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Reinforcement effect of acid modified nanodiamond in epoxy matrix for enhanced mechanical and electromagnetic properties

机译:酸改性纳米金刚胺对环氧基质增强机械和电磁特性的增强作用

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摘要

We applied acid treatment for the surface modification of detonation nanodiamond (DND) powder by minimizing their surface energy to overcome agglomeration and improve dispersion of DNDs. Different concentrations of acid modified DND in 828 epoxy matrix were fabricated to check their mechanical and electromagnetic properties. Mechanical properties were checked in terms of ultimate tensile strength (UTS), toughness, energy to break, percent strain break and Young's modulus while electromagnetic shielding properties were studied in frequency range of 11-17 GHz. To analyze electrical and magnetic properties of the nanocomposites, relative permittivity and permeability tests were performed. Excellent interactions among acid modified DND and epoxy resin was observed due to carboxyl and hydroxyl functional groups that results in the formation of efficient load transfer interface, which in turn enhance the mechanical and electromagnetic properties of epoxy nano composites. During investigation it was observed that mechanical properties and relative permittivity showed enhancements when, 0.2 wt% acid modified DND were used as a nano-filler, while on further increment of modified DND these properties start decreasing. Unlike this, the relative permeability, reflection and transmission loss values were increased with the increase of acid modified DND content.
机译:通过最小化它们的表面能克服聚集并改善DNDS的分散来施加抗爆炸纳米胺(DND)粉末的表面改性的酸处理。制造出828个环氧基质中的不同浓度的酸改性DND以检查其机械和电磁特性。在极限拉伸强度(UTS),韧性,能量突破的尺寸,菌株断裂和杨氏模量百分比的同时,在11-17GHz的频率范围内研究了力度破裂和杨氏模量的尺寸。为了分析纳米复合材料的电和磁性,进行相对介电常数和渗透性测试。由于羧基和羟基官能团,观察到酸改性的DND和环氧树脂之间的优异相互作用导致形成有效的载荷转移界面,这反过来提高环氧纳米复合材料的机械和电磁特性。在调查期间,观察到,当使用0.2wt%酸改性的DND作为纳米填料时,机械性能和相对介电常数显示出的增强,而这些性质开始降低。与此不同,随着酸改性的DND含量的增加而增加,相对渗透性,反射和透射损失值增加。

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