论文标题

带有不同填充剂的基于聚苯乙烯的纳米复合材料:制造和机械性能

Polystyrene-based nanocomposites with different fillers: fabrication and mechanical properties

论文作者

Moskalyuk, O. A., Belashov, A. V., Beltukov, Y. M., Ivan'kova, E. M., Popova, E. N., Semenova, I. V., Yelokhovsky, V. Y., Yudin, V. E.

论文摘要

The paper presents a comprehensive analysis of elastic properties of polystyrene-based nanocomposites filled with different types of inclusions: small spherical particles (SiO2 and Al2O3), alumosilicates (montmorillonite, halloysite natural tubules and Mica) and carbon nanofillers (carbon black and multi-walled carbon nanotubes).复合材料是通过熔体技术制造的。对复合融化的分析表明,山莫洛酮,多壁碳纳米管和AL2O3颗粒的引入可在纯聚苯乙烯中平均增加2至5个数量级的熔体粘度。制备具有不同填充浓度的复合材料的块样品,并研究了其线性和非线性弹性特性。引入更刚性的颗粒导致该复合材料的弹性模量更大,而碳填充剂的最高升高约为80%。碳黑色颗粒在突破时也比纯聚苯乙烯高约20%。 与线性相比,复合材料的非线性弹性模量对在聚合物基质中添加填充颗粒更敏感。材料的线性和非线性弹性模量组合的非线性系数$β$表现出与年轻模量变化相关的相关变化。 $β$的绝对值与纯PS相比,在CB和HNT的复合材料中显示出1.5-1.6倍的上升。将制造复合材料的非线性弹性的变化与它们中批量非线性应变波参数的测量进行了比较。波速和衰减减小的变化与观察到的材料非线性的增强相关。

The paper presents a comprehensive analysis of elastic properties of polystyrene-based nanocomposites filled with different types of inclusions: small spherical particles (SiO2 and Al2O3), alumosilicates (montmorillonite, halloysite natural tubules and Mica) and carbon nanofillers (carbon black and multi-walled carbon nanotubes). Composites were fabricated by melt technology. The analysis of composite melts showed that the introduction of Montmorillonite, Multi-walled carbon nanotubes, and Al2O3 particles provided an increase in melt viscosity by an average of 2 to 5 orders of magnitude over the pure polystyrene. Block samples of composites with different filler concentrations were prepared, and their linear and nonlinear elastic properties were studied. The introduction of more rigid particles led to a more profound increase in the elastic modulus of the composite, with the highest rise of about 80% obtained with carbon fillers. Carbon black particles provided also an enhanced strength at break of about 20% higher than that of pure polystyrene. The nonlinear elastic moduli of composites were shown to be more sensitive to addition of filler particles to the polymer matrix than the linear ones. The nonlinearity coefficient $β$ comprising the combination of linear and nonlinear elastic moduli of a material demonstrated considerable changes correlating with changes of the Young's modulus. The absolute value of $β$ showed rise in 1.5-1.6 times in the CB- and HNT-containing composites as compared to that of pure PS. The changes in nonlinear elasticity of fabricated composites were compared with measurements of the parameters of bulk nonlinear strain waves in them. Variations of wave velocity and decay decrement correlated with observed enhancement of materials nonlinearity.

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