Compact pulse forming line using barium titanate ceramic material

Ceramic material has very high relative permittivity, so compact pulse forming line can be made using these materials. Barium titanate (BaTiO 3 ) has a relative permittivity of 1200 so it is used for making compact pulse forming line (PFL). Barium titanate also has piezoelectric effects so it cracks...

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Veröffentlicht in:Review of scientific instruments 2011-11, Vol.82 (11), p.115102-115102-3
Hauptverfasser: Kumar Sharma, Surender, Deb, P., Shukla, R., Prabaharan, T., Shyam, A.
Format: Artikel
Sprache:eng
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Zusammenfassung:Ceramic material has very high relative permittivity, so compact pulse forming line can be made using these materials. Barium titanate (BaTiO 3 ) has a relative permittivity of 1200 so it is used for making compact pulse forming line (PFL). Barium titanate also has piezoelectric effects so it cracks during high voltages discharges due to stresses developed in it. Barium titanate is mixed with rubber which absorbs the piezoelectric stresses when the PFL is charged and regain its original shape after the discharge. A composite mixture of barium titanate with the neoprene rubber is prepared. The relative permittivity of the composite mixture is measured to be 85. A coaxial pulse forming line of inner diameter 120 mm, outer diameter 240 mm, and length 350 mm is made and the composite mixture of barium titanate and neoprene rubber is filled between the inner and outer cylinders. The PFL is charged up to 120 kV and discharged into 5 Ω load. The voltage pulse of 70 kV, 21 ns is measured across the load. The conventional PFL is made up of oil or plastics dielectrics with the relative permittivity of 2-10 [ D. R. Linde , CRC Handbook of Chemistry and Physics , 90th ed. ( CRC , 2009 ) ; Xia , Rev. Sci. Instrum. 79 , 086113 ( 2008 ) ; Yang , Rev. Sci. Instrum. 81 , 43303 ( 2010 )] , which increases the length of PFL. We have reported the compactness in length achieved due to increase in relative permittivity of composite mixture by adding barium titanate in neoprene rubber.
ISSN:0034-6748
1089-7623
DOI:10.1063/1.3658823