Current-Carrying Friction and Wear Characteristics of Ti_3SiC_2 by Reactive Sintering
Yongzhen Zhang
Abstract
Yongzhen Zhang
Abstract
The current carrying friction and wear characteristics of Ti3SiC2 are investigated at different loads and electric currents by using an HST-100 friction and wear testing machine.Scanning electron microscopy is used for the analysis of sample worn surface configuration and determination of wear mechanism.The results show that without electric current the wear mechanism of Ti3SiC2 is mainly mechanical wear,the friction coefficient reduces with increasing load to a minimum value of 0.32 at a load of 120 N.Under the current carrying conditions,the main wear mechanisms of Ti3SiC2 are arc erosion and mechanical wear,the wear rate of the Ti3SiC2 decreases with increasing load to a lowest value of 2.2×10-6 mm3/(N·m) at a load of 120 N,which is close to that under the no current carrying conditions.Ti3SiC2 shows good current carrying tribological properties under high load and different current.
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The current carrying friction and wear characteristics of Ti3SiC2 are investigated at different loads and electric currents by using an HST-100 friction and wear testing machine.Scanning electron microscopy is used for the analysis of sample worn surface configuration and determination of wear mechanism.The results show that without electric current the wear mechanism of Ti3SiC2 is mainly mechanical wear,the friction coefficient reduces with increasing load to a minimum value of 0.32 at a load of 120 N.Under the current carrying conditions,the main wear mechanisms of Ti3SiC2 are arc erosion and mechanical wear,the wear rate of the Ti3SiC2 decreases with increasing load to a lowest value of 2.2×10-6 mm3/(N·m) at a load of 120 N,which is close to that under the no current carrying conditions.Ti3SiC2 shows good current carrying tribological properties under high load and different current.
Key concepts: Materials science, Tribology, Current (fluid), Sintering, Scanning electron microscope, Friction coefficient, Metallurgy, Composite material