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Effect of annealing Atmosphere on the Piezoelectric and Mechanical Properties of PZT Ceramics
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J. Korean Ceram. Soc.. 1994;31(9):1037

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The effect of Li2CO3 addition on the structural, dielectric and piezoelectric properties of PZT ceramics
Ceramics International. 2015;41(2):2774-2778   Crossref logo
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Mechanical, piezoelectric, and dielectric properties of a novel 0–3 γ-C2S-PZT composite
Ceramics International. 2022;48(12):17682-17690   Crossref logo
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Effect of tungsten on the structure and piezoelectric properties of PZN–PZT ceramics
Ceramics International. 2007;33(6):1019-1023   Crossref logo
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The piezoelectric and dielectric properties of PZT–PMN–PZN
Ceramics International. 2004;30(4):605-611   Crossref logo
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Processing and piezoelectric properties of porous PZT ceramics
Ceramics International. 2007;33(3):395-399   Crossref logo
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Structural, dielectric and piezoelectric properties of 0–3 PZT/PVDF composites
Ceramics International. 2015;41(6):8008-8013   Crossref logo
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Effects of SiO<sub>2</sub> Substitution on Piezoelectric and Mechanical Properties of PMS-PZT Ternary Piezoelectric Ceramics
Key Engineering Materials. 2007;280-283:215-218   Crossref logo
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Piezoelectric Properties of the 1-3 Type Porous Lead Zirconate Titanate Ceramics
Journal of the American Ceramic Society. 2010;94(6):1794-1799   Crossref logo
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The effect of isostructural seeding on the microstructure and piezoelectric properties of PZT ceramics
Ceramics International. 1999;25(3):239-244   Crossref logo
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Piezoelectric properties and damping behavior of highly loaded PZT/polyurethane particulate composites
Ceramics International. 2021;   Crossref logo
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