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Additional resources for Advances in Electroceramic Materials: Ceramic Transactions
05. * k, is electromechanical coupling factor of thickness mode of disk, and fc, is frequency constant of k, mode. CONCLUSIONS Advances in Electroceramic Materials · 37 Ferroelectric Domains in Lead Free Piezoelectric Ceramics DC poling field dependence of dielectric and piezoelectric properties were investigated in lead free ceramics in comparison with those in PZT, PT and BT ceramics. The domain clamping was observed in the lead free ceramics as well as in PZT, PT and BT ceramics. Higher electromechanical coupling factor could be obtained in the ceramics with the composition of low frequency constant which corresponds to low Young's modulus.
28 M. M. Seabaugh, I. H. Kerscht and G.. L. Soc, 80, 1181-88(1997). Yamaguchi, Microstructure development and dielectric propertie s of potassium strontium niobate ceramics, J. Am. Ceram. 9o)03 lead-free piezoelectric ceramics,/ Ceram. Soc. Japan, 114, 857-60(2006) 31 R. R. Neurgaonkar, W. W. Ho, W. K. Cory, W. F. E. Cross, Low and high frequen cy dielectric properties of ferroelectric tungsten bronze S^KNbsOis crystals, Ferroelectrics, 51, 185-91 (1984) 32 K. Matsuo, R. J. Xie, Y. Akimune, and T.
Higher electromechanical coupling factor could be obtained in the ceramics with the composition of low frequency constant which corresponds to low Young's modulus. Furthermore, the ceramics show the typical domain clumping because of easy deformation by DC poling field. ACKNOWLEDGEMENTS This work was partially supported by a Grant-in-Aid for Scientific Research (C) (No. 17560294) from the Ministry of Education, Culture, Sports, Science and Technology and the Research Foundation 2008 between the Academy and Industry of Fukuroi City.