Time Temperature Stability of Magnetic Properties of Ceramic Magnetic Temperature Transducers

Three ceramic magnetic compositions within the CuZnTi ferrite system, having the Curie temperatures centered around 60, 80 and 100°C, respectively, were investigated in order to determine the time-temperature stability of their main magnetic properties. Permeability and the slope of permeability aro...

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Veröffentlicht in:Journal of the European Ceramic Society 1999-01, Vol.19 (3), p.373-379
Hauptverfasser: Tănăsoiu, C., Miclea, C., Plăviţu, C.N., Spânulescu, I., Miclea, C.F., Barna, E.
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Sprache:eng
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Zusammenfassung:Three ceramic magnetic compositions within the CuZnTi ferrite system, having the Curie temperatures centered around 60, 80 and 100°C, respectively, were investigated in order to determine the time-temperature stability of their main magnetic properties. Permeability and the slope of permeability around their Curie points were determined on ring shaped samples, before and after being subjected to long term (over 6000 h) ageing at their Curie temperature and for a shorter time of about 50 h at higher temperatures up to 700°C. Rates of changes of 33, 66 and 100 ppm h −1 of the maximum slopes of permeability were found for the samples aged at 60, 80 and 100°C, respectively. The samples aged at temperatures higher than 200°C show a rather sudden decrease of maximum slope of permeability, but no shift of the Curie temperature and the working point, corresponding to the temperature where the slope has the maximum value. This is the most interesting result as concerns the use of such magnetic temperature sensors for the construction of highly sensitive temperature controllers, for example ultrathermostats. The results are discussed in terms of the migration processes of the cations, especially Cu 2+, from metastable positions on which they were frozen during the rapid cooling of the sample from the sintering temperature, to the more stable ones, namely the octahedral sites into the spinel lattice. ©
ISSN:0955-2219
1873-619X
DOI:10.1016/S0955-2219(98)00176-9