Institute for Composites and Biomedical Materials, National Research Council, Napoli, Italy.
Nanotechnology. 2012 Dec 7;23(48):485705. doi: 10.1088/0957-4484/23/48/485705. Epub 2012 Nov 6.
The mechanical properties of GNP/LDPE nanocomposites (graphite nanoplatelets/low density polyethylene) have been investigated, in order to establish the effect of nanoscale reinforcement within the polymer matrix. Results show that the presence of the filler does not involve a change in the microscopic structure of the polymer. However, on a macroscopic scale, GNPs limit the mobility of the polymer chains, resulting in an increase in stiffness for the final composite. Orientation of GNPs within the LDPE matrix is also an important issue that affects mechanical properties and it has been evaluated by testing nanocomposites made by different manufacturing techniques (compression moulding and blown extrusion). The comparison between the experimental data and the Halpin-Tsai model shows that the orientation of GNPs due to the extrusion process leads to values of tensile modulus higher than that obtained with the randomly oriented disposition resulting from the compression moulding technique.
研究了 GNP/LDPE 纳米复合材料(石墨纳米片/低密度聚乙烯)的力学性能,以确定纳米增强材料在聚合物基体中的作用。结果表明,填料的存在不会改变聚合物的微观结构。然而,在宏观尺度上,GNPs 限制了聚合物链的迁移性,导致最终复合材料的刚性增加。GNPs 在 LDPE 基体中的取向也是影响力学性能的一个重要问题,通过测试不同制造技术(压缩成型和挤出吹塑)制备的纳米复合材料对其进行了评估。实验数据与 Halpin-Tsai 模型的比较表明,由于挤出过程导致的 GNPs 取向导致拉伸模量的值高于压缩成型技术得到的随机取向分布的结果。