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INVESTIGATING THE VISCOELASTIC PROPERTIES AND CURING KINETICS OF THERMOSET NANOCOMPOSITES VIA DYNAMIC SHEAR RHEOLOGICAL ANALYSIS

机译:通过动态剪切流变分析研究热固性纳米复合材料的粘弹性和固化动力学

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Mechanical properties of a thermosetting composite can be theoretically determined by using its physical and chemical characteristics, and these properties are also immensely influenced by the viscoelastic structures and curing stages of the material throughout the curing process. This study explores the process conduct and curing kinetics of a commercial thermosetting epoxy resin, Loctite EA 9394 Aero. The material characteristics are calibrated on a constant isothermal cure profile using different weight percentages of nano-filler inclusions in the shear rheometry. For the LoctiteEA9394 Aero nanocomposites, it is inferred that addition of different percentages (0%, 1%, 2%, 4%) of nanoparticles (e.g., carbon black and zeolite) significantly alters the advancements in the cure chemical reactions towards the isothermal cure temperature (Tcure=93°C). The changes were noticed in the values of shear and storage modules, and tanδ where the carbon black nanocomposites exhibit elastic and viscous properties at the same time under thermal alteration / deformation. It also indicates that the material carries an excellent dampening coefficient. Besides, the zeolite nanocomposites reveal more of elastic solid and less viscous simultaneously under deformation providing the moderate dampening effect. The existence of nanoparticles among the polymer chains modifies the flow-ability of the resin molecules across the cure reaction, prompting vitrification process.
机译:通过使用其物理和化学特性可以理论地确定热固性复合材料的机械性能,并且这些性质也受到在整个固化过程中粘弹性结构和材料的固化阶段的影响。本研究探讨了商业热固性环氧树脂,Loctite EA 9394 Aero的过程进行和固化动力学。使用剪切计流计中的不同重量百分比在恒定的等温固化型材上校准材料特性。对于LoctiteeA9394航空纳米复合材料,推断,添加不同百分比(0%,1%,2%,4%)纳米颗粒(例如,炭黑和沸石)显着改变了治疗化学反应对等温固化的改进温度(Tcure = 93°C)。在剪切和储存模块的值中注意到的变化,并且在热改变/变形下同时表现出弹性和粘性性能的Tanδ。它还表明该材料具有出色的阻尼系数。此外,沸石纳米复合材料在提供中等阻尼效果的变形下显示出更多的弹性固体且较少的粘性。聚合物链中的纳米颗粒的存在改变了树脂分子在固化反应中的流动能力,提示玻璃化方法。

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