The mechanical properties of Pb-Sb-Ce alloy and traditional Pb-Sb alloy were studied, and the anodic corrosion layers formed on two alloys at 0.9 V for 2 h in 4.5 mol·L -1 sulfuric acid solution were investigated...The mechanical properties of Pb-Sb-Ce alloy and traditional Pb-Sb alloy were studied, and the anodic corrosion layers formed on two alloys at 0.9 V for 2 h in 4.5 mol·L -1 sulfuric acid solution were investigated using A.C impedance. The results show that the strength of Pb-Sb-Ce alloy slightly decreases, while the tenacity behavior increases rapidly, which is helpful for the succeeding manufacture process for grid. The anodic corrosion layer of Pb-Sb-Ce alloy has better conductivity than that of traditional Pb-Sb alloy. It is shown that rare earth element can inhibit the development of Pb(Ⅱ), and then can compensate for the effect of premature capacity loss for the low Sb content.展开更多
文摘The mechanical properties of Pb-Sb-Ce alloy and traditional Pb-Sb alloy were studied, and the anodic corrosion layers formed on two alloys at 0.9 V for 2 h in 4.5 mol·L -1 sulfuric acid solution were investigated using A.C impedance. The results show that the strength of Pb-Sb-Ce alloy slightly decreases, while the tenacity behavior increases rapidly, which is helpful for the succeeding manufacture process for grid. The anodic corrosion layer of Pb-Sb-Ce alloy has better conductivity than that of traditional Pb-Sb alloy. It is shown that rare earth element can inhibit the development of Pb(Ⅱ), and then can compensate for the effect of premature capacity loss for the low Sb content.