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- W2893658616 abstract "Polyhedral Oligomeric Silsesquioxane (POSS), a nanometric hybrid molecule, is being paid great attention in the field of polymeric micro and nanodielectrics. In this work, study of spacecharge behavior and trap levels of virgin XLPE and XLPE/OibPOSS (OctalsoButyl Polyhedral Oligomeric SilSesquioxanes) nanocomposites is presented. Two techniques namely Pulse Electro Acoustic (PEA) and Thermal Stimulated Current (TSC) are adopted to illustrate the behavior of space charge and trap levels. Melt blending technique using twin-screw extruder is chosen to make XLPE/POSS nanocomposites in lwt% and 3wt% concentration of Octaisobutyl POSS(OibPOSS). A low temperature extrusion profile with temperatures (120°-180°) and rotation speed of 100 rpm was maintained in order to achieve XLPE/OibPOSS nanocomposites. TSC data along with the total charge decay data is used to calculate the trap levels inside the composite samples. The results showed similar trap values calculated from both the techniques. It is observed that the POSS has changed the XLPE chain mobility and depth of the charge trapping sites. Mostly, shallow traps are observed in lwt% and 3wt% samples with charges having a high recombination rate. The charge decay rate is faster in lwt% and 3wt% samples as compared with virgin XLPE. It is concluded that the interfacial contact formed between different concentrations of POSS and XLPE, and also polymer structure, both are important parameters for industry to consider during manufacturing in order to mitigate the accumulation of traps and spacecharges." @default.
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- W2893658616 date "2018-07-01" @default.
- W2893658616 modified "2023-09-26" @default.
- W2893658616 title "Influence of Polyhedral Oligomeric Silsesquioxane (POSS) on Space Charge Behavior and Trap Levels of XLPE/POSS nanocomposite" @default.
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- W2893658616 doi "https://doi.org/10.1109/icd.2018.8468401" @default.
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