Abstract

Chambersite (Mn3B7O13Cl)–Ti composites were fabricated using spark plasma sintering. The microstructure and phase composition of the composites were investigated along with the effects of chambersite on the mechanical properties and friction properties of Ti. The results show that chambersite reacts with Ti during sintering to form TiB, TixOy, and MnCl2. The mechanical properties of the composites were optimal for the composite with 5 vol% chambersite. Chambersite helps to improve the friction properties of Ti: with increasing amount of chambersite added, the wear rate of the composites decreases.

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