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Bursill, L.A.; Peng JuLin
Melbourne Univ., Parkville (Australia). School of Physics1989
Melbourne Univ., Parkville (Australia). School of Physics1989
AbstractAbstract
[en] Transmission and high-resolution electron microscopy reveal the microtexture of lead zirconium titanate ceramics. Fine scale (≤ 500 Aangstroem) ferroelastic and ferroelectric twin domains, as well as dislocations were found in a complex texture. Correlations between stoichiometry, microstructure and piezoelectric properties are discussed. 6 refs., 3 figs
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1989; 5 p
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Report
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CRYSTAL DEFECTS, CRYSTAL STRUCTURE, DIELECTRIC PROPERTIES, ELECTRICAL PROPERTIES, ELECTRICITY, ENERGY RANGE, KEV RANGE, LEAD COMPOUNDS, LINE DEFECTS, MICROSCOPY, NIOBIUM COMPOUNDS, OXYGEN COMPOUNDS, PHYSICAL PROPERTIES, TITANATES, TITANIUM COMPOUNDS, TRANSITION ELEMENT COMPOUNDS, ZIRCONATES, ZIRCONIUM COMPOUNDS
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