September 22, 2026
Journal Article

Aluminum bonded SmCo5 magnets with enhanced mechanical strength

Abstract

Despite their versatility and easy manufacturability, polymer-bonded magnets find limited application due to their limited mechanical properties and temperature resistance. In this study, we developed mechanically robust, aluminum-bonded SmCo5 magnets by utilizing a low-temperature, shear-assisted friction consolidation technique. Bonded magnets with varying magnetic phase content were fabricated at processing temperature of 500°C, and their microstructures, magnetic, mechanical, and electrical properties were systematically investigated. The resulting bonded-magnets showed effective consolidation with nanocrystalline microstructures. Magnetic properties were found to be tunable through variations in binder phase content, with coercivity reaching values up to 15.3 kOe (1217.5 kA/m) and maximum magnetic energy product up to 3.6 MGOe (28.7 kJ/m3), which are comparable to other bonded magnets. Electrical resistivities were lower than the polymer-bonded magnets, but comparable to the sintered ones. We observed an average flexural strength of 223 MPa for 60 vol.% SmCo5/Al sample, which is nearly two times higher than the reported values for sintered and bonded Sm-Co magnets. Our research demonstrated an effective approach to fabricate metal-bonded permanent magnets with superior magnetic and mechanical properties potentially applicable for high temperature applications.

Published: September 22, 2026

Citation

Poudel Chhetri T., X. Li, F. Ishrak, T. Liu, H. Park, F. Sanchez, and A. Devaraj, et al. 2026. Aluminum bonded SmCo5 magnets with enhanced mechanical strength. Journal of Alloys and Compounds 1075:Art. No. 189202. PNNL-SA-217495. doi:10.1016/j.jallcom.2026.189202

Research topics