Carbon fiber-reinforced titanium matrix composites were
prepared
by powder metallurgy. Carbon fiber (CF) powder and titanium (Ti) powder
are mixed, pressed, and then sintered at a high temperature of 1300–1500
°C. The morphology and conductivity of carbon fiber-reinforced
titanium matrix (Ti-CF) composites were studied. When the temperature
range of the Ti-CF composites was from 1300 to 1500 °C, the porosity
and resistivity first decreased and then increased. When the sintering
temperature was 1350 °C, the diffraction peak of the sample was
the strongest, the porosity was the smallest (4.16%), and the resistivity
was the smallest (2.7 MΩ·mm). CFs have a very good strengthening
effect on titanium-based composite materials.
The CF/Ti/β-PbO2 composite was prepared for the first time by thermal decomposition and electrodeposition. Compared with the Pb–Ag anode, the current efficiency and service life of the CF/Ti/β-PbO2 anode increased by 14.92% and 232%, respectively.
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