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Preparation and cure kinetics of epoxy with nanodiamond modified with liquid crystalline epoxy

机译:用液晶环氧树脂改性环氧树脂的制备及固化动力学

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摘要

A novel epoxy composite with liquid crystalline epoxy resin modified nanodiamond (ND-LCER) was prepared by grafting diglycidyl ether of 4,4'-bisphenol (DGEBP) monomers onto the surface of acid treated nanodiamond (ND-COOH). Untreated nanodiamond (UND), ND-COOH and ND-LCER were composited with epoxy/4,4'-diamino diphenyl sulfone (DDS) in various weight ratios, respectively. The cure behavior of the prepared composite systems was investigated with dynamic differential scanning calorimetry (DSC) technology at different heating rates. The NDs exhibited acceleration effects on the curing reaction with increase of content amounts, which might attribute to the special structure of the nanodiamond (ND) particles itself and the functional groups of the ND. The modified ND particles showed the lowest activation energy value due to the diminution to the diffusion control process caused by liquid crystalline epoxy resins molecules. The two-parameter (m, n) autocatalytic model of Sestak-Berggren based on the Malek method is in-line with the epoxy/ND composites.
机译:将4,4'-双酚(DGEBP)单体的二缩水甘油醚接枝到经酸处理的纳米金刚石(ND-COOH)表面,制备了液晶环氧树脂改性纳米金刚石(ND-LCER)环氧复合材料。未经处理的纳米金刚石(UND)、ND-COOH和ND-LCER分别以不同的重量比与环氧树脂/4,4'-二氨基二苯砜(DDS)复合。采用动态差示扫描量热法(DSC)研究了制备的复合体系在不同升温速率下的固化行为。随着纳米金刚石含量的增加,纳米金刚石对固化反应表现出加速效应,这可能与纳米金刚石颗粒本身的特殊结构和纳米金刚石的官能团有关。由于液晶环氧树脂分子对扩散控制过程的影响,改性后的钕粒子显示出最低的活化能值。基于Malek方法的Sestak-Berggren双参数(m,n)自催化模型符合环氧树脂/钕复合材料。

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