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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >The effect of boehmite nanoparticles (gamma-AlOOH) on nanomechanical and thermomechanical properties correlated to crosslinking density of epoxy
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The effect of boehmite nanoparticles (gamma-AlOOH) on nanomechanical and thermomechanical properties correlated to crosslinking density of epoxy

机译:勃姆石纳米粒子(Gamma-Alooh)对纳米力学和热机械性能的影响与环氧交联密度相关

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摘要

We show that complex physical and chemical interactions between boehmite nanoparticles and epoxy drastically affect matrix properties, which in the future will provide tuning of material properties for further optimization in applications from automotive to aerospace. We utilize intermodulation atomic force microscopy (ImAFM) for probing local stiffness of both particles and polymer matrix. Stiff particles are expected to increase total stiffness of nanocomposites and the stiffness of polymer should remain unchanged. However, ImAFM revealed that stiffness of matrix in epoxy/boehmite nanocomposite is significantly higher than unfilled epoxy. The stiffening effect of the boehmite on epoxy also depends on the particle concentration. To understand the mechanism behind property alteration induced by boehmite nanoparticles, network architecture is investigated using dynamic mechanical thermal analysis (DMTA). It was revealed that although with 15 wt% boehmite nanoparticles the modulus at glassy state increases, crosslinking density of epoxy for this composition is drastically low.
机译:我们表明,勃姆石纳米粒子和环氧树脂之间的复杂物理和化学相互作用大大影响了基质特性,在未来将提供材料特性的调整,以便在汽车到航空航天的应用中进一步优化。我们利用互调原子力显微镜(IMAFM)来探测颗粒和聚合物基质的局部刚度。预期硬颗粒会增加纳米复合材料的总刚度,并且聚合物的刚度应保持不变。然而,IMAFM揭示了环氧/勃姆石纳米复合材料中基质的刚度显着高于未填充的环氧树脂。勃姆石对环氧树脂的加强效果也取决于颗粒浓度。要了解Boehmite纳米粒子诱导的性能改变背后的机制,使用动态机械热分析(DMTA)研究了网络架构。揭示了虽然具有15wt%Bohmite纳米颗粒的玻璃状状态的模量增加,但该组合物的环氧树脂的交联密度急剧下降。

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