Multiscale study to investigate nanoparticle agglomeration effect on electrical conductivity of nano-SiC reinforced polypropylene matrix composites

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초록

The clustering effect of beta-SiC nanoparticles on the electrical conductivity of polypropylene matrix composites was investigated through a new multiscale modeling framework where density functional theory-based first-principles calculation and electron hopping-based numerical homogenization are integrated. According to parametric studies for particle dispersion states, the electrical conductivity of the nanocomposites clearly depends on the dispersion/agglomeration of the nanoparticles. Due to the work function of beta-SiC, agglomerated particles made a greater contribution to improving electrical conductivity when compared to well-dispersed particles. In addition, the microstructure-conductivity relationship was determined using the clustering density. The proposed framework was validated with the reported experimental literature.

키워드

Polymer nanocompositesmultiscale modelingfirst-principles calculationfinite element homogenizationelectrical conductivitynanoparticulate agglomerationelectron tunnelingREPRESENTATIVE VOLUME ELEMENTSPOLYMER NANOCOMPOSITESMECHANICAL-PROPERTIESWORK FUNCTIONBEHAVIORSIZEHOMOGENIZATIONMODEL
제목
Multiscale study to investigate nanoparticle agglomeration effect on electrical conductivity of nano-SiC reinforced polypropylene matrix composites
저자
Baek, KyungminKim, HyungjunShin, HyunseongPark, HyungbumCho, Maenghyo
DOI
10.1080/15376494.2022.2054037
발행일
2023-05-03
유형
Article
저널명
Mechanics of Advanced Materials and Structures
30
12
페이지
2442 ~ 2452