Breakdown in high voltage, high energy density multilayer ceramic capacitors
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The work Breakdown in high voltage, high energy density multilayer ceramic capacitors represents a distinct intellectual or artistic creation found in Missouri University of Science & Technology Library. This resource is a combination of several types including: Work, Language Material, http://bibfra.me/vocab/marc/Manuscript, Books.
The Resource
Breakdown in high voltage, high energy density multilayer ceramic capacitors
Resource Information
The work Breakdown in high voltage, high energy density multilayer ceramic capacitors represents a distinct intellectual or artistic creation found in Missouri University of Science & Technology Library. This resource is a combination of several types including: Work, Language Material, http://bibfra.me/vocab/marc/Manuscript, Books.
- Label
- Breakdown in high voltage, high energy density multilayer ceramic capacitors
- Statement of responsibility
- by Amanda Young
- Language
- eng
- Summary
- "Causes of breakdown, both mechanical and electrical, in high voltage, high energy density, BaTiO3 multilayer ceramic capacitors were studied. The flexural strength of the capacitors was 96 +/- 13 MPa. Failure was due to surface defects or pores close to the surfaces of the samples. The dielectric breakdown strength of the samples was 181 kV/cm. The causes of breakdown were either field enhancements due to electrode end effects or pores between the dielectric and electrode layers...The one common source of failure was porosity although it was located in different regions of the capacitors. Liquid-phase sintering can be used to eliminate porosity and therefore was chosen to improve the electrical and mechanical strengths of the capacitors"--Abstract, leaf iv
- Related
-
- Effect of liquid-phase sintering on the breakdown strength of barium titanate
- Effect of liquid-phase sintering on the electrical properties of BaTiO3
- MST thesis. Ceramic Engineering (Ph.D., 2007)
- Mechanical vs. electrical failure mechanisms in high voltage, high energy density multilayer ceramic capacitors
- Mechanical vs. electrical failure mechanisms in high voltage, high energy density multilayer ceramic capacitors fabricated using liquid-phase sintering
- Reactions and devitrification during liquid-phase sintering of BaTiO3
- Cataloging source
- UMR
- Degree
- Ph. D.
- Dissertation year
- 2007.
- Granting institution
- University of Missouri--Rolla
- Illustrations
- illustrations
- Index
- no index present
- Literary form
- non fiction
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