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首页> 外文期刊>Applied clay science >Dispersion efficiency of montmorillonites in epoxy nanocomposites using solution intercalation and direct mixing methods
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Dispersion efficiency of montmorillonites in epoxy nanocomposites using solution intercalation and direct mixing methods

机译:蒙脱石在溶液插层和直接混合方法中在环氧纳米复合材料中的分散效率

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The major aims of this paper are the investigation of the effects of the mixing procedure and the montmorillonite (Mt) surface modification on the structure (optical microscopy, XRD, TEM, SEM), rheological, mechanical properties (DMA, tensile test) and corrosion stability (electrochemical impedance spectroscopy) of clay mineral/epoxy nanocomposite (CPN). Two series of CPN samples were prepared based on diglycidyl ether of bisphenol A (DGEBA) and polyamidoamine curing agent with three organophilic Mt and sodium-montmorillonite (1 wt%). Mt were mixed with DGEBA solution in the powder (direct mixing) and in the form of dispersions, preswollen in a commercial coating thinner (solution intercalation). The commercial Mt (Cloisite 30B) modified by quaternary alkylammonium ions bearing hydroxyl groups and especially Mt functionalized by primary (HDA(+)-Mt) alkylammonium ions, at loadings close to cation exchange capacity (CRC), were significantly swollen by thinner and further uniformly dispersed into CPN. Meanwhile, low gel volumes in thinner were found for more hydrophobic Mt (Cloisite 15A). The compatibility of Mt with solvents was well described by solubility and Flory-Huggins interaction parameters. In contrast to the direct incorporation of Mt powders in CPN, swelling enhanced intercalation of epoxy matrix into Mt, and for HDA(+)-Mt based CPN interlayer spacing reached 4.4 nm. The usage of HDA(+)-Mt organoclay and solution intercalation procedure provided the highest enhancement in rheological parameters (G', G", of Mt/epoxy dispersions and glassy storage modulus, Young's modulus and barrier properties of cured CPN.
机译:本文的主要目的是研究混合步骤和蒙脱土(Mt)表面改性对结构(光学显微镜,XRD,TEM,SEM),流变,机械性能(DMA,拉伸试验)的影响。矿物/环氧树脂纳米复合材料(CPN)的稳定性(电化学阻抗谱)。基于双酚A的二缩水甘油醚(DGEBA)和聚酰胺型胺固化剂以及三种亲有机Mt和钠蒙脱土(1 wt%),制备了两个系列的CPN样品。将Mt与DGEBA溶液以粉末形式(直接混合)混合,并以分散体的形式在商业涂料稀释剂中预溶胀(溶液嵌入)。带有羟基的季烷基铵离子修饰的商业Mt(Cloisite 30B),尤其是被伯(HDA(+)-Mt)烷基铵离子官能化的Mt,在接近阳离子交换容量(CRC)的负载下,显着溶胀且变薄。均匀分散到CPN中。同时,发现疏水性更强的Mt(Cloisite 15A)的凝胶体积更薄。 Mt与溶剂的相容性通过溶解度和Flory-Huggins相互作用参数得到了很好的描述。与直接在CPN中掺入Mt粉末相反,溶胀增强了环氧树脂基质向Mt中的嵌入,对于基于HDA(+)-Mt的CPN层间距达到4.4 nm。 HDA(+)-Mt有机粘土的使用和溶液插层程序在Mt /环氧分散体的流变参数(G',G“,玻璃态储能模量,杨氏模量和固化CPN的阻隔性能方面提供了最大的增强。

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