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Effect of Composition on the Hardness and Toughness in PZT-PYW Ceramics
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J. Korean Ceram. Soc.. 1994;31(3):305

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Artificial neural network investigation of hardness and fracture toughness of hydroxylapatite
Ceramics International. 2011;37(4):1147-1152   Crossref logo
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PZT based piezoelectric ceramics with enhanced fracture toughness
Solid State Ionics. 1998;108(1-4):117-121   Crossref logo
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Effect of sol composition on dielectric and ferroelectric properties of PZT composite films
Ceramics International. 2012;38(2):1331-1339   Crossref logo
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Flexural Strength, Fracture Toughness, and Hardness of Silicon Carbide and Boron Carbide Armor Ceramics
International Journal of Applied Ceramic Technology. 2010;7(5):643-651   Crossref logo
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Hardness and toughness control of brittle boron suboxide ceramics by consolidation of star-shaped particles by spark plasma sintering
Ceramics International. 2016;42(2):3525-3530   Crossref logo
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Effect of Vickers Indented Load and Microstructure on Hardness, Bending Strength and Fracture Toughness in Sintered Silicon Carbide Ceramics
Key Engineering Materials. 1991;51-52:155-160   Crossref logo
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The effect of microstructure on the pyroelectric properties of PZT ceramics
Ceramics International. 2000;26(5):541-544   Crossref logo
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Phase composition and fracture toughness of Si3N4–ZrO2 with CeO2 additions
Ceramics International. 1999;25(1):41-47   Crossref logo
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Determination of hardness, Young's modulus and fracture toughness of lanthanum tungstates as novel proton conductors
Ceramics International. 2011;37(5):1593-1599   Crossref logo
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Microstructure, hardness and fracture toughness of spark plasma sintered ZrB2–SiC–Cf composites
Ceramics International. 2017;43(17):15047-15052   Crossref logo
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