论文标题
弹性体的各向异性肿胀,充满对齐的2D材料
Anisotropic swelling of elastomers filled with aligned 2D materials
论文作者
论文摘要
已经对液体中石墨烯增强弹性体的尺寸肿胀进行了全面研究。对于用GNP的面内方向诱导的石墨烯纳米片(GNP)的样品,观察到各向异性肿胀。加入GNP后,纳米复合材料的直径溶胀比显着降低,而厚度溶胀比增加,甚至大于未填充的弹性体的肿胀比。已经根据弗洛里·雷纳(Flory-Rhener)理论的修改对肿胀现象进行了分析。本文提出的新衍生的方程式可以准确预测尺寸肿胀(直径和厚度)对体积肿胀的依赖性,而与弹性体和溶剂的类型无关。还研究了样品的各向异性肿胀,并结合对填充弹性体的拉伸特性的评估。已经开发了一种基于填充几何形状和体积分数的GNP增强弹性体的体积肿胀评估的新颖理论。发现橡胶纳米复合材料的肿胀会从石墨烯薄片中诱导双轴约束。
A comprehensive study has been undertaken on the dimensional swelling of graphene-reinforced elastomers in liquids. Anisotropic swelling was observed for samples reinforced with graphene nanoplatelets (GNPs), induced by the in-plane orientation of the GNPs. Upon the addition of the GNPs, the diameter swelling ratio of the nanocomposites was significantly reduced, whereas the thickness swelling ratio increased and was even greater than that of the unfilled elastomers. The swelling phenomenon has been analyzed in terms of a modification of the Flory-Rhener theory. The newly-derived equations proposed herein, can accurately predict the dependence of dimensional swelling (diameter and thickness) on volume swelling, independent of the type of elastomer and solvent. The anisotropic swelling of the samples was also studied in combination with the evaluation of the tensile properties of the filled elastomers. A novel theory that enables the assessment of volume swelling for GNP-reinforced elastomers, based on the filler geometry and volume fraction has been developed. It was found that the swelling of rubber nanocomposites induces a biaxial constraint from the graphene flakes.