Title :
Designing a radial mode laminated piezoelectric transformer for high power applications
Author :
Laoratanakul, Pitak ; Uchino, Kenji
Author_Institution :
Nat. Metal & Mater. Technol., Pathumthani, Thailand
Abstract :
This research was aimed to develop a good understanding of the laminated piezoelectric transformer designs and their related properties, such as bonding materials, electrode materials and constructive parameters. We found that Stycast® 1264 is a promising bonding material to improve transformer characteristics in terms of mechanical quality factor, efficiency and output power. Size and shape of the piezoelectric element also affect the transformer´s performance. It showed that the power capability of piezoelectric transformer can be increased when the disk-shape and bigger size of piezoelectric elements are used. From this study, the maximum output powers of approximately 7 and 36 W were obtained for 23.8 and 45.0 mm diameter piezoelectric transformers with the same total thickness, respectively. These laminated transformers exhibit approximately three times higher power density than a rectangular Rosen-type piezoelectric transformer with a similar volume.
Keywords :
piezoelectric devices; power transformers; 23.8 mm; 45.0 mm; Rosen-type piezoelectric transformer; Stycast® 1264; bonding materials; constructive parameters; electrode materials; high power applications; laminated transformers; mechanical quality factor; output powers; piezoelectric element; power capability; power density; radial mode laminated piezoelectric transformer; transformer characteristics; Bonding; Ceramics; Electrodes; Inorganic materials; Piezoelectric materials; Piezoelectric polarization; Power generation; Power transformer insulation; Power transformers; Vibrations;
Conference_Titel :
Applications of Ferroelectrics, 2004. ISAF-04. 2004 14th IEEE International Symposium on
Print_ISBN :
0-7803-8410-5
DOI :
10.1109/ISAF.2004.1418378