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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >The role of interfacial interactions in the dynamic mechanical response of functionalized SWNT–PS nanocomposites
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The role of interfacial interactions in the dynamic mechanical response of functionalized SWNT–PS nanocomposites

机译:界面相互作用在功能化SWNT-PS纳米复合材料动态力学响应中的作用

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摘要

The dynamic mechanical properties of nanocomposites of functionalized single-walled carbon nanotubes dispersed in polystyrene are reported as a function of temperature. For nanocomposites containing less than 0.1 wt% nanotubes, the enhancement of the magnitude of the complex modulus |E~n|=(E~2+E~2)~2(1/2), where E′ and E″ are the elastic and loss moduli, respectively, exceeded the predictions of the Halpin–Tsai model (this model is often used to predict the properties of macroscopic composites). In this concentration range, however, the loss tangent, tan δ = E″/E′, of the nanocomposite remained comparable to that of pure PS, i.e., comparable elasticity. At larger concentrations the mechanical response became more elastic than PS, but the magnitude of the complex modulus fell appreciably below predictions based on the Halpin–Tsai model. An alternate hypothesis that relies on the role of attractive interactions between the nanotubes and polystyrene chains, and consistent with previous Raman scattering and glass transition temperature data, is proposed to describe the observed dynamic response.
机译:据报道,分散在聚苯乙烯中的功能化单壁碳纳米管的纳米复合材料的动态力学性能是温度的函数。对于包含少于0.1 wt%纳米管的纳米复合材料,复数模量| E〜n | =(E〜2 + E〜2)〜2(1/2)的幅度增加,其中E'和E''是弹性模量和损耗模量分别超过了Halpin-Tsai模型的预测(该模型通常用于预测宏观复合材料的性能)。然而,在该浓度范围内,纳米复合材料的损耗角正切tanδ= E” / E'仍然与纯PS相当,即具有相当的弹性。在较大的浓度下,机械响应变得比PS更具弹性,但复模量的幅度明显低于基于Halpin-Tsai模型的预测。提出了另一种假设来描述观察到的动态响应,该假设依赖于纳米管和聚苯乙烯链之间的有吸引力的相互作用,并且与先前的拉曼散射和玻璃化转变温度数据一致。

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