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Dive into the research topics where Bruska Azhdar is active.

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Featured researches published by Bruska Azhdar.


IEEE Transactions on Dielectrics and Electrical Insulation | 2012

Dielectric properties of alumina-filled poly (ethylene-co-butyl acrylate) nanocomposites Part II- wet studies

Nadejda Jäverberg; Hans Edin; Patricia Nordell; Sohail Nawaz; Henrik Hillborg; Bruska Azhdar; Ulf W. Gedde

The influence of moisture on the dielectric properties of different types of poly (ethyleneco- butyl acrylate) filled with alumina nanoparticles was systematically investigated by varying the type of aluminum oxide, particle surface treatment and filler content (2, 6 and 12 wt%). The nanoparticles were either unmodified or surface-treated with either aminopropyl triethoxysilane or octyltriethoxy silane. The complex permittivity was measured with an IDA200 dielectric spectroscopy analyzer at applied voltage of 200 Vpeak with frequencies varying between 1 mHz and 1 kHz. The measurements were performed at 25°C and relative air humidities of 24, 54 and 86%. In order to expand the frequency range the HP 4284A precision LCR meter was used for measuring sample impedance at the frequency range of 100 Hz to 1 MHz. From the frequency dependence of dielectric losses it can be seen that absorbed water plays a significant role in determining the dielectric properties of the nanocomposites. The magnitude of tan δ seems to be determined primarily by the particle size and filler content, while the peak frequency is mostly influenced by the amount of absorbed water and the type of particle coating.


conference on electrical insulation and dielectric phenomena | 2010

Dielectric properties of alumina-filled poly(ethylene-co-butyl acrylate) nanocomposites

Nadejda Jäverberg; Hans Edin; Patricia Nordell; Henrik Hillborg; Bruska Azhdar; Ulf W. Gedde

The dielectric properties of poly (ethylene-co-butyl acrylate) with 13 wt% of butyl acrylate (EBA) filled with alumina nanoparticles (diameter < 50 nm) were studied as a function of particle coating and filler content (2, 6 and 12 wt%). The particles were either unmodified or surface treated either with aminopropyl triethoxysilane or octyltriethoxysilane.


Polymer Degradation and Stability | 2008

Long-term performance of poly(vinyl chloride) cables, Part 2 : Migration of plasticizer

Maria Ekelund; Bruska Azhdar; Mikael S. Hedenqvist; Ulf W. Gedde


Polymer Degradation and Stability | 2011

Deterioration of polyethylene pipes exposed to water containing chlorine dioxide

Wenbin Yu; Bruska Azhdar; D. Andersson; Torbjörn Reitberger; J. Hassinen; Thomas Hjertberg; Ulf W. Gedde


Polymer Testing | 2005

Development of a High-Velocity Compaction process for polymer powders

Bruska Azhdar; Bengt Stenberg; Leif Kari


Polymer Degradation and Stability | 2010

Evaporative loss kinetics of di(2-ethylhexyl)phthalate (DEHP) from pristine DEHP and plasticized PVC

Maria Ekelund; Bruska Azhdar; Ulf W. Gedde


Polymer Testing | 2009

A new method for assessing the efficiency of stabilizers in polyolefins exposed to chlorinated water media

Bruska Azhdar; Wenbin Yu; Torbjörn Reitberger; Ulf W. Gedde


Polymer Testing | 2006

Determination of springback gradient in the die on compacted polymer powders during high-velocity compaction

Bruska Azhdar; Bengt Stenberg; Leif Kari


Journal of Applied Polymer Science | 2012

Preparation and characterization of aluminum oxide-poly(ethylene-co-butyl acrylate) nanocomposites

Patricia Nordell; Sohail Nawaz; Bruska Azhdar; Henrik Hillborg; Ulf W. Gedde


Polymer Composites | 2008

Polymer-nanofiller prepared by high-energy ball milling and high velocity cold compaction

Bruska Azhdar; Bengt Stenberg; Leif Kari

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Ulf W. Gedde

Royal Institute of Technology

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Leif Kari

Royal Institute of Technology

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Bengt Stenberg

Royal Institute of Technology

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Patricia Nordell

Royal Institute of Technology

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Henrik Hillborg

Royal Institute of Technology

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Mikael S. Hedenqvist

Royal Institute of Technology

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Muhammad Ifran Qadeer

Royal Institute of Technology

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Sohail Nawaz

Royal Institute of Technology

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Steven J. Savage

Swedish Defence Research Agency

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Hans Edin

Royal Institute of Technology

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