Dependency of the critical carbon content of electrical conductivity for carbon powder-filled polymer matrix composites

  • Shin, Soon-gi
Citations

SCOPUS

1

초록

This paper investigates the dependency of the critical content for electrical conductivity of carbon powder-filled polymer matrix composites with different matrixes as a function of the carbon powder content (volume fraction) to find the break point of the relationships between the carbon powder content and the electrical conductivity. The electrical conductivity jumps by as much as ten orders of magnitude at the break point. The critical carbon powder content corresponding to the break point in electrical conductivity varies according to the matrix species and tends to increase with an increase in the surface tension of the matrix. In order to explain the dependency of the critical carbon content on the matrix species, a simple equation (V<inf>c</inf>* = [1 + 3(γ<inf>c</inf>1/2 - γ<inf>m</inf>1/2)2/(Δq<inf>c</inf>R]-1) was derived under some assumptions, the most important of which was that when the interfacial excess energy introduced by particles of carbon powder into the matrix reaches a universal value (Δq<inf>c</inf>), the particles of carbon powder begin to coagulate so as to avoid any further increase in the energy and to form networks that facilitate electrical conduction. The equation well explains the dependency through surface tension, surface tensions between the particles of carbon powder. © 2015 Materials Research Society of Korea.

키워드

Carbon powderCompositesElectrical conductivityExcess energyPolymer matrix
제목
Dependency of the critical carbon content of electrical conductivity for carbon powder-filled polymer matrix composites
저자
Shin, Soon-gi
DOI
10.3740/MRSK.2015.25.8.365
발행일
2015
유형
Article
저널명
한국재료학회지
25
8
페이지
365 ~ 369