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Preparation and Properties of Rectorite/Epoxy Nanocomposites

机译:副矿石/环氧纳米复合材料的制备与性能

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The Org-rectorite, which was used as a filler in the Rectorite/Epoxy nanocomposites, was prepared by the intercalation and exfoliation of rectorite with dodecyl-bis(2-hydroxyethyl)-methylazanium chloride as the organic cation exchange agent. The two curing agents methyl hexahydrophthalic anhydride (MHHPA) and m-phenylenediamine were employed at working temperature ranging from 70 °C to 190 °C. The samples were characterized by Fourier Transform infrared (FTIR) spectroscopy, X-ray diffraction (XRD) and differential scanning calorimeter (DSC) analysis. The results show that the d_(001) (55.9 A) of Rectorite/Epoxy composites cured with MHHPA at 70 °C was larger than the Org-rectorite (28.7 A), and the Org-rectorite was exfoliated at 90 °C working temperature. While the d_(001) of Rectorite/Epoxy composites cured with m-phenylenediamine at 70 °C and 90 °C were 40.9 A and 42.1 A , and were exfoliated at 140 °C. The apparent activation energy (Ea) of Rectorite/Epoxy composites cured with MHHPA and m-phenylenediamine were obtained to be 74.85 and 59.15 KJ/mol, respectively. The higher apparent activation energy (Ea) of MHHPA systems may be responsible for the lower exfoliation temperature.
机译:的ORG-累托石,这是作为在累托石/环氧纳米复合材料的填料,被嵌入和十二烷基双(2-羟基乙基)氯化-methylazanium作为有机阳离子交换剂累托石的剥落制备。在从70℃至190℃的工作温度下,使用两种固化剂六氢邻羟氢酸酐(MHHPA)和M-苯二胺。通过傅里叶变换红外(FTIR)光谱,X射线衍射(XRD)和差示扫描量热仪(DSC)分析表征样品。结果表明,累托石/环氧树脂的D_(001)(55.9 A)复合材料在70与MHHPA固化℃下比ORG-累托石(28.7 A)大,并且ORG-累托石的混合物在90℃下工作温度剥离。虽然用M-苯二胺在70℃和90℃下固化的尿素/环氧复合材料的D_(001)为40.9A和42.1a,并在140℃下剥离。将用MHHPA和M-苯二胺固化的律/环氧复合材料的表观活化能量(EA)分别得到74.85和59.15kJ / mol。 MHHPA系统的较高明显的活化能量(EA)可能对较低的剥离温度负责。

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