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Thermal and mechanical properties of PA12/C30B nanocomposites in relationship with nanostructure

机译:PA12 / C30B纳米复合材料的热力学性能与纳米结构的关系

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This work focuses on the effect of nanoclay mass fraction on the properties of polyamide 12 matrix. Relationships between mechanical, thermal, and structural properties of polyamide 12/Cloisite((R)) 30B nanocomposites were studied. The material structure, previously described from XRD and TEM experiments, was more thoroughly characterized in the present work using SEM and FTIR techniques. The FTIR results clearly showed that clay galleries are intercalated by PA chains, which leads to a partially exfoliated nanostructure, confirming the TEM observations and the XRD analysis. However, a few micrometric aggregates are evidenced by SEM analysis, particularly at high clay fractions. TGA and DTA measurements showed that the thermal stability of PA12 matrix is slightly modified by the Cloisite((R)) 30B content. Viscoelastic properties of the nanocomposites in solid-state were analyzed as functions of strain, frequency, and temperature. The extent of the linear response regime of the material is shown to be sensitive to the amount of clay: nonlinearities appear at lower strain values as the clay mass fraction increases. Both relative dynamical moduli also increase with increasing clay mass fraction, with frequency dependence for the viscous modulus and without frequency dependence for the elastic modulus. Finally, similarities have been pointed out between viscoelastic properties of the nanocomposites in solid and melt states. For example, the percolation threshold is highlighted at the same clay mass fraction, approximate to 2%, in both states. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 41938.
机译:这项工作的重点是纳米粘土质量分数对聚酰胺12基体性能的影响。研究了聚酰胺12 / Cloisite(R)30B纳米复合材料的机械性能,热性能和结构性能之间的关系。先前通过XRD和TEM实验描述的材料结构,在本研究中使用SEM和FTIR技术得到了更全面的表征。 FTIR结果清楚地表明,PA链插入了粘土通道,从而导致了部分剥离的纳米结构,从而证实了TEM观察和XRD分析。然而,通过SEM分析证明了一些微米级聚集体,特别是在高粘土分数下。 TGA和DTA测量表明,Cloisite(R)30B含量会稍微改变PA12基质的热稳定性。分析了固态纳米复合材料的粘弹特性,作为应变,频率和温度的函数。已表明材料的线性响应范围对粘土的量敏感:随着粘土质量分数的增加,非线性在较低的应变值下出现。两种相对动力模量也随着粘土质量分数的增加而增加,对于粘弹性模量具有频率依赖性,而对于弹性模量则不具有频率依赖性。最后,已经指出了固态和熔融态的纳米复合材料的粘弹性之间的相似性。例如,在两种状态下,渗透阈值都以相同的粘土质量分数(约2%)突出显示。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,41938。

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