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V-Ti-Ni-Co-Ce钒基电池合金电化学性能的研究 被引量:1
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作者 范庆科 孟庆华 《电镀与精饰》 CAS 北大核心 2019年第11期6-9,共4页
针对目前V-Ti-Ni电池合金电化学性能差等原因,采用球磨-烧结工艺制备了钒基汽车电池合金V-Ti-Ni和V-Ti-Ni-Co-Ce合金,并进行了电化学循环稳定性能、电化学耐腐蚀性能、物相组成以及显微组织的测试与分析。结果表明:V-Ti-Ni和V-Ti-Ni-Co... 针对目前V-Ti-Ni电池合金电化学性能差等原因,采用球磨-烧结工艺制备了钒基汽车电池合金V-Ti-Ni和V-Ti-Ni-Co-Ce合金,并进行了电化学循环稳定性能、电化学耐腐蚀性能、物相组成以及显微组织的测试与分析。结果表明:V-Ti-Ni和V-Ti-Ni-Co-Ce合金都是由V基固溶体相和TiNi相组成。与V-Ti-Ni合金相比,V-Ti-Ni-Co-Ce合金的组织明显细化,晶粒分布更为均匀,网状晶界更加密集,从而为充放电循环过程中提供更好的进出通道,使得V-Ti-Ni-Co-Ce合金具有更佳的电化学循环稳定性能和电化学耐腐蚀性能:充放电循环15次后放电容量增大294%;合金的腐蚀电位正移109 mA,腐蚀电流密度减小37%。 展开更多
关键词 V-Ti-Ni-Co-Ce合金 钒基汽车电池合金 电化学循环稳定性能 电化学耐腐蚀性能 放电容量
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Effects of surface nanocrystallization on corrosion resistance of β-type titanium alloy 被引量:8
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作者 金磊 崔文芳 +2 位作者 宋秀 刘刚 周廉 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第8期2529-2535,共7页
Surface mechanical attrition treatment (SMAT) was performed on biomedicalβ-type TiNbZrFe alloy for 60 min at room temperature to study the effect of surface nanocrystallization on the corrosion resistance of TiNbZrFe... Surface mechanical attrition treatment (SMAT) was performed on biomedicalβ-type TiNbZrFe alloy for 60 min at room temperature to study the effect of surface nanocrystallization on the corrosion resistance of TiNbZrFe alloy in physiological environment. The surface nanostructure was characterized by TEM, and the electrochemical behaviors of the samples with nanocrystalline layer and coarse grain were comparatively investigated in 0.9% NaCl and 0.2% NaF solutions, respectively. The results indicate that nanocrystallines with the size of 10-30 nm are formed within the surface layer of 30 μm in depth. The nanocrystallized surface behaves higher impedance, more positive corrosion potential and lower corrosion current density in 0.9%NaCl and 0.2%NaF solutions as compared with the coarse grain surface. The improvement of the corrosion resistance is attributed to the rapid formation of stable and dense passive film on the nanocrystallized surface of TiNbZrFe alloy. 展开更多
关键词 biomedical β titanium alloy surface nanocrystallization electrochemical behavior corrosion resistance
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Corrosion behavior of thermal sprayed WC cermet coatings containing metallic binders in saline environment 被引量:9
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作者 王丽君 邱培现 +3 位作者 刘艳 周伍喜 苟国庆 陈辉 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第9期2611-2617,共7页
A series of electrochemical and long-term corrosion tests were carried out in a neutral saline (5%NaCl) vapor of 35 °C on thermal sprayed WC cermet coatings containing different kinds of metallic binders in ord... A series of electrochemical and long-term corrosion tests were carried out in a neutral saline (5%NaCl) vapor of 35 °C on thermal sprayed WC cermet coatings containing different kinds of metallic binders in order to examine the effect of composition of binder materials on the corrosion behavior. The experimental results revealed that the overall corrosion resistance of WC-Co coating was inferior to that of WC-Co-Cr coating. For the coatings without Cr, WC-Co, general corrosion occurred in binder materials in addition to galvanic corrosion between WC particles and metallic binders in the neutral environment. By contrast, the formation of passive film in the form of surface oxide in the coatings containing Cr, WC-Co-Cr, suppressed the binder and metallic binders to be eroded. It is found that the chemical composition of metallic binder materials is one of the important factors influencing the corrosion resistance of HVOF sprayed WC cermet coatings in the neutral vapor. 展开更多
关键词 WC-CO WC-Co-Cr corrosion protection corrosion resistance electrochemical characterization
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Effects of Hg and Ga on microstructures and electrochemical corrosion behaviors of Mg anode alloys 被引量:1
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作者 张嘉佩 王日初 +1 位作者 冯艳 彭超群 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第12期3039-3045,共7页
The effects of Hg and Ga on the electrochemical corrosion behaviors of the Mg-2%Hg, Mg-2%Ga and Mg-2%Hg-2%Ga (mass fraction) alloys were investigated by measurements of polarization curves, galvanostatic tests and mea... The effects of Hg and Ga on the electrochemical corrosion behaviors of the Mg-2%Hg, Mg-2%Ga and Mg-2%Hg-2%Ga (mass fraction) alloys were investigated by measurements of polarization curves, galvanostatic tests and measurements of electrochemical impedance spectroscopy. Scanning electron microscopy, X-ray diffractometry and energy dispersive spectrometry were employed to characterize the microstructures and the corroded surface of the above alloys. The results demonstrate that the microstructure of the Mg-2%Ga alloy is solid solution and the Mg-2%Hg and Mg-2%Hg-2%Ga alloys have white second-phases at the grain boundaries. The Mg-2%Ga alloy has the worst electrochemical activity and the best corrosion resistance, showing a mean potential of -1.48 V and a corrosion current density of 0.15 mA/cm2. The Mg-2%Hg-2%Ga alloy has the best electrochemical activity and the worst corrosion resistance, showing a mean potential of -1.848 V and a corrosion current density of 2.136 mA/cm2. The activation mechanism of the Mg-Hg-Ga alloy is dissolution-deposition of the Hg and Ga atoms. 展开更多
关键词 Mg anode alloy microstructure electrochemical activity corrosion resistance electrochemical impedance spectroscopy
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