to study the moieties attached to the nanodiamond particles. The trace elements present in NCD powder before and after acid treatment were analyzed using ion beam techniques. Thermo-mechanical properties of the nanocomposites showed that incorporation of low content (0.4 wt. %) of nanodiamond powder into epoxy matrix enhanced the storage modulus, loss modulus and hardness by ~68%, ~55% and ~86% respectively over neat epoxy. By increasing the concentration of modified NCD to 0.7 wt. % resulted in lower values of hardness and thermo-mechanical properties but still remain higher than neat epoxy. An increasing trend in properties was again observed at 4 wt. % concentration of modified nanofiller. The improvement in storage modulus, loss modulus and hardness was ~ 57%, 105% and 70% respectively. The glass transition temperature was up shifted to ~110°C over neat epoxy. The mechanisms responsible for enhanced properties of epoxy matrix are also discussed in detail.
机译:环氧树脂/纳米晶金刚石纳米复合材料复合材料是通过超声分散0.4、0.7、1.0和4.0 wt。 %酸处理的纳米晶金刚石(NCD)粉末在环氧树脂基质中。利用傅立叶红外光谱法研究了附着在纳米金刚石颗粒上的部分。使用离子束技术分析了酸处理前后NCD粉末中的痕量元素。纳米复合材料的热机械性能显示,将低含量(0.4 wt。%)的纳米金刚石粉末掺入环氧基质中,其储能模量,损耗模量和硬度分别比纯环氧树脂高约68%,约55%和〜86%。 。通过将改性的NCD的浓度增加至0.7重量%。 %导致较低的硬度和热机械性能值,但仍高于纯环氧树脂。在4wt。%下再次观察到性能的增加趋势。改性纳米填料的%浓度。储能模量,损耗模量和硬度的改善分别为〜57%,105%和70%。在纯环氧树脂上,玻璃化转变温度升至〜110°C。还详细讨论了导致环氧基质性能增强的机理。

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