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- W2609173616 abstract "Recent research at Michigan State University has shown that it is possible to exfoliate natural graphite into platelets having thicknesses of less than 10nm and diameters of any size from sub-micron to 15 microns or greater. Since graphite is one of the stiffest materials found in nature (Young’s Modulus = 1060 GPa), having a modulus several times that of clay, and also has excellent electrical and thermal conductivity, the addition of these nanographite platelets to polymers can impart a combination of desirable mechanical, electrical, thermal and barrier properties to the resulting nanocomposite. We have investigated the addition of exfoliated graphite nanoplatelets (xGnP) to a vinyl ester resin to achieve a nanocomposite with an optimum combination of conductivity and mechanical properties. It was found that the flexural modulus increased with increasing the content of xGnP regardless of the dimensions of the particle. The flexural strength decreased with increases in the content of xGnP dependent on the size of xGnP. The impact strength of the nanocomposite reinforced with xGnP having a diameter about 1 micron (xGnP-1) increased compared to the nanocomposite reinforced with xGnP-15. The electrical impedance (resistivity) of the xGnP reinforced vinyl ester nanocomposite and particularly the percolation threshold depended strongly on the size of xGnP. The nanocomposite reinforced with xGnP-1 has a higher percolation threshold and resistivity compared to the one reinforced with xGnP-15. It will be shown that by blending xGnP1 and xGnP-15 it is possible to obtain a combination of good mechanical properties as well as resistivity." @default.
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- W2609173616 date "2007-01-01" @default.
- W2609173616 modified "2023-09-23" @default.
- W2609173616 title "Exfoliated graphite nanoplatelet-vinyl ester nanocomposites" @default.
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