TY - JOUR
T1 - Theoretical estimation on the percolation threshold for polymer matrix composites with hybrid fillers
AU - Chen, Yuli
AU - Pan, Fei
AU - Wang, Shengtao
AU - Liu, Bo
AU - Zhang, Jianyu
N1 - Publisher Copyright:
© 2015 Elsevier Ltd.
PY - 2015/6/1
Y1 - 2015/6/1
N2 - Hybrid particles can improve the performance and reduce the cost of polymer matrix composites (PMCs), and thus increasingly used as fillers in multifunctional and structural materials. For these materials, the percolation threshold is of great importance because it determines whether or not the excellent mechanical, electrical and thermal properties of fillers can be fully utilized in the composites. However, the existing theoretical methods have limitations in percolation threshold predictions, and moreover, they are not applicable for hybrid filler systems. In this paper, an approach to predict the percolation threshold of hybrid filler systems is developed based on the modified average intersection number, which is proposed in this paper and revealed to be an invariant at the threshold. The theoretical expression for the percolation threshold of PMCs with fillers of different shapes is developed, and especially, the analytical expression for systems with spherical and cylindrical particles is obtained and validated by Monte-Carlo simulations. The proposed method on percolation threshold prediction can well explain the synergistic effect of fillers with different shapes, and provides great convenience for the design of conductive PMCs with hybrid fillers.
AB - Hybrid particles can improve the performance and reduce the cost of polymer matrix composites (PMCs), and thus increasingly used as fillers in multifunctional and structural materials. For these materials, the percolation threshold is of great importance because it determines whether or not the excellent mechanical, electrical and thermal properties of fillers can be fully utilized in the composites. However, the existing theoretical methods have limitations in percolation threshold predictions, and moreover, they are not applicable for hybrid filler systems. In this paper, an approach to predict the percolation threshold of hybrid filler systems is developed based on the modified average intersection number, which is proposed in this paper and revealed to be an invariant at the threshold. The theoretical expression for the percolation threshold of PMCs with fillers of different shapes is developed, and especially, the analytical expression for systems with spherical and cylindrical particles is obtained and validated by Monte-Carlo simulations. The proposed method on percolation threshold prediction can well explain the synergistic effect of fillers with different shapes, and provides great convenience for the design of conductive PMCs with hybrid fillers.
KW - Hybrid fillers
KW - Intersection
KW - Nano composites
KW - Statistical percolation model
UR - https://www.scopus.com/pages/publications/84923917723
U2 - 10.1016/j.compstruct.2015.01.013
DO - 10.1016/j.compstruct.2015.01.013
M3 - 文章
AN - SCOPUS:84923917723
SN - 0263-8223
VL - 124
SP - 292
EP - 299
JO - Composite Structures
JF - Composite Structures
ER -