首页> 外文期刊>Journal of thermal analysis and calorimetry >Effect of organically modified montmorillonite filler on the dynamic cure kinetics, thermal stability, and mechanical properties of brominated epoxy/aniline formaldehyde condensates system
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Effect of organically modified montmorillonite filler on the dynamic cure kinetics, thermal stability, and mechanical properties of brominated epoxy/aniline formaldehyde condensates system

机译:有机改性蒙脱土填料对溴化环氧/苯胺甲醛缩合物体系动态固化动力学,热稳定性和机械性能的影响

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摘要

Nanocomposites, based on tetrabromo-bisphenol-A epoxy and aniline formaldehyde condensates, containing 5 and 10 % organically modified montmorillonite (O-MMT), were prepared. The morphologies of these nanocomposites were studied by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The influences of O-MMT on the dynamic cure kinetics, thermal stability, and mechanical properties were investigated by differential scanning calorimetry, thermogravimetric analysis, and non-destructive ultrasonic testing techniques. The XRD and SEM results indicated a good dispersion of O-MMT within the epoxy matrix. The relation between the activation energy, E a, and the degree of cure, α, for the examined systems was obtained by applying model-free isoconversional Kissinger-Akahira-Sunose method. As α increases, E a increases gradually, almost independent of the amount of O-MMT. The dynamic cure kinetics of the neat epoxy system as well as its nanocomposites were described by ?estàk-Berggren, [SB (m, n)], autocatalytic model. The O-MMT enhances the thermal stability of the examined epoxy system. The results of the mechanical properties indicated that the addition of O-MMT enhances the Young's and shear elastic modulus and microhardness. The values of these parameters increase with increasing O-MMT loading.
机译:制备了基于四溴双酚-A环氧和苯胺甲醛缩合物的纳米复合材料,其中含有5%和10%的有机改性蒙脱土(O-MMT)。通过X射线衍射(XRD)和扫描电子显微镜(SEM)研究了这些纳米复合材料的形貌。通过差示扫描量热法,热重分析和无损超声检测技术研究了O-MMT对动态固化动力学,热稳定性和机械性能的影响。 XRD和SEM结果表明O-MMT在环氧树脂基质中具有良好的分散性。通过使用无模型的等转化基辛格-赤平-Sunose方法,获得了被检查系统的活化能E a和固化度α之间的关系。随着α的增加,E a逐渐增加,几乎与O-MMT的量无关。净环氧体系及其纳米复合材料的动态固化动力学由estestak-Berggren [SB(m,n)]自动催化模型描述。 O-MMT增强了所检查的环氧体系的热稳定性。力学性能的结果表明,添加O-MMT可以提高杨氏和剪切弹性模量和显微硬度。这些参数的值随O-MMT负载的增加而增加。

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