M-H Characteristics and Demagnetization Resistance of Samarium-Cobalt Permanent Magnets to 300 C

929263

08/03/1992

Event
27th Intersociety Energy Conversion Engineering Conference (1992)
Authors Abstract
Content
The influence of temperature on the M-H demagnetization characteristics of permanent magnets is important information for the full utilization of the capabilities of samarium-cobalt magnets at high temperatures in demagnetization-resistant permanent magnet devices. In high temperature space power converters, such as free-piston Stirling engine driven linear alternators, magnet demagnetization can occur as a long-term consequence of thermal agitation of domains and of metallurgical change, and also as an immediate consequence of too large an applied field. This paper investigates the short-term demagnetization resistance to applied fields derived from basic M-H data. This quasistatic demagnetization data was obtained for commercial, high-intrinsic-coercivity, Sm2Co17-type magnets, from 5 sources, in the temperature range 23 to 300 C. An electromagnet driven, electronic hysteresigraph was used to test the 1-cm cubic samples. The observed variation of the 2nd quadrant M-H characteristics was a typical rapid loss of M-coercivity and a relatively lesser loss of remanence with increasing temperature. The 2nd quadrant M-H curve knee point is used to define the limits of operation safe against irreversible demagnetization due to an excessive bucking field for a given flux density swing at temperature. Such safe operating area plots are shown to differentiate the high temperature capabilities of the samples from different sources. For most of the samples their 2nd quadrant M-H loop squareness increased with temperature, reaching a peak or a plateau above 250 C.
Meta TagsDetails
DOI
https://doi.org/10.4271/929263
Pages
6
Citation
Niedra, J., "M-H Characteristics and Demagnetization Resistance of Samarium-Cobalt Permanent Magnets to 300 C," SAE Technical Paper 929263, 1992, https://doi.org/10.4271/929263.
Additional Details
Publisher
Published
Aug 3, 1992
Product Code
929263
Content Type
Technical Paper
Language
English