Lanca, M. C., E. R. Neagu, L. A. Dissado, and J. Marat-Mendes,
"Space charge studies in XLPE from power cables using combined isothermal ans thermostimulated current measurements",
Advanced Materials Forum Iii, Pts 1 and 2, vol. 514-516, pp. 935-939, 2006.
AbstractCross-linked polyethylene (XLPE) peelings from aged power cables from three different sources were studied using a combined procedure of isothermal and thermo-stimulated current measurements. Different parameters, such as electric field, temperature, charging/discharging times, can be selected in order to make an analysis of the space charge characteristics (such as, relaxation times and activation energies). Three different cables peelings were analyzed: A - electrically aged in the laboratory at high temperature, B - service aged for 18 years and C - thermally aged in the laboratory at high temperature. The results were compared for the different types of samples and also with previous results on laboratory aged and produced films of low-density polyethylene (LDPE) and XLPE.
Lanca, M. C., E. R. Neagu, and J. N. Marat-Mendes,
"Space charge studies of aged XLPE using combined isothermal and thermostimulated current measurements",
Cross-Disciplinary Applied Research in Materials Science and Technology, vol. 480, pp. 501-505, 2005.
AbstractSpace charge in electrically aged cross-linked polyethylene (XLPE) was studied using a procedure combining isothermal and non-isothermal measurements of charge and discharge currents. Aging is carried out using an AC field while immersing the disk-shaped samples in an ionic aqueous solution at constant temperature. After aging the samples were isothermally DC charged and discharged. Next a non-isothermal experiment with constant heating rate was performed (FTSDC). Finally the sample was kept at the highest temperature in order to completely discharge the polymer. The space charge introduced in the XLPE during aging can be analyzed from the study of the FTSDC spectra. The thermogram (FTSDC) shows a very broad peak. The peak is attributed to trapped space charge in traps with long relaxation times. It is possible to decompose it into three or four individual peaks and obtain the corresponding activation energies. The results were compared with previous ones obtained for LDPE (low density polyethylene) aged under similar conditions.
Lanca, M. C., E. R. Neagu, P. Silva, L. Gil, and J. Marat-Mendes,
"Study of electrical properties of natural cork and two derivative products",
Advanced Materials Forum Iii, Pts 1 and 2, vol. 514-516, pp. 940-944, 2006.
AbstractElectrical properties of natural cork, commercial cork agglomerates (for floor and wall coverings) and a recently developed composite of cork/TetraPak (R) were studied. Measurements of isothermal charge and discharge currents were made for natural cork samples in different directions (axial, radial and tangential cuts). The isothermal current characteristics and the samples conductivity were investigated under different conditions (electric field, temperature and environmental conditions: in air at ambient relative humidity (RH), dry air and vacuum), also the samples could be or not conditioned (dried in vacuum or in a P2O5 atmosphere at room temperature). From these results the influence of water on the electrical properties of natural cork could be seen. In order to compare the three different cork materials a preliminary study was made. Isothermal charge and discharge currents and conductivity after 1h charging were measured and compared for different electric fields and temperature in air at ambient RH.
Lanca, M. C., I. Cunha, J. P. Marques, E. R. Neagu, L. Gil, C. J. Dias, and J. N. Marat-Mendes,
"Water Content Control To Improve Space Charge Storage in a Cork Derivative",
Advanced Materials Forum Vi, Pts 1 and 2, vol. 730-732, pp. 395-400, 2013.
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