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Effect of electric field strength and exposure time on epoxy and high density polyethylene measured by positron annihilation lifetime
Authors:Ehsan A H Gomaa  H Schut  A Van Veen  M Mohsen  U Fromm  P Morshuis
Institution:(1) Interfaculty Reactor Institute, Delft University of Technology, Mekelweg 15, 2629 JB Delft, (The Netherlands);(2) Physics Department, Faculty of Science, Ain Shams University, Cairo, (Egypt);(3) Faculty of Electrical Engineering, Delft University of Technology, Mekelweg 4, 2628 CN Delft, (The Netherlands)
Abstract:Using the positron annihilation lifetime technique, the annihilation parameters have been measured for epoxy and high density polyethylene (HDPE) as a function of AC electric field strength and the exposure time. The lifetime spectra have been resolved into three components, the longest component (I3tau3) is attributed to the pick-off annihilation of o-Ps in the amorphous regions. The intermediate one (I2tau2) is due to the annihilation of free positrons, while the shorter component (I1tau1) stems from self annihilation of p-Ps. In HDPE, the o-Ps parameters tau3 andI 3 are measured as a function of electric field strengths in the range from 10 to 100 kV/cm exposed for 24 hours. A decrease inI 3 of sim8% is observed from zero to 50 kV/cm followed by an increase of the same order from 50 to 100 kV/cm. By investigating the effect of the exposure time from 2 to 24 hours at 16 and 50 kV/cm, the effect is confirmed and is attributed to the inhibition of o-Ps formation at lower field strength. In epoxy, the effect or exposure time onI 3 at 166 and 133 kV/cm shows a similar behavior as in HDPE. At 133 kV/cmI 3 decreases by only 2.5%. On the other hand, the changes in tau3 occur at short exposure times. Again at large times the saturation is obtained. These effects are attributed to the expansion of free volume (increase of tau3) competing at longer exposure times with other phenomena, such as liberation of free radicals, which reduce the o-Ps intensityI 3 through the conversion to p-Ps. The reactions between o-Ps and free radicals might also lead to free positrons, which could explain the increase ofI 2 and the decrease of tau3 at longer exposure times.
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